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Structural behavior of inverted V-braced frames reinforced with non-welded buckling restrained braces

机译:无焊接屈曲约束支撑加固的倒V形支撑框架的结构性能

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摘要

A concentric braced steel frame is a very efficient structural system because it requires relatively smaller amount of materials to resist lateral forces. However, primarily developed as a structural system to resist wind loads based on an assumption that the structure behaves elastically, a concentric braced frame possibly experiences the deterioration in energy dissipation after brace buckling and the brittle failure of braces and connections when earthquake loads cause inelastic behavior. Consequently, plastic deformation is concentrated in the floor where brace buckling occurs first, which can lead to the rupture of the structure. This study suggests reinforcing H-shaped braces with non-welded cold-formed stiffeners to restrain flexure and buckling and resist tensile force and compressive force equally. Weak-axis reinforcing members (2 pieces) developed from those suggested in previous studies (4 pieces) were used to reinforce the H-shaped braces in an inverted V-type braced frame. Monotonic loading tests, finite element analysis and cyclic loading tests were carried out to evaluate the structural performance of the reinforced braces and frames. The reinforced braces satisfied the AISC requirement. The reinforcement suggested in this study is expected to prevent the rupture of beams caused by the unbalanced resistance of the braces.
机译:同心支撑钢框架是非常有效的结构系统,因为它需要相对少量的材料来抵抗侧向力。但是,主要是基于结构具有弹性的假设,作为抵抗风荷载的结构系统而开发的,当地震荷载引起非弹性行为时,同心支撑框架可能会遭受支撑屈曲后能量耗散的恶化以及支撑和连接的脆性破坏。 。因此,塑性变形集中在首先发生支撑屈曲的地板上,这可能导致结构破裂。这项研究表明,用非焊接的冷弯型加强筋来加固H形支撑,可以抑制弯曲和屈曲,并平等地抵抗拉伸力和压缩力。从以前的研究中建议的弱轴增强构件(2个)(4个)发展来增强倒V型支撑框架中的H形支撑。进行了单调载荷试验,有限元分析和循环载荷试验,以评估钢筋支撑和框架的结构性能。加固支架满足AISC要求。这项研究中建议的加固措施有望防止由于撑杆的不平衡阻力引起的梁破裂。

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