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Mechanical Performance of Mega Steel Frame-Prestressed Composite Bracing Structure

机译:巨型钢框架预应力组合支撑结构的力学性能

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The mega structure has been widely studied and applied due to the clear force transferring way, good structural integrity and flexible layout of diverse building functions. Based on the structure of mega truss or mega frame, the research and application of the mega structure with many kinds of bracing structures become a hot topic in recent years. Mega steel frame-prestressed composite bracing structure with a rigid-flexible composite bracing system composed of rigid Λ-shape steel brace and inverted Λ-shape flexible cable is a new kind of mega structure and this composite bracing system is set up in the mega steel frame. By establishing the three-dimensional finite element model and considering the material and geometric nonlinearity, the structural performance under static load in whole process was analyzed and the energy dissipation as well as failure mode under earthquake is also investigated for this new system in this paper. The results indicate that the lateral deformation is mainly decided by horizontal load and the corresponding curve of lateral displacement has the characteristic of flexure mode as a whole, whereas the deflection of mega beam is mainly governed by vertical load and pretension of cables. The internal force equilibrium of composite brace is decided by vertical load and the degree of force unbalance is about 15% when the fluctuation of vertical load is 20%, but the change of anti-symmetric horizontal load has no effect on the internal force equilibrium. The composite braces not only help the mega beam to bear the vertical load but also greatly enhance the lateral stiffness of main structure and so the lateral stiffness of whole system is relatively uniform. Due to the TMD effects of substructure and additional dampers, the seismic energy is mainly dissipated by dampers and substructure and then the main structure is able to maintain elastic. The desired failure mode of MFPCBS under lateral loads is as follows: the web members of mega beam appear to yield at first, and then the braces between mega column limbs, Λ-shape rigid bracing truss, floor beams between mega column limbs and mega column limbs in order.
机译:巨型结构因其清晰的力传递方式,良好的结构完整性和灵活的多种建筑功能而得到了广泛的研究和应用。基于巨型桁架或巨型框架的结构,具有多种支撑结构的巨型结构的研究和应用成为近年来的热门话题。巨型钢框架预应力复合支撑结构,具有由刚性Λ型钢支撑和反向Λ形柔性电缆组成的刚柔组合支撑系统,是一种新型的巨型结构,该复合支撑系统是在巨型钢中建立的帧。通过建立三维有限元模型并考虑材料和几何非线性,分析了整个过程中静载荷下的结构性能,并研究了该新系统的能量耗散以及地震作用下的破坏模式。结果表明,侧向变形主要由水平载荷决定,相应的侧向位移曲线整体上具有弯曲模式的特征,而大梁的挠度主要由竖向载荷和电缆的预紧力决定。复合支撑的内力平衡是由竖向载荷决定的,当竖向载荷的波动为20%时,力的不平衡度约为15%,但反对称水平载荷的变化对内力平衡没有影响。复合支架不仅可以使大梁承受竖向荷载,而且可以大大提高主体结构的侧向刚度,因此整个系统的侧向刚度相对均匀。由于下部结构和附加阻尼器的TMD效应,地震能量主要由阻尼器和下部结构消散,因此主结构能够保持弹性。在横向载荷下,MFPCBS的理想破坏模式如下:巨型梁的腹板构件首先出现屈服,然后是巨型柱肢之间的支撑,Λ型刚性支撑桁架,巨型柱肢与巨型柱之间的楼板梁四肢井然有序。

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