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Approach for reinforcement design in reinforced concrete structures based on 3-dimensional stress field

机译:基于三维应力场的钢筋混凝土结构配筋设计方法

摘要

This paper explores an approach for the design of reinforced concrete structures based on 3-dimensional (3-D) stress fields instead of the conventional axial loads, bending moments etc. The reinforcements in 3 mutually perpendicular directions which can adequately and optimally resist the direct stresses and shear stresses are determined. As a first attempt to the problem, the simplest Plasticity (Equilibrium) Truss Model' is used by which only force equilibrium is considered. Though strain compatibility is not taken into account in the formulation, the approach is compatible with the common reinforced concrete design codes currently adopted worldwide. Furthermore, in the present approach, the stresses provided by concrete and steel are limited to constant 'design strengths' and are assumed to be perfectly plastic', ie stay at the constant design strength values when these values are reached. The proposed method can hence comply with the design codes currently adopted in Hong Kong and other countries.
机译:本文探索了一种基于3维(3-D)应力场而不是常规的轴向载荷,弯矩等的钢筋混凝土结构设计方法。3个相互垂直方向上的钢筋可以充分,最佳地抵抗直接应力确定了应力和剪切应力。作为对该问题的首次尝试,使用了最简单的“可塑性(平衡)桁架模型”,该模型仅考虑力平衡。尽管在配方中未考虑应变兼容性,但该方法与当前全球通用的钢筋混凝土设计规范兼容。此外,在本方法中,由混凝土和钢提供的应力被限制为恒定的“设计强度”,并被假定为“完全塑性”,即当达到这些值时保持在恒定的设计强度值。因此,建议的方法可以符合香港和其他国家/地区目前采用的设计规范。

著录项

  • 作者

    Su RKL; Law CW; Cheng YM;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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