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Application of FTP in flaw detection of rail web

机译:FTP在铁路网探伤中的应用

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In this paper, the author aims to use the Fourier transform profilometry, a three-dimensional non-contact optical measurement method, for recovering the rail profile and defects on the rail web. The deformed fringe pattern, caused by the uneven distribution of the surface's height when a Ronchi grating is projected onto the rail's surface, is captured by the CCD camera and handled by Fourier transform, filtering, Fourier inverse transform and phase unwrapping and then the rail profile can be rebuilt. In phase unwrapping, least square algorithm based on the specific characteristic of the rail is used. Simulation is done to manifest the feasibility of the method. Results of the experiment show that in restoring the rail profile and detecting the rail web's defects, Fourier transform profilometry, compared to some traditional surface detection method, is able to achieve a higher accuracy. It shows a great advantage and also provides a better basis and testing demonstration for the further application of the non-contact optical three-dimension measuring method on the rail. (C) 2014 Elsevier GmbH. All rights reserved.
机译:在本文中,作者旨在使用三维非接触式光学测量方法傅里叶变换轮廓图,以恢复钢轨轮廓和钢轨腹板上的缺陷。当Ronchi光栅投影到轨道表面时,由于表面高度的不均匀分布而导致的变形条纹图案,由CCD相机捕获,并通过傅里叶变换,滤波,傅里叶逆变换和相位展开以及然后的轨道轮廓处理可以重建。在相位展开中,使用基于轨道特定特性的最小二乘算法。通过仿真证明了该方法的可行性。实验结果表明,与某些传统的表面检测方法相比,傅里叶变换轮廓测量法在恢复钢轨轮廓和检测钢轨腹板缺陷方面可以达到更高的精度。它显示了巨大的优势,也为在轨道上进一步应用非接触式光学三维测量方法提供了更好的基础和测试证明。 (C)2014 Elsevier GmbH。版权所有。

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