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    • 28. 发明授权
    • Process for producing double helical glass tube, light-emitting tube for fluorescent lamp, and fluorescent lamp
    • 生产双螺旋玻璃管,荧光灯发光管和荧光灯的方法
    • US07901264B2
    • 2011-03-08
    • US11909065
    • 2006-03-28
    • Kenji ItayaKenji Nakano
    • Kenji ItayaKenji Nakano
    • H01J9/00
    • C03B23/06C03B23/045C03B23/07H01J9/247
    • A manufacturing method of a double spiral glass tube having a bump that is difficult to break. The manufacturing method includes the steps of: causing the bump forming section (32) in the central portion (13) to have greater tube thickness than the other sections in the glass tube (23) that has been deformed into a double spiral shape; heating and softening part of the bump forming section; and forming a bump (14) by injecting a nitrogen gas (27) into the inner space of the glass tube from both ends thereof to expand the bump forming section. With this structure, the bump forming section is preliminarily formed to have a greater tube thickness than the other sections. As a result, the bump, which is formed by expanding the bump forming section to have a smaller tube thickness than before the expansion, still maintains a sufficient strength.
    • 具有难以断裂的凸块的双螺旋玻璃管的制造方法。 该制造方法包括以下步骤:使中心部分(13)中的凸块形成部分(32)具有比已经变形为双螺旋形状的玻璃管(23)中的其它部分更大的管厚度; 加热和软化凸块形成部分的一部分; 以及通过从其两端向所述玻璃管的内部空间注入氮气(27)并且使所述凸起形成部分膨胀而形成凸块(14)。 利用这种结构,凸起形成部预先形成为具有比其他部分更大的管厚度。 结果,通过使凸块形成部分膨胀成具有比膨胀之前更小的管厚而形成的凸块仍然保持足够的强度。
    • 29. 发明申请
    • PROCESS FOR PRODUCING DOUBLE HELICAL GLASS TUBE, LIGHT-EMITTING TUBE FOR FLUORESCENT LAMP, AND FLUORESCENT LAMP
    • 生产双螺旋玻璃管,荧光灯和荧光灯的发光管
    • US20090021135A1
    • 2009-01-22
    • US11909065
    • 2006-03-28
    • Kenji ItayaKenji Nakano
    • Kenji ItayaKenji Nakano
    • H01J63/04H01J9/00
    • C03B23/06C03B23/045C03B23/07H01J9/247
    • A manufacturing method of a double spiral glass tube having a bump that is difficult to break. The manufacturing method includes the steps of: causing the bump forming section (32) in the central portion (13) to have greater tube thickness than the other sections in the glass tube (23) that has been deformed into a double spiral shape; heating and softening part of the bump forming section; and forming a bump (14) by injecting a nitrogen gas (27) into the inner space of the glass tube from both ends thereof to expand the bump forming section. With this structure, the bump forming section is preliminarily formed to have a greater tube thickness than the other sections. As a result, the bump, which is formed by expanding the bump forming section to have a smaller tube thickness than before the expansion, still maintains a sufficient strength.
    • 具有难以断裂的凸块的双螺旋玻璃管的制造方法。 该制造方法包括以下步骤:使中心部分(13)中的凸块形成部分(32)具有比已经变形为双螺旋形状的玻璃管(23)中的其它部分更大的管厚度; 加热和软化凸块形成部分的一部分; 以及通过从其两端向所述玻璃管的内部空间注入氮气(27)并且使所述凸起形成部分膨胀而形成凸块(14)。 利用这种结构,凸起形成部预先形成为具有比其他部分更大的管厚度。 结果,通过使凸块形成部分膨胀成具有比膨胀之前更小的管厚而形成的凸块仍然保持足够的强度。
    • 30. 发明授权
    • Low-pressure mercury lamp having a spiral arc tube and method for assembling the same
    • 具有螺旋弧管的低压汞灯及其组装方法
    • US07321190B2
    • 2008-01-22
    • US10520859
    • 2003-07-22
    • Akiko NakanishiYoshinori KakunoShiro IidaKenji Itaya
    • Akiko NakanishiYoshinori KakunoShiro IidaKenji Itaya
    • H01J5/00
    • H01J5/48H01J9/247H01J61/72
    • An arc tube is formed by a glass tube that is turned at a substantially middle thereof and wound around a spiral axis from the middle, to have a double-spiral structure. End portions of the arc tub are wound around the spiral axis. A holder has insertion openings formed therein in such shapes that correspond to shapes of the ends of the arc tube. The insertion openings allow the ends of the arc tube to be inserted along a bottom wall of the holder. The holder also includes guide grooves provided in the areas before the insertion openings in the spiral direction of the ends of the arc tube. The guide grooves allow the end portions of the arc tube to come in contact, and when the arc tube is rotated around the axis, guide the ends of the arc tube to the insertion openings.
    • 电弧管由玻璃管形成,该玻璃管在其大致中间转动并从中间围绕螺旋轴缠绕,以具有双螺旋结构。 电弧槽的端部围绕螺旋轴线缠绕。 保持器具有形成在其中的形状的插入开口对应于电弧管的端部的形状。 插入开口允许电弧管的端部沿着保持器的底壁插入。 保持器还包括设置在电弧管的端部的螺旋方向上的插入开口之前的区域中的引导槽。 引导槽允许电弧管的端部接触,并且当电弧管围绕轴线旋转时,将电弧管的端部引导到插入开口。