The copper pipe [G = 8,000 ksi] has an outside diameter of 3.625 in. and a wall thickness of 0.250 in. The pipe is subjected to a uniformly distributed torque of t= 95 lb-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c = 8.5 ft, determine (a) the maximum shear stress in the pipe. (b) the rotation angle @c at the free end of the shaft. b В C Answers: ksi (а) Tmax - i 0.27224 rad (b) Pc = i 0.04238

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The copper pipe [G = 8,000 ksi] has an outside diameter of 3.625 in. and a wall thickness of 0.250 in. The pipe is subjected to a
uniformly distributed torque of t= 95 lb-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c = 8.5 ft, determine
(a) the maximum shear stress in the pipe.
(b) the rotation angle @c at the free end of the shaft.
b
В
C
Answers:
ksi
(а) Tmax - i
0.27224
rad
(b) Pc = i
0.04238
Transcribed Image Text:The copper pipe [G = 8,000 ksi] has an outside diameter of 3.625 in. and a wall thickness of 0.250 in. The pipe is subjected to a uniformly distributed torque of t= 95 lb-ft/ft along its entire length. Using a = 2.0 ft, b = 4.0 ft, and c = 8.5 ft, determine (a) the maximum shear stress in the pipe. (b) the rotation angle @c at the free end of the shaft. b В C Answers: ksi (а) Tmax - i 0.27224 rad (b) Pc = i 0.04238
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