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Microstructure evolution of WC/steel composite by laser surface re-melting

机译:激光表面重熔熔覆WC /钢复合材料的组织演变

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WC/steel composites fabricated by electro-slag melting and casting were re-melted by transverse flow CO_2 laser. Optical microscopy, scanning electron microscopy, energy dispersive spectroscopy, X-ray diffraction and transmission electron microscopy were used to analyze the microstructure evolution in laser melted layer. It was found that the laser-affected zone has three distinguished zones, the melted, transient and heat affected zone. The phases of the melted zone were composed of WC, Fe_3W_3C, (Cr,Fe)_7C_3, martensite and retained austenite. The microstructure evolution in the melted zone was represented by the transformation of three parts including the steel matrix, WC particles cluster and dispersed carbides. A significant reactant was herringbone eutectic carbide of Fe_3W_3C. The effect of laser scanning rate was mainly behaved in affecting the melt depth, microstructure of transient zone and dissolution of medium carbides. In comparison with the substrate, the melted zone has much higher microhardness.
机译:通过电渣熔炼和铸造制备的WC /钢复合材料通过横向流动的CO_2激光再熔化。用光学显微镜,扫描电子显微镜,能量色散光谱,X射线衍射和透射电子显微镜分析了激光熔融层的组织演变。发现受激光影响的区域具有三个显着区域,即熔化,瞬变和热影响区域。熔化区的相由WC,Fe_3W_3C,(Cr,Fe)_7C_3,马氏体和残余奥氏体组成。熔化区的组织演变是由三个部分的转变所代表的,包括钢基质,WC颗粒簇和分散的碳化物。一个重要的反应物是Fe_3W_3C的人字形共晶碳化物。激光扫描速率的影响主要表现在影响熔体深度,过渡区的微观结构和中等碳化物的溶解。与基材相比,熔融区具有更高的显微硬度。

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