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Experimental study on performance of rubber particle and steel fiber composite toughening concrete

机译:橡胶颗粒与钢纤维复合增韧混凝土性能的试验研究

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In this paper the effects of steel fiber and rubber particles on the mechanical properties, flexural behavior, compression behavior and seismic behavior of high strength concrete are studied. The results show that the compressive strength of concrete flexural strength, the elastic modulus of concrete with 5% rubber particles all decreased. After adding 0.9% steel fibers the compressive strength and elastic modulus increased slightly, but the flexural strength increased significantly. Rubber particles have an slight effect on the flexural toughness of concrete. While after adding 0.9% steel fiber the flexural toughness of concrete improve significantly, the failure mode changed from brittle fracture to ductile fracture with multiple cracking phenomenon and the descending segment of load-deflection curve becomes less steep. Rubber particles and steel fibers all can improve concrete compressive toughness obviously, increased the ductility and deformation capacity. After adding steel fibers and rubber particles, because the compressive strength of concrete reduced, the bearing capacity of seismic columns decreased slightly but the hysteresis loop changed fuller significantly, the ductility and energy dissipation capacity enhanced significantly and stiffness degradation become slower. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了钢纤维和橡胶颗粒对高强度混凝土力学性能,弯曲性能,压缩性能和抗震性能的影响。结果表明,混凝土的抗压强度,橡胶颗粒含量为5%的混凝土的弹性模量均降低。加入0.9%的钢纤维后,抗压强度和弹性模量略有增加,但抗弯强度却明显增加。橡胶颗粒对混凝土的弯曲韧性影响很小。加入0.9%的钢纤维后,混凝土的抗弯韧性明显提高,破坏模式从脆性断裂变为延性断裂,出现多处开裂现象,荷载-挠度曲线的下降段不那么陡峭。橡胶颗粒和钢纤维均可明显改善混凝土的抗压韧性,增加延展性和变形能力。加入钢纤维和橡胶颗粒后,由于混凝土的抗压强度降低,抗震柱的承载力略有下降,但磁滞回线明显变满,延性和耗能能力明显增强,刚度退化变慢。 (C)2017 Elsevier Ltd.保留所有权利。

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