首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Characterization of the fretting corrosion behavior, surface and debris from head-taper interface of two different modular hip prostheses
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Characterization of the fretting corrosion behavior, surface and debris from head-taper interface of two different modular hip prostheses

机译:来自两种不同模块化髋关节假体的头锥接口的微量腐蚀行为,表面和碎屑的表征

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摘要

Modular hip prostheses are flexible to match anatomical variations and to optimize mechanical and tribological properties of each part by using different materials. However, micromotions associated with the modular components can lead to fretting corrosion and, consequently, to release of debris which can cause adverse local tissue reactions in human body. In the present study, the surface damage and residues released during in vitro fretting corrosion tests were characterized by stereomicroscope, SEM and EDS. Two models of modular hip prosthesis were studied: Model SS/Ti Cementless whose stem was made of ASTM F136 Ti-6Al-4V alloy and whose metallic head was made of ASTM F138 austenitic stainless steel, and Model SS/SS Cemented with both components made of ASTM F138 stainless steel. The fretting corrosion tests were evaluated according to the criteria of ASTM F1875 standard. Micromotions during the test caused mechanical wear and material loss in the head-taper interface, resulting in fretting-corrosion. Model SS/SS showed higher grade of corrosion. Different morphologies of debris predominated in each model studied. Small and agglomerated particles were observed in the Model SS/Ti and irregular particles in the Model SS/SS. After 10 million cycles, the Model SS/Ti was more resistant to fretting corrosion than the Model SS/SS. (C) 2016 Elsevier Ltd. All rights reserved.
机译:模块化髋关节假体是灵活的,以匹配解剖学变化,并通过使用不同的材料优化每个部分的机械和摩擦学特性。然而,与模块化部件相关的微调可导致腐蚀的腐蚀,并且因此,释放可导致人体中局部组织反应的碎片。在本研究中,通过立体显微镜,SEM和EDS在体外微量腐蚀试验期间释放的表面损伤和残留物。研究了两种模块化髋关节假体:模型SS / TI硬盘,其阀杆由ASTM F136 TI-6AL-4V合金制成,其金属头由ASTM F138奥氏体不锈钢制成,并且使用两种部件粘合的模型SS / SS。 ASTM F138不锈钢。根据ASTM F1875标准评估微动腐蚀试验。在测试过程中的微调导致头部锥形界面中的机械磨损和材料损失,导致腐蚀腐蚀。模型SS / SS显示出更高等级的腐蚀。在研究的每个模型中占据的不同形态。在模型SS / Ti和模型SS / SS中的不规则颗粒中观察到小和凝聚的颗粒。经过1000万次循环后,模型SS / TI比模型SS / SS更耐腐蚀更耐腐蚀。 (c)2016 Elsevier Ltd.保留所有权利。

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