HYDROSTATIC SEAL WITH SEAL STOPS
A hydrostatic seal assembly includes a seal carrier, a seal shoe located at the seal carrier and configured for travel relative to the seal carrier to maintain a selected gap between the seal shoe and a rotating component, and a travel stop. The travel stop includes a stop rib located at one of the seal carrier or the seal shoe, and a stop groove located at the other of the seal carrier or the seal shoe. The stop rib is positioned at least partially in the stop groove to limit travel of the seal shoe relative to the seal carrier.
1 . A hydrostatic seal assembly, comprising:
a seal carrier;
a seal shoe disposed at the seal carrier and configured for travel relative to the seal carrier to maintain a selected gap between the seal shoe and a rotating component; and
a travel stop including:
a stop rib disposed at one of the seal carrier or the seal shoe; and
a stop groove disposed at the other of the seal carrier or the seal shoe, the stop rib disposed at least partially in the stop groove to limit travel of the seal shoe relative to the seal carrier.
2 . The hydrostatic seal assembly of claim 1 , wherein the seal carrier includes:
a radial outer wall; and
an axial aft wall, one of the stop rib or the stop groove disposed at the axial aft wall of the seal carrier.
3 . The hydrostatic seal assembly of claim 2 , wherein the stop rib is disposed at the axial aft wall, extending axially toward the seal shoe.
4 . The hydrostatic seal assembly of claim 2 , wherein the seal shoe is configured for radial travel relative to the seal carrier, the travel stop configured to limit said radial travel.
5 . The hydrostatic seal assembly of claim 1 , wherein a groove radial width of the stop groove is greater than a rib radial width of the stop rib, thereby allowing full travel of the seal shoe relative to the seal carrier.
6 . The hydrostatic seal assembly of claim 1 , wherein the stop rib has one of a rectangular, triangular or semi-circular cross-sectional shape.
7 . The hydrostatic seal assembly of claim 1 , wherein the seal shoe is supported by one or more seal beams configured as spring elements integral with the seal shoe.
8 . A turbine section of a gas turbine engine, comprising:
a turbine stator;
a turbine rotor configured to rotate about an engine central longitudinal axis relative to the turbine stator; and
a hydrostatic seal assembly comprising:
a seal carrier;
a seal shoe disposed at the seal carrier and configured for travel relative to the seal carrier to maintain a selected gap between the seal shoe and the turbine rotor; and
a travel stop including:
a stop rib disposed at one of the seal carrier or the seal shoe; and
a stop groove disposed at the other of the seal carrier or the seal shoe, the stop rib disposed at least partially in the stop groove to limit travel of the seal shoe relative to the seal carrier.
9 . The turbine section of claim 8 , wherein the seal carrier includes:
a radial outer wall; and
an axial aft wall, one of the stop rib or the stop groove disposed at the axial aft wall of the seal carrier.
10 . The turbine section of claim 9 , wherein the stop rib is disposed at the axial aft wall, extending axially toward the seal shoe.
11 . The turbine section of claim 9 , wherein the seal shoe is configured for radial travel relative to the seal carrier, the travel stop configured to limit said radial travel.
12 . The turbine section of claim 8 , wherein a groove radial width of the stop groove is greater than a rib radial width of the stop rib, thereby allowing full travel of the seal shoe relative to the seal carrier.
13 . The turbine section of claim 8 , wherein the stop rib has one of a rectangular, triangular or semi-circular cross-sectional shape.
14 . The turbine section of claim 8 , wherein the seal shoe is supported by one or more seal beams configured as spring elements integral with the seal shoe.
15 . A gas turbine engine, comprising:
a combustor;
a turbine section in fluid communication with the combustor, the turbine section comprising:
a turbine stator;
a turbine rotor configured to rotate about an engine central longitudinal axis relative to the turbine stator; and
a hydrostatic seal assembly comprising:
a seal carrier;
a seal shoe disposed at the seal carrier and configured for travel relative to the seal carrier to maintain a selected gap between the seal shoe and the turbine rotor; and
a travel stop including:
a stop rib disposed at one of the seal carrier or the seal shoe; and
a stop groove disposed at the other of the seal carrier or the seal shoe, the stop rib disposed at least partially in the stop groove to limit travel of the seal shoe relative to the seal carrier.
16 . The gas turbine engine of claim 15 , wherein the seal carrier includes:
a radial outer wall; and
an axial aft wall, one of the stop rib or the stop groove disposed at the axial aft wall of the seal carrier.
17 . The gas turbine engine of claim 16 , wherein the stop rib is disposed at the axial aft wall, extending axially toward the seal shoe.
18 . The gas turbine engine of claim 16 , wherein the seal shoe is configured for radial travel relative to the seal carrier, the travel stop configured to limit said radial travel.
19 . The gas turbine engine of claim 15 , wherein a groove radial width of the stop groove is greater than a rib radial width of the stop rib, thereby allowing full travel of the seal shoe relative to the seal carrier.
20 . The gas turbine engine of claim 15 , wherein the stop rib has one of a rectangular, triangular or semi-circular cross-sectional shape.