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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Kinetics of Thermal Polymerization Can Be Studied during Continuous Cooling
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Kinetics of Thermal Polymerization Can Be Studied during Continuous Cooling

机译:热聚合动力学可以在连续冷却过程中研究

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摘要

It is demonstrated that differential scanning calorimetry can measure the kinetics of the thermally initiated polymerization during continuous cooling. The measurements are accomplished by switching from fast heating to much slower cooling. The study is exemplified by crosslinking polymerization (curing) of diglycidyl ether of bisphenol A epoxy and m-phenylenediamine taken in stoichiometric and nonstoichiometric ratios and measured under heating and cooling conditions. An advanced isoconversional method reveals that the reaction in the nonstoichiometric system follows the kinetics of the single-step type. Its activation energy is constant and the same for heating and cooling conditions. The stoichiometric system exhibits the multistep kinetics characterized by the dependencies of the activation energy on temperature that differ qualitatively for cooling and heating runs. The discovered differences emphasize the need for further systematic studies of the thermal polymerization during continuous cooling.
机译:证明差分扫描量热法可以在连续冷却过程中测量热引发聚合的动力学。通过从快速加热切换到更慢的冷却来实现测量。该研究是通过双酚A环氧树脂和M-苯二胺的二缩水甘油醚的交联聚合(固化)的描述,并在化学计量和非核化学比例中进行,并在加热和冷却条件下测量。一种先进的异组方法,揭示了非核心系统中的反应遵循单步型的动力学。其活化能量是恒定的,用于加热和冷却条件也是相同的。化学计量系统表现出由激活能量的依赖性的多步体动力学,其温度用于冷却和加热运行的温度。发现的差异强调需要在连续冷却过程中进一步系统研究热聚合。

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