Claims
- 1. A process for synthesizing iron aluminides from elemental powders comprising:
- mixing Fe and Al powders in a ratio which approximates the stoichiometric composition of an iron aluminide compound;
- forming a compact from the mixed Fe and Al; and
- heat treating the compact by heating to near the melting temperature of aluminum such that an exothermic reaction is initiated characterized by melt formation of Al accompanied by exothermic heating due to chemical mixing of Fe and Al to form an iron-aluminide compound.
- 2. The process as recited in claim 1 and wherein:
- heat treating is accomplished at atmospheric to a negative pressure (pressureless sintering).
- 3. The process as recited in claim 1 and wherein:
- heat treating is accomplished during compression of the compact (hot pressing).
- 4. The process as recited in claim 1 and wherein:
- heat treating is accomplished during hot isostatic pressing (HIP).
- 5. The process as recited in claim 1 and wherein:
- Fe and Al are combined in a ratio of Fe-15.8 wt.% Al to produce an Fe.sub.3 Al compound.
- 6. The process as recited in claim 1 and wherein:
- the iron-aluminide compound is FeAl and Fe and Al are combined in a ratio of Fe-32 wt.% Al.
- 7. The process as recited in claim 1 and wherein:
- the aluminum has a particle size of from about 3 to 30 .mu.m.
- 8. The process as recited in claim 1 and wherein:
- the compact has a green density of from about 53 to 71 percent of theoretical density.
- 9. The process as recited in claim 8 and wherein:
- an alloying element is mixed with the Fe and Al.
- 10. The process as recited in claim 9 and wherein:
- the alloying element includes Cr.
- 11. The process as recited in claim 1 and wherein:
- heat treating is performed at a heating rate of about 10.degree. to 50.degree. C./min.
- 12. A process for synthesizing Fe.sub.3 Al from elemental powders of Fe and Al comprising:
- mixing Fe and Al powders having a particle size of from about 3 to 30 .mu.m in a ratio of Fe-15.8 wt.% Al;
- forming a compact from the mixed elements having a green density of from about 53 to 71 percent of theoretical density;
- heat treating the compact to at least about 600.degree. to 650.degree. C. at a heating rate of from about 10.degree. to 50.degree. C./min.
- whereby an exothermic reaction 3Fe+Al.fwdarw.Fe.sub.3 Al is initiated to form Fe.sub.3 Al.
- 13. The process as recited in claim 12 and wherein:
- the compact is heat treated while being compressed (hot pressing) whereby an Fe.sub.3 Al compound having a densification approximately equal to theoretical densification of Fe.sub.3 Al is fabricated.
- 14. A product produced by the process of claim 13.
- 15. The process as recited in claim 12 and wherein:
- the compact is heat treated in a vacuum (pressureless sintering).
- 16. The process as recited in claim 12 and wherein:
- the compact is heat treated in a hot isostatic press (HIP).
- 17. The process as recited in claim 16 and wherein:
- the Fe and Al are mixed with an alloying element.
- 18. A process for synthesizing FeAl from elemental powders of Fe and Al comprising:
- mixing Fe and Al powders having a particle size of from about 3 to 30 .mu.m in a ratio of Fe-32 wt.% Al;
- forming a compact from the mixed elements having a green density of from about 53 to 71 percent of theoretical density;
- heat treating the compact to at least about 600.degree. to 650.degree. C. at a heating rate of from about 10.degree. to 50.degree. C./min;
- whereby an exothermic reaction Fe+Al.fwdarw.FeAl is initiated to form FeAl.
- 19. The process as recited in claim 18 and wherein:
- the compact is heated while being compressed (hot pressing) whereby an FeAl compound having a densification approximately equal to theoretical densification of FeAl is fabricated.
- 20. A product produced by the process of claim 18.
- 21. The process as recited in claim 18 and wherein:
- the compact is heat treated in a vacuum (pressureless sintering).
- 22. A product produced by the process of claim 18.
- 23. The process as recited in claim 18 and wherein:
- the compact is heat treated in a hot isostatic press (HIP).
- 24. The process as recited in claim 18 and wherein:
- the Fe and Al powders are mixed with an alloying element.
- 25. A process for synthesizing iron aluminides from Fe and Al powders comprising:
- mixing Fe and Al powders in a ratio which approximates the stoichiometric composition of an iron aluminide compound selected from the class consisting of Fe.sub.3 Al or FeAl;
- forming by compaction at pressures from 70 to 280 MPa a compact having a green density of from about 53 to 71 percent of theoretical density of the iron aluminide compound; and
- heating the compacts through the temperature to initiate an exothermic reaction in the range of about 600.degree. to 1000.degree. C.;
- whereby chemical mixing of Fe and Al is initiated to form the iron aluminide compound.
- 26. A process as recited in claim 25 and wherein:
- heating of the compact occurs under a vacuum of about 1.3.times.10.sup.-3 Pa.
- 27. A process as recited in claim 25 and wherein:
- heating of the compact is carried out in a horizontal tube furnace.
- 28. A process as recited in claim 25 and wherein:
- heating of the compact is carried out in a hot pressing die with pressures from about 10 to 70 MPa applied and maintained during heating.
- 29. A process as recited in claim 25 and wherein:
- heating of the compact is performed initially under a vacuum and then under a flowing inert gas.
- 30. A process as recited in claim 29 and wherein:
- heating of the compact involves heating in a furnace to about 400.degree. C. under a vacuum of about 4 Pa then heating to about 1000.degree. C. at about 20.degree. C./min under flowing argon.
- 31. A process as recited in claim 25 and wherein:
- the compact includes approximately 100 g of powder material.
- 32. A process as recited in claim 25 and wherein:
- the compact includes about 2 g of powder material.
- 33. A process as recited in claim 25 and wherein:
- an alloying element is mixed with the Fe and Al powders.
- 34. A process as recited in claim 33 and wherein:
- the alloying element is Cr in the amount of 2-5 wt.%.
- 35. A process as recited in claim 25 and wherein:
- heating of the compact is with hot isostatic pressing (HIP).
CONTRACTUAL ORIGIN OF THE INVENTION
The United States Government has rights in this invention pursuant to Contract No. DE-AC07-76ID01570 between the United States Department of Energy and the EG&G Idaho, Inc.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4762558 |
German et al. |
Aug 1988 |
|
5015440 |
Bowden |
May 1991 |
|