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Study on mechanical behaviors of column foot joint in traditional timber structure

机译:传统木结构柱脚节点的力学行为研究

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摘要

Column is usually floating on the stone base directly with or without positioning tenon in traditional Chinese timber structure. Vertical load originated by the heavy upper structure would induce large friction force and compression force between interfaces of column foot and stone base. This study focused on the mechanical behaviors of column foot joint with consideration of the influence of vertical load. Mechanism of column rocking and stress state of column foot has been explored by theoretical analysis. A nonlinear finite element model of column foot joint has been built and verified using the full-scale test. The verified model is then used to investigate the mechanical behaviors of the joint subjected to cyclic loading with different static vertical loads. Column rocking mechanism and stress distributions of column foot were studied in detail, showing good agreement with the theoretical analysis. Mechanical behaviors of column foot joint and the effects of the vertical load on the seismic behavior of column foot were studied. Result showed that compression stress, restoring moment and stiffness increased with the increase of vertical load. An appropriate vertical load originated by the heavy upper structure would produce certain restoring moment and reset the rocking columns, ensuring the stability of the whole frame.
机译:在传统的中国木结构中,无论有没有定位榫,圆柱通常直接漂浮在石材底座上。较重的上部结构产生的竖向荷载会在柱脚与石材底座的界面之间产生较大的摩擦力和压缩力。这项研究集中在考虑垂直载荷影响的柱脚关节的力学行为上。通过理论分析,探讨了立柱摇摆的机理和立柱脚的应力状态。建立了柱脚关节的非线性有限元模型,并使用全尺寸试验进行了验证。然后,将经过验证的模型用于研究具有不同静态垂直载荷的循环载荷的关节的机械性能。详细研究了柱的摇摆机理和柱脚的应力分布,与理论分析吻合良好。研究了柱脚节点的力学行为以及竖向荷载对柱脚地震反应的影响。结果表明,压缩应力,恢复力矩和刚度随垂直载荷的增加而增加。由笨重的上部结构产生的适当的垂直载荷将产生一定的恢复力矩,并使摇杆复位,从而确保整个框架的稳定性。

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