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The pore-load modulus of ordered nanoporous materials with surface effects

机译:具有表面效应的有序纳米多孔材料的孔载荷模量

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Gas and liquid adsorption-induced deformation of ordered porous materials is an important physical phenomenon with a wide range of applications. In general, the deformation can be characterized by the pore-load modulus and, when the pore size reduces to nanoscale, it is affected by surface effects and shows prominent size-dependent features. In this Letter, the influence of surface effects on the elastic properties of ordered nanoporous materials with internal pressure is accounted for in a single pore model. A porosity and surface elastic constants dependent closed form solution for the size dependent pore-load modulus is obtained and verified by finite element simulations and available experimental results. In addition, it is found to depend on the geometrical arrangement of pores. This study provides an efficient tool to analyze the surface effects on the elastic response of ordered nanoporous materials.
机译:气体和液体吸附引起的有序多孔材料变形是一种重要的物理现象,具有广泛的应用范围。通常,变形可以通过孔隙载荷模量来表征,当孔径减小到纳米级时,变形会受到表面效应的影响,并显示出明显的尺寸依赖性。在这封信中,在单孔模型中说明了表面效应对有序纳米多孔材料内部压力的弹性的影响。获得了与孔隙率和表面弹性常数相关的封闭形式的溶液,用于尺寸相关的孔隙载荷模量,并通过有限元模拟和可用的实验结果进行了验证。另外,发现其取决于孔的几何布置。这项研究提供了一种有效的工具来分析有序纳米多孔材料对弹性响应的表面影响。

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