A solid constant-diameter shaft is subjected to the torques shown in the figure. The bearings shown allow the shaft to turn freely. a) Plot a torque diagram showing the internal torque in segments (1), (2), and (3) of the shaft. b) If the ultimate shear stress in the shaft is 320MPa and the F.S. of 4, determine the minimum acceptable diameter for the shaft. 110 N-m 330 N-m

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A solid constant-diameter shaft is subjected to the torques
shown in the figure. The bearings shown allow the shaft to turn
freely.
a) Plot a torque diagram showing the internal torque in
segments (1), (2), and (3) of the shaft.
b) If the ultimate shear stress in the shaft is 320MPA and the F.S.
of 4, determine the minimum acceptable diameter for the shaft.
110 N-m
330 N-m
380 N-m
(1)
160 N-m
(2)
(3)
B
Transcribed Image Text:A solid constant-diameter shaft is subjected to the torques shown in the figure. The bearings shown allow the shaft to turn freely. a) Plot a torque diagram showing the internal torque in segments (1), (2), and (3) of the shaft. b) If the ultimate shear stress in the shaft is 320MPA and the F.S. of 4, determine the minimum acceptable diameter for the shaft. 110 N-m 330 N-m 380 N-m (1) 160 N-m (2) (3) B
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