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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Polarized Image Correlation for Large Deformation Fiber Kinematics
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Polarized Image Correlation for Large Deformation Fiber Kinematics

机译:偏振图像相关性对于大变形纤维运动学

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摘要

The underlying fiber architecture of soft tissues, like bat wing skin, plays an important role in the material's overall mechanical behavior. The mesoscopic birefringent fiber architecture of the bat wing skin can be visualized directly under polarized light. This inherent property is the key to the new experimental technique developed in this work: polarized image correlation (PIC). PIC is a technique for determining full field material strains and fiber kinematics of mesoscopically resolved fibrous tissues during biaxial mechanical testing. Not only is the material birefringence used to determine fiber kinematics under finite deformations, but it is also used for image correlation and strain field computation. Pure translation tests performed with PIC verify the accuracy of the technique. A segmental image processing method was developed to solve an experimental issue of changing birefringent properties to construct accurate continuous deformation profiles. By integrating PIC with traditional digital image correlation, both surface and subsurface data give additional insight into through thickness tissue behavior. The PIC technique is applicable to semi-transparent tissues with birefringent mesosopic structures; incorporation of microscopy would resolve smaller fiber structures. Future work includes extending the techniques to three dimensions to analyze curved surfaces.
机译:软组织的底层纤维架构,像蝙蝠翼皮肤,起着重要的作用材料的整体力学性能。介观双折射光纤的结构蝙蝠翅膀的皮肤可以直接在可视化偏振光。新的实验技术发展的关键在这个工作:偏振图像相关性(图)。图片技术确定完整的领域材料品种和纤维的运动学mesoscopically纤维组织在解决双轴机械测试。双折射材料用于确定纤维运动学有限变形下,但它是也用于图像相关性和应变场计算。与图片验证方法的准确性。节段性开发图像处理方法解决实验问题的改变双折射性质构建准确连续变形配置文件。与传统的数字图像相关图片,表层和次表层的数据给额外的洞察通过厚度组织行为。图片技术适用于半透明组织与双折射mesosopic结构;将解决规模较小的纤维结构。工作包括三个扩展技术维度分析曲面。

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