A simple torsion-bar spring is shown. The shear stress in the steel [G = 11,500 ksi] shaft is not to exceed 9600 psi, and the vertical deflection of joint D is not to exceed 0.650 in. when a load of P = 2800 lb is applied. Neglect the bending of the shaft and assume that the bearing at C allows the shaft to rotate freely. Determine the minimum diameter required for the shaft. Use dimensions of a = 62 in., b = 22 in., and c = 24 in. a b Answer: d= B in.

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Chapter10: Plate Girders
Section: Chapter Questions
Problem 10.7.9P
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A simple torsion-bar spring is shown.  The shear stress in the steel [G = 11,500 ksi] shaft is not to exceed 9600 psi, and the vertical deflection of joint D is not to exceed 0.650 in. when a load of P = 2800 lb is applied.  Neglect the bending of the shaft and assume that the bearing at C allows the shaft to rotate freely.  Determine the minimum diameter required for the shaft.  Use dimensions of a = 62 in., b = 22 in., and c = 24 in.

A simple torsion-bar spring is shown. The shear stress in the steel [G = 11,500 ksi] shaft is not to exceed 9600 psi, and the vertical
deflection of joint D is not to exceed 0.650 in. when a load of P = 2800 lb is applied. Neglect the bending of the shaft and assume that
the bearing at C allows the shaft to rotate freely. Determine the minimum diameter required for the shaft. Use dimensions of a = 62
in., b = 22 in., and c = 24 in.
a
b
Answer:
d =
C
B
in.
Transcribed Image Text:A simple torsion-bar spring is shown. The shear stress in the steel [G = 11,500 ksi] shaft is not to exceed 9600 psi, and the vertical deflection of joint D is not to exceed 0.650 in. when a load of P = 2800 lb is applied. Neglect the bending of the shaft and assume that the bearing at C allows the shaft to rotate freely. Determine the minimum diameter required for the shaft. Use dimensions of a = 62 in., b = 22 in., and c = 24 in. a b Answer: d = C B in.
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