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多功能复合涂层作为全髋关节置换中轴承的耐磨层。

Multifunctional composite coating as a wear-resistant layer for the bearing in total hip joint replacement.

机构信息

Biomedical Research Institute, Korea Institute of Science & Technology (KIST), Seoul 136-650, Korea.

出版信息

ACS Appl Mater Interfaces. 2013 Jan 23;5(2):395-403. doi: 10.1021/am302452f. Epub 2012 Dec 31.

Abstract

In this study, we developed Ti-TiN composite coatings with fine lamellar structures for use as an enhanced wear-resistant layer between the bearing components of the polymer-lined acetabular cup and the metal femoral head of total hip joint replacements (THRs). A plasma spraying deposition method was used to apply the composite coatings, and the thickness of TiN layer in the composite could be controlled by varying the flow rate of N(2) atmospheric gas. The surface properties, such as roughness and hardness, were analyzed, and the friction coefficient (μ) and wear rate (k) were measured using a bovine serum wear test. A biocompatibility test was performed to evaluate the toxicity of the composite coatings. Our experimental results reveal that the friction and wear resistance of composite coatings is superior to that of the metallic implant materials, and they have a higher level of fracture toughness as compared with other ceramic coatings because of a good balance between the hardness of the TiN and the toughness of the Ti. Furthermore, these coatings possessed excellent biocompatibility. The experimental results also demonstrate that the improved wear properties can be attributed to a certain level of unavoidable porosity that is due to the rapid solidification of liquid droplets during the plasma spraying process. The pores in the coating surface play an important role as a lubricant (bovine serum) reservoir, reducing the actual contact area and friction losses.

摘要

在这项研究中,我们开发了具有细片状结构的 Ti-TiN 复合涂层,用作聚合物衬里髋臼杯的轴承部件和全髋关节置换 (THR) 的金属股骨头之间的增强耐磨层。采用等离子喷涂沉积法施加复合涂层,通过改变 N(2)大气气体的流量可以控制 TiN 层在复合涂层中的厚度。分析了表面性能,如粗糙度和硬度,并通过牛血清磨损试验测量了摩擦系数 (μ) 和磨损率 (k)。进行了生物相容性试验以评估复合涂层的毒性。我们的实验结果表明,复合涂层的摩擦和耐磨性优于金属植入材料,并且与其他陶瓷涂层相比具有更高的断裂韧性,因为 TiN 的硬度和 Ti 的韧性之间达到了良好的平衡。此外,这些涂层具有优异的生物相容性。实验结果还表明,改善的耐磨性可归因于等离子喷涂过程中液滴快速凝固导致的一定程度的不可避免的孔隙率。涂层表面的孔隙作为润滑剂(牛血清)的储存库起着重要作用,减少了实际接触面积和摩擦损失。

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