1. The solid line shaft in Fig. I is made of steel and transmits the input power of 35 kW at pulley C to pulleys A and B. Pulley A power.output is 15 kW and that of pulley B is 20 kW. Determine the...

11. The solid line shaft in Fig. I is made of steel and transmits the input power of 35 kW at pulley C to pulleys<br>A and B. Pulley A power.output is 15 kW and that of pulley B is 20 kW. Determine the maximum shear<br>stress in the bar of Fig. 1. What is the angular twist or deformation of point C relative to point A? Assume<br>G = 80.6 GPa.<br>15 kW (output)<br>20 kW (output)<br>35 kW (laput)<br>200 rpm<br>d,-40 mm<br>d-70 mm<br>-2m<br>Fig. 1: TCD of bar<br>

Extracted text: 1. The solid line shaft in Fig. I is made of steel and transmits the input power of 35 kW at pulley C to pulleys A and B. Pulley A power.output is 15 kW and that of pulley B is 20 kW. Determine the maximum shear stress in the bar of Fig. 1. What is the angular twist or deformation of point C relative to point A? Assume G = 80.6 GPa. 15 kW (output) 20 kW (output) 35 kW (laput) 200 rpm d,-40 mm d-70 mm -2m Fig. 1: TCD of bar

Jun 11, 2022
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