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    A Box-Girder Bridge Inspired by Beetle Elytra and the Buckling and Shear Properties of a Trabecular-Honeycomb Steel Web

    Source: Journal of Bridge Engineering:;2022:;Volume ( 027 ):;issue: 005::page 04022031
    Author:
    Xiaoming Zhang
    ,
    Xindi Yu
    ,
    Shengchen Du
    ,
    Jinxiang Chen
    ,
    Yaqin Fu
    DOI: 10.1061/(ASCE)BE.1943-5592.0001855
    Publisher: ASCE
    Abstract: This study proposes a type of bioinspired box-girder bridge with a trabecular-honeycomb steel web (THSW) inspired by beetle elytra (hardened forewings), and the buckling and shear properties of the THSW are investigated via the finite-element method under transverse loading. The results are as follows: (1) When η (the ratio of the trabecular radius to the distance between the center points of two trabeculae) is larger than 0.2, the buckling stability of the THSW is significantly better than that of a conventional corrugated steel web (CSW); however, considering the buckling mode, the achieved increases in the properties, and economic factors, the parameter η is recommended to be 0.2 or 0.25. (2) The stress level in the trabeculae is approximately only half of that in the CSW, but the THSW still bears most of the shear force, which is similar to a CSW bridge. (3) Under a shear load, the THSW is dominated by an S-type shear deformation. Importantly, the corresponding synergistic shear mechanism makes the trabecula and honeycomb wall yield in an obvious sequential order, leading to a significant improvement in the ductility of the structure. These results provide a foundation for further research and applications of this new bioinspired bridge and a solution for improving the buckling and shear performance of conventional CSWs.
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      A Box-Girder Bridge Inspired by Beetle Elytra and the Buckling and Shear Properties of a Trabecular-Honeycomb Steel Web

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    contributor authorXiaoming Zhang
    contributor authorXindi Yu
    contributor authorShengchen Du
    contributor authorJinxiang Chen
    contributor authorYaqin Fu
    date accessioned2022-05-07T20:25:49Z
    date available2022-05-07T20:25:49Z
    date issued2022-5-1
    identifier other(ASCE)BE.1943-5592.0001855.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4282416
    description abstractThis study proposes a type of bioinspired box-girder bridge with a trabecular-honeycomb steel web (THSW) inspired by beetle elytra (hardened forewings), and the buckling and shear properties of the THSW are investigated via the finite-element method under transverse loading. The results are as follows: (1) When η (the ratio of the trabecular radius to the distance between the center points of two trabeculae) is larger than 0.2, the buckling stability of the THSW is significantly better than that of a conventional corrugated steel web (CSW); however, considering the buckling mode, the achieved increases in the properties, and economic factors, the parameter η is recommended to be 0.2 or 0.25. (2) The stress level in the trabeculae is approximately only half of that in the CSW, but the THSW still bears most of the shear force, which is similar to a CSW bridge. (3) Under a shear load, the THSW is dominated by an S-type shear deformation. Importantly, the corresponding synergistic shear mechanism makes the trabecula and honeycomb wall yield in an obvious sequential order, leading to a significant improvement in the ductility of the structure. These results provide a foundation for further research and applications of this new bioinspired bridge and a solution for improving the buckling and shear performance of conventional CSWs.
    publisherASCE
    titleA Box-Girder Bridge Inspired by Beetle Elytra and the Buckling and Shear Properties of a Trabecular-Honeycomb Steel Web
    typeJournal Paper
    journal volume27
    journal issue5
    journal titleJournal of Bridge Engineering
    identifier doi10.1061/(ASCE)BE.1943-5592.0001855
    journal fristpage04022031
    journal lastpage04022031-10
    page10
    treeJournal of Bridge Engineering:;2022:;Volume ( 027 ):;issue: 005
    contenttypeFulltext
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