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Analytical algorithm of inductive field for realising a smart eddy current NDT system

机译:实现智能涡流无损检测系统的感应场解析算法

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Research effort to integrate an analysis module of inductive field into an eddy current NDT system to realise a hybrid technique, which is capable of automatically analysing the inductive field so as to set up the optimum parameters for the system, has not been well addressed. This paper describes the work that leads to the realization of such a hybrid technique. First, two finite element models are described. Next, an analytical algorithm based on these models is proposed. By integrating the algorithm into an eddy current NDT system, a smart hybrid technique can be realized. This is beneficial in setting up relevant parameters such as the working frequencies and the detection distance. Thus, the test precision can be improved. Taking a cylindrical inductive sensor as an example, some calculation results are provided to illustrate the analysis of the inductive field produced in an eddy current NDT system.
机译:将感应场的分析模块集成到涡流无损检测系统中以实现能够自动分析感应场从而为系统设置最佳参数的混合技术的研究工作尚未得到很好的解决。本文介绍了导致实现这种混合技术的工作。首先,描述了两个有限元模型。接下来,提出了基于这些模型的解析算法。通过将算法集成到涡流无损检测系统中,可以实现智能混合技术。这有利于设置相关参数,例如工作频率和检测距离。因此,可以提高测试精度。以圆柱形感应传感器为例,提供了一些计算结果来说明对涡流无损检测系统中产生的感应场的分析。

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