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    • 3. 发明授权
    • Method for producing airtight container
    • 密封容器的制造方法
    • US08057273B2
    • 2011-11-15
    • US12609943
    • 2009-10-30
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • H01J9/26H01J9/32
    • H01J29/86H01J9/241H01J9/261H01J31/127H01J2211/446Y10T29/49703
    • A method for producing an airtight container includes preparing an assembly having a first substrate and a frame member, the first substrate having an electron-emitting element formed on a first surface thereof, the frame member mounted on the first surface outside an area where the electron-emitting element is formed; forming a temporary assembly having the assembly and a second substrate by bringing the second substrate into contact with the frame member via a joining member such that an inner space is formed; melting the joining member by irradiating the joining member with a laser beam transmitted through the second substrate; and solidifying the melted joining member. The laser beam is applied such that an incident direction at an irradiation position on the joining member does not include components toward the interior of the frame member while the laser beam moves relative to the temporary assembly.
    • 一种密封容器的制造方法,其特征在于,准备具有第一基板和框架部件的组装体,所述第一基板在其第一面上形成有电子发射元件,所述框架部件安装在所述第一面上, 形成元件; 通过使所述第二基板经由接合构件与所述框架构件接触而形成具有所述组件的临时组件和第二基板,使得形成内部空间; 通过用透射通过第二基板的激光束照射接合构件来熔化接合构件; 并使熔融的接合部件固化。 激光束被施加使得当激光束相对于临时组件移动时,接合构件上的照射位置处的入射方向不包括朝向框架构件的内部的部件。
    • 4. 发明申请
    • METHOD FOR PRODUCING AIRTIGHT CONTAINER
    • 生产空气容器的方法
    • US20120021664A1
    • 2012-01-26
    • US13248856
    • 2011-09-29
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • H01J9/26
    • H01J29/86H01J9/241H01J9/261H01J31/127H01J2211/446Y10T29/49703
    • A method for producing an airtight container includes preparing an assembly having a first substrate and a frame member, the first substrate having an electron-emitting element formed on a first surface thereof, the frame member mounted on the first surface outside an area where the electron-emitting element is formed; forming a temporary assembly having the assembly and a second substrate by bringing the second substrate into contact with the frame member via a joining member such that an inner space is formed; melting the joining member by irradiating the joining member with a laser beam transmitted through the second substrate; and solidifying the melted joining member. The laser beam is applied such that an incident direction at an irradiation position on the joining member does not include components toward the interior of the frame member while the laser beam moves relative to the temporary assembly.
    • 一种密封容器的制造方法,其特征在于,准备具有第一基板和框架部件的组装体,所述第一基板在其第一面上形成有电子发射元件,所述框架部件安装在所述第一面上, 形成元件; 通过使所述第二基板经由接合构件与所述框架构件接触而形成具有所述组件的临时组件和第二基板,使得形成内部空间; 通过用透射通过第二基板的激光束照射接合构件来熔化接合构件; 并使熔融的接合部件固化。 激光束被施加使得当激光束相对于临时组件移动时,接合构件上的照射位置处的入射方向不包括朝向框架构件的内部的部件。
    • 6. 发明申请
    • METHOD FOR PRODUCING AIRTIGHT CONTAINER
    • 生产空气容器的方法
    • US20100112890A1
    • 2010-05-06
    • US12609943
    • 2009-10-30
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • Nobuhiro ItoYasuo OhashiKosuke KurachiMasahiro Tagawa
    • H01J9/26
    • H01J29/86H01J9/241H01J9/261H01J31/127H01J2211/446Y10T29/49703
    • A method for producing an airtight container includes preparing an assembly having a first substrate and a frame member, the first substrate having an electron-emitting element formed on a first surface thereof, the frame member mounted on the first surface outside an area where the electron-emitting element is formed; forming a temporary assembly having the assembly and a second substrate by bringing the second substrate into contact with the frame member via a joining member such that an inner space is formed; melting the joining member by irradiating the joining member with a laser beam transmitted through the second substrate; and solidifying the melted joining member. The laser beam is applied such that an incident direction at an irradiation position on the joining member does not include components toward the interior of the frame member while the laser beam moves relative to the temporary assembly.
    • 一种密封容器的制造方法,其特征在于,准备具有第一基板和框架部件的组装体,所述第一基板在其第一面上形成有电子发射元件,所述框架部件安装在所述第一面上, 形成元件; 通过使所述第二基板经由接合构件与所述框架构件接触而形成具有所述组件的临时组件和第二基板,使得形成内部空间; 通过用透射通过第二基板的激光束照射接合部件来熔化接合部件; 并使熔融的接合部件固化。 激光束被施加使得当激光束相对于临时组件移动时,接合构件上的照射位置处的入射方向不包括朝向框架构件的内部的部件。
    • 10. 发明授权
    • Airtight container and manufacturing method of image displaying apparatus using airtight container
    • 密封容器及使用密封容器的图像显示装置的制造方法
    • US07914357B2
    • 2011-03-29
    • US12178230
    • 2008-07-23
    • Kazuo KoyanagiMitsutoshi HasegawaNobuhiro ItoAkihiro KimuraMasahiro Tagawa
    • Kazuo KoyanagiMitsutoshi HasegawaNobuhiro ItoAkihiro KimuraMasahiro Tagawa
    • H01J9/26
    • H01J9/40
    • A manufacturing method of an image displaying apparatus, having an airtight container with a vacuum interior, includes the steps of exhausting an inside of a container via a through-hole provided in the container, arranging a plate member on an outer surface of the container, the inside of which was exhausted, so as to close the through-hole, and sealing the container by arranging a cover member to cover the plate member and by bonding the arranged cover member and the outer surface of the container to each other via a sealant positioned between the cover member and the outer surface of the container. The sealing includes hardening the sealant after deforming the sealant by pressing the plate member, and the plate member has a terminal portion including a conductive material. Additional steps include providing an anode electrode in the airtight container, and performing the sealing in a state that the terminal portion is in contact with the anode electrode.
    • 一种具有真空内部的气密容器的图像显示装置的制造方法,包括通过设置在容器中的通孔排出容器内部的步骤,将板构件设置在容器的外表面上, 其内部被耗尽,以便关闭通孔,并且通过布置盖构件来覆盖板构件并且通过密封剂将布置的盖构件和容器的外表面彼此接合来密封容器 定位在盖构件和容器的外表面之间。 密封包括在通过按压板构件使密封剂变形之后硬化密封剂,并且板构件具有包括导电材料的端子部分。 另外的步骤包括在气密容器中设置阳极电极,并且以端子部分与阳极电极接触的状态进行密封。