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Effect of fiber orientation on pore size characteristics of nonwoven structures

机译:纤维取向对非织造结构孔径特征的影响

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摘要

Fiber orientation is a key parameter affecting the geometrical, hydraulic and mechanical properties of nonwoven materials. The effect of fiber orientation on the pore size has been experimentally investigated based on air-laid, parallel-laid, and cross-laid structures following through-air bonding. It was evident that there is a discernible difference between the mean flow and maximum pore sizes of these nonwoven materials. The influence on pore size was further elucidated by evaluating experimental and theoretical models based on sieving-percolation pore network theory including a model that incorporates directional parameter to account for the effect of fiber orientation. It was established that good agreement with experimental data can be obtained using such a model.
机译:纤维取向是影响非织造材料的几何,水力和机械性能的关键参数。纤维取向对孔径的影响已经通过通气粘合后的气流成网,平行成网和交叉成网结构进行了实验研究。显然,这些非织造材料的平均流量和最大孔径之间存在明显的差异。通过基于筛分-渗流孔网络理论的实验和理论模型的评估,进一步阐明了对孔径的影响,该模型包括一个结合了方向参数以解决纤维取向影响的模型。已经确定使用这种模型可以获得与实验数据的良好一致性。

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