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Laser Cladding Of Tungsten Carbides (spherotene~r) Hardfacing Alloys For The Mining And Mineral Industry

机译:采矿业和矿产行业的碳化钨(Spherotene〜r)堆焊合金的激光熔覆

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The abrasive nature of the mechanical processes involved in mining and mineral industry often causes significant wear to the associated equipment and derives non-negligible economic costs. One of the possible strategies to improve the wear resistance of the various components is the deposition of hardfacing layers on the bulk parts. The use of high power lasers for hardfacing (laser cladding) has attracted a great attention in the last decade as an alternative to other more standard methods (arc welding, oxy-fuel gas welding, thermal spraying). In laser cladding the hardfacing material is used in powder form. For high hardness applications Ni-, Co- or Fe-based alloys containing hard phase carbides at different ratios are commonly used. Tungsten carbides (WC) can provide coating hardness well above 1000 HV (Vickers). In this respect, commercially available WC powders normally contain spherical micro-particles consisting of crushed WC agglomerates. Some years ago, Spherotene~R powders consisting of spherical-fused monocrystaline WC particles, being extremely hard, between 1800 and 3000 HV, were patented. Very recently, mixtures of Ni-based alloy with Spherotene powders optimized for laser processing were presented (Technolase~R). These mixtures have been used in our study. Laser cladding tests with these powders were performed on low carbon steel (C25) substrates, and results in terms of microstructure and hardness will be discussed.
机译:采矿和矿物工业所涉及的机械过程的研磨性通常会导致相关设备的严重磨损,并产生不可忽略的经济成本。改善各种组件的耐磨性的一种可能策略是在散装零件上沉积表面堆焊层。在过去的十年中,使用高功率激光器进行堆焊(激光熔覆)作为其他更为标准的方法(电弧焊,氧-燃料气体焊,热喷涂)的替代方法已引起了广泛的关注。在激光熔覆中,表面硬化材料以粉末形式使用。对于高硬度应用,通常使用含有不同比例硬质合金的Ni,Co或Fe基合金。碳化钨(WC)可以提供远高于1000 HV(维氏)的涂层硬度。在这方面,市售的WC粉末通常包含由粉碎的WC附聚物组成的球形微粒。几年前,由球形熔融单晶WC颗粒组成的Spherotene〜R粉末获得了1800至3000 HV的极高硬度,已申请了专利。最近,出现了镍基合金与为激光加工而优化的球蛋白粉末的混合物(Technolase®R)。这些混合物已用于我们的研究中。在低碳钢(C25)基材上进行了用这些粉末进行的激光熔覆测试,并将讨论微观结构和硬度方面的结果。

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