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Surround stiffness to membrane action in concrete slabs

机译:周围刚度对混凝土板中膜作用的影响

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摘要

Previous attempts to provide a convenient analysis enabling realisation of the very significant benefits of membrane action in concrete slab design have made use of rigid—plastic analysis modified by assuming a linear elastic in-plane perimeter at the mechanism boundary. There are compelling reasons why these methods or any consideration of membrane action in slab design are still not routinely employed in design. There is a lack of information on the value of the appropriate boundary stiffness that may arise from the various slab surroundings in construction. Furthermore, previous tests have generally not confirmed predictions from theories based upon a straightforward in-plane boundary stiffness. The present paper suggests that, where a failure mechanism occurs entirely within the overall slab area, the surrounding slab alone may be considered to provide the membrane boundary restraint. This conveniently requires only the properties of the slab itself and may be regarded as providing a lower bound to membrane enhancement. The paper then shows that an improved representation of edge restraint, which considers the interaction between in-plane and rotational stiffness of the slab, provides much more promising agreement with load-deflection behaviour found in previous tests. Until more information becomes available on the additional influences of various support systems, the new model could form the basis for future design taking advantage of the considerable benefits of membrane action.
机译:以前的尝试提供便利的分析以实现在混凝土板设计中膜作用的非常显着的好处,但这种方法采用了刚体-塑性分析,该分析通过在机构边界处采用线性弹性平面内周长进行了修改。有充分的理由说明为什么这些方法或平板设计中对膜作用的任何考虑仍未在设计中常规使用。缺乏有关适当的边界刚度值的信息,该值可能由建筑中各种平板环境引起。此外,先前的测试通常没有根据基于简单的平面内边界刚度的理论来确认预测。本文提出,当破坏机理完全发生在整个平板区域内时,可以单独考虑周围平板来提供膜边界约束。这方便地仅需要平板本身的特性,并且可以被认为提供了膜增强的下限。然后,论文表明,考虑板坯的平面内和旋转刚度之间的相互作用的边缘约束的改进表示形式,可以更好地与先前测试中发现的载荷-挠曲行为达成一致。直到获得有关各种支撑系统的其他影响的更多信息之前,新模型才能利用膜作用的巨大优势,为将来的设计奠定基础。

著录项

  • 来源
    《Magazine of Concrete Research》 |2007年第2期|p.107-119|共13页
  • 作者

    J. R. Eyre;

  • 作者单位

    Department of Civil and Environmental Engineering, UCL, Gower Street, London WC1E 6BT, UK;

  • 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 水泥工业;
  • 关键词

  • 入库时间 2022-08-18 00:16:53

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