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Multi-scale fracture modeling of asphalt composite structures

机译:沥青复合结构的多尺度断裂建模

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摘要

A multi-scale model for predicting the fracture evolution of multi-phase solid materials in layered composite structures subject to monotonic loading is presented. The objective of such a model is to develop the capability to predict various fracture mechanisms of layered structure considering realistic micro-structures of particle-reinforced composites. The meso-scale fracture model developed herein is firstly verified with experimental test results to determine proper materials parameters and to consider the independency of fracture tests. Essential ingredients within the context of the models are an image processing technique for obtaining microstructures of composites and cohesive softening models for representing fracture behavior of multi-phase composites. The multi-scale fracture model shows potential capabilities for predicting various fracture mechanisms and for characterizing the fracture process zone in layered composite structures.
机译:提出了一种用于预测单调加载的多层复合结构中多相固体材料断裂演化的多尺度模型。这种模型的目的是考虑到颗粒增强复合材料的实际微观结构,开发预测层状结构各种断裂机理的能力。首先用实验测试结果验证本文开发的中尺度断裂模型,以确定合适的材料参数并考虑断裂试验的独立性。在模型范围内的基本要素是用于获得复合材料微结构的图像处理技术和用于表示多相复合材料断裂行为的内聚软化模型。多尺度断裂模型显示了预测各种断裂机理和表征层状复合结构断裂过程带的潜在能力。

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