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Fatigue Properties of Additive Manufactured Ti-6AI-4V and CoCr-Alloy Total Ankle Components

机译:添加剂的疲劳性能制造Ti-6ai-4V和CocR-Alloy总踝组件

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Total ankle replacement is an increasingly popular alternative to ankle fusion, because it allows patients to retain mobility of the joint. Additive manufacturing has made the incorporation of porous surfaces a viable option for a variety of orthopedic implants, especially in cases in which the application of a porous metal layer would otherwise be impossible or cost prohibitive. A novel additive manufactured total ankle system using direct metal laser sintering was developed. The tibial component is made from Ti-6AI-4V ELI alloy, and the talar component is made from cobalt-chrome alloy. Both components include a reticulated open porous layer, with a porosity ranging from 60% to 70%. Bending fatigue testing was conducted on finished tibial and talar components and force/ number of cycles curves were constructed with a total of five components achieving run-out at 107 cycles with no failures. The results showed that the additive manufactured components met previously established strength requirements for total ankle applications. In addition, it was shown that thermal postprocessing could be effective in eliminating residual or loosely adhered residual powder into the porous structure.
机译:总脚踝更换是踝关节融合的越来越受欢迎的替代品,因为它可以让患者保持关节的移动性。添加剂制造已经使多孔表面掺入各种整形外科植入物的可行选择,特别是在否则不可能或成本上的施加多孔金属层的情况下。开发了一种新的添加剂制造了使用直接金属激光烧结的总脚踝系统。胫骨部件由Ti-6ai-4V Eli合金制成,并且缩略图由钴 - 铬合金制成。两种组分包括网状开口多孔层,孔隙率范围为60%至70%。在成品胫骨和缩小胫骨中进行弯曲疲劳测试,并且构建了曲线组分,并且循环曲线的力/数量是在107个循环中实现射流的总共5个组分,没有故障。结果表明,添加剂制造的部件符合先前确定的踝关节应用的强度要求。另外,表明热性后处理可以有效地消除残留或松散粘附的残留粉末进入多孔结构。

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