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ULTRASONIC EVALUATION OF SPOT WELDING NUGGET DIAMETER WITH A LINE-FOCUSED PROBE

机译:线聚焦探针的超声焊接点焊直径的超声评估

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摘要

Resistance spot welding has been widely used for the construction of thin sheet metal structures. The structures' reliability depends upon the weld quality as well as the weld size. Therefore, various non-destructive inspections have been applied to the spot welds. Among them, the ultrasonic evaluation is widely used for the detection of defects and for the measurement of weld size. However, this method is too difficult for the detection of the fusion zone or nugget non-destructively, in spite of the high demand for their evaluation. Due in part to the recent application of high-strength steel sheets to automobiles, this problem has become a crucial subject in spot welding. The discrimination of the nugget from the solid state-welded zone or the corona bond is now strongly demanded, This study focused on the non-destructive discrimination between the nugget and the corona bond; a new, ultrasonic measurement with a line-focused probe was proposed. In the experiment, spot welded specimens both with and without surface indentations were prepared, in order to determine the affecting factors on the ultrasonic measurement of spot welds. Moreover, two types of special, thin sheet specimens were prepared to determine the acoustic phenomena in the fusion zone. The first type was the resistance spot-welded specimen and the other was the gas tungsten arc-welded specimen. The measurement of these two special specimens showed that the sound velocity in the nugget differed from the base material and was dependent upon the inhomogeneous microstructures. The different sound velocity caused a different amplitude of reflected waves in the nugget, the change of which also depended upon the measuring conditions of the water path. From these results, it was shown that the measurement based on the different amplitude and the dependence on the water path enabled the non-destructive discrimination between the nugget and the corona bond.
机译:电阻点焊已广泛用于薄金属板结构的构造。结构的可靠性取决于焊接质量以及焊接尺寸。因此,已经对点焊进行了各种无损检查。其中,超声评估被广泛用于缺陷的检测和焊缝尺寸的测量。然而,尽管对融合区或熔核的评估要求很高,但该方法对于非破坏性地检测融合区或熔核还是太困难了。部分由于高强度钢板最近在汽车上的应用,该问题已成为点焊中的关键问题。现在强烈要求从固态焊接区或电晕键区分熔核。本研究着重于熔核和电晕键之间的无损识别。提出了一种新的,采用线聚焦探头的超声测量方法。在实验中,准备了带有和不带有表面凹痕的点焊样品,以确定影响点焊超声测量的因素。此外,准备了两种类型的特殊薄片样品来确定融合区的声学现象。第一种是电阻点焊试样,另一种是气钨弧焊试样。对这两个特殊样品的测量表明,熔核中的声速不同于基础材料,并且取决于不均匀的微观结构。不同的声速会导致熔核中反射波的振幅不同,其变化也取决于水路的测量条件。从这些结果表明,基于不同幅度和对水路的依赖性的测量使得能够在熔核和电晕键之间进行无损鉴别。

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