Research on High Voltage Electromagnetic Electrostatic Spinning Machine Electric Field Analysis

Author:

Yu Yang Tao1,Zhao Peng Cheng1,Wang Xin1,Tian Ye1

Affiliation:

1. Air Force Aviation University

Abstract

The main approach to obtain nanomaterial is nanospinning technology at present. Due to the inherent characteristics of nanomaterial itself, which are easily affected by the electric field force effect of spinning. And for the spinning machine nozzle electric field is relatively complex, so nanospinning products at present, is easily affected by the electric field force and dissipated. So, the nanospinning collection efficiency is low. This paper adopts an oval enhanced electrostatic mechanism, method of using additional electric field to improve the balance obtained nanomaterial collection rate. And the construct high voltage electrostatic spinning machine virtual prototype,complete the analysis of the improved method of static electric field. The analysis results indicate that the electric field can effectively improve the collection rate of nanospinning. Through the study of the additional electric field strength further size on the electric field force and the ellipse, can more effectively improve the collection rate of nanospinning products.

Publisher

Trans Tech Publications, Ltd.

Reference4 articles.

1. JONH F. HAGEWOOD. Polymeric nano fibers: fantasyor future[J]. International Fibers Journal. 2002. 12: 62~63.

2. ROSS-SE. Electrospinning: The Quest for Nano fibers International Fiber Journal[R]. 2001, 16(5): 50~53.

3. SHAO CL , GUAN H Y, LUYC, etal. MgO nano fibresvia an electro-spinning technique [J]. Journal of Material Science, 2006 , 41 (12) : 3821~3824.

4. Q N X H , WAN G S Y, SANDRAT, etal Effect of LiCl on the stability length of electro-spinning jet by PAN polymer solution materials [ J ]. Polymer, 2005, 59 : 3102~3105.

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