Claims
- 1. A discontinuously reinforced metal composite, comprising:
a metal matrix; and a plurality of intermetallic particles comprising at least two different metals, the intermetallic particles having a size ranging from 1 μm to about 10 μm and being dispersed within the metal matrix in an amount of at least 20% by volume, wherein the intermetallic particles are particles having at least one same metal as the metal in the metal matrix.
- 2. The discontinuously reinforced metal composite of claim 1, wherein the metal matrix comprises aluminum and the plurality of intermetallic particles comprise aluminum and at least one other metal.
- 3. The discontinuously reinforced metal composite of claim 2, wherein the intermetallic particles are FeAl3.
- 4. The discontinuously reinforced metal composite of claim 1, wherein the intermetallic particles are dispersed within the metal matrix in an amount ranging from at least 20% by volume to about 50% by volume.
- 5. The discontinuously reinforced metal composite of claim 1, wherein the metal matrix is at least one of aluminum, titanium, niobium, and magnesium, or an alloy thereof.
- 6. The discontinuously reinforced metal composite of claim 5, wherein the intermetallic particles comprise the metal of the metal matrix and at least one metal other than the metal of the metal matrix.
- 7. The discontinuously reinforced metal composite of claim 1, wherein the at least one metal other than the metal of the metal matrix is at least one of aluminum, titanium, niobium, magnesium, iron, chromium, vanadium and zirconium.
- 8. A method for processing metal matrix composites, comprising atomizing a molten alloy of at least two different metals to form a metal matrix to produce powder particles containing a metal matrix and intermetallic particles, wherein the intermetallic particles are dispersed in the metal matrix in an amount of at least 20% by volume.
- 9. The method of processing of claim 8, wherein the intermetallic particles are dispersed in the metal matrix in an amount ranging from about 20% by volume to about 70% by volume.
- 10. The method of processing of claim 8, wherein the intermetallic particles are dispersed in the metal matrix in an amount ranging from about 30% by volume to about 70% by volume.
- 11. The method of processing of claim 8, wherein a size of the intermetallic particles ranges from 1 μm to about 10 μm.
- 12. The method of processing of claim 8, further comprising post processing of the powder particles by hot pressing and extrusion.
- 13. The method of processing of claim 8, further comprising post processing of the powder particles by hot pressing and rolling.
- 14. The method of processing of claim 8, further comprising post processing of the powder particles by hot isostatic pressing.
- 15. A method for processing metal matrix composites, comprising atomizing a molten alloy of at least two different metals to form a metal matrix to produce powder particles containing a metal matrix and intermetallic particles with a size ranging from 1 μm to about 10 μm.
- 16. The method of processing of claim 15, wherein the size of intermetallic particles ranges from about 2 μm to about 10 μm.
- 17. The method of processing of claim 15, further comprising post processing of the powder particles by hot pressing and extrusion.
- 18. The method of processing of claim 15, further comprising post processing of the powder particles by hot pressing and rolling.
- 19. The method of processing of claim 15, further comprising post processing of the powder particles by hot isostatic pressing.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is based on and claims priority to U.S. Provisional Patent Application No. 60/387,894, filed Jun. 13, 2002, herein incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60387894 |
Jun 2002 |
US |