Effect of Pre-tensioning Force on Behavior of Buckling Restrained Brace (BRB) Supported by Double Pre-tensioning System

Mohamed Selim, Muhammad E. Kamel, Eman Elshamy, Mohamed R. Emara
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Abstract

The study explores the feasibility of a new all-steel buckling restrained brace (BRB) with the double pre-tensioning system as an alternative to conventional concentrically braced frames by using finite element method (ABAQUS program), And to verify modeling, use U-V1 specimen results and compare them with test results. The restraining element in an all-steel BRB is built from a rectangular plate with a double cross arm and cables, making it easy to fabricate, inspect, and replace after a severe earthquake. Numerical analyses were conducted on four groups: first group of specimens using dynamic loading to achieve the minimum thickness for stable hysteretic behavior and high efficiency for BRB, and three groups of specimens using monotonic loading to achieve the best pre-tensioning forces value in steel 37, 44 and 52 for greater efficient use of all steel BRB. The results showed a 66% improvement in bearing capacity, with the external restraining case thickness reduced to 20 mm, making it lightweight, economical, and easy to maintain. The specimens with a pre-tensioning force of 70 kN, 50 kN and 40 kN providing a 31%, 51% and 73.2 % for steel 37, 44 and 52 respectively over than the design specimen without pre-tensioning system.
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预张力对双预张力系统支撑的屈曲约束支撑(BRB)行为的影响
本研究利用有限元方法(ABAQUS 程序)探讨了新型全钢屈曲约束支撑(BRB)的可行性,该支撑采用双预张力系统,可替代传统的同心支撑框架,并利用 U-V1 试样结果与试验结果进行比较,以验证建模的可行性。全钢 BRB 中的约束元件由矩形板与双横臂和缆索构成,因此易于制造、检查和在强震后更换。我们对四组试件进行了数值分析:第一组试件采用动态加载,以获得最小厚度,从而实现稳定的滞后行为和高效的 BRB;第三组试件采用单调加载,以获得最佳的预紧力值,即钢 37、44 和 52,从而更高效地使用全钢 BRB。结果表明,承载能力提高了 66%,外部约束壳厚度减小到 20 毫米,使其重量更轻、更经济、更易于维护。预紧力分别为 70 千牛、50 千牛和 40 千牛的试样,与没有预紧系统的设计试样相比,37 号钢、44 号钢和 52 号钢的预紧力分别提高了 31%、51% 和 73.2%。
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