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Theories and industrial applications of optical interferometric NDT techniques: A review

机译:光学干涉无损检测技术的理论与工业应用综述

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Optical techniques are based on the development of laser, imaging sensors and computer technologies with a view to providing full-field and non-contacting measurement of surface profiles and deformations. They are categorised in three groups: moire, holography and speckle-based techniques. These optical techniques have been used in material characterisation, defects detection, strain measurement, design verification/optimisation, residual stress evaluation, vibration analysis and 3D shape measurement. In this paper, the principles of these techniques are overviewed first, their advantages and disadvantages highlighted. Compared to other non-destructive testing techniques, optical techniques reveal defects in an object by assessing the response of surface deformation to defects under stressing, which is closely correlated with the strength and integrity of the object. Not only the modes of defects could be determined, the strains and stresses field associated with these modes could be quantified as well. Therefore, optical techniques have attracted increasing interest from the NDT community in the past decade, and have been applied to a range of industrial sectors to meet the demanding nondestructive testing of various engineering components and structures.
机译:光学技术基于激光,成像传感器和计算机技术的发展,旨在提供表面轮廓和变形的全场和非接触式测量。它们分为三类:波纹,全息术和基于斑点的技术。这些光学技术已用于材料表征,缺陷检测,应变测量,设计验证/优化,残余应力评估,振动分析和3D形状测量。在本文中,首先概述了这些技术的原理,并重点介绍了它们的优缺点。与其他非破坏性测试技术相比,光学技术通过评估应力作用下表面变形对缺陷的响应来揭示物体中的缺陷,应力与物体的强度和完整性密切相关。不仅可以确定缺陷的模式,还可以量化与这些模式相关的应变和应力场。因此,在过去的十年中,光学技术已经引起了NDT界的越来越多的关注,并且已经应用​​于各种工业领域,以满足对各种工程组件和结构进行无损检测的要求。

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