Claims
- 1. In a non-contact line printing apparatus of the type having a print receiving medium, a source of charged particles spaced from one side of the medium, an electrode on the other side of the medium to form an electric field in the space between the source and the medium so that charged particles are propelled by the field through space from the source to impinge the medium in a printing zone, and means for electrically modifying the field in accordance with an image to be reproduced, the improvement comprising: semiconductor or insulator means positioned between the electrode and the medium to provide a support surface for the medium and to cause the electric field in the space between the source and the print receiving medium to decrease continuously thoughout the printing zone from a print line in directions at right angles to the print line in the plane of the medium to thereby prevent ionization in the vicinity of the electrode said semiconductor or insulator means surrounding said electrode and being comprised of first and second materials of different resistivity, the first material comprising the portion of said semiconductor or insulator means lying between the electrode and the medium being of a material having a lower resistivity than the second material comprising the portion of the semiconductor or insulator means on the opposed side of the electrode.
- 2. Apparatus according to claim 1 wherein the semiconductor or insulator means has a resistivity which is less than the resistivity of the print receiving medium.
- 3. The improvement recited in claim 1 wherein said first and second materials have exposed surfaces facing the print receiving medium, said second material partially surrounding said first element so that the medium-facing-surface of said first material is located between medium-facing-surfaces of said second material.
- 4. In the improved line printing apparatus recited in claim 3, said semiconductor or insulator means being supported by a support member having medium-facing-surfaces located laterally of the medium-facing-surfaces of said first and second materials, and which is adapted to be maintained at a lower potential, such as ground potential, relative to said electrode.
- 5. An electrostatic non-contact line printer comprising an elongate source of charged particles, an elongate conductor spaced from and parallel to said source so that a printing medium and an ink marking particle cloud can pass between said source and said conductor, means for establishing an electric field between said elongate source and said elongate conductor to attract said charged particles from said elongate source to said elongate conductor, means for modifying the field in accordance with an image to be reproduced, and discharge prevention means positioned between said source and said conductor for preventing the formation of an electric discharge in the vicinity of the conductor when the conductor is subjected to a relatively high voltage thereby to prevent unintended electrical charging of the ink marking particles by said electric discharge and the resulting attraction of the ink marking particles to said modifying means said discharge prevention means comprised of at least first and second portions, said first portion having a resistivity which is lower than said second portion, said first portion having an exposed paper-facing-surface intersecting the plane including the center-lines of said elongate source of charged particles and said elongate conductor.
- 6. A printer according to claim 5 wherein said discharge preventing means comprises an insulator in contact with said elongate conductor and positioned between said elongate conductor and the medium.
- 7. A printer according to claim 5 wherein said elongate conductor comprises an elongate electrode, and wherein said discharge prevention means forms a support surface for the medium and provides an electrical connection between said electrode and a ground.
- 8. A printer according to claim 5 wherein the medium passes over and contacts said discharge prevention means at least over a printing zone extending transversely to said elongate conductor a limited distance from the center of said elongate conductor to each side thereof, and wherein said discharge prevention means extends substantially past the printing zone so that corona formation at least in the vicinity of the printing zone is prevented.
- 9. Apparatus for non-contact line printing on an elongate, longitudinally movable strip of material comprising a corona source for the emission of ions, an electric voltage modulator extending over the width of the material on one side thereof, being spaced from the material and including an array of apertures for the selective passage of ions through the apertures, an electrode parallel to the aperture array, extending beyond the material width and located on another side of the material for forming an electric field between said modulator and the electrode whereby a particle mist can be introduced between said modulator and the material and selected ones of the particles impinged by ions passing through the apertures become charged for attraction to and deposition on the material and thereby forming spot patterns on the material, means electrically insulating said electrode from the material, said insulating means having an exterior surface for contacting the material as the material advances longitudinally, said insulating means comprised of first and second high resistivity components of different resistivities, the first component positioned between said electrode and said material, said second component positioned on the opposite side of said conductor and having a higher resistivity than said first component and means forming a voltage on said exterior surface which voltage is highest along a line aligned with the aperture array and which tapers off relatively rapidly and continuously to approximately ground potential at lateral sides of said exterior surface.
- 10. Apparatus according to claim 9 wherein said insulating means comprises an insulator extending over the length of the electrode and having a width greater than the width of the electrode, and grounding means for grounding a lateral side of said insulating means so that the support surface voltage drops substantially continously from the electrode center to ground potential at said lateral side of said insulating means.
- 11. Apparatus according to claim 10 wherein said electrode and said grounding means are secured to the insulating means, and including means for positioning said insulating means, said electrode and said grounding means opposite from and parallel to the aperture array of the modulator.
- 12. Apparatus according to claim 10 wherein said grounding means comprises ground conductors located on opposed lateral sides of said insulating means, laterally spaced from and on each side of the electrode.
- 13. Apparatus according to claim 9 wherein said insulating means is constructed of substances having lesser resistivity than the material.
- 14. Apparatus according to claim 13 wherein said substances each have a resistivity of between about 10.sup.4 to about 10.sup.11 ohm-cm.
- 15. Apparatus according to claim 13 wherein said substances have a dielectric strength of at least about 100 volts per mil.
- 16. Apparatus as recited in claim 9 wherein said first component is located on said line aligned with the aperture array.
- 17. Apparatus according to claim 9 wherein said insulating means has an approximately rectangular cross section, and wherein said electrode is in contact with and centered relative to the sides of said insulating means and opposite said exterior surface.
- 18. Apparatus according to claim 17 wherein insulating means is provided with a pair of conductors, each disposed parallel to the electrode, spaced therefrom and in contact with the insulating means.
- 19. Apparatus according to claim 18 wherein said conductors are disposed adjacent longitudinal edges of the sides.
- 20. Apparatus according to claim 19 wherein said conductors are secured to narrow sides of the insulating means.
- 21. Apparatus according to claim 19 wherein said conductors are in contact with the side.
- 22. Line printing apparatus for forming spot patterns of particles on a longitudinally moving sheet paper or the like comprising a modulator including an array of apertures arranged perpendicular to the paper motion and spaced from the paper for selectively passing ions through some of the apertures to thereby charge a particle mist between the aperture array and the sheet and thus form the spot patterns by impinging the charged particles on the paper, and a backup bar on a side of the sheet opposite the array for supporting a portion of the sheet aligned with the array while spot patterns are formed on the sheet, the backup bar being constructed of a material having a lesser electric resistance than the electric resistance of the paper sheet, the backup bar including means for applying a maximum electric potential to a surface portion of the bar contacting the sheet and aligned with the array and for gradually decreasing the potential on the bar to either side of the bar center to prevent high electric field concentrations and the formation of ions in the vicinity of the bar which are attracted to the modulator and which would cause a deposit of particles on the modulator said backup bar comprised of an electrically conductive support member partially enclosing a first semiconductive element which, in turn, partially encloses a second semiconductive element having a lower resistivity than said first semiconductive element.
- 23. Apparatus according to claim 22 wherein the bar comprises an insulator.
- 24. Apparatus according to claim 23 wherein the bar is constructed of a glass.
- 25. Apparatus according to claim 23 wherein the bar is constructed of a ceramic substance.
- 26. Apparatus according to claim 23 wherein the bar is constructed of a plastic substance.
- 27. Apparatus according to claim 23 wherein the bar is constructed of an epoxy.
- 28. Apparatus according to claim 22 wherein said bar comprises a carbon filled polyethylene.
- 29. Apparatus according to claim 28 wherein said carbon filled polyethylene has a resistivity in the range of about 10.sup.4 - 10.sup.11 ohms/cm.
Parent Case Info
This is a continuation of application Ser. No. 359,287, filed May 11, 1973, now abandoned.
US Referenced Citations (22)
Continuations (1)
|
Number |
Date |
Country |
Parent |
359287 |
May 1973 |
|