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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Prediction of process-induced void formation in anisotropic Fiber-reinforced autoclave composite parts
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Prediction of process-induced void formation in anisotropic Fiber-reinforced autoclave composite parts

机译:各向异性纤维增强高压釜复合零件中工艺诱导的过程诱导的空隙形成的预测

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摘要

A numerical methodology is proposed to predict void content and evolution during autoclave processing of thermoset prepregs. Starting with the initial prepreg void content, the void evolution model implements mechanisms for void compaction under the effect of the applied pressure, including Ideal Gas law compaction, and squeeze flow for single curvature geometries. Pressure variability in the prepreg stack due to interactions between applied autoclave pressure and anisotropic material response are considered and implemented. A parametric study is conducted to investigate the role of material anisotropy, initial void content, and applied autoclave pressure on void evolution during consolidation of prepregs on a tool with single curvatures. The ability of the model to predict pressure gradient through the thickness of the laminate and its impact on void evolution is discussed.
机译:提出了一种数值方法,以预测热固性预浸料的高压釜处理过程中的空隙含量和演化。 从初始预浸料件含量开始,空隙演化模型在施加压力的效果下实现空隙压实的机制,包括理想的气体法压实,并挤压单曲率几何形状。 考虑并实施了由于施加的高压釜压力和各向异性材料响应之间的相互作用而导致的预浸料堆中的压力变异性。 进行参数化研究以研究材料各向异性,初始空隙含量,初始空转含量和应用高压釜压力在具有单曲率的工具上的预浸料坯的固化过程中的空隙演化中的应用。 讨论了模型通过层压材料的厚度来预测压力梯度的能力及其对空隙演进的影响。

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