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Past Year Questions: Fatigue Strength And S-N Diagram - Mechanical Engineering MCQ


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10 Questions MCQ Test - Past Year Questions: Fatigue Strength And S-N Diagram

Past Year Questions: Fatigue Strength And S-N Diagram for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Past Year Questions: Fatigue Strength And S-N Diagram questions and answers have been prepared according to the Mechanical Engineering exam syllabus.The Past Year Questions: Fatigue Strength And S-N Diagram MCQs are made for Mechanical Engineering 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Past Year Questions: Fatigue Strength And S-N Diagram below.
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Past Year Questions: Fatigue Strength And S-N Diagram - Question 1

A ductile material having an endurance limit of 196 N/mm2 and the yield point at 294 N/mm2 is stressed under variable load. The maximum and minimum stresses are 147 N/mm2 and 49 N/mm2. The fatigue stress concentration factor is 1.32. The available factor of safety for this loading is

[1987]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 1

Consider Soderberg equation


FOS = 1.5

Past Year Questions: Fatigue Strength And S-N Diagram - Question 2

Stress concentration in a machine component of a ductile material is not so harmful as it is in a brittle material because

[1989]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 2

Local yielding reduces stress concentration effect.

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Past Year Questions: Fatigue Strength And S-N Diagram - Question 3

The process of shot peening increases the fatigue life of steel springs mainly because it results in

[1990]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 3

Shot preening increases fatigue life of springs

Past Year Questions: Fatigue Strength And S-N Diagram - Question 4

The yield strength of a steel shaft is twice its endurance limit. Which of the following torque fluctuations represent the most critical situation according to Soderberg criterion?

[1993]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 4


τa is highest in (a)

Past Year Questions: Fatigue Strength And S-N Diagram - Question 5

A static load is mounted at the centre of a shaft rotating at uniform angular velocity. This shaft will be designed for

[2002]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 5

Shaft will be designed for fatigue loading.

Past Year Questions: Fatigue Strength And S-N Diagram - Question 6

Which one of the following is the most conservation fatigue failure criterion?

[2015, Set-1]

Past Year Questions: Fatigue Strength And S-N Diagram - Question 7

In terms of theoretical stress concentration factor kt and fatigue stress concentration factor kt, the notch sensitivity q is expressed as

[2004]

Past Year Questions: Fatigue Strength And S-N Diagram - Question 8

The S-N curve for steel becomes asymptotic nearly at

[2004]

Past Year Questions: Fatigue Strength And S-N Diagram - Question 9

A cylindrical shaft is subjected to an alternating stress of 100 MPa. Fatigue strength to sustain 1000 cycles is 490 MPa. If the corrected endurance strength is 70 MPa, estimated shaft life will be

[2006]

Detailed Solution for Past Year Questions: Fatigue Strength And S-N Diagram - Question 9

By concept of straight line,

At y = 2
⇒ x = 5.4501
log10N = 5.4501, N = 281914

Past Year Questions: Fatigue Strength And S-N Diagram - Question 10

Endurance limit of a beam subjected to pure bending decreases with

[2019 , Set 2]

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