Centrifugal brake for overspeed protection
View Patent ↗A centrifugally triggered brake mechanism is used to halt a rotating assembly. The brake mechanism includes a braking surface, a brake shoe, and a rotating centrifugal trigger. Upon attaining a selected rotational speed the trigger releases the brake pad to engage the drum. The mechanism may be useful for instance in providing backup overspeed protection for wind turbines.
1. A brake mechanism for halting a rotating assembly, the brake mechanism comprising;
a first braking surface;
a second braking surface; and
a trigger that releases the second braking surface to engage the first braking surface when the rotating assembly attains a desired rotational speed, wherein the second braking surface comprises at least one shoe assembly, wherein the shoe assembly is pivotably coupled to the rotating assembly about a shoe assembly pivot point, and where the trigger permits passage of the brake shoe assembly from a first, cocked position to a second, engaged position responsive to centrifugal force resulting from the rotational speed such that at least a portion of the second braking surface of the shoe assembly rotates beyond the shoe assembly pivot point into engagement with the first braking surface wherein the shoe comprises a pair of compliant flexures disposed about the shoe assembly pivot point such that the brake mechanism is configured to yield plastically upon engagement with the first braking surface.
2. The brake mechanism of 1 wherein initial contact of the shoe assembly against the first braking surface impels the shoe assembly further into the engaged position.
3. The brake mechanism of claim 2 wherein the assembly further comprises at least one compliant element to increase the compliance of the shoe assembly.
4. The brake mechanism of claim 1 wherein the trigger comprises a bistable mechanism that governs passage of the brake shoe assembly between the cocked and engaged positions.
5. The brake mechanism of claim 1 wherein the trigger comprises a flexible member and a rotatable low friction bearing, and where deflection of the flexible member permits passage of said bearing.
6. The brake mechanism of claim 5 wherein the flexible member is an elongated bar or pin.
7. The brake mechanism of claim 1 and further comprising a latch coupled to maintain the brake shoe in the engaged position beyond shoe assembly the pivot point.
8. The brake mechanism of claim 7 wherein the brake shoe includes a detent to mate with the latch when the brake shoe is in the engaged position.