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首页> 外文期刊>Nondestructive Testing and Evaluation >Simulation based on optimisation of pulsed eddy current probe design
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Simulation based on optimisation of pulsed eddy current probe design

机译:基于优化的脉冲涡流探头设计仿真

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摘要

There is a need for a pulsed eddy current (PEC) to detect very small defects and deep buried subsurface flaws reliably in metallic structures such as aircraft wings. This paper reports an investigation into the sensitivity for a pancake PEC probe to variations in the material conductivity of specimens. Three experimental coil parameters are modelled: (a) coil inner radius, (b) coil width and (c) coil height. Based on the predicted signals, the sensitivity of the PEC probe as a function of coil parameters has been formulated. Through matrix numerical simulation experiments using orthogonal array, the weighting of each parameter to the sensitivity has been derived. Subsequently, a theoretical model for probe optimisation is established in order to realise the maximum sensitivity, based on which a probe is designed with improved sensitivity.
机译:需要一种脉冲涡流(PEC),以可靠地检测诸如飞机机翼之类的金属结构中的很小的缺陷和深埋的地下缺陷。本文报告了对煎饼PEC探针对样品材料电导率变化的敏感性的研究。对三个实验线圈参数进行了建模:(a)线圈内半径,(b)线圈宽度和(c)线圈高度。基于预测的信号,已经制定了PEC探头的灵敏度与线圈参数的函数关系。通过使用正交阵列的矩阵数值模拟实验,得出了每个参数对灵敏度的加权。随后,建立了用于优化探头的理论模型,以实现最大灵敏度,在此基础上设计了灵敏度更高的探头。

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