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基于剪切变形宽翼薄壁工字形梁剪滞效应的分析
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作者 李凯 《黑龙江科学》 2023年第6期64-66,69,共4页
分析了宽翼薄壁工字形梁竖向弯曲时的翼缘和腹板剪力流分布规律,利用剪切变形来定义剪滞翘曲位移函数,采用基于最小势能原理的能量变分法,建立了宽翼薄壁工字形梁剪滞效应分析的剪力滞控制微分方程和边界条件。以剪力滞广义位移、竖向... 分析了宽翼薄壁工字形梁竖向弯曲时的翼缘和腹板剪力流分布规律,利用剪切变形来定义剪滞翘曲位移函数,采用基于最小势能原理的能量变分法,建立了宽翼薄壁工字形梁剪滞效应分析的剪力滞控制微分方程和边界条件。以剪力滞广义位移、竖向挠度、竖直平面内转角、剪力、弯矩及剪力滞广义力矩作为6个初参数,给出了任意集中荷载作用下微分方程的初参数解。对简支工字形截面梁模型进行计算,应力和挠度计算结果与有限元较吻合,证明该方法有效。 展开更多
关键词 宽翼薄壁工字形梁 翘曲位移函数 剪滞效应分析 初参数解
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Analysis of free vibration characteristic of steel-concrete composite box-girder considering shear lag and slip 被引量:9
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作者 周旺保 蒋丽忠 余志武 《Journal of Central South University》 SCIE EI CAS 2013年第9期2570-2577,共8页
Based on Hamilton principle,the governing differential equations and the corresponding boundary conditions of steel-concrete composite box girder with consideration of the shear lag effect meeting self equilibrated st... Based on Hamilton principle,the governing differential equations and the corresponding boundary conditions of steel-concrete composite box girder with consideration of the shear lag effect meeting self equilibrated stress,shear deformation,slip,as well as rotational inertia were induced.Therefore,natural frequency equations were obtained for the boundary types,such as simple support,cantilever,continuous girder and fixed support at two ends.The ANSYS finite element solutions were compared with the analytical solutions by calculation examples and the validity of the proposed approach was verified,which also shows the correctness of longitudinal warping displacement functions.Some meaningful conclusions for engineering design were obtained.The decrease extent of each order natural frequency of the steel-concrete composite box-girder is great under action of the shear lag effect.The shear-lag effect of steel-concrete composite box girder increases when frequency order rises,and increases while span-width ratio decreases.The proposed approach provides theoretical basis for further research of free vibration characteristics of steel-concrete composite box-girder. 展开更多
关键词 steel-concrete composite box-girder shear lag effect shear deformation SLIP free vibration
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