A composite shaft is made of slipping a bronze tube of 3-in. outer diameter and 2-in. inner diameter over a solid ste shaft of the same length and 2-in. diameter. The two components are fastened rigidly together at their ends. What the largest torque that can be carried by the composite shaft if the working shear stresses are 10 ksi for bronze an 14 ksi for the steel? If the hollow tube is made out of steel and the solid shaft is made out of bronze, what is th largest torque that can be carried by the composite shaft if the same working shear stresses are applied? For bronz G = 6 x 10° psi, and for steel, G = 12 x 10°.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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2. A composite shaft is made of slipping a bronze tube of 3-in. outer diameter and 2-in. inner diameter over a solid steel
shaft of the same length and 2-in. diameter. The two components are fastened rigidly together at their ends. What is
the largest torque that can be carried by the composite shaft if the working shear stresses are 10 ksi for bronze and
14 ksi for the steel? If the hollow tube is made out of steel and the solid shaft is made out of bronze, what is the
largest torque that can be carried by the composite shaft if the same working shear stresses are applied? For bronze,
G = 6 x 10° psi, and for steel, G = 12 x 10°.
Transcribed Image Text:2. A composite shaft is made of slipping a bronze tube of 3-in. outer diameter and 2-in. inner diameter over a solid steel shaft of the same length and 2-in. diameter. The two components are fastened rigidly together at their ends. What is the largest torque that can be carried by the composite shaft if the working shear stresses are 10 ksi for bronze and 14 ksi for the steel? If the hollow tube is made out of steel and the solid shaft is made out of bronze, what is the largest torque that can be carried by the composite shaft if the same working shear stresses are applied? For bronze, G = 6 x 10° psi, and for steel, G = 12 x 10°.
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