A Two-Level Approach to Describing the Process of Composite Synthesis

A. Knyazeva
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引用次数: 2

Abstract

The article describes some problems arising in the construction of models of synthesis of composites in modern technologies, which allow predicting the evolution of composition and properties. It is emphasized that the known two-level models practically do not discuss the correspondence between scales and the correctness of information transfer from one level to another, the correctness of computational algorithms requiring the agreement of scales both physical and geometrical. A general approach to building two-level models of synthesis of composites with reinforcing particles based on separation of physical scales is described. It is shown that two-level models of composites synthesis have thermodynamic justification. The variants of estimation of stresses accompanying the change of composition at micro-(meso-)level are proposed. Possible variants of mesolevel submodels for description of composition evolution are briefly presented.
描述复合材料合成过程的两级方法
本文描述了在现代技术中建立复合材料合成模型时出现的一些问题,这些问题可以预测复合材料的组成和性能的演变。强调的是,已知的两层模型实际上没有讨论尺度之间的对应关系和从一层到另一层信息传递的正确性,以及需要物理和几何尺度一致的计算算法的正确性。描述了一种基于物理尺度分离的增强颗粒复合材料合成两级模型的一般方法。结果表明,复合材料合成的两级模型具有热力学合理性。提出了在微观(中观)水平上随成分变化的应力估计变量。简要介绍了描述成分演化的中尺度子模式的可能变体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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