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首页> 外文期刊>RSC Advances >Graphene oxide/vinyl ester resin nanocomposite: the effect of graphene oxide, curing kinetics, modeling, mechanical properties and thermal stability
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Graphene oxide/vinyl ester resin nanocomposite: the effect of graphene oxide, curing kinetics, modeling, mechanical properties and thermal stability

机译:石墨烯氧化物/乙烯基酯树脂纳米复合材料:石墨烯氧化物,固化动力学,建模,机械性能和热稳定性的影响

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摘要

Graphene oxide (GO) was synthesized and nanocomposites were prepared using different contents of the GO and vinyl ester resin (VE). The suspension was sonicated in order to prevent agglomeration. The non-isothermal differential scanning calorimetry (DSC) technique was used to study the cure kinetics of neat VE and 0.3 wt% GO/VE nanocomposite. Kissinger and Ozawa equations were used to determine the activation energy (E-a). The E-a values of the cured GO/VE nanocomposite showed a decrease with respect to the neat VE. It is concluded that GO has a catalytic effect in the cure reaction. The dynamic curing process was modeled to predict the degree of curing and curing rate of resin. The modeling results showed a good agreement between the experimental data and model for different heating rates (5, 10, 15 and 20 degrees C min(-1)). The glass transition temperature (T-g) was obtained from the maximum peak temperature of the loss factor curve. The T-g was increased by nearly 10 degrees C by the addition of 0.4 wt% GO to VE. Tensile mechanical tests were studied and the nanocomposite of 0.3 wt% GO/VE showed higher elongation and tensile strength. This percent (0.3 wt% GO/VE) was selected for non-isothermal differential scanning calorimetry (DSC) to study the cure kinetics. Scanning electron microscopy (SEM) was studied to discern the surface features and dispersion of GO. The thermal stability of the cured VE and its nanocomposite was investigated with thermogravimetric analysis (TGA). The char yields increased with the addition of 0.3, 1.5, and 3 wt% of GO to the vinyl ester resin. The addition of GO improved the polymer flame retardancy and thermal resistance.
机译:合成石墨烯氧化物(GO),使用不同含量的GO和乙烯基酯树脂(VE)制备纳米复合材料。超声处理悬浮液以防止聚集。非等温差扫描量热法(DSC)技术用于研究整齐Ve和0.3wt%Go / Ve纳米复合材料的固化动力学。 Kissinger和Ozawa方程用于确定激活能量(E-A)。固化的GO / VE纳米复合材料的E-A值表现出与整洁的ve的降低。结论是在固化反应中具有催化作用。模型动态固化过程以预测树脂的固化程度和固化率。建模结果显示了不同加热速率的实验数据和模型之间的良好一致性(5,10,15和20摄氏度(-1))。从损耗因子曲线的最大峰值温度获得玻璃化转变温度(T-G)。通过添加0.4重量%的0.4重量%,T-G增加了近10℃。研究了拉伸机械测试,纳米复合材料为0.3wt%GO / VE显示出更高的伸长率和拉伸强度。选择百分比(0.3wt%GO / VE)用于非等温差分扫描量热法(DSC)以研究固化动力学。研究了扫描电子显微镜(SEM),以辨别去的表面特征和分散。采用热重分析(TGA)研究了固化VE及其纳米复合材料的热稳定性。添加0.3,1.5和3wt%的乙烯基酯树脂的添加增加。添加Go改善了聚合物阻燃性和热阻。

著录项

  • 来源
    《RSC Advances》 |2016年第27期|共10页
  • 作者

    Arabli Vahid; Aghili Alireza;

  • 作者单位

    Natl Iranian Oil Co Supervis Petr Export Res &

    Technol Directory Tehran 15936 Iran;

    Islamic Azad Univ Shiraz Branch Dept Polymer Engn Fac Engn Shiraz Iran;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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