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Effects of MgO-based expansive additive on compensating the shrinkage of cement paste under non-wet curing conditions

机译:基于MgO的膨胀剂对非湿养护条件下水泥浆收缩补偿的影响

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摘要

Expansive additives are widely used to compensate the drying shrinkage of cement-based materials to avoid cracking. However, the expansion of conventional ettringite-bearing expansive additive depends strongly on wet curing and is mainly generated at early age, and hence it may not work well in concretes without sufficient water supply or exhibit long-term shrinkage. MgO-based expansive additive, for which less water is needed for the formation of Mg(OH)_2 in comparison to ettringite, was prepared and its compensating effect on the autogenous shrinkage and late age thermal shrinkage of Portland and fly ash cement pastes at low water-to-cement ratio was investigated. The tests were conducted under sealed condition, so that the moisture exchange with the environment was prevented. Results show that, even under the non-wet curing condition, the shrinkages of cement pastes can be compensated effectively. Microstructure analysis by scanning electron microscope indicates that the macro-expansion of cement pastes is probably caused by the locally restrained expansion of MEA due to the hydration of MgO.
机译:膨胀添加剂被广泛用于补偿水泥基材料的干燥收缩,以避免开裂。然而,常规的含钙矾石的膨胀剂的膨胀强烈依赖于湿固化,并且主要在早期老化时产生,因此,如果没有足够的供水或长期收缩,它在混凝土中可能无法很好地发挥作用。制备了基于钙镁矾的膨胀添加剂,与钙矾石相比,其形成水所需的水较少,而镁钙(Mg(OH)_2)的补偿及其对硅酸盐水泥和粉煤灰水泥浆的自生收缩和后期热收缩的补偿作用研究了水灰比。在密封条件下进行测试,以防止水分与环境的交换。结果表明,即使在非湿固化条件下,水泥浆的收缩也能得到有效补偿。扫描电子显微镜的微观结构分析表明,水泥浆的宏观膨胀很可能是由于MgO的水合作用导致MEA局部受阻而引起的。

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