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模块化髋关节柄体外腐蚀测试。

In vitro corrosion testing of modular hip tapers.

作者信息

Goldberg Jay R, Gilbert Jeremy L

机构信息

Department of Biomedical Engineering, Room 501, Olin Engineering Center, Marquette University, P.O. Box 1881, Milwaukee, Wisconsin 53201, USA.

出版信息

J Biomed Mater Res B Appl Biomater. 2003 Feb 15;64(2):78-93. doi: 10.1002/jbm.b.10526.

DOI:10.1002/jbm.b.10526
PMID:12516082
Abstract

The in vivo fretting behavior of modular hip prostheses was simulated to determine the effects of material combination and a unique TiN/AlN coating on fretting and corrosion at the taper interface. Fretting current, open-circuit potential (OCP), and quantities of soluble debris were measured to determine the role of mechanically assisted crevice corrosion on fretting and corrosion of modular hip tapers. Test groups consisting of similar-alloy (Co-Cr-Mo head/Co-Cr-Mo neck), mixed-alloy (Co-Cr-Mo head/Ti-6Al-4V neck), and TiN/AlN-coated mixed-alloy modular hip taper couples were used. Loads required to initiate fretting were similar for all test groups and were well below loads produced by walking and other physical activities. Decreases in OCP and increases in fretting current observed during long-term cyclic loading were indicative of fretting and corrosion. Current measured after cessation of cyclic loading suggests that once the conditions for crevice corrosion are established, corrosion can continue in the absence of loading. The chemical, mechanical, and electrochemical measurements, along with microscopic inspections of the taper surfaces indicate that the fretting and corrosion behavior of similar- and mixed-alloy taper couples are similar and that the coated samples are more resistant to fretting and corrosion. The results of this study clearly indicate the role of mechanical loading in the corrosion process, and support the hypothesis of mechanically assisted crevice corrosion.

摘要

模拟模块化髋关节假体的体内微动行为,以确定材料组合和独特的TiN/AlN涂层对锥度界面处微动和腐蚀的影响。测量微动电流、开路电位(OCP)和可溶性碎屑量,以确定机械辅助缝隙腐蚀在模块化髋关节锥度微动和腐蚀中的作用。使用了由相似合金(钴铬钼股骨头/钴铬钼股骨颈)、混合合金(钴铬钼股骨头/钛6铝4钒股骨颈)和TiN/AlN涂层混合合金模块化髋关节锥度对组成的测试组。所有测试组引发微动所需的载荷相似,且远低于行走和其他身体活动产生的载荷。长期循环加载过程中观察到的OCP降低和微动电流增加表明存在微动和腐蚀。循环加载停止后测量的电流表明,一旦缝隙腐蚀条件确立,在无载荷情况下腐蚀仍会继续。化学、机械和电化学测量以及锥度表面的微观检查表明,相似合金和混合合金锥度对的微动和腐蚀行为相似,且涂层样品更耐微动和腐蚀。本研究结果清楚地表明了机械加载在腐蚀过程中的作用,并支持了机械辅助缝隙腐蚀的假设。

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