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首页> 外文期刊>Advances in materials science and engineering >Estimation of Elastic Moduli of Particulate Composites by New Models and Comparison with Moduli Measured by Tension, Dynamic, and Ultrasonic Tests
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Estimation of Elastic Moduli of Particulate Composites by New Models and Comparison with Moduli Measured by Tension, Dynamic, and Ultrasonic Tests

机译:新模型估计颗粒复合材料的弹性模量,并通过张力,动态和超声波检测测量的模数

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摘要

The elastic constants of particulate composites are evaluated employing a theoretical cube-within-cube formation. Two new models of four and five components, respectively, formed by geometrical combination of three-component models existing in the literature, are used as Representative Volume Elements. Using the governing stress and strain equations of the proposed models, two new equations providing the static elastic and shear moduli of particulate composites are formulated. In order to obtain the dynamic elastic and shear moduli, the correspondence principle was applied successively to components connected in series and/or in parallel. The results estimated by the proposed models were compared with values evaluated from existing formulae in the literature, as well as with values obtained by tensile, dynamic, and ultrasonic experiments in epoxy/iron particulate composites. They were found to be close to values obtained by static and dynamic measurements and enough lower compared with values obtained from ultrasonic experiments. The latter is attributed to the high frequency of ultrasonics. Since measurements from ultrasonic's and from dynamic experiments depend on the frequency, the modulus of elasticity estimated by ultrasonic's is compared with that (storage modulus) estimated by dynamic experiments.
机译:评估颗粒复合材料的弹性常数,采用理论立方体在立方体中形成。通过在文献中存在的三组分模型的几何组合,分别由文献中存在的三组合组合形成的两种新模型用作代表性体积元素。使用所提出的模型的控制应力和应变方程,配制了提供静止弹性和剪切模颗粒复合材料的新方程。为了获得动态弹性和剪切模量,相应的原理依次应用于串联和/或平行连接的部件。将所提出的模型估计的结果与文献中的现有式评估的值进行比较,以及通过环氧/铁颗粒复合材料中的拉伸,动态和超声实验获得的值。它们被发现接近通过静态和动态测量获得的值,并且与超声实验获得的值相比足够低。后者归因于超声波的高频。由于超声波和动态实验的测量取决于频率,因此通过动态实验估计的超声波估计的弹性模量与由动态实验估计的(储存模量)进行比较。

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