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Centrifugal tension in belts
  • a)
    reduces power transmission
  • b)
    increases power transmission
  • c)
    does not affect power transmission
  • d)
    increase power transmission at high speed and decreases it at lower speed
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
Centrifugal tension in beltsa)reduces power transmissionb)increases po...
Centrifugal Tension in Belts
Centrifugal tension in belts is a force that occurs due to the rotation of the belt when it is transmitting power. This tension is caused by the centrifugal force acting on the belt as it moves around pulleys at high speeds.

Effect on Power Transmission
- Reduces Power Transmission: Centrifugal tension in belts actually reduces power transmission efficiency. This is because the tension in the belt causes it to stretch and slip, leading to energy losses.
- Increased Slippage: The increased tension can result in increased slippage between the belt and the pulleys, which in turn reduces the amount of power that can be effectively transmitted.
- Energy Losses: The energy losses due to centrifugal tension can result in decreased efficiency and performance of the belt drive system.
Therefore, it is important to consider and minimize centrifugal tension in belt drives to ensure optimal power transmission efficiency.
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Centrifugal tension in beltsa)reduces power transmissionb)increases power transmissionc)does not affect power transmissiond)increase power transmission at high speed and decreases it at lower speedCorrect answer is option 'A'. Can you explain this answer?
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