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Microstructure and Mechanical Properties of ZrCuSiN Coatings Deposited by a Single Alloy Target

机译:单合金靶沉积Zrcusin涂层的组织和力学性能

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Recently, research has been conducted on nanocomposite thin films containing new additive elements in ZrN. In this paper, a method for depositing ZrCuSiN nanocomposite coatings using a ZrCuSi single target is presented. The ZrCuSi target that was used to easily deposit a ZrCuSiN coating in a mixed gas atmosphere (Ar N2) was produced by a simple arc melting method (casting process). The effect of the nitrogen content was investigated by depositing a ZrCuSiN coating using alloy targets at various nitrogen gas flow rates (2, 4, 6, and 8 sccm). X-ray diffraction analysis of the ZrCuSiN coatings revealed a ZrN structure with a preferable orientation (200). As the nitrogen flow rate increased, the formation of o-Zr3N4 was dominant in the ZrN formation. A nitrogen gas flow rate of 4 sccm produced a coating with optimal ZrN and a-Si3N4 coordination and maximum hardness (41 GPa). Reciprocal friction tests of all coatings and uncoated carburized SCM415 steel in a 5W30 lubrication atmosphere demonstrated that the 4 sccm coating had the lowest friction coefficient (0.002). Therefore, our method has the potential to be an alternative surface coating technique for materials used in automotive engine parts and various other wear protection applications.
机译:最近,已经在含有ZrN中的新添加剂元素的纳米复合材料薄膜上进行了研究。本文介绍了一种使用Zrcusi单靶沉积Zrcusin纳米复合涂层的方法。通过简单的电弧熔化方法(铸造方法)制备用于容易沉积Zrcusin涂层的Zrcusi靶标。通过在各种氮气流速(2,4,6和8 sccm)下使用合金靶沉积Zrcusin涂层来研究氮含量的效果。 Zrcusin涂层的X射线衍射分析显示出优选取向(200)的ZrN结构。随着氮流速增加,O-Zr3N4的形成在ZrN形成中占优势。氮气流量为4 sccm,产生具有最佳ZrN和A-Si3N4配位和最大硬度(41GPa)的涂层。在5W30润滑大气中,所有涂层和未涂层​​的渗碳SCM415钢的互惠摩擦试验证明了4个SCCM涂层具有最低的摩擦系数(0.002)。因此,我们的方法具有用于汽车发动机部件和各种其他磨损保护应用的材料的替代表面涂覆技术。

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