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A new real-time polarimetric method for determining the distribution of stressed state in different constructions

机译:一种确定不同结构应力状态分布的实时极化方法

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摘要

A new real-time nondestructive polarimetric method is suggested for the determination of the stressed state distribution in different objects. Light reflected from the object is polarized in a varying degree, and the distribution of the polarization state in the object image is related to the distribution of stresses in it. Method is based on the obtaining the distribution pattern of the polarization state of light in the object image, which is formed by an objective. The integral polarization-holographic diffraction element developed by us is used for real time complete analysis of the polarization state of light at each point of the image, formed by the element in the diffraction orders. The simultaneous measurement of the intensities in four diffracted beams by means of a matrix of photodetectors and the appropriate software enable the polarization state of an analyzable light and its change to be obtained in real time. The laboratory model is presented. The correlation relations between the polarization state of light reflected from the sample with the distribution of the dosated mechanical stresses is considered. The theoretical model is presented. The experimental results are shown for different samples with one- and two-axis stress distribution. The method is nondestructive, i.e. there is no need to drill holes or openings or sticking transparent photoelastic plates on the object to determine the stresses. This method will enable the distance monitoring and diagnosis of already existing constructions to be carried out. This method will differ by universality, simplicity, high speed and comparative cheapness.
机译:提出了一种新的实时无损极化方法,用于确定不同物体的应力状态分布。从物体反射的光以不同程度偏振,并且物体图像中偏振态的分布与其中应力的分布有关。该方法基于获得由物镜形成的物体图像中光的偏振态的分布图案。我们开发的积分偏振全息衍射元件用于实时完整分析图像各点的光的偏振态,该衍射点由该元件形成。借助于光电检测器矩阵和适当的软件同时测量四个衍射光束的强度,可以实时获得可分析光的偏振态及其变化。介绍了实验室模型。考虑从样品反射的光的偏振状态与给定机械应力的分布之间的相关关系。提出了理论模型。显示了具有一轴和两轴应力分布的不同样品的实验结果。该方法是非破坏性的,即不需要在物体上钻洞或开口或将透明的光弹性板粘在物体上来确定应力。该方法将使得能够对已经存在的结构进行距离监视和诊断。这种方法将因通用性,简单性,高速性和相对便宜性而有所不同。

著录项

  • 来源
    《Photonic Instrumentation Engineering II》|2015年|93690U.1-93690U.10|共10页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Laboratory of Holographic Recording and Processing of Information, Institute of Cybernetics of the Georgian Technical Univ., 5 Sandro Euli Str., 0186 Tbilisi, Georgia;

    Laboratory of Holographic Recording and Processing of Information, Institute of Cybernetics of the Georgian Technical Univ., 5 Sandro Euli Str., 0186 Tbilisi, Georgia;

    Abastumani Astrophysical Observatory, Ilia State University, 3/5 Cholokashvili str., 0162 Tbilisi, Georgia;

    Abastumani Astrophysical Observatory, Ilia State University, 3/5 Cholokashvili str., 0162 Tbilisi, Georgia;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stokes parameters; polarization-holographic element; polarimetry; stress state;

    机译:斯托克斯参数;偏振全息元件旋光法压力状态;

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