A countershaft carrying two V-belt pulleys is shown in the figure. Pulley A receives power from a motor through a belt with the belt tensions shown. The power is transmitted through the shaft and delivered to the belt on pulley B. Assume the belt tension on the loose side at Bis 15 percent of the tension on the tight side. For the steel countershaft shown in the figure below, find the slope of the shaft at each bearing. Use superposition with the deflection equations in Table A-9. Assume the bearings constitute simple supports. In the figure shown below, Tx= 305 N, Ty= 45.75 N, and the diameter of the shaft (dshaft) is 20.4 mm. 300 450 400 Ts 250 dia. - 300 dia. dshaft Dimensions in millimeters. The slope at bearing O is rad. The slope at bearing C is rad.

Elements Of Electromagnetics
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A countershaft carrying two V-belt pulleys is shown in the figure. Pulley A receives power from a motor through a belt with the belt
tensions shown. The power is transmitted through the shaft and delivered to the belt on pulley B. Assume the belt tension on the
loose side at Bis 15 percent of the tension on the tight side. For the steel countershaft shown in the figure below, find the slope of the
shaft at each bearing. Use superposition with the deflection equations in Table A-9. Assume the bearings constitute simple supports.
In the figure shown below, Tx= 305 N, Ty= 45.75 N, and the diameter of the shaft (dshaft) is 20.4 mm.
300
450
400
Ts
250 dia.
- 300 dia.
dshaft
Dimensions in millimeters.
The slope at bearing O is
rad.
The slope at bearing C is
rad.
Transcribed Image Text:A countershaft carrying two V-belt pulleys is shown in the figure. Pulley A receives power from a motor through a belt with the belt tensions shown. The power is transmitted through the shaft and delivered to the belt on pulley B. Assume the belt tension on the loose side at Bis 15 percent of the tension on the tight side. For the steel countershaft shown in the figure below, find the slope of the shaft at each bearing. Use superposition with the deflection equations in Table A-9. Assume the bearings constitute simple supports. In the figure shown below, Tx= 305 N, Ty= 45.75 N, and the diameter of the shaft (dshaft) is 20.4 mm. 300 450 400 Ts 250 dia. - 300 dia. dshaft Dimensions in millimeters. The slope at bearing O is rad. The slope at bearing C is rad.
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