2. The composite shaft of total length 1.8 m consists of 5 mm thick brass and is fixed to a 30 mm diameter steel bar. The composite subjected to the total torque of 565 Nm. (Ggr = 39 GPa and Gsg = 77 GPa) 1S m -Brass jacket 30 mm Steel core 5 mm Figure Q4.2: A composite shaft Determine the following: a. Maximum shearing stress in the brass. b. Maximum shearing stress in the steel. c. Angle of twist of end B relative to end A.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter3: Torsion
Section: Chapter Questions
Problem 3.7.3P: A motor driving a solid circular steel shaft with diameter d = 1.5 in, transmits 50 hp to a gear at...
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2. The composite shaft of total length 1.8 m consists of 5 mm thick brass and is fixed to a 30
mm diameter steel bar. The composite subjected to the total torque of 565 Nm. (Gar = 39
GPa and Gst = 77 GPa)
1.8 m
- Brass jacket
30 mm
Steel core
5 mm
Figure Q4.2: A composite shaft
Determine the following:
a. Maximum shearing stress in the brass.
b. Maximum shearing stress in the steel.
c. Angle of twist of end B relative to end A.
Transcribed Image Text:2. The composite shaft of total length 1.8 m consists of 5 mm thick brass and is fixed to a 30 mm diameter steel bar. The composite subjected to the total torque of 565 Nm. (Gar = 39 GPa and Gst = 77 GPa) 1.8 m - Brass jacket 30 mm Steel core 5 mm Figure Q4.2: A composite shaft Determine the following: a. Maximum shearing stress in the brass. b. Maximum shearing stress in the steel. c. Angle of twist of end B relative to end A.
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