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Hygral Behavior of Superabsorbent Polymers with Various Particle Sizes and Cross-Linking Densities

机译:各种粒径和交联密度的超吸收性聚合物的水合行为

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摘要

This study focuses on investigating the effects of particle size and cross-linking density on the hygral behavior of superabsorbent polymers (SAPs), which are increasingly used as an internal curing material for high-performance concrete. Four SAPs with different mean particle diameters and cross-linking densities were tested under controlled wetting and drying conditions to measure free absorption and desorption kinetics. Absorption capacities of SAPs under actual mixing conditions were additionally measured and verified by means of mortar flow and semi-adiabatic hydration heat measurements. In addition, the effects of SAP type and dosage (i.e., 0.2, 0.4, and 0.6% by mass of cement) on the mechanical properties of hardened mortar were assessed. The results indicated that: (1) the absorption capacity increased with decreased cross-linking density and increased particle size under both load-free and mixing conditions; and (2) the greater the cross-linking density and the lower the particle size, the shorter the desorption time. It was also confirmed that while the early-age mechanical properties were more related with the gel strength of swollen SAP, the later-age mechanical properties were more affected by the water retention capacity and spatial distribution of SAP in the matrix.
机译:这项研究的重点是研究粒径和交联密度对超吸收性聚合物(SAPs)的水凝胶行为的影响,该聚合物越来越多地用作高性能混凝土的内部固化材料。在受控的润湿和干燥条件下测试了四种具有不同平均粒径和交联密度的SAP,以测量自由吸收和解吸动力学。此外,还通过砂浆流动和半绝热水合热测量法来测量和验证SAP在实际混合条件下的吸收能力。另外,评估了SAP类型和剂量(即水泥的0.2、0.4和0.6质量%)对硬化砂浆的机械性能的影响。结果表明:(1)在无载和混合条件下,吸收能力均随着交联密度的降低和粒径的增加而增加; (2)交联密度越大,粒径越小,解吸时间越短。还证实了,尽管早期力学性能与溶胀的SAP的凝胶强度更相关,但后期力学性能更受基质中SAP的保水能力和空间分布的影响。

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