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Numerical Simulation of Interfacial Debonding Crack in Particle Reinforced Composites

机译:颗粒增强复合材料界面剥离裂纹的数值模拟

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A numerical test code is used to study the matrix-inclusion interfacial debonding for particulate reinforced composites. In our numerical model, It is assumed to be a three-phase composite composed of matrix, particulate and the interfaces between them. The finite element program is employed as the basic stress analysis tool when the elastic damage mechanics is used to describe the constitutive law of meso-level element and the maximum tensile strain criterion and Mohr-Coulomb criterion are utilized as damage threshold. A single inclusion of gradually interfacial debonding and a complex structure with 20 inclusions of the interfacial damage were studied under plane stress conditions. Results of stress distribution and interface debonding type obtained by numerical method agree well with the MARK and ABAQUS. The influence of heterogeneity of the matrix materials on the resulting process and the stress distribution of the failure process are also studied in the paper. It is found that the numerical test code can help to understand the failure mechanism of the model and it is an effective way to investigate the interfacial damage of composite materials.
机译:数值测试代码用于研究颗粒增强复合材料的基体-夹杂物界面剥离。在我们的数值模型中,假定它是由基质,颗粒及其之间的界面组成的三相复合材料。当采用弹性损伤力学来描述细观水平单元的本构定律,并以最大拉伸应变准则和莫尔-库伦准则作为损伤阈值时,采用有限元程序作为基本应力分析工具。在平面应力条件下研究了逐渐界面剥离的单个夹杂物和20个夹杂物的复杂结构。通过数值方法获得的应力分布和界面剥离类型的结果与MARK和ABAQUS吻合得很好。本文还研究了基体材料的不均匀性对所得过程和破坏过程应力分布的影响。发现数值测试代码可以帮助理解模型的失效机理,是研究复合材料界面损伤的有效途径。

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