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Effects of MgO Addition Level on Microstructure and Wear Resistance of Ni-WC Vacuum Fusion Sintering Coating

机译:MgO添加水平对Ni-WC真空融合烧结涂层微观结构和耐磨性的影响

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Ni-WC-MgO compound coatings were made by way of Vacuum Fusion Sintering (VFS). Effects of MgO addition level on the microstructures of coating surface and longitudinal section, element diffusion in fusion sintering area and wear resistance were analyzed through scanning electron microscope (SEM) and energy dispersive spectrometer (EDS). The results showed as the following: MgO addition made coating and matrix combined closely; there existed obvious transition region. When the addition level of MgO was 0.5%, the coating had the fewest defects and best combination. Ni, Cr, W, C and other elements in the coating diffused to the direction of the base metal while Fe in the base metal diffused to the coating, during which the diffusion of Fe and Ni was most obvious at the junction. Therefore, when the addition level of MgO was 0.5%, the surface microstructure of the coating was the densest and finest, and the wear resistance of the coating was the best.
机译:通过真空融合烧结(VFS)制备Ni-Wc-MgO复合涂层。通过扫描电子显微镜(SEM)和能量分散光谱仪(EDS)分析了MgO附加水平对涂层表面和纵截面微观结构的影响,通过扫描电子显微镜(SEM)和能量分散光谱仪(EDS)分析了融合烧结面积和耐磨性的元件扩散。结果显示如下:MgO添加制成涂层和基质紧密结合;存在明显的过渡区域。当MgO的添加水平为0.5%时,涂层具有最少的缺陷和最佳组合。涂层中的Ni,Cr,W,C和其他元件扩散到基础金属的方向,而在基础金属中扩散到涂层中的Fe,在该涂层中,在该交叉点处最明显的Fe和Ni的扩散。因此,当MgO的添加水平为0.5%时,涂层的表面微观结构是最密集和最优选的,并且涂层的耐磨性是最好的。

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