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Seismic performance of steel plate reinforced high toughness concrete coupling beams with different steel plate ratios

机译:不同钢板配比的钢板高强混凝土耦合梁的抗震性能

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Embedded steel plate reinforced concrete (PRC) coupling beams are newly introduced into the family of coupling beams to improve the seismic behavior of reinforced concrete (RC) coupling beams. However, the brittle crush and spalling of concrete in these composite members noticeably reduce their deformation performance and energy-dissipating capacity which largely deteriorate the efficiency of this combination. Considering this noteworthy shortcoming, in this paper the authors propose a novel type of composite coupling beams, which is entitled steel plate reinforced high toughness concrete (PRHTC) coupling beam. This novel member replaces the conventional reinforced concrete with the high toughness concrete (HTC) which is a sort of pseudo strain hardening cementitious composites exhibiting quasi-ductile behaviors. This study mainly investigates the seismic performance of PRHTC deep coupling beams (span-to-depth ratio, 1/h = 1.5) with various steel plate reinforcement ratios. The test results indicate that the PRHTC coupling beams exhibit a ductile flexural failure mechanism with excellent energy dissipation capability. The high toughness concrete in this composite member displays multiple cracking pattern and maintains desirable integrity. All specimens attained high-level ductility factors exceeding 5.5, survived large rotations ranging from 0.064 to 0.078 rad, manifested superior stiffness retention capacity and strength retention capacity. The steel plate ratio ranging from 4.31% to 6.47% is proven to be appropriate and effective for maintaining high ductility and rotation deformability of the PRHTC coupling beams in this paper.
机译:嵌入式钢板-混凝土(PRC)耦合梁被新引入耦合梁系列中,以改善钢筋混凝土(RC)耦合梁的抗震性能。然而,这些复合构件中的混凝土的脆性压碎和剥落显着降低了它们的变形性能和耗能能力,这大大降低了该组合的效率。考虑到这个明显的缺点,在本文中,作者提出了一种新型的复合材料耦合梁,称为钢板增强高韧性混凝土(PRHTC)耦合梁。这种新颖的构件用高韧性混凝土(HTC)代替了传统的钢筋混凝土,而HTC是一种具有准延展性能的伪应变硬化胶凝复合材料。这项研究主要研究具有不同钢板加固率的PRHTC深耦合梁(跨深比,1 / h = 1.5)的抗震性能。测试结果表明,PRHTC耦合梁具有良好的耗能能力,具有良好的延性挠曲破坏机理。该复合构件中的高韧性混凝土显示出多种开裂图案并保持理想的完整性。所有标本均达到超过5.5的高延展性因子,在0.064至0.078 rad的大旋转范围内仍可幸存,表现出优异的刚度保持能力和强度保持能力。本文证明钢板比例在4.31%至6.47%之间是合适且有效的,以保持PRHTC耦合梁的高延展性和旋转变形能力。

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