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Effect of immersion time of glass powder on mechanical properties of concrete contained glass powder as cement replacement

机译:玻璃粉的浸泡时间对玻璃粉作为水泥替代混凝土的力学性能的影响

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摘要

The goal of this work is to investigate the effect of immersion time of glass powder (GP) in water before mixing it with the other concrete ingredients on the fresh and hardened properties of concrete. Six immersion times (0, 1, 2, 3, 6 and 12 h) were investigated with different amount of GP as cement replacement (0, 2.5, 5, 10 and 20%).The dissolution of GP in water leads to form more Na ions than Ca ions, because Na ions have less mobility than Ca ions. The concentration of Na decreased as a function of immersion time as it bonds with the SiO2 on the surface of GP particles.Immediately after putting the glass powder in the water, the workability of concrete decreased with the increase of GP content due to the sorption of water molecules on GP particles. As the immersion time increased the workability of concrete increased with the amount of glass powder due to the bleeding effect of the water from the GP.The optimum compressive strength was obtained at 2.5 and 5% GP mixes and at 3 h and 6 h immersion time. At early age, the higher compressive strength is originated from the double effect of the development of pozzolanic reaction due to the increase of the free ions in the water before mixing with the concrete and the packing filling effect of glass powder. The densification of the transitional zone between the cement paste and the aggregate leads to higher compressive strength of concrete. Later, at long curing time, the increase of the compressive strength is correlated to the progress of the pozzolanic reaction of the GP. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是研究玻璃粉(GP)与其他混凝土成分混合之前在水中的浸泡时间对混凝土的新鲜和硬化性能的影响。研究了六次浸泡时间(0、1、2、3、6和12 h),用不同量的GP代替水泥(0、2.5、5、10和20%)。GP在水中的溶解导致形成更多Na离子比Ca离子多,因为Na离子的迁移率比Ca离子小。随着GP颗粒表面SiO2的键合,Na的含量随浸入时间而降低。将玻璃粉放入水中后,由于GP的吸附,混凝土的可加工性随GP含量的增加而降低。 GP颗粒上的水分子。随着浸泡时间的增加,由于GP渗水的影响,混凝土的可加工性随玻璃粉量的增加而增加。在2.5和5%GP混合料以及3小时和6小时的浸泡时间下,可获得最佳抗压强度。在早期,较高的抗压强度源自火山灰反应发展的双重效应,这是由于与混凝土混合之前水中游离离子的增加以及玻璃粉的填充作用所致。水泥浆和骨料之间过渡区的致密化导致混凝土的抗压强度更高。随后,在长的固化时间,抗压强度的增加与GP的火山灰反应的进行有关。 (C)2019 Elsevier Ltd.保留所有权利。

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