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Application Study of Optical Fiber F-P Sensing System for Non-contact Measurement of Surface Defects

机译:光纤F-P传感系统在非接触式表面缺陷测量中的应用研究

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Laser ultrasound has many advantages such as being non-contact, nondestructive, fast, accurate and low cost. Therefore it is usually used as an effective way to detect and characterize small surface or subsurface breaking cracks. In this paper, the length of Fabry-Perot cavity is obtained based on interference principle of light. An optical fiber F-P interferometer is designed. The contact less type laser ultrasound experimental devices of optical fiber F-P are established for detecting surface defects. The results show that when the locations of the excitation source and the sensor are settled, with the constant length and depth of the rectangle defect, the longer the length of the defect is, the larger the amplitude of the reflected wave is, With the constant length, depth and width of the defect, the amplitude of the reflected wave is the largest when the excitation source is perpendicular to defect, the amplitude lowers gradually with the decreasing of rake angle. Until the excitation source is parallel to the defect. the amplitude is the lowest.
机译:激光超声具有许多优点,例如非接触,无损,快速,准确和低成本。因此,它通常用作检测和表征较小的表面或地下破裂裂纹的有效方法。本文根据光的干涉原理求出法布里-珀罗腔的长度。设计了光纤F-P干涉仪。建立了光纤F-P的非接触式激光超声实验装置,用于检测表面缺陷。结果表明,在确定激励源和传感器的位置时,矩形缺陷的长度和深度恒定,缺陷的长度越长,反射波的幅度越大,缺陷的长度,深度和宽度,当激发源垂直于缺陷时,反射波的振幅最大,随着前角的减小,振幅逐渐减小。直到激发源与缺陷平行为止。幅度是最低的。

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