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Compression properties of metal beetle elytron plates and the elementary unit of the trabecular-honeycomb core structure

机译:金属甲虫Elytron板的压缩性能和小梁蜂窝核心结构的基本单位

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摘要

This paper investigates the mechanical properties of metal beetle elytron plates (a type of biomimetic sandwich structure) and the elementary unit of the trabecular-honeycomb core structure by compression experiments. The following conclusions are drawn: (1) after reaching the compressive strength, the stress-strain curve of the beetle elytron plate contains a yield plateau that advantageously exploits the material strength of metal and its plastic deformation capacity; (2) the elementary unit of the core structure in beetle elytron plates is proposed explicitly based on the trabecular characteristic; and (3) this elementary unit remains relatively unchanged on the constraint condition of the trabecular structure and has high independence and stability when placed under out-of-plane compression. Thus, the yield plateau and variation tendency of the compressive strength after buckling of this elementary unit are highly consistent with that of the entire structure, which provides the basis for further research on the equivalent parameters and equivalent model of the beetle elytron plate and its trabecular-honeycomb core structure.
机译:本文通过压缩实验研究了金属甲虫Elytron平板(一种仿生夹层结构)和小梁蜂窝核心结构的基本单元的力学性能。提出了以下结论:(1)达到抗压强度后,甲虫Elytron板的应力 - 应变曲线含有产量平台,有利地利用金属的材料强度及其塑性变形能力; (2)基于小梁特征,明确地提出了甲虫ILLYTRON板中核心结构的基本单元; (3)该基本单位对小梁结构的约束条件保持相对不变,并且当放置在面外压缩时具有高的独立性和稳定性。因此,在该基本单元的屈曲之后的抗压强度的产量平台和变化趋势与整个结构的高度一致,这为进一步研究甲虫Elytron板的等效参数和等值模型提供了基础,为其进行了速度-honeycomb核心结构。

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