A stepped steel shaft is fixed to a wall at one end and subjected to torsion and axial loading as shown. The torque T=100 kip-in. Find the state of stress for two locations on the shaft: one between A and B and one between B and C. For each location, calculate the principal stresses and directions (i.e. the value of the angle 0). Draw the state of stress aligned with the principal directions. 12 in. 15 in. 27 T A 6 in. B. 4 in. 125 kip

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A stepped steel shaft is fixed to a wall at one end and subjected to torsion and axial
loading as shown. The torque T=100 kip-in. Find the state of stress for two locations
on the shaft: one between A and B and one between B and C. For each location,
calculate the principal stresses and directions (i.e. the value of the angle 0). Draw the
state of stress aligned with the principal directions.
12 in.
15 in.
2T
A 6 in.
B
4 in.
C
125 kip
Transcribed Image Text:A stepped steel shaft is fixed to a wall at one end and subjected to torsion and axial loading as shown. The torque T=100 kip-in. Find the state of stress for two locations on the shaft: one between A and B and one between B and C. For each location, calculate the principal stresses and directions (i.e. the value of the angle 0). Draw the state of stress aligned with the principal directions. 12 in. 15 in. 2T A 6 in. B 4 in. C 125 kip
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