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首页> 外文期刊>Polymer Composites >Flow Front Advancement During Composite Processing: Predictions from Numerical Filling Simulation Tools in Comparison With Real-World Experiments
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Flow Front Advancement During Composite Processing: Predictions from Numerical Filling Simulation Tools in Comparison With Real-World Experiments

机译:复合材料加工过程中的流动前沿进展:与实际实验相比,数值填充模拟工具的预测

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摘要

Liquid composite molding (LCM) techniques are innovative manufacturing processes for processing fiber reinforced polymer parts used e.g. for aerospace structures. Thereby the reinforcing material is placed in a mold and infiltrated with a low viscosity polymer matrix. Increasing production rates as well as part complexity lead to high production risks such as air inclusions or incomplete mold filling. Numerical mold filling simulations are promising tools enabling the composite manufacturing engineer to detect dry spots in the mold and find the optimal positions of the resin entry and ventilation system at an early process development stage. Today, different numerical models and software packages are available for modeling the flow through the reinforcing structure for visualization of the flow behavior. The goal of this study is the systematic comparison of two different software packages, namely PAM-RTM VR and OpenFOAM. Both software tools are operated as they are commonly foreseen. Real world experiments under real process conditions are the basis for the assessment of the numerical predictions. The resin transfer molding (RTM) experiments are executed in a tool with a transparent upper mold half in order to see the flow front advancement. (C) 2015 Society of Plastics Engineers
机译:液体复合成型(LCM)技术是用于加工纤维增强聚合物零件的创新制造工艺,例如用于航空航天结构。由此,将增强材料放置在模具中并用低粘度聚合物基质渗透。生产率的提高以及零件的​​复杂性会导致高生产风险,例如空气夹杂物或模具填充不完全。模具填充的数值模拟是很有前途的工具,使复合材料制造工程师能够在工艺开发的早期阶段检测模具中的干燥点并找到树脂进入和通风系统的最佳位置。如今,可以使用不同的数值模型和软件包来对穿过加固结构的流动进行建模,以可视化流动行为。这项研究的目的是系统比较两种不同的软件包,即PAM-RTM VR和OpenFOAM。两种软件工具均按通常的方式进行操作。在真实过程条件下的真实世界实验是评估数值预测的基础。在带有透明上半模的工具中执行树脂传递模塑(RTM)实验,以观察流动前沿的进展。 (C)2015年塑料工程师学会

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