Mechanics of Materials (10th Edition)
10th Edition
ISBN: 9780134319650
Author: Russell C. Hibbeler
Publisher: PEARSON
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Textbook Question
Chapter 10.7, Problem 10.91P
The internal loadings at a critical section along the steel drive shaft of a ship are calculated to be a torque of 2300 lb · ft, a bending moment of 1500 lb · ft, and an axial thrust of 2500 lb, If the yield points for tension and shear are σY = 100 ksi and τY = 50 ksi, respectively, determine the required diameter of the shaft using the maximum shear stress theory.
Prob. 10−91
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A rod is made from two segments: AB is steel and BC is brass. It is fixed at its ends and subjected to a torque of T = 725 N-m. The steel portion has a diameter of 30 mm. Assume the support reactions at the walls will be the same.
Gst = 75GPa, Gbr = 39 GPa
Part A
Determine the absolute maximum shear stress in the steel shaft.
Express your answer to three significant figures and include appropriate units.
μÅ 3
Tabs = Value
max
Submit Request Answer
Units
?
1.60 m
0.75 m
The A992 steel shaft has a diameter of 75 mm and is fixed at its ends A and B. The
subjected to the
shear modulus of elasticity for the material is 75 GPa. The shaft
torques shown in the figure below. (Figure 1)
Figure
500 N.m
O
1 m
200 N-m
D
1.5 m
1 m
< 1 of 1
Part A
Determine the absolute maximum shear stress in the shaft.
Express your answer to three significant figures and include the appropriate units.
Tabs max =
Submit
Provide Feedback
Value
Request Answer
Units
?
Chapter 10 Solutions
Mechanics of Materials (10th Edition)
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