DocumentCode
1344966
Title
A shield ring enhanced equilateral hexagon distributed multi-needle electrospinning spinneret
Author
Yang, Ying ; Jia, Zhidong ; Li, Qiang ; Hou, Lei ; Liu, Jianan ; Wang, Liming ; Guan, Zhicheng ; Zahn, Markus
Author_Institution
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Volume
17
Issue
5
fYear
2010
fDate
10/1/2010 12:00:00 AM
Firstpage
1592
Lastpage
1601
Abstract
The multi-needle electrospinning system is a convenient way to produce fibers with special structures such as core-shell morphologies at a high production rate. In this paper, a specially designed multi-needle electrospinning system is presented. The spinnerets were built-up with an equilateral hexagon array. Each set of 3 needles of the spinnerets were distributed as an equilateral triangle. A coaxial shield ring was used to create an approximate uniform electric field near the tips of the needles and to restrict the collection area. The simulation results also show that the outside needles can help to create a more uniform electric field near the inside tips of the needles and restrict the path of the inside jets, which works almost the same as the additional shield ring. Based on the simulation results, several multi-needle systems were tested. A 7 cm diameter shield ring was used in a 7 needle system, a 9 cm diameter shield ring was used in a 19 needle system and a 10.5 cm diameter shield ring was used in a 37 needle system. Polyethylene Oxide (PEO) aqueous solution was used as the test solution in experiments. The electrospinning results demonstrated that the use of multi-needle spinnerets is robust and that uniform nanofibers can be produced. The more needles used, the smaller the mean fiber diameter for larger mean electric field strengths. These distributions of needles show the scale up possibility of special structure electrospun nanofiber manufacturing.
Keywords
electric fields; electrospinning; nanofibres; needles; polymer fibres; PEO; approximate uniform electric field; coaxial shield ring; distributed multineedle electrospinning spinneret; equilateral hexagon array; equilateral triangle; inside jets; larger mean electric field strengths; mean fiber diameter; multineedle systems; polyethylene oxide aqueous solution; scale up possibility; shield ring enhanced equilateral hexagon; special structure electrospun nanofiber manufacturing; specially designed multineedle electrospinning system; uniform nanofibers; Electric fields; Electrodes; Electron tubes; Needles; Simulation; Three dimensional displays; Multi-needle electrospinning, electric field distribution nanofiber;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2010.5595562
Filename
5595562
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