A 1.10-in-diameter solid shaft is subjected to an axial force of P = 1800 lb, a horizontal shear force of V = 260 lb, and a concentrated torque of T = 2100 lb-in., acting in the directions shown. Assume L = 3.3 in. Section properties for the shaft areA = 0.9503 in.?,J = 0.1437 in., Iy, = 1, = 0.0719 in.“, and Q = 0.1109 in.3. Determine the normal and shear stresses at point H, and show these stresses on a stress element. y H K T P. V

Structural Analysis
6th Edition
ISBN:9781337630931
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Chapter2: Loads On Structures
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A 1.10-in.-diameter solid shaft is subjected to an axial force of P = 1800 lb, a horizontal shear force of V = 260 lb, and a concentrated
torque of T = 2100 lb-in., acting in the directions shown. Assume L = 3.3 in. Section properties for the shaft areA = 0.9503 in.?,J =
0.1437 in., Iy, = 1, = 0.0719 in.“, and Q = 0.1109 in.3. Determine the normal and shear stresses at point H, and show these stresses on a
stress element.
H
K
T
P.
V
Transcribed Image Text:A 1.10-in.-diameter solid shaft is subjected to an axial force of P = 1800 lb, a horizontal shear force of V = 260 lb, and a concentrated torque of T = 2100 lb-in., acting in the directions shown. Assume L = 3.3 in. Section properties for the shaft areA = 0.9503 in.?,J = 0.1437 in., Iy, = 1, = 0.0719 in.“, and Q = 0.1109 in.3. Determine the normal and shear stresses at point H, and show these stresses on a stress element. H K T P. V
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