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Two-dimensional simulation of hollow fiber membrane fabricated by phase inversion method

机译:相转化法制备中空纤维膜的二维模拟

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摘要

In the steady fabricating process, two-dimensional hollow fiber membrane near the spinneret was numerically simulated using the finite element method (FEM). The unknown positions of free Surface and moving interface were Calculated simultaneously by the velocity and pressure fields. The effects of seven relevant parameters, i.e., inertia term, gravity term, dope flow rate, bore flow rate, dope viscosity, tensile force, end velocity and non-Newtonian on the velocity and diameter profile were Studied. On the basis of the simulated results, the inertia term in hollow fiber-spinning process was safely neglected in low speed, while the effect of gravity was not be neglected. Besides, the cuter diameter of the fibers increased with an increase of dope flow rate and bore flow rate; Large tensile force or large end velocity Could cause large deformation in the air gap; larger viscous dope solution tended to make less deformation in the air gap. It was found that an increase of the dope flow rate at small dope flow rate resulted in an increase of the inner diameter, while at large dope flow rate, it decreased. (c) 2006 Wiley Periodicals, Inc.
机译:在稳定的制造过程中,使用有限元方法(FEM)对喷丝头附近的二维中空纤维膜进行了数值模拟。通过速度和压力场同时计算自由曲面和运动界面的未知位置。研究了七个相关参数,即惯性项,重力项,涂料流率,孔流量,涂料粘度,拉伸力,最终速度和非牛顿性对速度和直径分布的影响。根据模拟结果,中空纤维纺丝过程中的惯性项在低速时可以安全地忽略,而重力的影响则可以忽略不计。此外,随着浓液流率和孔流率的增加,纤维的切割直径增大。较大的拉力或较大的最终速度可能会导致气隙变形;较大的粘稠涂料溶液倾向于使气隙变形较小。发现在低浓液流量下浓液流量的增加导致内径的增加,而在浓液流量大时其减小。 (c)2006年Wiley Periodicals,Inc.

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