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首页> 外文期刊>Journal of Structural Engineering >Seismic Performance of Interior Reinforced Concrete Beam-Column Joint with Corroded Reinforcement
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Seismic Performance of Interior Reinforced Concrete Beam-Column Joint with Corroded Reinforcement

机译:腐蚀钢筋钢筋混凝土内部钢筋混凝土梁柱节点抗震性能

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This study presented an experimental and analytical investigation on the seismic behavior of a reinforced concrete (RC) interior joint with corroded reinforcements. A total of eight RC interior joints with similar reinforcing detailing were tested and subjected to lateral cyclic loading. The variables studied in this research were the corrosion level of reinforcements in terms of mass loss and the column axial force ratio. The cyclic performance of all the joints including crack pattern, lateral loading capacity, energy dissipation, and lateral displacement decomposition were examined. The corroded joint constitutive model was calibrated and validated using the finite-element method. An analytical strut-and-tie model (STM) was developed for explaining the internal force flow and further parametric investigations. Results indicated that corrosion of reinforcements had a substantial effect on the strength and lateral drift capacity of the joints. In addition, based on the STM model, the axial force ratio exceeding 0.3 and longitudinal reinforcement corrosion level around 6-10 were detrimental toward joint behavior and can contribute to joint shear failure.
机译:本研究对钢筋混凝土(RC)内缝的抗震性能进行了试验和分析研究。共测试了8个具有类似钢筋细节的钢筋混凝土内部缝,并承受了横向循环荷载。本研究研究的变量是钢筋的质量损失腐蚀程度和柱轴向力比。考察了所有节点的循环性能,包括裂纹模式、侧向承载能力、能量耗散和侧向位移分解。采用有限元方法对腐蚀节点本构模型进行标定和验证。建立了一个解析支柱和连杆模型(STM),用于解释内力流动和进一步的参数研究。结果表明,钢筋腐蚀对接头的强度和横向漂移能力有显著影响。此外,基于STM模型,轴向力比超过0.3和纵向钢筋腐蚀水平在6-10%左右,对接头行为不利,并可能导致节理剪切破坏。

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