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Effect of ionic crosslinking on the swelling and mechanical response of model superabsorbent polymer hydrogels for internally cured concrete

机译:离子交联对内部固化混凝土模型超吸收性聚合物水凝胶溶胀和力学响应的影响

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The chemical and physical structure-property relationships of model superabsorbent polymer hydrogels were characterized with respect to swelling behavior and mechanical properties in different ionic solutions (Na+, Ca2+, and Al3+). The model hydrogels were composed of poly(sodium acrylate-acrylamide) (PANa-PAM) copolymer with varying concentrations of PANa (0, 17, 33, 67, and 83 wt%) and covalent crosslinking densities of 1, 1.5, and 2 wt%. By synthesizing the hydrogels in-house, systems with independently tunable amounts of covalent crosslinking and anionic functional groups were created, allowing for the relative effects of covalent and ionic crosslinking on the properties of the hydrogels to be directly quantified. It was found that the presence of Ca2+ and Al3+ in the absorbed fluid significantly decreased the swelling capacity and altered the swelling kinetics of the PANa-PAM hydrogels. The presence of Al3+ in solution resulted in the unexpected formation of a mechanically stiff barrier layer at the hydrogel's surface, which hindered the release of fluid and caused the overall elastic modulus of the hydrogel to increase from O(10 kPa) for hydrogels immersed in Ca2+ solutions to O(100 kPa) for hydrogels immersed in Al3+ solutions. Tensile tests performed on isolated specimens of the stiff barrier layer yielded elastic moduli in the O(50-100 MPa) range.
机译:针对不同离子溶液(Na +,Ca2 +和Al3 +)中的溶胀行为和机械性能,对模型超吸收性聚合物水凝胶的化学和物理结构-性质关系进行了表征。模型水凝胶由具有不同浓度的PANa(0、17、33、67和83 wt%)和共价交联密度分别为1、1.5和2 wt%的聚(丙烯酸钠-丙烯酰胺)(PANa-PAM)共聚物组成%。通过内部合成水凝胶,创建了具有独立可调量的共价交联和阴离子官能团的系统,从而可以直接量化共价和离子交联对水凝胶性能的相对影响。发现吸收的流体中Ca 2+和Al 3+的存在显着降低了PANa-PAM水凝胶的溶胀能力并改变了溶胀动力学。溶液中Al3 +的存在导致在水凝胶表面意外形成机械刚性的阻隔层,这阻碍了流体的释放,并使水凝胶的总弹性模量从浸泡在Ca2 +中的水凝胶的O(10 kPa)增加到O(10 kPa)。用于将水凝胶浸入Al3 +溶液中的O(100 kPa)溶液。在隔离的刚性阻隔层样品上进行的拉伸试验得出的弹性模量在O(50-100 MPa)范围内。

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