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Process monitoring system for laser transmission welding of plastics using direct visualization of the weld seam

机译:通过直接可视化焊缝对塑料进行激光透射焊接的过程监控系统

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摘要

This paper presents a new monitoring principle for laser transmission welding of plastics. The principle uses two independent detectors: a CCD or CMOS camera to supply an image of the weld seam and a pyrometer to detect heat radiation from the welding process. In laser transmission welding, the weld seam is usually hidden by the laser transparent joining partner, which may still be colored in the visible spectrum. Therefore, a special lighting laser will be used to acquire an image of the weld for CCD or CMOS cameras. If the upper joining partner is not only partly transparent for the laser wavelength of the welding laser, but also for the laser wavelength of the lighting laser, a direct visualization of the weld is possible. Factors influencing the weld quality or leading to defects within the weld are kerfs on the surfaces of the joining partners, moisture uptake of the plastic material and the surface finish of the materials. Which weld defects result from these factors and how they can be detected by the monitoring system are shown. Not all of the resulting defects can be detected with a single detector. Therefore, the information from the two detectors -camera and pyrometer - is correlated.
机译:本文提出了一种用于塑料激光透射焊接的新监测原理。该原理使用两个独立的检测器:用于提供焊缝图像的CCD或CMOS相机,以及用于检测来自焊接过程的热辐射的高温计。在激光透射焊接中,焊缝通常被激光透明的连接伙伴遮盖,该连接伙伴可能仍在可见光谱中着色。因此,将使用特殊的照明激光来获取CCD或CMOS相机的焊缝图像。如果上连接伙伴不仅对于焊接激光的激光波长部分透明,而且对于照明激光的激光波长部分透明,则可以直接看到焊缝。影响焊缝质量或导致焊缝中缺陷的因素是连接伙伴表面的切缝,塑料材料的吸湿性和材料的表面光洁度。显示了由这些因素导致的哪些焊接缺陷以及如何通过监视系统检测到它们。并非所有产生的缺陷都可以通过单个检测器检测到。因此,来自两个检测器(相机和高温计)的信息是相关的。

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