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The effects of nanosilica on the fresh and hardened properties of 3D printable mortars

机译:纳米硅对3D可印刷砂浆新鲜和硬化性能的影响

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摘要

This study presents the experimental results of an investigation on the effects of nanosilica (NS) on the material characteristics of printable mortars used for additive manufacturing. Printable cement mortars based on Ordinary Portland Cement, limestone filler and silica sand were modified with different dosages of nanosilica (from 2% to 6% by weight of binder) and its influence on their hydration, rheological, mechanical and transport properties was assessed. The study showed that NS accelerates significantly the setting and hardening of printable mortar, while reducing its open time. Moreover, an increment of yield stress, together with an increment in NS dosage, was found to have occurred. The incorporation of an optimal NS dosage results in a noticeable increase in the compressive strength and alteration of the pore structure as determined by the MIP measurements. Moreover, transport properties of the produced mortar are significantly improved due to incorporation of NS. In addition to the microstructure refinement, Micro-CT and scanning electron microscopy (SEM) studies revealed that 3D printed mortars exhibit pore anisotropy in accordance with the printing direction. However, incorporation of NS in the mixture resulted in improved buildability, thus decreasing pore anisotropy. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:本研究介绍了对纳米硅(NS)对添加剂制造的可印刷砂浆材料特性的研究的实验结果。基于普通植物水泥,石灰石填料和二氧化硅砂的可印刷水泥砂浆用不同剂量的纳米硅(2%至6重量%的粘合剂)改性,评估其水合,流变,机械和运输性能的影响。该研究表明,NS显着加速可印刷砂浆的设置和硬化,同时降低其开放时间。此外,发现屈服应力的增量与NS剂量的增量一起发现。最佳NS剂量的掺入导致通过MIP测量确定的压缩强度和孔结构的改变的显着增加。此外,由于掺入NS,所产生的砂浆的运输性能显着改善。除了微观结构细化外,微型CT和扫描电子显微镜(SEM)研究表明,3D印刷砂浆根据印刷方向表现出孔各向异性。然而,在混合物中掺入NS导致改善的易用性,从而降低了孔隙各向异性。 (c)2021提交人。 elsevier有限公司出版

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