Bian Yanhua, He Xiuli, Tian Chongxin, Guo Jianhao, Chen Bo, Dong Binxin, Li Shaoxia, Yu Gang
Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China.
Materials (Basel). 2024 Jan 28;17(3):638. doi: 10.3390/ma17030638.
Laser cladding is one of the emerging additive manufacturing technologies and has been adopted in various industrial fields. In this study, the morphological characteristics of a single clad of Inconel 718 manufactured by coaxial laser cladding with high laser power from 4200 W to 5400 W, powder feeding rate from 25 g/min to 50 g/min, and cladding speed from 20 mm/s to 50 mm/s are studied. The cross-section of the melt pool is analyzed and classified by type into three types: shallow dilution, flat dilution, and fluctuating dilution. Nine parameters are designed to describe the morphological characteristics of the clad, and the corresponding linear regression models are developed to establish a quantitative relationship between the combined process parameters and morphological characteristics. The results indicate that the total area of the cross-section , the clad area above the substrate , the area of the molten substrate , the total height of the cross-section , the height of the clad above the substrate , the penetration depth , the clad width , the dilution ratio , and the wetting angle are determined by complex coupling of energy input and mass accumulation, and they are proportional to /, /, //, /, /, //, /, /, and /, respectively. The large linear regression coefficients and the analysis residuals indicate the high reliability of the statistical linear regression models. This work aims to provide a comprehensive understanding of the influence of the main processing parameters on the morphological characteristics of the clad, which is of great value in providing a reference and laying a basis for the practical application of laser cladding technology at a high deposition rate.
激光熔覆是新兴的增材制造技术之一,已在各个工业领域得到应用。在本研究中,对采用同轴激光熔覆制造的因科镍合金718单道熔覆层的形态特征进行了研究,激光功率为4200 W至5400 W,送粉速率为25 g/min至50 g/min,熔覆速度为20 mm/s至50 mm/s。对熔池横截面进行分析并按类型分为三种:浅熔合、平熔合和波动熔合。设计了九个参数来描述熔覆层的形态特征,并建立了相应的线性回归模型,以确定组合工艺参数与形态特征之间的定量关系。结果表明,横截面总面积、基体上方熔覆层面积、基体熔化面积、横截面总高度、基体上方熔覆层高度、熔深、熔覆层宽度、熔合比和润湿角由能量输入和质量积累的复杂耦合决定,它们分别与//、//、//、//、//、//、//、//和//成正比。较大的线性回归系数和分析残差表明统计线性回归模型具有较高的可靠性。这项工作旨在全面了解主要工艺参数对熔覆层形态特征的影响,这对于为高沉积速率激光熔覆技术的实际应用提供参考和奠定基础具有重要价值。