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    • 41. 发明专利
    • Sealing lead wire and cold cathode fluorescent lamp
    • 密封导线和冷阴极荧光灯
    • JP2006140128A
    • 2006-06-01
    • JP2005172809
    • 2005-06-13
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • TSUYUKI TAKAOTAMURA NOBUHIROYAMADA TAICHIIRISAWA KAZUOWATANABE MASAHIRO
    • H01J61/36
    • PROBLEM TO BE SOLVED: To provide a sealing lead wire capable of securing sufficiently connection strength with the external lead wire by welding even if a sealing material is made of tungsten or molybdenum, and a cold cathode fluorescent lamp having this lead wire.
      SOLUTION: The sealing lead wire 3 is equipped with a sealing material 4 made of tungsten or molybdenum, and an external lead wire 5 in which a coating layer 5b of a metal consisting of at least one kind out of copper, tin or zinc is formed on the surface of a core wire 5a connected by welding at the outside end of this sealing material 4. Since interdiffusion occurs between the sealing material 4 and the coating layer 5b, they can be connected easily by resistance welding, thereby the sealing lead wire 3 is improved in connection strength.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种密封引线,即使密封材料由钨或钼制成,也能够通过焊接确保与外部引线的充分连接强度的密封引线以及具有该引线的冷阴极荧光灯。 解决方案:密封引线3配备有由钨或钼制成的密封材料4和外部引线5,其中由铜,锡或其中的至少一种形成的金属的涂层5b 在由密封材料4的外端焊接而连接的芯线5a的表面上形成有锌。由于在密封材料4和涂层5b之间发生相互扩散,因此可以通过电阻焊接容易地连接,从而密封 引线3的连接强度提高。 版权所有(C)2006,JPO&NCIPI
    • 42. 发明专利
    • Incandescent lamp and illumination device
    • 不良灯和照明装置
    • JP2006012435A
    • 2006-01-12
    • JP2004183500
    • 2004-06-22
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • NAKAMURA MITSUNORITAMURA NOBUHIROSUWA TAKUMI
    • H01K1/28H01K1/18
    • PROBLEM TO BE SOLVED: To restrain a possibility of distortion or fine crack generated on a bulb and scattering of glass fragments caused by explosion even in an end period of a service life thereof, by paying attention to the problem caused by raising a temperature of a bulb surface.
      SOLUTION: A reinforcing layer 1a obtained by a chemical reinforcing method is formed on inner and outer surfaces of a bulb 1. This reinforcing layer 1a removes natrium ions on the surfaces of the bulb 1 to impress compression distortions onto the surfaces thereof, for example, by arranging a glass bulb 1, to which a flare stem 2 is not yet sealed, inside a furnace filled with an SO
      2 atmosphere, and by setting to heat so that a temperature inside the furnace becomes not lower than the annealing point temperature and not higher than the transition point temperature of a glass material forming the glass bulb.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了抑制即使在其使用寿命的结束期间,由于爆炸而导致的灯泡产生的变形或微细裂纹的可能性也发生爆炸,因此通过注意由于升高引起的问题 灯泡表面的温度。 解决方案:通过化学增强方法获得的增强层1a形成在灯泡1的内表面和外表面上。该增强层1a去除灯泡1的表面上的纳米离子,以在其表面上施加压缩变形, 例如,通过将填充有SO 2 SBB气氛的炉内的玻璃灯泡1布置在喇叭口杆2未被密封的玻璃灯泡1内,并通过加热使得炉内的温度 不低于退火点温度并且不高于形成玻璃泡的玻璃材料的转变点温度。 版权所有(C)2006,JPO&NCIPI
    • 43. 发明专利
    • Method for recycling fluorescent lamp
    • 回收荧光灯的方法
    • JP2005349395A
    • 2005-12-22
    • JP2005233155
    • 2005-08-11
    • Toshiba Lighting & Technology Corp東芝ライテック株式会社
    • IZUMI MASAHIROYORIFUJI TAKASHINAKAMURA MITSUNORISHIOZAKI MITSURUTAMURA NOBUHIROHATAKEYAMA KEIJI
    • B09B5/00B09B3/00H01J9/50
    • Y02W30/828
    • PROBLEM TO BE SOLVED: To enhance efficiency of a recovery/recycling process and improve quality of recycling materials in recovering and recycling constituent materials of waste fluorescent lamps for reuse, and particularly enhance the recovery efficiency of phosphor and further suppress deterioration in properties of the recycled phosphor. SOLUTION: A recovered waste fluorescent lamp is separated according to the type and product class, and a phosphor layer is separated from the internal face of a glass bulb to separate phosphor from glass and recover them. The recovered phosphor material and glass are recycled for reuse. In this case, in the course of recycling the recovered phosphor, for example, the recovered phosphor is fired in vacuum or in an inert atmosphere to remove mercury contained in the recovered phosphor. The recovered glass is also subjected to the mercury removal treatment. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提高回收/再循环过程的效率,提高回收和再循环废料荧光灯的组成材料的再利用回收材料的质量,特别是提高磷光体的回收效率,进一步抑制性能劣化 的回收磷光体。 解决方案:根据类型和产品等级分离回收的废物荧光灯,将荧光体层从玻璃灯泡的内表面分离出来,从而将荧光体与玻璃分离并回收。 回收的磷光体材料和玻璃被再循环用于再利用。 在这种情况下,在再循环回收的荧光体的过程中,例如,将回收的荧光体在真空或惰性气氛中焙烧以除去回收的荧光体中含有的汞。 回收的玻璃也进行除汞处理。 版权所有(C)2006,JPO&NCIPI