Xue Na, Li Weiwei, Shao Ling, Tu Zhibiao, Chen Yingwei, Dai Sheng, Ye Nengyong, Zhang Jitang, Liu Qijie, Wang Jinfang, Zhang Meng, Shi Xinxing, Wang Tianle, Chen Mengliang, Huang Yingqi, Xu Feilong, Zhu Liu
Zhejiang Provincial Key Laboratory for Cutting Tools, Taizhou University, Taizhou 318000, China.
Taizhou Key Laboratory of Medical Devices and Advanced Materials, Research Institute of Zhejiang University-Taizhou, Taizhou 318000, China.
Materials (Basel). 2023 Jul 20;16(14):5120. doi: 10.3390/ma16145120.
Copper-coated graphite and copper mixture powders were deposited on AZ31B magnesium alloy and 6061 T6 aluminum alloy substrates under different process parameters by a solid-state cold spray technique. The microstructure of the copper-coated graphite and copper composite coatings was visually examined using photographs taken with an optical microscope and a scanning electron microscope. The surface roughness of the coatings was investigated with a 3D profilometer. The thickness of the coatings was determined through the analysis of the microstructure images, while the adhesion of the coatings was characterized using the scratch test method. The results indicate that the surface roughness of the coatings sprayed on the two different substrates gradually decreases as gas temperature and gas pressure increase. Additionally, the thickness and adhesion of the coatings deposited on the two different substrates both increase with an increase in gas temperature and gas pressure. Comparing the surface roughness, thickness, and adhesion of the coatings deposited on the two different substrates, the surface roughness and adhesion of the coatings on the soft substrate are greater than those of the coatings on the hard substrate, while the thickness of the coatings is not obviously affected by the hardness of the substrate. Furthermore, it is noteworthy that the surface roughness, thickness, and adhesion of the copper-coated graphite and copper composite coatings sprayed on the two different substrates exhibit a distinct linear relationship with particle velocity.
采用固态冷喷涂技术,在不同工艺参数下,将包覆铜的石墨与铜的混合粉末沉积在AZ31B镁合金和6061 T6铝合金基体上。利用光学显微镜和扫描电子显微镜拍摄的照片,直观地观察了包覆铜的石墨与铜复合涂层的微观结构。用三维轮廓仪研究了涂层的表面粗糙度。通过对微观结构图像的分析确定了涂层的厚度,同时采用划痕试验方法表征了涂层的附着力。结果表明,随着气体温度和气体压力的升高,喷涂在两种不同基体上的涂层表面粗糙度逐渐降低。此外,沉积在两种不同基体上的涂层厚度和附着力均随气体温度和气体压力的升高而增加。比较沉积在两种不同基体上的涂层的表面粗糙度、厚度和附着力,软基体上涂层的表面粗糙度和附着力大于硬基体上涂层的表面粗糙度和附着力,而涂层厚度受基体硬度的影响不明显。此外,值得注意的是,喷涂在两种不同基体上的包覆铜的石墨与铜复合涂层的表面粗糙度、厚度和附着力与颗粒速度呈现出明显的线性关系。