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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >The High performance of nanocrystalline CVD diamond coated hip joints in wear simulator test
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The High performance of nanocrystalline CVD diamond coated hip joints in wear simulator test

机译:纳米纳米CVD金刚石涂层髋关节在磨损模拟器测试中的高性能

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摘要

The superior biotribological performance of nanocrystalline diamond (NCD) coatings grown by a chemical vapor deposition (CVD) method was already shown to demonstrate high wear resistance in ball on plate experiments under physiological liquid lubrication. However, tests with a close-to-real approach were missing and this constitutes the aim of the present work. Hip joint wear simulator tests were performed with cups and heads made of silicon nitride coated with NCD of similar to 10 mu m in thickness. Five million testing cycles (Mc) were run, which represent nearly five years of hip joint implant activity in a patient For the wear analysis, gravimetry, profilometry, scanning electron microscopy and Raman spectroscopy techniques were used. After 0.5 Mc of wear test, truncation of the protruded regions of the NCD film happened as a result of a fine-scale abrasive wear mechanism, evolving to extensive plateau regions and highly polished surface condition (Ra < 10 nm). Such surface modification took place without any catastrophic features as cracking, grain pullouts or delamination of the coatings. A steady state volumetric wear rate of 0.02 mm(3)/Mc, equivalent to a linear wear of 0.27 mu m/Mc favorably compares with the best performance reported in the literature for the fourth generation alumina ceramic (0.05 mm(3)/Mc). Also, squeaking, quite common phenomenon in hard-on-hard systems, was absent in the present all-NCD system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过化学气相沉积(CVD)方法生长的纳米晶金刚石(NCD)涂层具有优异的生物摩擦性能,已显示出在生理液体润滑下的球板上实验中显示出高耐磨性。但是,缺少接近实际的测试,这构成了本研究的目的。髋关节磨损模拟器测试是使用由氮化硅制成的杯和盖进行的,该杯和盖的NCD厚度约为10微米。运行了五百万个测试周期(Mc),这代表了患者近五年的髋关节植入物活动。对于磨损分析,使用了重量分析,轮廓分析,扫描电子显微镜和拉曼光谱技术。经过0.5 Mc的磨损测试后,由于精细的磨料磨损机制,NCD膜的突出区域被截断,并逐渐扩展到宽平台区域和高度抛光的表面状态(Ra <10 nm)。进行这种表面修饰时没有任何灾难性的特征,例如开裂,晶粒脱落或涂层分层。 0.02 mm(3)/ Mc的稳态体积磨损率,相当于0.27μm / Mc的线性磨损,与文献中报道的第四代氧化铝陶瓷的最佳性能(0.05 mm(3)/ Mc)相比具有优势)。而且,在目前的全非CD系统中,没有声音在硬对硬系统中非常普遍的现象。 (C)2015 Elsevier Ltd.保留所有权利。

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