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Shear deformable finite beam elements for composite box beams 被引量:2
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作者 Nam-Il Kim Dong-Ho Choi 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第2期223-240,共18页
The shear deformable thin-walled composite beams with closed cross-sections have been developed for coupled flexural, torsional, and buckling analyses. A theoretical model applicable to the thin-walled laminated compo... The shear deformable thin-walled composite beams with closed cross-sections have been developed for coupled flexural, torsional, and buckling analyses. A theoretical model applicable to the thin-walled laminated composite box beams is presented by taking into account all the structural couplings coming from the material anisotropy and the shear deformation effects. The current composite beam includes the transverse shear and the restrained warping induced shear deformation by using the first-order shear deformation beam theory. Seven governing equations are derived for the coupled axial-flexural-torsional-shearing buckling based on the principle of minimum total potential energy. Based on the present analytical model, three different types of finite composite beam elements, namely, linear, quadratic and cubic elements are developed to analyze the flexural, torsional, and buckling problems. In order to demonstrate the accuracy and superiority of the beam theory and the finite beam elements developed by this study,numerical solutions are presented and compared with the results obtained by other researchers and the detailed threedimensional analysis results using the shell elements of ABAQUS. Especially, the influences of the modulus ratio and the simplified assumptions in stress-strain relations on the deflection, twisting angle, and critical buckling loads of composite box beams are investigated. 展开更多
关键词 thin-walled Composite box beam Deflection Twisting angle Buckling load Shear deformation
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带肋薄壁箱形梁抗震性能研究 被引量:3
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作者 范重 李玮 +4 位作者 李媛媛 朱丹 张宇 刘涛 谢鹏 《天津大学学报(自然科学与工程技术版)》 EI CSCD 北大核心 2019年第A02期90-97,共8页
本文对我国和美欧结构设计规范中箱形梁宽厚比限值规定进行了较为全面的回顾.针对大跨度箱形构件用钢量较大的问题,提出一种带加劲肋的薄壁箱形梁.采用ABAQUS非线性有限元分析软件建立了计算模型,对屈曲模态、承载力、变形性能、耗能能... 本文对我国和美欧结构设计规范中箱形梁宽厚比限值规定进行了较为全面的回顾.针对大跨度箱形构件用钢量较大的问题,提出一种带加劲肋的薄壁箱形梁.采用ABAQUS非线性有限元分析软件建立了计算模型,对屈曲模态、承载力、变形性能、耗能能力和损伤情况进行了全面研究.计算结果表明:薄壁箱形梁设置加劲肋后,腹板的面外变形受到有效抑制,屈曲范围与波形数量均显著减少.在往复荷载作用下,带肋薄壁箱形梁承载力达到最大值后下降速度较为缓慢,滞回曲线梭形的宽度较大.随着腹板宽厚比增大,带肋薄壁箱形梁的最大变形能力与延性系数降低不大,刚度退化速度较慢,耗能能力较强.当达到相同变形角(1/75)时,腹板的最大面外变形与塑性应变均小于普通薄壁箱形梁,说明其损伤程度较轻.与腹板受宽厚比限值控制的普通薄壁箱形梁相比,带肋薄壁箱形梁可以在具有相同变形能力的同时,有效节约钢材. 展开更多
关键词 薄壁箱形梁 宽厚比 加劲肋 变形能力 有限元分析
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