Claims
- 1. An image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate, and a number of electron-emitting elements provided in the envelope,
the front substrate and the rear substrate being sealed, at peripheral edge parts, either directly or indirectly to each other with low melting-point metal sealing material.
- 2. An image display apparatus according to claim 1, wherein the envelope comprises a sidewall arranged between the peripheral edge part of the front substrate and the peripheral edge part of the rear substrate, and the front substrate and the rear substrate are sealed together with the low melting-point metal sealing material, with the sidewall interposed between the front and rear substrates.
- 3. An image display apparatus according to claim 2, wherein the sidewall has a shape of a frame.
- 4. An image display apparatus according to claim 1, wherein the low melting-point metal sealing material has a melting point of 350° C. or less.
- 5. An image display apparatus according to claim 4, wherein the low melting-point metal sealing material is indium or an alloy containing indium.
- 6. An image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate, a phosphor screen formed on an inner surface of the front substrate, and a number of electron-emitting elements provided on an inner surface of the rear substrate and configured to emit electron beams,
the front substrate and the rear substrate being sealed, at peripheral edge parts, either directly or indirectly to each other with low melting-point metal sealing material.
- 7. A method of manufacturing an image display apparatus which comprises an envelope having a rear substrate, a front substrate opposing the rear substrate, and a number of electron-emitting elements provided in the envelope, said method comprising:
applying low melting-point metal sealing material to a sealing surface lying between the rear substrate and the front substrate; and sealing the rear substrate and the front substrate together, either directly or indirectly to each other, by heating the rear substrate and the front substrate in a vacuum atmosphere and melting the low melting-point metal sealing material.
- 8. A method of manufacturing an image display apparatus according to claim 7, wherein a sidewall shaped like a frame is arranged between the peripheral edge part of the front substrate and the peripheral edge part of the rear substrate, and the front substrate and the rear substrate are sealed together with the low melting-point metal sealing material, with the sidewall interposed between the front substrate and the rear substrate.
- 9. A method of manufacturing an image display apparatus according to claim 7, wherein the low melting-point metal sealing material has a melting point of 350° C. or less.
- 10. A method of manufacturing an image display apparatus according to claim 9, wherein the low melting-point metal sealing material is indium or an alloy containing indium.
- 11. A method of manufacturing an image display apparatus according to claim 7, wherein the vacuum atmosphere has a degree of vacuum of 10−3 Pa or less.
- 12. A method of manufacturing an image display apparatus according to claim 7, wherein the sealing the rear substrate and the front substrate includes heating the vacuum atmosphere to a temperature of 250° C. or more to evacuate the vacuum atmosphere; sealing the sealing surface between the front substrate and the rear substrate by the low melting-point metal sealing material at a temperature lower than the temperature used in the heating the vacuum atomosphere; and bringing the envelope sealed with the low melting-point metal sealing material, back into the atmosphere.
- 13. A method of manufacturing an image display apparatus according to claim 12, wherein the sealing is performed by using the low melting-point metal sealing material at a temperature of 60 to 300° C.
- 14. A method of manufacturing an image display apparatus according to claim 7, wherein the front substrate and the rear substrate are moved relative to each other in the step of sealing the rear substrate and the front substrate.
- 15. A method of manufacturing an image display apparatus according to claim 8, wherein after sealing the rear substrate and the sidewall substrate to each other to form an assembly, moving the assembly and the front substrate relative to each other and sealing to each other.
- 16. A method of manufacturing an image display apparatus according to claim 7, further comprising arranging a holding section for holding the low melting-point metal sealing material, on at least one of sealing surfaces lying between the front substrate and the rear substrate; and applying the low melting-point metal sealing material onto the holding section.
- 17. A method of manufacturing an image display apparatus according to claim 16, further comprising making a groove in at least one of sealing surfaces between the front substrate and the rear substrate; and filling the groove with the low melting-point metal sealing material.
- 18. A method of manufacturing an image display apparatus according to claim 16, further comprising forming a layer made of material exhibiting high affinity with the low melting-point metal sealing material, on at least one of sealing surfaces between the front substrate and the rear substrate; and applying the low melting-point metal sealing material onto the layer.
- 19. A method of manufacturing an image display apparatus according to claim 18, wherein the material exhibiting high affinity with the low melting-point metal sealing material is nickel, gold, silver or copper, or an alloy thereof.
- 20. An image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate, and a plurality of electron-emitting elements provided in the envelope,
the front substrate and the rear substrate being sealed either directly or indirectly to each other with a base layer and a metal sealing material layer provided on the base layer and different in material from the base layer.
- 21. An image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate and a sidewall arranged between peripheral edge parts of the front substrate and the rear substrate, and a plurality of electron-emitting elements provided in the envelope,
the front substrate and the sidewall, or the rear substrate and the sidewall, and the front substrate and the sidewall and the rear substrate and the sidewall are sealed together with a base layer and a metal sealing material layer provided on the base layer and different in material from a material of the base layer.
- 22. An image display apparatus according to claim 20, wherein the metal sealing material layer is made of low melting-point metal sealing material having a melting point of 350° C. or less.
- 23. An image display apparatus according to claim 22, wherein the low melting-point metal sealing material is indium or an alloy containing indium.
- 24. An image display apparatus according to claim 20, wherein the base layer is made of metal paste containing at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt, copper nickel, gold, silver and copper.
- 25. An image display apparatus according to claim 20, wherein the base layer is a plated layer or deposited layer made of at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt and copper, or is a glass material layer.
- 26. An image display apparatus according to claim 20, wherein the metal sealing material layer has, at least at one part of the base layer, a width equal to or smaller than that of the base layer.
- 27. An image display apparatus comprising:
an envelope having a rear substrate, a front substrate opposing the rear substrate; a phosphor screen formed on an inner surface of the front substrate; and an electron beam source provided on the rear substrate and configured to emit electron beams to the phosphor screen to cause the phosphor screen emits light, the front substrate and the rear substrate being sealed, either directly or indirectly to each other, with a base layer and a metal sealing material layer provided on the base layer and different in material from the base layer.
- 28. A method of manufacturing an image display apparatus which comprises an envelope having a rear substrate, a front substrate opposing the rear substrate, and a plurality of electron-emitting elements provided in the envelope, the method comprising:
forming a base layer along a sealing surface lying between the rear substrate and the front substrate; forming a metal sealing material layer on the base layer, the metal sealing material layer being different in material from the base layer; and heating the rear substrate and the front substrate in a vacuum atmosphere, melting the metal sealing material layer and sealing the rear substrate and the front substrate, either directly or indirectly to each other.
- 29. A method of manufacturing an image display apparatus according to claim 28, wherein the metal sealing material layer is made of low melting-point metal sealing material having a melting point of 350° C. or less.
- 30. A method of manufacturing an image display apparatus according to claim 28, wherein the low melting-point metal sealing material is indium or an alloy containing indium.
- 31. A method of manufacturing an image display apparatus according to claim 28, wherein the base layer is made of metal paste containing at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt, copper nickel, gold, silver and copper.
- 32. A method of manufacturing an image display apparatus, according to claim 28, wherein the base layer is a plated layer or deposited layer made of at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt and copper, or is a glass material layer.
- 33. A method of manufacturing an image display apparatus according to claim 28, wherein the metal sealing material layer has, at least at one part of the base layer, a width equal to or smaller than that of the base layer.
- 34. A method of manufacturing an image display apparatus which comprises an envelope having a rear substrate, a front substrate opposing the rear substrate, and a plurality of electron-emitting elements provided in the envelope, the method comprising:
applying molten metal sealing material to a sealing surface lying between the rear substrate and the front substrate, while applying ultrasonic waves; and heating and melting the metal sealing material in a vacuum atmosphere after the metal sealing material has been applied, and sealing the rear substrate and the front substrate at the sealing surface, either directly or indirectly to each other.
- 35. A method of manufacturing an image display apparatus which comprises an envelope having a rear substrate, a front substrate opposing the rear substrate, a sidewall sealed between peripheral edge parts of the front substrate and the rear substrate; and a plurality of electron-emitting elements provided in the envelope, wherein at least one of sealing surfaces between the front substrate and the sidewall and between the rear substrate and the sidewall, or the front substrate and the sidewall is sealed with a metal sealing material layer, the method comprising:
applying molten metal sealing material to said at least one of sealing surfaces, while applying ultrasonic waves; and heating and melting the metal sealing material in a vacuum atmosphere after the metal sealing material has been applied, and sealing the rear substrate, the front substrate and the sidewall together at the sealing surface.
- 36. A method of manufacturing an image display apparatus, according to claim 34, wherein the applying the metal sealing material includes continuously applying the molten metal sealing material along the sealing surface, thereby forming a metal sealing material layer that extends along the sealing surface.
- 37. A method of manufacturing an image display apparatus, according to claim 34, wherein ultrasonic waves are applied in a direction substantially perpendicular to the sealing surface in the applying the metal sealing material.
- 38. A method of manufacturing an image display apparatus according to claim 34, which further comprises forming a base layer on the sealing surface, the base layer being different in material from the metal sealing material layer, and in which the metal sealing material is applied onto the base layer after the base layer has been formed.
- 39. A method of manufacturing an image display apparatus according to claim 38, wherein the base layer is made by applying metal paste containing at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt, copper nickel, gold, silver and copper.
- 40. A method of manufacturing an image display apparatus according to claim 38, wherein the base layer is a plated layer or deposited layer made of at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt and copper, or is a glass material layer.
- 41. A method of manufacturing an image display apparatus according to claim 34, wherein, in the applying the metal sealing material, a rate of applying the metal sealing material is controlled by changing either output magnitude of the ultrasonic waves or a diameter of a port for applying the metal sealing material.
- 42. A method of manufacturing an image display apparatus according to claim 34, wherein the metal sealing material is low melting-point metal sealing material having a melting point of 350° C. or less.
- 43. A method of manufacturing an image display apparatus according to claim 42, wherein the metal sealing material is indium or an alloy containing indium.
- 44. An apparatus for applying metal sealing material in the method of manufacturing an image display apparatus, according to claim 34, the apparatus comprising:
a supporting base configured to position an object having a sealing surface; an applying head having a storage section storing molten metal sealing material, a nozzle which applies to the sealing surface the molten metal sealing material supplied from the storage section, and an ultrasonic wave generating section which applies ultrasonic waves to the molten metal sealing material applied from the nozzle to the sealing surface; and a head-moving mechanism configured to move the applying head relative to the sealing surface.
- 45. An image display apparatus comprising:
an envelope having a rear substrate, a front substrate opposing the rear substrate and sealed either directly or indirectly to the rear substrate with metal sealing material; and a number of electron-emitting elements provided in the envelope; wherein the metal sealing material is provided on a sealing surface lying between the rear substrate and the front substrate, forming a metal sealing material layer that extends along the entire of the sealing surface, and the metal sealing material layer has bent or curved parts at one portion, at least, which extends along a straight part of the sealing surface.
- 46. An image display apparatus according to claim 45, wherein the bent parts are bent at an acute angle.
- 47. An image display apparatus according to claim 45, wherein the bent parts are bent at almost right angles.
- 48. An image display apparatus according to claim 45, wherein the metal sealing material layer has a substantially fixed width and shaped like saw teeth at the portion which extends along a straight part of the sealing surface.
- 49. An image display apparatus according to claim 45, wherein the metal sealing material layer has a substantially fixed width and shaped like a series of cranks at the portion which extends along a straight part of the sealing surface.
- 50. An image display apparatus according to claim 45, wherein the metal sealing material layer has a substantially fixed width and are formed in a continuous frame pattern at the portion which extends along a straight part of the sealing surface.
- 51. An image display apparatus according to claim 45, wherein the metal sealing material layer has a substantially fixed width and are shaped like waves at the portion which extends along a straight part of the sealing surface.
- 52. An image display apparatus comprising:
an envelope having a rear substrate, a front substrate opposing the rear substrate and sealed either directly or indirectly to the rear substrate with metal sealing material; and a number of electron-emitting elements provided in the envelope, wherein the metal sealing material is provided on a sealing surface lying between the rear substrate and the front substrate, forming a metal sealing material layer that extends along the entire of the sealing surface, and the metal sealing material layer has an edge at one portion, at least, which extends along a straight part of the sealing surface, said edge having projections.
- 53. An image display apparatus according to claim 52, wherein the metal sealing material layer has different widths at portions which extend along a straight part of the sealing surface.
- 54. An image display apparatus according to claim 53, wherein the metal sealing material layer has a pair of edges which extend along a straight part of the sealing surface, and at least one of the edges has a plurality of projections spaced apart from one another.
- 55. An image display apparatus according to claim 52, wherein the metal sealing material layer has a pair of edges which extend along a straight part of the sealing surface, and each of the edges has a plurality of projections spaced apart from one another.
- 56. An image display apparatus according to claim 55, wherein the projections provided at one edge of the metal sealing material layer are staggered in a lengthwise direction of the metal sealing material layer, with respect to the projections provided at the other edge of the metal sealing material layer.
- 57. An image display apparatus according to claim 55, wherein the projections provided at one edge of the metal sealing material layer oppose the projections provided at the other edge of the metal sealing material layer.
- 58. An image display apparatus according to claim 45, wherein the metal sealing material layer is made of low melting-point metal sealing material having a melting point of 350° C. or less.
- 59. An image display apparatus according to claim 58, wherein the metal sealing material is indium or an alloy containing indium.
- 60. An image display apparatus according to claim 45, further comprising a base layer provided on the sealing surface and different in material from the metal sealing material layer, and the metal sealing material layer is formed on the base layer.
- 61. An image display apparatus according to claim 60, wherein the base layer is made of metal paste containing at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt, copper nickel, gold, silver and copper.
- 62. An image display apparatus according to claim 61, wherein the base layer is a plated layer or deposited layer made of at least one element selected from the group consisting of silver, gold, aluminum, nickel, cobalt and copper, or is a glass material layer.
- 63. An image display apparatus comprising:
an envelope having a rear substrate, a front substrate opposing the rear substrate and sealed either directly or indirectly to the rear substrate with metal sealing material; a phosphor screen formed on an inner surface of the front substrate; and an electron beam source which provided on the rear substrate and configured to emit electron beams to the phosphor screen to cause the phosphor screen emits light, wherein the metal sealing material is provided on a sealing surface laying between the rear substrate and the front substrate forming a metal sealing material layer that extends along the entire of the sealing surface, and the metal sealing material layer has bent or curved parts at one portion, at least, which extends along a straight part of the sealing surface.
- 64. A method of manufacturing an image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate and sealed either directly or indirectly to the rear substrate with metal sealing material, and a number of electron-emitting elements provided in the envelope, the method comprising:
applying metal sealing material to a sealing surface laying between the rear substrate and the front substrate, thereby forming a metal sealing material layer which extends along the entire of the sealing surface; and heating and melting the metal sealing material in a vacuum atmosphere after the metal sealing material has been applied, and sealing the rear substrate and the front substrate at the sealing surface, either directly or indirectly to each other, wherein, in the applying the metal sealing material, bent or curved parts are formed at one portion, at least, of the metal sealing material layer, which extends along a straight part of the sealing surface.
- 65. A method of manufacturing an image display apparatus comprising an envelope having a rear substrate, a front substrate opposing the rear substrate and sealed either directly or indirectly to the rear substrate with metal sealing material, and a number of electron-emitting elements provided in the envelope, the method comprising:
applying metal sealing material to a sealing surface laying between the rear substrate and the front substrate, thereby forming a metal sealing material layer which extends along the entire of the sealing surface; and heating and melting the metal sealing material in a vacuum atmosphere after the metal sealing material has been applied, and sealing the rear substrate and the front substrate at the sealing surface, either directly or indirectly to each other, wherein, in the applying the metal sealing material, the metal sealing material layer comes to have projections are formed at one portion, at least, of the metal sealing material layer, which extends along a straight part of the sealing surface.
- 66. A method of manufacturing an image display apparatus according to claim 64, wherein the metal sealing material layer is made of low melting-point metal sealing material having a melting point of 350° C. or less.
- 67. A method of manufacturing an image display apparatus according to claim 66, wherein the metal sealing material is indium or an alloy containing indium.
- 68. A method of manufacturing an image display apparatus according to claim 65, wherein the metal sealing material layer is made of low melting-point metal sealing material having a melting point of 350° C. or less.
- 69. A method of manufacturing an image display apparatus, according to claim 68, wherein the metal sealing material is indium or an alloy containing indium.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-014393 |
Jan 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a Continuation Application of PCT Application No. PCT/JP01/00418, filed Jan. 23, 2001, which was not published under PCT Article 21(2) in English.
[0002] This application is based upon and claims the benefit of priority from the prior Japanese Patent Application No. 2000-014393, filed Jan. 24, 2000, the entire contents of which are incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP01/00418 |
Jan 2001 |
US |
Child |
10201315 |
Jul 2002 |
US |