DocumentCode :
1298841
Title :
Surface microstructure of powder layers influenced by the forces of deposition and adhesion in electrostatic coating process
Author :
Banerjee, Souvik ; Mazumder, Malay K.
Author_Institution :
Kornag Inc., San Jose, CA, USA
Volume :
36
Issue :
1
fYear :
2000
Firstpage :
46
Lastpage :
52
Abstract :
In the electrostatic powder coating process, several factors affect the deposition of charged polymer paint particles and the adhesion of the deposited particles on the grounded substrate being coated. In this paper, the roles and relative magnitudes of these forces are discussed. A model on the deposition of a charged particle approaching the surface of the substrate is presented. The electrostatic fields that are considered here to be responsible for particle deposition are the following: (1) corona field between gun tip and grounded plane; (2) image field between a particle and its image charge; (3) field due to the space charge of charged particles; and (4) net repulsive field between a charged particle and the powder layer. Once the particle deposits on the surface and the high voltage is turned off, the particle experiences the following forces: (1) the force due to the image charge of the underlying powder layer; (2) the force due to the image charge of the particle; and (3) the repulsive force between the charged particle and the charged powder layer. The model shows criteria on whether the particles will deposit on the substrate and, if deposited, whether they will remain on the surface of the powder layer once the corona field is turned off. These relative forces influence the microstructure of the powder layer and may affect the ultimate appearance or the texture of paint film after curing
Keywords :
adhesion; corona; electrostatics; space charge; spray coating techniques; spray coatings; surface structure; adhesion forces; charged particle; charged particles; charged polymer paint particles; charged powder layer; corona field; deposition forces; electrostatic coating process; electrostatic powder coating process; grounded plane; grounded substrate; gun tip; image charge; image field; microstructure; net repulsive field; paint film texture; particle; powder layer; powder layers; repulsive force; space charge; surface microstructure; Adhesives; Coatings; Corona; Electrostatics; Microstructure; Paints; Polymer films; Powders; Space charge; Substrates;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/28.821795
Filename :
821795
Link To Document :
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