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Modeling and Analysis of Thickness Gradient and Variations in Vacuum-Assisted Resin Transfer Molding Process

机译:真空辅助树脂传递模塑工艺中厚度梯度和变化的建模与分析

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摘要

As vacuum-assisted resin transfer molding(VARTM)is being increasingly used in aerospace applications,the thickness gradient and variation issues are gaining more attention.Typically,thickness gradient and variations result from the infusion pressure gradient during the process and material variations.Pressure gradient is the driving force for resin flow and the main source of thickness variation.After infusion,an amount of pressure gradient is frozen into the preform,which primarily contributes to the thickness variation.This study investigates the mechanism of the thickness variation dynamic change during the infusion and relaxing/curing processes.A numerical model was developed to track the thickness change of the bagging film free surface.A time-dependent permeability model as a function of compaction pressure was incorporated into an existing resin transfer molding(RTM)code for obtaining the initial conditions for relaxing/curing process.Control volume(CV)and volume of fluid(VOF)methods were combined to solve the free surface problem.Experiments were conducted to verify the simulation results.The proposed model was illustrated with a relatively complex part.
机译:随着真空辅助树脂传递模塑成型(VARTM)在航空航天应用中的日益普及,厚度梯度和变化问题越来越引起人们的关注。通常,厚度梯度和变化是由工艺过程中的注入压力梯度和材料变化引起的。是树脂流动的驱动力和厚度变化的主要来源。注入后,一定数量的压力梯度被冻结在预成型坯中,这主要是造成厚度变化的原因。建立了一个数值模型来跟踪袋装膜自由表面的厚度变化,将随时间变化的渗透率模型作为压实压力的函数,并结合到现有的树脂传递模塑(RTM)代码中,以获得松弛/固化过程的初始条件。控制体积(CV)和流体体积(VOF)me结合理论来解决自由表面问题。进行实验以验证仿真结果。所提出的模型用相对复杂的部分进行说明。

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