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A multi-fiber approach with directional stiffness matrix in reinforced concrete structures

机译:一种钢筋混凝土结构方向刚度矩阵的多纤维方法

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摘要

PurposeThis paper aims to develop a new multi-fiber element for predicting the structural behavior of planar-reinforced concrete (RC) members.Design/methodology/approachIn this work, an exact multi-directional stiffness matrix is analytically derived based on the post-cracking bond-slip interaction between concrete and steel bars. The approach is also extended for large displacement analysis using Green-Lagrange finite strain tensor. In the proposed formulation, the weak form of governed differential equations is approximated by a trial-function expansion based on a finite strain-description and an additional degree of freedom for steel bars.FindingsThe findings provide a realistic description of cracking in the concrete structure. Numerical studies are conducted to examine the accuracy of the suggested approach and its capability to predict fairly complex responses of RC models. The findings prove that the proposed element can evaluate local and global responses of RC members, and it can be used as a reliable tool to reflect bond-slip effects in large displacement level. This leads to a robust and precise model for non-linear analysis of RC structures.Originality/valueThe methodology is capable of simulating coupled inelastic shear-flexural behavior of RC members through local stress field theory and Timoshenko beam model.
机译:目的旨在开发一种新的多纤维元件,用于预测平面钢筋混凝土(RC)成员的结构行为.Design/Methodology/ApproChin这项工作,基于后裂解来分析精确的多向刚度矩阵混凝土和钢筋之间的粘结滑动相互作用。使用绿色拉格朗日有限应变张量,还延长了大量位移分析的方法。在所提出的制剂中,基于有限的应变描述和钢筋的额外自由度,通过试验功能扩展和钢筋的额外自由度来近似.Findingsthe发现在混凝土结构中的裂缝的逼真描述提供了一种额外的自由度。进行了数值研究,以研究建议方法的准确性及其预测RC模型的相当复杂的反应的能力。该研究结果证明,该元素可以评估RC成员的本地和全局响应,可用作可靠的工具,以反映大型位移水平的粘合效果。这导致RC结构的非线性分析的稳健和精确模型。方法可以通过局部应力场理论和Timoshenko光束模型来模拟RC构件的耦合非弹性剪切 - 弯曲行为。

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