Rothammer Benedict, Neusser Kevin, Marian Max, Bartz Marcel, Krauß Sebastian, Böhm Thomas, Thiele Simon, Merle Benoit, Detsch Rainer, Wartzack Sandro
Engineering Design, Friedrich-Alexander-University Erlangen-Nuremberg (FAU), Martensstr. 9, 91058 Erlangen, Germany.
Materials Science & Engineering, Institute I, Interdisciplinary Center for Nanostructured Films (IZNF), Friedrich-Alexander-University Erlangen-Nuremberg (FAU), Cauerstr. 3, 91058 Erlangen, Germany.
Polymers (Basel). 2021 Jun 11;13(12):1952. doi: 10.3390/polym13121952.
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.
类金刚石碳(DLC)涂层有潜力减少植入物磨损,从而有助于避免全膝关节置换术(TKA)过早失效并延长其使用寿命。这项分为两部分的研究探讨了用于超高分子量聚乙烯(UHMWPE)胫骨衬垫以及钴铬钼(CoCr)和钛(Ti64)合金股骨部件的此类涂层的开发。虽然摩擦学行为的详细表征是第二部分的主题,但第一部分重点关注纯(a-C:H)和掺钨含氢非晶碳涂层(a-C:H:W)的沉积及其化学、细胞学、力学和粘附行为的详细表征。这些涂层通过物理气相沉积(PVD)制备,并显示出典型的DLC形态和成分,聚焦离子束扫描电子显微镜和拉曼光谱证实了这一点。它们的粗糙度高于未处理的基材。通过接触角和表面张力进行的初步筛选以及间接和直接应用的体外测试表明具有良好的细胞相容性。DLC涂层具有优异的机械性能,压痕硬度和弹性模量比大幅提高。在改进的划痕试验中测定的涂层附着力可认为足以用于TKA。