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Ti6Al4V-PEEK multi-material structures - design, fabrication and tribological characterization focused on orthopedic implants

机译:Ti6Al4V-PEEK多重材料结构 - 设计,制造和摩擦学特征,重点是骨科植入物

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摘要

A multi-material concept that gathers Ti6Al4V and PEEK properties in a cellular structured component was designed, fabricated and investigated targeting hip implants. SLM and pressure assisted injection techniques were used to obtain Ti6Al4V-PEEK multi-material structures. Aiming to reproduce to some extension the tribological phenomena occurring during and after hip implant insertion, five tribological tests were outlined and performed. The obtained results showed that the presence of PEEK on the Ti6Al4V-PEEK cellular structures led to a substantial improvement on the wear resistance (62% reduction in the mass loss) when compared to the material currently available on market for hip implants. The multi-material solution here investigated shows a good compromise between the primary stability after implant insertion and the wear performance.
机译:设计,制造和研究了蜂窝结构部件中的Ti6Al4V和PEEK性质的多重材料概念被设计,制造和研究靶向髋植入物。 SLM和压力辅助注射技术用于获得Ti6Al4V-PEEK多材料结构。 旨在繁殖在髋关节植入物插入期间和后发生的摩擦学现象,概述并进行了五种摩擦学检验。 所得结果表明,与目前髋部植入物目前可用的材料相比,PEEK对TI6AL4V-PEEK细胞结构的存在导致对耐磨性的显着提高(质量损失的62%)。 这里的多重材料解决方案研究显示了植入物插入后的初级稳定性和磨损性能之间的良好折衷。

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