Implementation of High-Performance Fiber Reinforced Concrete Coupling Beams in High-Rise Core-Wall Structures

R. Lequesne, M. Setkit, Cary S. Kopczynski, J. Ferzli, M. Cheng, G. Parra-Montesinos, J. Wight
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引用次数: 9

Abstract

Synopsis: Experimental and analytical studies that led to the incorporation of strain-hardening, high-performance fiber reinforced concrete (HPFRC) coupling beams in the design of a high-rise core-wall structure in Seattle, WA, are described. A total of eight HPFRC coupling beams with span-to-depth ratios ranging between 1.75 and 3.3 were tested under large displacement reversals. The tension and compression ductility of HPFRC materials allowed an approximately 70% reduction in diagonal reinforcement, relative to an ACI Building Code (318-08) compliant coupling beam design, in beams with a 1.75 span-to-depth aspect ratio and a total elimination of diagonal bars in beams with a 2.75 and 3.3 aspect ratio. Further, special column-type confinement reinforcement was not required except at the ends of the beams. When subjected to shear stress demands close to the upper limit in the 2008 ACI
高性能纤维混凝土耦合梁在高层核心墙结构中的应用
摘要:实验和分析研究,导致结合应变硬化,高性能纤维增强混凝土(HPFRC)耦合梁在设计高层核心墙结构在西雅图,华盛顿州,描述。共对8根跨深比在1.75 ~ 3.3之间的HPFRC耦合梁进行了大位移逆转试验。与ACI建筑规范(318-08)兼容的耦合梁设计相比,HPFRC材料的拉伸和压缩延展性使对角钢筋减少了约70%,在跨度与深度比为1.75的梁中,完全消除了对角钢筋,在宽高比为2.75和3.3的梁中。此外,除了在梁的末端,不需要特殊的柱式约束加固。当受剪切应力需求接近2008年ACI上限时
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