Two solid shafts are connected by the gears shown. Using G = 11.2 × 106 psi, determine the strain energy of each shaft when a(n) 6- kip-in. torque T is applied at D. The radius of gear C is 2.5 in. and the radius of gear B is 4 in. 2.25 in. 16 in. 4 in. 2.5 in. 2 in. 24 in. The strain energy of the shaft AB is in-lb. The strain energy of the shaft CD is in-lb. D T
Two solid shafts are connected by the gears shown. Using G = 11.2 × 106 psi, determine the strain energy of each shaft when a(n) 6- kip-in. torque T is applied at D. The radius of gear C is 2.5 in. and the radius of gear B is 4 in. 2.25 in. 16 in. 4 in. 2.5 in. 2 in. 24 in. The strain energy of the shaft AB is in-lb. The strain energy of the shaft CD is in-lb. D T
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kip-in. torque T is applied at D. The radius of gear C is 2.5 in. and the radius of gear B is 4 in.
2.25 in.
16 in.
4 in.
2.5 in.
2 in.
24 in.
The strain energy of the shaft AB is
in-lb.
The strain energy of the shaft CD is
in-lb.
D
T"
Transcribed Image Text:Two solid shafts are connected by the gears shown. Using G = 11.2 × 106 psi, determine the strain energy of each shaft when a(n) 6-
kip-in. torque T is applied at D. The radius of gear C is 2.5 in. and the radius of gear B is 4 in.
2.25 in.
16 in.
4 in.
2.5 in.
2 in.
24 in.
The strain energy of the shaft AB is
in-lb.
The strain energy of the shaft CD is
in-lb.
D
T
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