首页> 外文期刊>Surface & Coatings Technology >Microstructure, adhesion and tribological properties of CrN/CrTiAlSiN/WCrTiAlN multilayer coatings deposited on nitrocarburized AISI 4140 steel
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Microstructure, adhesion and tribological properties of CrN/CrTiAlSiN/WCrTiAlN multilayer coatings deposited on nitrocarburized AISI 4140 steel

机译:CRN / CRTIALSIN / WCRTIALN多层涂层沉积在氮乙碳的AISI 4140钢上的微观结构,粘附和摩擦学性质

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摘要

In this study, the CrN/CrTiAlSiN/WCrAlTiN multilayer coatings have been deposited on polished AISI 4140 steel substrates (named only-coating specimens) and plasma nitrocarburized specimens (named duplex specimens) by cathodic multi-arc evaporation. The microstructure and composition of the specimens were studied using X-ray diffraction (XRD), scanning electron microscopy (SEM) with Energy dispersive X-ray analysis (EDX), and transmission electron microscope (TEM) techniques. The micro-hardness and nano-hardness were measured by Vickers hardness tester and nanoindentation, respectively. The adhesion and tribological behavior were evaluated using the Rockwell-C indentation and micro-tribometer, respectively. The results showed that plasma nitrocarburizing gives rise to a modified layer due to diffusion of nitrogen/carbon, leading to surface hardness, H, of 13.0 GPa, compared to H = 6.8 GPa for the untreated steel. Notably, it shows that the super-hardness (11 = 47.9 GPa) multilayer coating consists of a bottom CrN layer, a middle CrTiAlSiN layer, and an outmost superlattice WCrTiAlN layer. The nitrocarburizing pretreatment considerably improves adhesion strength of the duplex specimen compared with the only-coating one. The improved mechanical and tribological properties of the duplex specimen are mainly related to the gradient in the hardness profile of the diffusion nitrocarburized layer.
机译:在该研究中,通过阴极多电弧蒸发沉积CRN / Crtialsin / Wcrantin多层涂层已经沉积在抛光的AISI 4140钢基板(命名的涂层标本)和等离子体氮碳化试样(命名双面样本)上。使用X射线衍射(XRD),扫描电子显微镜(SEM)与能量分散X射线分析(EDX)和透射电子显微镜(TEM)技术进行了分类的微观结构和组成。通过维氏硬度测试仪和纳米凸缘测量微硬度和纳米硬度。使用Rockwell-C压痕和微摩擦计评估粘附和摩擦学行为。结果表明,由于氮气/碳的扩散,导致氮焦炭引起改性层,导致13.0GPa的表面硬度,与未处理的钢的H = 6.8GPa相比。值得注意的是,它表明,超硬度(11 = 47.9GPa)多层涂层由底部CRN层,中间CRIALSIN层和最外晶的超晶格层组成。与唯一涂层相比,氮碳脱碳预处理显着提高了双相样品的粘附强度。双相样品的改善的机械和摩擦学特性主要与扩散氮碳化层的硬度曲线中的梯度相关。

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