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Determination of the Thermal Dispersion Coefficient During Radial Filling of a Porous Medium

机译:径向填充多孔介质时的热分散系数的确定

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Resin Transfer Molding is one of the Liquid Composite Molding processes in which a thermoset resin is infiltrated into a fibrous porous media in a closed mold. To reduce the curing time of the resin, the mold may be heated, influencing other filling parameters such as the resin viscosity. Analysis of the non-isothermal effects during filling will help to understand the manufacturing process. One of the issues of non-isothermal filling in porous media is the variation of the velocity profile at the micro scale level, which as it is averaged, cannot be included in the convective term. To account for it, the thermal conductivity tensor is modified and a thermal dispersion coefficient K_d is introduced to model the micro convection effects. In this paper, we explore the temperature profile under non-isothermal conditions for radial injection during Resin Transfer Molding in order to determine the thermal dispersion coefficient. An approximate solution is derived from the series solution and validated with a numerical method. Experiments using carbon fibers and polyester resin were conducted. The thermal dispersion coefficient is determined by comparing experimental results with the steady state analytical solution. The comparison between radial and linear injection results shows that the same degree of dispersion is present in isotropic fibrous porous media.
机译:树脂传递模塑法是液体复合模塑法之一,其中热固性树脂在封闭的模具中渗入纤维状多孔介质中。为了减少树脂的固化时间,可以加热模具,从而影响其他填充参数,例如树脂粘度。分析填充过程中的非等温效应将有助于了解制造过程。多孔介质中非等温填充的问题之一是微尺度水平的速度分布变化,这是平均的,不能包括在对流项中。为了解决这个问题,修改了导热系数张量,并引入了热弥散系数K_d以对微对流效应进行建模。在本文中,我们探索了在树脂传递模塑过程中径向注入非等温条件下的温度曲线,以确定热分散系数。从级数解中得出一个近似解,并用数值方法进行了验证。进行了使用碳纤维和聚酯树脂的实验。通过将实验结果与稳态分析溶液进行比较,可以确定热分散系数。径向注入和线性注入结果之间的比较表明,各向同性纤维多孔介质中存在相同程度的分散。

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