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Traveling-wave delivery of single-component developer

With the objective a controlled electrical delivery of single-component toner from a hopper to an image developing region, the traveling-wave induced pumping of dilute triboelectrified particles along the semi-insulating surface of a 100 mu m thick insulating layer is studied. Fabricated on a circui...

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Published in:IEEE transactions on industry applications 1989-09, Vol.25 (5), p.956-961
Main Authors: Melcher, J.R., Warren, E.P., Kotwal, R.H.
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Language:English
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description With the objective a controlled electrical delivery of single-component toner from a hopper to an image developing region, the traveling-wave induced pumping of dilute triboelectrified particles along the semi-insulating surface of a 100 mu m thick insulating layer is studied. Fabricated on a circuit board underlying the layer are electrodes connected to a six-phase high-voltage system so as to give a traveling-wave of 7 mm wavelength and frequency that varies from 1 to 100 Hz. Measurements of the migration of a band of particles, displaying synchronous and asynchronous pumping regimes, are compared to a theoretical model developed elsewhere. Provision for leakage of image triboelectrification charge is shown to provide for unipolar pumping. Synchronous pumping, with particles hopping along the surface in positive and/or negative bands displaced by a half-wavelength, is shown to prevail up to a critical frequency beyond which the well-controlled phase bands are replaced by a asynchronous motions that tend to be airborne.< >
doi_str_mv 10.1109/28.41264
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ispartof IEEE transactions on industry applications, 1989-09, Vol.25 (5), p.956-961
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1939-9367
language eng
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subjects Aerodynamics
Breakdown voltage
Classical and quantum physics: mechanics and fields
Classical electromagnetism, maxwell equations
Classical field theories
Dielectrics and electrical insulation
Electrodes
Exact sciences and technology
Frequency measurement
Industry Applications Society
Particle measurements
Physics
Printed circuits
Propulsion
Pumps
title Traveling-wave delivery of single-component developer
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