Claims
- 1. A binderless phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said substrate is a metal or an alloy selected from the group of aluminium, steel, brass and copper.
- 2. A binderless phosphor screen according to claim 1 wherein said at least one inorganic pigment is a white pigment selected from the group consisting of Al2O3, TiO2, SiO2 and ZnO.
- 3. A binderless phosphor screen according to claim 2 wherein said ceramic layer further comprises at least one inorganic pigment absorbing stimulating light.
- 4. A binderless phosphor screen according to claim 1 wherein said ceramic layer is applied to said substrate by a thermal spraying technique.
- 5. A binderless phosphor screen according to claim 1 wherein said ceramic layer is applied to said substrate by coating an aqueous dispersion comprising a silicate and said at least one inorganic pigment.
- 6. A binderless stimulable phosphor screen according to claim 1, wherein said phosphor is an alkali metal phosphor.
- 7. A binderless phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said substrate is a polymeric film.
- 8. A binderless phosphor screen according to claim 7, wherein said polymeric film is a polyester film.
- 9. A binderless stimulable phosphor screen according to claim 7, wherein said phosphor is an alkali metal phosphor.
- 10. A binderless stimulable phosphor screen according to claim 8, wherein said phosphor is an alkali metal phosphor.
- 11. A binderless stimulable phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said phosphor is an alkali metal phosphor.
- 12. A binderless stimulable phosphor screen according to claim 11, wherein said alkali metal phosphor is a CsX:Eu stimulable phosphor, wherein X represents a halide selected from the group consisting of Br and Cl, said phosphor being prepared by a method comprising the steps of:mixing said CsX with an amount between 10−3 and 5 mole % of a Europium compound selected from the group consisting of EuX′2, EuX′3 and EuOX′, X′ being a member selected from the group consisting of F, Cl, Br and I, firing said mixture at a temperature above 450° C. cooling said mixture and recovering the CsX:Eu phosphor.
- 13. A binderless phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said at least one inorganic pigment is a white pigment selected from the group consisting of Al2O3, TiO2, SiO2 and ZnO wherein said substrate is a polymeric film.
- 14. A binderless phosphor screen according to claim 13 wherein said ceramic layer further comprises at least one inorganic pigment absorbing stimulating light.
- 15. A binderless phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said ceramic layer is applied to said substrate by a thermal spraying technique wherein said substrate is a polymeric film.
- 16. A binderless phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said ceramic layer is applied to said substrate by coating an aqueous dispersion comprising a silicate and said at least one inorganic pigment wherein said substrate is a polymeric film.
- 17. A binderless stimulable phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said at least one inorganic pigment is a white pigment selected from the group consisting of Al2O3, TiO2, SiO2 and ZnO wherein said phosphor is an alkali metal phosphor.
- 18. A binderless stimulable phosphor screen according to claim 17 wherein said ceramic layer further comprises at least one inorganic pigment absorbing stimulating light.
- 19. A binderless stimulable phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said ceramic layer is applied to said substrate by a thermal spraying technique wherein said phosphor is an alkali metal phosphor.
- 20. A binderless stimulable phosphor screen comprising a vapor deposited phosphor layer on a substrate characterized in that a ceramic layer containing at least one inorganic pigment is present between said substrate and said phosphor layer wherein said ceramic layer is applied to said substrate by coating an aqueous dispersion comprising a silicate and said at least one inorganic pigment wherein said phosphor is an alkali metal phosphor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
01000696 |
Dec 2001 |
EP |
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Parent Case Info
This application claims priority to U.S. Provisional Application No. 60/35 1,293, filed Jan. 23, 2002.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0 121 403 |
Oct 1984 |
EP |
Non-Patent Literature Citations (1)
Entry |
European Search Report, Application No. 01 00 0696, Apr. 19, 2002. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/351293 |
Jan 2002 |
US |