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粘土在基于尼龙66的三元纳米复合材料断裂机制中的剥落位置和程度。

The location and extent of exfoliation of clay on the fracture mechanisms in nylon 66-based ternary nanocomposites.

作者信息

Dasari Aravind, Yu Zhong-Zhen, Mai Yiu-Wing, Yang Mingshu

机构信息

Centre for Advanced Materials Technology (CAMT), School of Aerospace, Mechanical and Mechatronic Engineering (J07), The University of Sydney, Sydney, NSW 2006, Australia.

出版信息

J Nanosci Nanotechnol. 2008 Apr;8(4):1901-12.

Abstract

The primary focus of this work is to elucidate the location and extent of exfoliation of clay on fracture (under both static and dynamic loading conditions) of melt-compounded nylon 66/clay/SEBS-g-MA ternary nanocomposites fabricated by different blending sequences. Distinct microstructures are obtained depending on the blending protocol employed. The state of exfoliation and dispersion of clay in nylon 66 matrix and SEBS-g-MA phase are quantified and the presence of clay in rubber is shown to have a negative effect on the toughness of the nanocomposites. The level of toughness enhancement of ternary nanocomposites depends on the blending protocol and the capability of different fillers to activate the plastic deformation mechanisms in the matrix. These mechanisms include: cavitation of SEBS-g-MA phase, stretching of voided matrix material, interfacial debonding of SEBS-g-MA particles, debonding of intercalated clay embedded inside the SEBS-g-MA phase, and delamination of intercalated clay platelets. Based on these results, new insights and approaches for the processing of better toughened polymer ternary nanocomposites are discussed.

摘要

这项工作的主要重点是阐明在通过不同共混顺序制备的熔体共混尼龙66/粘土/SEBS-g-MA三元纳米复合材料的断裂(在静态和动态加载条件下)过程中粘土的剥落位置和程度。根据所采用的共混方案可获得不同的微观结构。对粘土在尼龙66基体和SEBS-g-MA相中的剥落和分散状态进行了量化,结果表明橡胶中粘土的存在对纳米复合材料的韧性有负面影响。三元纳米复合材料的韧性增强水平取决于共混方案以及不同填料激活基体中塑性变形机制的能力。这些机制包括:SEBS-g-MA相的空化、空洞化基体材料的拉伸、SEBS-g-MA颗粒的界面脱粘、嵌入SEBS-g-MA相内的插层粘土的脱粘以及插层粘土片层的分层。基于这些结果,讨论了制备更好增韧聚合物三元纳米复合材料的新见解和方法。

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