High temperature lightweight Al—Fe—Si based alloys
Described herein are approaches to stabilizing AlFeSi ternary intermetallic compounds while destabilizing competing phases. The inclusion of metals such as Mn, Ni, Co, Cu, or Zn to produce quaternary systems accomplishes this problem associated with AlFeSi ternary intermetallic compounds.
1. A composition comprising Al—Fe—Si—X quaternary intermetallic compound, wherein
Al is in the amount of from about 60.0 atomic percent to about 70.0 atomic percent,
Fe is in the amount of from about 13.0 atomic percent to about 30.0 atomic percent, and
Si is in the amount of from about 5.0 atomic percent to about 20.0 atomic percent,
wherein X is selected from Ni, Co, Cu, or Zn,
wherein when X is Ni, the amount of Ni is greater than 2.0 atomic percent,
wherein when X is Co, the amount of Co is from about 0.1 atomic percent to about 8.0 atomic percent,
wherein when X is Zn, the amount of Zn is from about 0.1 atomic percent to about 10.0 atomic percent, and
wherein when wherein X is Cu, the amount of Cu is from about 0.1 atomic percent to about 2.0 atomic percent.
2. The composition of claim 1 , wherein Al—Fe—Si—X quaternary intermetallic compound is τ 11 -(66.1-65.3)Al-(19.3-24.1)Fe-(8.0-10.5)Si-(6.6-0.1)Co.
3. The composition of claim 1 , wherein Al—Fe-Si-X quaternary intermetallic compound is τ 11 -(65.8)Al-(23.5)Fe-(9.7)Si-(1.1)Co and τ 11 -(66.1)Al-(22.4)Fe-(9.5)Si-(2.0)Co.
4. The composition of claim 1 , wherein Al—Fe—Si—X quaternary intermetallic compound is τ 11 -(62.6-64.9)Al-(24.8-25.0)Fe-(4.7-10.0)Si-(7.9-0.2)Zn.
5. The composition of claim 1 , wherein Al—Fe—Si—X quaternary intermetallic compound is τ 11 -(63.3-63.4)Al-(25.3-25.1)Fe-(11.3-10.7)Si-(0.1-0.9)Cu.
6. An article comprising a component comprising the composition of claim 1 .
7. The article of claim 6 , wherein the component is an automotive component, an aviation component, an aerospace component, or an implant.
8. The article of claim 6 , wherein the component is made by a 3-D printer.
9. The composition of claim 1 , wherein Al—Fe—Si—X quaternary intermetallic compound is τ 11 -(64.0)Al-(25.1)Fe-(10.7)Si-(0.2)Cu and τ 11 -(63.8)Al-(24.9)Fe-(10.6)Si-(0.7)Cu.
10. A composition produced by the process comprising melting Al, Fe, Si, and a metal X selected from the group consisting of Mn, Ni, Co, Cu, and Zn to produce a first composition, wherein
Al is in the amount of from about 60.0 atomic percent to about 70.0 atomic percent,
Fe is in the amount of from about 13.0 atomic percent to about 30.0 atomic percent, and
Si is in the amount of from about 5.0 atomic percent to about 20.0 atomic percent,
wherein when X is Ni, the amount of Ni is greater than 2.0 atomic percent.
11. The composition of claim 10 , further comprising heating the first composition at a temperature of from about 700° C. to about 1,000° C. and from about 1 hour to about 600 hours.
12. The composition of claim 10 ,
wherein X is selected from Mn, Ni, Co, Cu, or Zn,
wherein when X is Ni, the amount of Ni is greater than 2.0 atomic percent,
wherein when X is Co, the amount of Co is from about 0.1 atomic percent to about 8.0 atomic percent,
wherein when X is Zn, the amount of Zn is from about 0.1 atomic percent to about 10.0 atomic percent, and
wherein when wherein X is Cu, the amount of Cu is from about 0.1 atomic percent to about 2.0 atomic percent.
13. An article comprising a component comprising the composition of claim 10 .
14. The article of claim 13 , wherein the component is an automotive component, an aviation component, an aerospace component, or an implant.
15. The article of claim 13 , wherein the component is made by a 3-D printer.