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Micro- and Nano-mechanical Properties of a CoCrMo Medical Implant Alloy and the Carbide-CoCrMo Surfaces

机译:CoCrMo医用植入合金和硬质合金-CoCrMo表面的微观和纳米力学性能

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The micro- and nano-mechanical properties of a CoCrMo medical implant alloy and a novel micro-textured carbide-coated CoCrMo alloy (MTCC) surface hardness and roughness were examined using micro- and nano-indentation and surface profilometry. The MTCC surfaces may be a successful alternative bearing material for artificial joints. Understanding the micro- and nano-mechanical, material properties and surface morphology of the MTCC-CoCrMo surface are important for designing wear resistant artificial joints. The micro-textured carbide surfaces were created using a microwave plasma assisted chemical vapor deposition reaction (MPCVD). Micro- and nano-mechanical properties, volumetric wear properties, and surface morphology were measured and used to determine the performance of the conventional CoCrMo alloy and MTCC surfaces (processed for either 2 or 4 hours) in static environments and under severe wear conditions. The hardness and surface parameters of the 4h MTCC surfaces were always greater than the 2h MTCC and CoCrMo alloy surfaces. The mirco- and nano-mechanical properties changed for the CoCrMo alloy, 2h, and 4h MTCC surfaces after, in contrast to before, wear testing. This indicates that the wear mechanisms affect the micro- and nano-mechanical results. Overall, the 4h MTCC surfaces had greater wear resistance than the 2h MTCC or CoCrMo alloy surfaces.
机译:使用微压痕和纳米压痕以及表面轮廓测量法检查了CoCrMo医用植入合金和新型微结构的硬质合金涂层CoCrMo合金(MTCC)的表面和硬度的微观和纳米力学性能。 MTCC表面可能是人造关节成功的替代轴承材料。了解MTCC-CoCrMo表面的微观和纳米力学,材料特性和表面形态对于设计耐磨的人工关节非常重要。使用微波等离子体辅助化学气相沉积反应(MPCVD)可以创建微织构碳化物表面。测量了微观和纳米机械性能,体积磨损性能和表面形态,并用于确定常规CoCrMo合金和MTCC表面(在2到4个小时的加工过程中)在静态环境和严重磨损条件下的性能。 4h MTCC表面的硬度和表面参数始终大于2h MTCC和CoCrMo合金表面。与之前相比,在磨损测试之后,CoCrMo合金,2h和4h MTCC表面的微机械和纳米力学性能发生了变化。这表明磨损机制会影响微观和纳米力学结果。总体而言,4h MTCC表面比2h MTCC或CoCrMo合金表面具有更高的耐磨性。

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