In-plane dynamic crushing response of re-entrant trichiral honeycomb
编号:323 访问权限:仅限参会人 更新:2021-12-03 10:18:50 浏览:45次 张贴报告

报告开始:2021年12月17日 08:48(Asia/Shanghai)

报告时间:1min

所在会场:[P1] Poster2020 [P1T3] Track 3 Vehicle Operation Engineering and Transportation Management

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摘要
To improve the in-plane impact resistance of trichiral structures, a re-entrant trichiral structure (RTH) was constructed by adding re-entrant structure into trichiral honeycomb (TH). The deformation modes, energy-absorbing capacity, and auxetic performances of RTH under different impact velocities were studied by using the commercial software LS-dyna. Furthermore, based on the concept of the energy absorption efficiency method, the plateau strain εp of the RTH can be determined. The results show that re-entrant structure can enhance the localized "necking" deformation of TH under medium- and low-velocity impact, and a "\" -shape deformation mode appears during the entire collapse process. Furthermore, it is found that the stress-strain curves can be divided into two stages: the plateau region and stress increasing region. The plateau strain εp and densification strain εd are gradually increased with crushing velocity. Compared with the TH, the RTH has better energy absorption capacity and auxetic performances, especially under medium- and low-velocity crushing modes. In detail, the specific energy absorption of RTH is 61.16% higher than that of TH under low-velocity impact and 58.9% higher under medium-velocity impact. This study is expected to provide a novel path for the design of hybrid deformation mechanism auxetic honeycombs.
关键词
CICTP
报告人
Lulu Wei
Chang'an university

稿件作者
Lulu Wei Chang'an university
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重要日期
  • 会议日期

    12月17日

    2021

    12月20日

    2021

  • 12月16日 2021

    报告提交截止日期

  • 12月24日 2021

    注册截止日期

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Chinese Overseas Transportation Association
Chang'an University
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