论文标题

改善用于骨科应用的Tisin和ZRN涂层的COCRMO合金耐腐蚀性的耐腐蚀性

Improving fretting corrosion resistance of CoCrMo alloy with TiSiN and ZrN coatings for orthopedic applications

论文作者

Tsai, Chen-En, Hung, James, Hu, Youxin, Wang, Da-Yung, Pilliar, Robert M., Wang, Rizhi

论文摘要

总髋关节置换是晚期骨关节炎的最有效治疗方法。然而,在模块化总髋关节植入物患者中,已经观察到与肉体腐蚀相关的不良局部组织反应(ALTR)。这项研究的目的是通过将硬涂层涂在表面上来增加COCRMO合金和相关金属离子释放的损坏性。阴极弧蒸发技术(ARC-PVD)用于将Tisin和ZRN硬涂层沉积到COCRMO底物上。涂层的形态,化学成分,晶体结构和残余应力的特征是扫描电子显微镜,能量色散X射线光谱和X射线衍射测定法。通过纳米调节,纳米刮擦测试和Rockwell C检验测量硬度,弹性模量和涂料的粘附。在1Hz的模拟体液中,对涂层和未涂层​​的COCRMO光盘的镀金腐蚀耐药性测试进行了100万个周期。分析了刺激后样品的形态变化,体积损失和金属离子释放。我们的分析显示了ZRN涂层的表面表面效果更好和较低的残留应力,但硬度更高,而Tisin涂层则具有更好的刮擦性。插图结果表明,两种涂层的cocrmo耐腐蚀性的耐腐蚀性大大改善。 ZRN和Tisin分别减少了四次和1000次的插图损失。两种涂层在刷子腐蚀测试中均显示出近90%的释放降低90%。我们的结果表明,对CoCRMO合金的硬涂层沉积可以显着改善其易碎腐蚀性的耐药性,从而有可能减轻金属髋关节植入物中的ALTR。

Total hip replacement is the most effective treatment for late stage osteoarthritis. However, adverse local tissue reactions (ALTRs) associated with fretting corrosion have been observed in patients with modular total hip implants. The purpose of this study is to increase the fretting corrosion resistance of the CoCrMo alloy and the associated metal ion release by applying hard coatings to the surface. Cathodic arc evaporation technique (arc-PVD) was used to deposit TiSiN and ZrN hard coatings on to CoCrMo substrates. The morphology, chemical composition, crystal structures and residual stress of the coatings were characterized by scanning electron microscopy, energy dispersive x-ray spectroscopy, and X-ray diffractometry. Hardness, elastic modulus, and adhesion of the coatings were measured by nano-indentation, nano-scratch test, and the Rockwell C test. Fretting corrosion resistance tests of coated and uncoated CoCrMo discs against Ti6Al4V spheres were conducted on a four-station fretting testing machine in simulated body fluid at 1Hz for 1 million cycles. Post-fretting samples were analyzed for morphological changes, volume loss and metal ion release. Our analyses showed better surface finish and lower residual stress for ZrN coating, but higher hardness and better scratch resistance for TiSiN coating. Fretting results demonstrated substantial improvement in fretting corrosion resistance of CoCrMo with both coatings. ZrN and TiSiN decreased fretting volume loss by more than 10 times and 1000 times, respectively. Both coatings showed close to 90% decrease of Co ion release during fretting corrosion tests. Our results suggest that hard coating deposition on CoCrMo alloy can significantly improve its fretting corrosion resistance and could thus potentially alleviate ALTRs in metal hip implants.

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