A New Method for Calculating the Error Term Used in 2D Feedback Control of Laser Forming

Anders Noel Thomsen, Benny Endelt, Morten Kristiansen
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引用次数: 4

Abstract

Laser forming of sheet metal has the potential to add to the growing repertoire of laser processing. This is of particular interest for flexible manufacturing and rapid prototyping. A factor limiting the practical use is the planning of the process parameters, such as laser scan path, laser power, laser scan speed, laser spot size, dwell time, etc. This study presents a new method for calculating the error between the target shape and the current shape. The method is based on geometrical information and uses a projection of the second derivative of the target geometry unto the current geometry. By comparing the projected second derivative with the second derivative of the current geometry, the error can be calculated. Once the error has been found, a feedback control strategy can be used to update the process parameters. The new method entails that the error can be calculated without having to solve the large scale mechanical FEM as part of the planning process. This reduces the planning time and enables a simpler approach that, for the error calculation, is independent of material properties. The method is verified for a 2D feedback system for simple bends in sheet metal, using FEM simulations of the laser forming process.

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一种用于激光成形二维反馈控制误差项计算的新方法
金属板材的激光成形有可能增加到激光加工的不断增长的曲目。这对于灵活制造和快速原型设计特别有意义。限制实际应用的一个因素是工艺参数的规划,如激光扫描路径、激光功率、激光扫描速度、激光光斑尺寸、停留时间等。提出了一种计算目标形状与当前形状误差的新方法。该方法基于几何信息,并使用目标几何的二阶导数到当前几何的投影。通过将投影的二阶导数与当前几何图形的二阶导数进行比较,可以计算出误差。一旦发现误差,就可以使用反馈控制策略来更新过程参数。新方法使得在规划过程中不需要求解大型机械有限元就可以计算出误差。这减少了规划时间,并使误差计算的方法更简单,与材料特性无关。通过对激光成形过程的有限元模拟,验证了该方法在金属薄板简单弯曲的二维反馈系统中的有效性。
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