Cheng Manping, Zou Xi, Pan Yang, Zhou Yan, Liu Wenyang, Song Lijun
Research Institute of Automobile Parts Technology, Hunan Institute of Technology, Hengyang 421002, China.
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan Provincial Key Laboratory of Intelligent Laser Manufacturing, Hunan University, Changsha 410082, China.
Materials (Basel). 2023 Oct 9;16(19):6610. doi: 10.3390/ma16196610.
This paper mainly analyzes the typical thermodynamic response (thermal history, thermal strain and residual stress) in a conventional continuous-wave (CW) laser during Directed Energy Deposition (DED). The influence of process parameters (laser power and scanning speed) on the temperature gradient in the heat-affected zone, thermal strain and residual stress are studied, and the corresponding relationship are established. The results show that a reduction in residual stress can be obtained by decreasing the temperature gradient. However, the method of reducing the temperature gradient by changing process parameters leads to low forming quality and low density. A pulse-wave laser (PW) is proposed to actively control the residual stress of the deposited sample. This laser mode can reduce not only the temperature gradient in the process of DED but also the in situ release of thermal stress, correspondingly greatly reducing the residual stress.
本文主要分析了定向能量沉积(DED)过程中传统连续波(CW)激光的典型热力学响应(热历史、热应变和残余应力)。研究了工艺参数(激光功率和扫描速度)对热影响区温度梯度、热应变和残余应力的影响,并建立了相应的关系。结果表明,通过降低温度梯度可以降低残余应力。然而,通过改变工艺参数来降低温度梯度的方法会导致成形质量低和密度低。提出了一种脉冲波激光(PW)来主动控制沉积样品的残余应力。这种激光模式不仅可以降低DED过程中的温度梯度,还可以降低热应力的原位释放,相应地大大降低残余应力。