Non-contacting dynamic seal
Non-contacting dynamic seals having wave springs are disclosed herein. A non-contacting dynamic seal may have a shoe coupled to an outer ring by an inner beam and an outer beam. A wave spring may be located between the inner beam and the outer beam, between the shoe and the inner beam, or between the outer beam and the outer ring. The wave spring may damp vibrations in the inner beam and the outer beam.
1. A seal assembly for a gas turbine engine comprising:
an outer ring;
a shoe coupled to the outer ring, wherein the shoe is configured to move radially with respect to the outer ring and move radially with respect to a rotating component radially inward of the shoe;
a first beam and a second beam coupling the shoe to the outer ring, the first beam positioned radially inward of the second beam;
a first gap between a radially inner portion of the shoe and the first beam, a second gap between the first beam and the second beam, and a third gap between the second beam and radially outer portion of the shoe;
a first wave spring located in the second gap, wherein the first wave spring comprises a first antinode and a second antinode in contact with the first beam, and a third antinode in contact with the second beam and is configured to damp vibrations in the first beam and the second beam, wherein the seal assembly is a non-contacting dynamic seal;
a second wave spring between the first beam and the second beam; and
a third wave spring between the first beam and at least one of the shoe or the outer ring.
2. The seal assembly of claim 1 , wherein the first antinode and the second antinode are configured to slide against the first beam in response to a vibration in the first beam.
3. The seal assembly of claim 1 , wherein the first wave spring comprises at least one of cobalt alloy and nickel alloy.