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动态溶胀过程中的凝胶破裂

Gel rupture during dynamic swelling.

作者信息

Leslie Kelsey-Ann, Doane-Solomon Robert, Arora Srishti, Curley Sabrina J, Szczepanski Caroline, Driscoll Michelle M

机构信息

Department of Physics and Astronomy, Northwestern University, Evanston, IL, USA.

Department of Chemical Engineering and Materials Science, Michigan State University, East Lansing, MI, USA.

出版信息

Soft Matter. 2021 Feb 19;17(6):1513-1520. doi: 10.1039/d0sm01718c.

Abstract

Hydrogels have had a profound impact in the fields of tissue engineering, drug delivery, and materials science as a whole. Due to the network architecture of these materials, imbibement with water often results in uniform swelling and isotropic expansion which scales with the degree of cross-linking. However, the development of internal stresses during swelling can have dramatic consequences, leading to surface instabilities as well as rupture or bursting events. To better understand hydrogel behavior, macroscopic mechanical characterization techniques (e.g. tensile testing, rheometry) are often used, however most commonly these techniques are employed on samples that are in two distinct states: (1) unswollen and without any solvent, or (2) in an equilibrium swelling state where the maximum amount of water has been imbibed. Rarely is the dynamic process of swelling studied, especially in samples where rupture or failure events are observed. To address this gap, here we focus on rupture events in poly(ethylene glycol)-based networks that occur in response to swelling with water. Rupture events were visualized using high-speed imaging, and the influence of swelling on material properties was characterized using dynamic mechanical analysis. We find that rupture events follow a three-stage process that includes a waiting period, a slow fracture period, and a final stage in which a rapid increase in the velocity of crack propagation is observed. We describe this fracture behavior based on changes in material properties that occur during swelling, and highlight how this rupture behavior can be controlled by straight-forward modifications to the hydrogel network structure.

摘要

水凝胶在组织工程、药物递送以及整个材料科学领域都产生了深远影响。由于这些材料的网络结构,吸水通常会导致均匀膨胀和各向同性扩张,且这种扩张与交联程度成正比。然而,膨胀过程中内部应力的产生可能会带来严重后果,导致表面不稳定以及破裂或爆裂事件。为了更好地理解水凝胶的行为,通常会使用宏观力学表征技术(如拉伸测试、流变学),但这些技术最常用于处于两种不同状态的样品:(1)未溶胀且无任何溶剂,或(2)处于平衡溶胀状态,即已吸收了最大量的水。很少研究溶胀的动态过程,尤其是在观察到破裂或失效事件的样品中。为了填补这一空白,我们在此聚焦于聚乙二醇基网络中因吸水膨胀而发生的破裂事件。使用高速成像观察破裂事件,并使用动态力学分析表征溶胀对材料性能的影响。我们发现破裂事件遵循一个三阶段过程,包括一个等待期、一个缓慢断裂期以及一个观察到裂纹扩展速度快速增加的最后阶段。我们基于溶胀过程中材料性能的变化来描述这种断裂行为,并强调如何通过对水凝胶网络结构进行简单修改来控制这种破裂行为。

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