Chem. J. Chinese Universities ›› 2017, Vol. 38 ›› Issue (6): 982.doi: 10.7503/cjcu20160849

• Special Articles of China International Conference on Electrospinning(CICE 2016) • Previous Articles     Next Articles

Impact Mechanism of Needleless Electrospinning Spinneret Geometry on Electric Field Distribution Regularities

WANG Wei*(), QIANG Wei, DAI Hongchao   

  1. School of Electrical Engineering and Automation,Tianjin Key Laboratory of Advanced Technology of Electrical Engineering and Energy,Tianjin Polytechnic University, Tianjin 300387, China
  • Received:2016-11-28 Online:2017-06-10 Published:2017-05-23
  • Contact: WANG Wei E-mail:wangweibit@tjpu.edu.cn
  • Supported by:
    This paper is supported by the National Key Technology R & D Program of China(No.2014BAH03F01).

Abstract:

In the needleless electrospinning technology, the distribution and the value of electric field at spinneret are the key factors that influence the electrospinning process and the formation of nanofibers. Different geometries of the spinneret directly affect the distribution of the external electric field. Therefore, it is of practical significance for the design and optimization of needleless electrospinning spinneret through the research on the distribution of electric field from the geometry. In this paper, governing equations had been set up to analyze movement process of steady-state jet from three aspects: mass conservation, charge conservation and momentum conservation. The finite element analysis(FEA) software COMSOL Multiphysics 5.0 is used to model three needleless electrospinning spinnerets and analyze the distribution of external electric field. It is found that during the evolution from the typical cylindrical spinneret to the stepped shaft one with the added auxiliary electrodes, the distribution of electric field is influenced by the angle of the auxiliary electrodes added on both sides, plus of the number and diameters of rotary parts. The electric field is optimized step by step through a series of designs. The research is very important to the improvement of production efficiency and nanofiber quality of the needleless electrospinning equipment.

Key words: Electrospinning, Spinneret, Electric field intensity

CLC Number: 

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