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The influence of laser treatment on the properties of electro-spark deposited coatings

机译:激光处理对电火花沉积涂层性能的影响

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The aim of the study is to determine the influence of the laser treatment process on the properties of electro-spark deposited coatings. The properties were assessed by analysing the coating microstructure, microhardness, residual stresses, bonding strength and corrosion resistance. The tests were conducted for Mo, Ti and Cu coatings (the anode), which were electro-spark deposited over the C45 steel substrate (the cathode) and melted with a laser beam. The coatings were deposited by means of an ELFA-541. The laser processing was performed with an Nd:YAG, BLS 720 system. The tests show that the laser-treated electro--spark deposited Cu-Ti and Cu-Mo coatings are characterized by higher microhardness, higher adhesion and higher resistance corrosion. It is also reported that in laser-treated coatings tensile stresses occur deeper. The laser treatment process causes the homogenization of the chemical composition, the structure refinement and the healing of microcracks and pores of the electro-spark deposited coatings. The coatings, whether laser-treated or not, exhibit very good performance properties, and this makes them suitable for use in sliding friction pairs.
机译:该研究的目的是确定激光处理工艺对电火花沉积涂层性能的影响。通过分析涂层的微观结构,显微硬度,残余应力,结合强度和耐腐蚀性来评估性能。对Mo,Ti和Cu涂层(阳极)进行了测试,这些涂层电火花沉积在C45钢基材(阴极)上并用激光束熔化。借助于ELFA-541沉积涂层。激光加工是用Nd:YAG,BLS 720系统进行的。测试表明,经激光处理的电火花沉积Cu-Ti和Cu-Mo涂层具有更高的显微硬度,更高的附着力和更高的耐腐蚀性。还据报道,在激光处理的涂层中,拉应力的产生更深。激光处理过程导致化学成分均匀化,结构细化以及电火花沉积涂层的微裂纹和微孔的愈合。不论是否经过激光处理,该涂层都具有非常好的性能,这使得它们适用于滑动摩擦副。

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