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Strategies for numerical modeling the behavior of RC beams strengthened in shear using the ETS technique

机译:ETS技术数值模拟钢筋混凝土梁抗剪性能的策略

摘要

The strategy to simulate the crack shear stress transfer in a fixed smeared crack model for concrete is crucial to correctly predict the deformational and cracking behavior of RC elements that exhibit shear failure. This work presents a shear softening law able to correctly simulate the shear stiffness degradation and stress transfer during the crack opening. In cracked concrete, the element of the matrix corresponding to the fracture mode II is represented here by a [equation] diagram, describing the shear behavior of the ith crack. The predictive performance is evaluated simulating RC beams failing in shear strengthened using the Embedded Through-Section Technique. According to this technique holes are opened through the cross section, with the desired inclination, and steel or FRP bars are introduced into these holes and bonded to the concrete substrate with adhesive materials. The parameters influencing the shear softening law are analyzed through a parametric study, furthermore a simple rule to estimate these parameters is provided and its predictive performance is assessed. The presented approach represents a valid alternative to the shear retention function.
机译:在混凝土的固定拖尾裂缝模型中模拟裂缝剪应力传递的策略对于正确预测表现出剪切破坏的RC单元的变形和开裂行为至关重要。这项工作提出了一种剪切软化定律,它能够正确模拟裂纹打开期间的剪切刚度退化和应力传递。在开裂的混凝土中,此处对应于断裂模式II的基体元素由[等式]图表示,该图描述了第i个裂纹的剪切行为。通过模拟使用嵌入式贯穿截面技术加固的钢筋混凝土梁,评估了其预测性能。根据该技术,以期望的倾斜度在整个横截面上开孔,并且将钢或FRP杆引入这些孔中,并通过粘合剂将其粘结到混凝土基材上。通过参数研究分析了影响剪切软化规律的参数,并提供了估算这些参数的简单规则,并评估了其预测性能。提出的方法代表了剪切保持功能的有效替代方案。

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