首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine >Pitch-based carbon-fibre-reinforced poly (ether–ether–ketone) OPTIMA® assessed as a bearing material in a mobile bearing unicondylar knee joint
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Pitch-based carbon-fibre-reinforced poly (ether–ether–ketone) OPTIMA® assessed as a bearing material in a mobile bearing unicondylar knee joint

机译:沥青基碳纤维增强聚(醚-醚-酮)OPTIMA®被评估为可移动式单icon膝关节的轴承材料

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The introduction of unicondylar knee prostheses has allowed the preservation of the non-diseased compartment of the knee while replacing the diseased or damaged compartment. In an attempt to reduce the likelihood of aseptic loosening, new material combinations have been investigated within the laboratory. Tribological tests (friction, lubrication, and wear) were performed on metal-on-carbon-fibre-reinforced (CFR) poly (ether–ether–ketone) (PEEK) (pitch-based) mobile unicondylar knee prostheses up to 5×106 cycles. Both a loaded soak control and an unloaded soak control (both medial and lateral components) were used to compensate for weight change due to lubricant absorption. For this material combination the loaded soak control gave slightly lower wear for both the medial and the lateral components than did the unloaded soak control. The medial components gave higher steady state wear than the lateral components (1.70 mm3 per 106 cycles compared with 1.02 mm3 per 106 cycles with the loaded soak control). The results show that the CFR PEEK unicondylar knee joints performed well in these wear tests. They gave lower volumetric wear rates than conventional metal-on-ultra-high-molecular-weight polyethylene prostheses have given in the past when tested under similar conditions. The friction tests showed that, at physiological viscosities, these joints operated in the boundary–mixed-lubrication regime. The low wear produced by these joints seems to be a function of the material combination and not of the lubrication regime.
机译:单icon膝关节假体的引入使膝盖的未患病隔室得以保留,同时替换了患病或受损的隔室。为了减少无菌松动的可能性,已经在实验室内研究了新的材料组合。在碳纤维增强的金属(CFR)聚醚醚酮(PEEK)(基于节距)的移动式icon突膝关节假体上进行了摩擦学测试(摩擦,润滑和磨损),该假体最大为5×10 6 个周期。加载的浸泡控制和卸载的浸泡控制(内侧和外侧组件)都用于补偿由于润滑剂吸收而引起的重量变化。对于这种材料组合,与未加载的均热控制相比,加载的均热控制对内侧和外侧部件的磨损均较小。内侧部件比外侧部件具有更高的稳态磨损(每10 6 循环1.70 mm 3 相比于每10 > 6 个循环(带有已加载的浸泡控件)。结果表明,在这些磨损测试中,CFR PEEK单icon膝关节表现良好。当在类似条件下进行测试时,它们的体积磨损率比过去的传统金属超高分子量聚乙烯假体低。摩擦测试表明,在生理粘度下,这些关节在边界混合润滑状态下工作。这些接头产生的低磨损似乎是材料组合的函数,而不是润滑方式的函数。

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