振动模拟生物环境微磨损试验机的改进与改造

Diego Felipe Prieto-Morales, José Luis Caballero-Gómez, Willian Arnulfo Aperador-Chaparro, Juan Hilario Martínez-Pinilla
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引用次数: 0

摘要

为了评估用于关节假体的生物材料的使用寿命,本研究对用于髋关节置换术的生物材料不锈钢316L进行了不同的磨损试验。试验是在干燥介质中进行的,设备的某些特性得到了改进,可以通过两个物体的接触进行磨损试验,其中一个是所研究的生物材料,另一个是较硬材料的球体。为了评估,开发了一种装置来改变球体的旋转,改变它移动的角度和频率。一旦对上述设备进行了改进,就进行了测试,其中包括获得磨损轨迹,以便通过扫描电子显微镜(SEM)观察表面形态并测量轨迹的长度和宽度,从而获得所研究的每个案例的生物材料磨损系数。在这些测试中,磨损系数随球体的运动角度而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Upgrade and Modification of a Machine for Micro-Abrasion Wear Testing in Simulated Biological Environments with Oscillatory Motion
Aiming to evaluate the useful life of biomaterials used in joint prostheses, this study performed different wear tests in stainless steel 316L, a biomaterial used in hip joint replacements. The tests were carried out in a dry medium, with the help of an equipment that was improved regarding some of its characteristics and allows conducting wear tests via the contact of two bodies, one of them being the biomaterial under study and the other one a sphere of a harder material. For the evaluation, a device was developed to change the rotation of the sphere, varying the angle it traveled and the frequency with which it did it. Once the improvements were made to the aforementioned equipment, tests were conducted which involved obtaining wear tracks in order to observe the surface morphology through scanning electron microscopy (SEM) and to measure the length and the width of the tracks, with which the biomaterial wear coefficient was obtained for each case studied. In these tests, the wear coefficient showed variations with respect to the sphere’s angle of travel.
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