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Simulation and Validation of Resin Flow During Manufacturing of Composite Panels Containing Embedded Impermeable Inserts With the VARTM Process

机译:使用VARTM工艺在包含嵌入式防渗插件的复合板制造过程中树脂流动的模拟和验证

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摘要

Modern composite materials are becoming more and more advanced as engineers are better able to take advantage of their properties.In addition to their lighter weight and net-shape manufacturing,current interest is to make these materials multifunctional.This may require one to insert various objects into the composite to achieve a variety of different goals.It is important to understand how these embedded objects will affect both the manufacturing and the structural integrity of the component.In this work,the effects of impermeable embedded inserts on the infusion stage of vacuum-assisted resin transfer molding(VARTM)will be explored.In VARTM,one places a distribution media on top of the preform to aid the filling as the resin will first fill the face of the preform in contact with the distribution media and will then infuse the preform in the thickness direction.However,if one has an embedded impermeable insert in the thickness direction,it will obstruct the flow in the region below the embedded object.Several case studies are conducted to understand the effect of the geometry and placement of the embedded insert and the distribution media lay out and properties on the impregnation of the resin into the fiber preform.Finally,an approach is outlined to modify the layout of the distribution media in order to ensure a complete saturation of the preform under all but the most extreme conditions.The approach is validated with experiments.
机译:随着工程师能够更好地利用其性能,现代复合材料正变得越来越先进。除了重量更轻和网状制造之外,当前的兴趣是使这些材料具有多功能性。这可能需要插入各种物体进入复合材料以实现各种不同的目标。重要的是要了解这些嵌入式对象将如何影响组件的制造和结构完整性。在这项工作中,不可渗透的嵌入式插件对真空输液阶段的影响在VARTM中,人们会在预成型件的顶部放置一个分配介质以辅助填充,因为树脂首先会填充与分配介质接触的预成型件的表面,然后将其注入但是,如果在厚度方向上嵌入了一个不可渗透的嵌件,则会阻碍t下方区域的流动进行了一些案例研究,以了解嵌入嵌件的几何形状和位置以及分布介质的布局和分布特性对树脂向纤维预成型件中的浸渍的影响。最后,概述了一种改性方法。分布介质的布局,以确保除最极端条件外的所有预成型坯完全饱和。

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