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A new perforated core buckling restrained brace

机译:一种新型的带孔芯屈曲约束支撑

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The Perforated Core Buckling Restrained Brace (PCBRB) is a new energy dissipation device for the seismic design of buildings. Its core consists of a perforated steel yielding plate which is guided and partially stabilized by the restraining unit. The core is mechanized to obtain two yielding lateral bands which are connected by several equidistant stabilizing bridges. The lateral bands are designed to yield to axial forces, as conventional BRBs do, so the force and the displacement at the yielding point can be calculated by the usual expressions of conventional buckling restrained braces, based on uniform strain distribution. To distribute the stabilizing bridges along the core, an expression based on Euler's formulation is proposed. Under this formulation two types of specimens have been designed and tested (Type Ⅰ and Type Ⅱ) using three different loading protocols. The Type Ⅰ specimens exhibited a stable response, while the Type Ⅱ specimens suffered a progressive loss of compression capacity produced by the local buckling. Finally, the hysteretic behaviour of the tested braces and a large scale brace has been analysed with an FEM model which considers the interaction between the core and the encasing member. The model reproduces the hysteretic response during the first cycles and the influence of friction on the axial strain distribution along the yielding core.
机译:多孔芯屈曲约束支撑(PCBRB)是一种用于建筑物抗震设计的新型耗能设备。它的核心由带孔的钢板屈服板组成,由约束单元引导并部分稳定。机械化岩心以获得两个屈服的横向带,这些横向带通过几个等距的稳定桥连接。像传统的BRB一样,侧向带被设计为屈服于轴向力,因此,可以基于均匀的应变分布,通过常规屈曲约束支撑的常用表达式来计算屈服点处的力和位移。为了沿核心分布稳定桥,提出了一种基于欧拉公式的表达式。在这种情况下,使用三种不同的加载方案设计和测试了两种类型的标本(Ⅰ型和Ⅱ型)。 Ⅰ型试样表现出稳定的响应,而Ⅱ型试样则由于局部屈曲而逐渐失去了压缩能力。最后,用FEM模型分析了被测试的牙套和大型牙套的滞后性能,该模型考虑了芯子和包壳构件之间的相互作用。该模型再现了第一个循环中的磁滞响应以及摩擦对沿屈服岩心的轴向应变分布的影响。

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