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Performance of self-compacting concrete with manufactured crushed sand

机译:制造碎沙自压制混凝土的性能

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Self-compacting concretes (SCC) are highly fluid concrete which can flow without any vibration. Their composition requires a large quantity of fines to limit the risk of bleeding and segregation. The use of crushed sand rich in limestone fines could be an adequate solution for both economic and environmental reasons. This paper investigates the influence of quarry limestone fines from manufactured crushed sand on rheological, mechanical and durability properties of SCC. For this purpose, five mixtures of SCC with different limestone fines content as substitution of crushed sand (0, 5, 10, 15 and 20%) were prepared at constant water-to-cement ratio of 0.40 and 490 kg/m(3) of cement content. Fresh SCC mixtures were tested by slump flow test, V-funnel flow time test, L-box height ratio, segregation resistance and rheological test using a rheometer. Compressive and flexural strengths of SCC mixtures were evaluated at 28 days. Regarding durability properties, total porosity, capillary water absorption and chloride-ion migration were studied at 180 days. For the two test modes in fresh state, the results indicated compatibility between slump flow/yield stress (tau(0)) and V-funnel flow time/plastic viscosity (mu). Increasing the substitution level of limestone fines in SCC mixtures, contributes to the decrease of the slump flow and the yield stress. All SCC mixtures investigated achieved adequate filling, adequate passing ability and exhibit no segregation. Moreover, the inclusion of limestone fines as crushed sand substitution reduces the capillary water absorption, chloride-ion migration and consequently enhances the durability performance.
机译:自压力混凝土(SCC)是高度流体的混凝土,可以在没有任何振动的情况下流动。它们的作文需要大量的细粒来限制出血和隔离的风险。使用富含石灰石含量的碎石可能是经济和环境原因的适当解决方案。本文研究了采石场石灰石料从制造的压碎砂对SCC的流变,机械和耐久性性能的影响。为此目的,以0.40和490kg / m(3)的恒定水 - 水泥比(3)制备具有不同石灰质含量的SCC的五种SCC混合物作为碎砂(0,5,10,15和20%)的替代物制备水泥含量。使用流变仪通过坍落度测试,V电池流量试验,L箱高度比,隔离抗性和流变测试来测试新鲜的SCC混合物。 SCC混合物的压缩和抗弯强度在28天时评估。关于耐久性性质,在180天中研究了总孔隙率,毛细管吸水和氯离子迁移。对于新状态的两个测试模式,结果表明坍落度/屈服应力(TAU(0))和V漏斗流量/塑料粘度(MU)之间的相容性。增加SCC混合物中石灰石细粒的替代水平有助于降低坍落度和屈服应力。研究的所有SCC混合物都取得了足够的填充,充分的通过能力并没有偏析。此外,将石灰石含量作为碎砂取代的包含降低了毛细管吸水,氯离子迁移,从而提高了耐久性性能。

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