The coefficient of static friction between the brake band and the rim of the wheel in the figure is H, 0.30. If a force P = 200 N is applied to the handle of the bell crank, determine: 900 mm 1) The maximum torque M (in N-m) that can be resisted so that the flywheel does not rotate 400 mm clockwise, 100 mm B 2) The tensile force (in N) in the cable attached at point A so that the flywheel does not rotate clockwise. 3) The tensile force (in N) in the cable attached at 300 mm point C so that the flywheel does not rotate clockwise.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The coefficient of static friction between the brake
band and the rim of the wheel in the figure is H,
0.30. If a force P = 200 N is applied to the handle of
the bell crank, determine:
900 mm
1) The maximum torque M (in N-m) that can be
resisted so that the flywheel does not rotate
400 mm
clockwise,
100 mm
B
2) The tensile force (in N) in the cable attached at
point A so that the flywheel does not rotate
clockwise.
3) The tensile force (in N) in the cable attached at
300 mm
point C so that the flywheel does not rotate
clockwise.
Transcribed Image Text:The coefficient of static friction between the brake band and the rim of the wheel in the figure is H, 0.30. If a force P = 200 N is applied to the handle of the bell crank, determine: 900 mm 1) The maximum torque M (in N-m) that can be resisted so that the flywheel does not rotate 400 mm clockwise, 100 mm B 2) The tensile force (in N) in the cable attached at point A so that the flywheel does not rotate clockwise. 3) The tensile force (in N) in the cable attached at 300 mm point C so that the flywheel does not rotate clockwise.
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