School of Materials Science & Engineering, Shandong University, Jinan 250061, China.
J Mech Behav Biomed Mater. 2011 Oct;4(7):1328-35. doi: 10.1016/j.jmbbm.2011.05.001. Epub 2011 May 6.
Polyelectrolyte hydrogel is a ternary mixture of water, polymer network and mobile ions. The present paper examined two popular models describing the swelling and deformation behaviors of polyelectrolyte hydrogels, i.e. the multiphasic model and the transport model. The water flow, the network deformation and the ionic diffusion are coupled in the multiphasic model, and the gradient of the fluid pressure is taken as the driving force for the network deformation. However, the water flow is neglected in the transport model with the ionic osmotic pressure taking the role of fluid pressure. Two simplified experiments, i.e. the free swelling of a hydrogel sphere in response to the concentration change of the external salt solution and the bending deformation of a hydrogel strip under an external electric field, are simulated by the two models. Simulation shows that the two models lead to the same predictions for the swelling equilibrium of the hydrogel sphere but different predictions for the swelling kinetics of the hydrogel sphere and the deformation of the hydrogel strip under the external electric field. These are due to the fact that the two models are equivalent in thermodynamic equilibrium situations, but in thermodynamic non-equilibrium situations, the transport model is no longer applicable as it neglects the water flow in the hydrogel and takes the ionic osmotic pressure as a mechanical parameter to play the role of swelling pressure. The present work will be helpful for understanding the hydrodynamics of polyelectrolyte hydrogels and the application of the two models.
聚电解质水凝胶是水、聚合物网络和可移动离子的三元混合物。本文研究了两种描述聚电解质水凝胶溶胀和变形行为的流行模型,即多相模型和传输模型。多相模型中,水流、网络变形和离子扩散相互耦合,流体压力梯度被视为网络变形的驱动力。然而,在传输模型中,水流被忽略,离子渗透压起到流体压力的作用。通过这两个模型模拟了两种简化实验,即水凝胶球在外盐溶液浓度变化下的自由溶胀和水凝胶条在外电场下的弯曲变形。模拟表明,这两个模型对水凝胶球的溶胀平衡预测相同,但对水凝胶球的溶胀动力学和在外电场下水凝胶条的变形预测不同。这是由于这两个模型在热力学平衡情况下是等效的,但在热力学非平衡情况下,传输模型不再适用,因为它忽略了水凝胶中的水流,并将离子渗透压作为机械参数来发挥膨胀压力的作用。本工作有助于理解聚电解质水凝胶的流体动力学和这两个模型的应用。