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Comparison of three surface treatment methods for preparing WC-containing coatings

机译:三种表面处理方法的含WC涂层的比较

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摘要

A coating containing WC was prepared by induction cladding, laser cladding and plasma powder surfacing. The microstructure, chemical composition, hardness and corrosion resistance were analysed by optical microscope, scanning electron microscope, EDS, X-ray diffraction, micro hardness tester and electrochemical workstation. The results show that the forming quality of the samples deposited by induction cladding is very poor. The microstructures of LC and PS are mainly composed of dendrites, cellular crystals and interdendritic eutectic structure. Both of them contain Fe3C and Cr3C2 phase, as well as W2C phase. In addition, the PS alloy layer also contains other complex alloy phases and hard phases. The hardness decreases with the increase of current, while the hardness of laser cladding alloy layer is similar to that of plasma sample with 150A current. The best corrosion resistance is plasma sample with 125A current. The corrosion resistance of laser cladding sample is between 150A and 175A plasma sample.
机译:通过感应熔覆、激光熔覆和等离子粉末堆焊制备了含WC的涂层。采用光学显微镜、扫描电镜、能谱仪、X射线衍射仪、显微硬度计和电化学工作站分析了其显微组织、化学成分、硬度和耐蚀性。结果表明,感应熔覆试样的成形质量很差。LC和PS的微观结构主要由枝晶、胞晶和枝晶间共晶结构组成。它们都含有Fe3C和Cr3C2相,以及W2C相。此外,PS合金层还含有其他复杂的合金相和硬质相。激光熔覆合金层的硬度随电流的增加而降低,而激光熔覆合金层的硬度与150A电流等离子体试样的硬度相似。耐腐蚀性最好的是125A电流的等离子体样品。激光熔覆试样的耐腐蚀性介于150A和175A之间。

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