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首页> 外文期刊>Surface & Coatings Technology >Wear and adhesion resistance of duplex coatings deposited on Ti6Al4V alloy using MAO and CFUBMS
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Wear and adhesion resistance of duplex coatings deposited on Ti6Al4V alloy using MAO and CFUBMS

机译:使用MAO和CFUBMS在Ti6Al4V合金上沉积的双相涂层的耐磨性和附着力

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摘要

DLC (Diamond-Like Carbon) coatings feature high hardness, good wear resistance and low friction. Applying DLC coatings to titanium alloys using different coating techniques can improve the surface properties. However, in many cases, this hard coating fails under mechanical loading due to the mechanical incompatibility of the coating and substrate. Therefore, an intermediate layer providing improved load support is necessary to prevent the failure of the DLC film. For this purpose, the Micro Arc Oxidation (MAO) and Closed Field Unbalance Magnetron Sputtering (CFUBMS) coating techniques were used to deposit duplex MAO/DLC coating on Ti6Al4V (Grade 5) alloy. The surface topography, morphology, crystallographic structure and thickness of the duplex coatings were determined using Scanning Electron Microscopy (SEM), XRD and RAMAN. The hardness was measured using a nano-hardness tester. The hardness, adhesion to the substrate and load-bearing capacity of DLC increased due to the intermediate layer of TiO_2 deposited by MAO because it decreased the mechanical incompatibility between the soft substrate and hard coating. The duplex coating using the MAO/CFUBMS process was effective in maintaining a convenient, low, stable coefficient of friction and improving the tribological behaviour of the Ti6Al4V substrate. It was observed that the duplex coatings deposited on the Ti6Al4V substrate indicate a better tribological performance than the DLC or MAO coatings on the Ti6Al4V alloy substrate.
机译:DLC(类金刚石碳)涂层具有高硬度,良好的耐磨性和低摩擦力。使用不同的涂层技术将DLC涂层应用于钛合金可以改善表面性能。然而,在许多情况下,由于涂层和基材的机械不相容性,该硬涂层在机械载荷下失效。因此,需要提供改善的负载支撑的中间层以防止DLC膜的失效。为此,使用微弧氧化(MAO)和闭合场不平衡磁控溅射(CFUBMS)涂层技术在Ti6Al4V(5级)合金上沉积双相MAO / DLC涂层。使用扫描电子显微镜(SEM),XRD和RAMAN确定双面涂层的表面形貌,形态,晶体结构和厚度。使用纳米硬度测试仪测量硬度。由于MAO沉积的TiO_2中间层,增加了DLC的硬度,对基材的粘附力和承载能力,因为它减少了软基材和硬涂层之间的机械不相容性。使用MAO / CFUBMS工艺的双涂层有效地保持了方便,低,稳定的摩擦系数并改善了Ti6Al4V基板的摩擦学性能。观察到,沉积在Ti6Al4V基底上的双相涂层显示出比Ti6Al4V合金基底上的DLC或MAO涂层更好的摩擦学性能。

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