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Design of a bionic aviation material based on the microstructure of beetle's elytra

机译:基于甲虫鞘翅微结构的仿生航空材料设计

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摘要

Because almost all adult insects can fly, their cuticles must have a low mass and high efficiency that is enabled by a delicate and complicated micro-anostructure. These structures provide useful bionic design templates for new, advanced composite materials. We implemented this idea in the present research to design bionic aviation materials. Here, we propose a bionic columnar and laminate (BCL) model for aircraft skin. For a comparative study, equal-quality (EQ) and equal-thickness (ET) models were established. Mechanics, heat transfer, and thermal-structure coupling analyses and optimization designs for these models were performed using ANSYS Workbench. The mechanical analysis included compression, shear and three-point bending studies. The heat transfer analysis included two types of working conditions, cruising and landing, and optimization parameters for the material design were determined: the extension length of the columnar structure was 6.26 mm, the chamfer radius was 3.08 mm, the number of columnar structures was 6, and the diameter of the columnar structures was 17.90 mm. The results of this research will provide guidance for developing advanced bionic composite aviation materials.
机译:因为几乎所有成年昆虫都可以飞翔,所以它们的表皮必须具有低质量和高效率,这要归功于精致而复杂的微/纳米结构。这些结构为新型高级复合材料提供了有用的仿生设计模板。我们在本研究中实现了这一想法,以设计仿生航空材料。在这里,我们提出了一种用于飞机蒙皮的仿生圆柱和层压板(BCL)模型。为了进行比较研究,建立了等质量(EQ)和等厚度(ET)模型。使用ANSYS Workbench对这些模型进行了力学,传热和热结构耦合分析以及优化设计。力学分析包括压缩,剪切和三点弯曲研究。传热分析包括巡航和着陆两种工作条件,确定了材料设计的优化参数:柱状结构的延伸长度为6.26mm,倒角半径为3.08mm,柱状结构的数量为6 ,柱状结构的直径为17.90mm。这项研究的结果将为开发先进的仿生复合航空材料提供指导。

著录项

  • 来源
  • 作者单位

    Key Laboratory of Bionic Engineering, (Ministry of Education), Jilin University, Changchun, China;

    Key Laboratory of Bionic Engineering, (Ministry of Education), Jilin University, Changchun, China;

    Key Laboratory of Bionic Engineering, (Ministry of Education), Jilin University, Changchun, China;

    Key Laboratory of Bionic Engineering, (Ministry of Education), Jilin University, Changchun, China,Collaborative Innovation Center of Grain Production Capacity Improvement in Heilongjiang Province, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aviation material; Bionic design; Elytra; FEM analysis; Optimization design;

    机译:航空材料;仿生设计;鞘翅有限元分析;优化设计;

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