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Multilayer stag beetle elytra perform better under external loading via non-symmetric bending properties

机译:多层锹形甲虫鞘翅通过非对称弯曲特性在外部载荷下表现更好

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摘要

Insect cuticle has drawn a lot of attention from engineers because of its multifunctional role in the life of insects. Some of these cuticles have an optimal combination of lightweight and good mechanical properties, and have inspired the design of composites with novel microstructures. Among these, beetle elytra have been explored extensively for their multilayered structure, multifunctional roles and mechanical properties. In this study, we investigated the bending properties of elytra by simulating their natural loading condition and comparing it with other loading configurations. Further, we examined the properties of their constitutive bulk layers to understand the contribution of each one to the overall mechanical behaviour. Our results showed that elytra are graded, multilayered composite structures that perform better in natural loading direction in terms of both flexural modulus and strength which is likely an adaptation to withstand loads encountered in the habitat. Experiments are supported by analytical calculations and finite element method modelling, which highlighted the additional role of the relatively stiff external exocuticle and of the flexible thin bottom layer in enhancing flexural mechanical properties. Such studies contribute to the knowledge of the mechanical behaviour of this natural composite material and to the development of novel bioinspired multifunctional composites and for optimized armours.
机译:昆虫角质层由于其在昆虫生活中的多功能作用而引起了工程师的广泛关注。这些表皮中的一些具有轻质性和良好机械性能的最佳组合,并启发了具有新颖微观结构的复合材料的设计。其中,甲壳虫的多层结构,多功能作用和机械性能已被广泛研究。在这项研究中,我们通过模拟elytra的自然加载条件并将其与其他加载配置进行比较,研究了elytra的弯曲特性。此外,我们检查了它们的本构体层的特性,以了解每一层对整体机械性能的贡献。我们的结果表明,鞘翅目是渐变的多层复合结构,在挠曲模量和强度方面在自然载荷方向上表现更好,这很可能适应了栖息地中遇到的载荷。实验得到分析计算和有限元方法建模的支持,它们突出了相对坚硬的外部表皮层和柔性薄底层在增强弯曲机械性能方面的附加作用。这些研究有助于了解这种天然复合材料的机械性能,并有助于开发新型生物启发的多功能复合材料并优化装甲。

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