fatigue analysis problem solution : basquin's law

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FATIGUE ANALYSIS : PROBLEM 6.9 SOLUTION MUHAMMAD JOSHUA YB 1406563866 DEPARTMENT OF METALLURGY AND MATERIALS

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Contoh soal dan pembahasan tentang materi Basquin's Law

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Page 1: Fatigue Analysis Problem Solution : Basquin's Law

FATIGUE ANALYSIS : PROBLEM 6.9 SOLUTIONMUHAMMAD JOSHUA YB1406563866DEPARTMENT OF METALLURGY AND MATERIALS

Page 2: Fatigue Analysis Problem Solution : Basquin's Law

APPLICATION OF BASQUIN’S LAW

= constant• ≈ cycles

0.07 < b < 0.13

Page 3: Fatigue Analysis Problem Solution : Basquin's Law

QUESTION

Cyclic fatigue of an aluminum alloy showed it failed under a stress range σ = 280 MPa after 105 cycles, and for a range 200 MPa after 107 cycles. Using Basquin’s law, estimate the life of

the component subjected to a stress range of 150 MPa.

Page 4: Fatigue Analysis Problem Solution : Basquin's Law

SOLUTION 1

• 1 = 280 • 2 = 200• 1 = • 2 =

= (

Page 5: Fatigue Analysis Problem Solution : Basquin's Law

=

= (

= b

= 0.073

Page 6: Fatigue Analysis Problem Solution : Basquin's Law

• = 150 Mpa ; Nf ?

= = 5 X 10^8 Cycles

= constant = 648.775

Page 7: Fatigue Analysis Problem Solution : Basquin's Law
Page 8: Fatigue Analysis Problem Solution : Basquin's Law
Page 9: Fatigue Analysis Problem Solution : Basquin's Law

SOLUTION 2

• Jika A dan b diketahui

∆𝜎 (𝑁𝑓 )𝑏

Page 10: Fatigue Analysis Problem Solution : Basquin's Law
Page 11: Fatigue Analysis Problem Solution : Basquin's Law

• Sf = 200 ; Nf = 10^7• A = Sf / • = 200 / 10^(7 x -0.117)• = 1318.3

Page 12: Fatigue Analysis Problem Solution : Basquin's Law

• Sf = 150 MPa; Nf = ?

• = 1.2 x 10^8

• Note : Result difference due to the differences of laboratory condition fatigue limit and nature condition fatigue limit

Page 13: Fatigue Analysis Problem Solution : Basquin's Law

REFERENCES

• Meyers, Marc . 1998. Mechanical Behavior Of Materials , Second Edition . Cambringer.• ocw.mit.edu, lecture’s Notes• Institute technology Of India, lecture’s Notes (Ocean

Structures Engineering)• Smallman , R.E. 1998 . PHYSICAL METALLURGY And

ADVANCED MATERIAL ENGINEERING. Prentice Hall.