Claims
- 1. A matrix composite comprising a metal matrix interspersed with a bonding aid and fibers made by the process comprising the steps of:
- forming a workpiece including a metal matrix interspersed with a bonding aid and fibers, said bonding aid having a melting point lower than that of said metal matrix and said fibers;
- heating said workpiece to a selected temperature; and
- applying pressure to said workpiece to consolidate said workpiece.
- 2. The metal matrix composite of claim 1 wherein the workpiece comprises alternating layers of the metal matrix, the bonding aid, and the fibers.
- 3. The metal matrix composite of claim 2 wherein the pressure to consolidate the workpiece is applied by passing the workpiece through spaced rolls.
- 4. The metal matrix composite of claim 2 wherein the metal matrix is selected from the group consisting of aluminum, titanium, aluminum alloys, titanium alloys, or mixtures thereof.
- 5. The metal matrix composite of claim 3 wherein the rolls are set to apply a force of about 7500 lbs/inch of roller.
- 6. The metal matrix composite of claim 1 wherein the fibers are silicon carbide.
- 7. The metal matrix composite of claim 1 wherein the bonding aid is about 70% Ti, 15% Ni, and 15% Cu.
- 8. The metal matrix composite of claim 1 further comprising the step of:
- conducting the heating and pressure consolidating steps in an argon gas atmosphere.
- 9. The metal matrix composite of claim 1 wherein the metal matrix is Ti--6Al--4V titanium alloy having a composition of about 90% Ti, 6% Al, and 4% V.
- 10. A metal matrix composite comprising a consolidated body formed under heat and pressure in an inert atmosphere from a workpiece having alternating layers of a matrix metal, a brazing alloy, and reinforcing fibers.
- 11. The metal matrix composite of claim 10 wherein the brazing alloy has a lower melting temperature than either the matrix metal or the reinforcing fibers.
- 12. The metal matrix composite of claim 10 wherein the matrix metal is selected from the group consisting of aluminum, titanium, aluminum alloys, titanium alloys, or mixtures thereof.
- 13. The metal matrix composite of claim 11 wherein the matrix metal is selected from the group consisting of aluminum, titanium, aluminum alloys, titanium alloys, or mixtures thereof.
- 14. The metal matrix composite of claim 10 wherein the matrix metal is Ti-6Al-4V titanium alloy having a composition of about 90% Ti, 6% Al, and 4% V.
- 15. A metal matrix composite comprising a metal matrix interspersed with a bonding aid and fibers made by the process of producing a composite material comprising the steps of:
- forming a workpiece including a metal matrix interspersed with a bonding aid and fibers, the bonding aid having a melting point lower than that of the metal matrix and the fibers;
- supporting the workpiece by electrically conductive support means;
- inductively heating the support means and thereby conductively heating the workpiece to a selected temperature; and
- applying pressure to the support means thereby to apply pressure to the workpiece to consolidate the workpiece, the support means remaining distinct and separable from the workpiece after consolidation of the workpiece.
REFERENCE TO RELATED APPLICATION
The present application is a divisional application based upon U.S. patent application Ser. No. 07/681,004, filed Apr. 5, 1991, now U.S. Pat. No. 5,229,562.
US Referenced Citations (23)
Non-Patent Literature Citations (1)
Entry |
Developments in Titanium Metal Matrix Composites P. R. Smith and F. H. Froes-1984. |
Divisions (1)
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Number |
Date |
Country |
Parent |
681004 |
Apr 1991 |
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