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Magnetic flux leakage inspection of tailor-welded blanks

机译:拼焊板的漏磁检测

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A feasibility study was conducted on the application of magnetic flux leakage (MFL) inspection to the evaluation of weld quality in automotive tailor-welded blanks (TWB). Using a permanent magnet configuration, magnetic flux was directed through the weld region of a TWB. A Hall effect sensor was coupled to the movement of a digital plotter and was, thereby, scanned around the weld region. Signals from the Hall effect sensor were processed and correlated with defects to determine corresponding MFL signatures. Simulated through-hole defects as small as 0.34 mm in diameter were readily detected. Furthermore, there was a reasonably linear relationship between the MFL signals associated with these defects and the diameter of the defect hole. Preliminary tests with specimens having naturally occurring defects such as concavity, pinholes, and undercutting, indicate that the MFL technique has excellent potential as an inspection method in this application.
机译:进行了关于磁通量泄漏(MFL)检查在汽车拼焊板(TWB)焊接质量评估中的可行性研究。使用永磁体配置,将磁通量引导通过TWB的焊接区域。霍尔效应传感器与数字绘图仪的运动耦合,因此可以在焊接区域周围进行扫描。处理来自霍尔效应传感器的信号,并将其与缺陷关联,以确定相应的MFL签名。直径仅为0.34毫米的模拟通孔缺陷很容易被发现。此外,与这些缺陷相关的MFL信号与缺陷孔的直径之间存在合理的线性关系。对具有自然缺陷(例如凹陷,针孔和底切)的标本进行的初步测试表明,MFL技术在此应用中具有作为检查方法的出色潜力。

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