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Analytical Model of Two-Directional Cracking Shear-Friction Membrane for Finite Element Analysis of Reinforced Concrete

机译:双向裂纹剪切摩擦钢筋有限元分析钢筋混凝土的分析模型

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摘要

There are a multitude of existing material models for the finite element analysis of cracked reinforced concrete that provide reduced shear stiffness but do not limit shear strength. In addition, typical models are not based on the actual physical behavior of shear transfer across cracks by shear friction recognized in the ACI 318 Building Code. A shear-friction model was recently proposed that was able to capture the recognized cracked concrete behavior by limiting shear strength as a yielding function in the reinforcement across the crack. However, the proposed model was formulated only for the specific case of one-directional cracking parallel to the applied shear force. This study proposed and generalized an orthogonal-cracking shear-friction model for finite element use. This was necessary for handling the analysis of complex structures and nonproportional loading cases present in real design and testing situations. This generalized model was formulated as a total strain-based model using the approximation that crack strains are equal to total strains, using the proportional load vector, constant vertical load, and modified Newton–Raphson method to improve the model’s overall accuracy.
机译:裂纹钢筋混凝土有限元分析有多种现有材料模型,可提供减小的剪切刚度,但不限制剪切强度。此外,典型模型不是基于通过ACI 318建筑码中认可的剪切摩擦横跨裂缝的实际物理行为。最近提出了一种剪切摩擦模型,其能够通过限制剪切强度作为在裂纹上的增强件中的剪切强度来捕获所公认的裂缝的混凝土行为。然而,所提出的模型仅针对与施加的剪切力平行的单向裂缝的特定情况配制。该研究提出并推广了用于有限元用途的正交开裂剪切摩擦模型。这是为了处理实际设计和测试情况中存在的复杂结构和非备产装载案例的分析。使用比例载荷载体,恒定垂直载荷和改进的牛顿 - 拉申方法等于裂纹菌株等于总菌株的近似,将该广义模型作为总应变的模型。

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