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Numerical Fitting Predictions and Mechanical Moid Simulations for Composite Manufacturing Techniques: RTM Tool Development

机译:复合材料制造技术的数值拟合预测和机械木器模拟:RTM工具开发

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This paper presents the development of a novel omega-shaped resin transfer molding (RTM) tool, which is especially designed to host different types of sensors and to avoid common problems of RTM (e.g. uneven heating, low tool durability, deflection). Permeability measurements were executed in order to get real permeability measurements for numerical mold filling simulations. Three different kinds of flow behaviors (isotropic, orthotropic and anisotropic) were considered as filling patterns and the flow front predictions. Due to the U-shaped composite part design, the mold curvature effects on the flow front propagation caused by the increased fiber volume content in these areas were also taken into account. The tool was designed with a heating ability using purified liquid water guided to a channel circuit within both top and bottom halves of the tool. Deflection and heat transfer simulations were performed with the finite element method (FEM). All three executed simulations (filling, heat transfer and deflection) were used as a guideline for the final mold design.
机译:本文介绍了一种新颖的ω形树脂转移成型(RTM)工具的开发,尤其设计成托管不同类型的传感器,并避免RTM的常见问题(例如,加热不均匀,低刀具耐久性,偏转)。执行渗透率测量以获得用于数值模拟模拟的实际渗透率测量。三种不同种类的流动性(各向同性,正交和各向异性)被认为是填充图案和流动前预测。由于U形复合部件设计,还考虑了这些区域中纤维体积含量增加引起的流动前繁殖的模具曲率效应。该工具的设计具有使用净化的液体水引导到工具的顶部和底部的通道电路的净化能力。用有限元方法(FEM)进行偏转和传热模拟。所有三个执行的模拟(填充,传热和偏转)被用作最终模具设计的指导。

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