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首页> 外文期刊>International Journal of Surface Science and Engineering >Friction and wear behaviour of UHMWPE against titanium alloy ball and alumina femoral head due to torsional fretting
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Friction and wear behaviour of UHMWPE against titanium alloy ball and alumina femoral head due to torsional fretting

机译:超高分子量聚乙烯由于微动摩擦而对钛合金球和氧化铝股骨头的摩擦磨损性能

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摘要

The torsional wear behaviours of ultra high molecular weight polyethylene (UHMWPE) were investigated in ball-on-plate torsional wear device. Alumina femoral head and Ti6Al4V alloy ball, were selected as the counterballs in this study. It was found that the torsional fretting running regimes transferred from partial slip regime (PSR) to slip regime (SR) were analysed, however the mixed fretting regime (MFR) was never appeared in this tests. In PSR (lower angular displacement amplitudes), slight damage occurred at small angular displacement and several wear appeared at large value. Adhesion appeared at the centre zone of all fretting scars in SR. Detachment of particles, ripples and ploughs were observed under higher angular displacement amplitudes. The UHWMPE/Ti6Al4V pair showed higher contact stiffness, friction torque, wear damage and material transfer than that of the presentation of UHWMPE/Al_2O_3 pairs. The wear mechanisms of UHWMPE/Ti6Al4V were combined with abrasive wear and delamination. The generation of radial ripples and micro-cracking were the main damage modes for UHMWPE/Al_2O_3.
机译:研究了超高分子量聚乙烯(UHMWPE)在板球式扭转磨损装置中的扭转磨损行为。本研究选择了氧化铝股骨头和Ti6Al4V合金球作为平衡球。发现分析了从部分滑移状态(PSR)转移到滑移状态(SR)的扭转微动运行状态,但是在该测试中从未出现混合微动状态(MFR)。在PSR(较低的角位移幅度)中,较小的角位移会产生轻微的损坏,而较大的值会出现一些磨损。粘连出现在SR中所有微动疤痕的中心区域。在较高的角位移幅度下观察到了颗粒,波纹和犁的分离。与UHWMPE / Al_2O_3对相比,UHWMPE / Ti6Al4V对显示出更高的接触刚度,摩擦扭矩,磨损损伤和材料转移。 UHWMPE / Ti6Al4V的磨损机理与磨料磨损和分层相结合。径向波纹和微裂纹的产生是UHMWPE / Al_2O_3的主要破坏方式。

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