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An Activity Determination Method of Crack Defects in Aluminum Plate and Steel Plate Based on EMAT

机译:基于EMAT的铝板和钢板裂纹缺陷活性确定方法

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The purpose of this paper is to analytically explore that an electromagnetic ultrasonic transducer (EMAT) can be used to do the activity determination of crack defects. Acoustic emission (AE) testing has been done through the innovative use of EMAT, and the activity of defects can be determined based on the Kaiser effect. In consideration of the Lorentz force and magnetostrictive force, the magnetism, force, and vibration displacement of aluminum sheet and steel sheet are analyzed through the finite-element method and fast Fourier transformation. The db3 wavelet is used to obtain the rule of signal change with excitation current. The experimental system of aluminum sheet and steel sheet was established for verification. This method effectively expands the AE theory based on global loading and also gives full play and expands the defect detection capability of EMAT equipment.
机译:本文的目的是分析性地探索电磁超声换能器(EMAT)可用于确定裂纹缺陷的活动性。通过创新地使用EMAT进行了声发射(AE)测试,可以根据Kaiser效应确定缺陷的活性。考虑到洛仑兹力和磁致伸缩力,通过有限元法和快速傅立叶变换分析了铝板和钢板的磁性,力和振动位移。 db3小波用于获得信号随激励电流的变化规律。建立了铝板和钢板的实验系统进行验证。该方法有效地扩展了基于全局载荷的声发射理论,并充分发挥了作用,扩展了EMAT设备的缺陷检测能力。

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