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Microstructural characterization of low and high carbon CoCrMo alloy nanoparticles produced by mechanical milling

机译:机械球磨制备低碳和高碳CoCrmo合金纳米粒子的微观结构表征

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摘要

CoCrMo alloys are utilised as the main material in hip prostheses. The link between this type of hip prosthesis and chronic pain remains unclear. Studies suggest that wear debris generated in-vivo may be related to post-operative complications such as inflammation. These alloys can contain different amounts of carbon, which improves the mechanical properties of the alloy. However, the formation of carbides could become sites that initiate corrosion, releasing ions and/or particles into the human body. This study analysed the mechanical milling of alloys containing both high and low carbon levels in relevant biological media, as an alternative route to generate wear debris. The results show that low carbon alloys produce significantly more nanoparticles than high carbon alloys. During the milling process, strain induces an fcc to hcp phase transformation. Evidence for cobalt and molybdenum dissolution in the presence of serum was confirmed by ICP-MS and TEM EDX techniques.
机译:CoCrMo合金被用作髋关节假体的主要材料。这种髋关节假体与慢性疼痛之间的联系仍不清楚。研究表明,体内产生的磨损碎片可能与诸如炎症等术后并发症有关。这些合金可以包含不同量的碳,从而改善了合金的机械性能。但是,碳化物的形成可能成为引发腐蚀,将离子和/或颗粒释放到人体中的部位。这项研究分析了在相关生物介质中对含高碳和低碳水平合金的机械铣削,以作为产生磨屑的替代途径。结果表明,低碳合金产生的纳米粒子明显多于高碳合金。在研磨过程中,应变会引起从fcc到hcp的相变。 ICP-MS和TEM EDX技术证实了在血清存在下钴和钼溶解的证据。

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