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Process monitoring in laser beam cutting on its way to industrial a

机译:激光束切割在工业生产中的过程监控

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Abstract: In the past a variety of scientific investigations has proven, that during laser beam cutting optical emissions from the process correlate with properties of the cut kerf and thus can be used to characterize the quality of the machined parts. Laser beam cutting has been well established in many fields of industrial use and has reached a high grade of productivity and flexibility. Due to this, modern on-line techniques for process monitoring in laser beam cutting have to be as fast and flexible as today's laser beam cutting machines. The objective of the work being presented is to provide useful support for the machine personnel and to enable automatic quality monitoring even in case of a small number of units to be cut. The paper introduces some general considerations on the demands of process diagnostics in laser beam cutting and presents `hardware'-tools which have been developed during an industry-university-partnership. The equipment can be adapted to all kind of cutting machines and measures the optical emission from the process within the cutting head. The crucial thing of the work is still the adequate application of analyzing and visualization techniques to extract significant information from the measured signals. Here, this is done by relating the information derived on- line from the process to the geometry of the cut contour. It makes visual quality inspection much easier and more effective: sections of the processed parts with minor cut quality are indicated to the personnel as scrap or at least as to be checked visually. A first approach of integrating such a system into a laser beam cutting machine is presented and discussed.!10
机译:摘要:过去,各种科学研究已证明,在激光束切割过程中,来自该过程的光发射与切割切口的特性相关,因此可用于表征加工零件的质量。激光束切割已在许多工业应用领域中确立了良好的地位,并且达到了很高的生产率和灵活性。因此,用于激光束切割过程监控的现代在线技术必须与当今的激光束切割机一样快速,灵活。提出的工作目的是为机器人员提供有用的支持,即使在要切割的单元数量较少的情况下,也可以进行自动质量监控。本文介绍了有关激光束切割过程诊断要求的一些一般考虑,并介绍了在工业大学合作期间开发的“硬件”工具。该设备可适用于所有类型的切割机,并测量切割头内工艺产生的光发射。这项工作的关键仍然是分析和可视化技术的适当应用,以从被测信号中提取重要信息。在这里,这是通过将从过程中在线获取的信息与切割轮廓的几何形状相关联来完成的。它使视觉质量检查变得更加容易和有效:将加工质量不佳的零件切面作为废料或至少以肉眼检查的方式显示给工作人员。提出并讨论了将这种系统集成到激光切割机中的第一种方法。10

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