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Combined use of waste glass powder and cullet in architectural mortar

机译:在建筑砂浆中结合废玻璃粉和Cullet的使用

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The use of 100% waste glass cullet (WGC) as fine aggregates in architectural cement-based mortar had been proven to be feasible in previous works. This paper reports a further study on investigating the influence of using waste glass powder (WGP) as a supplementary cementitious material on the properties of glass-based architectural cement mortars. The experimental results showed a good linear relationship between the particle size of WGP and the flow values of the fresh mortar, revealing that the particle size of WGP played an important role in controlling the workability. For the hydration of white cement, the inclusion of WGP not only affected the second exothermic peak of hydration but also changed the third peak. In particular, the result indicated that the use of finer WGP had an advantage in increasing the flexural strength of the cement mortar when compared with the corresponding compressive strength, which was attributed to the morphological and pozzolanic effect of WGP. In addition, the very fine WGP could act as micro-fibers and micro-aggregates in filling the microstructure of the mortar. At 90 days of curing, the mortar Prepared with finer WGP showed a distinct improvement in strength due to the improved interfacial transition zone and the pore-size refinement. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在以前的作品中已被证明在建筑水泥基砂浆中使用100%废纸Cullet(WGC)作为细骨料。本文报道了进一步研究研究使用废玻璃粉末(WGP)作为辅助水泥材料对玻璃基于架构水泥砂浆的性质的影响。实验结果表明,WGP的粒度与新砂浆的流量之间的良好线性关系,揭示了WGP的粒度在控制可加工性方面发挥了重要作用。对于白水泥的水合,包含WGP的含量不仅影响了水化的第二个放热峰,而且还改变了第三峰。特别地,结果表明,与相应的抗压强度相比,使用更细的WGP的使用具有增加水泥砂浆的弯曲强度,这归因于WGP的形态学和火山灰作用。此外,非常细的WGP可以充当填充砂浆的微观结构的微纤维和微聚集体。在90天的固化下,由于改善的界面过渡区和孔径细化,用更细的WGP制备的砂浆显示出明显的强度改善。 (c)2017 Elsevier Ltd.保留所有权利。

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