Determination of the mean relative photoelastic dispersion factor by means of photoelasticity

Karen Ayumi Ueta Utiyama, F. D. C. Menezes, Marcus Vinicius Catarina, Daniel Rodrigues de Sousa, Sidney Leal da Silva
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Abstract

This work proposed to determine the mean dispersion factor, < αC > , which is related to the relative photoelastic dispersion coefficient of a photoelastic material, subjected to consecutive external stresses, by means of a direct computational method associated with error theory. An important feature of photoelasticity, related to the light wavelength, is the photoelastic dispersion coefficient, which is determined in traditional methods by indirect statistical processes, as it depends on refractive indices, which are difficult to determine in photoelastic materials. Therefore, finding an alternative form to determine this coefficient is necessary and can help in the processes that involve the use of photoelasticity. The mean dispersion factor obtained was < αC > = (8,90 ± 0,42) x 10-5, which works as a system calibrator to allow the determination of the photoelastic dispersion coefficient of photoelastic materials by photoelasticity, with greater accuracy.
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用光弹性法测定平均相对光弹性色散系数
本文提出了一种结合误差理论的直接计算方法,确定连续外应力作用下光弹性材料相对光弹性色散系数的平均色散因子< αC >。与光波长有关的光弹性的一个重要特征是光弹性色散系数,在传统方法中,它是通过间接统计过程确定的,因为它依赖于光弹性材料的折射率,而折射率在光弹性材料中很难确定。因此,找到一种替代形式来确定该系数是必要的,并且可以帮助涉及使用光弹性的过程。得到的平均色散系数< αC > =(8,90±0,42)× 10-5,可作为系统校准器,用光弹性法测定光弹性材料的光弹性色散系数,精度较高。
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Editorial - Prof. Vinicius se despede das salas de aula após 29 anos de docência Independência da massa e modelagem newtoniana para a translação de objetos acelerados em cenários de investigação aberta Development of a Model Rocket Trajectory Simulation Tool with Python Experimentos científicos como ferramentas de aprendizagem para o ensino de física Determination of the mean relative photoelastic dispersion factor by means of photoelasticity
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