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含超支化聚酯改性碳纳米管的环氧树脂固化动力学研究

Investigation on cure kinetics of epoxy resin containing carbon nanotubes modified with hyper-branched polyester.

作者信息

Lu Li, Xia Liao, Zengheng Hao, Xingyue Sheng, Yi Zhang, Pan Liu

机构信息

College of Polymer Science and Engineering, Sichuan University Chengdu 610065 China

Chongqing Zhixiang Paving Technology Engineering Co., Ltd. Chongqing 401336 China

出版信息

RSC Adv. 2018 Aug 23;8(52):29830-29839. doi: 10.1039/c8ra04525a. eCollection 2018 Aug 20.

Abstract

The cure kinetics of epoxy resin cured by diethyltoluene diamine (D-EP), D-EP/multi-walled carbon nanotube (D-EP/CNT) composites and D-EP/hyper branched polyester functionalized CNTs (D-EP/CNTs-H20) were investigated by non-isothermal differential scanning calorimetry (DSC). Results revealed that the presence of CNTs shifted the cure temperature to a lower temperature and accelerated the curing of D-EP, and the addition of CNTs-H20 exhibited a stronger effect in accelerating the cure of D-EP. Activation energies were calculated based on the Kissinger approach and Ozawa approach respectively. Lowered activation energy was observed after the addition of CNTs or CNTs-H20 at low degrees of cure, indicating that the CNTs had a large effect on the curing reaction. The presence of CNTs facilitated the curing reaction, especially the initial epoxyamine reaction. Moreover, CNTs-H20 exhibited better performance. The autocatalytic model was used to describe the cure kinetics phenomena of the studied systems. When CNTs or CNTs-H20 were added, the Sesták-Berggren model still can describe the cure kinetics of the D-EP composites because the results, calculated by the model, agreed with the experimental data well. Moreover, the kinetics parameters as well as the equation describing the cure process were proposed.

摘要

采用非等温差示扫描量热法(DSC)研究了二乙基甲苯二胺固化环氧树脂(D-EP)、D-EP/多壁碳纳米管复合材料(D-EP/CNT)以及D-EP/超支化聚酯功能化碳纳米管(D-EP/CNTs-H20)的固化动力学。结果表明,碳纳米管的存在使固化温度降低,并加速了D-EP的固化,且添加CNTs-H20对加速D-EP固化的效果更强。分别基于基辛格方法和小泽方法计算了活化能。在低固化度下添加碳纳米管或CNTs-H20后,观察到活化能降低,这表明碳纳米管对固化反应有很大影响。碳纳米管的存在促进了固化反应,尤其是初始环氧胺反应。此外,CNTs-H20表现出更好的性能。采用自催化模型描述所研究体系的固化动力学现象。当添加碳纳米管或CNTs-H20时,塞斯塔克-伯格伦模型仍能描述D-EP复合材料的固化动力学,因为该模型计算的结果与实验数据吻合良好。此外,还提出了动力学参数以及描述固化过程的方程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ee/9085290/ecd4b5133d84/c8ra04525a-s2.jpg

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