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CO2 Laser Cladding Heterogeneous Ceramic-Metal Wear-Resistant Coatings

机译:CO2激光熔覆异质陶瓷 - 金属耐磨涂层

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The microstructure, hardness property and wear resistance of WC, Ni-Cr and Fe powders deposited by laser cladding at varying processing parameters were investigated. The results of the present study revealed the prospects of multilayer cladding of R6M5 high-speed tool steel (analog of M2 steel (USA) and HS6-5-2 steel (EU)) onto low-alloy steel with the use of a laser beam. Controlling thermal cycles of laser cladding, it is possible to obtain a clad coating made of high-speed steel having the structure of high-alloy austenite-martensite mixture with disperse inclusions of carbides up to 10 mm thick, i.e., it is actually possible to create bimetal structures. The wear resistance of the laser-clad self-fluxing PG-10N-01 (Ni-Cr-B-Si-C) alloy increases by a factor of 5 due to addi-tional hardening by cast tungsten carbide (WC) with spherical particles. As a result, it becomes higher than the wear resistance of high-speed steel by more than a factor of 3.
机译:研究了通过激光覆层在不同加工参数下沉积WC,Ni-Cr和Fe粉末的微观结构,硬度性能和耐磨性。本研究的结果揭示了R6M5高速工具钢(M2钢(US)和HS6-5-2钢(EU)的模拟)的多层包层的前景与使用激光束在低合金钢上。控制激光包层的热循环,可以获得由高速钢制成的包层涂层,该高速钢具有高合金奥氏体 - 马氏体混合物的结构,碳化物的分散夹杂物高达10mm厚,即实际上可以创建双金属结构。由于通过球形颗粒浇铸碳化钨(WC),激光包层自助式PG-10N-01(Ni-Cr-B-Si-C)合金的耐磨性增加了5倍的5系数。结果,它变得高于高速钢的耐磨性超过3倍。

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