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Asymptotic homogenization model for 3D grid-reinforced composite structures with generally orthotropic reinforcements

机译:具有正交异性加筋的3D网格增强复合结构的渐近均质化模型

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摘要

The asymptotic homogenization method is used to develop a comprehensive micromechanical model pertaining to three-dimensional composite struc ures with an embedded periodic grid of generally ortho-tropic reinforcements. The model developed transforms the original boundary-value problem into a simpler one characterized by some effective elastic coefficients. These effective coefficients are shown to depend only on the geometric and material parameters of the unit cell and are free from the periodicity complications that characterize their original material counterparts. As a consequence they can be used to study a wide variety of boundary-value problems associated with the composite of a given microstruc-ture. The developed model is applied to different examples of orthotropic composite structures with cubic, conical and diagonal reinforcement orientations. It is shown in these examples that the model allows for complete flexibility in designing a grid-reinforced composite structure with desirable elastic coefficients to conform to any engineering application by changing some material and/or geometric parameter of interest. It is also shown in this work that in the limiting particular case of 2D grid-reinforced structure with isotropic reinforcements our results converge to the earlier published results.
机译:渐近均质化方法用于开发与三维复合结构有关的全面微机械模型,该结构具有通常正交各向异性的增强材料的嵌入式周期网格。所开发的模型将原始的边值问题转换为一个具有一些有效弹性系数的简单问题。这些有效系数显示仅取决于晶胞的几何和材料参数,并且没有表征其原始材料对应物的周期性复杂性。因此,它们可用于研究与给定微结构的复合材料相关的各种边界值问题。所开发的模型应用于具有立方体,圆锥形和对角线加固方向的正交异性复合结构的不同示例。在这些示例中显示,该模型在设计具有所需弹性系数的网格增强复合结构时具有完全的灵活性,从而可以通过更改某些材料和/或几何参数来符合任何工程应用。在这项工作中还表明,在具有各向同性增强的2D网格增强结构的特殊限制情况下,我们的结果收敛于较早发表的结果。

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