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Core behavior and low-cycle fatigue estimation of the Perforated Core Buckling-Restrained Brace

机译:多孔芯屈曲约束支撑的芯行为和低周疲劳估计

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摘要

The Perforated Core Buckling-Restrained Brace (PCBRB) is an all-steel BRB whose core has been split into two lateral bands connected by stabilizing bridges. The core, with a constant cross-section perimeter, can slide along the restrainer so that it can be inspected or replaced by simply removing a centering pin. We analyzed the behavior of two different Perforated Core (PC) geometries which we tested to failure with different load protocols of several maximum deformation amplitudes. The main difference between both geometries was the radius of the lateral band connections. The experimental results show how a low radius, despite offering a higher constant cross-section yielding length, leads to a lower dissipation capacity and to a closer distance between stabilizing bridges. The results also show a gradual drift of the internal and the external lateral band segments into permanent negative and positive elongations, respectively, which increases the minimum gap required between the core and the restrainer. We also analyzed the in-plane and the out-of-plane wavelength of the high mode buckling of the PC and validated two wavelength prediction equations that would prevent the uncontrolled second-order deformations and the buckling failure of the PC. Finally, based on experimental data, we propose two low-cycle fatigue relationships for the PCBRB that would be valid for elastoplastic devices with uniform uniaxial strain distribution, such as BRBs and TADAS devices.
机译:多孔芯屈曲约束支撑(PCBRB)是一种全钢BRB,其芯被分成两个通过稳定桥连接的侧带。具有恒定横截面周长的型芯可以沿限制器滑动,以便只需卸下定心销即可对其进行检查或更换。我们分析了两种不同的多孔芯(PC)几何形状的行为,我们测试了几种最大变形幅度的不同载荷方案对失效的影响。两种几何形状之间的主要区别是侧带连接的半径。实验结果表明,尽管具有较小的恒定横截面屈服长度,但较小的半径却会导致较低的耗散能力,并使稳定桥之间的距离更近。结果还表明,内部和外部横向带段分别逐渐漂移为永久的负伸长率和正伸长率,这增加了芯和约束器之间所需的最小间隙。我们还分析了PC的高模屈曲的面内和面外波长,并验证了两个波长预测方程,这些方程可防止PC的不受控制的二次变形和屈曲失败。最后,根据实验数据,我们提出了PCBRB的两个低周疲劳关系,这对于具有均匀单轴应变分布的弹塑性装置(例如BRB和TADAS装置)是有效的。

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