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Nonlinear finite element modeling of reinforced concrete haunched beams designed to develop a shear failure

机译:钢筋混凝土弯梁的非线性有限元建模,旨在产生剪切破坏

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The results of different nonlinear finite element models for eight simply supported reinforced concrete haunched beams designed to develop a shear failure under static loading are presented and discussed in this paper. Simplified nonlinear models in which the participation of the longitudinal steel reinforcement and stirrups is indirectly included were assessed using SAP2000. More complex nonlinear finite element models were assessed with ANSYS, in which longitudinal steel reinforcement and stirrups were modeled as built. Softening of concrete due to deformation was taken into account in the selected constitutive models using a failure surface with different peak compressive and tension stresses. Strain hardening for the steel reinforcement was considered using the Von Mises yield criterion. Perfect bond between concrete and steel was assumed. Shear-displacement curves for a specific section located at midspan of the beams were obtained from the finite element models and compared to those obtained from experimental testing. Also, crack patterns associated to different loads steps were obtained from ANSYS finite element models. It can be concluded that it is possible to obtain a reasonable correlation between analytical and experimental load-deformation curves and the main developed arch mechanism for RCHBs failing in shear using both simplified and detailed finite element models, which for practical purposes is more than acceptable. However, only a medium correlation between cracking patterns numerically obtained with detailed finite element models and those experimentally identified were observed, particularly for beams with shear reinforcement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出并讨论了八种钢筋混凝土简支弯梁的不同非线性有限元模型的结果,这些梁设计用于在静载荷下产生剪切破坏。使用SAP2000评估了简化的非线性模型,其中间接包括纵向钢筋和箍筋的参与。使用ANSYS评估了更复杂的非线性有限元模型,其中纵向钢筋和箍筋被模拟为已构建。在选定的本构模型中,使用具有不同峰值压缩应力和拉应力的破坏面,考虑了由于变形而导致的混凝土软化。使用冯·米塞斯屈服准则考虑了钢筋的应变硬化。假定混凝土和钢之间的完美结合。通过有限元模型获得了位于梁中跨处的特定截面的剪切位移曲线,并将其与实验测试的曲线进行了比较。同样,从ANSYS有限元模型中获得了与不同载荷阶跃相关的裂纹模式。可以得出结论,使用简化和详细的有限元模型,可以在分析和实验载荷-变形曲线与RCHBs剪切破坏的主要研发拱形机构之间取得合理的相关性,这在实践中是可以接受的。但是,在用详细的有限元模型获得的裂纹模式与通过实验确定的裂纹模式之间,仅观察到中等相关性,特别是对于具有剪力增强的梁。 (C)2015 Elsevier Ltd.保留所有权利。

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