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Seismic Behavior and Detailing of High-Performance Fiber-Reinforced Concrete Coupling Beams and Coupled Wall Systems

机译:高性能纤维增强混凝土耦合梁和耦合墙系统的抗震性能和详图

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The seismic behavior of coupling beams and walls constructed with tensile strain-hardening, high-performance fiber-reinforced concrete (HPFRC) was studied through tests of large-scale precast coupling beams and coupled walls. A precast coupling beam design was developed to speed up construction and minimize interference with wall reinforcement. Three isolated precast coupling beam specimens with a span/depth of 1.75 were tested under large displacement reversals. Test results indicate the use of HPFRC allows a reduction of the reinforcement required to achieve a stable coupling beam response by providing confinement and contributing to beam shear strength. A concrete design shear stress capacity of 0.41 f_c~'(1/2) MPa (5 f_c~'(1/2) psi), wheref_c~' is the compressive strength of the concrete, was found to be appropriate. In addition to the coupling beam tests, two 4-story coupled wall specimens with precast HPFRC and regular concrete coupling beams were tested under lateral displacement reversals. Besides allowing the evaluation of seismic behavior of coupled walls with HPFRC coupling beams, the use of HPFRC in the plastic hinge regions of the walls as a means of relaxing transverse wall reinforcement was evaluated. The two coupled wall specimens exhibited drift capacities of at least 2.5%. The HPFRC coupling beams were more ductile and damage-tolerant than the regular concrete beams. The incorporation of a HPFRC material in the wall allowed the use of a concrete design shear stress capacity of 0.33 f_c~'(1/2) MPa (4f_c~'(1/2) psi) and a wider spacing of transverse reinforcement confining the wall boundary regions.
机译:通过大型预制连接梁和连接墙的试验,研究了用拉伸应变硬化高性能纤维增强混凝土(HPFRC)构造的连接梁和墙的抗震性能。预制的耦合梁设计可以加快施工速度并最大程度地减少对墙体加固的干扰。在大位移反转下测试了三个跨距/深度为1.75的隔离的预制耦合梁样本。测试结果表明,使用HPFRC可以通过提供限制并有助于梁的剪切强度来减少实现稳定的耦合梁响应所需的钢筋。发现混凝土设计的剪应力为0.41 f_c〜'(1/2)MPa(5 f_c〜'(1/2)psi),其中f_c〜'是混凝土的抗压强度。除耦合梁测试外,还对两个带有预制HPFRC的4层耦合墙样本和常规混凝土耦合梁进行了横向位移反向测试。除了可以评估带有HPFRC耦合梁的耦合墙的抗震性能之外,还评估了在壁的塑料铰链区域中使用HPFRC作为放松横向墙加固的方法。两个耦合的壁试样的漂移能力至少为2.5%。 HPFRC耦合梁比普通混凝土梁更具延展性和抗破坏性。在墙体中加入HPFRC材料允许使用0.33 f_c〜'(1/2)MPa(4f_c〜'(1/2)psi)的混凝土设计剪应力容量,并在更宽的横向钢筋间距内限制了墙边界区域。

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