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Surface-Breaking Flaw Detection in Mild Steel Welds using Quantum Well Hall Effect Sensor Devices

机译:使用量子阱霍尔效应传感器装置在温和钢焊缝中断裂探伤检测

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With growing industrial interest in Non-Destructive Evaluation (NDE) applications of Quantum Well Hall Effect (QWHE) sensors, a study was conducted to quantitatively determine the detection capabilities and general performances of low frequency QWHE imaging for surface-breaking flaws and their comparison with Magnetic Particle Inspection (MPI), Eddy Current Testing (ECT) and Alternating Current Field Measurement (ACFM). In this study, a probe consisting of a QWHE sensor, illuminating electromagnet and sensor circuitry was controlled using an automated XY scanner with a measurement step of 250 μm to simulate an integrated array of QWHE sensors of 250 μm pitch. This probe applied a 3 mT, 100 Hz frequency magnetic field to map the surface magnetic field and Magnetic Flux Leakage (MFL) response of five bespoke dressed mild steel weld samples. These samples provided 15 surface-breaking flaws of varying length from 3 to 11 mm; mainly longitudinal toe and center-line cracks which are representative of typical requirements of our industrial partners. The same samples were also subjected to MPI, ECT and ACFM provided by leading industrial companies using their own qualified personnel, equipment and procedures. The outcomes and performance of each NDE technique including QWHE imaging were then compared and evaluated.
机译:随着普通井霍尔效应(QWhe)传感器的非破坏性评价(NDE)应用的产业兴趣,进行了一项研究,以定量地确定低频QWHE成像进行表面破坏的检测能力和总体性能及其与其比较磁性粒子检测(MPI),涡流测试(ECT)和交流场测量(ACFM)。在该研究中,使用具有250μm的测量步骤的自动XY扫描仪控制由QWhe传感器,照明电磁铁和传感器电路组成的探针,以模拟250μm间距的QWhe传感器的集成阵列。该探头施加了3 MT,100 Hz频率磁场,以映射五定定型温和钢焊接样品的表面磁场和磁通漏电(MFL)响应。这些样品提供了15个不同长度的15个表面破裂漏洞从3至11mm的变化;主要是纵向脚趾和中心线裂缝,代表我们的工业伙伴的典型要求。通过使用自己的合格人员,设备和程序,领先的工业公司提供的MPI,ECT和ACFM也经受相同的样本。然后比较和评估每个NDE技术的结果和性能,包括QWhe成像。

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