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Microstructure evolution of laser clad layers of W-C-Co alloy powders

机译:W-C-Co合金粉末激光熔覆层的组织演变

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摘要

Clad layers using high power carbon dioxide laser and various powder compositions of W, C, Co and WC on carbon steel substrate have been investigated. Microstructures of the clad layers are greatly affected by the processing parameters: powder size; powder type; shielding gas; degree of dilution; and geometry of the clad layer. Clad layers with large WC particles in a eutectic matrix and a high hardness, or with a mostly eutectic structure and low hardness, can be made for applications of cutting tools or wear resistant surfaces, respectively. Microstructure such as: (1) WC, Co{sub}3W{sub}3C, and a binary eutectic mixture of Co3W{sub}3C andα-(Fe, Co); (2) Co{sub}3W{sub}3C and a binary eutectic mixture of Co{sub}3W{sub}3C and α'-(Fe, Co); (3) a binary eutectic mixture of Co{sub}3W{sub}3C and α'-(Fe, Co) have been produced in the clad layer.
机译:已经研究了使用高功率二氧化碳激光和碳钢基体上的W,C,Co和WC的各种粉末组成的熔覆层。包覆层的微观结构受加工参数的影响很大:粉末类型保护气体稀释度;和包覆层的几何形状。可以分别在切削工具或耐磨表面上制造具有在共晶基体中具有大的WC颗粒且具有高硬度,或者具有大部分的共晶结构和低硬度的覆层。微观结构,例如:(1)WC,Co {sub} 3W {sub} 3C和Co3W {sub} 3C与α-(Fe,Co)的二元共晶混合物; (2)Co {sub} 3W {sub} 3C和Co {sub} 3W {sub} 3C与α'-(Fe,Co)的二元共晶混合物; (3)在包覆层中产生了Co {sub} 3W {sub} 3C和α′-(Fe,Co)的二元共晶混合物。

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