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The tribological properties of a gradient layer prepared by plasma-based ion implantation on 2024 aluminum alloy

机译:2024铝合金上基于等离子体的离子注入制备的梯度层的摩擦学性能

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摘要

DLC films can play an important role in tribological properties of Al-alloys. A gradient layer of AlN/Ti/TiN/DLC film has been prepared by plasma-based ion implanted N, followed by Ti, and N and Ti, and finally C on 2024 Al-alloy. Emphasis has been placed on the tribological properties of the gradient layer. Its composition depth profile and chemical structure were characterized using X-ray photoelectron spectroscopy (XPS), the surface C-layer and the wear tracks were analyzed by laser Raman spectroscopy. The morphologies of the C-layer were observed by atomic force microscopy (AFM), the hardness of the gradient layer was measured with the mechanical property microprobe and the dry wear tests against AISI steel ball at different sliding loads were performed with a ball-on-disk wear tester in ambient environment. The results indicate that the gradient layer shows a gradual change in hardness, compact surface appearance and good tribological properties owing to the gradient structure. As the number of the sliding cycles or the load is increasing, the tribological properties decrease due to the graphitization of the DLC films. Meanwhile, the gradient layer can be controlled by PBII processing parameters, thus an optimized gradient layer can be obtained to offer the possibility of making aluminum alloys and other soft alloys qualified candidates for particular engineering applications. (C) 2003 Elsevier B.V. All rights reserved.
机译:DLC膜可在铝合金的摩擦学性能中发挥重要作用。 AlN / Ti / TiN / DLC膜的梯度层是通过等离子离子注入N,然后是Ti,N和Ti,最后是2024铝合金上的C制备的。重点放在了梯度层的摩擦学特性上。用X射线光电子能谱(XPS)表征了其成分深度分布和化学结构,并通过激光拉曼光谱分析了表面C层和磨损轨迹。通过原子力显微镜(AFM)观察C层的形貌,用机械性能的微探针测量梯度层的硬度,并在不同的滑动载荷下对AISI钢球进行干磨试验盘在环境中的磨损测试仪。结果表明,由于梯度结构,梯度层显示出逐渐变化的硬度,紧凑的表面外观和良好的摩擦学性能。随着滑动循环次数或载荷的增加,由于DLC膜的石墨化,摩擦性能降低。同时,可以通过PBII加工参数控制梯度层,因此可以获得优化的梯度层,以提供使铝合金和其他软合金成为特定工程应用合格的候选人的可能性。 (C)2003 Elsevier B.V.保留所有权利。

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