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首页> 外文期刊>Metrology and Measurement Systems: Metrologia i Systemy Pomiarowe >Separation of Isochromatics and Isoclinics Phasemaps for the Photoelastic Technique with use Phase Shifting and a Large Number of High Precision Images
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Separation of Isochromatics and Isoclinics Phasemaps for the Photoelastic Technique with use Phase Shifting and a Large Number of High Precision Images

机译:使用相移和大量高精度图像的光弹性技术的等色相和等斜相图的分离

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摘要

Digital photoelasticity is an important optical metrology follow-up for stress and strain analysis using full-field digital photographic images. Advances in digital image processing, data acquisition, procedures for pattern recognition and storage capacity enable the use of the computer-aided technique in automation and facilitate improvement of the digital photoelastic technique. The objective of this research is to find new equations for a novel phase-shifting method in digital photoelasticity. Some innovations are proposed. In terms of phaseshifting, only the analyzer is rotated, and the other equations are deduced by applying a new numerical technique instead of the usual algebraic techniques. This approach can be used to calculate a larger sequence of images. Each image represents a pattern and a measurement of the stresses present in the object. A decrease in the mean errors was obtained by increasing the number of observations. A reduction in the difference between the theoretical and experimental values of stresses was obtained by increasing the number of images in the equations for calculating phase. Every photographic image has errors and random noise, but the uncertainties due to these effects can be reduced with a larger number of observations. The proposed method with many images and high accuracy is a good alternative to the photoelastic techniques.
机译:数字光弹性是使用全场数字摄影图像进行应力和应变分析的重要光学计量学后续手段。数字图像处理,数据采集,模式识别过程和存储容量方面的进步使计算机辅助技术可以在自动化中使用,并有助于改进数字光弹性技术。这项研究的目的是为数字光弹性中的新型相移方法找到新的方程式。提出了一些创新。在相移方面,只有分析仪旋转,而其他方程式是通过应用新的数值技术而不是通常的代数技术来推导的。此方法可用于计算更大的图像序列。每个图像代表对象中存在的应力的模式和度量。通过增加观察次数可以降低平均误差。通过增加用于计算相位的方程式中的图像数量,可以减小应力的理论值与实验值之间的差异。每张照片图像都有误差和随机噪声,但是可以通过大量观察来减少由于这些影响引起的不确定性。所提出的具有许多图像和高精度的方法是光弹性技术的良好替代。

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