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Improving Accuracy of Robot-Guided 3d Laser Surface Processing by Workpiece Measurement in a Blink

机译:通过眨眼中的工件测量提高机器人引导的3d激光表面处理的精度

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A double-beam deflection unit (scanner) with integrated on-axis sensors for distance and temperature measurement is developed for the production of structural hybrid composite parts. This robot-guided 3d laser scanner is integrated in a composite production cell for in-mold laser pretreatment for subsequent joining. A basic challenge of industrial laser applications - the placement problem of workpiece in workspace of robot - was solved using on-axis low-coherence interferometry. Varying positions of workpiece for remote laser processes can in the future be compensated in seconds, depending on beam characteristic, here with a theoretical accuracy of 60 urn (X,Y), 1 μm (Z), 0,003° (B,C) and 0,174° (A). Two issues reduce this theoretical accuracy in practice. However, the improvement of daily process preparation is significant and validated by measurement of accuracy of laser path image at a close-to-series carbon fiber reinforced plastic (CFRP) demonstrator of BMW. The optimal position of scanner relative to part is a fundamental condition for ablative 3d surface processing. Driven by the necessity of quality assurance within automotive industry the inherent potential of sensor technology is shown, additionally. This potential study gives impulses for further developments of multifunctional laser scanners.
机译:开发了带有用于距离和温度测量的集成同轴传感器的双光束偏转单元(扫描仪),用于生产结构混合复合零件。这款由机器人引导的3d激光扫描仪集成在一个复合生产单元中,用于模内激光预处理,以进行后续连接。使用同轴低相干干涉技术解决了工业激光应用的一个基本挑战-工件在机器人工作空间中的放置问题。将来,可以根据光束特性在几秒钟内补偿用于远程激光加工的工件的不同位置,此处的理论精度为60 urn(X,Y),1μm(Z),0.003°(B,C)和0,174°(A)。在实践中有两个问题降低了这一理论准确性。但是,日常流程准备工作的改进是显着的,并且可以通过在宝马的一系列近似碳纤维增强塑料(CFRP)演示器上测量激光路径图像的准确性来验证。扫描仪相对于零件的最佳位置是烧蚀3d表面处理的基本条件。此外,在汽车行业内需要质量保证的驱动下,传感器技术的内在潜力也得到了展示。这项潜在的研究为多功能激光扫描仪的进一步发展提供了动力。

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