自愈水凝胶
肿胀 的
材料科学
机械
表征(材料科学)
变形(气象学)
纳米技术
聚合物
软质材料
生化工程
计算机科学
机械工程
复合材料
工程类
物理
高分子化学
作者
Éanna Fennell,Jacques M. Huyghe
出处
期刊:Molecules
[MDPI AG]
日期:2019-09-28
卷期号:24 (19): 3521-3521
被引量:34
标识
DOI:10.3390/molecules24193521
摘要
A hydrogel is a polymeric three-dimensional network structure. The applications of this material type are diversified over a broad range of fields. Their soft nature and similarity to natural tissue allows for their use in tissue engineering, medical devices, agriculture, and industrial health products. However, as the demand for such materials increases, the need to understand the material mechanics is paramount across all fields. As a result, many attempts to numerically model the swelling and drying of chemically responsive hydrogels have been published. Material characterization of the mechanical properties of a gel bead under osmotic loading is difficult. As a result, much of the literature has implemented variants of swelling theories. Therefore, this article focuses on reviewing the current literature and outlining the numerical models of swelling hydrogels as a result of exposure to chemical stimuli. Furthermore, the experimental techniques attempting to quantify bulk gel mechanics are summarized. Finally, an overview on the mechanisms governing the formation of geometric surface instabilities during transient swelling of soft materials is provided.
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