5-48 A 1-in, constant diameter shaft, is loaded with forces at A and B as shown, with ground reaction forces at O and C. The shaft also transmits a torque of 1500 lbf in through- out the length of the shaft. The shaft has a tensile yield strength of 50 kpsi. Determine the minimum static factor of safety using (a) the maximum-shear-stress failure theory. (b) the distortion-energy failure theory. Problem 5-48 12 in 460 lbf A 18 in 575 lbf 1500 lbf-in B -10 in
5-48 A 1-in, constant diameter shaft, is loaded with forces at A and B as shown, with ground reaction forces at O and C. The shaft also transmits a torque of 1500 lbf in through- out the length of the shaft. The shaft has a tensile yield strength of 50 kpsi. Determine the minimum static factor of safety using (a) the maximum-shear-stress failure theory. (b) the distortion-energy failure theory. Problem 5-48 12 in 460 lbf A 18 in 575 lbf 1500 lbf-in B -10 in
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Transcribed Image Text:5-48 A 1-in, constant diameter shaft, is loaded with forces at A and B as shown, with ground
reaction forces at O and C. The shaft also transmits a torque of 1500 lbf in through-
out the length of the shaft. The shaft has a tensile yield strength of 50 kpsi. Determine
the minimum static factor of safety using
(a) the maximum-shear-stress failure theory.
(b) the distortion-energy failure theory.
Problem 5-48
12 in
460 lbf
A
18 in
575 lbf
1500 lbf-in
B
-10 in
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