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Development of an advanced computer simulation technique for the modeling of rubber curing process

机译:用于橡胶硫化过程建模的先进计算机仿真技术的开发

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This research work is devoted to the development of an advanced computational technique for the simulation of the rubber curing process. The main novelty of the work is to cover the most important features that have not been addressed in the previous works. These include the use of incompatible meshes, thermal contact between rubber and mold, more accurate models for the description of the variation of rubber thermal properties with temperature and state-of-cure, use of a modified kinetic model and development of more robust auxiliary computer code. The general purpose finite element code ABAQUS has been used in conjunction with an in-house written subroutine (UMATHT) to solve the heat conduction equation and the rubber cure kinetics, simultaneously. It is used to simulate the curing process of a thick rubber article in the mold and the post-cure stage. The results were compared with experimentally measured data (temperature and state-of-cure) which confirmed the accuracy and applicability of the method.
机译:这项研究工作致力于开发先进的计算技术,以模拟橡胶固化过程。作品的主要新颖之处在于涵盖了以前作品中未曾提及的最重要的特征。其中包括使用不兼容的网格,橡胶与模具之间的热接触,用于描述橡胶热特性随温度和固化状态变化的更精确的模型,使用改进的动力学模型以及开发更强大的辅助计算机码。通用有限元代码ABAQUS已与内部编写的子程序(UMATHT)结合使用,以同时求解热传导方程和橡胶硫化动力学。它用于模拟厚橡胶制品在模具中和后固化阶段的固化过程。将结果与实验测量的数据(温度和固化状态)进行比较,证实了该方法的准确性和适用性。

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