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Development of a Co-Cr-Mo to Tantalum Transition using LENS for Orthopedic Applications

机译:使用LENS开发用于骨科应用的Co-Cr-Mo到钽过渡

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Biomedical implant material research using additive manufacturing is a popular field of study. Many potential material combinations exist which, if implemented properly, could have a significantly positive effect on implant life and functionality. One material combination of interest is attaching porous Ta bone ingrowth material to a CoCrMo corrosion and wear resistant bearing surface. An investigation of the ability of the LENS process to join Ta to CoCrMo was undertaken. Direct joining of CoCrMo to Ta was known to be problematic, and thus transitional layers of other biomedically-compatible materials were investigated. It was determined that a transitional layer of zirconium appeared to be the best transitional material for this application due to its excellent biocompatibility, followed by stainless steel, with a lesser biocompatibility but better adhesive properties.
机译:使用增材制造的生物医学植入物材料研究是一个受欢迎的研究领域。存在许多潜在的材料组合,如果正确实施,可能会对植入物的寿命和功能产生明显的积极影响。感兴趣的一种材料组合是将多孔Ta骨向内生长材料附着到CoCrMo腐蚀和耐磨轴承表面上。对LENS工艺将Ta与CoCrMo结合的能力进行了研究。已知CoCrMo与Ta的直接连接存在问题,因此研究了其他生物医学相容材料的过渡层。已经确定,由于其优异的生物相容性,锆的过渡层似乎是该应用的最佳过渡材料,其次是不锈钢,其具有较低的生物相容性但具有更好的粘合性能。

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