Find the maximum transverse shear stress value. Find the maximum bending stress σb Find the maximum normal stress and the maximum shear stress developed in the shaft
Find the maximum transverse shear stress value. Find the maximum bending stress σb Find the maximum normal stress and the maximum shear stress developed in the shaft
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
- Find the maximum transverse shear stress value.
- Find the maximum bending stress σb
- Find the maximum normal stress and the maximum shear stress developed in the shaft

Transcribed Image Text:B
b
C.
a
N.A.
R.
D.
F
'P
Perspective view
9 kN/m
Side view
%3D
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)

Transcribed Image Text:Side view
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
%3D
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)
If the beam is made of material that has modules of
elasticity E = 200GPA, shear modulus G = 77GPA,
Poisson ration 0.3 = v, and a yielding stress of
600MPA.
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