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Dissolution Behavior of WC Reinforced Particles on Carbon Steel Surface during Laser Cladding Process

机译:激光熔覆过程中WC增强颗粒在碳钢表面的溶解行为

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Ni60WC35 self-fluxing composite coating was fabricated by transverse-flow CO2 laser apparatus on 45 medium-carbon steel surfaces.The microstructure and phase transform behavior of WC reinforced particles under the laser cladding conditions was investigated by X-ray diffraction (XRD),scanning electron microscope (SEM) and energy-dispersive spectrometer (EDS).The results show that laser scanning speed has a great important influence on the microstructure of Ni-based WC composite coating,WC particles has a transition to the Ni-based coating.The main feature of WC particle is its edge hard phase has transformed into needle phase,and the needle phase areas increase with the decrease of the laser scanning speed.Some WC particles turn into needle clusters structure,and then white block phase.In addition,WC particle has some microscopic defects,and the surface priority defect can be dissolved.When the pool temperature rises to 1250°C,WC decomposition reaction become W2C and C.The elements diffusion can promote the dissolution of WC particles when the pool temperature rises continuously.
机译:利用横流CO2激光装置在45个中碳钢表面制备了Ni60WC35自熔复合涂层。通过X射线衍射,扫描研究了激光熔覆条件下WC增强颗粒的组织和相变行为。电子显微镜(SEM)和能量色散光谱仪(EDS)。结果表明,激光扫描速度对Ni基WC复合涂层的微观结构有重要影响,WC颗粒向Ni基涂层过渡。 WC颗粒的主要特征是其边缘硬质相已转变为针状相,并且随着激光扫描速度的降低,针状相的面积增加。一些WC颗粒变成针状簇状结构,然后变成白色块状相。颗粒有一些微观缺陷,表面优先缺陷可以被溶解。当熔池温度升至1250°C时,WC分解反应变成W2C和C。当池温持续升高时,使用usion可以促进WC颗粒的溶解。

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