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Wear resistance of WCp/Duplex Stainless Steel metal matrix composite layers prepared by laser melt injection

机译:激光熔喷法制备WCp /双相不锈钢金属基复合材料层的耐磨性

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摘要

Laser Melt Injection (LMI) was used to prepare metal matrix composite layers with a thickness of about 0.7 mm and approximately 10% volume fraction of WC particles in three kinds of Cast Duplex Stainless Steels (CDSSs). WC particles were injected into the molten surface layer using Nd:YAG high power laser beam. As a result the microstructure characterized by bard ceramic particles distributed in a metal matrix with the strong bonding to substrate is formed in the surface layer of the treated metal. Dry sliding wear properties of these metal matrix composites layers were measured and compared with the wear properties of the substrate and with surfaces simply remelted by the laser beam. The observed wear mechanisms are summarized and related to detailed microstructural observations. The layers have been found to show excellent interfacial bonding, coupled with substantially improved tribological properties expressed through the wear resistance increase of 8 times. The amount of WC particles was sufficient to reinforce the matrix and the particles have shown a good bonding to the matrix to support the contact stress in the layer. (C) 2008 Elsevier B.V. All rights reserved.
机译:激光熔喷(LMI)用于制备三种铸造双相不锈钢(CDSS)中厚度约为0.7毫米,WC颗粒体积分数约为10%的金属基复合材料层。使用Nd:YAG高功率激光束将WC颗粒注入熔融表面层。结果,在处理过的金属的表面层中形成了微观结构,该微观结构的特征在于分布在金属基质中的裸露的陶瓷颗粒具有与基底的牢固结合。测量了这些金属基复合材料层的干滑动磨损性能,并将其与基材的磨损性能以及简单地被激光束重熔的表面进行了比较。总结了观察到的磨损机理,并与详细的微观结构观察有关。已经发现这些层表现出优异的界面粘合性,并且通过耐磨性提高了8倍表现出显着改善的摩擦学性能。 WC颗粒的量足以增强基体,并且颗粒显示出与基体的良好结合以支撑层中的接触应力。 (C)2008 Elsevier B.V.保留所有权利。

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