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Numerical simulations of an electromagnetic acoustic transducer-receiver system for NDT applications

机译:NDT应用的电磁声换能器-接收器系统的数值模拟

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The development of a multistage numerical model of an electromagnetic acoustic transducer (EMAT), with particular emphasis on an EMAT receiver, is presented. The model includes five separate modeling states: static magnetic field simulation of an electromagnet; pulsed eddy current distribution of a generic meander-line coil suspended over a conducting specimen; Lorentz force distribution due to the interaction of the static magnetic field with the eddy current distributions; acoustic wave generation and propagation based on the dynamic Lorentz forces; and acoustic wave detection by an EMAT receiver. In particular, it is shown how the transient particle displacement fields are converted into an induced voltage response as part of the EMAT receiver system. Numerical simulations show that the voltage response is dependent on the wire spacing of the receiver coil.
机译:介绍了电磁声换能器(EMAT)的多级数值模型的开发,尤其着重于EMAT接收器。该模型包括五个独立的建模状态:电磁体的静磁场仿真;电磁场的静态仿真。悬挂在导电样品上的通用曲折线线圈的脉冲涡流分布;由于静磁场与涡流分布的相互作用而产生的洛伦兹力分布;基于动态洛伦兹力的声波产生和传播;通过EMAT接收器进行声波检测。尤其显示了作为EMAT接收器系统一部分的瞬态粒子位移场如何转换为感应电压响应。数值模拟表明,电压响应取决于接收器线圈的线距。

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