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    • 12. 发明授权
    • Oxygen generator
    • 氧气发生器
    • US08702914B2
    • 2014-04-22
    • US13177646
    • 2011-07-07
    • Sea-Fue WangAnthony Lee
    • Sea-Fue WangAnthony Lee
    • C25B9/00C25B9/18C25B1/02
    • C01B13/0251Y10T29/49002
    • An oxygen generator having a honeycomb body composed of an oxygen ion conducting material is disclosed. The honeycomb body includes one or more air channels, each of which is composed of a plurality of the first channels and the first connecting holes therebetween to form a tortuous air flow path for lengthening the detention time of air, and oxygen collection channels, each of which is composed of a plurality of the second channels and the second connecting holes therebetween for oxygen passage. The first and second channels, which extend laterally through across the body and parallel to each other, are all sealed with glass members at both the front face and back face of the body. The source gas is provided and exhausted from one side face of the body to the other side face via a plurality of air inlets and air outlets, respectively, which laterally intersect the first channels. A power source are with a negative terminal and positive terminal, respectively, connected to the air channels and oxygen collection channels, respectively, to force oxygen ion flow across the oxygen ion conducting material such that gas in oxygen collection channels will become riches in oxygen than in air channels. The oxygen within the oxygen collection channels is collected from the side face of the body through a plurality of oxygen outlets which laterally connect with the second channels.
    • 公开了一种具有由氧离子导电材料构成的蜂窝体的氧气发生器。 蜂窝体包括一个或多个空气通道,每个空气通道由多个第一通道和其间的第一连接孔组成,以形成用于延长空气滞留时间的曲折空气流动路径,以及氧气收集通道 其由多个第二通道和用于氧气通道的第二连接孔组成。 第一和第二通道横向延伸穿过主体并且彼此平行,都在身体的正面和背面都用玻璃构件密封。 源气体分别经由与第一通道横向相交的多个空气入口和空气出口而从主体的一个侧面提供和排出到另一侧面。 电源分别带有负端子和正端子,分别连接到空气通道和氧气收集通道,以迫使氧离子流过氧离子导电材料,使得氧气收集通道中的气体将变成氧气中的气体比 在空中通道。 氧气收集通道内的氧气通过与第二通道横向连接的多个氧气出口从身体的侧面收集。
    • 13. 发明申请
    • Oxygen Generator
    • 氧气发生器
    • US20120097531A1
    • 2012-04-26
    • US13177646
    • 2011-07-07
    • Sea-Fue WangAnthony Lee
    • Sea-Fue WangAnthony Lee
    • C25B9/18H05K13/00
    • C01B13/0251Y10T29/49002
    • An oxygen generator having a honeycomb body composed of an oxygen ion conducting material is disclosed. The honeycomb body includes one or more air channels, each of which is composed of a plurality of the first channels and the first connecting holes therebetween to form a tortuous air flow path for lengthening the detention time of air, and oxygen collection channels, each of which is composed of a plurality of the second channels and the second connecting holes therebetween for oxygen passage. The first and second channels, which extend laterally through across the body and parallel to each other, are all sealed with glass members at both the front face and back face of the body. The source gas is provided and exhausted from one side face of the body to the other side face via a plurality of air inlets and air outlets, respectively, which laterally intersect the first channels. A power source are with a negative terminal and positive terminal, respectively, connected to the air channels and oxygen collection channels, respectively, to force oxygen ion flow across the oxygen ion conducting material such that gas in oxygen collection channels will become riches in oxygen than in air channels. The oxygen within the oxygen collection channels is collected from the side face of the body through a plurality of oxygen outlets which laterally connect with the second channels.
    • 公开了一种具有由氧离子导电材料构成的蜂窝体的氧气发生器。 蜂窝体包括一个或多个空气通道,每个空气通道由多个第一通道和其间的第一连接孔组成,以形成用于延长空气滞留时间的曲折空气流动路径,以及氧气收集通道 其由多个第二通道和用于氧气通道的第二连接孔组成。 第一和第二通道横向延伸穿过主体并且彼此平行,都在身体的正面和背面都用玻璃构件密封。 源气体分别经由与第一通道横向相交的多个空气入口和空气出口而从主体的一个侧面提供和排出到另一侧面。 电源分别带有负端子和正端子,分别连接到空气通道和氧气收集通道,以迫使氧离子流过氧离子导电材料,使得氧气收集通道中的气体将变成氧气中的气体比 在空中通道。 氧气收集通道内的氧气通过与第二通道横向连接的多个氧气出口从身体的侧面收集。
    • 15. 发明申请
    • Glass-Ceramic Composite Encapsulation Material
    • 玻璃陶瓷复合封装材料
    • US20100273632A1
    • 2010-10-28
    • US12428018
    • 2009-04-22
    • Sea-Fue WangYun-Ruey WangChing-Chin ChuangChun-Ting Yeh
    • Sea-Fue WangYun-Ruey WangChing-Chin ChuangChun-Ting Yeh
    • C03C14/00
    • C03C3/091C03C3/064C03C8/02C03C8/14C03C8/22C03C8/24H01M8/0282
    • A glass-ceramic composite encapsulation material composed of glass matrix materials of SiO2, Al2O3, BaO and B2O3, and at least one glass filler selected from the group consisting of kaliophilite (KAlSiO4), leucite (KAlSi2O6), magnesium oxide (MgO). The glass-ceramic composite encapsulation material according to the invention comprises a high temperature type glass matrix (softening point: 750-850° C.) and a intermediate temperature type glass matrix (softening point: 650-750° C.), and glass filler mixed therein, wherein said glass filler in the high temperature type glass matrix comprises 5% to 20% by volume of the total volume of said glass matrix and glass filler, and the glass filler in the intermediate temperature type glass matrix comprises 0% to 40% by volume of the total volume of said glass matrix and glass filler, and wherein said glass filler has an effect of adjusting the expansion coefficient.
    • 由SiO 2,Al 2 O 3,BaO和B 2 O 3的玻璃基体材料和至少一种玻璃填充剂组成的玻璃 - 陶瓷复合材料包覆材料,所述玻璃填料选自由闪锌矿(KAlSiO4),白云石(KAlSi2O6),氧化镁(MgO)组成的组。 根据本发明的玻璃 - 陶瓷复合材料包封材料包括高温型玻璃基体(软化点:750-850℃)和中间温度型玻璃基质(软化点:650-750℃)和玻璃 填充剂混合在一起,其中所述高温型玻璃基体中的玻璃填料包含所述玻璃基体和玻璃填料的总体积的5体积%至20体积%,中间温度型玻璃基质中的玻璃填料包含0%至 所述玻璃基体和玻璃填料的总体积的40体积%,其中所述玻璃填料具有调节膨胀系数的效果。
    • 16. 发明授权
    • Glass-ceramic composite encapsulation material
    • 玻璃陶瓷复合材料封装材料
    • US08158261B2
    • 2012-04-17
    • US12428018
    • 2009-04-22
    • Sea-Fue WangYun-Ruey WangChing-Chin ChuangChun-Ting Yeh
    • Sea-Fue WangYun-Ruey WangChing-Chin ChuangChun-Ting Yeh
    • B32B9/00B32B17/06B32B15/00C03C10/04C03C10/10
    • C03C3/091C03C3/064C03C8/02C03C8/14C03C8/22C03C8/24H01M8/0282
    • A glass-ceramic composite encapsulation material composed of glass matrix materials of SiO2, Al2O3, BaO and B2O3, and at least one glass filler selected from the group consisting of kaliophilite (KAlSiO4), leucite (KAlSi2O6), magnesium oxide (MgO). The glass-ceramic composite encapsulation material according to the invention comprises a high temperature type glass matrix (softening point: 750-850° C.) and a intermediate temperature type glass matrix (softening point: 650-750° C.), and glass filler mixed therein, wherein said glass filler in the high temperature type glass matrix comprises 5% to 20% by volume of the total volume of said glass matrix and glass filler, and the glass filler in the intermediate temperature type glass matrix comprises 0% to 40% by volume of the total volume of said glass matrix and glass filler, and wherein said glass filler has an effect of adjusting the expansion coefficient.
    • 由SiO 2,Al 2 O 3,BaO和B 2 O 3的玻璃基体材料和至少一种玻璃填充剂组成的玻璃 - 陶瓷复合材料包覆材料,所述玻璃填料选自由闪锌矿(KAlSiO4),白云石(KAlSi2O6),氧化镁(MgO)组成的组。 根据本发明的玻璃 - 陶瓷复合材料包封材料包括高温型玻璃基体(软化点:750-850℃)和中间温度型玻璃基质(软化点:650-750℃)和玻璃 填充剂混合在一起,其中所述高温型玻璃基体中的玻璃填料包含所述玻璃基体和玻璃填料的总体积的5体积%至20体积%,中间温度型玻璃基质中的玻璃填料包含0%至 所述玻璃基体和玻璃填料的总体积的40体积%,其中所述玻璃填料具有调节膨胀系数的效果。