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Core-Shell Morphology of Redispersible Powders in Polymer-Cement Waterproof Mortars

机译:聚合物水泥防水砂浆中可再分散粉末的核壳形态

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摘要

Redispersible powders based on soft core-hard shell polymer particles can be used as additives in polymer-cement mortars. The role of this morphology on the spray-drying production of these powders and on the crack-bridging properties of the corresponding cement-based membranes is investigated. Different polymer latexes at high solid content with varied core-shell ratio, shell thickness and chemical composition (hardness) were prepared from styrene and 2-ethylhexyl acrylate monomers via semi-batch emulsion polymerization. The latexes were characterized in terms of size, composition, and glass transition temperature (Tg), and spray-dried to obtain redispersible polymer powders (RPPs) using poly (vinyl alcohol) and limestone powder as anti-caking agents. The polymer powders were mixed with a mortar mixture and redispersed in water to produce cement-based membranes, which were tested for crack-bridging properties at different temperatures. The results showed that it was not possible to spray-dry a dispersion of homogeneous polymer particles with Tg of −25 C, unless these particles are protected by much harder (high Tg) shell. In particular, it was observed that a thicker shell improved the spray-ability, but lowered the crack-bridging properties of the produced membrane. A trade-off between these two was revealed to be the key for the optimal design of the polymer nanoparticles, as proven by the systematic study of the core-shell morphology reported in this work. The best compromise was shown to consist of particles larger than 300 nm, shell thickness of about 5 nm, and core-shell ratio of 97%, with styrene content in the shell not larger than 80% to avoid excessive hydrophobicity.
机译:基于软核-硬壳聚合物颗粒的可再分散粉末可用作聚合物水泥砂浆中的添加剂。研究了这种形态对这些粉末的喷雾干燥生产以及相应的水泥基膜的裂桥性能的影响。通过半间歇乳液聚合,由苯乙烯和丙烯酸2-乙基己酯单体制备了具有高固含量,具有不同的核-壳比,壳厚度和化学组成(硬度)的不同聚合物胶乳。乳胶的尺寸,组成和玻璃化转变温度均经过表征(T <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1”溢出=“滚动” > g ),然后喷雾干燥以使用聚苯乙烯获得可再分散的聚合物粉末(RPP) (乙烯醇)和石灰石粉作为抗结块剂。将该聚合物粉末与砂浆混合物混合,然后再分散在水中,制成水泥基膜,然后在不同温度下测试其裂缝桥联性能。结果表明不可能用T g /www.w3.org/1998/Math/MathML“ id =” mm3“溢出=” scroll“> < / mrow> C,除非这些粒子受到更难的保护(高T g )外壳。特别地,观察到较厚的壳改善了喷雾能力,但是降低了所制得的膜的裂纹桥接性能。揭示了两者之间的权衡是聚合物纳米颗粒最佳设计的关键,这一点已通过对这项工作中报道的核-壳形态的系统研究得以证明。最好的折衷方案是由大于300 nm的颗粒,约5 nm的壳厚度和97%的核壳比组成,壳中的苯乙烯含量不大于80%,以避免过多的疏水性。

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