Mechanical Engineering Exam  >  Mechanical Engineering Tests  >  Past Year Questions: Static, Dynamic Loading And Failure Theories - Mechanical Engineering MCQ

Past Year Questions: Static, Dynamic Loading And Failure Theories - Mechanical Engineering MCQ


Test Description

20 Questions MCQ Test - Past Year Questions: Static, Dynamic Loading And Failure Theories

Past Year Questions: Static, Dynamic Loading And Failure Theories for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Past Year Questions: Static, Dynamic Loading And Failure Theories questions and answers have been prepared according to the Mechanical Engineering exam syllabus.The Past Year Questions: Static, Dynamic Loading And Failure Theories MCQs are made for Mechanical Engineering 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Past Year Questions: Static, Dynamic Loading And Failure Theories below.
Solutions of Past Year Questions: Static, Dynamic Loading And Failure Theories questions in English are available as part of our course for Mechanical Engineering & Past Year Questions: Static, Dynamic Loading And Failure Theories solutions in Hindi for Mechanical Engineering course. Download more important topics, notes, lectures and mock test series for Mechanical Engineering Exam by signing up for free. Attempt Past Year Questions: Static, Dynamic Loading And Failure Theories | 20 questions in 20 minutes | Mock test for Mechanical Engineering preparation | Free important questions MCQ to study for Mechanical Engineering Exam | Download free PDF with solutions
Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 1

Torque to weight ratio for a circular shaft transmitting power is directly proportional to the

[1991]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 1

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 2

A large uniform plate containing a rivet hole subjected to uniform uniaxial tension of 95 MPa.
The maximum stress in the plate is

[1992]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 2

1 Crore+ students have signed up on EduRev. Have you? Download the App
Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 3

The outside diameter of a hollow shaft that is twice its inside diameter the ratio of its torque carrying capacity to that of a solid shaft of the same material and the same outside diameter is

[1993]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 3


By dividing (1) with (2)

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 4

Two shafts A and B are made of the same material. The diameter of shaft B is twice that of shaft A The ratio of power which can be transmitted by shaft A to that of shaft B is

[1994]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 4

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 5

A solid shaft can resist a bending moment of 3.0 kNm and a twisting moment of 4.0 kNm together, then the maximum torque that can be applied is

[1996]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 5

Maximum tensile stress due to bending,
ft = M/Z

Maximum shear stress due to torsion, fs = TR/J

When both the stress acts simultaneously, maximum induced shear stress,

Maximum torque that can be applied,

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 6

A pin jointed uniform rigid rod of weight W and length L is supported horizontally by an external force F as shown in the figure below.


The force F is suddenly removed. At the instant of force removal, the magnitude of vertical reaction developed at the support is

[2013]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 6



∴ Linear acceleration at centre

∴ Inertial force at centre = 3/4 W 
∴ Reaction at support

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 7

If σ1 and σ3 are the algebraically largest and smallest principal stresses respectively, the value of the maximum shear stress is

[2018, Set-1]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 7

Maximum shear stress = Radius of Mohr’s Circle (for plane stress condition)

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 8

A carpenter glues a pair of cylindrical wooden logs by bonding their end faces at an angle of θ = 30° as shown in the figure.

The glue used at the interface fails if
Criterion 1 : the maximum normal stress exceeds 2.5 MPa
Criterion 2 : the maximum shear stress exceeds 1.5 MPa
Assume that the interface fails before the logs fail. When a uniform tensile stress of 4 MPa is applied, the interface

[2018, Set-1]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 8

Normal stress on inclined plane
σ = σx cos2θ
= 4 × cos2 30 = 3 MPa
Shear stress on inclined plane

= 2 × sin 60° = 1.73 MPa
Since both the stress exceeds the given limits, answer is option (c).

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 9

A thin spherical pressure vessel of 200 mm diameter and 1 mm thickness is subjected to an internal pressure varying from 4 to 8 MPa.Assume that the yield, ultimate, and endurance strength of material are 600,800 and 400 MPa respectively. The factor of safety as per Goodman's relation is

[2007]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 9

Stress induced,

σ2max = 400 MPa
σ2min = 200 MPa
σ1m = 300 MPa
σ1a = 100 MPa
σ2m = 300 MPa
σ2a = 100 MPa
Equivalent stress are as follows:

Similarly, σae = 100 MPa
From Goodman equation,

= n = 1.6

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 10

The piston rod of diameter 20 mm and length 700 mm in a hydraulic cylinder is subjected to a compressive force of 10 kN due to the internal pressure. The end conditions for the rod may be assumed as guided at the piston end and hinged at the other end. The Young's modulus is 200 GPa. The factor of safety for the piston rod is

[2007]

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 11

A forged steel link with uniform diameter of 30 mm at the centre is subjected to an axial force that varies from 40 kN in compression to 160 kN in tension. The tensile (Su), yield (Sy) and corrected endurance (Se) strengths of the steel material are 600 MPa, 420 MPa and 240 MPa respectively. The factor of safety against fatigue endurance as per Soderberg's criterion is

[2009]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 11

Fatigue endurance, σen = 240 MPa

Soderberg’s equation is



or   h = 1.45

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 12

A bar is subjected to fluctuating tensile load from 20 kN to 100 kN. The material has yield strength of 240 MPa and endurance limit in reversed bending is 160 MPa. According to the Soderberg principle, the area of cross-section in mm2 of the bar for a factor of safety of 2 is

[2013]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 12

Soderberg criteria is:


A = 1000 mm2

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 13

For the given fluctuating fatigue load, the values of stress amplitude and stress ratio are respectively

[2015, Set-3]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 13


Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 14

Consider the schematic of a riveted lap Joint subjected to tensile load F, as shown below.
Let d be the diameter of the rivets, and Sf be the maximum permissible tensile stress in the plates. What should be the minimum value for the thickness of the plates to guard against tensile failure of the plates? Assume the plates to be identical.

[2017, Set-1]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 14

Tensile stress

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 15

In the design of shafts made of ductile materials subjected to twisting moment and bending moment, the recommended theory of failure is

[1988]

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 16

A small element at the critical section of a component in biaxial state of stress with the two principal stresses being 360 MPa and 140 MPa. The maximum working stress according to distortion energy theory is

[1997]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 16

According to distortion energy theorem

 = 314.32 MPa

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 17

Which theory of failure will you use for aluminium components under steady loading is

[1998]

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 18

Which one of the following is not correct?

[2014, Set-3]

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 19

Consider the two states of stress as shown in configurations I and II in the figure below.
From the standpoint of distortion energy (vonMises) criterion, which one of the following statements is true?

[2014, Set-2]

Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 20

A machine element is subjected to the following bi-axial state of stress; σx = 80 MPa; σy = 20 MPa; τxy = 40 MPa. If the shear strength of the material is 100 MPa, the factor of safety as per Tresca's maximum shear stress theory is

[2015, Set-1]

Detailed Solution for Past Year Questions: Static, Dynamic Loading And Failure Theories - Question 20


Information about Past Year Questions: Static, Dynamic Loading And Failure Theories Page
In this test you can find the Exam questions for Past Year Questions: Static, Dynamic Loading And Failure Theories solved & explained in the simplest way possible. Besides giving Questions and answers for Past Year Questions: Static, Dynamic Loading And Failure Theories, EduRev gives you an ample number of Online tests for practice

Top Courses for Mechanical Engineering

Download as PDF

Top Courses for Mechanical Engineering