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Representative unit cell model of elastic spherical particle composite with interphase and/or general imperfect interface

机译:具有相互作用和/或一般不完全界面的弹性球形粒子复合材料的代表性单元细胞模型

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摘要

We consider the representative unit cell (RUC) model of the elastic spherical particle composite with (a) interphase layer and (b) general imperfect interface in the form proposed by Bovik (1994). The rigorous analytical solution to both RUC model problems is obtained by the multipole expansion method in a unified manner. Fulfillment of the matrix-to-inhomogeneity elastic contact conditions reduces the boundary value problem to the linear algebraic system for multipole strengths and provides a highly efficient algorithm for numerical study. The proposed approach applies to all physically consistent models of imperfect interface including the nonlinear ones. In so doing, use of the vector spherical harmonics makes the solving procedure simple and straightforward. Comparison of the accurate numerical data obtained from the interphase and interface models confirms correctness of the Bovik model and illustrates its applicability limits in the multi particle environment. The developed RUC model enables consideration of composite with the spherical particles of diverse size, properties, interphases and interface bonding, with an adequate account of interaction between the inhomogeneities. Comparison with the laboratory test data for syntactic foam shows that a careful modeling of microstructure is a prerequisite for reliable prediction of the effective elastic properties of composite.
机译:我们认为弹性球形颗粒复合材料的代表性单位细胞(RUC)模型与(a)间隔层和(b)鲍瓦克(1994)提出的形式的一般不完美界面。统一的方式通过多极扩展方法获得RUC模型问题的严格分析解决方案。矩阵到不均匀性弹性接触条件的实现降低了用于多极强度的线性代数系统的边值问题,并提供了一种高效的数值研究算法。所提出的方法适用于包括非线性界面的所有物理一致的界面模型。在这样做的情况下,使用向量球形谐波使求解程序简单而简单。从间面和界面模型获得的准确数字数据的比较确认了BOVIK模型的正确性,并说明了其在多粒子环境中的适用性限制。开发的RUC模型能够考虑复合材料,具有多样化的尺寸,性质,界障和界面粘合的球形颗粒,充分陈述不均匀性之间的相互作用。与句法泡沫的实验室测试数据的比较表明,微观结构的仔细建模是可靠预测复合材料的有效弹性性能的先决条件。

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