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The Effect of Shear Deformation on Permeability of 2.5D Woven Preform

机译:剪切变形对2.5D机织预成型坯渗透性的影响

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摘要

The accurate prediction of the permeability is the key to optimizing the molding process of fiber reinforced composites, thus to improve the composite quality, and reduce the material and labor costs in the manufacturing process. In this paper, the permeability of 2.5D woven preform with shear deformation was studied by experiments and numerical simulations. The permeabilities of the samples under various shear angles were measured by the radial flow method. An RVE (representative volume element) model based on the fabric microstructure and shear deformation is developed to predict the permeability of preform and the simulation results are compared with experiments value to verify the effectiveness of this model. Using this model, the effect of the fiber volume fraction on the permeability of the 2.5D woven preform was determined. Based on the structural characteristics, experimental and simulation results of the 2.5D woven preform, an empirical equation for predicting its permeability under shear deformation was formulated. The prediction accuracy of the equation was evaluated, and the equation was used to determine the change of permeability with shear deformation for the 2.5D woven preform.
机译:渗透率的准确预测是优化纤维增强复合材料成型工艺,提高复合材料质量,降低制造过程中材料和人工成本的关键。本文通过实验和数值模拟研究了具有剪切变形的2.5D编织预型件的渗透性。通过径向流动法测量样品在各种剪切角下的渗透率。建立了基于织物微结构和剪切变形的RVE(代表性体积元)模型,以预测预成型坯的渗透性,并将仿真结果与实验值进行比较,以验证该模型的有效性。使用该模型,确定了纤维体积分数对2.5D机织预成型坯渗透性的影响。根据2.5D编织预成型坯的结构特性,实验和仿真结果,建立了预测其在剪切变形下的渗透性的经验方程。对方程的预测精度进行了评估,该方程用于确定2.5D编织预成型坯的渗透率随剪切变形的变化。

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