Study of thermal stability and determination of effective activation energy values during degradation of unsaturated polyester copolymers in the air atmosphere

A. Sarsenbekova, A. Bolatbay, V. Morgun, D. Havlícek, S. Davrenbekov, E. Nasikhatuly
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Abstract

The study of the kinetic parameters of copolymers based on polyethylene glycol fumarates, as well as the external and internal effects on them, is essential for production processes at various levels. This will solve a whole range of issues in the field of the shelf life of materials and storage conditions. All these point to the relevance of this research. The authors of the research attempt to test the most common thermogravimetric data processing methods and to improve them in terms of the quality of the predictive capabilities of the resulting regression equation. Both of them are important for the production of initial components and the manufacture of the final product from the studied materials. Therefore, the study and further use of the numerical data of the TG/DTA curves applies to both theoretical and practical branches of science. Thus, summarizing the experimental data on the thermal stability studies, we assume that p-EGF: AA copolymers with compositions of 21.03:78.97 and 68.96:31.04 wt.% have a relatively high degree of resistance to heating. It was found that the calculation by the FR method agreed well with the results of the KAS method. It should be noted that for the p-EGF: AA copolymer (21.03:78.97 wt.%) at heating rates of 5.0, 10.0, 20.0 °С∙min–1, the average activation energy data obtained for two methods increase in the following series:KAS E = 187.34 kJ /mol
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不饱和聚酯共聚物在空气气氛中降解过程的热稳定性研究和有效活化能的测定
富马酸聚乙二醇共聚物的动力学参数的研究,以及对它们的外部和内部影响,对不同层次的生产工艺至关重要。这将解决材料的保质期和储存条件领域的一系列问题。这些都表明了本研究的相关性。该研究的作者试图测试最常见的热重数据处理方法,并根据所得回归方程的预测能力的质量来改进它们。这两种方法对于用所研究的材料生产初始部件和制造最终产品都很重要。因此,对热重/差热分析曲线数值数据的研究和进一步利用,在理论和实践两方面都有应用。因此,总结热稳定性研究的实验数据,我们认为组成为21.03:78.97和68.96:31.04 wt.%的p-EGF: AA共聚物具有较高的耐热性。结果表明,FR法的计算结果与KAS法的计算结果吻合较好。值得注意的是,对于p-EGF: AA共聚物(21.03:78.97 wt.%),在5.0、10.0、20.0°С∙min-1的加热速率下,两种方法得到的平均活化能数据增加如下系列:KAS E = 187.34 kJ /mol
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