Titanium mesh covered with biocompatible polypropylene film for covering and protecting bone grafts/biomaterials and process for obtaining same
US-2024398571-A1 · Dec 5, 2024 · US
US9913707B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9913707-B2 |
| Application number | US-201313764267-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 11, 2013 |
| Priority date | Feb 22, 2012 |
| Publication date | Mar 13, 2018 |
| Grant date | Mar 13, 2018 |
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A method for producing an implant and the implant itself, particularly an intraluminal endoprosthesis, wherein the implant is produced from a preferably hollow cylindrical semifinished article ( 10 ), wherein the semifinished article contains magnesium or a magnesium alloy, the method comprising preparing the semifinished article ( 10 ), and shaping the semifinished article at a temperature of between 250° C. and 550° C. using a tool, which has a metallic lubricant containing gallium and/or a gallium compound on at least a part of its surface that will come into contact with the semifinished article.
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What is claimed is: 1. A method for producing an implant, particularly an intraluminal endoprosthesis, from a hollow cylindrical semifinished article, wherein the semifinished article contains magnesium or a magnesium alloy, said method comprising the following steps: a) preparing the semifinished article, and b) shaping the semifinished article at a temperature between 250° C. and 550° C. using a tool, which has a metallic lubricant containing gallium and/or a gallium compound on at least a part of its surface that will come into contact with the semifinished article and diffuse into the surface of the semifinished article to become alloyed with the magnesium or magnesium alloy. 2. The method according to claim 1 , characterized in that the shaping comprises an extrusion step. 3. The method according to claim 1 , characterized in that the lubricant contains Galinstan. 4. The method according to claim 1 , characterized in that the shaping is carried out at least intermittently, optionally at least over a period of 30 seconds, at a temperature of at least 300° C. 5. The method according to claim 1 , characterized in that after the shaping the semifinished article, the method further comprises carrying out a tempering step of at least 300° C. over a period of at least 1 minute to break down internal mechanical stresses contained in the structure following shaping and to further allow diffusion of the gallium into the magnesium material and to allow further magnesium/gallium alloy formation, after which the semifinished article is optionally air cooled, optionally at room temperature. 6. The method according to claim 1 wherein the heating process lasts no more than 10 minutes. 7. The method of claim 1 wherein the gallium and/or gallium compound forms an alloy with the magnesium or magnesium alloy of the semifinished article near the surface to a depth of no more than 40 μm. 8. The method of claim 5 wherein the semifinished article is electropolished and/or scoured in phosphoric acid solutions at room temperature over a period of 0.5 to 4 minutes. 9. The method of claim 8 wherein the semifinished article is electropolished and/or scoured to a depth less than the diffusion depth of the gallium in the magnesium material. 10. The method of claim 1 wherein the diffusion of the gallium into the surface of the semifinished article is on the outside surface of the hollow cylindrical semifinished article. 11. The method according to claim 1 , wherein the semifinished article comprises about 92.5% magnesium. 12. The method according to claim 1 , wherein the gallium and/or gallium compound is the dominant component of the lubricant.
Oiliness; Film-strength; Anti-wear; Resistance to extreme pressure · CPC title
Hot working · CPC title
Groups 4 or 14 · CPC title
Groups 3 or 13 · CPC title
Alloys based on a metal not provided for in groups C22C5/00 - C22C27/00 · CPC title
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