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Combined Economic and Mechanical Performance Optimization of Recycled Aggregate Concrete with High Volume of Fly Ash

机译:高掺量粉煤灰再生骨料混凝土经济与力学性能联合优化。

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This study intends to evaluate high and low-strength concrete mixes made with high volume of fly ash (FA) and recycled concrete aggregates (RCA) from both a mechanical and economic point of view. For this purpose, the mechanical characteristics of concrete, namely compressive strength ( f cm ), splitting tensile strength ( f ctm ), and modulus of elasticity (E cm ) were correlated with the cost of 1 m 3 of concrete mixes, taking into account the most common scenarios (e.g., cost of the raw materials, transportation between supplier and concrete plant, and mixing procedure) in the centre of Portugal. The results show that the incorporation of FA and RCA are detrimental to the mechanical properties of concrete. E cm is predominantly influenced by RCA, and “ f cm ” and “ f ctm ” are mainly controlled by FA incorporation. However, after a given age, the rate of the strength development ( f cm , f ctm and E cm ) of RCA concrete containing FA significantly accelerates over time relative to the reference concrete (without FA and RCA) and to the mixes made with either RCA or FA. Furthermore, the cost of concrete does not significantly change by incorporating RCA. The use of superplasticizer (SP) significantly increases the cost of concrete. However, the higher cost of concrete due to the use of SP can be offset by replacing cement with FA. Regarding the optimization process, concrete mixes with the lowest cost may not necessarily be the optimum choice regarding cost efficiency. In fact, the mechanical properties of concrete also need to be considered to aid the decision on the optimal concrete mix. Finally, the results show that the optimum mixes in terms of cost and mechanical characteristics are mostly the ones made with simultaneous incorporation of RCA, FA, and SP, rather than with their individual incorporation.
机译:这项研究旨在从机械和经济角度评估由大量粉煤灰(FA)和再生混凝土骨料(RCA)制成的高强度和低强度混凝土混合物。为此,将混凝土的机械特性,即抗压强度(f cm),劈裂抗拉强度(f ctm)和弹性模量(E cm)与1 m 3混凝土混合物的成本相关联葡萄牙中部最常见的情况(例如,原材料成本,供应商与混凝土厂之间的运输以及搅拌程序)。结果表明,FA和RCA的掺入对混凝土的力学性能有害。 E cm主要受RCA的影响,“ f cm”和“ f ctm”主要受FA掺入的控制。但是,在给定的年龄后,相对于参比混凝土(不含FA和RCA)以及由两种材料制成的混合料,含FA的RCA混凝土的强度发展速率(f cm,f ctm和E cm)随时间显着加快。 RCA或FA。此外,通过加入RCA,混凝土的成本不会显着变化。高效减水剂(SP)的使用大大增加了混凝土的成本。但是,通过使用SP代替水泥可以抵消由于使用SP引起的混凝土成本的增加。关于优化过程,就成本效率而言,成本最低的混凝土混合物不一定是最佳选择。实际上,还需要考虑混凝土的机械性能,以帮助确定最佳的混凝土配合比。最后,结果表明,就成本和机械性能而言,最佳混合料主要是同时掺入RCA,FA和SP而不是单独掺入。

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