首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Hydroxyl telechelic natural rubber-based polyurethane: Influence of molecular weight on non-isothermal cure kinetics
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Hydroxyl telechelic natural rubber-based polyurethane: Influence of molecular weight on non-isothermal cure kinetics

机译:羟基远螯天然橡胶基聚氨酯:分子量对非等温固化动力学的影响

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摘要

Isoconversional analysis was applied to non-isothermal bulk cure kinetics of uncatalyzed polyurethane (PU) resins based on telechelic hydoxyl natural rubber (HTNR) and poly[(phenyl isocyanate)-co-formaldehyde] (P-MDI). The dependency of apparent activation energy on conversion led to the identification of two different kinetic models, each involving two activation energies: a phenomeno-logical model based on the Kamal-Sourour equation with non integer reaction exponents; and a new semi-mechanistic model assuming a main second order reaction between alcohols and isocyanates forming urethane linkages and a secondary reversible reaction forming allophanates that is known to become significant above 120 degrees C. Such a model based on mechanistic considerations allowed us to explain the variations of reactivity of the HTNR polyols with its average molecular weight. (C) 2015 Elsevier B.V. All rights reserved.
机译:将等转化分析应用于基于遥螯合羟基天然橡胶(HTNR)和聚[(异氰酸苯基酯)-共甲醛](P-MDI)的未催化聚氨酯(PU)树脂的非等温批量固化动力学。表观活化能对转化率的依赖性导致鉴定出两个不同的动力学模型,每个动力学模型都涉及两种活化能:一种基于Kamal-Sourour方程的非整数反应指数的现象学模型;以及一个新的半力学模型,该模型假设醇与异氰酸酯之间形成氨基甲酸酯键的主要二级反应和形成脲基甲酸酯的次级可逆反应在120摄氏度以上会变得很重要。这种基于力学考虑的模型可以解释HTNR多元醇的反应性随其平均分子量的变化。 (C)2015 Elsevier B.V.保留所有权利。

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