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Effects of the Prefabricated Cu-Ti Film on the Microstructure and Mechanical Properties of the Multiphase Coating by Thermo Plasma Nitriding on C17200 Cu Alloy

机译:预制Cu-Ti膜对C17200 Cu合金热等离子体氮化多相涂层微观结构和力学性能的影响

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摘要

To improve the surface wear resistance, plasma nitriding of the prefabricated Cu-Ti films on the C17200 Cu alloy is performed to investigate the effects of the composition of the Cu-Ti films on the microstructure and the mechanical properties of the modified surface. The results firstly showed that obvious microstructure evolution appeared during the thermo-plasma nitriding process, where both the surface morphology of the composed phases and the cross-sectional profiles of the multiphase coatings varied for the three types of films. Small amounts of Ti-N compounds, Be3Ti2Cu, and different types of Cu-Ti intermetallics formed in the multiphase coating after plasma nitriding, which is dependent on the composition of the prefabricated Cu-Ti film. Correspondingly, the surface hardness and the wear resistance of the C17200 Cu substrates were obviously improved, with the obtained adhesive strength of the substrate reaching a satisfactory range.
机译:为了改善表面耐磨性,对C17200 Cu合金的预制Cu-Ti膜的等离子体氮化进行了研究Cu-Ti膜组合物对改性表面的微观结构和机械性能的影响。结果首先表明,在热等离子体氮化过程中出现了明显的微观结构演化,其中组合相的表面形貌和多相涂层的横截面曲线变化了三种类型的薄膜。少量Ti-N化合物,BE3Ti2Cu和不同类型的Cu-Ti金属间金属间金属间金属间质,在等离子体氮化后形成的多相涂层,这取决于预制的Cu-Ti膜的组成。相应地,显着提高了C17200 Cu基材的表面硬度和耐磨性,并获得了基板的粘合强度达到令人满意的范围。

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