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SUPERSONIC LASER DEPOSITION OF METAL MATRIX COMPOSITE COATINGS

机译:超声波激光沉积金属基质复合涂层

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Supersonic laser deposition (SLD) is a newly developed coating method which combines the supersonic powder stream found in cold spray (CS) with synchronous laser heating of the deposition zone. The addition of laser heat energy into CS enables a change in the thermodynamic state of impacting particles and substrate, thereby significantly lowering the critical deposition velocities required for effective coating formation and allowing the range of materials deposited to expand to higher strength materials which are of considerable engineering interest. The work reported in this paper presents the ability of SLD technique to deposit hard metal matrix composite (MMC) coatings, such as WC/SS316L. The focus of this research is on the comparison between composite coatings produced with conventional CS and those produced with SLD. The microstructure evolution, mechanical deformation mechanisms, correlation between functional properties and process parameters were elaborated in detail. The experimental results show that with the assistance of laser irradiation, WC/SS316L composite coatings can be successfully deposited using SLD. The obtained coatings are superior to that processed with CS, because SLD can improve the deposition efficiency, coating density, interface bonding as compared to CS due to the softening of particle and substrate by laser irradiation. It can be found that SLD is capable of depositing high strength MMC coatings with good quality, thus exhibiting great potential in the field of metal threedimensional printing.
机译:超声波激光沉积(SLD)是一种新开发的涂布方法,其将在冷喷雾(CS)中发现的超音速粉末流与沉积区的同步激光加热相结合。将激光热能添加到CS中能够改变撞击颗粒和基材的热力学状态,从而显着降低有效涂层形成所需的临界沉积速度,并允许沉积的材料的范围扩展到具有相当大的更高强度材料工程兴趣。本文报道的工作介绍了SLD技术沉积硬金属基质复合材料(MMC)涂层,例如WC / SS316L的能力。本研究的重点是用常规CS和用SLD生产的复合涂层之间的比较。详细阐述了微观结构演化,机械变形机制,功能性和工艺参数之间的相关性。实验结果表明,随着激光照射的辅助,可以使用SLD成功沉积WC / SS316L复合涂层。所得涂层优于用Cs加工,因为由于通过激光照射,与Cs相比,SLD可以提高沉积效率,涂覆密度,界面粘合,而通过激光照射。可以发现,SLD能够以良好的质量沉积高强度MMC涂层,从而在金属三维印刷领域表现出极大的潜力。

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