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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Beetle forewings: Epitome of the optimal design for lightweight composite materials
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Beetle forewings: Epitome of the optimal design for lightweight composite materials

机译:甲虫前兆:轻量化复合材料最佳设计的缩影

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摘要

Based on studies of the forewings of two beetles, Allomyrina dichotoma and Prosopocoilus inclinatus, this paper reviews and identifies the potential benefits of studying the structure of the beetle forewing and the associated development of lightweight biomimetic composite materials. The forewings of both beetle species consist of an integrated border frame structure and a large center part with distributed trabecular supports in the hollow core. The forewings of the male A dichotoma are constructed to reflect a lightweight honeycomb design. However, the forewings of P. inclinatus are a durable structure. The biological significance of these structures is also discussed. This work proposes an integrated honeycomb structure inspired by the beetle forewing. A series of biological models are also proposed for lightweight integrated honeycomb structures and durable sandwich structures with a trabecular core, which are intended to establish a new direction in the development of biomimetic composite materials.
机译:基于对两个甲虫Allomyrina dichotoma和Prosopocoilus inclinatus的前爪的研究,本文回顾并确定了研究甲虫前爪的结构及其与轻质仿生复合材料相关的开发的潜在益处。两种甲虫的前爪都由一个完整的边框框架结构和一个较大的中心部分组成,空心部分中分布有小梁支撑。雄性二叉瘤的前爪构造为反映出轻巧的蜂窝状设计。但是,P。inclinatus的前爪是一种耐用的结构。还讨论了这些结构的生物学意义。这项工作提出了一个完整的蜂窝结构,其灵感来自于甲虫的前爪。还提出了一系列针对轻型集成蜂窝结构和具有小梁芯的耐用三明治结构的生物学模型,旨在为仿生复合材料的发展建立新的方向。

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