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    Reinforced Concrete Desi n I

    Dr. Nader Okasha

    Lecture 0

    Syllabus

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    Reinforced Concrete Design

    nstructor r. a er as a.

    Email [email protected]

    ce ours s nee e .

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    Reinforced Concrete Design

    s course s on y o ere or stu ents w ohave passed strength of materials.

    you on t meet t s cr ter a you w not e

    allowed to continue this course.

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    Reinforced Concrete Design

    References:

    Building Code Requirements for Reinforced Concrete and

    commentary (ACI 318M-08). American Concrete Institute,

    .

    Design of Reinforced Concrete. 7th edition, McCormac, J.C.

    an e son, . ., .

    Reinforced Concrete Design. By Dr. Sameer Shihada.

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    Reinforced Concrete Design

    Additional references (internationally recognized books inreinforced concrete design):

    Reinforced Concrete, A fundamental Approach. Edward Nawy.

    Design of Concrete Structure. Nilson A. et al.

    . .

    Reinforced Concrete: Mechanics and Design.James K. Wight,

    . .

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    Reinforced Concrete Design

    Desi n is an anal sis of trial sections. The stren th

    of each trial section is compared with the expected

    load effect.

    The load effect on a section is determined usinstructural analysis and mechanics of materials.

    The strength of a reinforced concrete section isdetermined usin the conce ts tau ht in this class.

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    Reinforced Concrete Design

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    Reinforced Concrete Design

    Course outline

    ee op c

    Introduction:

    1- .-Introduction to reinforced concrete.

    -Load types, load paths and tributary areas.

    -Design philosophies and design codes.

    Analysis and design of beams for bending:-Analysis of beams in bending at service loads.

    -Strength analysis of beams according to ACI Code.

    -, , .

    -Design of T and L beams.-Design of doubly reinforced beams.

    4 Design of beams for shear.

    .

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    Reinforced Concrete Design

    Course outline

    Week Topic

    6

    ribbedslabs.

    .

    7,8 Bond, development length, splicing and bar cutoff.

    8,9 Design of isolated footings.

    9 Staircase design.

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    Reinforced Concrete Design

    Course work: 20%

    -Homework 4%-Attendance 4%

    -Project 12% .

    erm exam-

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    Reinforced Concrete Design

    Mid-term exam:

    Only one A4 cheat-sheet is allowed.Necessary figures and tables will be provided with the exam forms.

    Final exam:

    Open book.

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    Reinforced Concrete Design

    Show all our assum tions and work details. Pre are neat

    sketches showing the reinforcement and dimensions.

    Markin will consider rimaril neatness of resentation

    completeness and accuracy of results.

    You may get the HW points if you copy the solution from

    other students. However, you will have lost your chance in

    practicing the concepts through doing the HW. This will leadyou to loosing points in the exams, which you could have

    gained if you did your HWs on your own.

    No late HWs will be accepted. Homework solutions will be

    posted on upinar immediately after the submission deadline.

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    Reinforced Concrete Design

    -

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    Reinforced Concrete Design

    .

    .

    .

    answering the cell-phone) unless a previous permission isranted.

    Violation of disci line rules ma have ou dismissed fromclass and jeopardize your participation points.

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    Reinforced Concrete Design

    .

    A collectivel missed class will be made u either on a

    Thursday or during the discussion lecture.

    An absence from a lecture will loose you attendance points,

    and the lecture will not be repeated for you. You are on your

    own. You may use the lecture videos.

    .

    .being there or not paying attention.

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    Reinforced Concrete Design

    ,

    , , ,

    Area (Ac,Ag,As): mm2

    3

    Force (P,V,N): N

    .

    Stress (fy, fc): N/mm2 = MPa = 106N/m2

    2 s

    Distributed load per unit length (wu): N/mm

    2 u Weight per unit volume (): N/mm3

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    R i f d C t D i

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    Reinforced Concrete Design

    2 3

    1 m2 = 104 cm2 = 106 mm2

    3 6 3 9 3

    1 kN = 103N

    6 . .

    1 kN/m2 = 10-3N/mm2

    3 -6 3

    You MUST specify the unit of each result you obtain

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    R i f d C t D i

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    Reinforced Concrete Design

    .

    .

    - .

    .

    .

    Reinforced Concrete Design

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    Reinforced Concrete Design