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作 者:吕辉 肖冲 罗靓 LV Hui;XIAO Chong;LUO Liang(College of Civil Engineering and Architecture,Nanchang Hangkong University,Nanchang 330063,China;Jiangxi Key Laboratory of Prefabricated Building and Intelligent Construction,Nanchang 330063,China;College of Civil Engineering and Architecture,Nanchang Hangkong University,Nanchang 330044,China)
机构地区:[1]南昌航空大学土木建筑学院,南昌330063 [2]江西省装配式建筑与智能建造重点实验室,南昌330063 [3]南昌理工学院建筑工程学院,南昌330044
出 处:《科学技术与工程》2024年第10期4197-4206,共10页Science Technology and Engineering
基 金:国家自然科学基金(52268031);南昌航空大学研究生创新专项基金(YC2021-114);南昌航空大学博士启动基金(EA201911291);江西省智慧建筑工程研究中心开放基金(HK20231011)。
摘 要:为研究框架柱的压弯承载力与压弯刚度,通过建立三维实体有限元模型,在与拟静力试验结果验证较好的基础上,进一步建立了162根足尺钢筋混凝土柱有限元模型算例进行参数分析,探讨了各参数对柱的承载力、刚度的影响,提出了参数影响下的柱承载力、刚度实用计算公式。结果表明:当轴压比≤0.4时,随轴压比的增大,柱的压弯峰值承载力增大,当轴压比>0.4时,随轴压比的增大,柱的压弯峰值承载力减小,提高纵筋配筋率与混凝土强度等级均能有效的增大柱的压弯峰值承载力,且提高纵筋配筋率的效果更好;当轴压比≤0.2时,随轴压比的增大,柱的弹性刚度增大,当轴压比>0.2时,随轴压比的增大,柱的弹性刚度减小,提高纵筋配筋率与混凝土强度等级均能增大柱的弹性刚度;提出的实用计算公式可较准确地反映有限元结果,可为实际工程中框架柱的设计作一定的参考。In order to study the bending bearing capacity and stiffness of frame columns,a three-dimensional solid finite element model was established,which was verified well with the results of quasi-static tests,162 full-scale reinforced concrete columns were further established for parameter analysis.The influence of various parameters on the bearing capacity and stiffness of the column was discussed,and the practical calculation formula of the bearing capacity and stiffness of the column under the influence of parameters was proposed.The results show as follows.When the axial compression ratio is less than or equal to 0.4,the peak bearing capacity of the column will increase with the increase of the axial compression ratio.When the axial compression ratio is greater than 0.4,the peak bearing capacity of the column will decrease with the increase of the axial compression ratio;improving the longitudinal reinforcement ratio and the concrete strength grade can effectively increase the peak bearing capacity of the column,and the effect of improving the longitudinal reinforcement ratio is better.When the axial compression ratio is less than or equal to 0.2,the elastic stiffness of the column will increase with the increase of the axial compression ratio.When the axial compression ratio is greater than 0.2,the elastic stiffness of the column will decrease with the increase of the axial compression ratio.Increasing the longitudinal reinforcement ratio and the concrete strength grade will increase the elastic stiffness of the column.The practical calculation formula can accurately reflect the finite element results,and can be used as a reference for the design of frame columns in practical projects.
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