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Microstructure and Mechanical Properties of Laser Deposited Ni/WC Metal Matrix Composite Coatings

机译:激光沉积Ni / WC金属基复合涂层的组织和力学性能

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In the present study, the feasibility of laser metal deposition of WC reinforced Nickel composite coatings was investigated for the application of hardfacing coating on copper. Ni/60WC MMC were fabricated on the surface of copper with a buffer layer of hastelloy C-276. Additional sets of samples were deposited on a 1020 mild steel substrate. Three principal experiments were conducted in a systematic order to understand the microstructural evolution of Ni/60WC MMC. A multi-track, single-track deposit, and remelting of the as-deposited surface were systematically investigated by optical and scanning electron microscopy. The results revealed microstructural element such as den-drites, equiaxed structure, eutectic structure, and several other complex carbide structures. It was observed that the presence of three principle phases in the deposit consisted of the primary WC, dendritic Ni, and a eutectic structure. Microhardness of the laser deposited samples indicated the gradual variation in hardness as the deposition transits from a highly conductive soft material to a hard facing coating. Homogenization of WC in Ni matrix was well realized in this study.
机译:在本研究中,研究了在WC增强镍复合涂层上进行激光金属沉积以在铜上进行表面硬化涂层的可行性。 Ni / 60WC MMC在具有哈氏合金C-276缓冲层的铜表面上制造。将另外的样品组沉积在1020低碳钢基材上。以系统的顺序进行了三个主要实验,以了解Ni / 60WC MMC的微观结构演变。通过光学和扫描电子显微镜系统研究了多道,单道沉积和沉积表面的重熔。结果揭示了微观结构元素,例如树枝状晶体,等轴结构,共晶结构和其他几种复杂的碳化物结构。观察到,沉积物中存在三个主要相,该相主要由原始WC,树枝状Ni和共晶结构组成。激光沉积样品的显微硬度表明,随着沉积物从高导电性软材料过渡到硬质涂层,硬度逐渐变化。这项研究很好地实现了WC在Ni基体中的均质化。

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