Slip clutch with different slip points for forward and reverse
The apparatus is a slip clutch with matching and interlocking peaks and valleys on its two engageable surfaces and sloping sides on the peaks and valleys so that the surfaces slip on the sloping sides when the force between the surfaces exceeds the force of a spring holding the surfaces together. The slopes of the opposite sides of the peak and valleys are different so that the slip point of the clutch is different depending upon the direction of motion of the clutch.
1 . In a slip clutch having two engagable and separable surfaces held against each other by the force of a spring, with the surfaces having matching and interlocking peaks and valleys with angular sloping sides so that, at a preselected slip torque between the surfaces, the sloping sides of the peaks and valleys on the two surfaces slip on each other and disengage the surfaces, the improvement comprising:
different angles on the opposite sloping sides of the peaks and valleys so that the preselected slip torque is different depending on the direction of movement of the surfaces.
2 . The slip clutch of claim 1 wherein the two surfaces rotate with a common axis of rotation.
3 . The slip clutch of claim 1 wherein the two surfaces rotate with a common axis of rotation and the spring is a compression spring centered on the common axis of rotation.
4 . A slip clutch comprising:
two engagable and separable surfaces held against each other by the force of a spring;
the surfaces having matching and interlocking peaks and valleys with angular sloping sides so that, at a preselected slip torque between the surfaces, the sloping sides of the peaks and valleys on the two surfaces slip on each other and disengage the surfaces; and
different angles on the opposite sloping sides of the peaks and valleys so that the preselected slip torque is different depending on the direction of movement of the surfaces.
5 . The slip clutch of claim 4 wherein the two surfaces rotate with a common axis of rotation.
6 . The slip clutch of claim 4 wherein the two surfaces rotate with a common axis of rotation and the spring is a compression spring centered on the common axis of rotation.