IP Library Granted Patent US 8,591,803
Granted Patent B2
US 8,591,803 · App. 12/766,113 · Granted Nov 26, 2013

Process for producing components consisting of magnesium or magnesium alloy by sintering

Inventors: Martin Wolff (Geesthacht, DE); Thomas Ebel (Handorf, DE); Norbert Hort (Lüneburg, DE)
Assignee: Helmholtz-Zentrum Geesthacht Zentrum für Material- und Küstenforschung GmbH
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Quick Facts
Patent No.
US 8,591,803
App. No.
12/766,113
Granted
Nov 26, 2013
Kind
B2
Abstract

The present invention relates to a process for producing components consisting of magnesium or magnesium alloy by sintering. This process makes it possible, for the first time, to produce components consisting of magnesium or magnesium alloy which provide outstanding elasticity together with a sufficient strength. Materials of this type can be used as biocompatible endosseous implant materials.

Claims (32)

1. A process for producing components consisting of magnesium by sintering, comprising:

first, producing a green compact consisting of magnesium powder,

transferring the green compact into an inner sintering crucible,

placing the inner sintering crucible into an outer sintering crucible,

surrounding the inner sintering crucible, which has been placed in the outer sintering crucible, with a getter material comprising magnesium powder which is able to bond gases and/or impurities,

heating the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material to sintering temperature of the green compact, and

allowing the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material to cool after the green compact has been sintered in order to produce the component consisting of magnesium.

2. A process according to claim 1 , wherein the green compact is produced in a shielding-gas atmosphere.

3. A process according to claim 2 , wherein the shielding gas is argon.

4. A process according to claim 1 , wherein the getter material consists of magnesium powder.

5. A process according to claim 1 , wherein the getter material completely envelops the inner sintering crucible.

6. A process according to claim 1 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated to a sintering temperature of 600° C. to 642° C.

7. A process according to claim 1 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated to sintering temperature for a time period between 4 to 64 hours.

8. A process according to claim 1 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated up to sintering temperature with a heating rate of 0.1 to 20 K/min.

9. A process for producing components consisting of a magnesium alloy by sintering, comprising:

first, producing a green compact consisting of magnesium alloy powder or of magnesium powder and an additional alloying constituent,

transferring the green compact into an inner sintering crucible,

placing the inner sintering crucible into an outer sintering crucible,

surrounding the inner sintering crucible, which has been placed in the outer sintering crucible, with a getter material comprising magnesium powder which is able to bond gases and/or impurities,

heating the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material to sintering temperature of the green compact, and

allowing the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material to cool after the green compact has been sintered in order to produce the component consisting of a magnesium alloy.

10. A process according to claim 9 , wherein the additional alloying constituent comprises a magnesium-calcium master alloy that contains 2 to 17% by mass of calcium.

11. A process according to claim 9 , wherein the additional alloying constituent comprises a magnesium-calcium master alloy that contains about 70 to 90% by mass of calcium.

12. A process according to claim 9 , wherein the component is produced from the magnesium alloy powderthat contains 0.1 to 1% of calcium.

13. Process according to claim 9 , wherein the additional alloying constituent is selected from the group consisting of calcium hydride, a magnesium-calcium master alloy, and mixtures thereof.

14. A process according to claim 9 , wherein the green compact is produced in a shielding-gas atmosphere.

15. A process according to claim 14 , wherein the shielding gas is argon.

16. A process according to claim 9 , wherein the getter material consists of magnesium powder.

17. A process according to claim 9 , wherein the getter material completely envelops the inner sintering crucible.

18. A process according to claim 9 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated to a sintering temperature of 600° C. to 642° C.

19. A process according to claim 9 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated to sintering temperature for a time period between 4 to 64 hours.

20. A process according to claim 9 , wherein the outer sintering crucible, with the inner sintering crucible inserted into it, and the getter material is heated up to sintering temperature with a heating rate of 0.1 to 20 K/min.

Assignments (2)
CHANGE OF NAME Recorded Sep 24, 2013
From: GKSS-FORSCHUNGSZENTRUM GEESTHACHT GMBH
To: HELMHOLTZ-ZENTRUM GEESTHACHT ZENTRUM FUR MATERIAL- UND KUSTENFORSCHUNG GMBH
Reel/Frame 031269/0320 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2010
From: WOLFF, MARTIN; EBEL, THOMAS; HORT, NORBERT
To: GKSS-FORSCHUNGSZENTRUM GEESTHACHT GMBH
Reel/Frame 024510/0207 →
Priority Claims (1)
DE 10 2009 019 041 · Apr 27, 2009 · national
Continuity (1)
Related Publication 20100274292A1 · Oct 28, 2010