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Study of a spiral-coil EMAT for rail subsurface inspection

机译:铁路地下检验螺旋线圈EMAT研究

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The novelty of this paper is that a spiral-coil EMAT (electromagnetic acoustic transducer) is applied to rail subsurface inspection. To study the spiral-coil EMAT for rail subsurface inspection, the dominant mechanism is investigated emphatically. The interaction between the Lorentz-force mechanism and the magnetostriction mechanism is analyzed corresponding to the magnetic flux density and the frequency which has a significant effect on the magnetostriction mechanism. The effect of frequency on beam divergence is further discussed about the rail subsurface inspection using spiral-coil EMAT as well. A 2D FEM (finite element model) of spiral-coil EMAT is established and the simulation is carried out to analyze these issues. Besides, the experiments to inspect the subsurface crack of steel plate are carried out at various frequencies to verify the feasibility of the application. The experimental results demonstrate that the rail subsurface inspection by using the spiral-coil EMAT is feasible and the high frequency can contribute to distinguish the echo signal from the rail subsurface crack.
机译:本文的新颖性是螺旋式线圈EMAT(电磁声换能器)应用于轨道地下检测。为研究螺旋形型EMAT进行轨道地下检验,重点研究了主导机制。对应于磁通密度和对磁致索机制具有显着影响的磁通密度和频率之间的磁通量机构和磁致伸缩机构之间的相互作用。还讨论了使用螺旋线圈EMAT的轨道地下检测进一步讨论了频率对光束发散的影响。建立了螺旋线圈EMAT的2D FEM(有限元模型),并进行了模拟以分析这些问题。此外,在各种频率下进行检查钢板地下裂缝的实验,以验证应用的可行性。实验结果表明,使用螺旋线圈EMAT的轨道地下检测是可行的,并且高频可以有助于区分来自轨道地下裂缝的回波信号。

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