IP Library Granted Patent US 9,033,025
Granted Patent B2
US 9,033,025 · App. 13/578,215 · Granted May 19, 2015

Aluminium-copper alloy for casting

Inventors: John Forde (London, GB); William Stott (London, GB)
Assignee: AEROMET INTERNATIONAL PLC
C22C21/12C22C1/1068C22C21/00C22C21/14C22C21/16C22C21/18B22D25/00B22D27/04
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Quick Facts
Patent No.
US 9,033,025
App. No.
13/578,215
Granted
May 19, 2015
Kind
B2
Abstract

An aluminium-copper alloy comprising substantially insoluble particles which occupy the interdendritic regions of the alloy, provided with free titanium in quantity sufficient to result in a refinement of the grain structure in the cast alloy.

Claims (203)

1. An aluminium-copper alloy for casting, comprising substantially insoluble particles which occupy the interdendritic regions of the alloy, the substantially insoluble particles being present in an amount of at least 0.5 wt % up to 20 wt % and comprising titanium diboride particles, wherein the alloy comprises a hyperperitectic quantity of free titanium to result in a refinement of the grain structure in the cast alloy.

2. An alloy according to claim 1 comprising up to 1 wt % titanium.

3. An alloy according to claim 1 comprising up to 0.5 wt % titanium.

4. An aluminium-copper alloy according to claim 2 , comprising:

Cu

3.0-6.0 wt %

Mg

0.0-1.5 wt %

Ag

0.0-1.5 wt %

Mn

0.0-0.8 wt %

Fe

0.0-1.5 wt %

Si

0.0-1.5 wt %

Zn

0.0-4.0 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

at least 0.5 wt % up to 20 wt %

Al and inevitable impurities

Balance.

5. An alloy according to claim 2 comprising:

Cu

4.0-5.0 wt %

Mg

0.2-0.5 wt %

Ag

0.0-0.5 wt %

Mn

0.0-0.6 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

at least 0.5 wt % up to 10 wt %

Al and inevitable impurities

Balance.

6. An alloy according to claim 2 comprising:

Cu

4.0-5.0 wt %

Mg

0.2-0.5 wt %

Ag

0.4-1.0 wt %

Mn

0.0-0.6 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

at least 0.5 wt % up to 10 wt %

Al and inevitable impurities

Balance.

7. An alloy according to claim 2 comprising:

Cu

4.2-5.0 wt %

Mg

0.2-0.5 wt %

Ag

 0.0-0.85 wt %

Mn

0.0-0.4 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

1.5-9.0 wt %

Al and inevitable impurities

Balance.

8. An alloy according to claim 2 comprising:

Cu

4.2-5.0 wt %

Mg

0.2-0.5 wt %

Ag

 0.0-0.85 wt %

Mn

0.0-0.4 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

4.0-9.0 wt %

Al and inevitable impurities

Balance.

9. An alloy according to claim 2 comprising:

Cu

4.2-5.0 wt %

Mg

0.2-0.5 wt %

Ag

0.45-0.85 wt %

Mn

0.0-0.4 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

1.5-9.0 wt %

Al and inevitable impurities

Balance.

10. An alloy according to claim 2 comprising:

Cu

4.2-5.0 wt %

Mg

0.2-0.5 wt %

Ag

0.45-0.85 wt %

Mn

0.0-0.4 wt %

Fe

 0.0-0.15 wt %

Si

 0.0-0.15 wt %

Zn

0.0-1.8 wt %

Sb

0.0-0.5 wt %

Zr

0.0-0.5 wt %

Co

0.0-0.5 wt %

Ti

hyperperitectic

Insoluble particles

4.0-9.0 wt %

Al and inevitable impurities

Balance.

11. An alloy according to claim 1 wherein the insoluble particles are of a size which is at least in the region of an order of magnitude smaller than the dendrite arm spacing /grain size of the solid alloy, and occupy the interdendritic/intergranular regions of the alloy.

12. An alloy according to claim 11 wherein the insoluble particles have a particle size which lies in the range 0.5 to 25 μm.

13. An alloy according to claim 11 wherein the particle size lies in the range 0.5 to 15 μm.

14. An alloy according to claim 11 wherein the particle size lies in the range 0.5 to 5 μm.

15. An alloy according to claim 1 comprising 0.5 wt %-10 wt % titanium diboride particles.

16. An alloy according to claim 1 comprising 3 wt %-7 wt % titanium diboride particles.

17. An alloy according to claim 1 comprising 4 wt % titanium diboride particles.

18. An alloy according to claim 1 comprising 7 wt % titanium diboride particles.

19. A method of making a casting, comprising melting an aluminium copper alloy according to claim 1 and introducing the resulting alloy into a mold.

20. A method according to claim 19 comprising controlling the rate of cooling of the alloy in the mould.

21. A method according to claim 20 wherein the alloy comprises a hyperperitectic quantity of titanium, and the casting is made by one of sand casting or investment casting.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2022
From: ALUMINIUM MATERIALS TECHNOLOGIES LTD
To: ECKART GMBH
Reel/Frame 061193/0785 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2020
From: AEROMET INTERNATIONAL LIMITED
To: ALUMINIUM MATERIALS TECHNOLOGIES LIMITED
Reel/Frame 052947/0262 →
CHANGE OF NAME Recorded Jun 16, 2020
From: AEROMET INTERNATIONAL PLC
To: AEROMET INTERNATIONAL LIMITED
Reel/Frame 052947/0388 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2012
From: FORDE, JOHN; STOTT, WILLIAM
To: AEROMET INTERNATIONAL PLC
Reel/Frame 029377/0378 →
Priority Claims (1)
GB 1002236.6 · Feb 10, 2010 · national
Continuity (1)
Related Publication 20130068411A1 · Mar 21, 2013