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首页> 外文期刊>Lubricants >A Preliminary Study to Enhance the Tribological Performance of CoCrMo Alloy by Fibre Laser Remelting for Articular Joint Implant Applications
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A Preliminary Study to Enhance the Tribological Performance of CoCrMo Alloy by Fibre Laser Remelting for Articular Joint Implant Applications

机译:光纤激光重熔增强关节植入物应用CoCrMo合金的摩擦学性能的初步研究

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CoCrMo alloy has long been used as a pairing femoral head material for articular joint implant applications because of its biocompatibility and reliable tribological performance. However, friction and wear issues are still present for CoCrMo (metal)/CoCrMo (metal) or CoCrMo (metal)/ultrahigh molecular weight polyethylene (UHMWPE) (plastic) pairs in clinical observations. The particulate wear debris generated from the worn surfaces of CoCrMo or UHMWPE can pose a severe threat to human tissues, eventually resulting in the failure of implants and the need for revision surgeries. As a result, a further improvement in tribological properties of this alloy is still needed, and it is of great interest to both the implant manufacturers and clinical surgeons. In this study, the surface of CoCrMo alloy was laser-treated by a fibre laser system in an open-air condition (i.e., no gas chamber required). The CoCrMo surfaces before and after laser remelting were analysed and characterised by a range of mechanical tests (i.e., surface roughness measurement and Vickers micro-hardness test) and microstructural analysis (i.e., XRD phase detection). The tribological properties were assessed by pin-on-disk tribometry and dynamic light scattering (DLS). Our results indicate that the laser-treated surfaces demonstrated a friction-reducing effect for all the tribopairs (i.e., CoCrMo against CoCrMo and CoCrMo against UHHMWPE) and enhanced wear resistance for the CoCrMo/CoCrMo pair. Such beneficial effects are chiefly attributable to the presence of the laser-formed hard coating on the surface. Laser remelting possesses several competitive advantages of being a clean, non-contact, fast, highly accurate and automated process compared to other surface coating methods. The promising results of this study point to the possibility that laser remelting can be a practical and effective surface modification technique to further improve the tribological performance of CoCr-based orthopaedic implants.
机译:CoCrMo合金由于其生物相容性和可靠的摩擦学性能,长期以来一直被用作关节植入物的配对股骨头材料。但是,在临床观察中,CoCrMo(金属)/ CoCrMo(金属)或CoCrMo(金属)/超高分子量聚乙烯(UHMWPE)(塑料)对仍然存在摩擦和磨损问题。从CoCrMo或UHMWPE的磨损表面产生的颗粒状磨损碎片可能对人体组织造成严重威胁,最终导致植入物失效以及需要翻修手术。结果,仍然需要进一步改善该合金的摩擦学性能,并且植入物制造商和临床外科医生都非常感兴趣。在这项研究中,CoCrMo合金的表面在露天条件下(即不需要气室)通过光纤激光系统进行了激光处理。对激光重熔前后的CoCrMo表面进行了分析,并通过一系列机械测试(即表面粗糙度测量和维氏显微硬度测试)和微观结构分析(即XRD相检测)对其进行了表征。摩擦学性能通过销盘摩擦学和动态光散射(DLS)进行评估。我们的结果表明,经激光处理的表面对所有摩擦副均表现出降低摩擦的作用(即CoCrMo对CoCrMo和CoCrMo对UHHMWPE),并且对CoCrMo / CoCrMo对具有增强的耐磨性。这种有益效果主要归因于在表面上存在激光形成的硬涂层。与其他表面涂覆方法相比,激光重熔具有清洁,非接触,快速,高度准确和自动化的过程等多项竞争优势。这项研究的有希望的结果表明,激光重熔可能是一种实用且有效的表面改性技术,以进一步改善CoCr基骨科植入物的摩擦学性能。

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