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Models for coupled kinetics and heat transfer in processing polymeric materials with applications to biochemical engineering

机译:聚合物材料加工中动力学和热传递耦合模型及其在生化工程中的应用

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Macroscopic properties of thermosetting polymers are strongly affected by thermal degradation. However, modelling the dynamics of thermal degradation is difficult due to an intrinsic coupling between reaction kinetics and heat transfer in polymeric materials. In this paper we consider mathematical models for degradation focusing on thermal degradation and shrinkage phenomena. We discuss in detail a mathematical model that allows modelling thermal degradation as a coupled process and develop an efficient procedure for numerical studies of this process. The developed procedure is then applied to modelling degradation of acrylic resins widely used in chemical biomedical engineering. Results of numerical experiments are presented. [References: 39]
机译:热固性聚合物的宏观性能受热降解的强烈影响。然而,由于在聚合物材料中反应动力学和传热之间存在固有的耦合,因此难以对热降解动力学进行建模。在本文中,我们考虑针对退化的数学模型,重点是热退化和收缩现象。我们将详细讨论一个数学模型,该模型允许将热降解建模为一个耦合过程,并为该过程的数值研究开发有效的程序。然后将开发的程序应用于化学生物医学工程中广泛使用的丙烯酸树脂的降解建模。给出了数值实验的结果。 [参考:39]

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