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Review of beetle forewing structures and their biomimetic applications in China: (Ⅰ) On the structural colors and the vertical and horizontal cross-sectional structures

机译:甲虫前突结构及其在仿生中的应用研究述评:(一)结构颜色及纵横截面结构

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摘要

This paper discusses the progress made in China in terms of the structural colors, microstructure and mechanical properties of the beetle forewing. 1) The forewing microstructures can be classified into six phases, the first three of which are characterized by sandwich, multilayer and fiber layer structures, respectively. The fracture behaviors resulting from these three phases suggest that different scale microstructures or coupled adjacent scale micro-structures can determine the macroscopic mechanical behavior of the forewing. 2) The forewing colors are derived from three features: regulation of the structural parameters of the internal optical structures, i.e., a sculpted multilayer composite two-dimensional nanopillar structure grating system; scattering on the three-dimensional surface of the bowl-shaped structure; and reversible color changes due to changes in the physical microstructure of fluffs. Their formation mechanisms were clarified, and fibers with ecological biomimetic structural colors have been developed. 3) Beetles exhibit a lightweight sectional frame structure with a trabecular core structure. Both of the joints on the left and right are concave-convex butt-joint structures with burrs, which provide an efficient docking mechanism with high intensity. The forewing of dichotoma exhibits a non-equiangular layered structure, which results in anisotropy in its tensile strength. Finally, the authors propose potential new research directions for the next 20 years.
机译:本文从甲虫前爪的结构颜色,微观结构和力学性能方面探讨了中国取得的进展。 1)预缩微结构可分为六个阶段,前三个阶段分别以夹层,多层和纤维层结构为特征。由这三个阶段产生的断裂行为表明,不同尺度的微观结构或耦合的相邻尺度的微观结构可以确定前爪的宏观力学行为。 2)预告色来自三个特征:调节内部光学结构的结构参数,即,雕刻的多层复合二维纳米柱结构光栅系统;在碗状结构的三维表面上散射;以及由于绒毛的物理微观结构的变化而导致的可逆颜色变化。阐明了它们的形成机理,并开发了具有生态仿生结构颜色的纤维。 3)甲虫表现出具有小梁核心结构的轻型截面框架结构。左右两个关节都是带有毛刺的凹凸对接结构,可提供高强度的有效对接机制。双歧瘤的前爪表现出非等角层状结构,这导致其抗张强度各向异性。最后,作者提出了未来20年潜在的新研究方向。

著录项

  • 来源
    《Materials science & engineering》 |2015年第10期|605-619|共15页
  • 作者单位

    School of Civil Engineering & International Institute for Urban Systems Engineering Southeast University, Nanjing 210096, China;

    School of Civil Engineering & International Institute for Urban Systems Engineering Southeast University, Nanjing 210096, China;

    School of Civil Engineering & International Institute for Urban Systems Engineering Southeast University, Nanjing 210096, China;

    School of Civil Engineering & International Institute for Urban Systems Engineering Southeast University, Nanjing 210096, China;

    Department of Mechanical Engineering Graduate School & Faculty of Engineering Chiba University, Chiba 263-8522, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Beetle forewing; Structural color; Biomimetic material; Advanced material; Anisotropy;

    机译:甲虫前爪结构颜色;仿生材料;先进的材料;各向异性;

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