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Hybrid twin models of fiber compaction for composite manufacturing based on dual kriging

机译:基于双克里金法的复合材料制造纤维压实混合双模型

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摘要

During the preforming stage in Liquid Composite Molding (LCM), dry fibrous reinforcements are compacted to obtain a specific fiber volume fraction. Knowledge of the compaction force required to close the mold is an important information in Resin Transfer Molding (RTM), a composite manufacturing process in which the liquid polymer resin is injected through the fibrous reinforcement contained in a rigid and closed mold. In a related process called Vacuum Assisted Resin Infusion (VARI), the reinforcement is firstly compacted under vacuum, and then expands as the resin flows through the fiber bed. Numerous studies have been carried out to model the compression and relaxation of engineering textiles, which display a complex viscoelastic response under load, strongly dependent on fiber architecture. The various kinds of fibrous reinforcements and stacking sequences complicate the analysis. Experiments are necessary to provide reliable experimental data. Three families of reinforcements will be investigated under various experimental conditions: a Continuous Fiber Mat (CFM), a two-dimensional (2D) Non-Crimp Fabric (NCF) and a three-dimensional (3D) Interlock fabric. A new approach based on dual kriging, a multi-dimensional statistical interpolation method, is used to reproduce the compaction behaviors. A second approach, also based on dual kriging, is proposed to create Hybrid Twin (HT) models by combining experimental information on compaction with existing analytical models.
机译:在液态复合材料成型 (LCM) 的预成型阶段,干纤维增强材料被压实以获得特定的纤维体积分数。了解闭合模具所需的压实力是树脂传递模塑 (RTM) 中的重要信息,RTM 是一种复合材料制造工艺,其中液态聚合物树脂通过刚性和封闭模具中包含的纤维增强材料注入。在称为真空辅助树脂灌注 (VARI) 的相关工艺中,增强材料首先在真空下压实,然后随着树脂流过纤维床而膨胀。已经进行了大量研究来模拟工程纺织品的压缩和松弛,这些纺织品在负载下表现出复杂的粘弹性响应,强烈依赖于纤维结构。各种纤维增强材料和堆积序列使分析复杂化。为了提供可靠的实验数据,实验是必要的。将在各种实验条件下研究三个增强系列:连续纤维毡 (CFM)、二维 (2D) 非卷曲织物 (NCF) 和三维 (3D) 互锁织物。采用一种基于多维统计插值方法的双克里金法再现了压实行为。提出了第二种方法,也是基于双克里金法,通过将压实的实验信息与现有的分析模型相结合来创建混合孪生(HT)模型。

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