avast2
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If the tensions are the same on both sides, the net friction is zero.avast2 said:I have a question about friction between pulley and rope?
Does anyone know how to calculate friction between pulley and rope
I enclosed an example picture
Thank you!
A.T. said:If the tensions are the same on both sides, the net friction is zero.
I was assuming a massless rope.DrStupid said:You may assume zero friction in theory but in reality there is at least static friction. With equal tension all around the pulley I would expect it to be
##F_f \le \frac{\pi }{2} \cdot \mu \cdot F_0##
where ##F_0## is the total force acting on the pulley.
For a practical case, this may help you:avast2 said:I have a question about friction between pulley and rope?
Does anyone know how to calculate friction between pulley and rope
A.T. said:I was assuming a massless rope.
I was referring to the situation as given in the OP's diagram, with equal forces on both rope ends. I agree that this is not realistic, but this assumption implies zero net effect of friction.DrStupid said:I started the derivation for the case that the tension can not assumed to be constant and already realized that the force increases exponentially. Thaks @Lnewqban's link to the Capstan equation I don't need to finish my calculation.
A.T. said:I was referring to the situation as given in the OP's diagram, with equal forces on both rope ends. I agree that this is not realistic, but this assumption implies zero net effect of friction.