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    • 3. 发明申请
    • ULTRAVIOLET EMITTER FOR USE IN A FLAME DETECTOR AND A METHOD OF MAKING THE SAME
    • 用于火焰探测器的超紫外线发射器及其制造方法
    • WO2016111886A1
    • 2016-07-14
    • PCT/US2015/067871
    • 2015-12-29
    • CARRIER CORPORATION
    • FOLLETT, Gary, J.
    • G08B29/14G08B17/12H01J61/76H01J61/16H01J61/30H01J9/38H01J9/24H01J47/08
    • G08B17/12F23N5/082F23N2027/14G08B17/00G08B29/145H01J9/24H01J9/38H01J47/08H01J61/16H01J61/302H01J61/76
    • A flame detector including an ultraviolet emitter configured to emit ultraviolet light at a strike voltage less than or equal to approximately 230 volts. A method of manufacturing an ultraviolet emitter for use in a flame detector, the ultraviolet emitter including a hermetically sealed, alkali rich, ultraviolet transmissive glass envelope, the method including: (a) wrapping an envelope exterior surface with a conductive material; (b) performing a first injection of at least one non-radioactive gas into the glass envelope at a first pressure; (c) applying a voltage bias to the glass envelope; (d) baking the hermetically sealed, alkali rich, ultraviolet transmissive glass envelope at a baking temperature for a baking duration of time; (e) cooling the hermetically sealed, alkali rich, ultraviolet transmissive glass envelope to a desired temperature; and (f) performing a second injection of at least one non-radioactive gas into the glass envelope at a second pressure.
    • 一种火焰检测器,包括配置成以小于或等于约230伏的冲击电压发射紫外光的紫外线发射器。 一种制造用于火焰检测器的紫外线发射器的方法,所述紫外线发射器包括密封的,富碱的,紫外线透射的玻璃外壳,所述方法包括:(a)用导电材料包封外壳表面; (b)在第一压力下将至少一种非放射性气体首先注入玻璃封套; (c)向玻璃封套施加电压偏置; (d)在烘烤温度下烘烤密封的,富碱的紫外线透明玻璃罩,烘烤持续时间; (e)将密封的,富碱的,紫外线透射的玻璃外壳冷却至期望的温度; 和(f)在第二压力下进行至少一种非放射性气体的第二次注入到玻璃封套中。