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An investigation of pinch welds using HTS SQUIDs

机译:使用HTS SQUID进行夹缝焊的研究

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To contain high-pressure gases inside a pressure vessel a seal is often made in a thin-walled tube, known as the stem tube, that connects the gas reservoir and the vessel. This seal can be achieved through the use of a resistance pinch weld that forms with only a limited amount of melting occurring. The lack of melting makes applying traditional post-weld nondestructive evaluation (NDE) techniques extremely difficult. The welds of interest here are made from 304L stainless steel (typically 3.8 mm diameter and 38 mm long) and have a non-uniform geometry that does not inherently lend itself to either eddy current or static field SQUID-based measurement techniques. We perform these NDE measurements with both the sample and the SQUID located inside local electromagnetic shielding. SQUID data are presented as individual time series traces for a set of welds that were fabricated using a broad range of fabrication parameters, and a comparison is made between the SQUID-based results and the known parameters. With the limited spatial resolution offered by our present SQUID system, it is not clear if weld quality can be evaluated from purely SQUID-based results.
机译:为了将高压气体容纳在压力容器内,通常在连接储气罐和容器的薄壁管(称为杆管)中进行密封。这种密封可以通过使用仅在有限量的熔化发生时形成的电阻收缩焊来实现。熔化的缺乏使得应用传统的焊后无损评估(NDE)技术极为困难。此处关注的焊缝由304L不锈钢制成(直径通常为3.8 mm,长度为38 mm),并且具有不均匀的几何形状,因此固有地不适合涡流或基于SQUID的静态场测量技术。我们使用位于本地电磁屏蔽内的样本和SQUID进行这些NDE测量。 SQUID数据以使用一系列制造参数制造的一组焊缝的单个时间序列轨迹表示,并且在基于SQUID的结果和已知参数之间进行比较。由于我们目前的SQUID系统所提供的空间分辨率有限,因此尚不清楚是否可以从纯粹基于SQUID的结果评估焊接质量。

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