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    • 15. 发明授权
    • Apparatus for manufacturing ultra-fine particles using corona discharge and method thereof
    • 用于使用电晕放电制造超细颗粒的装置及其方法
    • US07972567B2
    • 2011-07-05
    • US10598354
    • 2005-02-25
    • Kang-Ho Ahn
    • Kang-Ho Ahn
    • B01J19/08B05B5/025
    • B03C3/383B01D19/0052B03C3/12B03C3/49B03C2201/08
    • The present invention discloses an apparatus and method for manufacturing ultra-fine particles using corona discharge capable of manufacturing the ultra-fine particles nanometers in size from a reaction gas using the corona discharge. In the apparatus for manufacturing ultra-fine particles of the present invention, a reaction gas feeder supplies a nozzle with reaction gas, and the reaction gas is injected. When a power supply applies a high voltage to the nozzle, the corona discharge occurs at the nozzle. Thus, the injected reaction gas is dissolved, and a large number of ultra-fine particles are produced. Then, a collection plate collects the ultra-fine particles. In addition, a duct encloses the nozzle, so that a passage is formed between the nozzle and duct. Sheath gas supplied to the passage of the duct forms a gas curtain between the nozzle and the collection plate, so that the gas curtain leads the flow of the ultra-fine particles. If other reaction gas is supplied to the passage of the duct and heat energy is supplied thereto, the other reaction gas reacts thermochemically, so that a large number of other ultra-fine particles are produced. The ultra-fine particles produced by the corona discharge are coated with the other ultra-fine particles. If the corona discharge is generated while the ultra-fine particles and the other reaction gas are injected by another nozzle positioned downstream of the nozzle, the ultrafine particles are coated with the other ultra-fine particles produced from the other reaction gas.
    • 本发明公开了一种使用电晕放电制造超细颗粒的装置和方法,其能够使用电晕放电从使用反应气体制造尺寸的超细颗粒纳米。 在本发明的超细粒子的制造装置中,反应气体供给器向喷嘴供给反应气体,注入反应气体。 当电源对喷嘴施加高电压时,在喷嘴处发生电晕放电。 因此,注入的反应气体溶解,产生大量的超细粒子。 然后,收集板收集超细颗粒。 此外,管道封闭喷嘴,使得在喷嘴和管道之间形成通道。 供应到管道通道的护套气体在喷嘴和收集板之间形成气幕,使得气幕导致超细颗粒的流动。 如果向管道的通道供应其它反应气体并且向其供应热能,则其它反应气体热化学反应,从而产生大量其它超细颗粒。 由电晕放电产生的超细颗粒被其它超细颗粒涂覆。 如果通过位于喷嘴下游的另一个喷嘴喷射超细颗粒和其它反应气体,则产生电晕放电,则超细颗粒被其它反应气体产生的其它超细颗粒涂覆。
    • 16. 发明申请
    • ION DIFFUSING APPARATUS AND ION GENERATING CARTRIDGE
    • 离子扩散装置和离子发生盒
    • US20110133098A1
    • 2011-06-09
    • US13056894
    • 2009-08-27
    • Hiroshi KitagaitoTakashi KohamaHiroyasu YamashitaHaruhito MiyazakiJun Katayama
    • Hiroshi KitagaitoTakashi KohamaHiroyasu YamashitaHaruhito MiyazakiJun Katayama
    • H01J27/08
    • H01T23/00A61L9/22A61L2209/111A61L2209/133B03C3/32B03C3/383F24F3/166F24F2003/1682
    • Disclosed is an ion diffusing apparatus that can realize easy replacement of an ion generator and can maintain a stable ion supplying capability. Also disclosed is an ion generating cartridge. In the ion diffusing apparatus, the ion generator is so configured that the generator is detachable for easy maintenance, and can deliver the positive ions and negative ions to a position remote from the apparatus in a room while uniformly generating positive ions and negative ions. An ion diffusing apparatus (1) includes an ion generator housing part. An ion generator (10) is housed in the ion generator housing part in such a posture that a positive ion generating part (13A) and a negative ion generating part (13B) are provided separately from each other in a direction crossing a flow direction of a stream from a fan (3), and an ion generating surface (11a) is exposed so as to conform to a stream flow surface of a stream flow passage extended from the fan (3) to a supply opening (4). The ion generator (10) is made to be a cartridge such that the ion generating surface (11a) thereof has a shape conforming to the stream flow surface of the stream flow passage, and the cartridge can be taken in and out from the ion generator housing part through an insertion port (6) provided on the supply opening (4) side at the front of the apparatus and is detachably housed in the ion generator housing part in such a posture that the ion generating surface is exposed to the stream flow surface.
    • 公开了一种离子扩散装置,其能够实现离子发生器的容易更换,并能够保持稳定的离子供给能力。 还公开了一种离子产生盒。 在离子扩散装置中,离子发生器被配置为使得发生器可拆卸以便于维护,并且可以将正离子和负离子递送到远离设备的位置,同时均匀地产生正离子和负离子。 离子扩散装置(1)包括离子发生器容纳部。 离子发生器(10)以这样的姿势被容纳在离子发生器壳体部分中:正离子产生部分(13A)和负离子产生部分(13B)在与 来自风扇(3)的流和离子产生表面(11a)被暴露以符合从风扇(3)延伸到供给开口(4)的流动流动通道的流动流动表面。 离子发生器(10)被制成为使得其离子产生表面(11a)具有与流动流动通道的流动流动表面相一致的形状的盒,并且该盒可以从离子发生器 壳体部分通过设置在设备前部的供给开口(4)侧的插入口(6),并以离子发生表面暴露于流动流动面的姿态可拆卸地容纳在离子发生器壳体部分 。
    • 19. 发明申请
    • IONIZER
    • 离子
    • US20090262482A1
    • 2009-10-22
    • US12410577
    • 2009-03-25
    • Masayuki ORIHARATakayuki ToshidaAkira Tadano
    • Masayuki ORIHARATakayuki ToshidaAkira Tadano
    • H01J27/00
    • H01T23/00B03C3/32B03C3/368B03C3/383
    • An ionizer is formed by coupling a fan unit provided with a discharge electrode and a fan and a control unit provided with an indicator and an adjuster to each other, and both units are changeable between a normal coupling condition, where both are directed in the same direction, and an opposite coupling condition, where they are directed in opposite directions to each other, and in addition, a power/signal arrangement of the connection terminals of the separate connector is bilaterally symmetrical such that same power and signals ale transmitted and received between the separate connectors of both units connected to each other in either coupling condition of aforementioned both units.
    • 通过将设置有放电电极和风扇的风扇单元和设置有指示器和调节器的控制单元联接而形成电离器,并且两个单元可在正常耦合条件之间变化,两者均在相同的方向 方向和相反的耦合条件,其中它们彼此相反地指向,并且另外,分离连接器的连接端子的功率/信号布置是双边对称的,使得在相互之间传递和接收相同的功率和信号 两个单元的分离的连接器在上述两个单元的耦合条件下彼此连接。
    • 20. 发明申请
    • ELECTROSTATICALLY ATOMIZING DEVICE
    • 静电导入装置
    • US20090179093A1
    • 2009-07-16
    • US12303533
    • 2007-05-22
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • Sumio WadaAtsushi IsakaKenji ObataYutaka UrataniShousuke AkisadaHiroshi SudaTakayuki Nakada
    • B05B5/053B05B5/08
    • B05B5/025B03C3/12B03C3/383B03C3/68B05B5/057B05B5/10B05B5/1691
    • An electrostatically atomizing device includes an emitter electrode, an opposed electrode disposed in an opposed relation to the emitter electrode, liquid supply means for supplying a liquid to the emitter electrode, and high voltage generating means for applying a high voltage across the emitter electrode and the opposed electrode. The liquid supplied onto the emitter electrode is electrostatically charged through application of the high voltage, as a result of which charged minute liquid particles are discharged from a discharge end of the emitter electrode. The device includes detecting means for detecting a discharge condition developed between the emitter electrode and the opposed electrode, and a controller for controlling the high voltage generating means to regulate its voltage output so as to maintain a predetermined discharge condition, based on detection results by the detecting means. Charged minute particles can be continuously generated in an amount corresponding to the predetermined discharge condition, by adjusting the discharge voltage that is applied to the emitter electrode.
    • 静电雾化装置包括发射极电极,与发射极电极相对设置的相对电极,用于向发射电极供给液体的液体供应装置,以及用于在发射极电极和/或电极之间施加高电压的高电压产生装置, 相对电极。 供给到发射电极上的液体通过施加高电压而被静电充电,结果使带电的微小液体颗粒从发射电极的放电端排出。 该装置包括用于检测在发射电极和相对电极之间产生的放电条件的检测装置,以及用于控制高压发生装置的控制器,用于调节其电压输出以便保持预定的放电条件,基于检测结果 检测装置。 可以通过调整施加到发射电极的放电电压,连续产生与预定放电条件对应的量的带电微小颗粒。