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首页> 外文期刊>Journal of Earthquake Engineering >Considering Shear Behavior of Beam-Column Connections to Assess the Seismic Performance of RC Frames Subjected to Freeze-Thaw Cycles
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Considering Shear Behavior of Beam-Column Connections to Assess the Seismic Performance of RC Frames Subjected to Freeze-Thaw Cycles

机译:考虑梁柱连接的剪切行为,以评估经受冻融循环的RC帧的地震性能

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摘要

Freeze-thaw of concrete is significantly responsible for serious damage to RC buildings, which may result in premature failure with little warning. Therefore, it is necessary to consider the effects of freeze-thaw environment when assessing seismic performance for RC structures. In this study, pseudo-static experiments of interior beam-column joints were conducted in terms of different axial compression ratios and the number of freeze-thaw cycles (FTC). Based on the experimental results, the effects of freeze-thaw were mathematically modeled using a reduced envelope and a parameter of cyclic deterioration for the joint shear-strain relationships. The constitutive parameters of joint panels were defined by transforming the shear-strain relation into the moment-rotation relation of a shear spring. Finally, a numerical model of a beam-column joint was proposed in order to predict its shear behavior after being subjected to FTC. The numerical model was well validated by the experimental results of two RC beam-column joint test series. As an application to RC structures, model calculations were applied to five-story and three-bay RC frames of 0 and 30 years, respectively.
机译:混凝土的冷冻解冻对于RC建筑的严重损坏,严重损害,这可能导致过早的警告失败。因此,在评估RC结构的地震性能时,有必要考虑冻融环境的影响。在该研究中,根据不同的轴向压缩比和冻融循环(FTC)的数量来进行内梁柱接头的伪静态实验。基于实验结果,使用降低的包络和联合剪切应变关系的循环劣化参数来数学建模的冻融的影响。通过将剪切应变关系转变为剪切弹簧的力矩旋转关系来限定接合面板的组成参数。最后,提出了梁柱关节的数值模型,以预测经过FTC后的剪切行为。通过两个RC梁柱关节试验系列的实验结果验证了数值模型。作为对RC结构的应用,将模型计算分别应用于0至30岁的五层和三托架RC帧。

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