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Vol 196
Pages:
361-367
Download volume:
RUS
Article

Discrete distributin of the electric charge influence on power characteristics of electric field in anodic bonding technologies

Authors:
N. S. Pshchelko1
N. P. Sidorova2
D. A. Chigirev3
About authors
  • 1 — Ph.D. associate professor Saint Petersburg State Mining University
  • 2 — student Saint Petersburg State Mining University
  • 3 — post-graduate student Saint Petersburg State University of Electrical Engineering
Date submitted:
2011-08-13
Date accepted:
2011-10-12
Date published:
2012-05-22

Abstract

The physical and mathematical model allowing to estimate force and power characteristics of non-uniform electric field in electroadhesive technologies is developed. The new processing method for making of qualitative conductive covering films on dielectric substrates with electrostatic field use is theoretically proved. The obtained results prove to be true experimentally.

Область исследования:
(Archived) Nanotechnologies and information technologies
Keywords:
electric adhesion electric field conductive films.
Funding:

None

Go to volume 196

References

  1. Afanasev P.V, Korovkina N.M. Technology for formation of platinum electrodes for submicronic condenser structures with ferroelectric films ZTP // The Vacuum technique and technology. 2006. Vol.16. Is.3. P.215-219.
  2. Nagornyj V.S., Pshchelko N.S., Sidorova N.P. The analysis of dynamics of process of formation of electroadhesive contact // Scientific and technical sheets of Saint Petersburg Poletechnical University. Ser. Computer science, telecommunications, management. 2009. N 6. P.166-170.
  3. Potapov A.A. Electronic magazine «Investigated in Russia». Absolute radius of multielectronic atoms according to thtir polarisation. 2005. 541 p. // URL: https://www.zhurnal.ape.relarn.ru
  4. Pshchelko N.S. Use of electric field for increase of adhesion of electrospended films to dielectric substrates at vacuum drawing // The Vacuum technique and technology. 2010. N 1. P.31-36.
  5. Pshchelko N.S. Polarization of surface layers of ionic dielectrics on border of electroadhesive contact to a conductor // Nonferrous metals. 2005. N 9. P.44-50.

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