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受玻璃海绵启发的晶格结构优化。

Optimization of a lattice structure inspired by glass sponge.

机构信息

School of Civil Engineering & Institute of Mechanics and Technology, Xi'an University of Architecture and Technology, Xi'an 710055, People's Republic of China.

出版信息

Bioinspir Biomim. 2022 Nov 16;18(1). doi: 10.1088/1748-3190/ac9fb2.

Abstract

The biomimetic design of engineering structures is based on biological structures with excellent mechanical properties, which are the result of billions of years of evolution. However, current biomimetic structures, such as ordered lattice materials, are still inferior to many biomaterials in terms of structural complexity and mechanical properties. For example, the structure of, a type of deep-sea glass sponge, is an eye-catching source of inspiration for biomimetic design, many researches have introduced similar architecture in cellular solids. However, guided by scientific theory, how to surpass the mechanical properties ofremains an unsolved problem. We proposed the lattice structure which firstly surpass themechanically. The lattice structure of the skeleton ofconsists of vertically, horizontally, and diagonally oriented struts, which provide superior strength and flexural resistance compared with the conventional square lattice structure. Herein, the structure ofwas investigated in detail, and by using the theory of elasticity, a lattice structure inspired by the biomimetic structure was proposed. The mechanical properties of the sponge-inspired lattice structure surpassed the sponge structure under a variety of loading conditions, and the excellent performance of this configuration was verified experimentally. The proposed lattice structure can greatly improve the mechanical properties of engineering structures, and it improves strength without much redundancy of material. This study achieved the first surpassing of the mechanical properties of an existing sponge-mimicking design. This design can be applied to lattice structures, truss systems, and metamaterial cells.

摘要

基于具有优异机械性能的生物结构进行工程结构的仿生设计,这是数十亿年进化的结果。然而,目前的仿生结构,如有序晶格材料,在结构复杂性和机械性能方面仍然不如许多生物材料。例如,深海玻璃海绵的结构是仿生设计引人注目的灵感来源,许多研究已经在多孔固体中引入了类似的结构。然而,在科学理论的指导下,如何超越的机械性能仍然是一个未解决的问题。我们提出的晶格结构首先在机械性能上超越了。的骨架的晶格结构由垂直、水平和对角方向的支柱组成,与传统的方晶格结构相比,它提供了卓越的强度和抗弯曲能力。在此,详细研究了的结构,并利用弹性理论,提出了一种受仿生结构启发的晶格结构。在各种加载条件下,受海绵启发的晶格结构的力学性能都超过了海绵结构,并且通过实验验证了这种结构的优异性能。所提出的晶格结构可以极大地提高工程结构的机械性能,而且在不增加材料冗余的情况下提高强度。本研究首次实现了对现有海绵仿生设计的机械性能的超越。这种设计可以应用于晶格结构、桁架系统和超材料单元。

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