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    • 1. 发明申请
    • Short arc lamp with improved thermal transfer characteristics
    • 具有改善热传递特性的短弧灯
    • US20030098652A1
    • 2003-05-29
    • US09995453
    • 2001-11-27
    • Paul L. BeechAlbert M. DeDonato
    • H01J061/35H01J017/16
    • H01J61/025H01J61/86
    • A short arc lamp is optimized for improved thermal performance characteristics. The short arc lamp includes a ceramic body having a concave reflective surface formed in an upper end thereof, a base adapted to receive the base end of the ceramic body in abutting relation, and a window frame assembly positioned in abutting concentric relation with the upper end of the ceramic body. In particular, the ceramic body is formed from beryllia (beryllium oxide) which has superior thermal transfer characteristics. The lamp is further provided with a specialized coating which help keep infra-red (IR) light energy from escaping from the lamp. In one instance, the coating is an IR reflective coating placed on the window of the lamp to reflect IR light energy back into the lamp where it can be conducted outwardly through the beryllium oxide body and base. In another instance, the reflector surface of the beryllium oxide body is provided with a dichroic coating which reflects visible light, while allowing IR energy to pass through. Accordingly, the IR energy passes through to the ceramic body and is transferred outwardly through the base.
    • 针对改进的热性能特性优化了一个短弧灯。 短弧灯包括陶瓷体,其具有形成在其上端的凹面反射表面,适于接纳陶瓷体的基端邻接的基部以及与上端相接触的同心关系的窗框组件 的陶瓷体。 特别地,陶瓷体由具有优良热转印特性的氧化铍(氧化铍)形成。 该灯还设置有专门的涂层,其有助于保持红外(IR)光能量从灯中逸出。 在一种情况下,涂层是放置在灯的窗口上的IR反射涂层,以将IR光能量反射回到灯中,在那里可以向外通过氧化铍体和基体。 在另一种情况下,氧化铍体的反射器表面设置有反射可见光的二向色涂层,同时允许IR能量通过。 因此,IR能量通过陶瓷体并通过基底向外转移。
    • 4. 发明申请
    • Low volatility slurry for emission mix powder
    • 低挥发性浆料用于排放混合粉末
    • US20030076042A1
    • 2003-04-24
    • US09934722
    • 2001-08-22
    • Thomas F. SoulesGabor Sajo
    • H01J017/16H01J061/35
    • H01J61/0677H01J61/72
    • An emission mix slurry for coating fluorescent lamp electrodes is provided having a suspension medium of polyethylene glycol 200, and a mixture of calcium-, strontium-, and barium carbonate powder as suspended solids. In another embodiment, the suspension medium is primarily water. The slurry is formulated such that upon activation, the carbonates are oxidized to their corresponding oxides to form the emission mix oxide coating while the polyethylene glycol suspension medium is cleanly oxidized evolving substantially only CO2 and H2O vapor. A method for preparing the emission mix slurry is also provided.
    • 提供了一种用于涂覆荧光灯电极的发射混合浆液,其具有聚乙二醇200的悬浮介质和作为悬浮固体的钙,锶和碳酸钡粉末的混合物。 在另一个实施方案中,悬浮介质主要是水。 将浆料配制成使得在活化时,碳酸酯被氧化成其相应的氧化物以形成排放混合氧化物涂层,而聚乙二醇悬浮介质被干净地氧化,基本上只释放出二氧化碳和水蒸气。 还提供了一种制备排放混合物浆料的方法。
    • 6. 发明申请
    • Mercury-containing material, method for producing the same and fluorescent lamp using the same
    • 含汞材料及其制造方法及使用其的荧光灯
    • US20020036468A1
    • 2002-03-28
    • US09957521
    • 2001-09-19
    • Matsushita Electric Industrial Co., Ltd.
    • Kouji Honda
    • H01J017/16H01J061/35
    • H01J61/28H01J61/20H01J61/72
    • A mercury-containing material, a method for producing the same and a fluorescent lamp using the same that can enclose a minimal amount of mercury in a glass bulb precisely, prevent flaws in a fluorescent coating while suppressing a noise during a lamp transportation, and prevent deterioration in appearance are provided. A surface of liquid mercury is coated with a continuous film made of metal oxide or metal complex oxide by dipping the mercury in a metal alkoxide solution and then heating the mercury on which the metal alkoxide solution adheres. Accordingly, the minimal amount of the mercury can be enclosed in the fluorescent lamp precisely, thus achieving friendliness to the environment. It also is possible to prevent flaws in the fluorescent coating while suppressing a noise during the lamp transportation and further to prevent deterioration in appearance.
    • 含汞材料及其制造方法以及使用该荧光灯的荧光灯能够精确地封入玻璃泡内的最小量的汞,能够防止灯输送时的噪音的抑制,防止荧光涂层的瑕疵,防止 提供外观恶化。 用金属氧化物或金属络合物氧化物的连续膜涂覆液态汞的表面,将汞浸入金属醇盐溶液中,然后加热金属醇盐溶液附着的汞。 因此,能够将荧光灯中的汞的最小量精确地包封,从而实现对环境的友好。 也可以防止荧光涂层中的缺陷,同时抑制灯运输期间的噪声,并且进一步防止外观劣化。
    • 9. 发明申请
    • Method for applying a coating to a lamp and coated lamp
    • 将涂层施加到灯和涂覆灯的方法
    • US20040032210A1
    • 2004-02-19
    • US10363740
    • 2003-09-11
    • Bernd KarrasUrsus KrugerUwe PyritzRaymond Ullrich
    • H01J017/16H01J061/35
    • H01K3/005H01J9/20
    • A method for applying a coating (23) to a part of a surface of a lamp (20). The aim is to provide a simple manner of applying exact coatings to parts of surfaces with complicated designs. To this end, the lamp is vacuum-coated. The parts of the surface of the lamp (20) that are not to be coated are covered by a mask (3) and at least one coat is applied to the non-covered parts of the surface. The mask (3) is located at a predetermined distance (d) from the part of the surface of the lamp (20) and the mask (3) is oriented in relation to an illumination element (2) or a base (21) of the lamp (20). The invention also relates to a coated lamp that is produced according to a method of this type.
    • 一种将涂层(23)施加到灯(20)的表面的一部分的方法。 目的是提供一种将复杂设计的表面应用精确涂层的简单方法。 为此,灯被真空涂覆。 未被涂覆的灯(20)的表面部分被掩模(3)覆盖,并且至少一个涂层施加到表面的未覆盖部分。 掩模(3)位于与灯(20)的表面的一部分的预定距离(d)处,并且掩模(3)相对于照明元件(2)或基座(21)定向 灯(20)。 本发明还涉及根据这种方法制造的涂覆灯。