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首页> 外文期刊>International journal of applied mechanics >The Importance of the Mixing Energy in Ionized Superabsorbent Polymer Swelling Models
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The Importance of the Mixing Energy in Ionized Superabsorbent Polymer Swelling Models

机译:混合能量在电离超吸收性聚合物溶胀模型中的重要性

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摘要

The Flory-Rehner theoretical description of the free energy in a hydrogel swelling model can be broken into two swelling components: the mixing energy and the ionic energy. Conventionally for ionized gels, the ionic energy is characterized as the main contributor to swelling and, therefore, the mixing energy is assumed negligible. However, this assumption is made at the equilibrium state and ignores the dynamics of gel swelling. Here, the influence of the mixing energy on swelling ionized gels is quantified through numerical simulations on sodium polyacrylate using a Mixed Hybrid Finite Element Method. For univalent and divalent solutions, at initial porosities greater than 0.90, the contribution of the mixing energy is negligible. However, at initial porosities less than 0.90, the total swelling pressure is significantly influenced by the mixing energy. Therefore, both ionic and mixing energies are required for the modeling of sodium polyacrylate ionized gel swelling. The numerical model results are in good agreement with the analytical solution as well as experimental swelling tests.
机译:水凝胶溶胀模型中自由能的理论描述可以分为两个溶胀成分:混合能量和离子能量。通常用于离子化凝胶,离子能量的特征在于膨胀的主要原因,因此,假设混合能量可忽略不计。然而,这种假设在均衡状态下进行,忽略凝胶肿胀的动态。这里,通过使用混合杂交有限元方法对聚丙烯酸钠的数值模拟来定量混合能量对溶胀电离凝胶的影响。对于单价和二价溶液,在大于0.90的初始孔隙率,混合能量的贡献可忽略不计。然而,在初始孔隙小于0.90,总溶胀压力受到混合能量的显着影响。因此,钠聚丙烯酸钠电离凝胶溶胀需要离子和混合能。数值模型结果与分析解决方案以及实验溶胀试验良好。

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