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The remarkable bending properties of perforated plates

机译:穿孔板的显着弯曲性能

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摘要

Motivated by recent experiments on the bending of porous strips towed through a fluid bath, a combined theoretical and experimental study is made of the bending response of perforated plates. The focus is on the practically relevant class of thin plates (with thickness n) made of a homogeneous isotropic material that is perforated with periodic distributions (with unit-cell size e) of monodisperse holes spanning a large range of porosities, from the dilute limit to nearly the percolation threshold. From the theoretical point of view, with the objective of quantifying the roles that the various constitutive and geometric inputs play on the their bending response, the perforated plates are modeled by means of three different approaches: (ⅰ) as 3D structures made of a perforated nonlinear elastic material and as 2D structures made of homogeneous linear elastic materials whose effective properties result from (ⅱ) first taking the limit of dimension reduction (n↘0) and then that of homogenization (ε↘0) and, vice versa, (ⅲ) first taking the limit of homogenization (ε↘0) and then that of dimension reduction (n↘0). From the experimental point of view, laser-engraved molds are utilized to fabricate perforated elastomeric plates with hexagonal distributions of elliptical holes. The resulting perforated plates are then subject to cantilever-bending due to their self weight and their pointwise deformation measured by means of X-ray tomography. Remarkably, counter to the general expectation from available mathematical results for heterogeneous plates at large, the results indicate that the bending response of perforated plates is fairly insensitive to whether the holes are smaller or larger than the plate thickness. Instead, it is dominated by their porosity, while the spatial distribution and shape of the underlying holes only have relatively marginal effects.
机译:最近在通过流体浴牵引的多孔条弯曲的弯曲的实验中的动机,组合的理论和实验研究由穿孔板的弯曲响应制成。焦点在实际相关的薄板(具有厚度n)上由均匀的各向同性材料制成的薄板(厚度为n),其与跨越大范围孔隙率的单分散孔的周期性分布(具有单位 - 细胞尺寸e),从稀释极限上穿孔几乎渗透阈值。从理论的角度来看,目的是量化各个构成和几何输入在其弯曲响应上起作用的作用,穿孔板通过三种不同的方法进行建模:(Ⅰ)作为由穿孔制成的3D结构非线性弹性材料和由2D结构由均匀的线性弹性材料制成,其有效性能由(Ⅱ)首先采用尺寸减少(N↘0)的极限,然后均质化(ε↘0),反之亦然,(Ⅲ )首先采取均质化(εί0)的极限,然后尺寸减少(n↘0)。从实验性的角度来看,激光雕刻模具用于制造具有椭圆形孔的六边形分布的穿孔弹性板。然后,由其自重和通过X射线断层扫描测量的自重和它们的尖变形,将所得穿孔板受到悬臂弯曲。值得注意的是,与大的异质板的可用数学结果相反,结果表明,穿孔板的弯曲响应对孔是否小于或大于板厚度。相反,它以孔隙率占主导地位,而下面的孔的空间分布和形状仅具有相对边缘的效果。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2021年第9期|104514.1-104514.21|共21页
  • 作者单位

    Department of Civil and Environmental Engineering University of Illinois at Urbana-Champaign IL 61801 United States of America;

    Flexible Structures Laboratory Ecole polytechnique Federale de Lausanne Route Cantonale 1015 Lausanne Switzerland;

    Flexible Structures Laboratory Ecole polytechnique Federale de Lausanne Route Cantonale 1015 Lausanne Switzerland;

    Flexible Structures Laboratory Ecole polytechnique Federale de Lausanne Route Cantonale 1015 Lausanne Switzerland;

    Department of Civil and Environmental Engineering University of Illinois at Urbana-Champaign IL 61801 United States of America;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dimension reduction; Homogenization; Kirchhoff-Love plate; Microstructures;

    机译:尺寸减少;均匀化;Kirchhoff-Love Plate;微观结构;
  • 入库时间 2022-08-19 02:26:41

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