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Influence of lubricating conditions on the two-body wear behavior and hardness of titanium alloys for biomedical applications

机译:润滑条件对生物医学应用钛合金双体磨损行为及硬度的影响

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Commercially pure titanium and titanium alloys are often preferred in biomedical applications due to their high biocompatibility behavior. However, the inadequate wear, fatigue and corrosion resistance of titanium alloys limit their use as a biomaterial in the human body. Furthermore, these alloys may contain such as aluminum and vanadium elements that can damage the nervous system. The aim of this in vitro study was to evaluate the influence of lubrication conditions on the two-body wear behavior of pure titanium, Ti-2.5Si-5Zr, Ti-5Si-5Zr, and Ti-6Al-4V using dual-axis computer-controlled wear simulator device. The mean wear volume loss of all test specimens after the two-body wear test procedures were determined to use a non-contact 3D profilometer. The alloys hardness and microstructures were evaluated using the Vickers indention method, scanning electron microscopy (SEM), X-ray spectroscopy (EDS), and X-ray diffraction (XRD) analysis. The hardness of Ti-6Al-4V titanium alloy material was significantly greater than the other alloy materials and cp-Ti. The mean wear volume loss of Ti-5Si-5Zr test specimens was lower than the other test group specimens irrespective of lubrication conditions. It was concluded, the two-body wear resistance of the alloy formed with the addition of silica to the pure titanium is increased after both wear test procedures. However, for the test materials in this study considered, correlations between the two-body wear resistance and hardness were found to be insignificant.
机译:由于其高生物相容性行为,在生物医学应用中通常优选商业纯钛和钛合金。然而,钛合金的耐磨性,疲劳和耐腐蚀性不足,限制了它们在人体中的生物材料。此外,这些合金可含有诸如铝和钒元素,其可能损害神经系统。这种体外研究的目的是评估润滑条件对纯钛,Ti-2.5Si-5ZR,Ti-5Si-5ZR和TI-6AL-4V的双轴磨损行为的影响 - 控制磨损模拟器设备。确定双体磨损试验程序后所有试样的平均磨损体积损失使用非接触式3D轮廓仪。使用维氏凝结法,扫描电子显微镜(SEM),X射线光谱(EDS)和X射线衍射(XRD)分析评估合金硬度和微观结构。 Ti-6Al-4V钛合金材料的硬度明显大于其他合金材料和CP-TI。无论润滑条件如何,Ti-5SI-5ZR试样的平均磨损体积损失低于其他试验组样品。结论是,在两种磨损试验程序后,通过将二氧化硅添加到纯钛中的合金的双体耐磨性增加。然而,对于考虑该研究的测试材料,发现双体耐磨性和硬度之间的相关性是微不足道的。

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