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Study of cooperative relaxation characteristics of a simultaneously nanoparticle- and photopolymerization-Induced dynamically quaternary photopolymeric network

机译:同时纳米和光聚合诱导的动态季光聚合物网络的协同弛豫特性研究

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摘要

Herein, a toughed dynamically-quaternary photopolymeric material was designed through photo polymerization and the polymeric nanoparticle incorporation process. In order for availability of such reinforced system, a low content of poly (styrene-co-acrylonitrile) (SAN) nanoparticle was incorporated into an acrylate-based photopolymerization-induced dynamically-binary photopolymeric network. The dynamic transformation from a binary form to a quaternary form with addition of only 1 wt% of the SAN nanoparticles was demonstrated through the dynamic mechanical results. Relaxation characteristics of all four dynamic characteristic domains including microgel particle, the soft matrix, that of the SAN nanoparticle, and interfacial loose layer were studied. The relaxation characteristic length (xi(T-g)) of the microgel particle, the soft matrix, the SAN nanoparticle, and the interfacial loose layer were estimated to be 2.24 nm, 2.55 nm, 2.2 nm, and 2.66 nm, respectively. The dynamic fragility index (m) of the SAN and the microgel particle were computed to be 133 and 16, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文中,通过光聚合和聚合物纳米颗粒掺入工艺设计了增韧的动态四元光聚合材料。为了获得这种增强体系,将低含量的聚(苯乙烯-丙烯腈)(SAN)纳米颗粒掺入了丙烯酸酯基光聚合诱导的动态二元光聚合网络中。通过动态力学结果证明了从二元形式到四元形式的动态转化,其中仅添加了1 wt%的SAN纳米颗粒。研究了包括凝胶凝胶,软基质,SAN纳米颗粒和界面疏松层在内的所有四个动态特征域的弛豫特性。估计微凝胶颗粒,软基质,SAN纳米颗粒和界面疏松层的弛豫特征长度(xi(T-g))分别为2.24 nm,2.55 nm,2.2 nm和2.66 nm。 SAN和微凝胶颗粒的动态脆性指数(m)分别计算为133和16。 (C)2016 Elsevier Ltd.保留所有权利。

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