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Transient analysis of temperature-sensitive neutral hydrogels

机译:温度敏感中性水凝胶的瞬态分析

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摘要

A model for transient deformation of neutral hydrogels that takes into account conservation of momentum, energy and mass for the solid polymer and fluid phase is derived, nondimensionalized and analyzed. Slow- and fast-response hydrogels are studied for three cases based on the response of (i) a spherical hydroget, (ii) a constrained hydrogel slab to a step change in temperature, and (iii) the deformation in a temperature gradient. Model predictions for case (i) are shown to agree well with experiments for swelling and shrinking. For case (ii), solvent can be seen entering at the sides and flowing into the interior and towards the corners, such that the corners undergo a faster deformation than the sides. Immersed in a temperature gradient, case (iii), the hydrogel undergoes a bending motion and reaches a curved.equilibrium shape, similar to the bending motion of polyelectrolyte hydrogels subjected to an external electric field. The benefit of the scale analysis conducted here, to predict correctly, prior to numerical computations, important characteristics such as stress, osmotic pressure and deformation times, is also highlighted.
机译:推导了中性水凝胶瞬态变形的模型,该模型考虑了固体聚合物和液相的动量,能量和质量守恒,并进行了无量纲化和分析。基于(i)球形水凝胶,(ii)受约束的水凝胶平板对温度阶跃变化以及(iii)温度梯度变形的响应,研究了三种情况的慢响应和快响应水凝胶。情况(i)的模型预测显示与膨胀和收缩的实验非常吻合。对于情况(ii),可以看到溶剂从侧面进入并流入内部并流向拐角,使得拐角经历的变形比侧面快。浸入温度梯度的情况(iii)中,水凝胶经历弯曲运动并达到弯曲的平衡形状,类似于经受外部电场的聚电解质水凝胶的弯曲运动。还强调了在进行数值计算之前在此处进行尺度分析以进行正确预测的好处,例如应力,渗透压和变形时间等重要特征。

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