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Prediction of the Pore Size Distribution in Spunbond-Needlepunched Nonwoven Geotextiles Based on a Stochastic Simulation

机译:基于随机仿真的纺粘无纺布土工织物孔径分布的预测

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Pore size distribution is the key factor of the nonwoven geotextiles for various functions including filtration, separation and reinforcement. The comparison of pore size distributions of spunbond-needle punched nonwoven geotextiles has been made among the theoretical, experimental and the virtual study based on a stochastic simulation. Moreover, the influence of fiber diameter, solid volume fraction, and the thickness of the nonwoven geotextiles on the pore size distribution of the nonwoven geotextiles has been investigated. It is demonstrated that the pore size distribution, which obtained using Geodict?? based on a stochastic simulation, shows a good agreement with experimental data and theoretical, and it is feasible for the prediction of pore size distribution in spunbond-needle punched nonwoven geotextiles. The results show that increasing the solid volume fraction would decrease the pore size of the nonwoven geotextiles under the same filament diameter and same thickness of the webs. Increasing fiber diameter would cause the pore size decreasing, while thickness and solid volume fraction kept constant also found. The results also show that the pore size decreasing with the thickness of the nonwoven geotextiles increasing, while the constant of the solid volume fraction and filaments diameter.
机译:孔径分布是各种功能的非织造土工织物的关键因素,包括过滤,分离和增强。基于随机仿真的理论,实验和虚拟研究,制作了纺粘针刺非织造土工织物的孔径分布的比较。此外,研究了纤维直径,固体馏分和非织造土工织物厚度对非织造土工织物的孔径分布的影响。证明使用地理区域获得的孔径分布?基于随机仿真,展示了与实验数据和理论吻合良好的一致性,并且可以在纺粘针刺非织造土工织物中预测孔径分布是可行的。结果表明,增加固体体积分数将在相同的长丝直径和相同纤维网的厚度下降低非织造土工织物的孔径。增加纤维直径会导致孔径减小,而厚度和固体体积分数也保持恒定。结果还表明,孔径随着非织造土工织物的厚度而增加,而固体体积分数和长丝直径的恒定。

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