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首页> 外文期刊>Journal of Applied Polymer Science >Modeling and Simulation of Photofabrication Processes Using Unsaturated Polyester Resins
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Modeling and Simulation of Photofabrication Processes Using Unsaturated Polyester Resins

机译:使用不饱和聚酯树脂的光加工过程的建模和仿真

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摘要

Several kinetic models have been proposed to simulate thermosetting cure reactions. The most complex models, based on a mechanistic approach of cure reactions, are developed based on the concepts of free radical polymerization and the mechanism of reactions with diffusion. However, mechanistic models are usually quite impractical for engineering purposes because of the difficulty in obtaining the model parameters. An alternative to these mechanistic models are the phenomenological models, formulated in terms of the degree of cure and much easier to apply. Phenomenological models have been largely used to study thermal-initiated cure reactions, although only few works used them to model the kinetics of ultraviolet-initiated cure reaction. This work proposes a photo-thermal-kinetic model to study the behavior of unsaturated polyester resins during ultra violet-initiated cure reactions. The model considers samples with different amounts of initiator concentration and cure reactions performed under different ultraviolet light intensities. The model has been numerically solved using the finite element technique.
机译:已经提出了几种动力学模型来模拟热固性固化反应。基于自由基反应机理的最复杂模型是基于自由基聚合的概念和扩散反应机理开发的。但是,由于难以获得模型参数,因此机械模型对于工程目的通常是不切实际的。这些力学模型的替代方法是现象学模型,该模型根据治愈程度制定并且更易于应用。现象学模型已被广泛用于研究热引发的固化反应,尽管只有很少的著作使用它们来模拟紫外线引发的固化反应的动力学。这项工作提出了一种光热动力学模型,以研究不饱和聚酯树脂在紫外线引发的固化反应过程中的行为。该模型考虑了具有不同引发剂浓度和在不同紫外线强度下进行的固化反应的样品。该模型已使用有限元技术进行了数值求解。

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