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In a flat belt drive the belt can be subjected to a maximum tension T and centrifugal tension Tc .What is the condition for transmission of maximum power?   
  • a)
    T = Tc  
  • b)
    T = √3Tc  
  • c)
    T = 2Tc  
  • d)
    T =3 Tc
Correct answer is option 'D'. Can you explain this answer?
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Condition for maximum power transmission:- 
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Condition for transmission of maximum power in a flat belt drive

The condition for transmission of maximum power in a flat belt drive is when the tension T and centrifugal tension Tc are in a specific ratio.

Formula for maximum power transmission

The formula for maximum power transmission is given by P = (T-Tc) × V, where P is power, T is tension, Tc is centrifugal tension, and V is belt velocity.

Condition for maximum power transmission

To achieve maximum power transmission, the tension T and centrifugal tension Tc should be in the ratio of 3:1. Therefore, the correct option is D, T = 3Tc.

Explanation

When the tension T and centrifugal tension Tc are in the ratio of 3:1, the maximum power is transmitted through the belt. This is because the centrifugal force acting on the belt is counterbalanced by the tension T.

If the tension T is equal to Tc, the belt will slip, and no power will be transmitted. If T is less than Tc, the belt will fly off the pulley, and if T is greater than 3Tc, the belt will stretch, resulting in power loss.

Therefore, the tension ratio of 3:1 is the optimal condition for maximum power transmission in a flat belt drive.
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In a flat belt drive the belt can be subjected to a maximum tension T and centrifugal tension Tc .What is the condition for transmission of maximum power? a)T = Tc b)T = √3Tc c)T = 2Tc d)T =3 TcCorrect answer is option 'D'. Can you explain this answer?
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