Invention Application
WO2010117655A2 USE OF SN AND PORE SIZE CONTROL TO IMPROVE BIOCOMPATIBILITY IN POLYCRYSTALLINE DIAMOND COMPACTS
审中-公开
使用SN和大小控制提高多晶金刚石复合材料的生物活性
- Patent Title: USE OF SN AND PORE SIZE CONTROL TO IMPROVE BIOCOMPATIBILITY IN POLYCRYSTALLINE DIAMOND COMPACTS
- Patent Title (中): 使用SN和大小控制提高多晶金刚石复合材料的生物活性
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Application No.: PCT/US2010/028642Application Date: 2010-03-25
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Publication No.: WO2010117655A2Publication Date: 2010-10-14
- Inventor: GARDINIER, Clayton, F. , DESPRES, Alfred, S. , MEDFORD, Troy, J. , BUNTON, Tim
- Applicant: DIAMICRON, INC.
- Applicant Address: 1186 South 1680 West Orem, UT 84058 US
- Assignee: DIAMICRON, INC.
- Current Assignee: DIAMICRON, INC.
- Current Assignee Address: 1186 South 1680 West Orem, UT 84058 US
- Agency: PETERSON, Brett, H.
- Priority: US12/422,203 20090410
- Main IPC: A61L27/04
- IPC: A61L27/04
Abstract:
Polycrystalline diamond compacts for use in artificial joints achieve reduced corrosion and improved biocompatibility through the use of solvent metal formulations containing tin and through the control of solvent metal pore size, particularly in inner layers of the compact. Solvent metal formulations containing tin have been discovered which provide sintering ability, part strength, and grind resistance comparable to levels achieved by using CoCrMo solvent metals. It has been discovered that limiting the solvent metal pore size in the diamond layers minimizes or eliminates the occurance of micro cracks in the solvent metal and significantly reduces the corrosion of the compact as manifested by the release of heavy metal ions from the compact. Polycrystalline diamond compacts which utilize both the solvent metal formulations containing tin and the control of pore sizes achieve significantly reduced corrosion and improved biocompatibility compared to prior art polycrystalline diamond compacts.
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