Development of High Temperature Rayleigh Wave Electromagnetic Acoustic Transducer with Double Coil Structure

Yu-Hang Ge, Shu-juan Wang, Bao Liang, Xi Li
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引用次数: 1

Abstract

Rayleigh wave electromagnetic acoustic transducer (EMAT) has the advantages of non-contact and long inspection distance. It is suitable for automatic testing and can be used on rough surfaces and at elevated temperatures. The conventional Rayleigh wave EMAT using a permanent magnet has the problem of demagnetization above 300°C. So that, a double coil structure Rayleigh wave EMAT is proposed in this paper to allow continuous operation above 300°C. The newly EMAT comprises an electromagnet coil and an eddy current coil. The kA-level milliseconds-duration current passes through the electromagnet coil to provide a quasistatic bias magnetic field for the EMAT transducing process. The inspections using the proposed EMAT have been successfully performed at 400°C.
双线圈结构高温瑞利波电磁声换能器的研制
瑞利波电磁声换能器具有非接触、检测距离远等优点。它适用于自动测试,可用于粗糙表面和高温下。使用永磁体的传统瑞利波EMAT在300°C以上存在退磁问题。因此,本文提出了一种双线圈结构的瑞利波EMAT,可以在300℃以上连续工作。新型电磁感应线圈由一个电磁体线圈和一个涡流线圈组成。ka级毫秒级电流通过电磁线圈,为EMAT换能器过程提供准静态偏置磁场。使用EMAT在400°C下成功地进行了检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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