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Tribological and mechanical performance evaluation of metal prosthesis components manufactured via metal injection molding

机译:通过金属注射成型制造的金属假体部件的摩擦学和力学性能评估

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摘要

The increasing number of total joint replacements, in particular for the knee joint, has a growing impact on the healthcare system costs. New cost-saving manufacturing technologies are being explored nowadays. Metal injection molding(MIM) has already demonstrated its suitability for the production of CoCrMo alloy tibial trays, with a significant reduction in production costs, by holding both corrosion resistance and biocompatibility. In this work, mechanical and tribological properties were evaluated on tibial trays obtained via MIM and conventional investment casting. Surface hardness and wear properties were evaluated through Vickers hardness, scratch and pin on disk tests. The MIM and cast finished tibial trays were then subjected to a fatigue test campaign in order to obtain their fatigue load limit at 5 millions cycles following ISO 14879-1 directions. CoCrMo cast alloy exhibited 514HVhardness compared to 335 HV of MIM alloy, furthermore it developed narrower scratches with a higher tendency towards microploughing than microcutting, in comparison to MIM CoCrMo. The observed fatigue limits were (1,766 +/- 52) N for cast tibial trays and (1,625 +/- 44) N for MIM ones. Fracture morphologies pointed out to a more brittle behavior of MIM microstructure. These aspects were attributed to the absence of a fine toughening and surface hardening carbide dispersion in MIM grains. Nevertheless, MIM tibial trays exhibited a fatigue limit far beyond the 900 N of maximum load prescribed by ISO and ASTM standards for the clinical application of these devices.
机译:关节置换的数量不断增加,尤其是膝关节置换,对医疗保健系统成本的影响越来越大。如今,正在探索新的节省成本的制造技术。金属注射成型(MIM)通过保持耐腐蚀性和生物相容性,已证明其适用于CoCrMo合金胫骨托的生产,并显着降低了生产成本。在这项工作中,对通过MIM和常规熔模铸造获得的胫骨托评估了力学和摩擦学性能。表面硬度和磨损性能通过维氏硬度,划痕和圆盘销钉进行评估。然后,对MIM和铸造完成的胫骨托进行疲劳测试,以在遵循ISO 14879-1规定的500万次循环中获得其疲劳载荷极限。与MIM合金的335 HV相比,CoCrMo铸造合金具有514HV的硬度,此外,与MIM CoCrMo相比,它产生的划痕更窄,并且比微切削具有更高的微耕性。观察到的疲劳极限对于铸造胫骨托为(1,766 +/- 52)N,对于MIM托盘为(1,625 +/- 44)N。断裂形态指出了MIM显微组织的脆性。这些方面归因于在MIM晶粒中没有精细的增韧和表面硬化的碳化物分散体。尽管如此,MIM胫骨托板的疲劳极限远远超过了ISO和ASTM标准为这些器械的临床应用所规定的最大负荷900N。

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  • 来源
    《Journal of materials science》 |2015年第1期|3.1-3.11|共11页
  • 作者单位

    Politecn Milan, Dept Chem Mat & Chem Engn G Natta, I-20133 Milan, Italy;

    Nanosurfaces Ind, I-40057 Bologna, Italy;

    Nanosurfaces Ind, I-40057 Bologna, Italy;

    Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, I-41125 Modena, MO, Italy;

    Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, I-41125 Modena, MO, Italy;

    Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, I-41125 Modena, MO, Italy;

    Politecn Milan, Dept Chem Mat & Chem Engn G Natta, I-20133 Milan, Italy|Consorzio Interuniv Nazl Sci & Tecnol Mat, Local Unit INSTM, Florence, Italy;

    Univ Modena & Reggio Emilia, Dept Engn Enzo Ferrari, I-41125 Modena, MO, Italy;

    Politecn Milan, Dept Chem Mat & Chem Engn G Natta, I-20133 Milan, Italy|Consorzio Interuniv Nazl Sci & Tecnol Mat, Local Unit INSTM, Florence, Italy;

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