Q2 / A solid steel [G= 80 GPa] shaft of variable diameter is subjected to the torques shown in Figure. The diameter of the shaft in segments (1) and (3) is 50 mm, and the diameter of the shaft in segment (2) is 80 mm. The bearings shown allow the shaft to turn freely. (a) Determine the maximum shear stress in the compound shaft. (b) Determine the rotation angles of pulleys B,C and D with respect to pulley A.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Q2 / A solid steel [G= 80 GPa] shaft of variable diameter is subjected to
the torques shown in Figure. The diameter of the shaft in segments (1)
and (3) is 50 mm, and the diameter of the shaft in segment (2) is 80 mm.
The bearings shown allow the shaft to turn freely.
(a) Determine the maximum shear stress in the compound shaft.
(b) Determine the rotation angles of pulleys B,C and D with
respect to pulley A.
500 N-m 4,500 N-m
(1)
2,800 N-m
(2)
1,200 N-m
(3)
0.70 m
1.80 m
D
0.70 m
Transcribed Image Text:Q2 / A solid steel [G= 80 GPa] shaft of variable diameter is subjected to the torques shown in Figure. The diameter of the shaft in segments (1) and (3) is 50 mm, and the diameter of the shaft in segment (2) is 80 mm. The bearings shown allow the shaft to turn freely. (a) Determine the maximum shear stress in the compound shaft. (b) Determine the rotation angles of pulleys B,C and D with respect to pulley A. 500 N-m 4,500 N-m (1) 2,800 N-m (2) 1,200 N-m (3) 0.70 m 1.80 m D 0.70 m
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