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A Non-conventional Technique for Evaluating Welded Joints Based on the Electrical Conductivity

机译:基于电导率的非常规焊接接头评估技术

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摘要

Recent studies showed that electrical conductivity is a valuable technique to identify the different zones of solid-state welded joints with a good correlation with the microstructure and hardness. This is a relevant result since this technique is fast and, in some cases, non destructive. The concept was applied to other welding processes such as the ones involving fusion to a wide range of materials. For this, a comprehensive study was performed using friction stir welding, tungsten inert gas (TIG) and gas metal arc (MAG) welding processes in either bead on plate or butt joints in: carbon steel, magnesium and titanium. Eddy current nondestructive testing (NDT) was used to measure the electrical conductivity at different depths in transverse sections of the processed materials. The profiles were compared to the hardness profiles in the same sections. As a result, a correlation was observed in most materials welded by solid state and by fusion processes. The variation of the electrical conductivity closely follows that measured in the hardness. Another interesting conclusion is that, even for fusion welding of carbon steels, the technique has potential to complement the hardness measurements and microstructural observations, allowing the identification of the distinct zones of welds in materials commonly used in industry.
机译:最近的研究表明,电导率是鉴定固态焊接接头不同区域的有价值的技术,与显微组织和硬度具有良好的相关性。这是一个相关的结果,因为该技术快速且在某些情况下无损。该概念已应用于其他焊接工艺,例如涉及融合多种材料的工艺。为此,使用摩擦搅拌焊,钨极惰性气体(TIG)和气体金属电弧焊(MAG)焊接工艺,对碳钢,镁和钛的平板或对接接头进行了全面研究。涡流无损检测(NDT)用于测量加工材料横截面不同深度处的电导率。将轮廓与相同部分的硬度轮廓进行比较。结果,在通过固态和熔融工艺焊接的大多数材料中观察到相关性。电导率的变化与硬度的变化密切相关。另一个有趣的结论是,即使对于碳钢的熔焊,该技术也有可能补充硬度测量和显微组织观察,从而可以识别工业常用材料中的不同焊缝区域。

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