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On the accurate analysis of linear elastic meta-material properties for use in design optimization problems

机译:关于用于设计优化问题的线性弹性超材料的精确分析

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In the field of meta-materials engineering, asymptotic homogenization has proven to be a valuable tool to estimate material properties for many different design needs. Homogenization is used in the design of an object to tie the global material properties to the local material microstructure of the meta-material. The governing equations of the theory are derived from a small-parameter expansion that assumes the scaling length of the unit cell, the smallest repeatable structure found in the material, is much smaller than the entire material length scale. However, for those design problems that do not meet this scaling requirement, the meta-material properties given by homogenization may be inaccurate, leading to error in the material design process. To demonstrate some of these limitations, the more general set of macroscopic analyses derived from the average stress and average strain theorems are applied to several designs in which the assumptions of homogenization theory are no longer valid, those chiefly being materials made of a single or a few layers of unit cells. Then, by applying both materials analyses to simple design problems, the necessity of using a meta-material design method to link global and local properties in a manner consistent with global design methods is demonstrated. In particular, the use of homogenization in designing single layer materials is shown to incur a very large error in the design process, whereas the averaging method is much more accurate.
机译:在超材料工程领域,渐近均匀化已被证明是评估许多不同设计需求的材料特性的有价值的工具。均质化用于对象设计中,以将整体材料属性与超材料的局部材料微观结构联系起来。该理论的控制方程式是从一个小参数展开中得出的,该展开假设单位晶格的标度长度(材料中最小的可重复结构)比整个材料长度标度小得多。但是,对于那些不符合此缩放要求的设计问题,通过均质化提供的超材料特性可能不准确,从而导致材料设计过程中出现错误。为了证明其中的某些局限性,从平均应力和平均应变定理得出的更广泛的宏观分析组被应用于几种设计,在这些设计中,均质化理论的假设不再成立,主要是由单一材料或材料制成的材料。几层晶胞。然后,通过将两种材料分析应用于简单的设计问题,证明了使用超材料设计方法以与全局设计方法一致的方式链接全局和局部特性的必要性。特别是,在设计单层材料时使用均质化会在设计过程中产生很大的误差,而平均法则要精确得多。

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