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Local buckling of steel plates in double skin composite panels under biaxial compression and shear

机译:双层复合板在双轴压缩和剪切作用下钢板的局部屈曲

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摘要

[Abstract]: Steel plates in double skin composite (DSC) panels are restrained by a concrete core and welded stud shear connectors at discrete positions. Local buckling of steel plates in DSC panels may occur in a unilateral mode between stud shear connectors when subjected to combined states of stresses. This paper studies the local and postlocal buckling strength of steel plates in DSC panels under biaxial compression and in-plane shear by using the finite element method. Critical local buckling interaction relationships are presented for steel plates with various boundary conditions that include the shear stiffness effects of stud shear connectors. A geometric and material nonlinear analysis is employed to investigate the postlocal buckling interaction strength of steel plates in biaxial compression and shear. The initial imperfections of steel plates, material yielding, and the nonlinear shear–slip behavior of stud shear connectors are considered in the nonlinear analysis. Design models for critical buckling and ultimate strength interactions are proposed for determining the maximum stud spacing and ultimate strength of steel plates in DSC panels.
机译:[摘要]:双层复合材料(DSC)面板中的钢板受混凝土芯和离散位置的焊接螺柱剪切连接器约束。当承受应力的组合状态时,DSC面板中钢板的局部屈曲可能以单侧方式在双头剪切连接器之间发生。本文利用有限元方法研究了双轴压缩和面内剪切作用下DSC面板中钢板的局部和局部局部屈曲强度。对于具有各种边界条件(包括双头螺栓剪切连接器的剪切刚度效应)的钢板,提出了关键的局部屈曲相互作用关系。采用几何和材料非线性分析方法研究了钢板在双轴压缩和剪切作用下的局部屈曲相互作用强度。在非线性分析中考虑了钢板的初始缺陷,材料屈服以及螺柱剪切连接器的非线性剪切滑动行为。提出了临界屈曲和极限强度相互作用的设计模型,以确定DSC面板中钢板的最大螺柱间距和极限强度。

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