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Simulation Prediction of the Preform Deformation and Resin Flow in Vacuum Infusion Process

机译:真空灌注过程中瓶坯变形和树脂流动的模拟预测

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摘要

Prediction of the preform thickness changes occur during processing is a focus and nodus of filling simulation for vacuum infusion process (VI), while accurate preform compaction models are too complicated to be adopted. In this article, an alternative approach is introduced to overcome this problem, in which the preform deformation and the accompanying resin storage/release are calculated in the additional element associated with each unit of the discretized model geometry instead of solving the coupled resin flow/ preform deformation governing equations directly, so the complex compaction models can be adopted. Fluent software is used as the development environment to implement the above approach to guarantee the simulation precision and broad applicability. Simulation examples show that the proposed approach can provide fairly accurate predictions, the lubrication effect and the time-delay effect of the preform deformation are well represented in the simulation results. The applicability of the approach introduced in this article on the arbitrary complex domains is also verified.
机译:预测在加工过程中发生的瓶坯厚度变化是真空灌注过程(VI)填充模拟的重点和结局,而精确的瓶坯压实模型太复杂而无法采用。在本文中,介绍了一种替代方法来克服此问题,其中在与离散化模型几何体的每个单元关联的附加元素中计算预成型件变形和伴随的树脂存储/释放,而不是求解耦合的树脂流动/预成型件直接控制变形方程,因此可以采用复杂的压实模型。使用Fluent软件作为开发环境来实现上述方法,以确保仿真精度和广泛的适用性。仿真算例表明,该方法可以提供较为准确的预测结果,预成型坯变形的润滑效果和时滞效果在仿真结果中得到了很好的体现。还验证了本文介绍的方法在任意复杂域上的适用性。

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