Wang Xinlin, Jiang Jinkun, Tian Yongchang
School of Mechanical Engineering, Dalian Jiaotong University, Dalian 116028, China.
Micromachines (Basel). 2022 Apr 22;13(5):659. doi: 10.3390/mi13050659.
Owing to the unparalleled advantages in repairing of high value-add component with big size, fabricating of functionally graded material, and cladding to enhance the surface properties of parts, the laser material deposition (LMD) is widely used. Compared to the continuous wave (CW) laser, the controllability of the laser energy would be improved and the temperature history would be different under the condition of pulse wave (PW) laser through changing the pulse parameters, such as duty cycle and pulse frequency. In this paper, the research status of temperature field simulation, surface quality, microstructural features, including microstructures, microhardness, residual stress, and cracking, as well as corrosion behavior of metallic coating created by pulsed laser material deposition have been reviewed. Furthermore, the existing knowledge and technology gaps are identified while the future research directions are also discussed.
由于激光材料沉积(LMD)在修复大尺寸高附加值部件、制造功能梯度材料以及熔覆以提高部件表面性能方面具有无与伦比的优势,因此得到了广泛应用。与连续波(CW)激光相比,通过改变脉冲参数(如占空比和脉冲频率),在脉冲波(PW)激光条件下激光能量的可控性会得到提高,温度历程也会有所不同。本文综述了脉冲激光材料沉积制备金属涂层的温度场模拟、表面质量、微观结构特征(包括微观组织、显微硬度、残余应力和裂纹)以及腐蚀行为的研究现状。此外,还指出了现有知识和技术差距,并讨论了未来的研究方向。