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Waste tire rubber and pozzolans in concrete: A trade-off between cleaner production and mechanical properties in a greener concrete

机译:混凝土中的废轮胎橡胶和火山灰:在更绿色的混凝土中清洁生产和机械性能之间的权衡

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This study presents a cleaner production of a concrete by incorporating waste rubber chips and pozzolans to make a greener concrete through partial replacement of aggregates and cement. For this purpose, aggregate was replace by 10 and 15% by graded waste rubber (RB) and cement was partially replaced by pozzolans, namely silica fume (SF) and zeolite (ZE) by 10%. Fresh and hardened properties of the concrete was investigated through slump, compressive strength and elasticity modulus. The effect of RB, SF and ZE addition on fresh properties was assessed which indicated 5% and 14.6% slump reduction for 10% and 15% rubber replacement, 4% increase due to SF addition, and 4% decrease as a result of ZE addition. The microstructure of the pozzolans was also investigated using SEM micrographs. Compressive strengths of the samples were measured at different ages of 3, 7, 28, and 42 days and compared with ACI 318 equation in order to modify the coefficients for the greener concrete. Elasticity moduli of the concrete mixes were determined according to ASTM C469. The results indicated that 10% and 15% rubber replacement led to 30% and 50% strength drop, respectively. The corresponding reduction in elastic modulus was observed as 14% and 32%. The elastic modulus was also estimated using relationships presented in different standards based on compressive strength. It was found that ACI 318 relationship underestimates the elastic modulus for which the correction factors were determined. Three different regression models namely Linear, Logarithmic, and Power were also developed in order to predict the compressive strength of greener concrete. Power regression with R-2 = 0.92 proved to be more powerful among other assessed regression models. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种更清洁的混凝土生产方法,将废旧的橡胶碎屑和火山灰掺入,通过部分替换骨料和水泥来制造更绿色的混凝土。为此,用梯度废橡胶(RB)代替骨料10%和15%,而火山灰即硅灰(SF)和沸石(ZE)代替水泥部分10%。通过坍落度,抗压强度和弹性模量研究了混凝土的新鲜和硬化性能。评估了RB,SF和ZE添加对新鲜性能的影响,表明更换10%和15%的橡胶后坍落度降低了5%和14.6%,由于添加SF而增加了4%,由于添加ZE而减少了4% 。还使用SEM显微照片调查了火山灰的微观结构。在3、7、28和42天的不同年龄下测量样品的抗压强度,并与ACI 318方程进行比较,以修改较绿色混凝土的系数。根据ASTM C469确定混凝土混合物的弹性模量。结果表明,橡胶替代量为10%和15%时,强度下降分别为30%和50%。观察到相应的弹性模量降低为14%和32%。还使用基于抗压强度的不同标准中提供的关系来估算弹性模量。发现ACI 318关系低估了确定校正因子的弹性模量。为了预测绿色混凝土的抗压强度,还开发了三种不同的回归模型,即线性,对数和幂。在其他评估的回归模型中,R-2 = 0.92的幂回归被证明更有效。 (C)2019 Elsevier Ltd.保留所有权利。

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