Claims
- 1. An application member for conveying a coating material from a supply of the coating material to a receiving surface, and for applying the material to the receiving surface, said application member comprising:
- (a) a hub having a central axis and being adapted for rotation about said axis, said hub comprising a metal peripheral layer defining a generally cylindrical peripheral surface and having indentations along said peripheral surface; and
- (b) a plurality of discrete structures attached in said indentations along said metal peripheral layer of said hub along said peripheral surface and projecting from and spaced in all directions along said peripheral surface so that rotation of the application member about the central axis enables the peripheral surface carrying the discrete structures to encounter the coating material and receive a layer of the coating material at a source position along the peripheral surface, to carry the coating material on the peripheral surface and the projecting structures to an application interface position along the peripheral surface, and to transfer the layer of coating material from the application member to the receiving surface at the application interface position.
- 2. An application member according to claim 1, wherein said projecting structures project about 0.76 mm above the peripheral surface of said hub.
- 3. An application member for conveying a coating material from a supply of the coating material to a receiving surface, and for applying the material to the receiving surface, said application member comprising:
- (a) a hub having a central axis and being adapted for rotation about said axis, said hub comprising a metal peripheral layer defining a generally cylindrical peripheral surface;
- (b) a plurality of discrete structures projecting from and spaced in all directions along the peripheral surface of the hub; and
- (c) a layer of release material coated over the peripheral surface of the hub and the projecting members;
- rotation of the application member about the central axis enabling the peripheral surface carrying the discrete structures and coated with the layer of release material to encounter the coating material and receive a layer of the coating material at a source position along the peripheral surface, to carry the coating material on the peripheral surface and the projecting structures coated with the layer of release material to an application interface position along the peripheral surface, and to transfer the layer of coating material from the application member to the receiving surface at the application interface position, said transfer being facilitated by said layer of release material.
- 4. An application member according to claim 3, wherein said metal peripheral layer has a multiplicity of indentations along and defining said peripheral surface, and said projecting structures comprise particles retained within said indentations along the peripheral surface of the hub with portions of the particles projecting above the peripheral surface of the hub.
- 5. An application member according to claim 4, wherein said particles comprise tungsten carbide.
- 6. An application member according to claim 4, wherein said projecting structures project about 0.76 mm above the peripheral surface of said hub.
- 7. An application member according to claim 2 further including a layer of release material over the peripheral surface and said projecting structures to facilitate transfer of the coating material from the application member to the receiving surface.
- 8. An application system for applying a coating material to a receiving surface, said system comprising:
- (a) an application member comprising a hub having a central axis and a metal peripheral layer defining a generally cylindrical peripheral surface, and a plurality of discrete structures projecting from and spaced in all directions along said peripheral surface;
- (b) means for rotating said application member about said axis to provide a surface velocity at said peripheral surface and to move said peripheral surface along a generally cylindrical path from a source position to an application interface position along said path;
- (c) means operable when said means for rotating is rotating said application member for causing said application member to receive the coating material on said peripheral surface and said structures at said source position and for carrying a layer of the coating material on said peripheral surface and said structures to said application interface position; and
- (d) receiving surface moving means for moving said receiving surface at a surface velocity along a path having a path portion at said application interface position, said receiving surface moving means moving said receiving surface in the same direction as said peripheral surface is moved by said means for rotating at said application interface position, and said receiving surface being in sufficiently close face to face relationship with a portion of said peripheral surface along said path portion at said application interface position to afford transfer of the layer of coating material on said application member to said receiving surface.
- 9. An application system according to claim 8, wherein said projecting structures comprise a plurality of hemispheres projecting about 0.76 mm above the peripheral surface of said hub.
- 10. An application system according to claim 8, wherein said application member includes a layer of release material coated over the peripheral surface of the hub and the projecting members to facilitate transfer of the layer of coating material from the application member to the receiving surface.
- 11. An application system according to claim 8, wherein the receiving surface is defined by a substrate, and said receiving surface moving means is adapted for moving the substrate along said path.
- 12. An application system according to claim 8, wherein said application system includes a primary application member defining said receiving surface, said application member being adapted to apply the layer of coating material received at the application interface position to a substrate.
- 13. An application system according to claim 8, wherein said means for rotating said application member moves the peripheral surface of said application member at a surface velocity greater than the surface velocity said receiving surface is moved by said receiving surface moving means to increase the thickness of the layer of coating material transferred to said receiving surface at said application interface position.
- 14. An application system according to claim 8, wherein said means for rotating said application member moves the peripheral surface of said application member at a surface velocity less than the surface velocity said receiving surface is moved by said receiving surface moving means to decrease the thickness of the layer of coating material transferred to said receiving surface at said application interface position.
- 15. A method for applying a coating material to a receiving surface, said method comprising the steps of:
- (a) providing an application member comprising a hub having a central axis and a metal peripheral layer defining a generally cylindrical peripheral surface, and a plurality of discrete structures projecting from and spaced in all directions along the peripheral surface;
- (b) rotating the application member about the axis to provide a surface velocity at the peripheral surface and to move the peripheral surface along a generally cylindrical path from a source position to an application interface position along the path;
- (c) causing the application member to receive the coating material on the peripheral surface and the structures at the source position and to carry a layer of the coating material on the peripheral surface and the structures to the application interface position; and
- (d) moving the receiving surface at a surface velocity along a path having a path portion at the application interface position in the same direction along the path portion as the peripheral surface is moved at the application interface position with the receiving surface in sufficiently close face to face relationship with a portion of the peripheral surface along the path portion to transfer the layer of coating material to the receiving surface.
- 16. A method according to claim 15, wherein the peripheral surface of the application member is moved at a surface velocity greater than tile surface velocity at which the receiving surface is moved to increase the thickness of the layer of coating material transferred to the receiving surface at the application interface position.
- 17. A substrate having a receiving surface coated with a coating of coating material by the method of claim 15, said coating of coating material having indentations or striae along the surface of said coating opposite said receiving surface.
- 18. A method according to claim 15, wherein the peripheral surface of the application member is moved at a surface velocity less than the surface velocity at which the receiving surface is moved to decrease the thickness of the layer of coating material transferred to the receiving surface at the application interface position.
- 19. A method according to claim 15, wherein the peripheral surface of the application member is moved at essentially the same surface velocity that the receiving surface is moved so that the thickness of the layer of coating material transferred to the receiving surface remains generally the same at the application interface position.
- 20. A substrate according to claim 17, wherein the substrate is paper, and the coating material is pressure sensitive adhesive.
- 21. A method of making an application member for applying a coating material to a receiving surface, said method comprising the sequential steps of:
- (a) providing a hub having a metal peripheral layer defining a generally cylindrical peripheral surface;
- (b) grit blasting the peripheral surface to form a plurality of discrete indentations in the metal peripheral layer along the peripheral surface; and
- (c) impelling particles against the peripheral surface so that particles are lodged within substantially all of the indentations with a portion of each particle projecting above the peripheral surface of the hub;
- whereby the application member is adapted to carry the coating material on and between the particles to the receiving surface.
- 22. A method according to claim 21, wherein the particles comprise tungsten carbide.
- 23. A method according to claim 21, further comprising the step of:
- (d) coating the peripheral surface and the particles with a release coating to facilitate transfer of the coating material from the application member to the receiving surface.
- 24. A method according to claim 23 wherein the release coating comprises a fluorocarbon.
Parent Case Info
This is a continuation of application Ser. No. 08/393,881, filed Feb. 23, 1995, now abandoned which was a continuation of application Ser. No. 08/393,362, filed Apr. 30, 1993, now abandoned.
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Continuations (2)
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Number |
Date |
Country |
Parent |
393881 |
Feb 1995 |
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Parent |
56362 |
Apr 1993 |
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