首页> 外文会议>International Conference on Computational Science(ICCS 2006) pt.3; 20060528-31; Reading(GB) >Computational Analysis and Simulation of Vacuum Infusion Molding Process
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Computational Analysis and Simulation of Vacuum Infusion Molding Process

机译:真空灌注成型工艺的计算分析与仿真

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The current work focuses on resin bleeding process during the Seernan composite resin infusion molding process (SCRIMP), which is a subset of liquid composite molding (LCM) process. Finite difference method (FDM) is implemented to predict the preform thickness, bleeding resin volume, and fiber volume fraction by using a non-rigid control volume. After the fibrous preform is completely impregnated, the resin flow within the preform has a great impact on the dimension and mechanical properties of the final composite parts. As the resin flows out of the preform, the resin pressure and preform thickness are reduced, which increases the fiber volume fraction and the dimension tolerance of the preform. In this paper, the influence of resin flow rate at vent in the mold is also investigated. It is found that there is a critical flow rate to optimize the SCRIMP process at the vacuum line.
机译:当前的工作集中在Seernan复合树脂灌注成型工艺(SCRIMP)期间的树脂渗出工艺,该工艺是液体复合成型(LCM)工艺的子集。有限差分法(FDM)用于通过使用非刚性控制体积来预测瓶坯的厚度,渗出的树脂量和纤维体积分数。纤维预成型件完全浸渍后,预成型件内的树脂流动对最终复合材料零件的尺寸和机械性能有很大影响。随着树脂从预成型坯中流出,树脂压力和预成型坯厚度减小,这增加了纤维体积分数和预成型坯的尺寸公差。本文还研究了模具中排气孔处树脂流速的影响。发现在真空管线上有一个临界流速可以优化SCRIMP工艺。

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