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首页> 外文期刊>Journal of Advanced Manufacturing Systems >THE SURFACE AND INTERFACE PROPERTIES OF VANADIUM CARBIDE COATING PREPARED BY THERMAL DIFFUSION PROCESS
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THE SURFACE AND INTERFACE PROPERTIES OF VANADIUM CARBIDE COATING PREPARED BY THERMAL DIFFUSION PROCESS

机译:热扩散法制备碳化钒涂层的表面和界面性质

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摘要

Vanadium carbide (VC) coating is prepared with Thermal Diffusion (TD) method in the salt bath, and its surface-interface microstructures and energy spectrums were observed with Scanning Electron Microscope (SEM) and Energy Dispersive Spectrometer (EDS), respectively, and the distributions of C, V, Cr, Si, Fe, and Mo in VC coating interface are analyzed. Its interfacial and bonding methods are discussed, and the bonding micromechanism of VC coating in its bonding interface by TD process is analyzed. The experimental results show that the structure of coating surface by TD is single-phase, that is composed of V and C elements, and no other elements, the chemical elements such as V, Cr, C Si, Fe, Mo are the grade distributed in its bonding interface; its bonding method is metallurgical status; microhardness of coating-substrate is the grade distribution, which is direct ratio with the V distribution, microhardness ofthe coating surface is 3050–3200 HV, and the effect of TD process on roughness of cold-working die surface is little.
机译:在盐浴中采用热扩散(TD)方法制备碳化钒(VC)涂层,并分别通过扫描电子显微镜(SEM)和能量分散光谱仪(EDS)观察其表面界面的微观结构和能谱,并在分析了VC涂层界面中C,V,Cr,Si,Fe和Mo的分布。讨论了VC涂层的界面和结合方法,并分析了TD工艺对VC涂层在其结合界面的结合机理。实验结果表明,TD涂层表面结构是单相的,由V和C元素组成,没有其他元素,其中V,Cr,C Si,Fe,Mo等化学元素呈梯度分布在其绑定界面中;其结合方法为冶金状态。涂层基体的显微硬度是等级分布,与V分布成正比,涂层表面的显微硬度为3050-3200 HV,TD工艺对冷作模具表面粗糙度的影响很小。

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