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首页> 外文期刊>Composites >Quasi-static crushing behavior of novel re-entrant circular auxetic honeycombs
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Quasi-static crushing behavior of novel re-entrant circular auxetic honeycombs

机译:新型重新参加者圆形扶持性蜂窝的准静态粉碎行为

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摘要

Honeycombs with re-entrant (RE) unit cells were found to have negative Poisson's ratios (NPRs) and enhanced energy absorption capabilities than regular hexagon honeycombs. For further improved energy absorption capacity, a novel re-entrant circular (REC) honeycomb configuration is proposed in this work by replacing the sloped cell wall of the regular re-entrant honeycomb with double circular arc cell walls, which can dissipate extra energy due to more formed plastic angles during the crushing process. The in-plane quasi-static crushing response of the REC honeycomb with large deformation was investigated theoretically and numerically. The numerical modeling methods in LS-DYNA software were validated by using the quasi-static crush test data of 3D-printed REC honeycomb specimens. Experiment and numerical simulations both revealed that quasi-static load can result in an "X" mode deformation of the REC honeycomb. Based on the simulated deformation profiles of the representative unit, theoretical models were derived to predict the REC honeycomb's crushing strength, i.e. plateau stress. Good agreements were found between the theoretical and the numerical results within a relative error about 9%. Parametric analyses further showed that the unit cell configuration has a great effect on the crushing strength of the REC honeycomb. The REC honeycomb presents a varied Poisson's ratio with the global strain of the honeycomb; smaller radius to height ratio and length to height ratio were found to yield more pronounced NPR effect. Moreover, compared with the regular RE honeycomb, the specific energy absorption of the REC honeycomb is much higher due to the introduction of the double circular arc cell walls.
机译:发现具有再参赛者(RE)单元细胞的蜂窝状细胞具有负泊松比率(NPRS)和增强的能量吸收能力,而不是普六边形蜂窝状。为了进一步提高能量吸收能力,通过用双圆弧形电池壁替换规则再参与者蜂窝壁的倾斜电池壁,在这项工作中提出了一种新的再参赛圆形(REC)蜂窝结构,这可能会导致额外的能量消失在破碎过程中更具形成的塑性角度。理论上和数值研究具有大变形具有大变形的BEC蜂窝的面内静态粉碎响应。通过使用3D打印的REC蜂窝样品的准静态压碎测试数据来验证LS-DYNA软件中的数值建模方法。实验和数值模拟均显示出准静电负载可能导致官方蜂窝的“X”模式变形。基于代表单元的模拟变形轮廓,得到理论模型,以预测Rec蜂窝的破碎强度,即高原胁迫。在约9%的相对误差范围内,在理论和数值结果之间发现了良好的协议。参数分析进一步表明,单元电池配置对Rec蜂窝的破碎强度具有很大的影响。 Rec Honeycomb与蜂窝状的全球菌株呈现出各种各样的泊松比;发现较小的半径和高度比和高度比的长度,得到更明显的NPR效果。此外,与常规RE蜂窝相比,由于引入双圆弧形电池壁,REC蜂窝的具体能量吸收要高得多。

著录项

  • 来源
    《Composites》 |2020年第15期|108117.1-108117.12|共12页
  • 作者单位

    Dalian Univ Technol Sch Automot Engn State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China;

    Dalian Univ Technol Sch Automot Engn State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China;

    Univ Wollongong Ctr Infrastruct Protect & Min Safety Wollongong NSW 2522 Australia;

    Dalian Univ Technol Sch Automot Engn State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China;

    Ansteel Grp Beijing Res Inst Co Ltd Beijing 102211 Peoples R China;

    Ansteel Grp Beijing Res Inst Co Ltd Beijing 102211 Peoples R China;

    Ansteel Grp Iron & Steel Res Inst Anshan 114021 Peoples R China;

    Dalian Univ Technol Sch Automot Engn State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China;

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

    Auxetic; Re-entrant circular honeycomb; Negative Poisson's ratio; Crushing response; Energy absorption;

    机译:辅助;重新参加圆形蜂窝;负泊松比例;破碎响应;能量吸收;

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