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Development of a Hybrid Method of Reflection Photoelasticity for Crack Problems in Anisotropic Plates

机译:各向异性板裂纹问题的反射光弹性混合方法的发展

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Reflection type photoelastic experiment can be used more effectively than a transmission type photoelastic experiment especially in industrial fields. Moreover, composite materials have been widely used in engineering applications and structures because of their outstanding advantages which individual isotropic components do not have. The development of these materials requires a promising technique such as reflection photoelasticity to analyze their behaviors in service. Unfortunately, there are few experimental studies based on this technique. Therefore, a hybrid method based on this technique was developed in this research to analyze the fracture behavior of opaque anisotropic materials. The application of this method will help to understand the fracture behaviors of anisotropic materials used in engineering components and structures. The validity of this method was verified by comparison of the results obtained from this method with ones obtained from the hybrid methods for isotropic material on the same isotropic specimen. The reflection type photoelastic experiment for orthotropic materials was then applied to orthotropic plates with a central crack of various inclination angles. Using this hybrid method for anisotropic materials, stress intensity factors and separated stress components were obtained at the vicinity of the crack-tip in orthotropic plates from only the isochromatic fringe patterns of the isotropic coating material.
机译:反射型光弹性实验可以比透射型光弹性实验更有效地使用,尤其是在工业领域。而且,复合材料由于其各向同性组件所没有的突出优点而被广泛用于工程应用和结构中。这些材料的开发需要一种很有前途的技术,例如反射光弹性,以分析其在使用中的行为。不幸的是,很少有基于这种技术的实验研究。因此,本研究开发了一种基于该技术的混合方法来分析不透明各向异性材料的断裂行为。该方法的应用将有助于了解用于工程构件和结构的各向异性材料的断裂行为。通过比较从该方法获得的结果与从同向材料上各向同性材料的混合方法获得的结果进行比较,验证了该方法的有效性。然后将正交异性材料的反射型光弹性实验应用于中心倾角不同的正交异性板。使用这种用于各向异性材料的混合方法,仅从各向同性涂料的等色条纹图案中,就可以在正交各向异性板的裂纹尖端附近获得应力强度因子和分离的应力分量。

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