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首页> 外文期刊>Thin-Walled Structures >Elastic limit load estimation including similarity approach for different end conditioned conical shells with high semi-vertex angle under axial compression
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Elastic limit load estimation including similarity approach for different end conditioned conical shells with high semi-vertex angle under axial compression

机译:弹性极限载荷估算,包括相似的方法,用于在轴向压缩下具有高半顶点角的不同端部条件锥形壳

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摘要

This study investigates the stability loss of thin walled conical shell structures under axial loading. More specifically, conical shells with semi-vertex angle greater than 65 degrees(beta(c) > 65 degrees) and with different bottom edge radial stiffness were studied in order to fill the gap in existing literature. The effects of geometrical parameters of the structure on the load bearing capacity were determined. Conical shell structures with high semi-vertex angle and different boundary conditions display highly non-linear character under axial loading, hence conventional analytical approaches are not adequate to predict the limit load. Therefore, a new method was proposed in this study which can accurately predict the limit load of these structures. The deviation between the proposed method and numerical results was found to be +/- 13%, while it was one order higher (+ similar to 300%) in classical shell theory, based on the configuration. Furthermore, similarity parameters were suggested to increase the range of application of the proposed method. Similarity parameters enable researchers to work with scaled-down models which are capable of simulating the behaviour of real-time-scale models. In addition, the effect of geometrical initial imperfections on the load bearing capacity was investigated and a new reduction coefficient was identified which is much more accurate compared to the overly conservative standard counterpart. A numerical model was developed with COSMOS/M software. This model was validated with experiments, and then was used for the parametric study.
机译:这项研究调查了薄壁圆锥壳结构在轴向载荷下的稳定性损失。更具体地说,为了填补现有文献中的空白,研究了半顶角大于65度(β(c)> 65度)且底边径向刚度不同的圆锥形壳体。确定了结构的几何参数对承载能力的影响。具有高半顶角和不同边界条件的圆锥形壳体结构在轴向载荷下显示出高度的非线性特性,因此常规的分析方法不足以预测极限载荷。因此,本研究提出了一种可以准确预测这些结构的极限载荷的新方法。发现该方法与数值结果之间的偏差为+/- 13%,而在经典壳理论中,基于该配置的偏差则高出一个数量级(+相似于300%)。此外,提出了相似性参数以增加所提出方法的应用范围。相似性参数使研究人员可以使用按比例缩小的模型,该模型能够模拟实时比例模型的行为。此外,还研究了几何初始缺陷对承载能力的影响,并确定了新的折减系数,与过分保守的标准对应物相比,该折减系数更加准确。使用COSMOS / M软件开发了一个数值模型。通过实验验证了该模型,然后将其用于参数研究。

著录项

  • 来源
    《Thin-Walled Structures》 |2020年第4期|106543.1-106543.14|共14页
  • 作者

  • 作者单位

    Eskisehir Tech Univ Vocat Sch Transportat Eskisehir 26470 Turkey;

    Eskisehir Tech Univ Dept Mech Engn Eskisehir 26555 Turkey;

    Univ Pardubice Fac Transport Engn Pardubice 53210 Czech Republic;

  • 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

    Conical shell; Finite element method; Load carrying capacity; Circumferential ring; Axial loading;

    机译:圆锥形外壳有限元法;承载能力;周向环;轴向载荷;

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