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On the separation of Lorentz and magnetization forces in the transduction mechanism of Electromagnetic Acoustic Transducers (EMATs)

机译:电磁声换能器(EMAT)的传导机理中的洛伦兹力和磁化力的分离

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摘要

Electromagnetic Acoustic Transducers (EMATs) are widely used in Nondestructive Evaluation (NDE) of metals, including the inspection of ferritic steels. Optimization of EMATs in ferromagnetic materials is often accomplished using computational simulations that account for the three main types of transduction mechanism, namely the effects of Lorentz forces, magnetization forces, and magnetostriction. The extensive literature on the Lorentz and magnetization mechanisms of EMATs has been historically scattered with alternative notations causing conflicting interpretations of the fundamental governing equations that often led to erroneous implementations of these equations in computational simulations. The purpose of this paper is to clarify this issue. The confusion is caused by the arbitrary nature of the separation of electromagnetic transduction force into Lorentz and magnetization components. This paper shows that apparently contradicting models are actually equivalent if the Lorentz and magnetization forces are chosen to correctly match each other, while mixing otherwise acceptable but mutually incompatible terms leads to unacceptable modelling errors. This paper also provides guidelines for the implementation of these transduction mechanisms in computational models for EMATs.
机译:电磁声换能器(EMAT)广泛用于金属的无损评估(NDE),包括铁素体钢的检查。铁磁性材料中EMAT的优化通常使用计算模拟来完成,该模拟考虑了三种主要的传导机制,即洛伦兹力,磁化力和磁致伸缩效应。关于EMAT的Lorentz和磁化机理的大量文献在历史上一直散布着其他符号,导致对基本控制方程式的解释不一致,这常常导致在计算模拟中错误地实现这些方程式。本文的目的是澄清这个问题。混淆是由于将电磁换能力分离成洛伦兹磁化分量和磁化分量的任意性质引起的。本文表明,如果选择洛伦兹力和磁化力正确匹配,则看起来矛盾的模型实际上是等效的,而将否则可以接受但相互不兼容的术语混合会导致无法接受的建模错误。本文还为在EMAT计算模型中实现这些转导机制提供了指导。

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