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A comparison of the unidirectional and radial in‐plane flow of fluids through woven composite reinforcements

机译:流体通过编织复合材料增强材料的单向和径向面内流动的比较

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AbstractThe in‐plane flow of fluids through dense fibrous woven reinforcements was studied to aid the development of constitutive models for use in simulations of composite fabrication by resin transfer molding. As a first part of this effort, both one‐dimensional and radial flow experiments were conducted with Newtonian fluids in several woven glass fabrics. Analysis of the one‐dimensional flow experiments shows that the two experimental techniques are often, but not always, consistent, and both techniques suggest a relationship between the physical structure of the reinforcement and the mathematical structure of the permeability tensor. Preform features at the laminar and interlaminar scales were hypothesized to influence the experimental re
机译:摘要研究了流体通过致密纤维编织增强材料的面内流动,以帮助开发用于树脂传递模塑复合材料制造模拟的本构模型。作为这项工作的第一部分,在几种编织玻璃织物中使用牛顿流体进行了一维和径向流动实验。对一维流动实验的分析表明,这两种实验技术通常(但并非总是)一致,并且两种技术都表明了钢筋的物理结构与渗透率张量的数学结构之间的关系。假设层状和层间尺度上的预制件特征会影响实验结果

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