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Instability of diamond-like carbon (DLC) films during sliding in aqueous environment

机译:类金刚石碳(DLC)膜在水性环境中滑动过程中的不稳定性

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The instability of diamond-like carbon (DLC) film deposited on Ti-6Al-4V alloy substrate using the r.f.-PACVD method was investigated under sliding conditions in an aqueous environment. Significant adhesive wear was observed when tested in this environment, while normal abrasive wear occurred in an ambient air of relative humidity about 25 percent. A critical test was performed to elucidate the reason for the instability which limits the biomedical applications of the DLC coating. By employing a multi-step coating process, it was shown that the instability is closely related to the penetration of water molecules to the interface via through-film defects or pinholes. These results suggest that the stability of DLC film in aqueous environment can be improved by controlling the through-film defects in the DLC coating layer.
机译:研究了使用r-f.-PACVD方法在水环境中滑动条件下沉积在Ti-6Al-4V合金基底上的类金刚石碳(DLC)膜的不稳定性。在这种环境下进行测试时,观察到明显的粘合剂磨损,而在相对湿度约为25%的环境空气中发生了正常的磨料磨损。进行了严格的测试,以阐明不稳定性的原因,该不稳定性限制了DLC涂层的生物医学应用。通过采用多步涂覆工艺,发现不稳定性与水分子通过透膜缺陷或针孔渗透到界面密切相关。这些结果表明,通过控制DLC涂层中的贯穿膜缺陷,可以改善DLC膜在水性环境中的稳定性。

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