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具有界面相的聚合物-粒子纳米复合材料弹性性能的预测。

Prediction of elastic properties for polymer-particle nanocomposites exhibiting an interphase.

机构信息

Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Nanotechnology. 2011 Apr 22;22(16):165703. doi: 10.1088/0957-4484/22/16/165703. Epub 2011 Mar 11.

Abstract

Particle-polymer nanocomposites often exhibit mechanical properties described poorly by micromechanical models that include only the particle and matrix phases. Existence of an interfacial region between the particle and matrix, or interphase, has been posited and indirectly demonstrated to account for this effect. Here, we present a straightforward analytical approach to estimate effective elastic properties of composites comprising particles encapsulated by an interphase of finite thickness and distinct elastic properties. This explicit solution can treat nanocomposites that comprise either physically isolated nanoparticles or agglomerates of such nanoparticles; the same framework can also treat physically isolated nanoparticle aggregates or agglomerates of such aggregates. We find that the predicted elastic moduli agree with experiments for three types of particle-polymer nanocomposites, and that the predicted interphase thickness and stiffness of carbon black-rubber nanocomposites are consistent with measured values. Finally, we discuss the relative influence of the particle-polymer interphase thickness and stiffness to identify maximum possible changes in the macroscale elastic properties of such materials.

摘要

粒子-聚合物纳米复合材料的力学性能通常很难用仅包含颗粒和基体相的细观力学模型来描述。颗粒和基体之间存在界面区域(或相间),这一点已经被提出,并通过间接证明来解释这种效应。在这里,我们提出了一种直接的分析方法来估计由具有有限厚度和不同弹性性能的相间层包裹的颗粒组成的复合材料的有效弹性性能。这种显式解可以处理由物理隔离的纳米颗粒或这些纳米颗粒的团聚体组成的纳米复合材料;相同的框架也可以处理物理隔离的纳米颗粒聚集体或这些聚集体的团聚体。我们发现,对于三种类型的粒子-聚合物纳米复合材料,预测的弹性模量与实验结果相符,并且预测的炭黑-橡胶纳米复合材料的相间层厚度和弹性与测量值一致。最后,我们讨论了颗粒-聚合物相间层厚度和弹性的相对影响,以确定这些材料的宏观弹性性能的最大可能变化。

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