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Reducing the Impact of Electroconductivity and the Gap between the Pipe and the Transducer at Measuring Thickness of Electroconductive Pipe Walls using the Eddy-Current Method

机译:使用涡流法减少在测量导电管壁厚度时导电性和管与换能器之间的间隙的影响

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The paper describes a dual-frequency method for reducing the impact of changes in the gap size between the eddy-current transducer and the pipe, as well as the pipe electrical conductivity on the eddy-current thickness gauge readings. A block-diagram of the dual-frequency eddycurrent thickness gauge is proposed for light-alloy drill pipes. The amplitude and signal phase dependencies on the wall thickness in the range from 6 to 17 mm and the gap in the range from 0 to 13.5 mm were studied, the results are presented. The digital signal processing algorithms based on the piecewise-linear approximation of low-frequency and high-frequency signal phase dependencies on the wall thickness are proposed. It is shown that the proposed correction algorithms can reduce the error caused by variations of electrical conductivity and the gap between the transducer and the pipe.
机译:本文介绍了一种双频方法,用于减少涡流换能器与管道之间的间隙尺寸变化以及管道电导率对涡流厚度计读数的影响。提出了一种用于轻合金钻杆的双频涡流测厚仪的方框图。研究了振幅和信号相位对壁厚在6至17 mm范围内和间隙在0至13.5 mm范围内的依赖性,并给出了结果。提出了一种基于低频和高频信号相位对壁厚的分段线性近似的数字信号处理算法。结果表明,所提出的校正算法可以减少由于电导率变化以及换能器与管道之间的间隙引起的误差。

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