外文原文-扭转波在检测圆柱体时磁致伸缩传感器性能受偏置磁场的影响.PDF
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- 外文 原文 扭转 检测 圆柱体 时磁致 伸缩 传感器 性能 偏置 磁场 影响
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1、THE EFFECT OF THE BIAS MAGNETIC FIELD ON THE MAGNETOSTRICTIVE SENSOR PERFORMANCE IN FLEXURAL WAVE-BASED DAMAGE DETECTION IN A CYLINDER Woochul Kim1 and Yoon Young Kim 1Seoul National University,Seoul,South Korea Abstract:Flexural wave measurements for non-destructive evaluation in waveguides have re
2、ceived much attention recently.The main motivation to use dispersive flexural waves is that longitudinal waves employed for non-destructive evaluation often go through mode conversion into flexural waves as in curved regions.The objective of this investigation is to investigate the effect of the sta
3、tic bias magnetic field on the measured output of a magnetostrictive non-contact sensor for flexural waves.Unlike measuring longitudinal waves by the magnetostrictive sensor,the sensor output for flexural wave measurement is affected significantly by the applied bias magnetic field distribution.In t
4、his work,we will consider a few bias magnetic configurations to reject the longitudinal waves but capture only the flexural waves,and investigate their performance through several flexural wave experiments.Specially,we will consider the measurements of flexural waves in cracked solid cylinders in wh
5、ich the flexural waves are generated by ball drops perpendicular to the cylinders.Through these experiments,it will be addressed that small cracks are difficult to diagnose without using an optimal bias magnetic system.The signals measured by the magnetostrictive sensors were analyzed in the time-fr
6、equency plane for accurate damage assessment.Introduction:When time-varying mechanical loads are applied to a ferromagnetic material,the magnetic field distribution within the material changes.This phenomenon is known as the inverse magnetostriction effect or the Villari effect1-2.The magnetostricti
7、ve or magnetomechanical sensor measures elastic strain waves in ferromagnetic materials based on this phenomenon.Other sensors,based on electromechanical or piezoelectric principles may also be used to measure elastic waves,but only the magnetostrictive sensor has the non-contact measurement capabil
8、ity.In addition,the magnetostrictive sensor has a simple configuration:the sensor simply consists of coils surrounding the specimen and one or more bias permanent magnets.The change in the magnetic flux density within the ferromagnetic material is converted to the voltage change in the surrounding c
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