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Inspection of plastic weld joints with terahertz imaging

机译:用太赫兹成像检查塑料焊接接头

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摘要

Polymers cover the whole range from commodities to high-tech applications. Plastic products have also gained in importance for construction purposes. This draws the attention to joining techniques like welding. Common evaluation of the weld quality is mostly mechanical and destructive. Existing non-destructive techniques are mostly not entirely reliable or economically inefficient. Here, we demonstrate the potential of terahertz time-domain spectroscopy imaging as a non-destructive testing tool for the inspection of plastic weld joints. High-density polyethylene sheets welded in a lap joint with varying quality serve as samples for terahertz transmission measurements. Imperfections within the weld contact area can clearly be detected by displaying the transmitted intensity in a limited frequency range. Contaminations such as metal or sand are identified since they differ significantly from the polymer in the terahertz image. Furthermore, this new and promising technique is capable of detecting the boundaries of a weld contact area. Aside from revealing a contrast between a proper weld joint and no material connection, the size of an air gap between two plastic sheets can be determined by considering the characteristic frequency-dependent transmission through the structure: The spectral positions of the maxima and minima allow for the calculation of the air layer thickness.
机译:聚合物涵盖从商品到高科技应用的整个范围。对于建筑目的,塑料产品也变得越来越重要。这引起了对焊接等连接技术的关注。常见的焊接质量评估主要是机械性和破坏性的。现有的非破坏性技术大多不是完全可靠或经济上无效的。在这里,我们展示了太赫兹时域光谱成像作为检查塑料焊接接头的非破坏性测试工具的潜力。以不同质量焊接在搭接中的高密度聚乙烯薄板用作太赫兹透射率测量的样本。通过在有限的频率范围内显示透射强度,可以清楚地检测出焊接接触区域内的缺陷。可以识别出诸如金属或沙子之类的污染物,因为它们与太赫兹图像中的聚合物明显不同。此外,这种新的有前途的技术能够检测焊接接触区域的边界。除了揭示适当的焊接接头与没有材料连接之间的对比之外,还可以通过考虑结构中与频率相关的特征传输来确定两个塑料板之间的气隙大小:最大值和最小值的光谱位置允许空气层厚度的计算。

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