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Study on the drying shrinkage of alkali-activated coal gangue-slag mortar and its mechanisms

机译:碱活化煤石砂浆的干缩及其机理研究

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摘要

This study mainly explores the impacts of slag content, modulus of alkali activator and alkali-activator solid content on the setting time, strength and drying shrinkage of alkali-activated coal gangue-slag (AACGS) mortar. In addition, the drying shrinkage mechanisms are analyzed in-depth by using MIP and SEM-EDS. The test results show that AACGS mortar exhibits greater drying shrinkage than cement mortar. It is found that higher slag content and sodium silicate modulus will cause greater drying shrinkage. The unreacted coal gangue plays the role of filling and skeleton and inhibits the drying shrinkage of AACGS specimens. However, the collapse and recombination of the gel produced by the polymerization reaction lead to the decrease of the specimens volume, the refinement of the internal pore structure, and the increase of the capillary tensile stress. The drying shrinkage is characterized by incomplete elasticity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究主要探讨炉渣含量,碱活化剂模量和碱活化剂固含量对碱活化煤石砂浆(AACGS)砂浆的凝结时间,强度和干燥收缩率的影响。此外,使用MIP和SEM-EDS对干燥收缩机理进行了深入分析。测试结果表明,ACAGS砂浆比水泥砂浆具有更大的干燥收缩率。发现较高的炉渣含量和硅酸钠模量将引起较大的干燥收缩。未反应的煤石起着填充和骨架的作用,并抑制了AACGS标本的干燥收缩。然而,由聚合反应产生的凝胶的塌陷和复合导致样品体积的减少,内部孔结构的细化以及毛细管拉伸应力的增加。干燥收缩的特征在于不完全的弹性。 (C)2019 Elsevier Ltd.保留所有权利。

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