EP0403263A2

Method of manufacturing a luminescent screen assembly using a dry-powdered filming material.

Abstract

A method of manufacturing a luminescent screen assembly (22) on a substrate (18) of a CRT faceplate includes the steps of providing a coating of a non-­luminescent screen structure material (23) in a predeter­mined pattern on the substrate, and depositing a plurality of color-emitting screen structure materials (G,B,R) on the substrate so that they are bounded by the non-­luminescent material. An electrostatically-charged dry-powdered resin is:deposited onto the color-emitting and non-luminescent screen structure materials and fused to form a substantially continuous film (46).

EP0403263A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 13 June 2010, 16.3 years ago.

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9 claims: 3 independent, 6 dependent

  1. 1
    A method of manufacturing a luminescent screen assembly on a substrate of a color CRT, comprising the steps of:a) providing a layer of a non-luminescent screen-structure material in a predetermined pattern on said substrate;and b) depositing a plurality of color-emitting screen-structure materials on said substrate, said color-­emitting materials being bounded by said non-luminescent material;characterized by the steps of: (c) depositing an electrostatically-charged dry-powdered resin onto said non-luminescent (23) and said color-emitting (G,B,R) screen structure materials;and (d) fusing said resin to form a substantially continuous film layer (46).
  2. 2
    A method of electrophotographically manufacturing a luminescent screen assembly on a substrate of a color CRT, comprising the steps of:a) coating said surface of said substrate with a volatilizable conductive layer;b) overcoating said conductive layer with a volatilizable photoconductive layer including a dye sensitive to visible light;c) establishing a substantially uniform electrostatic charge on said photoconductive layer;d) exposing selected areas of said photoconductive layer to visible light to affect the charge thereon;e) developing selected areas of said photoconductive layer with a triboelectrically charged dry-powdered, first color-emitting phosphor material;and f) sequentially repeating steps c, d and e for triboelectrically charged, dry-powdered, second and third color-emitting phosphor materials, to form a luminescent screen comprising picture elements of triads of color-emitting phosphor materials;characterized by the steps of: g) establishing an electrostatic charge on said photoconductive layer (34) and the overlying phosphor materials (G,B,R);h) depositing an electrostatically charged dry-powdered resin onto said phosphor materials;and i) fusing said resin to form a substantially continuous film layer (46).
  3. 3
    A method of electrophotographically manufacturing a luminescent screen assembly on an interior surface of a faceplate panel for a color CRT, comprising the steps of:a) coating said surface of said panel with a volatilizable conductive layer;b) overcoating said conductive layer with a volatilizable photoconductive layer including a dye sensitive to visible light;c) establishing a substantially uniform electrostatic charge on said photoconductive layer;d) exposing, through a mask, selected areas of said photoconductive layer to visible light from a xenon lamp to affect the charge on said photoconductive layer;e) directly developing the unexposed areas of the photoconductive layer with a triboelectrically charged, dry-powdered, surface-treated, light-absorptive screen structure material, the charge on said screen structure material being of opposite polarity to the charge on the unexposed areas of the photoconductive layer;f) re-establishing a substantially uniform electrostatic charge on said photoconductive layer and on said screen structure material;g) exposing, through said mask, first portions of said selected areas of said photoconductive layer to visible light from said lamp to affect the charge on said photoconductive layer;h) reversal developing the first portions of said selected areas of said photoconductive layer with a triboelectrically charged, dry-powdered, first color-emitting phosphor screen structure material, having a charge of the same polarity as that on the unexposed areas of said photoconductive layer and on said light-absorptive screen structure material, to repel said first color-emitting phosphor therefrom;and i) sequentially repeating steps f, g and h for second and third portions of said selected areas of said photoconductive layer using triboelectrically charged, dry-powdered, second and third color-emitting phosphor screen structure materials, thereby forming a luminescent screen comprising picture elements of triads of color-emitting phosphors;characterized by: j) increasing the adherence of said surface-treated screen structure materials (23,G,B,R) to said photoconductive layer (34) by establishing a substan­tially uniform electrostatic charge on said photoconductive layer and the overlying screen structure materials;k) depositing an electrostatically charged dry-powdered resin onto said screen structure materials;and l) fusing said resin to form a substantially continuous water insoluble film layer (46).
  4. 9
    The method of any of claims 2-8 characterized by the further steps of:providing said continuous film layer (46) with a ventilation-promoting coating;aluminizing said screen (22);and baking said screen at an elevated temperature to remove the volatilizable constituents therefrom, to form said luminescent screen assembly (22, 24).