The Force of Static Friction keeps a stationary object at rest! Once the Force of Static Friction is overcome, the Force of Kinetic Friction is what slows down a moving object!
Explanation:
The friction between two bodies is never exactly the same when at rest and when moving. The force required to start a body sliding is greater than the force needed to keep it sliding. As a result, we differentiate between static friction and kinetic friction (also called sliding friction).
Static friction has a decisive function in non-positive drives. This kind of transmission takes place in two- and multi-pulley drives with flat belts, V-belts and Poly-V-belts, as well as on the driving pulley of conveyor belt installations and live roller conveyors.
Kinetic friction is decisive for achieving the required force to pull the conveyor belt over a slider bed. The coefficient of kinetic friction is therefore indispensable for the calculation of conveyor belts running on slider beds.
Answers & Comments
Answer:
The static friction force keeps a stationary object at rest, while kinetic friction slows down a moving object.
Answer:
The Force of Static Friction keeps a stationary object at rest! Once the Force of Static Friction is overcome, the Force of Kinetic Friction is what slows down a moving object!
Explanation:
The friction between two bodies is never exactly the same when at rest and when moving. The force required to start a body sliding is greater than the force needed to keep it sliding. As a result, we differentiate between static friction and kinetic friction (also called sliding friction).
Static friction has a decisive function in non-positive drives. This kind of transmission takes place in two- and multi-pulley drives with flat belts, V-belts and Poly-V-belts, as well as on the driving pulley of conveyor belt installations and live roller conveyors.
Kinetic friction is decisive for achieving the required force to pull the conveyor belt over a slider bed. The coefficient of kinetic friction is therefore indispensable for the calculation of conveyor belts running on slider beds.
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