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Elastic buckling and load resistance of a single cross-arm pre-tensioned cable stayed buckling-restrained brace

机译:单根交叉臂预张紧的斜拉约束斜拉索的弹性屈曲和载荷阻力

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This paper proposes a new type of buckling-restrained braces (BRB), namely a pre-tensioned cable stayed budding-restrained brace (PCS-BRB) which is formed through introducing an additional structural system of pre-tensioned cables and a number of cross-arms to the outside of a common BRB. This new system significantly improves the BRB's overall external restraining stiffness, hence increasing the load-carrying efficiency in its structural design. Due to its aesthetically appealing structure, it can be utilised in stadiums and so forth as a laterally resistant brace. Equilibrium method is utilised to deduce formulas of elastic buckling load of pin-ended PCS-BRB. The restraining ratio and the initial pre-tensioning force of cables are investigated to explore the effect on the axial compressive load-carrying capacity of the PCS-BRB through finite element analyses in elastic-plastic range. The findings indicate that two different types of buckling modes may occur in this PCS-BRB, namely single-wave symmetric and double-wave antisymmetric buckling modes. It was found from theoretical and numerical analyses that: a negative linear correlation exists between elastic buckling load and initial pre-tensioning force of the cables; the geometric parameters of the cable stayed system possessed remarkable effect on the elastic buckling load. In addition, the post-yield behaviour and ultimate compressive load-carrying capacity of the PCS-BRB is directly proportional to the restraining ratio, and there exists a lower limit of the restraining ratio which allows the inner core to reach full cross-sectional yielding without overall instability failure of the PCS-BRB. Furthermore, there exists an optimal initial pre-tensioning force of cables to make the load-carrying capacity of the PCS-BRB to reach a maximum value. The investigation of elastic buckling and load resistance of PCS-BRB provides fundamentals to further develop a complete design method of PCS-BRB. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型的屈曲约束撑杆(BRB),即一种预张紧的斜拉撑撑杆(PCS-BRB),它是通过引入附加的预张紧电缆结构体系和许多交叉而成的。 -武装到普通BRB的外部。该新系统显着提高了BRB的整体外部约束刚度,从而提高了其结构设计的承载效率。由于其美观的结构,它可以在体育馆等地方用作侧向支撑。利用平衡法推导了端部PCS-BRB的弹性屈曲载荷公式。通过弹性塑性范围内的有限元分析,研究了电缆的约束比和初始预拉力,以研究其对PCS-BRB轴向压缩承载力的影响。研究结果表明,在此PCS-BRB中可能会出现两种不同类型的屈曲模式,即单波对称和双波反对称屈曲模式。从理论和数值分析中发现:弹性屈曲载荷与电缆的初始预紧力之间存在负线性关系;斜拉系统的几何参数对弹性屈曲载荷有显着影响。另外,PCS-BRB的屈服后行为和极限压缩承载力与约束比成正比,并且存在约束比的下限,使内芯达到完整的截面屈服而不会使PCS-BRB整体不稳定。此外,存在最佳的电缆初始初始张紧力,以使PCS-BRB的承载能力达到最大值。对PCS-BRB的弹性屈曲和负载阻力的研究为进一步开发PCS-BRB的完整设计方法提供了基础。 (C)2016 Elsevier Ltd.保留所有权利。

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