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A gradient surface produced by combined electroplating and incremental frictional sliding

机译:通过组合电镀和增量摩擦滑动产生的梯度表面

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摘要

A Cu plate was first electroplated with a Ni layer, with a thickness controlled to be between 1 and 2 mu m. The coated surface was then deformed by incremental frictional sliding with liquid nitrogen cooling. The combined treatment led to a multifunctional surface with a gradient in strain, chemical content, microstructure, and hardness. The chemical profile was measured by glow-discharge optical emission spectroscopy, showing diffusion of Ni into the heavily deformed Cu layer to a depth of about 40 mu m. The microstructure and hardness were characterized and compared with a similarly processed Cu plate without Ni coating, showing a strong effect of the coated layer on the deformation. The experimental results are followed by an analysis of strengthening mechanisms and a discussion of the applicability of the new technique for increasing the durability and lifetime of components exposed to friction and wear, e.g. in wind turbines.
机译:首先在铜板上电镀一层镍层,厚度控制在1-2微米之间。然后在液氮冷却下通过增量摩擦滑动使涂层表面变形。结合处理后,得到的多功能表面的应变,化学含量,微观结构和硬度都有梯度。化学特征通过辉光放电光发射光谱法测量,显示Ni扩散到严重变形的Cu层中至约40μm的深度。表征了显微组织和硬度,并与没有镍涂层的类似处理的铜板进行了比较,显示了涂层对变形的强烈影响。实验结果之后是对增强机理的分析,以及对新技术的适用性的讨论,该新技术可提高暴露于摩擦和磨损(例如摩擦)的部件的耐用性和使用寿命。在风力涡轮机中。

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