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首页> 外文期刊>Journal of Nondestructive Evaluation >A Study of Stress Dependent Magnetostriction on Steel Plate by Analysis of an Electromagnetically Generated S0 Lamb Wave
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A Study of Stress Dependent Magnetostriction on Steel Plate by Analysis of an Electromagnetically Generated S0 Lamb Wave

机译:通过分析电磁生成的S0羔羊波钢板应力依赖磁致伸缩研究

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摘要

A ferromagnetic material's magnetostriction coefficient is generally difficult to measure but it does depend on stress, so that measurement of the magnetostriction coefficient can in principle be applied to evaluate stress. A magnetostriction-based electromagnetic acoustic transducer (EMAT) is used to generate the S0 Lamb wave in a 4 mm thick steel plate, and the peak-to-peak value of the EMAT detected S0 Lamb wave signals are used to evaluate the stress. A nonlinear, magnetostrictive finite element model is developed and employed to stimulate the generation of the S0 Lamb wave in 4 mm thick steel plate in the time domain. The results show that the peak-to-peak amplitude of the S0 Lamb wave is inversely proportional to the applied tensile stress, whereas, with increasing compressive stress, the peak-to-peak value of the S0 wave signal rises to a peak at approximately -50 MPa, and then decreases as compressive stress increases. This non-monotonic behaviour with compressive stress is not conducive to the evaluation of compressive stress, but the method can be used to quantify tensile stress. Experiments are conducted on 4 mm thick Q235 steel plates, in which a local stress is artificially applied. The S0 Lamb wave are generated by a magnetostriction-based EMAT generator, and the results are in a good agreement with the simulation. This method is restricted to measurement of local stress underneath the generator. With suitable calibration, this method can be employed to evaluate local tensile stress in ferromagnetic materials.
机译:铁磁材料的磁致伸缩系数通常难以测量,但它依赖于应力,从而原则上可以应用磁致伸缩系数的测量来评估应力。基于磁致伸缩的电磁声换能器(EMAT)用于在4mm厚的钢板中产生S0羊棒,并且使用EMAT检测到的S0距离波浪信号的峰值峰值来评估应力。开发和采用非线性的磁致伸缩有限元模型,以在时域中刺激4mm厚钢板中的S0羊波的产生。结果表明,S0羊振波的峰峰值幅度与施加的拉应力成反比,而随着增加的压缩应力,S0波信号的峰值峰值在大约近似上升到峰值-50MPa,然后随着压缩应力的增加而降低。这种具有压缩应力的非单调性能不利于对压缩应力的评估,但该方法可用于量化拉应力。实验在4mm厚的Q235钢板上进行,其中人工施加局部应力。 S0 Lamb波由基于磁致索的EMAT生成器生成,结果与模拟很好。该方法仅限于发电机下方的局部应力的测量。通过合适的校准,可以采用该方法来评估铁磁材料中的局部拉伸应力。

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