302. Two solid shafts of different materials are rigidly fastened together and attached to rigid supports as shown in Fig. 3-4. The aluminum segment is 75 mm in diameter, and G, = 28 x 10° N/m?. The steel segment has a diameter of 50 mm and G, 83 x 10° N/m². The torque, T 1000 N m, is applied at the junction of the two segments. Compute the maximum shearing stress developed in the assembly. %3D %3D %3D

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter1: Tension, Compression, And Shear
Section: Chapter Questions
Problem 1.3.17P: A stepped shaft ABC consisting of two solid, circular segments is subjected to torques T}and...
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302. Two solid shafts of different materials are rigidly fastened
together and attached to rigid supports as shown in Fig. 3-4. The
aluminum segment is 75 mm in diameter, and G, 28 X 10° N/m2.
The steel segment has a diameter of 50 mm and G, 83 x 10° N/m².
The torque, T 1000 N. m, is applied at the junction of the two
segments. Compute the maximum shearing stress developed in the
assembly.
%3D
%3D
3 m
1.5 m
Ta
Aluminum
Steel
T=1.0 kN m
75 mm dia.
Ga 28 GN/m2
50 mm dia
G, = 83 GN/m2
न
Transcribed Image Text:302. Two solid shafts of different materials are rigidly fastened together and attached to rigid supports as shown in Fig. 3-4. The aluminum segment is 75 mm in diameter, and G, 28 X 10° N/m2. The steel segment has a diameter of 50 mm and G, 83 x 10° N/m². The torque, T 1000 N. m, is applied at the junction of the two segments. Compute the maximum shearing stress developed in the assembly. %3D %3D 3 m 1.5 m Ta Aluminum Steel T=1.0 kN m 75 mm dia. Ga 28 GN/m2 50 mm dia G, = 83 GN/m2 न
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