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A Unit Cell Design Guideline Development Method for Meso-Scaled Periodic Cellular Material Structures

机译:中尺度周期性细胞材料结构的晶胞设计指南开发方法

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Much research has been conducted on effective elastic properties of meso-scaled periodic cellular material (MPCM) structures; however, there is only limited research providing guidelines on how to develop improved unit cell (UC) topologies and shapes for a given set of loading requirements and conditions. This paper presents guidelines to improve the shear flexibility of the MPCMs while maintaining the effective shear modules by changing the topology or the shape of a unit cell. The guidelines are intended to use design knowledge for helping engineers by providing recommendations at any stage of the design process. In this paper, the guidelines are developed by changing topology characteristics to achieve a desired effective property of the MPCM structure. The effects of individual members, such as side connection, transverse connection, vertical legs, and curved beams of MPCM structure, when subjected to the in-plane shear loading are investigated through conducting a set of numerical simulation on UCs with similar topology and shape characteristics. Based on the simulation results, the unit cell design guidelines are developed to provide recommendations to engineers on improving the shear flexure of MPCM during the design process. Ultimately, a unit cell design guideline development method is offered and demonstrated by developing two new design guidelines.
机译:已经对中尺度周期性细胞材料(MPCM)结构的有效弹性进行了许多研究。但是,只有有限的研究提供了有关如何针对给定的一组载荷要求和条件开发改进的晶胞(UC)拓扑和形状的指南。本文提出了一些指南,旨在通过更改单元格的拓扑结构或形状来在保持有效剪切模块的同时,提高MPCM的剪切柔韧性。该指南旨在利用设计知识,通过在设计过程的任何阶段提供建议来帮助工程师。在本文中,通过更改拓扑特性来实现MPCM结构的所需有效特性,从而制定了指南。通过对一组具有相似拓扑和形状特征的UC进行一组数值模拟,研究了单个构件(如侧面连接,横向连接,垂直支腿和MPCM结构的弯曲梁)在受到面内剪切载荷时的影响。 。根据仿真结果,制定了晶胞设计指南,以向工程师提供有关在设计过程中改善MPCM的剪切挠曲的建议。最终,通过制定两个新的设计指南,提供并演示了晶胞设计指南的开发方法。

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