Sun Pengpeng, Liu Qiang, Wang Jian, Wang Liuquan, Yin Zhenshuo
School of Mechanical Engineering and Automation, Beihang University, Beijing 100191, China.
Research and Application Center of Advanced CNC Machining Technology and Innovation, Beijing 100191, China.
Micromachines (Basel). 2022 Dec 15;13(12):2228. doi: 10.3390/mi13122228.
To ensure the consistency of laser engraving depth in chemical milling, the precise control of 5-axis variable-angle laser engraving was the focus of research. Based on the energy conservation principle, the depth model of 5-axis variable-angle laser engraving is established, and the relationships among the laser engraving depth, laser power, scanning velocity, and beam axis angle are proposed. A depth-constraint real-time adaptive control method of laser power is proposed considering the variable scanning velocity and beam axis angles. The depth model parameters are identified by an orthogonal experiment, and a variable-angle laser engraving experiment with adaptive control of laser power is carried out. The coefficient of determination of the proposed depth model is 0.977, which means that the engraving depth model established in this paper predicts the engraving depth effectively and reliably. The depth-constraint adaptive control method of laser power obtains stable and uniform machining results under abrupt changes in scanning velocity and beam axis angles.
为确保化学铣削中激光雕刻深度的一致性,五轴可变角度激光雕刻的精确控制是研究重点。基于能量守恒原理,建立了五轴可变角度激光雕刻深度模型,提出了激光雕刻深度、激光功率、扫描速度和光束轴角度之间的关系。考虑到扫描速度和光束轴角度的变化,提出了一种激光功率深度约束实时自适应控制方法。通过正交试验确定深度模型参数,并进行了激光功率自适应控制的可变角度激光雕刻实验。所提出深度模型的决定系数为0.977,这意味着本文建立的雕刻深度模型能有效且可靠地预测雕刻深度。激光功率深度约束自适应控制方法在扫描速度和光束轴角度突变的情况下获得了稳定且均匀的加工结果。