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The Detection of Burn-Through Weld Defects Using Noncontact Ultrasonics

机译:使用非接触超声检测通透焊缝缺陷

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摘要

Nearly all manufactured products in the metal industry involve welding. The detection and correction of defects during welding improve the product reliability and quality, and prevent unexpected failures. Nonintrusive process control is critical for avoiding these defects. This paper investigates the detection of burn-through damage using noncontact, air-coupled ultrasonics, which can be adapted to the immediate and in-situ inspection of welded samples. The burn-through leads to a larger volume of degraded weld zone, providing a resistance path for the wave to travel which results in lower velocity, energy ratio, and amplitude. Wave energy dispersion occurs due to the increase of weld burn-through resulting in higher wave attenuation. Weld sample micrographs are used to validate the ultrasonic results.
机译:金属工业中几乎所有制成品都涉及焊接。在焊接过程中检测和纠正缺陷可提高产品的可靠性和质量,并防止意外故障。非侵入式过程控制对于避免这些缺陷至关重要。本文研究了使用非接触式空气耦合超声波检测烧穿损伤的方法,该方法可适用于焊接样品的即时和现场检查。烧穿导致大量的退化焊接区,为波传播提供了阻力路径,从而降低了速度,能量比和振幅。由于焊缝烧穿的增加而产生波能分散,从而导致更高的波衰减。焊接样品显微照片用于验证超声结果。

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