Homework #6 Problem 1. A steel alloy core is bonded firmly to the copper tube to form the shaft shown. The materials have the shear stress-strain diagrams are shown in the figure. a) If the total applied torque is 15 kN.m, determine the torque resisted by the core and tube. b) What is the maximum elastic torque that can be applied to the shaft? What is the corresponding maximum shear strain in the shaft? c) What is the maximum torque that one can apply to the shaft? 100 m 60 mm +(MPa) 180 450 mm 15 KN-m 0.0024 (MPa) Steel Alloy 36 0.002 Copper Alloy (rad) y (rad)

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Homework #6
Problem 1. A steel alloy core is bonded firmly to the copper tube to form the shaft shown. The
materials have the shear stress-strain diagrams are shown in the figure.
a) If the total applied torque is 15 kN.m, determine the torque resisted by the core and tube.
b) What is the maximum elastic torque that can be applied to the shaft? What is the
corresponding maximum shear strain in the shaft?
c) What is the maximum torque that one can apply to the shaft?
100 m
60 mm
+(MPa)
180
450 mm
15 KN-m
0.0024
(MPa)
Steel Alloy
36
0.002
Copper Alloy
(rad)
y (rad)
Transcribed Image Text:Homework #6 Problem 1. A steel alloy core is bonded firmly to the copper tube to form the shaft shown. The materials have the shear stress-strain diagrams are shown in the figure. a) If the total applied torque is 15 kN.m, determine the torque resisted by the core and tube. b) What is the maximum elastic torque that can be applied to the shaft? What is the corresponding maximum shear strain in the shaft? c) What is the maximum torque that one can apply to the shaft? 100 m 60 mm +(MPa) 180 450 mm 15 KN-m 0.0024 (MPa) Steel Alloy 36 0.002 Copper Alloy (rad) y (rad)
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