Miao Xu, Zhang Haiyun, Zhao Yugang, Han Xingang, Lin Weisheng, Jiang Guangfen, Meng Jianbing, Zhang Zengbo, Zhang Jinjian
Appl Opt. 2023 Feb 10;62(5):1384-1391. doi: 10.1364/AO.478974.
To study the influence of laser process parameters on the surface properties of the coating, - composite coatings on 304 stainless-steel sheets with laser-assisted pulsed electrodeposition was proposed in this paper. Laser single pulse energy and scanning speed were selected as research factors. Single-factor experiments were performed to investigate the effect of various factors on the surface morphology, particle mass fraction, microhardness, surface roughness, and corrosion resistance of the composite coating. The experimental results show that the surface properties of the composite coating first increase and then decrease with increasing laser single pulse energy. When the laser single pulse energy is 11 µJ, the minimum surface roughness value is 0.380 µm with a smooth and uniform coating surface and the best surface morphology. Moreover, as the scanning speed increases, the corrosion resistance of the composite coating initially increases and then decreases. The corrosion resistance of the composite coatings is best with a scanning speed of 1000 mm/s. When the scanning speed was 1500 mm/s, the particle mass fraction in the coating reached a maximum of 1.984%; meanwhile, the highest hardness of the composite coating was obtained with the value of 476.38 HV.
为研究激光工艺参数对涂层表面性能的影响,本文提出采用激光辅助脉冲电沉积法在304不锈钢板上制备复合涂层。选取激光单脉冲能量和扫描速度作为研究因素。进行单因素实验,以研究各因素对复合涂层表面形貌、颗粒质量分数、显微硬度、表面粗糙度和耐蚀性的影响。实验结果表明,复合涂层的表面性能随激光单脉冲能量的增加先增大后减小。当激光单脉冲能量为11 μJ时,表面粗糙度最小值为0.380 μm,涂层表面光滑均匀,表面形貌最佳。此外,随着扫描速度的增加,复合涂层的耐蚀性先增大后减小。扫描速度为1000 mm/s时,复合涂层的耐蚀性最佳。当扫描速度为1500 mm/s时,涂层中的颗粒质量分数达到最大值1.984%;同时,复合涂层获得最高硬度值476.38 HV。