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Optimal composite structures in the forewings of beetles

机译:甲虫前翅中的最佳复合结构

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摘要

In order to develop optimal biomimetic composite structures, research was conducted on the structural characteristics of Allomyrina dichotoma beetle forewings, with these characteristics to be further expounded upon. From this research, the following results were obtained: (1) It is found that the males, in comparison to females have both lighter and thinner forewings with a lower tensile fracture force, with the biological reasons behind these differences to be discussed later in depth. (2) It was found that densely distributed chitin fibers are located around the void lamination in the endocuticle of the forewing. They were found to have a rectangular cross-section with maximum reinforcement of fiber volume fraction; likewise, there exist sparsely distributed ones on the exocuticle in the Epipleuron tip of the forewing. These are of a circular cross-section, with a protein matrix that provides strong reinforcement. (3) Macroscopically the chitin fibers appear to exist independently of each other. However, this research discovered that, microscopically, the fibers have a reticular structure and through this structure, provide two-dimensional reinforcement to the same lamination of fibers. In comparison to a cloth weaving, it has many advantages, such as being unbendable and lacking concentrated stress points by crossing between the fibers, because they are not weaving cross points with those fibers. Lastly, the schematic structural model of the reticular structures of the fibers was proposed.
机译:为了开发出最佳的仿生复合材料结构,研究了拟南芥(Allomyrina dichotoma)甲虫前爪的结构特征,并对这些特征进行了进一步的阐述。通过这项研究,获得了以下结果:(1)发现,与雌性相比,雄性的前臂轻而薄,拉伸断裂力较低,其生物学原因将在后面进行深入讨论。 。 (2)发现在前突的内表皮中的空隙叠层的周围分布有分布紧密的几丁质纤维。发现它们具有矩形横截面,最大程度地增强了纤维的体积分数。同样,在前爪的Epipleuron尖端的表皮上存在稀疏分布的那些。这些具有圆形横截面,具有可提供强大增强作用的蛋白质基质。 (3)从宏观上看,几丁质纤维似乎彼此独立存在。然而,这项研究发现,在微观上,纤维具有网状结构,并通过这种结构为纤维的同一层压提供二维增强。与织物编织相比,它具有许多优点,例如不可弯曲并且由于纤维之间的交叉而缺乏集中应力点,因为它们不与那些纤维编织交叉点。最后,提出了纤维网状结构的结构示意图。

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