INFLUENCE OF SULFATE ION ENVIRONMENT ON THE CEMENT MATRIX MODIFIED BY REDISPERSIBLE POLYMERS

Yu. E. Kovalenko, V. Tokarchuk, Svitlana Kovaleko
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Abstract

Injection of sulfate ions into the cement matrix with water by wet spraying due to high moist in the environment is the reason of the deterioration acceleration and durability decrease with time. The effects of introduction of redispersible polymers (RP) and calcium formate on the increasing of the durability and decreasing of the deterioration effect caused by sulfate ions on the cement matrix were studied. Vinyl-acetate/versatate, vinyl-acrylic copolymer and calcium formate were mixed into nine separate cement mixtures at a concentration of additives 1 %, 3 % and 5 % respectively. Three different sulfate ion environment were sprayed through the fog environment at high moist concentration using a salt spray device “Salt Fog Chamber”. Test results showed that different additive in different sulfate environment has various affects both on the deceleration of the structure deterioration and the reduction of the strength of cement matrix. Vinyl-acetate/versatate and calcium formate in concentrations of 1% and 3% have high stability while maintaining strength at the level of exploitational properties of the matrix. While, vinyl-acrylic copolymer at 5 % has more resistance to strength loss after 168 days of withholding in an aggressive environment compared to 1 % and 3 %. Detailed observation of the structure formation of the cement matrix at 168 days shows formation that relate both to the hydrated cement minerals and complexes of organic salts. This formation allowed at the late age of the experiment to decrease the strength loss under intensive impact of SO42– migration through the matrix due to the encapsulating of cement minerals at early ages of hydration in polymer films with RP and active early formation of Ca(OH)2 for formate. This allowed the cement matrix to retain its shape for a long periods, become more stable, reduce the washing out of soluble cement components at early ages, and reduce the content of active Ca by bonding it into semisoluble compositions that cause the decreasing of the negative effect on cement matrix by SO42–.
硫酸盐离子环境对可再分散聚合物改性水泥基体的影响
由于环境湿度高,采用湿喷涂的方式向水泥基体中注入硫酸盐离子,是导致其劣化加速、耐久性随时间降低的原因。研究了引入可再分散聚合物(RP)和甲酸钙对水泥基体耐久性的提高和硫酸盐离子对其劣化效应的影响。将醋酸乙烯酯/versatate、丙烯酸乙烯酯共聚物和甲酸钙分别以1%、3%和5%的添加剂浓度掺入9种水泥混合物中。采用“盐雾室”盐雾装置,在高湿浓度的雾环境中喷洒三种不同的硫酸盐离子环境。试验结果表明,在不同的硫酸盐环境下,不同的添加剂对水泥基体结构劣化的减速和强度的降低都有不同的影响。在1%和3%的浓度下,醋酸乙烯酯和甲酸钙具有很高的稳定性,同时强度保持在基质的开发性能水平。与1%和3%相比,5%的乙烯-丙烯酸共聚物在恶劣环境中保留168天后具有更强的抗强度损失能力。对168天水泥基质结构形成的详细观察表明,形成与水化水泥矿物和有机盐复合物有关。在实验后期,由于水泥矿物在聚合物膜水化早期被RP包封,以及甲酸钙(OH)2的活跃早期形成,使得SO42 -通过基质迁移的强烈冲击下的强度损失得以减少。这使得水泥基质能够长时间保持其形状,变得更加稳定,减少了早期可溶性水泥成分的冲刷,并通过将其结合到半可溶性成分中来降低活性钙的含量,从而减少了SO42 -对水泥基质的负面影响。
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