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首页> 外文期刊>Bulletin of materials science >Influence of carbon content on the microstructure, mechanical and tribological properties of CrAlCN coatings deposited by DC unbalanced magnetron sputtering
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Influence of carbon content on the microstructure, mechanical and tribological properties of CrAlCN coatings deposited by DC unbalanced magnetron sputtering

机译:碳含量对直流非平衡磁控溅射沉积CrAlCN涂层的组织,力学性能和摩擦学性能的影响

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The influence of carbon content on the microstructure, mechanical and tribological properties of CrAlCN was systematically investigated. For this purpose, five duplex coatings of CrAlCN deposited on AISI H13 steel by themagnetron-sputtering technique were developed. The carbon content of the coatingswas varied between 10.26 and 80.56 at% by modifying the percentage of methane in the working gas mixture CH$_4$/(Ar $+$ N$_2$). The effect of carbon content on the morphology, microstructure, mechanical and tribological properties of the CrAlCN coatingswas evaluated. Coatings showed a high crystalline structure at lowcarbon contents, consisting mainly of chromium nitrides and aluminiuma??chromium nitrides. With the increase of carbon content in the coatings, chromium carbides formed at the expense of nitrides, presenting a highly amorphous structure with high carbon content. Initially, the hardness and Younga??s modulus of the coatings increased with carbon content, possibly due to hardening of the interstitial solid solution of carbon within the matrix of CrAlN. Then, they were decreased along with the coefficient of friction and wear rate due to the self-lubricating effect of graphite-like carbon. However, above the 54.74 at% carbon, the wear rate of CrAlCN increased again, probably due to the low hardness and adhesion of the coating. The CrAlCN coating with a carbon content of 21.96 at% presented the best balance between mechanical and tribological properties.
机译:系统研究了碳含量对CrAlCN组织,力学性能和摩擦学性能的影响。为了这个目的,开发了五种通过磁加速溅射技术沉积在AISI H13钢上的CrAlCN双相涂层。通过改变工作气体混合物CH $ _4 $ /(Ar $ + $ N $ _2 $)中甲烷的百分比,涂层的碳含量在10.26至80.56 at%之间变化。评估了碳含量对CrAlCN涂层的形貌,微观结构,力学和摩擦学性能的影响。涂层在低碳含量下显示出高的晶体结构,主要由氮化铬和氮化铝铬氮化物组成。随着涂层中碳含量的增加,形成的碳化铬以氮化物为代价,呈现出具有高碳含量的高度非晶态结构。最初,涂层的硬度和杨氏模量随碳含量的增加而增加,这可能是由于CrAlN基质中碳的间隙固溶体硬化所致。然后,由于类石墨碳的自润滑作用,它们与摩擦系数和磨损率一起降低。但是,高于54.74 at%的碳含量,CrAlCN的磨损率再次增加,这可能是由于涂层的低硬度和附着力所致。碳含量为21.96 at%的CrAlCN涂层在机械性能和摩擦性能之间取得了最佳平衡。

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