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首页> 外文期刊>Journal of Materials Research >Biomimetic systems and design in the 3D characterization of the complex vascular system of bamboo node based on X-ray microtomography and finite element analysis
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Biomimetic systems and design in the 3D characterization of the complex vascular system of bamboo node based on X-ray microtomography and finite element analysis

机译:基于X射线微观图谱的竹节血管系统3D表征仿生体系和设计与有限元分析

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摘要

Bamboo is a natural composite and one of the most efficient structures in nature because of the relationship of mechanical properties with its microstructural features. This research presents the 3D characterization of the reinforcement bundles of a branching nodal region of bamboo, through high-resolution X-ray microtomography (μCT). μCT was used to characterize a sample regarding the volume, relative density, and porosity of parenchyma and sclerenchyma tissues, and the resulting data were used to estimate their constitutive properties. A nonlinear finite element analysis (FEA) was performed based on a discretized model of the μCT to the limiting compressive load. Secondary bundles presented an interweaved arrangement into the primary vascular elements that distribute axial compressive stresses into new branches. Our findings suggest that the foam-like behavior of the parenchyma, the sclerenchyma thickening above the nodal zone, and the nodal vascular branching are ways for bamboo to protect important tissues from mechanical stress by allocating axial loads. In addition, such mechanism could be applied in the design of biomimetic structures with selective load-bearing capabilities.
机译:竹是一种天然复合材料,是由于机械性能与其微观结构特征的关系的自然界中最有效的结构之一。该研究通过高分辨率X射线微观图(μCT)介绍了竹子的分支节节区域的加强束的3D表征。 μct用于表征关于副类和硬化组织的体积,相对密度和孔隙率的样品,并且所得到的数据用于估计它们的组成性性质。基于μct的离散模型进行非线性有限元分析(FEA),以限制压缩载荷。辅助束将相互缠绕的布置呈现为主要血管元件,其将轴向压缩应力分配到新的分支中。我们的研究结果表明,实质的泡沫状行为,节点区域上方的硬化血管分支,以及节点血管支化是通过分配轴向载荷来保护来自机械应力的重要组织的方式。此外,这种机构可以应用于具有选择性承载能力的仿生结构的设计中。

著录项

  • 来源
    《Journal of Materials Research》 |2020年第8期|842-854|共13页
  • 作者单位

    Graduate Program in Design-PGDesign Federal University of Rio Grande do Sul-UFRGS Porto Alegre RS 90035-190 Brazil;

    Laboratory of Plant Anatomy-LAVeg Department of Botany-UFRGS Institute of Biosciences Porto Alegre RS 91540-000 Brazil and Graduate Program in Botany Institute of Biosciences-UFRGS Porto Alegre RS 91540-000 Brazil;

    Graduate Program in Design-PGDesign Federal University of Rio Grande do Sul-UFRGS Porto Alegre RS 90035-190 Brazil and Department of Materials-DEMAT Federal University of Rio Grande do Sul-UFRGS Porto Alegre RS 90035-190 Brazil;

    Department of Chemical and Materials Engineering-DEQM Pontifical Catholic University of Rio de Janeiro-PUC-Rio Rio de Janeiro RJ 22453-900 Brazil;

    Laboratory of Plant Anatomy-LAVeg Department of Botany-Federal University of Rio Grande do Sul-UFRGS Institute of Biosciences Porto Alegre RS 91540-000 Brazil;

    Graduate Program in Design-PGDesign Federal University of Rio Grande do Sul-UFRGS Porto Alegre RS 90035-190 Brazil and Department of Design and Graphic Expression-DEG Federal University of Rio Grande do Sul-UFRGS Porto Alegre RS 90035-190 Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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