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Thermal decomposition kinetics of thermotropic poly(oxybenzoate- co-oxynaphthoate) Vectra copolyester

机译:热致聚(氧苯甲酸酯-共-氧萘甲酸酯)Vectra共聚酯的热分解动力学

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摘要

An advanced heat-resistant thermotropic liquid crystalline Vectra aromatic copolyester prepared from p-hydroxybenzoic acid and 2,6-hydroxynaphthoic acid has been subjected to dynamic and isothermal thermogravimetries in nitrogen and air. The ther- mostability of the Vectra has been investigated in detail. The thermal decomposition kinetics have been analyzed using seven cal- culating techniques. These techniques gave an average activation energy (E) of 374 kJ/mol for the nonisothermal decomposition of Vectra in nitrogen, which is much higher than the E value of 255 kJ/mol determined from the isothermal thermogravimetric experiments. The average E value for the thermal decomposition in air was 288 kJ/mol from dynamic heating data. The E and Ln Z (frequency factor) are higher in nitrogen than in air from any of the calculating techniques used, but the nonisothermal decom- position order of 2.3 in nitrogen shows good agreement with the order of 2.1 of nonisothermal degradation in air and of isothermal degradation in nitrogen. The thermostability of Vectra is substantially higher in nitrogen than in air, and the decomposition mechanism in air is more complex because oxidation process is occurring in air.
机译:由对羟基苯甲酸和2,6-羟基萘甲酸制备的高级耐热热致液晶Vectra芳族共聚酯已在氮气和空气中经历了动态和等温热重分析。 Vectra的热稳定性已得到详细研究。使用七种计算技术分析了热分解动力学。这些技术为氮气中Vectra的非等温分解提供了374 kJ / mol的平均活化能(E),远高于等温热重实验确定的255 kJ / mol的E值。根据动态加热数据,空气中热分解的平均E值为288 kJ / mol。使用任何一种计算技术,氮中的E和Ln Z(频率因子)都比空气中的高,但是氮中2.3的非等温分解阶数与空气中非等温分解的2.1阶和空气中的等温分解阶数2.1一致。氮中的等温降解。氮气中Vectra的热稳定性比空气中的热稳定性高得多,并且由于空气中发生氧化过程,因此空气中的分解机理更加复杂。

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