Krafcik Matthew J, Macke Nicholas D, Erk Kendra A
School of Materials Engineering, Purdue University, West Lafayette, IN 47907, USA.
Gels. 2017 Nov 25;3(4):46. doi: 10.3390/gels3040046.
This research article will describe the design and use of polyelectrolyte hydrogel particles as internal curing agents in concrete and present new results on relevant hydrogel-ion interactions. When incorporated into concrete, hydrogel particles release their stored water to fuel the curing reaction, resulting in reduced volumetric shrinkage and cracking and thus increasing concrete service life. The hydrogel's swelling performance and mechanical properties are strongly sensitive to multivalent cations that are naturally present in concrete mixtures, including calcium and aluminum. Model poly(acrylic acid(AA)-acrylamide(AM))-based hydrogel particles with different chemical compositions (AA:AM monomer ratio) were synthesized and immersed in sodium, calcium, and aluminum salt solutions. The presence of multivalent cations resulted in decreased swelling capacity and altered swelling kinetics to the point where some hydrogel compositions displayed rapid deswelling behavior and the formation of a mechanically stiff shell. Interestingly, when incorporated into mortar, hydrogel particles reduced mixture shrinkage while encouraging the formation of specific inorganic phases (calcium hydroxide and calcium silicate hydrate) within the void space previously occupied by the swollen particle.
这篇研究文章将描述聚电解质水凝胶颗粒作为混凝土内部养护剂的设计与应用,并展示有关水凝胶-离子相互作用的新结果。当水凝胶颗粒掺入混凝土中时,它们会释放储存的水分以促进养护反应,从而减少体积收缩和开裂,进而延长混凝土的使用寿命。水凝胶的溶胀性能和力学性能对混凝土混合物中天然存在的多价阳离子(包括钙和铝)非常敏感。合成了具有不同化学组成(丙烯酸(AA)-丙烯酰胺(AM)单体比例)的基于聚(丙烯酸(AA)-丙烯酰胺(AM))的模型水凝胶颗粒,并将其浸入钠、钙和铝盐溶液中。多价阳离子的存在导致溶胀能力下降,并改变了溶胀动力学,以至于一些水凝胶组合物表现出快速消溶胀行为并形成机械坚硬的外壳。有趣的是,当水凝胶颗粒掺入砂浆中时,它们会减少混合物的收缩,同时促进在先前被溶胀颗粒占据的孔隙空间内形成特定的无机相(氢氧化钙和硅酸钙水合物)。