A new processing algorithm for photoelasticity method data

IF 0.3 Q4 MECHANICS
Aleksey V. Likhachev, M. Tabanyukhova
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引用次数: 0

Abstract

The photoelasticity method is a reliable tool for studying the stress state of flat elements in building structures using the models made of optically sensitive materials. In this paper, the classical photoelasticity is considered. The experimental data obtained with the use of the method are presented as interferograms. A decoding procedure implies the obtaining of some normal and tangential stress values in the plane of the model. The polarization-projection installations that are used in optical methods are rather simple. However, the digital processing of the images obtained during the loaded model transmission requires high-intelligent software. Nowadays, national and international laboratories, working with polarization-optical methods, strive to develop digital photoelasticity. For some reasons, the authors of the presented work needed to develop their own algorithms for decoding experimental data of the photoelasticity method. This work is mainly devoted to a formulation of the problems to be solved. Some of them have already been solved, and the results obtained are presented here. The authors place special emphasis on the description of the algorithm for tracing of interference fringes based on the analysis of the image gradient.
一种新的光弹性方法数据处理算法
光弹性法是利用光敏材料模型研究建筑结构中平面单元应力状态的可靠工具。本文考虑了经典的光弹性。用该方法得到的实验数据以干涉图的形式表示。解码过程意味着在模型平面上获得一些法向和切向应力值。光学方法中使用的偏振投影装置相当简单。然而,对加载模型传输过程中获得的图像进行数字化处理需要高智能的软件。目前,国内外实验室都在利用偏振光的方法,努力发展数字光弹性。由于某些原因,本文的作者需要开发自己的算法来解码光弹性方法的实验数据。这项工作主要是对所要解决的问题进行阐述。其中一些问题已经得到了解决,本文给出了得到的结果。重点介绍了基于图像梯度分析的干涉条纹跟踪算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
66.70%
发文量
0
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