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Influence of humidity on the mechanical properties of polymer-modified cement-based repair materials

机译:湿度对聚合物改性水泥的修复材料力学性能的影响

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摘要

Portland cement-aluminate cement-hemihydrate gypsum ternary binder repair mortars, as a type of road repair material, have the advantages of fast hardening and early strength, micro-expansion, stable strength, and good mechanical performance. However, problems on high brittleness, fast loss of fluidity, and poor toughness are also encountered. The effects of styrene butadiene copolymer and styrene acrylate on the construction performance of a ternary binder repair mortar composed of Portland cement, aluminate cement, and hemihydrate gypsum and the effects of different curing humidity conditions on the mechanical properties of the polymer-umodified ternary repair mortar were investigated. Both polymers enhanced the fluidity and decreased the fluidity loss rate of the ternary binder cement paste and prolonged its setting time. Moreover, both polymers improved the toughness and reduced the water absorption of the ternary repair mortar in concordance with their filling effect and film-forming roles under different humidity curing conditions. Different curing humidity conditions affected the ettringite crystal morphology and polymer film formation of the polymer-modified ternary binder repair mortar. The polymer under natural curing conditions presented the best modification effect in terms of mechanical properties, and the inner structure was the densest of the repair mortar for the ternary binder. The toughness and flexural strength of the specimens were markedly improved. (C) 2020 Elsevier Ltd. All rights reserved.
机译:波特兰水泥 - 铝酸盐水泥 - 半水合石膏三元粘合剂修复砂浆,作为一种道路修复材料,具有快速硬化和早期强度,微膨胀,强度稳定,机械性能稳定的优点。然而,还遇到了高脆性,流动性快速丧失和韧性差的问题。苯乙烯丁二烯共聚物和苯乙烯丙烯酸苯乙烯对薄层水泥,铝酸盐水泥和半水水解石膏组成的三元粘合剂修复砂浆施工性能的影响及不同固化湿度条件对聚合物 - 柔顺型三元修复砂浆的力学性能的影响被调查了。两种聚合物增强了流动性并降低了三元粘合剂水泥浆料的流动性损失率,并延长了其凝固时间。此外,两种聚合物在不同湿度固化条件下的填充效果和成膜作用,改善了韧性并减少了三元修复砂浆的吸水率。不同的固化湿度条件影响了聚合物改性三元粘合剂修复研钵的Ettringite晶体形态和聚合物膜。在自然固化条件下的聚合物在机械性能方面呈现了最佳的改性效果,内部结构是三元粘合剂的修复砂浆的密集。标本的韧性和抗弯强度显着改善。 (c)2020 elestvier有限公司保留所有权利。

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