纳米颗粒与基体间相对纳米复合材料杨氏模量的影响

Yan Ding, K. Tran, J. Gear, D. Mainwaring, P. Murugaraj
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引用次数: 7

摘要

纳米复合薄膜在柔性、轻量化电子器件和新兴纳米电子结构中具有越来越重要的意义。本文研究了球形纳米颗粒与聚合物基质之间的界面相对纳米复合薄膜杨氏模量和剪切模量的影响。间相区域被认为是不均匀的,但各向同性,因此被建模为间相区域厚度的函数,这受纳米颗粒、聚合物基体以及纳米复合材料的体积分数的材料性质的影响。假设界面相在基体边界处是光滑连续的,而在颗粒边界处是不连续的。基于界面相数学模型,采用置换法计算纳米复合材料的剪切模量和杨氏模量。结果与文献中的实验数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of interphase between nanoparticles and matrix on Young’s Modulus of nanocomposites
Thin nanocomposite films are gaining increasing significance in flexible and light weight electronic devices as well as emerging nanoelectronic structures. The present work investigates the influence of the interphase between spherical nanoparticles and a polymer matrix on the Youngpsilas modulus and shear modulus of a nanocomposite thin film. The interphase region is considered inhomogeneous, but isotropic, thus is modeled as a function of the thickness of the interphase region, which is affected by the material properties of the nanoparticles, the polymer matrix, as well as the volume fraction of the nanocomposite. The property of the interphase at the matrix boundary is assumed to be smooth and continuous, while at the particle boundary it is discontinuous. The replacement method is adopted to calculate the shear modulus and Youngpsilas modulus of the nanocomposite, based on the mathematical model of the interphase. The results are compared with the experimental data in literature.
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