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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Analysis of microstructure characteristics and mechanical properties of beetle forewings, Allomyrina dichotoma
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Analysis of microstructure characteristics and mechanical properties of beetle forewings, Allomyrina dichotoma

机译:甲虫前翅的微观结构特征和机械性能分析,甲状腺二甲瘤

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摘要

In this study, the internal microstructure of the forewings of Allomyrina dichotoma is investigated by scanning electron microscopy (SEM) analysis. The results of SEM test show that the inner microstructure of the forewings possesses an integrated sandwich-like plate supported by trabeculae, which is composed of upper and lower skins of unequal thicknesses, and a honeycomb core with trabeculae. Beetle forewing is a natural composite material composed of chitin fibres and proteins. Also, based on the micro dimensions of the forewings observed by SEM, two groups of micro finite element (FE) models of the forewings (i.e., core with trabeculae and core without trabeculae) are established to compare and comprehensively understand the effect of trabeculae on the mechanical properties of the forewings. The FE simulation results demonstrate that the trabeculae could effectively (1) improve the stress state on the upper skin, lower skin, and core layer of the forewings, (2) improve the overall bending stiffness of the forewings, (3) enhance the peeling resistance between the skins and core layer, and (4) improve the buckling strength of the thin-walled core layer. The unique forewing structure of the Allomyrina dichotoma can provide an excellent bionic model for optimizing the traditional honeycomb panel structure.
机译:在该研究中,通过扫描电子显微镜(SEM)分析研究了异瘤二米肌瘤的前翅的内部微观结构。 SEM测试的结果表明,前部的内部微观结构具有由小梁支撑的一体的夹层状板,其由不等厚度的上下皮和下皮和蜂窝芯构成,具有三大细胞。甲虫前翅是由几丁酸纤维和蛋白质组成的天然复合材料。此外,基于由SEM观察到的前翅的微尺寸,建立了两组微型有限元(Fe)模型(即,没有小梁和没有小梁的核心的核心),以比较和全面地了解Trabeculae对的影响前翅的机械性能。 Fe模拟结果表明,小梁可以有效地(1)改善上皮,下皮肤和核心层上的应力状态,(2)改善前翅的总弯曲刚度,(3)增强剥离皮肤和芯层之间的电阻,(4)提高薄壁芯层的屈曲强度。丙莫里纳二均斑瘤的独特工具结构可以提供优异的仿生模型,可优化传统的蜂窝面板结构。

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