首页> 外文期刊>Journal of Macromolecular Science. Physics >Thermal cross-linking of poly(vinyl methyl ether). III. Rheological kinetics of cross-linking reaction
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Thermal cross-linking of poly(vinyl methyl ether). III. Rheological kinetics of cross-linking reaction

机译:聚(乙烯基甲基醚)的热交联。三,交联反应的流变动力学

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摘要

The kinetics of the thermally activated cross-linking reaction of poly(vinyl methyl ether) (PVME) were investigated theologically by evaluating the viscoelastic material functions such as elastic storage modulus, G', viscous loss modulus, G" and complex dynamic viscosity, eta*, during the curing process, both isothermally and nonisothermally. The isothermal kinetics reaction was described using a phenomenological equation based on the Malkin and Kulichikhin model, which was predicated originally for the isothermal curing kinetics of thermosetting polymers followed by differential scanning calorimetery (DSC) and was found to be applicable for rheokinetic reactions as well. An excellent representation of the data was obtained using this model; the rate of the reaction was found to be second order regardless of the temperature, which is in good agreement with literature data. The temperature dependence of the cross-linking rate constant was described by an Arrhenius plot with an apparent activation energy equal to 60-62 kJ mol(-1), in reasonable agreement with the value obtained previously from the temperature dependence of gel time, t(gel). The nonisothermal kinetics reaction rate was described by a model that included the classical rate equation, the Arrhenius equation, and the time-temperature relationships. The apparent activation energy obtained nonisothermally was found to be frequency independent and equal to 72 kJ mol(-1), in very good agreement with the value obtained isothermally from the temperature dependence of t(gel) in part II.
机译:通过评估粘弹性材料的功能,如弹性储能模量,G',粘滞损耗模量,G”和复数动态粘度,η,对聚(乙烯基甲基醚)(PVME)的热活化交联反应的动力学进行了神学研究。 *在固化过程中,无论是等温还是非等温,等温动力学反应都是基于基于Malkin和Kulichikhin模型的现象学方程来描述的,该方程最初是针对热固性聚合物的等温固化动力学,然后是差示扫描量热法(DSC)使用该模型可以很好地表示数据;无论温度如何,反应速率都是二阶的,这与文献数据相吻合。交联速率常数的温度依赖性通过阿雷尼乌斯图描述,活化能等于60-62 kJ mol(-1),与先前从胶凝时间的温度依赖性t(gel)获得的值合理地吻合。非等温动力学反应速率由一个模型描述,该模型包括经典速率方程,Arrhenius方程和时间-温度关系。发现非等温获得的视在活化能与频率无关,等于72 kJ mol(-1),与第二部分中从t(gel)的温度依赖性等温获得的值非常吻合。

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