天然纤维-水凝胶复合材料微结构失效的数值模拟

Xiang Nian, Xiaohui Huang, Wei Rao, Qingsheng Yang
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摘要

本文通过数值模拟研究了天然纤维-水凝胶复合材料在拉伸变形和膨胀条件下的失效机理。首先,我们选择了一个基于物理的构成模型来描述水凝胶基体的变形。同时,在 Abaqus 的材料数据库中采用了一个宏观现象学超弹性构成模型来描述天然纤维的机械响应。然后,我们将该模型用于数值分析。根据纯水凝胶和纤维的实验曲线,通过试错法确定模型中水凝胶基体和纤维的材料参数;将数值模拟的复合材料应力-应变曲线与实验曲线进行比较,以验证模拟的有效性。随后,进行了多次数值分析,讨论纤维的微观结构特征导致水凝胶复合材料失效的机理。研究结果表明,纤维突起、纤维取向偏差和界面强度会显著影响复合材料在拉伸变形和膨胀过程中的局部失效;复合材料的强度和韧性主要取决于各种微结构特征的协同作用。这些结果为纤维-水凝胶复合材料的设计提供了宝贵的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of microstructural failure of natural fibre–hydrogel composites
In this article, we conduct a numerical simulation to investigate the failure mechanism of natural fibre–hydrogel composites under tensile deformation and swelling. Firstly, a physical-based constitutive model is chosen to describe the deformation of the hydrogel matrix. Concurrently, a macroscopic phenomenological hyperelastic constitutive model, incorporated into the material database of Abaqus, is employed to describe the mechanical responses of natural fibres. Then, we implement the model for a numerical analysis. The material parameters of the model for the hydrogel matrix and fibres are determined by a trial-and-error method from the experimental curves of pure hydrogel and fibres; the numerically simulated stress–strain curve of the composites is compared with the experimental one to verify the effectiveness of the simulation. Subsequently, several numerical analyses are performed to discuss the failure mechanism of hydrogel composites caused by the microstructural features of fibres. The findings revealed that fibre protrusion, fibre orientation deviation, and interface strength significantly affect the local failure of the composites during tensile deformation and swelling; the composites’ strength and toughness mainly depend on the cooperation of various microstructural features. These results provide valuable insights into the design of fibre–hydrogel composites.
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