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首页> 外文期刊>Surface & Coatings Technology >Solid-state fabrication of WCp-reinforced Stellite-6 composite coatings with supersonic laser deposition
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Solid-state fabrication of WCp-reinforced Stellite-6 composite coatings with supersonic laser deposition

机译:WC P - 具有超声波激光沉积的重新激发器 - 6复合涂层

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摘要

Abstract Supersonic laser deposition (SLD) is a relatively new material deposition technique, which combines laser irradiation with cold spray (CS). The solid-state manufacturing of continuous and dense WC/Stellite-6 composite coatings was achieved by SLD in this study. The comparison between the WC/Stellite-6 composite coatings produced by SLD and laser cladding (LC) respectively was conducted with respect to microstructure, phase composition, microhardness, cracking susceptibility, and tribological behaviors, thus to elucidate the role of laser irradiation in the SLD process. The experimental results show that the SLD coating has fewer defects, higher WC content, lower cracking susceptibility and better wear-resistant performance than the counterpart prepared by LC, which benefits from the preservation of microstructures and phase compositions of the feedstock materials due to the relatively low heat involved in SLD process. Moreover, due to the additional heat provided by laser irradiation, the bonding mechanism in SLD evolves from dominant mechanical bonding in CS to coexistence of mechanical and metallurgical bonding. Highlights ?
机译:<![cdata [ 抽象 超声波激光沉积(SLD)是一种相对较新的材料沉积技术,其将激光照射与冷喷雾(CS )。通过该研究的SLD实现了连续和致密的WC /颗粒-6复合涂层的固态制造。通过SLD和激光熔覆(LC)产生的WC /钝晶-6复合涂层之间的比较,相对于微观结构,相组合物,显微硬度,裂解敏感性和摩擦学行为进行,从而阐明激光照射的作用SLD进程。实验结果表明,SLD涂层具有较少的缺陷,更高的WC含量,降低裂缝敏感性和比LC所制备的对应物更好的耐磨性,这有利于由于相对而保护原料材料的微观结构和相位组成。 SLD过程中涉及低热量。此外,由于激光照射所提供的额外热量,SLD中的粘合机构从CS中的显着机械键合来演化到机械和冶金键合的共存。 亮点

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