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Amorphous Carbon Coatings for Total Knee Replacements—Part I: Deposition Cytocompatibility Chemical and Mechanical Properties

机译:用于全膝关节的无定形碳涂层 - 第一部分:沉积细胞粘接性化学和机械性能

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摘要

Diamond-like carbon (DLC) coatings have the potential to reduce implant wear and thus to contribute to avoiding premature failure and increase service life of total knee replacements (TKAs). This two-part study addresses the development of such coatings for ultrahigh molecular weight polyethylene (UHMWPE) tibial inlays as well as cobalt–chromium–molybdenum (CoCr) and titanium (Ti64) alloy femoral components. While a detailed characterization of the tribological behavior is the subject of part II, part I focusses on the deposition of pure (a-C:H) and tungsten-doped hydrogen-containing amorphous carbon coatings (a-C:H:W) and the detailed characterization of their chemical, cytological, mechanical and adhesion behavior. The coatings are fabricated by physical vapor deposition (PVD) and display typical DLC morphology and composition, as verified by focused ion beam scanning electron microscopy and Raman spectroscopy. Their roughness is higher than that of the plain substrates. Initial screening with contact angle and surface tension as well as in vitro testing by indirect and direct application indicate favorable cytocompatibility. The DLC coatings feature excellent mechanical properties with a substantial enhancement of indentation hardness and elastic modulus ratios. The adhesion of the coatings as determined in modified scratch tests can be considered as sufficient for the use in TKAs.
机译:菱形碳(DLC)涂层具有减少植入物磨损的可能性,从而有助于避免过早的衰竭并增加整个膝关节置换替换的使用寿命(TKAS)。这项两部分研究解决了超高分子量聚乙烯(UHMWPE)胫骨和钴 - 铬 - 钼(COCR)和钛(TI64)合金股骨组件的这种涂层的发展。虽然摩擦学行为的详细表征是第II部分的主题,但我对纯(AC:H)和钨掺杂的含氢无定形碳涂料(AC:H:W)的沉积和详细表征它们的化学,细胞学,机械和粘合性能。涂层通过物理气相沉积(PVD)制造,并显示典型的DLC形态和组合物,通过聚焦离子束扫描电子显微镜和拉曼光谱验证。它们的粗糙度高于普通基材的粗糙度。通过间接和直接施用的接触角和表面张力以及体外测试的初始筛选表明有利的细胞组成性。 DLC涂层具有优异的机械性能,具有压痕硬度和弹性模量比的显着提高。如修饰的划痕试验中测定的涂层的粘附可以被认为是在TKA中使用的。

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