首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >The stress field near the tip of a plane stress crack in a gel consisting of chemical and physical cross-links
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The stress field near the tip of a plane stress crack in a gel consisting of chemical and physical cross-links

机译:凝胶中的平面应力裂缝附近的应力场在由化学和物理交联组成的凝胶中

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We study the time-dependent asymptotic stress fields near the tip of a mode I plane stress crack in a hydrogel. The analysis is based on a three-dimensional continuum model which describes the viscoelastic behaviour of a hydrogel gel with permanent and transient cross-links. The viscoelasticity results from the breaking and healing of the transient cross-links in the gel network. We show that the crack tip fields satisfy a local correspondence principle-that is, the spatial singularities of these fields are identical to a hyperelastic cracked body with the same but undamaged networks. Asymptotic results compare very well with finite-element simulations on a single-edge crack specimen loaded under constant stretch rate. We also compare the theoretical results (crack opening profile and crack tip strain field) with experiments and find excellent agreement.
机译:我们研究了水凝胶中的模板尖端尖端附近的时间依赖性渐近应力场。 该分析基于三维连续模型,该模型描述了用永久性和瞬时交联的水凝胶凝胶的粘弹性行为。 粘弹性来自凝胶网络中的瞬态交联的断裂和愈合。 我们表明裂缝尖端字段满足本地对应原理 - 也就是说,这些字段的空间奇点与具有相同但未损坏的网络的超弹性裂纹体相同。 渐近结果与在恒定拉伸速率下装载的单边缘裂纹标本上的有限元模拟相比。 我们还通过实验比较理论结果(裂缝开口型材和裂缝尖端应变场),并找到了很好的一致性。

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