用变立方模型和SEM断口显微法研究颗粒复合材料的刚度和强度

E. Sideridis, V. Kytopoulos, Antonis Kampouroglou, J. Venetis
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引用次数: 0

摘要

在本文中,颗粒复合材料的刚度是通过使用一个多变量三相模型来确定的。该模型由空间立方模型的转换组成;它将颗粒复合材料模拟成一个三球模型,指定复合材料的两个主要阶段,填料和基体,并应用经典的弹性理论。将该模型的理论结果与铁颗粒增强环氧树脂复合材料的拉伸试验结果以及其他研究人员给出的理论结果进行了比较。在这种情况下,试图以一种尝试性的方式,在宏观和断口辅助微观方法的基础上,对实验数据与弹性模量理论以及某些断裂参数的实验数据之间所观察到的某些差异作出半定量的解释。
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Investigation of the Stiffness and Strength of Particulate Composites by Means of a Variant Cubic Model and SEM Fractography Microscopic Approach
In this article the stiffness of particulate composites is determined by the use of a multivariant three-phase model. This model consists of the transformation of spatial cubic models; it simulates a particulate composite into a three-sphere model, designating the two main phases of the composite material, the filler and the matrix, and applying the classical theory of elasticity to it. Theoretical results derived from this model are compared with experimental results derived from tensile tests carried out with iron particle reinforced epoxy resin composites and also with other theoretical results given by other researchers. In this context, an attempt is made to give, in a somewhat tentative way, a semiquantitative explanation of certain discrepancies observed between experimental data and the theory concerning the elastic modulus as well as experimental data concerning some fracture parameters on the basis of a macroscopic and a fractography-aided microscopic approach.
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