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采用流变学法对全硫化弹性体纳米粒子改性环氧树脂的固化动力学建模。

Curing Kinetics Modeling of Epoxy Modified by Fully Vulcanized Elastomer Nanoparticles Using Rheometry Method.

机构信息

Nanotechnology Research Centre, South Tehran Branch, Islamic Azad University, Tehran P.O. Box 19585-466, Iran.

Department of Chemical and Polymer Engineering, South Tehran Branch, Islamic Azad University, Tehran P.O. Box 19585-466, Iran.

出版信息

Molecules. 2022 Apr 30;27(9):2870. doi: 10.3390/molecules27092870.

Abstract

In this study, the curing kinetics of epoxy nanocomposites containing ultra-fine full-vulcanized acrylonitrile butadiene rubber nanoparticles (UFNBRP) at different concentrations of 0, 0.5, 1 and 1.5 wt.% was investigated. In addition, the effect of curing temperatures was studied based on the rheological method under isothermal conditions. The epoxy resin/UFNBRP nanocomposites were characterized via Fourier transform infrared spectroscopy (FTIR). FTIR analysis exhibited the successful preparation of epoxy resin/UFNBRP, due to the existence of the UFNBRP characteristic peaks in the final product spectrum. The morphological structure of the epoxy resin/UFNBRP nanocomposites was investigated by both field emission scanning electron microscopy (FESEM) and transmission electron microscopy (TEM) studies. The FESEM and TEM studies showed UFNBRP had a spherical structure and was well dispersed in epoxy resin. The chemorheological analysis showed that due to the interactions between UFNBRP and epoxy resin, by increasing UFNBRP concentration at a constant temperature (65, 70 and 75 °C), the curing rate decreases at the gel point. Furthermore, both the curing kinetics modeling and chemorheological analysis demonstrated that the incorporation of 0.5% UFNBRP in epoxy resin matrix reduces the activation energy. The curing kinetic of epoxy resin/UFNBRP nanocomposite was best fitted with the Sestak-Berggren autocatalytic model.

摘要

本研究考察了不同浓度(0、0.5、1 和 1.5wt.%)的超细全硫化丁腈橡胶纳米粒子(UFNBRP)对环氧树脂纳米复合材料固化动力学的影响。此外,还基于等温条件下的流变学方法研究了固化温度的影响。通过傅里叶变换红外光谱(FTIR)对环氧树脂/UFNBRP 纳米复合材料进行了表征。FTIR 分析表明成功制备了环氧树脂/UFNBRP,因为最终产物谱中存在 UFNBRP 的特征峰。通过场发射扫描电子显微镜(FESEM)和透射电子显微镜(TEM)研究了环氧树脂/UFNBRP 纳米复合材料的形貌结构。FESEM 和 TEM 研究表明,UFNBRP 具有球形结构,在环氧树脂中分散良好。化学流变分析表明,由于 UFNBRP 与环氧树脂之间的相互作用,在恒温(65、70 和 75°C)下增加 UFNBRP 浓度,凝胶点处的固化速率降低。此外,固化动力学建模和化学流变分析都表明,在环氧树脂基体中加入 0.5%的 UFNBRP 降低了活化能。环氧树脂/UFNBRP 纳米复合材料的固化动力学最好符合 Sestak-Berggren 自催化模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5820/9103035/1164c35e67ac/molecules-27-02870-g001.jpg

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