The radius of the pulley is 200 mm, and it is mounted on a shaft of 20-mm radius. The coefficient of static friction between the pulley and shaft is u. What is the largest force Fg that can be applied without causing the pulley to turn? Neglect the weight of the pulley.

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter7: Dry Friction
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Problem 7.8P: The brake pads at C and D are pressed against the cylinder by the spring BF. The coefficient of...
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The radius of the pulley is 200 mm, and it is mounted on a shaft of 20-mm radius.
The coefficient of static friction between the pulley and shaft is u. What is the
largest force Fg that can be applied without causing the pulley to turn? Neglect the
weight of the pulley.
FB
40°
Given: µ=0.18 and FA=200 N
Answer in 3 decimals and in Newtons
Transcribed Image Text:The radius of the pulley is 200 mm, and it is mounted on a shaft of 20-mm radius. The coefficient of static friction between the pulley and shaft is u. What is the largest force Fg that can be applied without causing the pulley to turn? Neglect the weight of the pulley. FB 40° Given: µ=0.18 and FA=200 N Answer in 3 decimals and in Newtons
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