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Modelling of Mechanical Behavior of Biopolymer Alginate Aerogels Using the Bonded-Particle Model

机译:使用粘合粒子模型建模生物聚合物藻酸盐气凝胶的力学行为

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摘要

A novel mesoscale modelling approach for the investigation of mechanical properties of alginate aerogels is proposed. This method is based on the discrete element method and bonded-particle model. The nanostructure of aerogel is not directly considered, instead the highly porous structure of aerogels is represented on the mesoscale as a set of solid particles connected by solid bonds. To describe the rheological material behavior, a new elastic-plastic functional model for the solids bonds has been developed. This model has been derived based on the self-similarity principle for the material behavior on the macro and mesoscales. To analyze the effectiveness of the proposed method, the behavior of alginate aerogels with different crosslinking degrees (calcium content) was analyzed. The comparison between experimental and numerical results has shown that the proposed approach can be effectively used to predict the mechanical behavior of aerogels on the macroscale.
机译:提出了一种新的藻类介质建模方法,用于藻酸盐气凝胶的力学性能研究。该方法基于离散元件方法和粘合粒子模型。不直接考虑气凝胶的纳米结构,而是在Mesoscale上表示气凝胶的高度多孔结构,作为通过固键连接的一组固体颗粒。为了描述流变物质行为,已经开发出用于固体键的新的弹性塑性功能模型。该模型是基于宏观和媒介阶段材料行为的自相似原理来源的。为了分析所提出的方法的有效性,分析了不同交联度(钙含量)的海藻酸盐气凝胶的行为。实验性和数值结果之间的比较表明,所提出的方法可以有效地用于预测气凝胶对宏观的机械行为。

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