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滑动磨损条件下CoCrMo合金产生的磨损颗粒的表征

Characterization of Wear Particles Generated from CoCrMo Alloy under Sliding Wear Conditions.

作者信息

Pourzal R, Catelas I, Theissmann R, Kaddick C, Fischer A

机构信息

University Duisburg-Essen, Materials Science and Engineering, Lotharstr. 1, 47057 Duisburg, Germany.

出版信息

Wear. 2011 Jul 29;271(9-10):1658-1666. doi: 10.1016/j.wear.2010.12.045.

Abstract

Biological effects of wear products (particles and metal ions) generated by metal-on-metal (MoM) hip replacements made of CoCrMo alloy remain a major cause of concern. Periprosthetic osteolysis, potential hypersensitivity response and pseudotumour formation are possible reactions that can lead to early revisions. To accurately analyse the biological response to wear particles from MoM implants, the exact nature of these particles needs to be characterized. Most previous studies used energy-dispersive X-ray spectroscopy (EDS) analysis for characterization. The present study used energy filtered transmission electron microscopy (TEM) and electron diffraction pattern analysis to allow for a more precise determination of the chemical composition and to gain knowledge of the crystalline structure of the wear particles.Particles were retrieved from two different test rigs: a reciprocating sliding wear tribometer (CoCrMo cylinder vs. bar) and a hip simulator according to ISO 14242-1 (CoCrMo head vs. CoCrMo cup). All tests were conducted in bovine serum. Particles were retrieved from the test medium using a previously published enzymatic digestion protocol.Particles isolated from tribometer samples had a size of 100 - 500 nm. Diffraction pattern analysis clearly revealed the lattice structure of strain induced hcp ε-martensite. Hip simulator samples revealed numerous particles of 15 - 30 nm and 30 - 80 nm size. Most of the larger particles appeared to be only partially oxidized and exhibited cobalt locally. The smallest particles were Cr(2)O(3) with no trace of cobalt. It optically appeared that these Cr(2)O(3) particles were flaking off the surface of larger particles that depicted a very high intensity of oxygen, as well as chromium, and only background noise of cobalt. The particle size difference between the two test rigs is likely related to the conditions of the two tribosystems, in particular the difference in the sample geometry and in the type of sliding (reciprocating vs. multidirectional).Results suggest that there may be a critical particle size at which chromium oxidation and cobalt ionization is accelerated. Since earlier studies have shown that wear particles are covered by organic residue which may act as a passive layer inhibiting further oxidation, it would suggest that this organic layer may be removed during the particle isolation process, resulting in a change of the particle chemical composition due to their pyrophoric properties. However, prior to being isolated from the serum lubricant, particles remain within the contact area of head and cup as a third-body. It is therefore possible that during that time, particles may undergo significant transformation and changes in chemical composition in the contact area of the head and cup within the tribological interface due to mechanical interaction with surface asperities.

摘要

由钴铬钼合金制成的金属对金属(MoM)髋关节置换物产生的磨损产物(颗粒和金属离子)的生物学效应仍然是一个主要的关注原因。假体周围骨溶解、潜在的过敏反应和假肿瘤形成是可能导致早期翻修的反应。为了准确分析对MoM植入物磨损颗粒的生物学反应,需要对这些颗粒的精确性质进行表征。以前的大多数研究使用能量色散X射线光谱(EDS)分析进行表征。本研究使用能量过滤透射电子显微镜(TEM)和电子衍射图案分析,以便更精确地确定化学成分并了解磨损颗粒的晶体结构。颗粒从两个不同的试验装置中回收:一个往复滑动磨损摩擦计(钴铬钼圆柱体对棒)和一个根据ISO 14242-1的髋关节模拟器(钴铬钼股骨头对钴铬钼髋臼杯)。所有测试均在牛血清中进行。使用先前发表的酶消化方案从测试介质中回收颗粒。从摩擦计样品中分离出的颗粒大小为100 - 500纳米。衍射图案分析清楚地揭示了应变诱导的密排六方ε-马氏体的晶格结构。髋关节模拟器样品显示出许多大小为15 - 30纳米和30 - 80纳米的颗粒。大多数较大的颗粒似乎只是部分氧化,局部呈现钴。最小的颗粒是Cr(2)O(3),没有钴的痕迹。从光学上看,这些Cr(2)O(3)颗粒似乎是从较大颗粒的表面剥落下来的,较大颗粒显示出非常高的氧以及铬的强度,而只有钴的背景噪声。两个试验装置之间的颗粒大小差异可能与两个摩擦系统的条件有关,特别是样品几何形状和滑动类型(往复式与多向式)的差异。结果表明,可能存在一个临界颗粒大小,在该大小下铬氧化和钴离子化会加速。由于早期研究表明磨损颗粒被有机残留物覆盖,有机残留物可能作为抑制进一步氧化的钝化层,这表明该有机层可能在颗粒分离过程中被去除,由于其自燃特性导致颗粒化学成分发生变化。然而,在从血清润滑剂中分离之前,颗粒作为第三体留在股骨头和髋臼杯的接触区域内。因此,在此期间,由于与表面粗糙度的机械相互作用,颗粒可能在摩擦学界面内的股骨头和髋臼杯的接触区域经历显著的转变和化学成分变化。

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