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不同胺类固化剂体系的MXene/酚醛环氧树脂复合材料的固化及分子动力学模拟

Curing and Molecular Dynamics Simulation of MXene/Phenolic Epoxy Composites with Different Amine Curing Agent Systems.

作者信息

Cai Rui, Zhao Jinlong, Lv Naixin, Fu Anqing, Yin Chengxian, Song Chengjun, Chao Min

机构信息

State Key Laboratory for Performance and Structure Safety of Petroleum Tubular Goods and Equipment Materials, CNPC Tubular Goods Research Institute, Xi'an 710077, China.

School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Nanomaterials (Basel). 2022 Jun 30;12(13):2249. doi: 10.3390/nano12132249.

Abstract

Herein, the curing kinetics and the glass transition temperature () of MXene/phenolic epoxy composites with two curing agents, i.e., 4,4-diaminodiphenyl sulfone (DDS) and dicyandiamine (DICY), are systematically investigated using experimental characterization, mathematical modeling and molecular dynamics simulations. The effect of MXene content on an epoxy resin/amine curing agent system is also studied. These results reveal that the MXene/epoxy composites with both curing agent systems conform to the SB(m,n) two-parameter autocatalytic model. The addition of MXene accelerated the curing of the epoxy composite and increased the by about 20 K. In addition, molecular dynamics were used to simulate the of the cross-linked MXene/epoxy composites and to analyze microstructural features such as the free volume fraction (). The simulation results show that the introduction of MXene improves the and of the simulated system. This is because the introduction of MXene restricts the movement of the epoxy/curing agent system. The conclusions are in good agreement with the experimental results.

摘要

在此,使用实验表征、数学建模和分子动力学模拟系统地研究了含有两种固化剂,即4,4-二氨基二苯砜(DDS)和双氰胺(DICY)的MXene/酚醛环氧树脂复合材料的固化动力学和玻璃化转变温度()。还研究了MXene含量对环氧树脂/胺固化剂体系的影响。这些结果表明,两种固化剂体系的MXene/环氧复合材料均符合SB(m,n)双参数自催化模型。MXene的加入加速了环氧复合材料的固化,并使玻璃化转变温度提高了约20K。此外,利用分子动力学模拟了交联MXene/环氧复合材料的玻璃化转变温度,并分析了诸如自由体积分数()等微观结构特征。模拟结果表明,MXene的引入提高了模拟体系的玻璃化转变温度和自由体积分数。这是因为MXene的引入限制了环氧/固化剂体系的运动。这些结论与实验结果吻合良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5957/9268527/0c004d9545ad/nanomaterials-12-02249-g001.jpg

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