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薄膜元理论在受扭构件强度和变形计算中的应用 被引量:2
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作者 闫肖武 刘继明 《工程抗震与加固改造》 2007年第2期33-36,共4页
本文对薄膜元理论在钢筋混凝土受扭构件中的应用进行了探讨,以变角空间桁架理论为基础,考虑混凝土的“受压软化”和“受拉强化”,用反复迭代的数值分析方法,模拟构件受力的全过程,并对构件的破坏荷载和变形进行了计算,理论分析结果与试... 本文对薄膜元理论在钢筋混凝土受扭构件中的应用进行了探讨,以变角空间桁架理论为基础,考虑混凝土的“受压软化”和“受拉强化”,用反复迭代的数值分析方法,模拟构件受力的全过程,并对构件的破坏荷载和变形进行了计算,理论分析结果与试验结果吻合较好。 展开更多
关键词 薄膜元理论 软化 受拉强化 全过程分析
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Numerical simulation of partial-interaction load-deflection behavior of corroded reinforced concrete beams based on a segmental approach and evaluation of reinforcement corrosion level
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作者 Qian FENG Guan-nan WANG +1 位作者 Yong-ping ZHANG Rong-qiao XU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第4期280-293,共14页
Corrosion of reinforcement has a significant effect on the deformation of reinforced concrete beams by deteriorating the bond-slip characteristics, diminishing the cross-sectional area of reinforcement, and causing cr... Corrosion of reinforcement has a significant effect on the deformation of reinforced concrete beams by deteriorating the bond-slip characteristics, diminishing the cross-sectional area of reinforcement, and causing cracking. The traditional way of quantifying the load capacity and simulating deflection is the moment-curvature(M/χ) approach. The problem is that the M/χ approach is semi-empirical after cracking as it is strain-based and cannot allow for tension stiffening. This paper introduces the new displacement-based moment-rotation(M/θ) approach which directly simulates the development of cracks and hence allows for tension stiffening. This M/θ approach is then used to predict the load-deflection behavior of reinforced concrete beams with corrosion effect by incorporating the corrosion-affected bond-slip model. The bond-slip model only considers the corrosion effect but ignores the confinement effect. It is used here as an example to describe the procedure of how to quantify the corrosion effect on reinforced concrete beam behavior. The load-deflection curves obtained from the numerical simulation show a good agreement with test results. For reinforced concrete beams with confinement, the only difference is to replace the bond-slip model with the one which includes both corrosion and stirrup effects. Additionally, the paper shows how to use the M/θ approach with the bond-slip model to predict the real corrosion level of reinforcement in some tests in which only the theoretical corrosion levels are provided. 展开更多
关键词 Reinforced concrete Corrosion Partial interaction Load-deflection Tension-stiffening BOND-SLIP
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