首页> 外文期刊>Journal of Materials Science >A GENERALIZED PLANE STRAIN TECHNIQUE FOR ESTIMATING EFFECTIVE PROPERTIES OF PARTICULATE METAL MATRIX COMPOSITES USING FEM
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A GENERALIZED PLANE STRAIN TECHNIQUE FOR ESTIMATING EFFECTIVE PROPERTIES OF PARTICULATE METAL MATRIX COMPOSITES USING FEM

机译:基于有限元估计颗粒金属基复合材料有效性能的广义平面应变技术

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摘要

A procedure to estimate the effective elastic moduli and coefficient of thermal expansion (CTE) of particulate-reinforced metal matrix composites (MMCs) using a two-dimensional finite element method is presented. The actual microstructural geometry of the composites with randomly distributed second-phase particles is incorporated in the model. A generalized plane strain technique, realistically to describe the three-dimensional behaviour, is also incorporated in the model. The elastic moduli and the CTE, estimated using this model, agree favourably with the experimental data. The technique is shown to be superior compared to the conventional two-dimensional plane stress and plane strain approximations. Also, the results indicate that the effect of the shape of the randomly distributed second-phase particles on the effective elastic moduli is insignificant. Although the procedure is demonstrated for particulate MMCs, it can be easily extended to many other materials as well. [References: 28]
机译:提出了一种使用二维有限元方法估算颗粒增强金属基复合材料(MMC)的有效弹性模量和热膨胀系数(CTE)的程序。模型中包含了具有随机分布的第二相颗粒的复合材料的实际微观结构几何形状。该模型中还包含了一种逼真的描述三维行为的广义平面应变技术。使用该模型估算的弹性模量和CTE与实验数据吻合良好。与传统的二维平面应力和平面应变近似法相比,该技术具有优越性。而且,结果表明,随机分布的第二相颗粒的形状对有效弹性模量的影响不明显。尽管已针对颗粒MMC演示了该程序,但它也可以轻松扩展到许多其他材料。 [参考:28]

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