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Recent Developments in Modeling Eddy-Current Probe-Flaw Interactions

机译:涡流探针-缺陷相互作用建模的最新进展

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摘要

A number of industries have been traditional users of eddy-current technology in nondestructive evaluation (NDE). The traditional mode of eddy-current inspection has been ‘monostatic,’ in which a single probe is used as both a ‘transmitter’ and ‘receiver’ Research in these industries now indicates the value of using ‘bistatic,’ or even ‘multistatic’ probe configurations, in which a single probe is used as a transmitter, and one or more probes are used as receivers. The probes may be either air core, or ferrite core, or perhaps a combination. Some examples of bistatic configurations are the split-core differential probe, and remote-field probes. The industry is turning to computer codes that are based on sophisticated computational electromagnetics algorithms in order to design these probes, and to interpret the signals that arise from the interaction of these probes with flaws.
机译:许多行业已经成为涡流技术在无损评估(NDE)中的传统用户。涡流检测的传统模式是“单静态”,其中单个探针既用作“发送器”又用作“接收器”,这些行业的研究现在表明使用“双静态”甚至“多静态”的价值。探针配置,其中单个探针用作发送器,一个或多个探针用作接收器。探针可以是空心,也可以是铁氧体,或者可以是它们的组合。双基地配置的一些示例是裂芯差分探头和远程场探头。业界正在转向基于复杂的计算电磁算法的计算机代码,以设计这些探针,并解释由于这些探针与缺陷的相互作用而产生的信号。

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