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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A tribological study of cobalt chromium molybdenum alloys used in metal-on-metal resurfacing hip arthroplasty
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A tribological study of cobalt chromium molybdenum alloys used in metal-on-metal resurfacing hip arthroplasty

机译:金属对金属表面置换髋关节置换术中钴铬钼合金的摩擦学研究

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摘要

Some modern metal-on-metal bearings have undergone early failure and have exhibited a different microstructure from early hip replacement systems that produced very long lifetimes. This has led to investigations as to why different microstractural conditions, from ostensibly the same alloy chemistry, have had differing levels of survival. This paper is concerned with the effect of thermal treatment and hence the resulting microstructure on the wear properties of coupons using a micro-abrasion test. A series of cobalt-chromium-molybdenum (CoCrMo) alloy (ASTM F-75 98, ISO 5832-4:1996; BS 7252: Part 4:1997) sample coupons with different combinations of thermal treatments (solution heat treatment, hot isostatic pressing or sintering) were studied. Metallographic studies have been used to determine the volume fraction of carbide present. The carbide level and morphology varied markedly between samples with respect to thermal history. This work has established that microstructure and in particular the volume fraction, size and distribution of carbides is critical to the development of a low wear rate system. As-cast materials were determined to have greater abrasive wear resistance when compared to single or multiple heat treated materials.
机译:一些现代的金属对金属轴承已经经历了早期的故障,并且与早期的髋关节置换系统相比,呈现出不同的微观结构,后者产生了非常长的使用寿命。这导致人们对为什么表面上相同的合金化学导致不同的微观结构条件具有不同的生存水平进行了调查。本文关注的是热处理的影响,以及由此产生的微观结构对使用微磨耗试验的试样的磨损性能的影响。一系列钴铬钼(CoCrMo)合金(ASTM F-75 98,ISO 5832-4:1996; BS 7252:Part 4:1997)具有不同热处理组合的样品试样(固溶热处理,热等静压)或烧结)进行了研究。金相研究已被用来确定存在的碳化物的体积分数。样品之间的碳化物含量和形态在热历史方面有显着变化。这项工作已经证实,微观结构,特别是碳化物的体积分数,尺寸和分布对于开发低磨损率系统至关重要。与单一或多种热处理的材料相比,铸态材料具有更高的耐磨性。

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