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Compressive behaviour of concrete structures incorporating recycled concrete aggregates, rubber crumb and reinforced with steel fibre, subjected to elevated temperatures

机译:高温下掺入再生混凝土骨料,橡胶屑和钢纤维增强的混凝土结构的抗压性能

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In this paper, effects of elevated temperatures on the compressive behaviour of rubber crumb and steel fibre reinforced recycled aggregate concrete (RSRAC) are presented. RSRAC is a new concrete material proposed by the authors. In the RSRAC, steel fibre is used to improve the performances of concrete before exposure (e.g. ductility, cracking) and after exposure (explosive spalling) to evaluated temperature, and the inclusion of rubber particles is mainly for the consideration of environment protection and reducing the risk of spalling after exposure to high temperatures. A series of concrete mixes were prepared with Ordinary Portland Cement (OPC), recycled concrete coarse aggregates (RCA) or natural coarse aggregates (NCA), 1% steel fibre (by volume) and rubber particles with different fine aggregate (sand) replacement ratios. The compressive properties, including compressive strength, Young's modulus (stiffness), stress -strain curves and energy absorption capacity (toughness) of the different concrete mixes subjected to elevated temperatures (25 ℃, 200 ℃, 400 ℃ and 600 ℃), were obtained in accordance to ASTM standards. The results of weight loss and failure modes were recorded and presented in this study. The results showed that both the compressive strength and stiffness of concrete mixes decreased after exposure to elevated temperature, with higher replacement of fine aggregate by rubber leading to lower compressive strength and stiffness magnitude. Nevertheless, rubber crumbs significantly enhanced the energy absorption capacity and explosive spalling resistance.
机译:本文提出了高温对橡胶屑和钢纤维增强再生骨料混凝土(RSRAC)的抗压性能的影响。 RSRAC是作者提出的一种新的具体材料。在RSRAC中,钢纤维用于改善混凝土在暴露于评估温度之前(例如,延展性,开裂)和暴露(爆炸性剥落)后的性能,橡胶颗粒的加入主要是出于环境保护的考虑并减少暴露在高温下有剥落的危险。使用普通硅酸盐水泥(OPC),再生混凝土粗骨料(RCA)或天然粗骨料(NCA),1%的钢纤维(按​​体积计)和橡胶颗粒(具有不同的细骨料(砂)替代率)制备了一系列混凝土混合物。 。获得了在高温(25℃,200℃,400℃和600℃)下不同混凝土拌合料的抗压性能,包括抗压强度,杨氏模量(刚度),应力-应变曲线和能量吸收能力(韧性)。符合ASTM标准。体重减轻和失败模式的结果被记录并呈现在这项研究中。结果表明,混凝土混合物的抗压强度和刚度在暴露于高温后均下降,橡胶替代细骨料的程度更高,导致抗压强度和刚度幅度降低。然而,橡胶屑显着增强了能量吸收能力和抗爆炸剥落性。

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