Insulating ceramic based on partially filled shapes
View Patent ↗An insulating ceramic made up of a plurality of partially filled shapes (e.g., 101 ), such as oblate spheroids, spheres, and shapes free of corners, is provided. Each partially filled shape may include an inner skeleton (e.g., 102 ) and an outer skin (e.g., 104 ). The inner skeleton may be stabilized at a higher temperature relative to the outer skin. The shapes may be disposed in a binding matrix. The thickness of the outer skin may be very thin in view of the support provided by the inner skeleton, thereby improving the abradability characteristics of the ceramic.
1. An insulating ceramic comprising a plurality of partially filled three dimensional shapes having an outer skin that encapsulates the shapes disposed in a binding matrix.
2. The insulating ceramic of claim 1 wherein the plurality of partially filled shapes comprises a dimensionally stabilized array of shapes.
3. The insulating ceramic of claim 1 wherein the plurality of partially filled shapes comprises shapes selected from the group consisting of oblate spheroid shapes, spheres, and shapes free of corners.
4. The insulating ceramic of claim 1 wherein each partially filled shape comprises an inner skeleton and the outer skin.
5. The insulating ceramic of claim 4 wherein the outer skin of the shape ranges from about 0.3 mm to about 1.5 mm in thickness.
6. The insulating ceramic of claim 4 wherein the inner skeleton comprises a structure selected from the group consisting of a shaft, a cruciform and a jack-like structure.
7. The insulating ceramic of claim 4 wherein the inner skeleton comprises a foam material.
8. The insulating ceramic of claim 4 wherein the outer skin and inner skeleton comprise an alumina based material.
9. The insulating ceramic of claim 4 wherein the outer skin and inner skeleton comprise an aluminosilicate material.
10. The insulating ceramic of claim 4 wherein the outer skin and inner skeleton comprise distinct materials.
11. The insulating ceramic of claim 4 wherein the inner skeleton comprises a silicon based material.
12. The insulating ceramic of claim 4 wherein the inner skeleton is stabilized at a higher temperature relative to the outer skin.
13. The insulating ceramic of claim 4 wherein the inner skeleton comprises flyash.
14. The insulating ceramic of claim 4 wherein the outer skin comprises a different material than the binding matrix.
15. The insulating ceramic of claim 4 wherein the outer skin of the plurality of partially filled shapes comprises the binding matrix.
16. The insulation ceramic of claim 4 wherein the outer skin comprises an encapsulation for the inner skeleton thereby providing environmental and/or chemical protection to the inner skeleton.
17. The insulating ceramic of claim 4 wherein inner skeleton fill material volume is in the range from about 5% to about 40% of the volume defined by the outer skin.
18. The insulating ceramic of claim 17 , wherein inner skeleton fill material volume is in the range from about 15% to about 20% of the volume defined by the outer skin.
19. The insulating ceramic of claim 4 wherein the plurality of partially filled shapes comprises a plurality of spheroids, and wherein the outer skin thickness is in the range from about 1% to about 30% of the sphere diameter.
20. The insulating ceramic of claim 19 , wherein the outer skin thickness is in the range from about 5% to about 10% of the spheroid diameter.
21. An insulating ceramic comprising a plurality of partially filled shapes disposed in a binding matrix, wherein each partially filled shape comprises an inner skeleton and an outer skin, and wherein the outer skin of the shape ranges from about 0.1 mm to about 5 mm in thickness.
22. An insulating ceramic comprising a close-packed array of partially filled spheroids, wherein any spheroid is partially deformed to at least partially fill a void otherwise formed between adjacent spheroids.
23. The insulating ceramic of claim 22 wherein a total volume of voids filled by partially deformed spheroids comprises up to about 27% of the volume of the array.