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首页> 外文期刊>Journal of magnetism and magnetic materials >Non-destructive monitoring of corrosion extent in steel rope wires via Barkhausen noise emission
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Non-destructive monitoring of corrosion extent in steel rope wires via Barkhausen noise emission

机译:通过Barkhausen噪声排放的钢绳线上腐蚀范围的无损监测

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摘要

This paper presents a systematic study of magnetic non-destructive evaluation of corrosion attack in rope wires via Barkhausen noise emission. Reduction of the effective cross-sectional area due to corrosion is a major factor affecting rope wire bearing capacity. To investigate the potential of Barkhausen noise technique for such purpose, wires of variable corrosion extent were measured and the correlation between the corrosion depth and Barkhausen noise parameters was analysed. It was found that Barkhausen noise parameters exhibit very good sensitivity to the variable corrosion depth. However, the evolution of the magnetic parameters saturates when the corrosion depth exceeds 300 mu m. Furthermore, it was observed that Barkhausen emission arises from the wire itself as well as from the corroded layer, including a mixture of oxides and non-corroded fragments.
机译:本文通过巴克豪森噪声排放呈现磁力侵蚀腐蚀攻击腐蚀攻击的系统研究。由于腐蚀导致的有效横截面积的减少是影响绳索线承载力的主要因素。为了调查巴克豪森噪声技术的潜力,测量可变腐蚀程度的电线,分析了腐蚀深度和巴克豪森噪声参数之间的相关性。结果发现,巴克豪森噪声参数对可变腐蚀深度具有非常好的敏感性。然而,当腐蚀深度超过300μm时,磁性参数的进化饱和。此外,观察到,巴克豪森发射从电线本身和腐蚀层产生,包括氧化物和非腐蚀片段的混合物。

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