Claims
- 1. A binderless stimulable phosphor screen having a support and a vapor deposited phosphor layer with phosphor needles and voids between said needles, characterized in that said voids between said needles are partially filled with a polymeric compound.
- 2. A binderless stimulable phosphor screen according to claim 1, wherein, said voids are filled over a length of at least 5 μm.
- 3. A binderless stimulable phosphor screen according to claim 1, wherein, said voids are filled over a length of at least 10 μm.
- 4. A binderless stimulable phosphor screen according to claim 1, wherein said polymeric compound is selected from the group consisting of vinyl resins comprising moieties derived from esters of acrylic acid and vinyl resins comprising moieties derived from esters of methacrylic acid.
- 5. A binderless stimulable phosphor screen according to claim 2, wherein said polymeric compound is selected from the group consisting of vinyl resins comprising moieties derived from esters of acrylic acid and vinyl resins comprising moieties derived from esters of methacrylic acid.
- 6. A binderless stimulable phosphor screen according to claim 3, wherein said polymeric compound is selected from the group consisting of vinyl resins comprising moieties derived from esters of acrylic acid and vinyl resins comprising moieties derived from esters of methacrylic acid.
- 7. A binderless stimulable phosphor screen according to claim 1, wherein said polymeric compound is a thermoplastic rubber.
- 8. A binderless stimulable phosphor screen according to claim 2, wherein said polymeric compound is a thermoplastic rubber.
- 9. A binderless stimulable phosphor screen according to claim 3, wherein said polymeric compound is a thermoplastic rubber.
- 10. A method for producing a binderless phosphor screen comprising the steps of:
vapor depositing a photostimulable phosphor on a substrate forming a phosphor layer with phosphor needles and voids between them, applying a solution of a polymer on said vapor deposited phosphor, wiping the excess of said solution from said phosphor layer, and drying the phosphor screen.
- 11. Method according to claim 10, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
- 12. Method according to claim 10, wherein an additional step of applying at least one colorant in said voids is performed before said step of applying a solution of a polymer on said vapor deposited phosphor.
- 13. Method according to claims 10, wherein, in said step of applying a solution of a polymer on said vapor deposited phosphor, a solution of a polymer further comprising at least one colorant is used.
- 14. Method according to claim 13, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
- 15. A method for producing a binderless phosphor screen on a substrate containing a CsX:Eu stimulable phosphor, comprising the steps of:
bringing a heatable container with a CsX:Eu phosphor, X being selected from the group consisting of Cl, Br and combinations thereof together with the substrate in a deposition chamber that is evacuated to at least 10−1 mbar, depositing, by a method selected from the group consisting of physical vapor deposition, chemical vapor deposition or atomisation technique, said CsX:Eu phosphor forming a vapor deposited phosphor layer with needle shaped phosphor, applying a solution of a polymer on said vapor deposited phosphor, wiping the excess of said solution from said vapor deposited phosphor and drying the phosphor screen.
- 16. Method according to claim 15, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
- 17. Method according to claim 15, wherein an additional step of applying at least one colorant in said voids is performed before said step of applying a solution of a polymer on said vapor deposited phosphor.
- 18. Method according to claims 15, wherein, in said step of applying a solution of a polymer on said vapor deposited phosphor, a solution of a polymer further comprising at least one colorant is used.
- 19. Method according to claim 18, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
- 20. A method for producing a binderless phosphor screen on a substrate containing a CsX:Eu stimulable phosphor, said method comprising the steps of:
bringing a heatable container with a CsX:Eu phosphor, X being selected from the group consisting of Cl, Br and combinations thereof, together with the substrate in a deposition chamber that is evacuated to at least 10−1 mbar, depositing, by a method selected from the group consisting of physical vapor deposition, chemical vapor deposition or atomisation technique, said CsX:Eu phosphor forming a vapor deposited phosphor layer with needle shaped phosphor, applying a solution of a polymer on said vapor deposited phosphor, wiping the excess of said solution from said vapor deposited phosphor and drying the phosphor screen.
- 21. Method according to claim 20, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
- 22. Method according to claim 20, wherein an additional step of applying at least one colorant in said voids is performed before said step of applying a solution of a polymer on said vapor deposited phosphor.
- 23. Method according to claims 20, wherein, in said step of applying a solution of a polymer on said vapor deposited phosphor, a solution of a polymer further comprising at least one colorant is used.
- 24. Method according to claim 23, wherein said solution of a polymer is selected from the group consisting of a solution of vinyl resins comprising moieties derived from esters of acrylic acid in ethylacetate, a solution of vinyl resins comprising moieties derived from esters of methacrylic acid in ethylacetate and a solution of a thermoplastic rubber in a mixture of ethylacetate and toluene.
Priority Claims (1)
Number |
Date |
Country |
Kind |
02100235.7 |
Mar 2002 |
EP |
|
Parent Case Info
[0001] The application claims the benefit of U.S. provisional application No. 60/367,886 filed Mar. 27, 2002
Provisional Applications (1)
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Number |
Date |
Country |
|
60367886 |
Mar 2002 |
US |