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Global buckling prevention of end collared buckling-restrained braces: Theoretical, numerical analyses and design recommendations

机译:端环屈曲约束牙套的整体屈曲预防:理论,数值分析和设计建议

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摘要

In recent years, buckling-restrained braces (BRBs) have been widely utilized in engineering structures. Generally, BRBs are diagonally installed in frame structures to serve as lateral-resistance and energy dissipation members. To prevent the local buckling of the unrestrained portion of a pin-ended BRB, an end collared BRB (EC-BRB) was proposed by prior researchers by installing end collars at both ends of an ordinary BRB. By using this approach, the enhancement construction of the unrestrained portion could be remarkably simplified, and the end collars can provide lateral restraints to the restraining member, thus improving the global stability of the BRB member. In this paper, a design method for global buckling prevention of pin-ended EC-BRBs based on the restraining ratio requirements is provided via theoretical and numerical analyses. The equation of elastic buckling loads of EC-BRBs is firstly derived and validated by the eigenvalue buckling analyses via ANSYS, and the restraining ratios of EC-BRBs could be further calculated. Then, the restraining ratio requirements of EC-BRBs are theoretically proposed based on the magnification factor of the mid-span lateral deformation, and accordingly a recommended design procedure is provided. The design procedure is further validated by numerous finite element (FE) models subjected to hysteretic and monotonic loadings, indicating that this procedure can conservatively ensure the global stability of EC-BRBs and it is suitable for practical engineering applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,屈曲约束支撑(BRB)已广泛用于工程结构中。通常,BRB对角线安装在框架结构中,以用作侧向阻力和能量消散构件。为了防止带销子的BRB的未约束部分局部屈曲,现有研究人员提出了通过在普通BRB的两端安装端部套环来实现端部套环BRB(EC-BRB)。通过使用这种方法,可以显着简化未约束部分的增强构造,并且端部轴环可以为约束构件提供横向约束,从而提高了BRB构件的整体稳定性。通过理论和数值分析,提出了一种基于约束比要求的销钉式EC-BRB整体防弯设计方法。首先通过ANSYS的特征值屈曲分析推导并验证了EC-BRBs的弹性屈曲载荷方程,并进一步计算了EC-BRBs的约束比。然后,基于中跨侧向变形的放大系数,从理论上提出了EC-BRB的约束比要求,并提出了推荐的设计程序。该设计程序还受到众多承受滞后和单调载荷的有限元(FE)模型的验证,这表明该程序可以保守地确保EC-BRB的整体稳定性,并且适合实际工程应用。 (C)2017 Elsevier Ltd.保留所有权利。

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