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    • 3. 发明授权
    • HID lamp with frit seal thermal control
    • HID灯带玻璃料密封热控制
    • US07728495B2
    • 2010-06-01
    • US11832032
    • 2007-08-01
    • Karlene J. ZukArlene HeckerCathy S. TrumbleJoanne M. Browne
    • Karlene J. ZukArlene HeckerCathy S. TrumbleJoanne M. Browne
    • H01J1/02
    • H01J61/366H01J61/523H01J61/82
    • A method of making an HID lamp and an HID lamp that includes a ceramic envelope with a ceramic capillary, wherein the capillary has an electrode feed-through therein that is sealed inside the capillary by a frit seal that extends inside the capillary a first distance from a distal end of the capillary, and a ceramic heat sink around at least half an external diameter of the capillary, wherein the heat sink is separated from the envelope and from the distal end of the capillary and the heat sink is in thermally conductive contact with the capillary and has an external diameter at least 1.5 times the external diameter of the capillary. In one preferred embodiment, the heat sink does not overlap the frit seal.
    • 一种制造HID灯和HID灯的方法,所述HID灯和HID灯包括具有陶瓷毛细管的陶瓷外壳,其中所述毛细管具有通过其中的电极馈入,所述电极馈送通过玻璃料密封件密封在所述毛细管内,所述玻璃料密封件在所述毛细管内延伸出第一距离 毛细管的远端和围绕毛细管的至少一半外径的陶瓷散热器,其中散热器与毛细管的外壳和远端分离,并且散热器与 毛细管,外径至少是毛细管外径的1.5倍。 在一个优选实施例中,散热器不与玻璃料密封件重叠。
    • 6. 发明授权
    • Monolithic seal for a sapphire metal halide lamp
    • 蓝宝石金属卤化物灯的单片密封
    • US06955579B2
    • 2005-10-18
    • US10805372
    • 2004-03-19
    • Arlene HeckerGeorge C. WeiHelmar G. AdlerDieter Lang
    • Arlene HeckerGeorge C. WeiHelmar G. AdlerDieter Lang
    • H01J61/18C04B35/10H01J9/24H01J9/26H01J61/30H01J61/36H01J9/00
    • H01J9/266H01J9/247H01J61/302H01J61/363
    • A method of producing a ceramic metal halide discharge lamp having a monolithic seal between a sapphire (single crystal alumina) arc tube and a polycrystalline alumina (PCA) end cap. The method includes the steps of providing an arc tube of fully dense sapphire and providing an end cap made of unsintered compressed polycrystalline alumina powder doped with magnesium oxide and yttrium oxide. The end cap is heated until it is presintered to remove organic binder material at a low temperature relative to the sintering temperature. The presintered end cap is placed on an end portion of the arc tube to form a close interface between the two. The presintered end cap and adjacent arc tube are then heated to until the end cap is fully sintered onto the arc tube and the sapphire tube grows into the end cap. A monolithic seal is formed along the interface between the end cap and the arc tube as the sapphire tube grows into the polycrystalline alumina end cap. The yttrium oxide promotes increased growth between sapphire tube and the PCA end cap and is not detrimental to the metal halide chemistry, nor subject to erosion by the metal halide chemistry.
    • 一种在蓝宝石(单晶氧化铝)电弧管和多晶氧化铝(PCA)端盖之间具有整体式密封的陶瓷金属卤化物放电灯的制造方法。 该方法包括提供完全致密的蓝宝石的电弧管并提供由掺杂有氧化镁和氧化钇的未烧结压缩多晶氧化铝粉末制成的端盖的步骤。 将端盖加热至预烧结,以相对于烧结温度在低温下除去有机粘合剂材料。 预烧结端盖放置在电弧管的端部上,以在两者之间形成紧密的界面。 然后将预烧结端盖和相邻的电弧管加热直到端盖完全烧结到电弧管上,并且蓝宝石管生长到端盖中。 当蓝宝石管生长成多晶氧化铝端盖时,沿着端盖和电弧管之间的界面形成整体密封。 氧化钇促进蓝宝石管和PCA端盖之间的增长,并且不会对金属卤化物化学产生不利影响,也不会被金属卤化物化学物质侵蚀。