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首页> 外文期刊>Journal of Civil Engineering and Management >NONLINEAR FINITE ELEMENT ANALYSIS OF DAMAGED AND STRENGTHENED REINFORCED CONCRETE BEAMS
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NONLINEAR FINITE ELEMENT ANALYSIS OF DAMAGED AND STRENGTHENED REINFORCED CONCRETE BEAMS

机译:受损和加筋钢筋混凝土梁的非线性有限元分析

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Bending test of seven reinforced concrete beams are modeled in finite element program to validate the modeling strategies by comparing the structural response of the beams. Three beams in the set are pre-damaged and strengthened with fiber reinforced composites before the bending tests. Cracks are implemented into the model by inserting geometrical discontinuities to represent the pre-damaged beams. Parametric variables such as crack width, length and interval are chosen to simulate different pre-damage levels. Once the proposed modeling strategies are validated by real experimental tests then 196 finite element models are created to study the effects of pre-damage levels on the moment capacity of reinforced concrete beams repaired with CFRP. Results indicate that inclusion of pre-damage levels by means of cracks into the cross sections have significant effect on beams moment capacity.
机译:在有限元程序中对七个钢筋混凝土梁的弯曲试验进行建模,以通过比较梁的结构响应来验证建模策略。弯曲测试之前,该组中的三根梁已预先损坏,并用纤维增强复合材料加固。通过插入几何不连续性来表示预损坏的梁,从而将裂缝实施到模型中。选择参数变量(如裂缝宽度,长度和间隔)以模拟不同的损伤前水平。一旦通过实际的实验测试验证了所提出的建模策略,便创建了196个有限元模型,以研究损伤前水平对CFRP修复的钢筋混凝土梁的弯矩承载力的影响。结果表明,通过裂纹将预破坏水平包括在横截面中对梁的弯矩承载力具有重大影响。

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