首页> 外文期刊>Journal of Polymers and the Environment >The Effect of CTBN Concentrations on the Kinetic Parameters of Decomposition of Blends of Epoxy Resins Modified with Carboxyl-Terminated Liquid Copolymer
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The Effect of CTBN Concentrations on the Kinetic Parameters of Decomposition of Blends of Epoxy Resins Modified with Carboxyl-Terminated Liquid Copolymer

机译:CTBN浓度对羧基端基液态共聚物改性环氧树脂共混物分解动力学参数的影响

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摘要

Diglycidyl ether of bisphenol—A (DGEBA) based epoxy resin was blended in the ratio of 3:1 (weight basis) with cycloaliphatic epoxy (CAE) resin. The prepared blend sample was further blended with different weight percentages of carboxyl-terminated butadiene acrylonitrile copolymer (CTBN) ranging between 0 and 25 wt% with an interval of 5 wt% and cured with stiochiometric amounts of 4, 4'- diamino diphenyl sulphone (DDS) cure agent. Structural changes during blending were studied by Fou rier-transform infra-red (FTIR) spectroscopic analysis. The kinetic parameters, viz., order of decomposition reaction (n), activation energy (E), pre-exponential factor (Z) and rate decomposition constant (k), for the decomposition of the samples were calculated by applying Coats-Redfern equation over thermogravimetric (TG) data. The degrada tion of each sample followed second-order degradation kinetics, which was calculated by Coats-Redfern equation using best-fit analysis. This was further confirmed by linear regression analysis. The validity of data was checked by t-test statistical analysis. Further, the blend sample had higher initial degradation temperature and activation energy than its respective pure epoxy resin indicating that the CTBN acted as thermal stabilizer for epoxy resin which improved the thermal stability.
机译:将双酚-A(DGEBA)基环氧树脂的二缩水甘油醚与脂环族环氧(CAE)树脂以3:1(重量比)的比例混合。将制备的共混物样品进一步与0至25 wt%,间隔为5 wt%的不同重量百分比的羧基封端的丁二烯丙烯腈共聚物(CTBN)共混,并用化学计量的4,4'-二氨基二苯砜( DDS)固化剂。通过傅立叶变换红外(FTIR)光谱分析研究了共混过程中的结构变化。应用Coats-Redfern方程计算样品分解的动力学参数,即分解反应的阶数(n),活化能(E),预指数因子(Z)和速率分解常数(k)。超过热重(TG)数据。每个样品的降解遵循二级降解动力学,该动力学通过最佳拟合分析通过Coats-Redfern方程计算。线性回归分析进一步证实了这一点。通过t检验统计分析检查数据的有效性。此外,共混物样品比其各自的纯环氧树脂具有更高的初始降解温度和活化能,表明CTBN充当环氧树脂的热稳定剂,从而改善了热稳定性。

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