A compound shaft consists of two pipe segments. Segment (1) has an outside diameter of 216 mm and a wall thickness of 10 mm. Segment (2) has an outside diameter of 124 mm and a wall thickness of 14 mm. The shaft is subjected to torques Tg = 34 kN-m and Tc 15 kN-m, which act in the directions shown. Determine the maximum shear stress magnitude in segment (2).

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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A compound shaft consists of two pipe segments. Segment (1) has an outside diameter of 216 mm and a wall thickness of 10 mm.
Segment (2) has an outside diameter of 124 mm and a wall thickness of 14 mm. The shaft is subjected to torques Tg = 34 kN-m and Tc =
15 kN-m, which act in the directions shown. Determine the maximum shear stress magnitude in segment (2).
(1)
O 62.5 MPa
O 80.7 MPa
O 85.3 MPa
O 73.5 MPa
O 66.2 MPa
Transcribed Image Text:A compound shaft consists of two pipe segments. Segment (1) has an outside diameter of 216 mm and a wall thickness of 10 mm. Segment (2) has an outside diameter of 124 mm and a wall thickness of 14 mm. The shaft is subjected to torques Tg = 34 kN-m and Tc = 15 kN-m, which act in the directions shown. Determine the maximum shear stress magnitude in segment (2). (1) O 62.5 MPa O 80.7 MPa O 85.3 MPa O 73.5 MPa O 66.2 MPa
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