A compound shaft consists of a titanium alloy [G = 6,200 ksi] tube (1) and a solid stainless steel [G = 11,500 ksi] shaft (2). Tube (1) has a length of L1 = 44 in., an outside diameter of D1 = 2.15 in., and a wall thickness of t1 = 0.130 in. Shaft (2) has a length of L2 = 68 in. and a diameter of d2 = 1.55 in. If an external torque of TB = 520 lb·ft acts at pulley B in the direction shown, calculate the torque TC required at pulley C so that the rotation angle of pulley C relative to A is zero.
A compound shaft consists of a titanium alloy [G = 6,200 ksi] tube (1) and a solid stainless steel [G = 11,500 ksi] shaft (2). Tube (1) has a length of L1 = 44 in., an outside diameter of D1 = 2.15 in., and a wall thickness of t1 = 0.130 in. Shaft (2) has a length of L2 = 68 in. and a diameter of d2 = 1.55 in. If an external torque of TB = 520 lb·ft acts at pulley B in the direction shown, calculate the torque TC required at pulley C so that the rotation angle of pulley C relative to A is zero.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A compound shaft consists of a titanium alloy [G = 6,200 ksi] tube (1) and a solid stainless steel [G = 11,500 ksi] shaft (2). Tube (1) has a length of L1 = 44 in., an outside diameter of D1 = 2.15 in., and a wall thickness of t1 = 0.130 in. Shaft (2) has a length of L2 = 68 in. and a diameter of d2 = 1.55 in. If an external torque of TB = 520 lb·ft acts at pulley B in the direction shown, calculate the torque TC required at pulley C so that the rotation angle of pulley C relative to A is zero.
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