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3D modeling of filtration process via polyurethane nanofiber based nonwoven filters prepared by electrospinning process

机译:通过静电纺丝工艺制备的基于聚氨酯纳米纤维的无纺布过滤器的过滤过程的3D建模

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摘要

Full 3D particle filtration modeling at low pressures considering slip/transition/free molecular flow regime, particle-fiber interactions, air/particle slip, sieve and homogenous flow field has been performed for the polyurethane nanofiber filter prepared by electrospinning process and the obtained theoretical predictions for the filtration efficiency have been compared with the corresponding experimental data. Moreover, the effect of air velocity, viscosity, temperature, pressure and particle-fiber friction coefficient on the produced polyurethane nanofiber filter efficiency has been investigated in more details. In order to take all real structure features of the nanofiber filter into account (such as varying fiber diameter, curvature along its length, inhomogeneity and mat defects), a new approach for 3D nanofiber mat model construction from corresponding SEM images has been proposed and utilized.
机译:通过静电纺丝工艺制备的聚氨酯纳米纤维滤料,在考虑滑移/过渡/自由分子流动状态,颗粒-纤维相互作用,空气/颗粒滑移,筛子和均匀流场的低压条件下进行了完整的3D颗粒过滤建模,并获得了理论预测过滤效率已经与相应的实验数据进行了比较。而且,已经更详细地研究了空气速度,粘度,温度,压力和颗粒-纤维摩擦系数对所产生的聚氨酯纳米纤维过滤器效率的影响。为了考虑到纳米纤维滤光片的所有实际结构特征(例如变化的纤维直径,沿其长度的曲率,不均匀性和垫缺陷),已经提出并利用了一种从相应的SEM图像构建3D纳米纤维垫模型的新方法。 。

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