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Shrinkage-reducing measures and mechanisms analysis for alkali-activated coal gangue-slag mortar at room temperature

机译:室温下碱活性煤矸石渣砂浆的收缩降低措施及机制分析

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摘要

By using slag as a calcium source, high-strength alkali-activated coal gangue-slag (AACGS) cementitious material can be prepared. Given that higher drying shrinkage at room temperature is detrimental to the expanded engineering application of the material, this paper studies several methods for reducing drying shrinkage such as shrinkage-reducing admixture (SRA), polypropylene fiber (PPF), sulfate-enriched materials (gypsum, high-performance concrete expansive admixture (HCSA), U-type expansive admixture (UEA)) and water retaining admixture (WRA). Meanwhile, the mechanisms for drying shrinkage compensation were deeply analyzed by mercury intrusion porosimetry (MIP) and scanning electron microscopy (SEM). Experimental results show that the addition of admixtures to reduce the drying shrinkage of AACGS mortar is related to the change of pore size of 2-5 nm, and reduces the volume fraction of the minimum aperture. At room temperature, reducing the surface tension of pore solution, generating expansion products, increasing compressive strength and improving pore structure distribution by adding admixtures are important measures to reduce drying shrinkage. SRA exhibits the strongest capacity to compensate for drying shrinkage, followed by UEA, WRA, HCSA, PPF and gypsum. Despite better compensation for drying shrinkage with the increase in SRA dosage, the reduction of strength value becomes more drastic. The findings of this study provide substantial experimental foundations and in-depth theoretical analyses for the drying shrinkage compensation of AACGS binary cementitious materials. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过使用渣作为钙源,可以制备高强度碱活性煤矸石 - 渣(Aacgs)水泥材料。考虑到室温下的较高的干燥收缩对材料的扩展工程应用有害,本文研究了几种用于减少干燥收缩的方法,例如收缩降低的混合物(SRA),聚丙烯纤维(PPF),富含硫酸盐的材料(石膏,高性能混凝土膨胀混合物(HCSA),U型膨胀混合物(UEA))和水保留混合物(WRA)。同时,通过汞侵入孔隙瘤(MIP)和扫描电子显微镜(SEM)深化干燥收缩补偿机制。实验结果表明,加入减少Aacgs砂浆的干燥收缩的混合物与孔径2-5nm的变化有关,降低最小孔径的体积分数。在室温下,降低孔隙溶液的表面张力,通过添加混合物产生膨胀产品,增加抗压强度,提高孔隙结构分布是减少干燥收缩的重要措施。 SRA表现出最强的能力来补偿干燥收缩,其次是UEA,WRA,HCSA,PPF和石膏。尽管随着SRA剂量的增加,优化干燥收缩的补偿,但强度值的降低变得更加激烈。该研究的结果为Aacgs二元胶凝材料的干燥收缩补偿提供了大量的实验基础和深入的理论分析。 (c)2020 elestvier有限公司保留所有权利。

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