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3-D curing simulation of thick thermoset components

机译:厚热固性组件的3-D固化仿真

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Thick components or sections such as ribs and bosses require a 3-D simulation to fully determine final properties due to the curing reaction and vitrification effects. A finite element simulation has been developed to model curing of thermoset parts, including compensation for diffusion control effects and varying boundary conditions. For diffusion control, the glass transition temperature (Tg) was related to conversion byt he DiBenedetto equation. The simulation considers parts molded under realistic industrial processing conditions and has shown that non-uniform curing and thermal gradients occur during processing. These gradients depend on part geometry, cure kinetics, and processing conditions. This paper presents the models used, along with the results of the simulation applied to a sample geometry molded under various conditions.
机译:厚的组件或肋和凸台等部分需要3-D模拟以完全确定由于固化反应和玻璃化效应而得到的最终性质。已经开发了有限元模拟以模拟热固性零件的固化,包括对扩散控制效果和不同边界条件的补偿。对于扩散控制,玻璃化转变温度(TG)与转换BYT HE DIBENEDETTO方程有关。仿真考虑在实际工业加工条件下模制的零件,并显示出在加工过程中发生不均匀的固化和热梯度。这些梯度取决于部分几何形状,固化动力学和处理条件。本文介绍了所用的模型,以及仿真的结果应用于在各种条件下模制的样品几何形状。

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