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MINIMIZING THICKNESS VARIATION IN THE VACUUM INFUSION (VI) PROCESS

机译:最小化真空注入(VI)过程中的厚度变化

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In the Vacuum Infusion (VI) process, the thickness of a composite part changes as the compaction pressure on the vacuum bag and reinforcing fibre preform changes. Pressure and thickness were monitored along a 1D resin flow using pressure transducers and non-contact laser displacement sensors. To decrease the thickness variation, control actions were taken by adjusting the injection conditions, such as opening/closing gates/vents, changing pressure of them in the post-mold filling stage and bleeding out the excess resin. The control actions were taken based on an available compaction/decompaction database for the fabric type used. Compared to the case study with no control action other than bleeding, a better job was done in the controlled case study by decreasing the maximum thickness variation from 5.44% to 0.39%. A coupled flow and compaction model qualitatively verified the pressure and thickness distributions for both filling and post-filling stages.
机译:在真空灌注(VI)过程中,复合零件的厚度会随着真空袋和增强纤维预制件上的压紧压力而变化。使用压力传感器和非接触式激光位移传感器沿一维树脂流动监测压力和厚度。为了减小厚度变化,通过调整注射条件来采取控制措施,例如打开/关闭浇口/通气孔,在模后填充阶段改变它们的压力并排出过量的树脂。控制操作是基于可用的压缩/解压数据库针对所使用的织物类型采取的。与没有出血以外没有其他控制作用的案例研究相比,在控制案例研究中,通过将最大厚度变化从5.44%降低到0.39%,可以做得更好。耦合的流动和压实模型定性地验证了填充和填充后阶段的压力和厚度分布。

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