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Investigation of microscale flow phenomena in determining permeabilities of fabrics for composites.

机译:在确定复合材料织物的渗透性方面的微观流动现象研究。

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An accurate model is needed for the flow of resin through fabric reinforcements, especially those that have been deformed, mainly in shear, when conforming to the shape of a curved part. The goal of this work was to develop such a model, based on the fabric microstructure.; Experiments were carried out to determine the permeability of sheared fabric reinforcements. The trends observed could not be modeled by existing semi-empirical or empirical approaches.; A three-dimensional fabric model was developed, as well as an algorithm to obtain cross-sections through fabric layers at any desired angle and through any desired point, for any shear angle. Those tools were used to interrogate the effect of layer nesting and to establish the geometry of the gaps that occur between fabric tows. After verifying that the assumptions for creeping flow were valid for cases of interest, a model based on gap size was developed. Results obtained with this variable-gap model for realistic production conditions bound the experimental permeability data, and give excellent predictions for the principal flow directions. Moreover, the techniques developed here use no fitting parameters.
机译:需要一个准确的模型来使树脂流经织物增强件,尤其是在与弯曲部分的形状相符时,尤其是在剪切力作用下已经变形的那些。这项工作的目的是基于织物的微观结构开发这样的模型。进行实验以确定剪切的织物增强材料的渗透性。观察到的趋势无法通过现有的半经验或经验方法来建模。开发了三维织物模型以及一种算法,该算法可在任何剪切角度下以任意角度和任意点通过织物层获得横截面。这些工具被用来询问层嵌套的效果,并确定在织物丝束之间出现的缝隙的几何形状。在验证了蠕变流量的假设对感兴趣的情况有效之后,开发了基于间隙尺寸的模型。对于实际生产条件,使用该可变间隙模型获得的结果限制了实验渗透率数据,并为主要流向提供了出色的预测。此外,此处开发的技术不使用拟合参数。

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