nit kkr mech syllabus

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    SCHEME OF EXAMINATION

    B. TECH. (3rdSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$E%a&s.

    (Hours)

    L T

    '# Tota"

    1 MET-201 Thermodynamics 3 1 - 4 3.5 3

    2. MET-203 Strength of Materials

    I

    3 1 - 4 3.5 3

    3. MET-205 Machine ra!ing - - 4 4 2.0 4

    4. MET-20" #rod$ction

    Technology-I

    3 1 - 4 3.5 3

    5. M%T-201 Mathematics III 3 1 - 4 3.5 3

    &. MET-20' (inematics ofMachines

    3 1 - 4 3.5 3

    ". MET-211 %))lied Mechanics 2 1 - 3 2.5 3

    *. MET-213 Strength of

    Materials-I

    +#ractical,

    - - 2 2 1.0 3

    '. MET-215 #rod$ction

    Technology-I

    - - 2 2 1.0 3

    10. MET-21" Thermodynamics

    +#ractical,

    - - 2 2 1.0 3

    11. MET-21' %))lied Mechanics

    +#ractical,

    - - 2 2 1.0 3

    Total 1" 0& 12 35 2&

    1

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    SEME / E%MI%TI/

    B. TECH. (thSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$

    E%a&s.(Hours)

    L T

    '# Tota"

    1 MET-202 Mechanics of l$ids 3 1 - 4 3.5 3

    2. MET-204 Strength of

    Materials -II

    3 1 - 4 3.5 3

    3. MET-20& Steam #o!er

    eneration

    3 1 - 4 3.5 3

    4. T-211 /rgani6ational7eha8io$r

    2 1 - 3 2.5 3

    5. MET-20* Material Science 3 1 - 4 3.5 3

    &. MET-210 #rod$ction

    Technology-II

    3 1 - 4 3.5 3

    ". MET-212 ynamics of

    Machines

    3 1 - 4 3.5 3

    *. MET-214 $merical Methods om)$ter

    #rogramming

    +#ractical,

    - - 2 2 1.0 3

    '. MET-21& #rod$ction

    Technology-II

    +#ractical,

    - - 2 2 1.0 3

    10. MET-21* Mechanics of

    Machines +#ractical,

    - - 2 2 1.0 3

    11. ET-220 Mechanics of l$ids

    +#ractical,

    - - 2 2 1.0 3

    Total 20 0" 0* 35 2".5 -

    2

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    SEME / E%MI%TI/

    B. TECH. (*thSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$

    E%a&s. (Hours)

    L T

    '# Tota"1 MET-301 I.. Engines as

    T$r9ine3 1 - 4 3.5 3

    2. MET-303 l$id Machines 3 1 - 4 3.5 33. MET-305 eat Transfer 3 1 - 4 3.5 3

    4. MET-30" Ind$strial

    Engineering

    3 1 - 4 3.5 3

    5. MET-30' Machine esign -I 2 - 5 " 4.5 3

    &. MET-311 /)erations:esearch

    3 1 - 4 3.5 3

    ". MET-313 Thermal

    Engineering ;a9

    - - 2 2 1.0 3

    *. MET-315 l$id Machines

    +#ractical,

    - - 2 2 1.0 3

    '. MET-31" eat Transfer

    +#ractical,

    - - 2 2 1.0 3

    10. MET-31' Ind$strial Engg

    +#ractical,

    - - 2 2 1.0 3

    11 MET-323

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    SEME / E%MI%TI/

    B. TECH. (+thSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$

    E%a&s.(Hours)

    L T

    '# Tota"

    1 MET-302 :efrigeration

    %ir-onditioning

    3 1 - 4 3.5 3

    2. MET-304 Tri9ology 3 1 - 4 3.5 33. MET-30& Mechanical

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    SEME / E%MI%TI/

    B. TECH. (,thSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$

    E%a&s.(Hours)

    L T

    '# Tota"

    1 MET-401 %$tomo9ile Engg. 3 1 - 4 3.5 3

    2. MET-403 Meas$rements 3 1 - 4 3.5 33. MET= Electi8e-I> 3 1 - 4 3.5 3

    4. MET= /)en Electi8e-I> 3 1 - 4 3.5 3

    5. MET-405 Statistical ?$ality

    ontrol and

    :elia9ility

    3 1 - 4 3.5 3

    &. MET-40" Meas$rements

    +#ractical,

    - - 2 2 1.0 3

    ". MET-40' #ro@ect-I - - & & '.0 3

    *. MET-411 Seminar>> - - 2 2

    '. MET-413 #ractical Training

    :e)ort

    - - - - 3.0 3

    Total 15 5 10 30 30.5

    > The Electi8es !ill 9e offered from the list of Electi8es.>> This !ill contin$e in the * thsemester and the credits !ill 9e a!arded only in the * thsemester.

    5

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    SEME / E%MI%TI/

    B. TECH. (-thSEMESTER) MECHANICAL ENGINEERING

    S.

    No.

    Course

    No

    Subjects Teachi! Schedu"e (Hours)

    Credits #uratio o$

    E%a&s.(Hours)

    L T

    '# Tota"

    1 MET-402 Entre)rene$rshi) 3 1 - 4 3.5 3

    2. MET- Electi8e II 3 1 - 4 3.5 3

    3. /)en Electi8e-II 3 1 - 4 3.5 3

    4. MET- 404 #o!er #lantEngineering

    3 1 - 4 3.5 3

    5. MET-40& AorB St$dy Ergonomics

    3 1 - 4 3.5 3

    &. MET-40* Entre)rene$rshi)

    e8. +#ractical,

    - - 2 2 1.0 3

    ". MET-410 #ro@ect-II - - & & '.0 3

    *. MET-411 Seminar - - 2 2 1.0

    '. MET-412 om)rehensi8e

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    B.TECH. Ist/IIndSEMESTER(COMMON TO ALL BRANCHES)

    MET-103 MANUFACTURING PROCESSES

    L T P/D C

    3 1 - 3.!

    C"st#n$Patterns, Materials, Types of allowances, Sand casting: types & properties of moldingsand: Various molding methods: Core and its types. Permanent mould castings. CO casting Centrifugal castings. !ie castings: Shell molding. Plaster molding. "n#estmentcastings. Casting defects & remedies.

    $% Hs%

    P#&"' Mt" *+,#n$ P+sssot and cold forging. ot cold rolling. 'ire drawing and e(tension processes.

    $ Hs%

    Mt" S"#n$ "nd F+n$"ntroduction to shearing, notching. lancing. )ending drawing. Stretching. *m)ossing andcoining operations. Process and their types !ie and punch operations.

    $% s%

    Mt" M"#n#n$ P+sss+athe parts and accessories. Specifications, Turning tools, #arious operations on lathe$turning, taper turning thread cutting drilling )oring -nurling%.

    $% s%

    *d#n$ "nd A#d P+sssClassification of 'elding processes, esistance welding and its types, thermit welding.*lectric are welding metal arc welding, car)on arc welding. Su)merged arc welding.T"/ M"/.'elding. 'elding defects and remedies. Soldering and )ra0ing.

    $ s%

    S#" *d#n$ P+sss

    *lectro stag welding. 1tomic hydrogen welding. Plasma arc welding. 2ltrasonic welding.+aser welding.

    $% s%

    "

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    P"st#s P+ss#n$Plastics. Their types and manufacturing properties. Compression molding and "n3ectionmolding.

    $ s%

    R2n B++,s

    4. Manufacturing Processes )y 5ageman. Manufacturing Materials and Processes )y +indherg6. Principles of Manufacturing Materials )y Comphell7. Manufacturing Science )y 1mita)h /hosh & 8umar Mali-9. 'or-shop Technology )y a0ara, Chowdhary Vol." & "". 'or-shop Technology Vol. "& "" )y aghuwanshi;. Manufacturing Processes )y S 8 Sharma $ " 8 "nternational Pu)lishing ouse

    P#t. +td., !elhi%

    *

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    B. TECH. (4ndSEMESTER)(C+&&+n t+ A B"ns)

    MET-10 ENGINEERING GRAPHICS-II

    L T P/D C - - % 3.0

    C56sConics. Cycloid. *picycloid. ypocycloid. "n#olute. *#olute. Spiral.

    $4 7,s%

    Int-St#+n"nterpenetration of simple solids i.e. prism with prism. Cylinder with cylinder. Cylinder withprism, cone.

    $1 7,%

    F"stnsScrew. Threads and threaded fasteners. i#ets and ri#eted 3oints. 'elds and welded

    3oints. $4 7,s%

    M"#n D"7#n$

    ?ree hand drawing of simple machine parts i.e. cotter 3oint, -nuc-le 3oint and shaftcouplings, pipe fittings and pipe 3oints.

    $4 7,s%

    '

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    R2n B++,s

    4. *ngineering !rawing )y >.!. 5hatt. Machine !rawing )y >.!. 5hatt6. Machine !rawing )y >. Sidheshwar

    7. *ngineering !rawing )y P.S. /ill9. Machine !rawing )y P.S. /ill. ?undamentals of *ngineering !rawing )y +u0adder & !uff $P"%

    10

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-401 THERMOD9NAMICS

    L T P/D C 3 1 - 3.!

    C+nts +2 T&+d'n"s!efinition, Classical and statistical thermodynamics, Macroscopic and microscopicapproaches, thermodynamic system, state, )oundary, surroundings and uni#erse,thermodynamic properties, thermodynamic e=uili)rium, @uasi

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    P+t#s +2 F5#dsProperties of li=uids and #apoursA P

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-403 STRENGTH OF MATERIALS-I

    L T P/D C

    3 1 - 3.!

    S#& Stss "nd St"#nMechanical properties of solids, Concept of stress and strain, >ormal and shear stresses,oo-es law, Principle of St. Venant, Stress$ s%

    T+s#+n +2 #5" s"2tsTor=ue and horse

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    S+ "nd D2t#+n"ntroductionA Macaulays methodA Slope and deflection of cantile#er )eams, simplysupported )eams, fi(ed )eams, continuous )eams and o#erhanging )eams su)3ected topoint loads andEor uniformly distri)uted loadsA Slope and deflection of propped $elasticand rigid% cantile#ers and )eams su)3ected to point loads andEor uniformly distri)uted

    loads. $% s%

    T+' +2 s#&

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-40! MACHINE DRA*ING

    L T P/D C < - 4

    Int+d5t#+n

    "ntroduction of unit assem)ly drawing, Practice in drawing details and assem)ly of simpleunits.

    $1 7,)

    >#$s "nd F#?t5s

    Preparation of assem)ly and details wor-ing drawing of simple 3igs and fi(tures #i0. tailstoc-, tool head of shaper etc.

    $4 7,s)

    ;"6s/ate #al#es, glo)e #al#es, non return #al#e, foot #al#e, )low

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    P5's

    ?lat )elt, V+#nts

    Common types of 3oints, for wrought, C.". and M.S. water and steam pipes.

    (1 7,)

    B"#n$

    Simple solid, )ushed, pedestal, footstep )earings, ".S. con#entional representation of )alland roller )earings, )rac-et and hangers of different types and )rac-et )earings, Plum)er

    )loc- etc.$4 7,s)

    L#ts= F#ts "nd T+"ns

    Sym)ols, ".S. limits, fits and tolerances, !imensioning with tolerances.!. 5hatt, Charotar Pu)s.. Machine !rawing < Sidheshwar, Tata Mc/raw

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-40: PRODUCTION TECHNOLOG9 - I

    L T P/D C 3 1 - 3.!

    Mt" C5tt#n$5asic tool geometry, single point tool nomenclature, Chips< #arious type and theircharacteristics, mechanism of chip formation, Theoretical and e(perimental determinationof shear angle. Orthogonal and o)li=ue metal cutting. Metal cutting theories, relationshipof #elocities, forces and power consumption.

    $ s%

    T++ L#2 "nd *"*ffect of operating parameters li-e tool geometry, cutting speed, feed depth of cut,coolant, materials etc. on force, temp, tool life, surface finish etc. Tool life relationship,TaylorFs e=uation of tool life. Tool materials, flan- wear, crater wear, mechanism of toolwear.

    $% s%

    E+n+s +2 &t" &"#n#n$*lements of machining cost, tooling economics, machining economics and optimi0ation.

    $3 s%

    D##n$ "nd M##n$ P+sss!rilling operation, geometry of twist drills, Thrust, tor=ue and power calculations indrilling. 2p milling down milling, #arious milling operations.

    $% s%

    G#nd#n$ "nd s5 2#n#s#n$ +sss/rinding process, wheel characteristics, specifications, lapping, honing.

    $ s%

    Mt++$'+inear and angular measurements, sine )ar, auto

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    M"#n T++s ;#

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMAT @ 401/404 M"t&"t#s-III

    L T P/D C 3 1 - 3.!

    PART-A@ FINITE DIFFERENCES AND DIFFERENCE EUATIONS

    F#n#t D#22ns?inite differences, !ifference operators, >ewtons forward and )ac-ward interpolationformulae, 5essels formulae and Stirlings formulae, +agranges interpolation formula forune=ual interals, >umerical differtiation, >umerical integration: >ewton

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    PART @ C

    St"t#st#" Mt+dsMethod of +east S=uare and cur#e fitting, Correlation, Coefficient of correlation, an-correlation, egression and lines of egression, 5inomial distri)ution, Poisson

    distri)ution and >ormal distri)ution with their properties and application. ( s)

    O"t#+n" Rs"+inear programming pro)lems formulation, sol#ing linear programming pro)lems usingi% /raphical Methods ii% Simple( Method iii% !ual Simple( Method

    (! s)

    20

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    F#t#+n

    Types of friction, +aws of dry friction, Motion along inclined plane, Screw threads, 'edge,Pi#ots and collars, Plate and cone clutches, 1ntifriction )earings, friction circle and frictiona(is, )earings and lu)rication, Motion along inclined plane and screws, Pi#ots and Collars

    Thrust )earings, Plate and cone clutches, ?riction circle and a(is, Power loss in )earings,5earings lu)rication.$% s%

    C"&s

    Types of cams and followers, #arious motions of the follower, Construction of camprofiles, 1nalysis for #elocities and accelerations of tangent and circular arc cams withroller and flat

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-411 APPLIED MECHANICS

    L T P/D C

    4 1 - 4.!

    C+&+s#t#+n "nd Rs+5t#+n +2 F+s

    "ntroduction, esultant of two forces which are not parallel, resolution of a single forceinto components, a graphical method of determining the resultant of a system of coplanarforces, principle of triangular of forces, +amis theorem.

    $3 s%

    F#t#+n

    ?rictional resistance, angle of friction, angle of repose, laws of friction, cone of friction,e=uili)rium of a )ody on a rough inclined plane.

    $4 s%

    Cnt +2 G"6#t' "nd M+&nt +2 Int#"

    Centre of gra#ity, moment of an area, centroid of a uniform lamina, centroid of laminae of#arious shapes $triangle, circle, semi

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    C+5 M+t#+n +2 R+t"t#+n

    Couples, a couple and its effect on a )ody, angular momentum or moment of momentum. $4 s%

    M+&nt5&= *+, En$'

    "mpulse, principle of conser#ation of momentum, wor- done )y a force of #aryingmagnitudes, transformation of energy, conser#ation of energy, Pile and Pile hammer.

    $ s%

    R2n B++,s

    4. *ngineering Mechanics $!ynamics%, i))eler, Pearson *ducation $Singapore%,P#t. +td.

    . *ngineering Mechanics $Statics%.< i))eler

    6. *ngineering Mechanics: Statics and !ynamics Shames, Prentice

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-413 STRENGTH OF MATERIALS (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. To study the uni#ersal impact testing mEc and to find the impact strength of thegi#en specimen.

    . To study the pendulum type impact testing mEc and to find the impact strengthof gi#en specimen.

    6. To study Vic-er cum 5rinell hardness testing mEc.7. To study oc-well hardness testing mEc and to find the oc-well hardness of

    gi#en specimen.9. To study the *richson cupping mEc and to find the *richson #alue of gi#en

    sheet metal specimen.. To study the 5rinell hardness testing mEc and to find the 5rinell hardness of

    gi#en specimen.;. To study the fatigue testing mEc.G. To study the uni#ersal testing machine $2TM% and to perform tensile test on it.H. To perform compression test on 2TM for a gi#en specimen.4I. To perform shear test on 2TM for a gi#en specimen.44. To determine the #alue of modulus of elasticity of a gi#en specimen using

    e(tensometer on 2TM.4. To perform )ending test on 2TM for a gi#en specimen.46. To study the torsion testing machine and to find the modulus of rigidity,

    torsional strength and modulus of rupture in torsion for a gi#en specimen.47. To study the strut

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    MET-41! PRODUCTION TECHNOLOG9 @ I (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. Study of #arious angles and their utilities of a single point cutting tool and multipoint cutting tools $drills and milling cutter% in 1S1 system.

    . Prepare a 3o) on a lathe ha#ing #arious operations #i0. drilling, )oring, taperturning, thread cutting, -nurling, etc.

    6. Prepare a wooden pattern of the gi#en item considering allowances etc.

    7. Prepare a mould and do casting of the pattern $Sl. >o.6% prepared a)o#e.

    9. Study of linear, angular measuring de#ices and to measure the linear and angulardimensions using #arious e=uipments.

    . Practice welding )y electric arc welding in flat, hori0ontal and #ertical position.

    ;. "ntroduction to weldments testingE"nspection techni=ues and carry outinspectionEtesting.

    G. "ntroduction to turning and drilling dynamometers.

    H. "ntroduction to comparators

    4I. To cut gear teeth on milling machine using di#iding head.

    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERING

    2&

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    MET-41: THERMOD9NAMICS (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. Study of stro-e petrol and diesel engine models.

    . Study of 7

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    B. TECH. (3dSEMESTER) MECHANICAL ENGINEERINGMET-41 APPLIED MECHANICS (PRACTICAL)

    L T P/D C

    - - 4 1L#st +2 E?#&nts

    4. To compare the periodic time JT of a simple pendulum with that indicated )y

    theory and to o)tain the #alue of acceleration due to gra#ity at 8uru-shetra.

    . To determine the Mechanical 1d#antage $M.1.% and Velocity atio $V..% in

    'orm and 'orm 'heel and to plot a graph )etween +oad #s. *fficiency and

    +oad #s. *ffort.

    6. To determine the Modulus of igidity of the material of a closed coiled helical

    spring and the stiffness of the spring.

    7. To #erify the principle of moments using a Moment !is- 1pparatus.

    9. To find the M.1., V.., and the efficiency of a Crane Model.

    . To determine the #alue of the coefficient of friction for a gi#en pair of surfaces

    using the Plane ?riction 1pparatus.

    ;. To #erify the principle of moments using the 5ell Cran- +e#er.

    G. To determine the Modulus of igidity of a ori0ontal Shaft.H. To determine the efficiency of the 'heel and !ifferential 1(le and to plot a

    graph )etween +oad #s. *ffort and +oad #s. *fficiency.

    4I. To #erify the +amis theorem )y 2ni#ersal ?orce Ta)le.

    2*

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-404 MECHANICS OF FLUIDS

    L T P/D C 3 1 - 3.!

    F5#d St"t#s

    Properties of fluid, ?luid pressure, Pascals law, /eneral e=uation of ?luid statics,Pressure head of a fluid, 1)solute and gauge pressure, Measurement of pressure,Simple manometers, !ifferential manometers, Mechanical gauges, ?orced on su)mergedsurfaces: ori0ontal, Vertical, "nclined, Cur#ed, !ams and gates. 5uoyancy: Sta)ility ofsu)merged and floating )odies, !etermination of metacentric height: analytical ande(perimental methods, Oscillation of floating )ody.

    $% s%

    F5#d #n&"t#s

    +agrangian and *ulerian methods, flow lines, types of flow $Steady, unsteady,compressi)le, incompressi)le, ideal, real, uniform, non

    *ulers e=uation, 5ernoullis e=uation, *nergy e=uation, Practical application of5ernoullis e=uation $Venturimeter, Orifice meter, Pitot tu)e%, 8inetic energy andmomentum correction factors $coriolis coefficients%, Momentum e=uation, free li=uid 3et.

    $% s%

    ;#s+5s 2+7

    eynolds e(periments, flow of #iscous fluid in circular pipes, agen

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    T5

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    B.TECH. (tSEMESTER)MECHANICAL ENGINEERINGMET-40 STRENGTH OF MATERIALS - II

    L T P/D C 3 1 - 3.!

    T#, *"d ;sss

    "ntroductionA +ames theoryA +ongitudinal, principal and shear stresses in thic- cylinderssu)3ected to e(ternal and internal pressuresA Variation of radial and hoop stresses withthic-nessA Strains in thic- cylindersA Compound cylindersA Stresses and strains in thic-cylinders su)3ected to high pressuresA 'ire wound thic- cylindersA Stresses and strains inthic- spherical #essels su)3ected to internal and e(ternal pressures.

    $% s%

    R+t"t#n$ D#ss "nd R#n$s

    "ntroductionA Stresses and strains in rotating rims or rings of uniform thic-nessA Stressesand strains in rotating thin solid and hollow discs of uniform thic-nessA Stresses andstrains in rotating thin dis- of uniform strengthA Stresses and strains in rotating solid andhollow cylinders.

    $ s%

    Bnd#n$ O2 C56d B"s

    "ntroductionA Stresses in )ars of initial large radius of cur#atureA Stresses in )ars of initial

    small radius of cur#atureA Stresses in crane hoo-sA Stresses in circular ringsA Stresses insimple chain lin-A Stress distri)ution in a)o#e family of cur#ed )arsA !eflection of cur#ed)arsA !eflection of crane hoo-s, rings, and simple chain lin-s.

    $% s%

    Uns'&&t#" Bnd#n$

    "ntroductionA ?le(ural a(isA Properties of )eam cross

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    S#n$s

    "ntroductionA Stresses and deflections in open coiled helical springs su)3ected to a(ialloads andEor twisting couplesA Stresses and deflection in leaf springs, flat spiral springsAConcentric springs.

    $! s%

    C+5&ns

    "ntroductionA Stresses and deflections in eccentrically loaded straight long columns withdifferent end conditionsA Stresses and deflections in long columns with initial cur#ature fordifferent end conditionsA Stresses and deflection in straight long columns with trans#erseloads for different end conditions.

    $! s%St"#n En$' Mt+d

    "ntroductionA Strain energy and resilienceA Strain energy due to different type loadsA Strainenergy and deflection of )eams due to )ending and shearA Strain energy of shafts intwistingA *nergy methods in determining spring deflectionsA Castiglianos and Ma(wellstheorems and their applications.

    $! s%

    R2n B++,s

    4. Strength of Materials )y amamrutham, !hanpat ai Pu)s.. Strength of Materials )y /..yder, *+5S

    6. Strength of Materials )y Sadhu Singh, 8hanna Pu)s.7. *ngineering Mechanics of Solids )y Popo#, Prentice

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-40% STEAM AND PO*ER GENERATION

    L T P/D C 3 1 - 3.!

    St"& B+#s

    "ntroduction, Classification of )oilers, fire tu)e and water tu)e )oilers, their comparison,description of )oilers. +ancashire, +ocomoti#e, 5a)coc-

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    St"& C+ndnss

    1d#antages of steam condensation, components of condensing plant, types ofcondenser, 1ir lea-age, #acuum efficiency, condenser efficiency, calculation of cooling

    water re=uirements and air pump capacity, air e(traction pumps. $% s%

    R2n B++,s

    4. Steam & /as Tur)ines )y . Dada#, CP. Thermal *ngineering )y 5allaney, 8hanna Pu)lisher6. Thermal *ngineering )y !om-undar & 1rora, !hanpat ai7. *ngineering. Thermodynamics )y P.8. >ag, TM9. Steam Tur)ine Theory & Practice )y 8earton, '.B. Pitman.

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    (C+&&+n t+ " ature of Organisational 5eha#iour,Organisational 5eha#iour and other similar fields of study Psychology,Sociology, 1nthropology, Political Science. 1pproaches to Organisational5eha#iour. Challenges and opportunities for Organi0ational 5eha#iour

    UNIT-II UNDERSTANDING AND MANAGING INDI;IDUAL BEHA;IOUR

    Concept of 5eha#iour, Process of 5eha#iour, ?oundations of "ndi#idual5eha#iour. Values, 1ttitudes and Bo) Satisfaction: "mportance of #alues,Types of #alues. Concept of 1ttitudes, Theories of 1ttitude ?ormation.?actors in 1ttitude ?ormation. 1ttitude Management. Measuring Bo)Satisfaction, the effect of Bo) Satisfaction on *mployee Performance.

    UNIT-III UNDERSTANDING PERSONALIT9 AND PERCEPTION

    Ps+n"#t''hat is PersonalityK Personality Theories, !eterminants of Personality,Personality Traits affecting 5eha#iour.

    Pt#+nConcept of Perception, Perceptual Process, ?actors influencing Perception.

    L"n#n$Concept of +earning, Components of +earning Process, ?actors affecting+earning.

    UNIT-I; UNDERSTANDING AND MANAGING GROUP BEHA;IOUR

    G+5 D'n"s

    Concept of /roup !ynamics, Concept of /roup, ?ormal and "nformal/roups, /roup 5eha#iour.

    C+&&5n#"t#+nConcept of Communication, The Communication Process, 5arriers inCommunication, *ssentials of *ffecti#e Communication

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    L"ds#

    Meaning of +eadership, +eadership Theorieseed ierarchy Theory, ar0)ergs Moti#ationew Dor-%

    6. Organisational 5eha#iour Bit S. Chandan $Vi-as Pu)lishing ouse P#t. +td.%

    7. Organisational 5eha#iour +.M. Prasad $Sultan Chand & Sons, >ew !elhi%

    9. uman elations & Organisational 5eha#iour< .S. !wi#edi $ O(ford, "5%

    . Personnel Management C.5. Mamoria $ imalayan Pu)lications, >ew !elhi%

    3&

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    "ntroduction, factors to cause fatigue failure, stress cycles, S cur#e, fatigue test,theories of fatigue

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    9. Mechanical Metallurgy

    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-410 PRODUCTION TECHNOLOG9 @II

    L T P/D C

    3 1 - 3.!

    Un+n6nt#+n" M"#n#n$ P+sss

    >eed for uncon#entional processes, 2ltrasonic machining, *lectric discharge machining,*lectrochemical machining, *lectrochemical grinding, +aser )eam machining, *lectron)eam machining their mechanism of metal remo#al, process parameters, ad#antages,limitations and applications.

    $ s%

    C"st"n "nd T5t L"t

    +imitations of a center lathe, "ntroduction to Capstan and Turret lathe, 2ni#ersal 5are=uipment, tool layout for simple parts.

    $! s%

    G" M"n52"t5#n$

    Classification of gear production methods, gear generation gear ho))ing, gear shaping,gear finishing methods sha#ing, )urnishing, grinding, lapping, honing.

    $% s%

    Pss *+,#n$ T++s

    "ntroduction, classification of presses, shearing action, cutting forces, clearance and itseffect, shear, angular clearance, stripper, Types of dies Progressi#e, compound andcom)ination, center line of pressure and its mathematical calculation.

    $: s%

    >#$s "nd F#?t5s

    "ntroduction, difference )etween 3ig and fi(ture, principles of location, locating andclamping de#ices, Big )ushes, Milling fi(tures, Turning fi(tures, !ifferent Materials for 3igsand fi(tures, *conomics of Bigs and ?i(tures.

    $% s%

    3'

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    Mt" F+n$

    Metal flow condition, plasticity conditions for plain strain, ?riction conditions in metalwor-ing, 1nalysis of forming processes wire drawing , e(trusion of circular rods, Theoryof forging for plates.

    $ s%

    R2n B++,s

    4. Modern Machining Processes )y Pandey & Shan, Tata Mc /raw ill. Manufacturing Science )y /hosh & Mallic-, 1ffiliated *ast 'est Press.6. Tool !esign )y !onaldson, Mc /raw ill7. Manufacturing Technology:< P.>. ao, Tata Mc /raw ill

    40

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-414 D9NAMICS OF MACHINES

    L T P/D C 3 1 - 3.!

    St"t# F+s #n M"n#s&s

    Static force analysis, Static e=uili)rium, free )ody diagram, 1nalysis of static forces inmechanism.

    $ s%

    D'n" F+s #n M"n#s&s

    !1lem)erts principal, *=ui#alent offset inertia force, !ynamics of reciprocating parts,Piston effort, Cran- effort, *=ui#alent dynamical systems, and "nertia force inreciprocating engines )y graphical and analytical method.

    $ s%

    F'7s

    Turning moment and cran- effort diagrams for single cylinder and multi

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    B",s "nd D'n"&+&ts

    Types of )ra-es, friction )ra-es, e(ternal shoe )ra-es, )and )ra-es, )and and )loc-)ra-es, internal e(panding shoe )ra-e, dynamometers: a)sorption, transmission, andtorsional.

    $ s%

    G+6n+s

    Types of go#ernors: 'att, Porter, Proell, spring loaded centrifugal, "nertia, Sensiti#eness,Sta)ility, "sochronisms, unting, *ffort and power of go#ernor, controlling force.

    $ s%

    G'+s+# M+t#+n

    /yroscope, /yroscopic couple and its effect on aircraft, na#al ships during steering,

    pitching and rolling, Sta)ility of an automo)ile$

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERING MET-41 NUMERICAL METHODS AND COMP. PROG. (PRACT.)

    L T P/D C < < 4 1

    L#st +2 E?#&nts

    The source codes for the following pro)lems are to )e de#eloped )y thestudents and results should )e #erified.

    4. Solution to >ononewtononumerical solution to an ordinary differential e=uation using the *ulers methodG. >umerical solution to an ordinary differential e=uation using the angeumerical solution to an ordinary differential e=uation using the Predictorumerical solution to an ordinary differential e=uation using the *ulers method44. >umerical solution to the +aplace e=uation using the method of ?inite

    !ifferences.

    43

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-41% PRODUCTION TECHNOLOG9 @ II (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. Practice of sla) milling on milling machine.

    . Practice of slotting on milling machine.

    6. "ntroduction to gear ho))ing, ho))er and practice on it.

    7. "ntroduction to #arious grinding wheels and demonstration on the cylindrical

    and surface grinder.

    9. "ntroduction and demonstration on *!M.

    . To carryout welding using su)merged arc welding.

    ;. To carryout welding using M"/ welding set.

    G. "ntroduction to sand, mould testing e=uipments, moisture testing etc.

    H. Study of 1d#anced Manufacturing System

    4I. Study of wire cut *!M mEt

    44. Prepare a Bo) on '*!M

    44

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-41 MECHANICS OF MACHINES (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. To dtermine e(primentally the ratio of the cutting time to idle time $i.e. cuttingtime to idle time $i.e. cutting stro-e to idle stro-e% of the cran- & slotted le#er$@M% and compre the results to theoritical #alues. Plot the following :

    +a, #Es L $displacement of slider%.

    +9, #E s #elocity

    +c, #Es 1cceleration and to compare the #alues of #elocities.

    +d, NTa-e angles 79I, HII, 469I, 9I, ;II& 669I, 4 radEs

    . To determine the #alue of coefficient of friction )etween the screw and nut of the3ac-, while :$a% aising the load$)% +owering the load

    6. To draw e(perimentally a cur#e of the follower displacement #Es cam angle.!ifferentitate the a)o#e cur#e to get #elocity and acceleration plot and comparethe #alues with those o)tained analytically.

    4. To determine the coefficient of friction )etween )elt and pulley and plot a graph

    )etween log4IT4E T#Es .

    9. To determine the displacement, #elocities & accelerations of the dri#en shaft ofoo-es 3oint for a constant speed of the dri#er shaft.

    $a% To determine e(perimentally, the moment of inertia of a flywheel and a(leand compare with theoretical #alues.

    $)% To determine the frictional tor=ue )etween flywheel a(le and )all )earing.

    . To find critical speed e(perimentally and to compare the whirling speed of a shaftwith the theoretical #alues.

    ;. To find e(perimentally the gyroscopic couple on motori0ed gyroscope and

    compare with applied couple.

    G. To perform the e(perimental of )alancing of rotating parts and find the un)alancedcouples and force.

    H. Study of centrifugal go#ernor, automo)lile transmission unit and epicyclical geartrain.

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    B.TECH. (tSEMESTER)MECHANICAL ENGINEERINGCET-440 MECHANICS OF FLUIDS (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. To determine metacentric height of the ship model.

    . To #erify the 5ernoullis theorem.

    6. To determine coefficient of discharge for an Orificemeter.

    7. To determine coefficient of discharge of a #enturimeter.

    9. To determine the #arious hydraulic coefficients of an Orifice $ Cd,Cc,C#%.

    . To determine coefficient of discharge for an Orifice under #aria)le head.

    ;. To cali)rate a gi#en noth.

    G. To determine coefficient of discharge for a mouth piece.

    H. To determine the !arcy 'eis)ach Coefficient of friction for flow through

    commercial pipes.

    4I. To determine critical eynolds num)ers for flow through commercial pi-pes.

    44. To study de#elopment of )oundary layer o#er a flat plate.

    4. To measure the pressure distri)ution around a cylindcer placed in the a0ir

    stream and to calculate the coefficient of drag therefrom.

    46. To study the momentum characteristics of a gi#en 3et.

    4&

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    L5ecessity of

    engine cooling, Cooling systems, 'ater cooling, air cooling, adiators .$! s%

    En$#n Tst#n$ P2+&"n

    Performance parameters, 5P, "P, Mechanical efficiency, 5 M * P, " M * P, tor=ue,#olumetric efficiency 5 S ? C 1nd " S ? C , thermal efficiency, eat )alance, 5asic enginemeasurements: fuel and air consumption, )ra-e power, indicated power and frictionpower, performance cur#es.

    $! s%

    A# P+5t#+n "nd #ts C+nt+

    Sources and classification of air pollution, *ffect on human health, pollutants from "Cengines, methods of emission control, 1lternati#e fuels, current scenario on the pollutionfront. $! s%

    A# +&ss+s

    Single stage reciprocating air compressors, wor- input, #olumetric efficiency, isothermalefficiency, 1d#antages of multi stage compression, Two stage compressor with intercooling, optimum pressure ratio. otary air compressors and their applications.

    $! s%

    G"s T5

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    R#+"t#n$ P5&s'or-ing principles, classification, components, discharge, slip, power input, indicatordiagram, effect of accelerating head and pipe friction, ma(imum speed, air #essels,comparison with centrifugal pumps.

    $ s%

    D#&ns#+n" An"'s#s "nd M+d Tst#n$2nits and dimensions, dimensional homogeneity, dimensional analysis method: ayleighand 5uc-ingham methods, application and limitation of dimensional analysis,dimensionless num)ers, similitude laws, model testing of tur)ine and pumps.

    ( s)

    Ot H'd"5# P5&sPropeller pump, Bet pump, 1irlift pump, /ear pump, Screw pump, Vane pump, adialpiston pump, Su)mersi)le pump, pump pro)lems

    ( s)

    H'd"5# S'st&sydraulic accumulators, hydraulic intensifier, hydraulic lift, hydraulic crane, hydrauliccoupling, tor=ue con#ertor, hydraulic ram. ydraulic #al#es:< chec- #al#e, relief #al#e,speed control #al#e, pressure compensating #al#e, direction control #al#e, ydraulicfilters and piping.

    $ s%

    R2n B++,s

    4. ?luid Mechanics and Machinery < S.8.1grawal, Tata

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 30! HEAT TRANSFER

    L T P/D C

    3 1 - 3.!

    Int+d5t#+n

    !efinition of heatA Modes of eat TransferA 5asic +aws of heat transferA *lectrical 1nalogyof heat conductionA Conduction through composite wallsA O#erall heat transfer coefficient.

    $! s%

    C+nd5t#+n

    The /eneral heat Conduction e=uation in Cartesian, cylindrical and sphericalcoordinatesA steady one dimensional heat conduction without internal heat generation:the plane sla)A the cylindrical shellA the spherical shellA Critical thic-ness of insulationAVaria)le thermal conducti#ity, Steady one dimensional heat conduction with uniforminternal heat generation: the plane sla)A cylindrical and spherical systems. ?ins of uniformcrossewtons law of coolingA con#ecti#e heat transfer CoefficientA>usselt num)erA !imensional analysis of free and forced con#ectionA 1nalytical solutionto forced con#ection pro)lems: the concept of )oundary layerA hydrodynamic and thermal)oundary layerA Momentum and *nergy e=uations for )oundary layer. *(act solution forlaminar flow o#er an isothermal plate using similarity transformation. The integralapproachA integral momentum and energy e=uationsA solution of forced con#ection o#er aflat plate using the integral method. 1nalysis of free con#ectionA go#erning e=uations for#elocity and temperature fields. elation )etween fluid friction and heat transfer,eynolds analogy. !imensionless num)ers: eynolds, Prandtl, >usselt, /rashoff andStanton >um)ers and their significance, eat transfer with change of phaseA >usselt

    theory of laminar film Condensation.$13 s%

    R"d#"t#+n

    51

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 30: INDUSTRIAL ENGINEERING

    L T P/D C3 1 - 3.!

    Int+d5t#+n t+ Ind5st#" En$#n#n$

    !efinition, functions of "ndustrial *ngineering, Origin & de#elopment of factory system,pioneers of scientific management, types production , concept of producti#ity, factorsaffecting producti#ity.

    $ s%

    F"t+' O$"n#"t#+n

    Principles of organi0ation, "mportance and characteristics of organi0ation, Types oforgani0ation

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    P+d5t Ds#$n "nd D6+&nt

    "ntroduction, Product de#elopment, Product characteristics, ole of product de#elopment,6Ss standardi0ation, simplification and speciali0ation. 5rea- e#en analysis,>umerical pro)lems.

    $ s%

    In6nt+' C+nt+

    "ntroduction, ?unctions of in#entory, Types of in#entory, "n#entory Control importance andfunctions, "n#entory costs, ?actors affecting in#entory control, Various in#entory controlmodels, 1 5 C analysis >umerical pro)lems.

    $ s%

    M"t#"s H"nd#n$

    O)3ecti#es , functions & principle of material handling, methods, types of materialhandling e=uipments, factors affecting e=uipment selection. $ s%

    *"$ P"'&nt P"ns

    "ntroduction, ?actors affecting wage rates, Characteristics of good wage plans, #ariousmethods of wage payment< applications and ad#antages, wage incenti#es. $ s%

    P+$"& E6"5"t#+n R6#7 Tn#5s C#t#" P"t Mt+d

    "ntroduction, Terminology used in P.*..T. & C.P.M., !etermination of critical path,

    optimi0ation through C.P.M. Time estimates, ?re=uency distri)ution of completion of anacti#ity. *stimation of Pro3ect completion Time with use of P.*..T. Techni=ue, >umericalpro)lems.

    $ s%

    R2n B++,s

    4. Production Planning and Control )y S. *ilon. Modern Production Management )y S.S. 5uffa6. "ndustrial *ngineering and Operation esearch )y S.8. Sharma & Sa#ita

    Sharma7. "ndustrial *ngineering )y 5. 8umar

    54

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 30 MACHINE DESIGN @ I

    L T P/D C 4 - ! .!

    En$#n#n$ M"t#"s

    Properties: chemical, physical, mechanical and dimensionalA ?errous metals, >onum)ering of e#ents $?ul-ersen ule%, P*T calculations< ?orward path, )ac-ward path, slac-, pro)a)ility, comparison with P*T critical path,?loats, Pro3ect cost, crashing the networ- updating $P*T and CPM%.

    $% s%

    S#&5"t#+n

    "ntroduction, applications of simulation, ad#antages and limitations of simulationtechni=ue, generation of random num)ers, Time

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    D#s#+n An"'s#s

    Steps in decision theory approach, !ecision ma-ing en#ironment, !ecision ma-ingunder certainty and uncertainty, !ecision ma-ing under conditions of ris-, !ecision trees,minimum enchained criteria, 1d#antages and limitations tress solutions, postumerical on single channel and multi channel =ueuing theory.

    $ s%

    G"& T+'

    Theory of games, competiti#e games, ules and Terminology in game Theory, ules forgame theory< saddle point, dominance , mi(ed strategy $ ( games%, mi(ed strategy$ ( n games or m ( games%, mi(ed strategy $6 ( 6 games%, two person 0ero sumgames, n person 0ero sum games.

    $ s%

    R2n B++,s

    4. "ntroduction to Operation esearch )y iller and +ie)erman, Mc /raw.P. +oom)a

    5*

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 313 THERMAL ENGINEERING LAB

    L T P/D C

    - - 4 1

    L#st +2 E?#&nts

    4. To ma-e a trial on single cylinder 7 stro-e !iesel *ngine to calculate 5..P.,S.?.C. and to draw its characteristics cur#es.

    . To ma-e a trial on 7< stro-e high speed diesel engine and to draw its eat5alance Sheet.

    6. To ma-e a trial on 'ileys 3eep *ngine at constant speed to calculate 5..P.,S.?.C., thermal efficiency and to draw its characteristic Cur#es.

    7. To ma-e Morse Test to calculate "P of the multi cylinder petrol engine andto determine its mechanical efficiency.

    9. To calculate the isothermal efficiency and #olumetric efficiency of a

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 31! FLUID MACHINES (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. To study and perform test on the Pelton wheel and to plot cur#es of. p #Es > at full,three atfull, three fourth gate opening.

    3. To study and perform test on the 8aplan Tur)ine and to plot cur#es of P #Es >

    full, three fourth half opening.

    7. To study and perform test on Centrifugal Pump and to plot cur#es .P. #Es @.

    5. To study and perform test on a ydraulic am & to find its an-ine & 1u)ussion

    .

    &. To study and perform test on a eciprocating pump & plot the cur#e of P, #Es .

    ;. To study and perform test on a /ear pump & to plot the cur#es @.P. Vs pressurerise.

    *. To study and perform test on a Tor=ue Con#ertor & to plot the cur#e #s >p.

    &0

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 31: HEAT TRANSFER (PRACTICAL)

    L T P/D C- - 4 1

    L#st +2 E?#&nts

    4. !etermination of thermal conducti#ity of a metal rod

    . !etermination of thermal conducti#ity of an insulating powder

    6. !etermination of thermal conducti#ity of a li=uid using /uard

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERING

    MET- 31 INDUSTRIAL ENGINEERING (PRACTICAL)

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. To study #arious ating ?actor systems and find standard time for ma-ing

    small sand mould.

    . To study #arious plant layouts and suggest impro#ements in e(isting Machines

    Shop layout.

    6. To study and draw organi0ational structure of a near )y industry. To draw L

    and charts for a gi#en sample of products to chec- their acceptance.

    7. To draw p chart for a gi#en product lot and #erify its acceptance.

    9. !raw a flow process chart with time estimates for a simple welding process.

    . !raw a two handed process chart for a simple process of a 3o) preparation on

    a lathe.;. To study #arious purchase procedures and draw organi0ational structure of

    college purchase dept.

    G. 1 case study on 15CE V*! analysis.

    H. 1 case study on @uality "mpro#ement Techni=ues $e.g. ostel MessE

    'or-shopE Canteen etc.%.

    4I. 1 mar-et sur#ey and analysis.

    44. 1 Rpreliminary pro3ect report preparation for any small

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    B.TECH. (!tSEMESTER) MECHANICAL ENGINEERINGMET- 343 ;OCATIONAL TRAINING REPORT

    L T P/D C - - - 3.0

    Student will su)mit summer training $a)out wee-s industrial training% report for

    hisEher assessment.

    &3

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    &4

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    B.TECH. (%tSEMESTER) MECHANICAL ENGINEERINGMET- 304 REFRIGERATION AND AIR CONDITIONING

    L T P/D C

    3 1 - 3.!

    (A) REFRIGERATION

    Int+d5t#+n5asics of heat pump & refrigerator, Carnot refrigeration and heat pump, units ofrefrigeration, COP of refrigerator and heat pump, Carnot COP, "ce refrigeration,e#aporati#e refrigeration, refrigeration )y e(pansion of air, refrigeration )y throttling ofgas, #apour refrigeration system, steam 3et refrigeration, thermo< electric cooling,adia)atic demagneti0ation.

    $ s%

    A# R2#$"t#+n5asic Principle of operation of air refrigeration system, 5ell Coleman air refrigerator,ad#antages of using air refrigeration in air craft, disad#antage of air refrigeration incomparison to other cold producing methods, simple air refrigeration in air craft, simplee#aporati#e type, air refrigeration in air craft, necessity of cooling the air craft .

    ( s)

    S#& ;"+5 C+&ss#+n 2#$"t#+n S'st&Simple #apour compression refrigeration system, different compression processes $wet,dry and saturated Compression, superheated compression%, +imitations of #apour

    compression refrigeration system if used on re#erse Carnot cycle, representation oftheoretical and actual cycle on T

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    (B) AIR CONDITIONING

    Int+d5t#+n!ifference in refrigeration and 1ir Conditioning, Psychrometric properties of moist air

    $we) )ul), dry )ul), dew point temperature, relati#e and specific humidity temperature ofadia)atic saturation%, empirical relation to calculate PV of moist air.$3 s%

    Ps's+&t'Psychrometry chart, construction and use, mi(ing of two air streams, sensi)le heatingand cooling, latent heating and cooling, humidification and dehumidification, cooling withdehumidification, cooling with adia)atic humidification, heating and humidification, 5yature and "mportanceA ?unctions ofPersonnel Management $a% Managerial ?unctions and $)% Operati#efunctions. Bo) 1nalysis: Meaning and "mportanceA Process of Bo)

    1nalysisA Bo) !escription and Bo) specification. uman esource!e#elopment

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    UNIT-;I M",t#n$ M"n"$&nt

    >ature, scope and importance of mar-eting management. ModernMar-eting concepts. ole of mar-eting in economic de#elopment.Mar-eting Mi(. Mar-eting "nformation System. Meaning, nature and scope

    of "nternational Mar-eting.

    R2n B++,s

    4. 5usiness *n#ironment ?rancis Charurilam $imalaya Pu)lishing ouse%.. Management arold, 8oont0 and Cyrilo !onell $Mc /raw ill%6. Principles of Personnel Management *dwin 5. ?lippo $Mc /raw ill %7. Personnel Management and "ndustrial elations !.C. Sharma and .C. Sharma%

    $ SB Pu)lications, Meerut%9. 5asic Mar-eting Cundiff and Still $ P", "ndia %. Mar-eting Management S.1. Sherle-ar $imalaya Pu)lishing ouse 5om)ay%

    ;. Principles and Practice of Management +.M. PrasadG. ?inancial Management ".M. Pandey $ Vi-as Pu)lishing ouse, >ew !elhi%H. "nternational Mar-eting Vorn terpestre and a#i Sasathy.4I. Production Management *.S. 5uffa & '. . Tausart, ichand !. "rwin,

    omewood, "llionis.44. Personnel Management C.5. Mamoria, $imalaya Pu)lishing ouse%

    "2

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    B.TECH. (%tSEMESTER)MECHANICAL ENGINEERINGMET- 30 COMPUTER AIDED DESIGN

    L T P/D C3 4 - .0

    Int+d5t#+n

    "ntroduction to C1!EC1M, istorical de#elopments, "ndustrial loo- at C1!EC1M,"ntroduction to C"M, 5asics of geometric and solid modeling, e(plicit, implicit, intrinsicPolar en#elope and parametric e=uations coordinate systems. Torsion, ?renet

    1lge)raic and geometric forms, 1nalytical and Synthetic Surfaces, tangents and twist#ectors, normal, )lending functions, re

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    S+#ds

    Solid models and representation scheme, ?undamentals of Solid Modeling, )oundaryrepresentation, constructi#e solid geometry, sweep representation, cell decomposition,spatial occupancy enumeration, alf spaces, Octree *ncoding, Pure Primiti#e "nstancing.

    (% s%

    R2n B++,s

    4. C1!EC1M )y /roo#er and Qimmer, Prentice all. C1!EC1M: Theory and Practice )y ". Qeid, Tata Mc/raw ill6. Mathematical *lements for Computer /raphics )y ogers & 1dams, Mc/raw

    ill.

    "4

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    B.TECH. (%tSEMESTER)MECHANICAL ENGINEERINGMET- 310 MACHINE DESIGN - II

    L T P/D C

    4 - % !.0

    . !esign of spur, helical, )e#el and worm gears, gear )o( design including housing.

    (% s%

    /. !esign of flat and V < )elt, chain dri#e, 'ire ropes and Shea#es. ( s%

    3. !esign of single and multiple plate and cone clutches. ( s)

    . !esign of )ra-es. *(ternal and internal shoe type and dis- type. ( s%

    *. !esign of Coil and leaf springs. (3 s)

    +. !esign of hydroorton, Prentice

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    B.TECH. (%tSEMESTER) MECHANICAL ENGINEERINGMET- 31 MECHANICAL ;IBRATIONS

    TRIBOLOG9 (PRACTICAL)

    L T P/D C- - 4 1

    L#st +2 E?#&nts

    4. To study undamped free #i)rations of e=ui#alent spring mass system &determine the natural fre=uency of #i)rations.

    . To study the free #i)rations of the system for different damper settings. !raw

    the decay cur#e and determine the log decrement and damping factor. ?indalso the natural fre=uency.

    6. To study the torsional #i)rations of a single rotor shaft system and todetermine the natural fre=uency.

    7. To determine the two fre=uencies of the torsional spring type dou)lependulum and compare them with theoretical #alues.

    9. To determine the radius of gyration of gi#en )ar )y using 5ifilar suspension.

    . To #erify the !un-erleyFs rule.

    ;. To study the forced #i)rations of the system with damping. Plot magnificationfactor #s. fre=uency and phase angle Vs. fre=uency cur#es. 1lso determinethe damping factor.

    G. To study the pressure distri)ution of a 3ournal )earing using a 3ournal )earingapparatus.

    H. To determine the rate of wear of a metallic plate from the plot of displacement#s. time cur#e )y using friction and wear monitor apparatus.

    4I. To determine a)rasion inde( of a material with the help of a dry a)rasion testrig.

    44. To e#aluate the load wear inde( and the weld point of a lu)ricant with the helpof a four

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    B.TECH. (%tSEMESTER) MECHANICAL ENGINEERINGMET- 31% COMPUTER AIDED DESIGN MANUFACTURING

    (PRACTICAL)

    L T P/D C- - 4 1

    LIST OF EPERIMENTS

    4. To perform ! scaling, reflection, rotation and translation transformations of a

    geometric entity.

    . To perform 6! scaling, reflection, rotation and translation transformations of a

    geometric entity and show its application for a unit cu)e.6. To generate the top, front and side #iews of a truncated cu)e.

    7. To generate isometric pro3ection and apply it to #iew a gi#en o)3ect.

    9. To generate dimetric pro3ection and apply it to #iew a gi#en o)3ect in different

    orientations.

    . To perform single point perspecti#e pro3ection and use it to #iew a truncated cu)e.

    ;. To perform 3oining a set of points in space )y ermite cur#e segments and

    demonstrate the manipulation of cur#e shape )y #arying the geometric conditions.

    G. To generate a 5e0ier cur#e for a gi#en set of control points and demonstrate the

    manipulation of cur#e shape )y #arying the geometric conditions.

    H. To generate a 5

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 01 AUTOMOBILE ENGINEERING

    L T P/D C 3 1 - 3.!

    Int+d5t#+n t+ A5t+&+

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    R5nn#n$ S'st&a% 'heels and rims, Tyre

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 03 MEASUREMENT

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    !efinition, application of measurement instrumentation, functional elements of agenerali0ed measuring system, measuring standards, types of measurement, types ofinput to measuring instruments and instrument system, classification of measuringinstruments, merits and demerits of mechanical measuring systems, comparison ofmechanical measuring system with electrical measuring systems, cali)ration.

    $% s%

    Gn"#d 2+&"n ""t#st#s +2 #nst5&nts

    "ntroduction, types of error, types of uncertainties, propagation of uncertainties incompound =uantity, Static performance parameters: accuracy, precision, resolution, staticsensiti#ity, linearity, hysteresis, dead )and, )ac-lash, and drift., sources of error, selectionof a measuring instruments, mechanical and electrical loading, fundamentals of dynamiccharacteristics, generali0ed mathematical model of measuring systems, types of input,dynamic performance parameters: dynamic error, speed of response, etc, dynamicresponse of a first order mechanical systems with different inputs e.g. step, ramp,sinusoidal and impulse input.

    (14 s%

    St"t#st#" "n"'s#s +2 ?#&nt" d"t"

    "ntroduction, types of measuring data, statistical attri)utes, #arious method ofpresentation, estimation of presentation and uncertainties, confidence le#el, precision andstatistical treatments of single and multi sample type e(perimental data, Chau#enetscriteria of re3ecting a du)ious data, cur#e fitting, )est linear cali)ration and its precision,significant figures and rounding off. O#erall uncertainty estimation of measuring systems,common sense approach, and engineering applications.

    $ s%

    *1

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    T"nsd5s

    "ntroduction, primary function, classification, electrostatic transducers: principle theory,types, ad#antages, and limitations, ?i(ed contact mechano

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 0! STATISTICAL UALIT9CONTROL AND RELIABILIT9

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    @uality 5asic Concepts: "ssues in @uality, factors affecting =uality, creating =uality )ydesign, product de#elopment cycle, economics of =uality, Various definitions, "SOdefinition of =uality and its meanings, and #arious phases till T@M and its meaning toindustries, customers and employees, contri)ution of =uality gurus etc. towards =ualityconcepts. Total @uality management: its scope application and implementation. @ualitycircle: its o)3ecti#es, structure and techni=ues, Varia)ility concept in manufacturing cycle, fish)one diagrams, charts in time philosophy.

    ( s)

    5"#t' C+nt+

    5asic statistical concepts, #arious types of distri)utions, /eneral theory L and chart.!ecision preparatory to the control charts. Trial control limits. Selection of su)

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    R#"

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 0: M"s5&nt (P"t#")

    L T P/D C - - 4 1

    L#st +2 E?#&nts

    4. Study of a strain gage )ased cantile#er )eam and measurement of strain onthe )eam

    . Study of a +V!T and measurement of linear displacement

    6. Study of an inducti#e pic- up and measurement of linear displacement

    7. Study of a +! and measurement of linear displacement

    9. Study of capaciti#e pic- up and measurement of angular displacement

    . Study of temperature transducers and measurement of temperature of fluid

    ;. Study of a +V!T $strain gage )ased% and measurement of lineardisplacement

    G. Study of a tor=ue pic- up and measurement of tor=ue

    H. Study of a pressure pic- up and measurement of pressure of fluid

    4I. Study of load cell and measurement of load with load cell

    44. Study of non

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 0 PRO>ECT @ I

    L T P/D C - - % .!

    The student is e(pected to ta-e up a pro3ect under the guidance of teacher

    from the college. The pro3ect must )e )ased on the mechanical engineering

    pro)lems, which will e(tend full academic session in two parts. The student may )e

    as-ed to wor- indi#idually or in

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 11 SEMINAR - I

    L T P/D C - - 4 -

    The students are re=uired to deli#er a seminar on some emerging areas of Mechanical*ngineering, gi#en as follows:

    C1!EC1MEC1*E?*1

    o)otics

    Machine Vision

    1utomation

    Tri)ology

    C?! *nergy Conser#ation

    1lternate *nergy Sources

    y)rid ?uels

    1d#ances in "C *ngines

    Vehicle !ynamics

    1erodynamics

    1d#anced Manufacturing Techni=ues

    1d#anced *ngineering Materials

    Supply Chain Management

    5usiness Process e

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 13 PRACTICAL TRAINING REPORT

    L T P/D C - - - 3.0

    The students are re=uired to undergo an "ndustrial training of a)out wee-s duration inPu)lic Sector underta-ings, $MT, 5*+, "OC etc.% and pri#ate sectors of repute li-eM2+, ero

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    LIST OF ELECTI;ES AND OPEN ELECTI;ESB. TECH. (:tSEMESTER) MECHANICAL ENGINEERING

    Et#6 @ I

    4. M*T

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    S'"

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    T"d M"n52"t5#n$

    "ntroduction, casting, thread chasing, Thread olling, !ie Threading and Tapping, ThreadMilling, Thread Measurement and "nspection.

    ( s)

    An"'s#s O2 Mt" F+n$ P+sss

    Theoretical )asis of metal forming, classification of metal forming processes, coldforming, hot wor-ing, 'arm wor-ing, *ffect of #aria)les on metal forming processes,Methods of analysis of manufacturing processes, Open !ie forging, olling Powerolling, !rawing, *(trusion.

    (% s%

    D# C"st#n$

    "ntroduction, Product 1pplication, +imitation of !ie Casting, !ie Casting Machines, Moltenmetal "n3ection systems, ot cham)er machines, Cold cham)er machines, !ie casting!esign, !esign of !ie casting !ies, Types of !ie casting !ies, !ie design, !ie material,!ie Manufacture, !ie +u)rication and Coating, Preheating of !ies, Vacuum !ie Casting,ecent trends in !ie Casting Process.

    (% s%

    C+st Est#&"t#+n

    !efinition, Cost accounting or costing, *lements of costing, cost structures, *stimation ofcost elements, Methods of estimating, !ata re=uirements of cost estimating, Steps in

    ma-ing cost estimate, Chief factors in cost estimating, >umerical e(amples, calculation ofmachining times, *stimation of total unit time.(% s%

    R2n B++,s

    4. Principles of Manufacturing )y B.S.Camp)ell, Tata Mc/raw

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 41 FINITE ELEMENT METHOD

    L T P/D C 3 1 - 3.!

    Int+d5t#+n t+ F#n#t E&nt Mt+d

    5asic Concept, istorical )ac-ground, *ngineering applications, general description,Comparison with other methods.

    ( s)

    Int$" F+&5"t#+ns And ;"#"t#+n" Mt+ds>eed for weighted

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 43 COMPUTER GRAPHICS AND PRODUCT DESIGN

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    5asic elements and use of computer, analog and digital principle of simulation,applications, programming software and machine language.

    (10 s)

    D"t" S'st&

    Machine processi)le data, num)er system, alpha umerical Control and Computer 1ided Manufacturing )y 8undra, ao & Tiwari,

    Tata Mc/raw ill

    '4

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 4! GAS D9NAMICS

    L T P/D C 3 1 - 3.!

    R6#7 +2 E&nt"' P#n#s"ntroductionA Thermodynamic concepts for control mass analysisA Comments on *ntropyAPressure energy e=uationA Stagnation conceptA Stagnation pressureA *nergy e=uationAMomentum e=uation. $ s%

    Int+d5t#+n T+ C+&ss#

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    F"nn+ And R"'#$ F+7

    "ntroductionA 1nalysis for general fluidA 'or-ing e=uations for a perfect gasA eference

    state & ?anno ta)lesA 1pplicationsA Correlation with shoc-sA ?riction cho-ingA ayleighflowA 1nalysis for a general fluidA 'or-ing e=uations for a perfect gasA eference stateand ayleigh ta)lesA 1pplicationsA Correlation with shoc-s.

    (% s)

    H#$ T&"t5 G"s D'n"s And M"s5&nts

    "ntroductionA "mportance of highature of high temperature flowsAPressure measurementsA Temperature measurementsA Velocity and directionmeasurementsA !ensity measurements.

    (% s)

    R2n B++,s

    4. /as !ynamics )y *. atha-rishnan. ?undamentals of /as !ynamics )y S. M. Dahya.6. /as !ynamics )y 5ec-er7. ?undamentals of /as !ynamics )y . !. Quc-er

    '&

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET-4 RENE*ABLE ENERG9 RESOURCES

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    "ntroduction and *ssential of ?luid Mechanics and eat Transfer, ?undamentals andscientific principles of renewa)le energy resources, technical and social implications,5ermoulli, e=uation, conser#ation of momentum, #iscosity, tur)ulence, friction in pipeflow, heat circuit analysis and terminology, conducti#e, con#ecti#e and radiati#e heattransfers, properties of transparent materials, heat transfer )y mass transport, multimodeheat transfer and circuit analysis, pro)lems.

    (% s)

    S+" R"d#"t#+n "nd A#"t#+ns +2 S+" H"t*(traterrestrial solar radiation, components of radiation, geometry of earth and sun,geometry of collector and the solar )eam, effects of earths atmosphere, measurementsof solar radiation, calculation of heat )alance for a solar collector, type of water heaters,selecti#e surfaces, crop heaters, space heating, space cooling, water desalination, solarponds, solar concentrators, electric power system, pro)lems.

    (% s)P+t+6+t"# Gn"t#+n"ntroduction, the silicon p

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    *"6 En$' "nd T#d" P+7

    "ntroduction, wa#e motion, wa#e energy and power, wa#e patterns, de#ices, the causesof tides, enhancement of tides flow power, tidal range, power, world tidal power sites,

    pro)lems. (% s)

    OTEC "nd G+t&" En$'

    Principles of Ocean Thermal *nergy Con#ersion $OT*C%, heat e(changers, pumpingre=uirements, other practical considerations, introduction to geothermal energy,geophysics, dry roc- and hot a=uifer analysis, harnessing geothermal resources,pro)lems.

    (% s)

    R2n B++,s

    4. enewa)le *nergy sources )y 3ohn '. Twidell and 1nthony !. 'eir,pu)lished )y *.& ?. >. Spon +td,+ndon.

    ''

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET @ 31 INDUSTRIAL ENGINEERING AND ORGANIATION

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    "ntroduction to industrial engineering, techni=ues and application of industrial engineeringPioneers of Scientific Management.

    ( s)

    S"s F+"st#n$

    "ntroduction, o)3ecti#es and importance Methods: Collecti#e opinion method, *conomicindicator method, and regression analysis, mo#ing a#erage method, time series analysis,>umerical Pro)lems.

    ( s)

    P+d5t#+n P"nn#n$ "nd C+nt+

    O)3ecti#es, functions, preplanning and planning, routing, estimating, scheduling: masterschedule, daily schedule, /antt chart, dispatching centrali0ed #s. decentrali0ed control,

    follow up and progress reporting. ( s)

    In6nt+' +nt+

    "ntroduction, functions, in#entory control importance and functions, in#entory costs,factors affecting in#entory control, 15C analysis, simple in#entory control model,>umerical Pro)lems.

    (% s)

    Inst#+n "nd 5"#t' C+nt+

    "nspection, definition, o)3ecti#es and functions of inspection. @uality control definition ando)3ecti#es, !ifference )etween "nspection and =uality control. Statistical =uality control,=uality control charts >umerical pro)lems.

    ( s)

    100

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    F"t+' O$"n#"t#+n

    Principles of organi0ation, Primary and operating fundamentals of organi0ation, type oforgani0ation, military or line organi0ation, functional organi0ation, line, staff andcommittee, type of organisation.

    ( s)

    *+, St5d' "nd 7+, M"s5&nt

    !efinitions, o)3ecti#es, purpose and scope, method study procedure, Time study,O)3ecti#es of wor- measurement. 5asic procedure for time study.

    (3 s)

    P+d5t Ds#$n "nd D6+&nt

    "ntroduction, product de#elopments, product characteristics,F role of product de#elopment,

    6umericalPro)lems.( s)

    D#"t#+n

    "ntroduction, Purpose of calculating !epreciation, Types. Methods of calculating

    depreciation. >umerical Pro)lems.

    (3 s)

    R2n B++,s

    4. Production planning and control )y S. *ilon, Prentice all. "ndustrial *ngineering and Management )y a#i Shan-ar, /algotia Pu)s.6. "ntroduction to 'or- study )y ++.O.7. "ndustrial *ngg. & Operation Mgt. )y S.8. Sharma & Sa#ita Sharma

    101

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 33 CR9OGENIC ENGINEERING

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    !efinition of cryogenics, physical properties of #arious cryogenic fluids and industrialapplication.

    (% s)

    C'+$n# Ins5"t#+ns

    Types of insulations, #acuum insulation: gas filled powders and fi)rous materials, solidforms, comparison of #arious insulating materials.

    (10 s)

    P+t#s +2 &"t#"s "t +7 t&"t5

    Mechanical properties, specific heat, thermal e(pansion, electrical resistance, thermalconducti#ity, emissi#ity, reflecti#ity and a)sorpti#ity, thermo

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET- 3! INDUSTRIAL NOISE AND CONTROL

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    Scope of acoustics, acoustic wa#es, go#erning e=uation, energy density of acousticplane wa#es, acoustic intensity, acoustic impedance, transmission of sound fromone fluid to the other.

    ( s)

    S+5nd M"s5&nt

    Classification of sound or noise deci)el scale, Sound pressure le#el and intensityle#el, addition of sound le#els, addition of sound le#els, calculation of SP+ and S'+in a room, fre=uency )ands, octa#e )ands, o#erall noise, noise measurementsystems.

    ( s)

    S5+T &*P>+, >oise and num)er inde(,traffic noise inde(, corrected noise le#el, sound le#el monitors, effect of noise onpeople, hearing loss.

    (10 s)

    Est#&"t#+n "nd +nt+ +2 n+#s

    Typical noise le#els in machining, home appliances and construction e=uipments,noise created )y fluid flow through pipes, air

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    R2n B++,s

    4. Vi)ration & noise for engineers )y Pu3ara & Pu3ara, !hanpat ai & sons. Control System Components )y /i)son & Tuteur

    104

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    R2n B++,s

    4. Principles of Planned Maintenance )y . Cliffton, Mc/raw ill.. Maintenance Planning and Control )y 1nthony 8elly, P..*6. and)oo- of Maintenance Management )y eint0elman, P..*.

    7. elia)ility, 1#aila)ility and Maintaina)ility )y ?aster Phillips & ayers, ME1Press.

    10&

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    B.TECH. (:tSEMESTER) MECHANICAL ENGINEERINGMET-3 MACHINE TOOL DESIGN

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    /eneral re=uirements of machine tool engineeringA elements of tool selectionA technoECT-II

    L T P/D C - - %

    The student is e(pected to finish the remaining portion of the pro3ect.

    120

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 11 SEMINAR - I

    L T P/D C - - - 3.0

    Student will gi#e another tal- on some new technical topics

    121

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    LIST OF ELECTI;ES AND OPEN ELECTI;ESB. TECH. (tSEMESTER) MECHANICAL ENGINEERING

    Et#6 @ II

    4. M*Ton Con#entional Manufacturing

    . M*T

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    S'"

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    Ot M"#n#n$ P+sss

    Plasma arc machining, *lectron )eam machining, laser )eam machining, their principlesand metal remo#al mechanism, process parameters, ad#antages and limitations,applications.

    ( s)

    R"#d P+t+t'#n$ P+sss

    ?undamentals, process chain, physics of processes, principles and process mechanismof S+1, S/C, +OM, ?!M and S+S processes, their ad#antages and limitations,applications of P processes, P data formats, ST+ file format, ST+ file pro)lems, ST+file repair, other translators and formats.

    (: s)

    R"#d T++#n$ P+sss

    "ntroduction, fundamentals, classification, indirect T processes, Principles of Siliconeu))er Molding, *po(y Tooling, Spray Metal Tooling, Pattern for "n#estment Casting,Vacuum Casting, and Vacuum forming processes, direct T processes, Shape!eposition manufacturing, their ad#antages, limitations and applications.

    (: s)

    R2n B++,s

    4. Modern machining processes )y P.C. Pandey and .S. Shan, TM.. Machining Science )y /hosh and Malli-, 1ffiliated *ast 'est

    6. >ontraditional Manufacturing processes )y /.?. 5enedict, Marcel !e--er.7. 1d#anced Methods of Machining )y B.1. Mc/eongh, Chapman and all.9. *lectrochemical Machining of Metals )y umyantse# and !a#ydo#, Mir Pu)lis.. apid prototyping: Principles and applications in Manufacturing

    124

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 44 INDUSTRIAL ROBOTICS

    L T P/D C 3 1 - 3.!R+

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 4 RELIABILIT9 ENGINEERING

    L T P/D C 3 1 - 3.!

    M"s5&nt +2 ;"#"

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    R2n B++,s

    4. *ngineering e(periments )y *.O. !oe)elin. Principles of elia)ility )y Pieruseh-a6. Practical elia)ility *ngineering )y Patric- Conner

    12*

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET-4% ENERG9 MANAGEMENT

    L T P/D C 3 1 - 3.!

    P"nn#n$ 2+ En$' M"n"$&nt

    "nertiation phase, audit and analysis phase, implementation phase, general methodologyfor )uilding and site energy audit, site sur#ey, methodology, site sur#ey

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    T E+n+s +2 E22##nt En$' Us

    /eneral consideration, life cycle costing, )rea-

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 30 PIPING ENGINEERING

    L T P/D C

    3 1 - 3.!

    Int+d5t#+n

    5asics of fluid mechanics: #iscosity, pressure, head, and hydraulic gradient, types of fluidflow, eynolds num)er, *ulers e=uation of motion, continuity e=uation, 5ernoullise=uation, /as laws and compressi)ility factor.

    ( s)

    H'd"5# Ds#$n C+ns#d"t#+ns

    !etermination of pipe si0e and pressure losses, thrusts in pipe line, water hammer inpipeline, design of gas pipeline, measurement of flow in pipes, Transportation of solidmaterials through pipelines.

    ( s)

    Mt"5$' +2 P##n$ M"t#"s

    Selection of materials, physical properties of pipe materials, recommended pipe materials(4 s)

    P#s "nd P# 2#tt#n$s

    Standards and specifications, steel pipes, steel pipe fittings, cast iron pipes, cast ironfittings, 3oining of cast iron pipes, tu)es of other materials, design of flanges and flanged

    3oints.( s)

    P# S5+ts

    +oad on structural supports, supporting structures of pipeline, pipe supports designconsiderations, platforms and ladders, foundation, supporting span of o#erhead pipe line,stiffening ri)s, pipe clamping and supporting de#ices, fle(i)le hanger supports.

    (% s)

    ;"6s "nd A#d F#tt#n$s

    Val#es, function of #al#es, #al#e materials and method of construction, pressure drop in#al#es, #al#e si0e, Types of #al#es, #al#e fittings.

    $ s%

    131

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    P##n$ F"

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 34 TOTAL UALIT9 MANAGEMENT

    L T P/D C 3 1 - 3.!

    C+nt +2 5"#t'

    Products and ser#ices, =uality of products and ser#ices, definition of =uality, dimensionsof =uality and their measure.

    ( s)

    C5st+&-S5# C"#n

    Concept of e(ternal and internal customer, concepts of process and models of process,customer and supplier re=uirements, customer orientation.

    (% s)

    5"#t' M"n"$&nt P"t#s

    Various approaches to control and management of =uality,: inspection oriented, statisticalprocess control oriented, assurance oriented and T@M oriented approaches.

    ( s)

    C+st +2 5"#t'

    Producti#ity and =uality relationship, concept of cost of =uality, cost of conformance,pre#ention, appraisal and failure cost, internal and e(ternal failures, =uality costestimation in engineering and ser#ice industries.

    ( s)

    O$"n##n$ 2+ 5"#t'

    Company wide organi0ation for =uality management, pre#ention, control andimpro#ement, continuous impro#ement process.

    ( s)

    133

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    H5&"n Asts #n M"n"$&nt +2 5"#t'

    Commitment, moti#ation, and in#ol#ement for =uality,top management, management andwor-er participation, 0ero defects, =uality circle, small group acti#ity.

    (% s)

    R2n B++,s

    4. Total @uality Management )y Suresh Modi. Total @uality Control )y 1rmand ?eigen)aum6. "n pursuit of @uality )y !a#id urchings

    134

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 3 FLUIDICS

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    'or-ing principles and static characteristics of different type of fluid amplifier #i0. )iew Dor-.7. ?luidics )y Su)hir 8ar

    135

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 3 MANAGEMENT INFORMATION S9STEM

    L T P/D C 3 1 - 3.!

    T &"n#n$ "nd + +2 MIS

    'hat is M"SK !ecision support systems, systems approach, the systems #iew of)usiness, M"S, M"S organi0ation within the company management organi0ational theoryand the systems approach. !e#elopment of organi0ational theory, management andorgani0ational )eha#iour, management information and the system approach.

    ( s)

    S'st&s 2+ d#s#+n &",#n$

    *#olution of an information systems, )asic information systems, decision ma-ing andM"S, M"S as a techni=ue for ma-ing programmed decision assisting informationsystems,strategic and pro3ect planning for M"S : /eneral )usiness planning, appropriateM"S planning

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 0 ;ALUE ENGINEERING

    L T P/D C 3 1 - 3.!

    Int+d5t#+nValue engineering concepts, ad#antages, applications, pro)lem recognition, and role inproducti#ity impro#ement, criteria for comparison, element of choice.

    ( s)

    An"'s#s +2 25nt#+n1natomy of the function, use esteem and e(change #alues, )asic #s. secondary #s.unnecessary functions.

    ( s)

    ;"5 En$#n#n$ Tn#5sSelecting products and operation for V* action, timing V* programmes, determining ande#aluating function$s% assigning rupee e=ui#alents, de#eloping alternate means tore=uired functions, decision ma-ing for optimum alternati#e, use of decision matri(,=ueuing theory and Monte Carlo method, ma-e or )uy, measuring profits, reportingresults, follow

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- 4 PNEUMATICS H9DRAULICS CONTROL

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    ydraulic systems, pneumatic systems, uses of fluid power, fluid power at wor-, standardsym)ols for hydraulic & pneumatic components 1>S /raphical sym)ols compositesym)ols.

    (3 s)

    Pss5 B++sts

    Pressure applied in one direction, pressure applied in )oth directions, pressure appliedand intensified in directions, ad#antages of pressure )ooters installation, causes of failureof )oosters, maintenance.

    (3 s)

    A# C+&ss+s "nd Ass+#s

    Positi#e displacement or pressure type reciprocating compressors, #elocity or dynamictype compressors, location and installation, air inta-e, after cooler, air recei#ers, safety#al#es, compressor regulators or controls, planning a compressed air plant, compressor

    selection.( s)

    H'd"5# F5#ds

    Petroleum )ase fluids, synthetic )ase fluids, =uantity re=uirement, maintenance, selectionof hydraulic fluid, specific weight, #iscosity, Say

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    A# F#ts Pss5 R$5"t+s L5

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- AIR POLLUTION AND ITS CONTROL

    L T P/D C 3 1 - 3.!

    Int+d5t#+n

    Meteorological o)ser#ations and instruments, 5eanfort scale of wind force, compositionof air, types of pollutants and their characteristics, source of pollutants, automo)ilee(hausts, smog pollution,, rudiments of air pollution meteorology, thermal in#ersion, lapserates, stac- emissions, plume types.

    (14 s)

    P"nn#n$ +2 "# +5t#+n S56'

    O)3ecti#e of monitoring, sampling stations for am)ient air, their num)er and locations,sampling criteria, sampling e=uipments and methodology for set and suspended particlesSO, >OL, sulphation and o(idants, iso-inetic sampling for point source, stac- sampling,principles of operation of >!" instruments for CO and C.

    (14 s)

    At&+s# t"ns+t +2 +5t"nts

    1tmospheric sta)ility analysis, dispersion models, topographic effects, stac-s emissions.

    ( s)

    A

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    B.TECH. (tSEMESTER) MECHANICAL ENGINEERINGMET- % PROCESS EUIPMENT DESIGN

    L T P/D C 3 1 - 3.!

    Pss5 ;sss

    Types of #essels and factors influencing the design of #essel, classification of #esselssuch as tan-, flat, )ottomed and #ertical cylinder tan-, #ertical cylindrical and hori0ontal#essels with formed ends as well as spherical or modified spherical #essels.

    (14 s)

    Ds#$n C+ns#d"t#+ns

    Criteria in #essel design, elastic )ending, and plastic insta)ility, cyclic load stressre#ersals, )rittle rupture and creep rupture corrosion.

    ( s)

    Ds#$n +2 S#& ;sss

    !esigns of simple #essels of different configurations, general proportions and layout,#ents, tapping and flanges.

    (10 s)