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Friction and wear properties of ultra-high molecular mass polyethylene reinforced with Al2O3 nano-particle

机译:Al2O3纳米颗粒增强超高分子量聚乙烯的摩擦磨损性能

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摘要

The ultra-high molecular mass polyethylene (UHMMPE) as an artificial joint acetabular material was filled with nano-powder of Al2O3 of various mass fractions. The effect of Al2O3 mass fraction on the hardness, wetting property and tribological properties of the Al2O3-UHMMPE composites under dry friction sliding against both stainless steel and Ti-6Al-4V alloy was investigated. The morphologies of the worn surfaces of composites were observed with optical microscope. The results show that, wetting property and wear resistance of the composites are improved by filling Al2O3, while the friction coefficient is decreased largely under dry friction as compared with that of the unfilled UHMMPE. This is attributed to the reinforcing function of the nano-powder of Al2O3 in the composites. The wear of UHMMPE is dominated by plowing, plastic deformation and fatigue wear; while the Al2O3-UHMMPE composites are characterized by the mild fatigue wear.
机译:在超高分子量聚乙烯(UHMMPE)中作为人工关节髋臼材料填充了各种质量分数的Al2O3纳米粉。研究了Al2O3质量分数对Al2O3-UHMMPE复合材料在不锈钢和Ti-6Al-4V合金干摩擦滑动下的硬度,润湿性和摩擦学性能的影响。用光学显微镜观察复合材料的磨损表面的形态。结果表明,与未填充的UHMMPE相比,通过填充Al2O3可以改善复合材料的润湿性和耐磨性,而在干摩擦条件下其摩擦系数大大降低。这归因于复合物中Al2O3纳米粉的增强功能。 UHMMPE的磨损主要是耕作,塑性变形和疲劳磨损。 Al2O3-UHMMPE复合材料的特征是轻度疲劳磨损。

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