在金属管高频焊接过程中使用CCD热成像进行空间和热测量

E. Renier, P. Suzeau, F. Truchetet, P. Geveaux
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引用次数: 6

摘要

高频焊接,生产速度快,无接触加热,焊缝质量好。焊锡的速度限制主要是由压型机中金属的良好驱动施加的。为了控制高频焊接过程,作者提出了一种新的方法和途径,即利用他们实验室开发的热图像采集系统来控制温度。他们的计算机视觉,在本文中描述,是基于CCD热成像。该技术为热参数和空间参数的测量带来了许多优势和工具。高的空间分辨率(800/spl次/600像素)和时间分辨率、良好的相对热分辨率(800 ~ 2000/spl度/C范围内10/spl度/C)、校准曲线线性和大的测温范围是该系统的主要优点。他们特别开发了一些特定的图像处理(线亚像素检测),用于测量空间参数:焊接角,管轴,金属板沿横向截面的边界之间的位移。所有这些参数都是实时控制的,允许通知焊工有关工艺漂移。实际上,这台机器是用来控制过程的,而不是用来监督的。在高频焊接过程中测量的一些信息有助于他们分析和理解所有发生的工艺漂移。
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Spatial and thermal measurements using thermography CCD during HF soldering of metallic tubes
High frequency soldering allows high production speed, contactless heating and good quality of the weld. The speed limit of soldering is principally imposed by a good drive of the metal in the profiling machine. To control a HF soldering process, the authors propose a new method and approach which consists in controlling the temperature with a thermal image acquisition system developed in their laboratory. Their computer vision, described in this paper, is based on CCD thermography. This technology brings many advantages and tools in the measurement of thermal and spatial parameters. In fact, high spatial (800/spl times/600 pixels) and temporal resolutions, good relative thermal resolution (10/spl deg/C in the range of 800 to 2000/spl deg/C), linearity of calibration curves and large temperature measurement range are the main advantages of their system. They especially developed some specific image processing (line subpixel detection) used to measure spatial parameters: soldering angle, tube axis, shift between borders of the metal sheet along transversal cross section. All these parameters controlled in real time, allow to inform the welder operator about process drift. Actually, this machine is used to control the process and not to supervise it. Some information measured during HF soldering help them to analyse and understand all the occurring process drift.
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