Abradable layer with glass microballoons
A gas turbine engine includes a circumferential row of blades, with the blades having respective blade tips. A seal is disposed about the blades. The seal has an abradable layer which the tips of the blades, at times, rub against when the blades rotate. The rubbing produces a maximum temperature at the abradable layer. The abradable layer includes a metal matrix and microballoons dispersed in the metal matrix. The microballoons are formed of a glass that has a glass transition temperature that is approximately 50° F. to 300° F. greater than the maximum temperature.
1. A gas turbine engine comprising:
a circumferential row of blades, the blades having respective blade tips; and
a seal disposed about the blades, the seal having an abradable layer which the tips of the blades, at times, rub against when the blades rotate, there being a maximum temperature at the abradable layer without rubbing, the abradable layer including,
a metal matrix, and
microballoons dispersed in the metal matrix, the microballoons being formed of a glass having a glass transition temperature that is approximately 50° F. to 300° F. greater than the maximum temperature;
wherein the metal matrix is formed from an alloy selected from the group consisting of nickel- or cobalt-based alloy, copper-based alloy, and aluminum-based alloy, and the microballoons are formed of a glass selected from the group consisting of fused quartz glass, soda-lime glass, flouroaluminate glass, borosilicate, tellurium dioxide glass, and thermoset polymer glass.
2. The gas turbine engine as recited in claim 1 , wherein the alloy is nickel- or cobalt-based alloy.
3. The gas turbine engine as recited in claim 1 , wherein the alloy is copper-based alloy.
4. The gas turbine engine as recited in claim 1 , wherein the alloy is aluminum-based alloy.
5. The gas turbine engine as recited in claim 1 , wherein the glass is fluoroaluminate glass.
6. The gas turbine engine as recited in claim 1 , wherein the glass is tellurium dioxide glass.
7. The gas turbine engine as recited in claim 1 , wherein the glass is borosilicate glass.
8. The gas turbine engine as recited in claim 1 , wherein the glass is soda-lime glass.
9. The gas turbine engine as recited in claim 1 , wherein the glass is fused quartz glass.
10. The gas turbine engine as recited in claim 1 , wherein the abradable layer has, by volume, 10-60% of the microballoons.
11. The gas turbine engine as recited in claim 1 , wherein the abradable layer further comprises a lubricant.
12. The gas turbine engine as recited in claim 1 , wherein the circumferential row of blades are part of a compressor or turbine section of the gas turbine engine.
13. A gas turbine engine comprising:
first and second circumferential rows of blades, the blades having respective blade tips; and
first and second seals disposed about, respectively, the first and second circumferential rows of blades, the first and second seals having, respectively, first and second abradable layers which the tips of the blades, at times, rub against when the blades rotate,
the first abradable layer including,
a first metal matrix, and
first microballoons dispersed in the first metal matrix,
the second abradable layer including,
a second metal matrix, and
second microballoons dispersed in the second metal matrix,
the first and second microballoons being formed of, respectively, first and second different glasses having different glass transition temperatures.
14. The gas turbine engine as recited in claim 13 , wherein the metal matrix is formed from an alloy selected from the group consisting of nickel- or cobalt-based alloy, copper-based alloy, and aluminum-based alloy, and the microballoons are formed of a glass selected from the group consisting of fused quartz glass, soda-lime glass, fluoroaluminate glass, borosilicate, tellurium dioxide glass, and thermoset polymer glass.
15. The gas turbine engine as recited in claim 14 , wherein the first metal matrix and the second metal matrix are the same alloy.
16. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is fused quartz.
17. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is soda-lime glass.
18. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is fluoroaluminate glass.
19. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is tellurium dioxide glass.
20. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is borosilicate glass.
21. The gas turbine engine as recited in claim 14 , wherein at least one of the first and second different glasses is thermoset polymer glass.
22. The gas turbine engine as recited in claim 14 , wherein the different glass transition temperatures differ by at least 200° F.
23. The gas turbine engine as recited in claim 13 , wherein the first and second circumferential rows of blades are part of a compressor or turbine section of the gas turbine engine.
24. A seal comprising:
an abradable layer including,
a metal matrix selected from the group consisting of nickel- or cobalt-based alloy, copper-based alloy, and aluminum based alloy, and
microballoons dispersed in the metal matrix, the microballoons being formed of a glass selected from the group consisting of fused quartz glass, soda-lime glass, fluoroaluminate glass, borosilicate glass, tellurium dioxide glass, and thermoset polymer glass.