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High temperature thickness measurements of stainless steel and low carbon steel using electromagnetic acoustic transducers

机译:使用电磁声换能器测量不锈钢和低碳钢的高温厚度

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Thickness measurements were made on steel pipe at high temperatures using a non-contact water-cooled EMAT (electromagnetic acoustic transducer) and also a laser-EMAT system where a portable Nd: YAG laser with a fibre optic cable was used to generate ultrasound on a sample, and a water-cooled coil-wound EMAT used to detect ultrasound. The set-up was designed so that the laser was fired through a hole in the centre of the EMAT, and a low pass 5 MHz filter employed to reduce the plasma noise. Back wall reflections were clearly visible at temperatures up to 900 ℃ on stainless and ferromagnetic low carbon steel, enabling wall thickness to be measured, taking into account thermal expansion of the sample. The water-cooled EMAT system can measure wall thickness on ferromagnetic low carbon steel at temperatures up to the Curie point; here, ultrasound generation is dependent on the magnetic state of the steel.
机译:使用非接触式水冷EMAT(电磁声换能器)以及激光EMAT系统在高温下在钢管上进行厚度测量,在该系统中,便携式Nd:YAG激光和光纤电缆用于在管道上产生超声样品,以及用于检测超声波的水冷线圈绕制EMAT。设计该装置的目的是使激光通过EMAT中心的一个孔发射,并采用5 MHz低通滤波器来减少等离子体噪声。在不超过900℃的温度下,不锈钢和铁磁低碳钢的后壁反射清晰可见,考虑到样品的热膨胀,可以测量壁厚。水冷式EMAT系统可以在高达居里点的温度下测量铁磁低碳钢的壁厚;在此,超声波的产生取决于钢的磁性状态。

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