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Static and Modal Analysis of Low Porosity Thin Metallic Auxetic Structures Using Speckle Interferometry and Digital Image Correlation

机译:散斑干涉测量和数字图像相关性低孔隙度薄金属辅助结构的静态和模态分析

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摘要

This study presents an evaluation of the static and dynamic mechanical behavior of low porosity, ductile two-dimensional auxetic metamaterials. The full in-plane displacement fields and the eigenmodes of different geometric structures were investigated and compared with finite element simulations using speckle interferometry and digital image correlation. The results showed strong agreement, validating the theoretical approach used and establishing a method for testing and quantitatively assessing the performance of negative Poisson ratio structures, and metamaterials in general, for different purposes and fields. The findings of this study also increase our knowledge of elastic instabilities in metallic auxetic structures, with further applications in several engineering fields that can benefit from combining the qualities of ductile materials with additional features typical of these smart structures.
机译:本研究提出了对低孔隙率的静态和动态力学行为的评估,延性二维辅助超材料。 研究了不同几何结构的完整面内位移场和不同几何结构的特征模拟,并使用散斑干涉测定法和数字图像相关进行了有限元模拟。 结果表明,验证了使用的理论方法,并建立了用于测试和定量评估负泊松比结构的方法,以及一般来说,以不同的目的和领域。 本研究的调查结果还提高了我们在金属辅助结构中的弹性不稳定性的知识,具有在若干工程领域中的进一步应用,这些领域可以受益于与这些智能结构的典型特征相结合的延性材料的质量。

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