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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Development of a simple laser-based 2D contouring accuracy compensation system for the laser cutting machine
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Development of a simple laser-based 2D contouring accuracy compensation system for the laser cutting machine

机译:开发用于激光切割机的基于激光的简单二维轮廓精度补偿系统

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The effect of dynamical contouring error is a critical to the production yield of the laser cutting machine. Dynamical contouring error is defined as the difference between the actual processing path and the commanded path, as implemented by following the command curves of the feeding and driving system associated with the machine tools. Contouring error is the result of various factors, such as the external loads, friction, moment of inertia, feed rate, speed control, and servo control. This study proposes a 2D compensation system to improve the contouring accuracy of the laser cutting machine. An optical method was adopted, in which a stable frequency laser diode and a high precision position sensor detector (PSD) were adopted to perform noncontact measurement. Experimental results demonstrate that the accuracy of the position sensor detector (PSD) in the 2D contouring accuracy compensation system was +/- 1.5 mu m over a calculated range of +/- 3 mm, representing an improvement accuracy of over 80% at a high feed rate. (C) 2015 Elsevier GmbH. All rights reserved.
机译:动态轮廓误差的影响对于激光切割机的产量至关重要。动态轮廓误差定义为实际加工路径与指令路径之间的差,通过遵循与机床相关的进给和驱动系统的指令曲线来实现。轮廓误差是多种因素导致的,例如外部负载,摩擦,惯性矩,进给速度,速度控制和伺服控制。这项研究提出了一种二维补偿系统,以提高激光切割机的轮廓精度。采用光学方法,其中采用稳定频率的激光二极管和高精度位置传感器检测器(PSD)进行非接触式测量。实验结果表明,在2D轮廓精度补偿系统中,位置传感器检测器(PSD)的精度在+/- 3 mm的计算范围内为+/- 1.5μm,在高的情况下提高了80%以上的精度进给速度。 (C)2015 Elsevier GmbH。版权所有。

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