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A Model for Predicting the Evolution of Damage in Viscoelastic Particle-Reinforced Composites

机译:一种预测粘弹性颗粒增强复合材料损伤演化的模型

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摘要

A viscoelastic cohesive zone model is employed within the framework of a finite element code to analyze a two-phase viscoelastic particle-reinforced composite material consisting of a relatively stiff aggregate embedded in a copolymer binder. The composite of interest, LX17, is noted to have a very large aggregate volume fraction and as such, aggregate grain boundaries were generated within finite element meshes along which viscoelastic cohesive zones have been embedded to model the binder. It has been observed experimentally that the majority of damage in LX17 occurs within the binder, and thus, a damage evolution law has been applied to the viscoelastic cohesive zones that is phenomenological in nature. The responses obtained for the composite from the FEM analysis are then compared to the experimental data compiled by Lawrence Livermore National Labs for various constant strain rate tests conducted by Groves and Cunningham [Tensile and compressive mechanical properties of billet pressed LX17-1 as a function of temperature and strain rate. UCRL-ID-137477.
机译:在有限元代码的框架内采用粘弹性内聚区模型来分析两相粘弹性颗粒增强复合材料,该材料由嵌入共聚物粘合剂中的相对较硬的聚集体组成。所关注的复合材料LX17具有非常大的聚集体体积分数,因此,在有限元网格中生成了聚集体晶界,沿着该网格嵌入了粘弹性内聚区以对粘合剂进行建模。从实验上已经观察到,LX17中的大多数损坏都发生在粘合剂内,因此,损坏演化规律已应用于本质上是现象学的粘弹性内聚区。然后将从有限元分析中获得的复合材料的响应与Lawrence Livermore国家实验室收集的由Groves和Cunningham进行的各种恒定应变率测试的实验数据进行比较[钢坯压制的LX17-1的拉伸和压缩力学性能是Lx17-1的函数。温度和应变率。 UCRL-ID-137477。

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