Claims
- 1. Method for manufacturing a binderless storage phosphor screen or panel comprising a support and a stimulable phosphor layer with a layer thickness in the range from 100 μm up to 1000 μm, said phosphor layer having a transparency of at least 50% for radiation in the wavelength range from 350 nm up to 750 nm, characterized in that said transparency has been provided by melting of a powdery phosphor in order to get a liquid phosphor layer, followed by solidifying said liquid phosphor layer.
- 2. Method for manufacturing a binderless storage phosphor screen or panel comprising a support and a stimulable phosphor layer with a layer thickness in the range from 100 μm up to 1000 μm, said phosphor layer having a transparency of at least 50% for radiation in the wavelength range from 350 nm up to 750 nm, characterized in that said transparency has been provided by melting of a phosphor present in structured form in a structured layer, at least in part, in order to get a liquid phosphor layer, followed by solidifying said liquid phosphor layer.
- 3. Method according to claim 1, wherein melting proceeds by heating said phosphor up to a temperature exceeding its melting temperature on a heat-resistant support.
- 4. Method according to claim 1, wherein melting proceeds by heating said phosphor in a crucible up to a temperature exceeding its melting temperature, followed by coating onto a heat-resistant support.
- 5. Method according to claim 2, wherein melting of a phosphor present in a structured phosphor layer proceeds by heating said layer on one side of said phosphor layer.
- 6. Method according to claim 2, wherein melting of a phosphor present in a structured phosphor layer proceeds by heating said layer on both sides of said phosphor layer.
- 7. Method according to claim 5, wherein melting proceeds under controlled conditions at one surface of the structured phosphor layer by heating the said surface up to a depth in the range from 10 to 90% of the layer thickness.
- 8. Method according to claim 6, wherein melting proceeds under controlled conditions at both surfaces so that thickness ratios of three consecutive phase areas in the phosphor layer, being two outermost non-structured and an inner structured phase area, are in ranges from 0.1-1:3-9:7-1 from bottom to top, and wherein both outermost areas are non-structured by melting, followed by solidifying said non-structured phase areas.
- 9. Storage phosphor screen or panel prepared according to the method of claim 5, wherein the phosphor layer is composed of structured and non-structured areas have same chemical composition.
- 10. Storage phosphor screen or panel prepared according to the method of claim 6, wherein the phosphor layer is composed of structured and non-structured areas have same chemical composition.
- 11. Storage phosphor screen or panel prepared according to the method of claim 7, wherein the phosphor layer is composed of structured and non-structured areas have same chemical composition.
- 12. Storage phosphor screen or panel prepared according to the method of claim 8, wherein the phosphor layer is composed of structured and non-structured areas have same chemical composition.
- 13. Storage phosphor screen or panel prepared according to the method of claim 2, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 14. Storage phosphor screen or panel prepared according to the method of claim 5, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 15. Storage phosphor screen or panel prepared according to the method of claim 6, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 16. Storage phosphor screen or panel prepared according to the method of claim 7, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 17. Storage phosphor screen or panel prepared according to the method of claim 8, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 18. Storage phosphor screen or panel prepared according to the method of claim 9, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 19. Storage phosphor screen or panel prepared according to the method of claim 10, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 20. Storage phosphor screen or panel prepared according to the method of claim 11, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 21. Storage phosphor screen or panel prepared according to the method of claim 12, wherein said phosphor screen or panel comprises a needle-shaped structured phase in the phosphor layer.
- 22. Storage phosphor screen or panel prepared according to the method of claim 13, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 23. Storage phosphor screen or panel prepared according to the method of claim 14, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 24. Storage phosphor screen or panel prepared according to the method of claim 15, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 25. Storage phosphor screen or panel prepared according to the method of claim 16, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 26. Storage phosphor screen or panel prepared according to the method of claim 17, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 27. Storage phosphor screen or panel prepared according to the method of claim 18, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 28. Storage phosphor screen or panel prepared according to the method of claim 19, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 29. Storage phosphor screen or panel prepared according to the method of claim 20, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 30. Storage phosphor screen or panel prepared according to the method of claim 21, wherein said needle-shaped phase has an adjacent transparent phosphor layer phase at both sides.
- 31. Storage phosphor screen or panel according to claim 22, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 32. Storage phosphor screen or panel according to claim 23, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 33. Storage phosphor screen or panel according to claim 24, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 34. Storage phosphor screen or panel according to claim 25, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 35. Storage phosphor screen or panel according to claim 26, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 36. Storage phosphor screen or panel according to claim 27, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 37. Storage phosphor screen or panel according to claim 28, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 38. Storage phosphor screen or panel according to claim 29, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
- 39. Storage phosphor screen or panel according to claim 30, having as a support an amorphous carbon layer and, between phosphor layer and amorphous carbon layer, a specularly reflecting layer adjacent to the amorphous carbon layer, with a parylene layer on top of said reflecting layer.
Priority Claims (1)
Number |
Date |
Country |
Kind |
02100765.3 |
Jun 2002 |
EP |
|
Parent Case Info
[0001] The application claims the benefit of U.S. provisional application No. 60/394,669 filed Jul. 09, 2002
Provisional Applications (1)
|
Number |
Date |
Country |
|
60394669 |
Jul 2002 |
US |