Claims
- 1. A metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the metal matrix composite characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si.
- 2. A metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the metal matrix composite characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si, and the Cr content and the Al and/or Si content of said reinforcements range from 5 to 30% and from 3 to 10%, respectively.
- 3. A metal matrix composite according to claim 1, wherein solution-treatment is carried out at temperatures such that formation of reactants on the interfaces between said matrix and the reinforcements is restrained.
- 4. A metal matrix composite according to claim 2, wherein solution-treatment is carried out at temperatures such that formation of reactants on the interfaces between said matrix and the reinforcements is restrained.
- 5. A metal matrix composite according to claim 3, wherein said reactants are intermetallic compounds, and said solution-treatment is carried out within a range from 470° C. to 500° C.
- 6. A metal matrix composite according to claim 4, wherein said reactants are intermetallic compounds, and said solution-treatment is carried out within a range from 470° C. to 500° C.
- 7. A metal matrix composite according to claim 1, wherein said reinforcements are preformed into a given shape by sintering.
- 8. A metal matrix composite according to claim 2, wherein said reinforcements are preformed into a given shape by sintering.
- 9. A metal matrix composite according to claim 1, wherein said reinforcements are metallic fibers with fiber diameters of ø20 μm to ø100 μm formed by the melt extraction method and having irregular peripheral surfaces.
- 10. A metal matrix composite according to claim 2, wherein said reinforcements are metallic fibers with fiber diameters of ø20 μm to ø100 μm formed by the melt extraction method and having irregular peripheral surfaces.
- 11. A metal matrix composite according to claim 1, wherein the volume content of said reinforcements ranges from 10% to 40%.
- 12. A metal matrix composite according to claim 2, wherein the volume content of said reinforcements ranges from 10% to 40%.
- 13. A metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the metal matrix composite characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si, the Cr content and the Al and/or Si content of said reinforcements range from 5 to 30% and from 3 to 10%, respectively, solution-treatment is carried out at temperatures of 470° C. to 500° C. such that formation of intermetallic compounds on the interfaces between said matrix and the reinforcements is restrained, said reinforcements are metallic fibers with fiber diameters of ø20 μm to ø100 μm formed by the melt extraction method and having irregular peripheral surfaces, the volume content of said reinforcements ranges from 10% to 40%, and said reinforcements are preformed into a given shape by sintering.
- 14. A piston including a metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the piston characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si.
- 15. A piston including a metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the piston characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si, and the Cr content and the Al and/or Si content of said reinforcements range from 5 to 30% and from 3 to 10%, respectively.
- 16. A piston according to claim 15, wherein solution-treatment is carried out at temperatures of 470° C. to 500° C. such that formation of reactants on the interfaces between said matrix and the reinforcements is restrained.
- 17. A piston according to claim 15, wherein said reinforcements are metallic fibers with fiber diameters of ø20 μm to ø100 μm formed by the melt extraction method and having irregular peripheral surfaces.
- 18. A piston according to claim 15, wherein said reinforcements are preformed into a given shape by sintering.
- 19. A piston including a metal matrix composite having a metallic matrix and reinforcements mixed in said matrix,
the piston characterized in that said reinforcements are metallic fibers of an alloy consisting mainly of Fe and Cr and containing Al and/or Si, the Cr content and the Al and/or Si content of said reinforcements range from 5 to 30% and from 3 to 10%, respectively, solution-treatment is carried out at temperatures of 470° C. to 500° C. such that formation of reactants on the interfaces between said matrix and the reinforcements is restrained, said reinforcements are metallic fibers with fiber diameters of ø20 μm to ø100 μm formed by the melt extraction method and having irregular peripheral surfaces, the volume content of said reinforcements ranges from 10% to 40%, and said reinforcements are preformed into a given shape by sintering.
Priority Claims (2)
Number |
Date |
Country |
Kind |
11-226359 |
Aug 1999 |
JP |
|
2000-069001 |
Mar 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JP00/05373, filed Aug. 10, 2000, which was not published under PCT Article 21(2) in English.
[0002] This application is based upon and claims the benefit of priority from the prior Japanese Patent Applications No. 11-226359, filed Aug. 10, 1999; and No. 2000-069001, filed Mar. 13, 2000, the entire contents of both of which are incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP00/05373 |
Aug 2000 |
US |
Child |
09827606 |
Apr 2001 |
US |