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An overview on diamond-like carbon coatings in medical applications

机译:医疗应用类金刚石碳涂层概述

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摘要

This overview article on diamond-like carbon (DLC) coatings in medical applications covers the interaction of cells and tissue with DLC and alloyed DLC to generate desired cell reactions as well as the release of toxic elements. The promising in vitro results of DLC to prevent thrombus formation in vascular applications are summarized and the problems of transferring these results to in vivo applications are described. Since DLC shows extremely low wear in technical applications, a desired implementation is also to build wear particle free, articulating joint replacements by coating the bearing surfaces. Several in vivo studies using DLC coatings on articulating joints resulted in a failure due to partial coating delamination some years after implantation. It will be shown that this delayed delamination was caused by crevice corrosion (CC) of the adhesion-promoting interlayer and the reason why different corrosion processes may prevent an easy transfer of a successful technical application of DLC onto an implant will be discussed. The main issue for successful, long-term, in vivo applications of DLC coatings on implants is to predict the in vivo survival time and especially the long-term adhesion stability of the coating. The formation at the interface of a few atomic layers of reaction products, usually a metal-carbide, will be addressed. Furthermore, any contamination from residual gas or any cross contamination will result in a different reactively formed interface material with different properties. Delamination can then occur by a slowly advancing crack in this thin carbidic layer governed by the laws of stress corrosion cracking (SCC). It will be shown that if a stable coating adhesion is obtained, DLC coated articulating implants show basically no wear of the coating up to 101. million articulations on a simulator corresponding to about 101. years of in vivo articulation.
机译:这篇有关医疗应用中类金刚石碳(DLC)涂层的概述文章涵盖了细胞和组织与DLC和合金化DLC的相互作用,以产生所需的细胞反应以及释放有毒元素。总结了DLC预防血管应用中血栓形成的有希望的体外结果,并描述了将这些结果转移到体内应用中的问题。由于DLC在技术应用中显示出极低的磨损,因此,一种理想的实现方式是通过涂覆轴承表面来构建无磨损颗粒,铰接接头的替代件。在关节的关节上使用DLC涂层进行的几项体内研究均由于植入后数年部分涂层分层而导致失败。将显示这种延迟的分层是由促进粘合的中间层的缝隙腐蚀(CC)引起的,并且将讨论不同的腐蚀过程可能阻止将DLC的成功技术应用轻松转移到植入物上的原因。 DLC涂层在植入物上成功,长期,体内应用的主要问题是预测涂层的体内存活时间,尤其是长期粘附稳定性。将解决通常是金属碳化物的反应产物的几个原子层在界面处的形成。此外,来自残余气体的任何污染或任何交叉污染都将导致具有不同性质的不同反应形成的界面材料。然后,根据应力腐蚀开裂(SCC)的规律,在薄薄的碳化层中缓慢前进的裂纹会导致分层。将会显示,如果获得稳定的涂层附着力,则在对应于大约101年体内关节运动的模拟器上,DLC涂层关节植入物基本上不会出现高达101.百万关节的涂层磨损。

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