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Numerical Modeling of Macroscopic Behavior of Particulate Composite with Crosslinked Polymer Matrix

机译:交联聚合物基质颗粒复合材料宏观行为的数值模拟

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Particulate composites with crosslinked polymer matrix and solid fillers are one of important classes of materials such as construction materials, high-performance engineering materials, sealants, protective organic coatings, dental materials, or solid explosives. The main focus of a present paper is an estimation of the macroscopic Young's modulus and stress-strain behavior of a particulate composite with polymer matrix. The particulate composite with a crosslinked polymer matrix- in a rubbery state filled by an alumina-based mineral filler is investigated by means of the finite element method. A hyperelastic material behavior of the matrix was modeled by the Mooney-Rivlin material model. Numerical models on the base of unit cell were developed. The numerical results obtained were compared with experimental stress-strain curve and value of initial Young's modulus. The paper can contribute to a better understanding of the behavior and failure of particulate composites with a crosslinked polymer matrix.
机译:具有交联聚合物基质和固体填料的颗粒复合材料是重要的材料等重要材料之一,如建筑材料,高性能工程材料,密封剂,防护有机涂料,牙科材料或固体炸药。本文的主要焦点是估计麦克族杨氏模量和聚合物基质的颗粒复合材料的应力 - 应变行为。通过有限元方法研究具有交联聚合物基质的颗粒状复合材料 - 以氧化铝基矿物填充物填充的橡胶状态。 MOLIX的高速材料行为由Mooney-rivlin材料模型进行建模。开发了单位细胞基底上的数值模型。将获得的数值结果与实验应力 - 应变曲线和初始杨氏模量的值进行比较。本文可以有助于更好地理解具有交联聚合物基质的颗粒状复合材料的行为和失效。

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