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Study on the microstructure and mechanical properties of Zr-B-(N) tool coatings prepared by hybrid coating system

机译:杂交涂层系统制备的Zr-B-(n)工具涂层的微观结构和力学性能研究

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The Zr-B-(N) coatings with different N contents were prepared by combining system of high power impulse magnetron sputtering (HiPIMS) and pulsed DC magnetron sputtering (PDCMS). By means of X-ray diffraction analysis, energy dispersive spectroscopy, X-ray photoelectron spectroscopy, and scanning electron microscopy, the influence of nitrogen flow ratio on the coating microstructure and characteristics were investigated systematically, including the deposition rate, chemical compositions, phase constituents, chemical bonding, as well as cross-sectional morphologies. Meanwhile, the hardness and adhesion of above coatings were also evaluated by micro-indentation method and a scratch tester. And the tribological behaviour also was tested by tribometer. The maximal hardness reached 25.35 GPa which was attributed to the formation of nano-composite structure. After doping N element, all the coatings possessed the compressive stresses, and critical load increased gradually with increasing N content in the coating. By comparison, the Zr-B-N coating presented the best wear resistance as the N2flow ratio was 6 sccm.
机译:通过组合高功率脉冲磁控溅射(HIPIMS)和脉冲DC磁控溅射(PDCMS)来制备具有不同N含量的ZR-B-(n)涂层。通过X射线衍射分析,能量分散光谱,X射线光电子能谱和扫描电子显微镜,系统地研究了氮流量对涂层微观结构的影响和特性,包括沉积速率,化学成分,相成分,化学键合,以及横截面形态。同时,通过微压痕方法和划痕测试仪评估上面涂层的硬度和粘附。摩擦学行为也被摩擦计测试。最大硬度达到25.35GPa,其归因于形成纳米复合结构。在掺杂N元素之后,所有涂层都具有压缩应力,并且在涂层中增加N含量逐渐增加临界负荷。相比之下,随着N2流量的比例为6 sccm,Zr-B-N涂层呈现最佳耐磨性。

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