GB1362232A - Method of suppressing constraining or diverting movement of gas-borne electrically charged particles or fibres - Google Patents

Method of suppressing constraining or diverting movement of gas-borne electrically charged particles or fibres

Info

Publication number
GB1362232A
GB1362232A GB1931371A GB1931371A GB1362232A GB 1362232 A GB1362232 A GB 1362232A GB 1931371 A GB1931371 A GB 1931371A GB 1931371 A GB1931371 A GB 1931371A GB 1362232 A GB1362232 A GB 1362232A
Authority
GB
United Kingdom
Prior art keywords
particles
electrodes
bias
pipe
electrode
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
GB1931371A
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of GB1362232A publication Critical patent/GB1362232A/en
Expired legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03GELECTROGRAPHY; ELECTROPHOTOGRAPHY; MAGNETOGRAPHY
    • G03G15/00Apparatus for electrographic processes using a charge pattern
    • G03G15/06Apparatus for electrographic processes using a charge pattern for developing
    • G03G15/08Apparatus for electrographic processes using a charge pattern for developing using a solid developer, e.g. powder developer
    • G03G15/0822Arrangements for preparing, mixing, supplying or dispensing developer
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C3/00Separating dispersed particles from gases or vapour, e.g. air, by electrostatic effect
    • B03C3/34Constructional details or accessories or operation thereof
    • B03C3/88Cleaning-out collected particles
    • B03C3/885Cleaning-out collected particles by travelling or oscillating electric fields, e.g. electric field curtains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03CMAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03C5/00Separating dispersed particles from liquids by electrostatic effect
    • B03C5/02Separators
    • B03C5/022Non-uniform field separators
    • B03C5/028Non-uniform field separators using travelling electric fields, i.e. travelling wave dielectrophoresis [TWD]
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B5/00Electrostatic spraying apparatus; Spraying apparatus with means for charging the spray electrically; Apparatus for spraying liquids or other fluent materials by other electric means
    • B05B5/08Plant for applying liquids or other fluent materials to objects
    • B05B5/087Arrangements of electrodes, e.g. of charging, shielding, collecting electrodes
    • B05B5/088Arrangements of electrodes, e.g. of charging, shielding, collecting electrodes for creating electric field curtains
    • GPHYSICS
    • G21NUCLEAR PHYSICS; NUCLEAR ENGINEERING
    • G21KTECHNIQUES FOR HANDLING PARTICLES OR IONISING RADIATION NOT OTHERWISE PROVIDED FOR; IRRADIATION DEVICES; GAMMA RAY OR X-RAY MICROSCOPES
    • G21K1/00Arrangements for handling particles or ionising radiation, e.g. focusing or moderating
    • G21K1/08Deviation, concentration or focusing of the beam by electric or magnetic means
    • G21K1/087Deviation, concentration or focusing of the beam by electric or magnetic means by electrical means

Abstract

1362232 Conveyers; hoppers S MASUDA 8 June 1971 [7 July 1970] 19313/71 Headings B8A and B8S [Also in Divisions B2 G2 and H2] The movement of gas-borne electricallycharged particles 8, Fig. 1, is suppressed, constrained or diverted by an alternating electric field set up between adjacent electrodes 1, 2. Under the influence of the field a particle 8 will tend to oscillate along the lines 6 of electric flux, but in doing so will experience centrifugal force 9 which has the effect of repelling it from the electrode pair. In practice a row of electrodes is provided, such as electrodes 1, 2, 1<SP>1</SP>, 2<SP>1</SP> ... in plane L-L<SP>1</SP> of Fig. 6. The electrodes are coated with, or embedded in, insulating material, e.g. P.T.F.E. or epoxy resin. General principles. 1. Single phase arrangements. - Alternate electrodes 1,2 ... (Fig. 6) are connected to opposite terminals of a single phase supply 3, setting up a standing-wave electric field pattern which prevents the particles passing through the plane L-L<SP>1</SP>. If, for one or more electrodes, a D.C. bias relative to earth is superimposed upon the alternating voltage, the particles will tend to collect near those electrode(s) (Fig. 4, not shown). If, as in Fig. 6, a D.C. bias is applied between every adjacent pair of electrodes, the particles will be driven laterally (33) above the row of electrodes. 2. Polyphase arrangements.-The electrodes 23, 24, 25 ... (Fig. 7) are connected to successive phases U, V, W of a polyphase supply, setting up a travelling-wave electric field pattern which not only prevents the particles passing through the plane L-L<SP>1</SP> but drives them laterally (33) in one direction or the other, depending on the phase sequence. If, as in Fig. 7, a D.C. bias relative to earth is applied to one electrode 23<SP>1</SP> lateral movement past this electrode will be prevented. If a D.C. bias is applied between every adjacent pair of electrodes the lateral movement can be either accelerated or suppressed, depending on the polarity of the bias. Applications. 1. Electrostatic hoppers/sprayers (Fig. 9).- A series of annular electrodes 56, 57 ...; 59, 60 ...; and 65-69 are energized by a single phase arrangement and define a closed volume 79 within which particles introduced from the top (77) are confined. At the bottom of the volume an outlet is provided by annular electrodes 71-74 energized by a three-phase arrangement of selectable phase sequence. Depending on the phase sequence, the outlet electrodes provide either an upward driving force, preventing release of the particles, or a downward force, ejecting the particles on to an object 80 to which (or to a conductive plate beneath which) is applied a D.C. bias 81. The arrangement may be used for painting by liquid paint particles, coating by powder particles, planting of short fibres, dyeing with liquid or powder dye particles, or developing an electrostatic latent image in electroprinting. A patternproducing gauze or plate may be interposed between the outlet 76 and the object 80. 2. Electrostatic conveyers/sprayers (Figs. 12, 13).-An insulating pipe 86, which may be flexible, either has longitudinal electrodes 103- 108 angularly spaced in its wall or has a set of elongated electrodes helically wound around its wall (Fig. 16, not shown), the electric field pattern set up within the pipe confining particles 92 to the central region of the pipe, away from its wall. In one embodiment (Fig. 12) the pipe is inclined so that the particles are driven along it under the influence of gravity. A D.C. bias 41 is applied in a vertical direction to help overcome the tendency of the particles to drop on to the lower surface of the pipe. In other embodiments, three-phase energization is used to drive the particles along the pipe. The arrangement may be used for spraying as in (1) above. 3. Preventing particle scatter (Fig. 18).- Scattering of particles being discharged (148) on to a conveyer 147 is prevented by an annular electrode array 150, the particles having automatically acquired a charge by friction. In another embodiment (Fig. 19, not shown) a scatter-preventing electrode array (159, 160 ...) completely surrounds an electrostatic spraying station where a succession of objects (155) suspended from a moving chain (153) is moved around and past a spray gun (158).
GB1931371A 1970-07-07 1971-06-08 Method of suppressing constraining or diverting movement of gas-borne electrically charged particles or fibres Expired GB1362232A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5936070A JPS5034582B1 (en) 1970-07-07 1970-07-07

Publications (1)

Publication Number Publication Date
GB1362232A true GB1362232A (en) 1974-07-30

Family

ID=13111007

Family Applications (1)

Application Number Title Priority Date Filing Date
GB1931371A Expired GB1362232A (en) 1970-07-07 1971-06-08 Method of suppressing constraining or diverting movement of gas-borne electrically charged particles or fibres

Country Status (7)

Country Link
JP (1) JPS5034582B1 (en)
BE (1) BE769603A (en)
CA (1) CA945083A (en)
DE (1) DE2133790A1 (en)
FR (1) FR2100297A5 (en)
GB (1) GB1362232A (en)
NL (1) NL7109340A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2008017922A2 (en) * 2006-08-07 2008-02-14 Silicon Biosystems S.P.A. Method and device for the manipulation of particles by overlapping fields of force
WO2010007352A1 (en) * 2008-07-16 2010-01-21 Blood Analysis Limited Electrodes arrangement for analysing low concentrations of particles using dielectrophoresis
US7943902B2 (en) 2005-06-03 2011-05-17 Shimadzu Research Laboratory (Europe) Limited Method for introducing ions into an ion trap and an ion storage apparatus

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2337961A1 (en) * 1976-01-08 1977-08-05 Onoda Cement Co Ltd Producing charged powder particles - using parallel linear electrodes embedded in single planar insulator layer
JPS52120782U (en) * 1976-03-06 1977-09-13
JPS52120783U (en) * 1976-03-10 1977-09-13
GB2012493B (en) * 1977-09-05 1982-02-24 Masuda S Device for electrically charging particles
US4896174A (en) * 1989-03-20 1990-01-23 Xerox Corporation Transport of suspended charged particles using traveling electrostatic surface waves
DE3930872A1 (en) * 1989-09-15 1991-03-28 Rolf Hertfelder Room air purifying electrostatic filter - has separator flow ducts as electrically conductive houses, spaced by insulators

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7943902B2 (en) 2005-06-03 2011-05-17 Shimadzu Research Laboratory (Europe) Limited Method for introducing ions into an ion trap and an ion storage apparatus
WO2008017922A2 (en) * 2006-08-07 2008-02-14 Silicon Biosystems S.P.A. Method and device for the manipulation of particles by overlapping fields of force
WO2008017922A3 (en) * 2006-08-07 2008-04-24 Silicon Biosystems Spa Method and device for the manipulation of particles by overlapping fields of force
US8268151B2 (en) 2006-08-07 2012-09-18 Silicon Biosystems S.P.A. Method and device for the manipulation of particles by overlapping fields of force
US8778158B2 (en) 2006-08-07 2014-07-15 Silicon Biosystems S.P.A. Method and device for the manipulation of particles by overlapping fields of force
WO2010007352A1 (en) * 2008-07-16 2010-01-21 Blood Analysis Limited Electrodes arrangement for analysing low concentrations of particles using dielectrophoresis

Also Published As

Publication number Publication date
BE769603A (en) 1971-11-16
JPS5034582B1 (en) 1975-11-10
FR2100297A5 (en) 1972-03-17
CA945083A (en) 1974-04-09
DE2133790A1 (en) 1972-01-20
NL7109340A (en) 1972-01-11

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Legal Events

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