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Microscale Simulation on Mechanical Properties of Al/PTFE Composite Based on Real Microstructures

机译:基于真实组织的Al / PTFE复合材料力学性能的微观模拟

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A novel numerical method at the microscale for studying the mechanical behavior of an aluminum-particle-reinforced polytetrafluoroethylene (Al/PTFE) composite is proposed and validated experimentally in this paper. Two types of 2D representative volume elements (RVEs), real microstructure-based and simulated microstructures, are established by following a series of image processing procedures and on a statistical basis considering the geometry and the distribution of particles and microvoids, respectively. Moreover, 3D finite element modelling based on the same statistical information as the 2D simulated microstructure models is conducted to show the efficiency and effectiveness of the 2D models. The results of all simulations and experiments indicate that real microstructure-based models and simulated microstructure models are efficient methods to predict elastic and plastic constants of particle-reinforced composites.
机译:提出了一种新的微观尺度数值方法,用于研究铝颗粒增强聚四氟乙烯(Al / PTFE)复合材料的力学行为,并进行了实验验证。通过遵循一系列图像处理程序并在统计基础上分别考虑颗粒和微孔的几何形状和分布,可以建立两种类型的2D代表性体积元素(RVE),即基于实际微结构的和模拟微结构。此外,进行了基于与2D模拟微观结构模型相同的统计信息的3D有限元建模,以显示2D模型的效率和有效性。所有模拟和实验的结果表明,基于真实微观结构的模型和模拟微观结构模型是预测颗粒增强复合材料的弹性和塑性常数的有效方法。

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