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首页> 外文期刊>Journal of Composite Materials >Fiber deformation as a result of fluid injection: modeling and validation in the case of saturated permeability measurements in through thickness direction
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Fiber deformation as a result of fluid injection: modeling and validation in the case of saturated permeability measurements in through thickness direction

机译:流体注入导致的纤维变形:在整个厚度方向进行饱和渗透率测量的情况下进行建模和验证

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摘要

The knowledge of the through thickness permeability is important for the design of modern liquid composite molding processes. In through thickness permeability measurements, the textile undergoes flow-induced compaction, changing the distribution of fiber volume content. As a consequence, results of permeability measurements show a dependency on the applied injection pressure, further denoted as apparent permeability. In the study presented in this paper, saturated permeability measurements were conducted for different fiber volume contents, varying the injection pressure. At the lowest fiber volume content used, the apparent permeability strongly varied with pressure. With increasing fiber volume content the dependency on injection pressure decreased, but it was not negligible. We used a simulation model for coupling of flow and fiber deformation in liquid composite molding in order to predict the apparent permeability in saturated through thickness permeability measurements. The input data for the simulation model were determined by measurements of saturated permeability, using a very low injection pressure, and textile compaction properties. With the proposed methodology, a good agreement of simulation and experimental results was achieved.
机译:透通厚度的知识对于现代液体复合成型工艺的设计很重要。在通过厚度渗透率测量中,纺织品经历了流致压实,从而改变了纤维体积含量的分布。结果,渗透率测量的结果显示出对所施加的注射压力的依赖性,该注入压力进一步表示为表观渗透率。在本文介绍的研究中,针对不同的纤维体积含量,改变了注射压力,进行了饱和渗透率测量。在使用的最低纤维体积含量下,表观渗透率随压力而强烈变化。随着纤维体积含量的增加,对注射压力的依赖性降低,但是这不能忽略。我们使用模拟模型来耦合液体复合材料成型中的流动和纤维变形,以便通过厚度渗透率测量来预测饱和状态下的表观渗透率。仿真模型的输入数据是通过使用非常低的注射压力测量饱和渗透率来确定的,并具有纺织品的压实特性。利用所提出的方法,在仿真和实验结果上取得了很好的一致性。

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