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    • 1. 发明授权
    • Electric precipitator
    • 电除尘器
    • US08690998B2
    • 2014-04-08
    • US13313374
    • 2011-12-07
    • Jun Ho JiIn Sang HwangByeong Cheol YoonJun Young Lee
    • Jun Ho JiIn Sang HwangByeong Cheol YoonJun Young Lee
    • B03C3/47
    • B03C3/08B03C3/12B03C3/41B03C3/47B03C2201/04
    • An electric precipitator includes a charge unit disposed at an upstream part and a dust collection unit disposed at a downstream part, the charge unit includes charge electrodes and a discharge wire disposed between two neighboring charge electrodes and separated from the charge electrodes, the dust collection unit includes high voltage electrodes, front ends of which are opposite to the charge unit, and low voltage electrodes, front ends of which are opposite to the charge unit and which alternate with high voltage electrodes, and the front ends of high voltage electrodes protrude toward the charge unit as compared to the front ends of low voltage electrodes, thereby guiding electrons to the discharge electrodes due to an electric field formed between the front ends of the high voltage electrodes and the discharge electrodes and thus reducing current leakage through the low voltage electrodes.
    • 电除尘器包括设置在上游部分的充电单元和设置在下游部分的集尘单元,所述充电单元包括充电电极和布置在两个相邻充电电极之间并与充电电极分离的放电线,所述集尘单元 包括其前端与充电单元相对的高压电极,以及低压电极,其前端与充电单元相对,并与高电压电极交替,并且高压电极的前端朝向 充电单元与低电压电极的前端相比,由于在高电压电极的前端和放电电极之间形成的电场而将电子引导到放电电极,从而减少了通过低压电极的电流泄漏。
    • 2. 发明申请
    • ELECTRIC PRECIPITATOR
    • 电机
    • US20120160106A1
    • 2012-06-28
    • US13313374
    • 2011-12-07
    • Jun Ho JiIn Sang HwangByeong Cheol YoonJun Young Lee
    • Jun Ho JiIn Sang HwangByeong Cheol YoonJun Young Lee
    • B03C3/70B03C3/66
    • B03C3/08B03C3/12B03C3/41B03C3/47B03C2201/04
    • An electric precipitator includes a charge unit disposed at an upstream part and a dust collection unit disposed at a downstream part, the charge unit includes charge electrodes and a discharge wire disposed between two neighboring charge electrodes and separated from the charge electrodes, the dust collection unit includes high voltage electrodes, front ends of which are opposite to the charge unit, and low voltage electrodes, front ends of which are opposite to the charge unit and which alternate with high voltage electrodes, and the front ends of high voltage electrodes protrude toward the charge unit as compared to the front ends of low voltage electrodes, thereby guiding electrons to the discharge electrodes due to an electric field formed between the front ends of the high voltage electrodes and the discharge electrodes and thus reducing current leakage through the low voltage electrodes.
    • 电除尘器包括设置在上游部分的充电单元和设置在下游部分的集尘单元,所述充电单元包括充电电极和布置在两个相邻充电电极之间并与充电电极分离的放电线,所述集尘单元 包括其前端与充电单元相对的高压电极,以及低压电极,其前端与充电单元相对,并与高电压电极交替,并且高压电极的前端朝向 充电单元与低电压电极的前端相比,由于在高电压电极的前端和放电电极之间形成的电场而将电子引导到放电电极,从而减少了通过低压电极的电流泄漏。
    • 6. 发明授权
    • Nano particle generator
    • 纳米颗粒发生器
    • US07863545B2
    • 2011-01-04
    • US11508319
    • 2006-08-23
    • Jun Ho JiHyung Soo Noh
    • Jun Ho JiHyung Soo Noh
    • H05B1/00
    • B01J6/00B01J6/007B01J2219/00013B01J2219/00128B01J2219/0013B01J2219/00135B01J2219/00155B82Y30/00B82Y40/00
    • Disclosed herein is a nano particle generator that can reduce power consumption, can be miniaturized, and can generate nano particles having various different material characteristics at the same time. The nano particle generator includes a body, a heating unit to heat a material received in the body such that the material is evaporated, a channel extending through the body such that a fluid to condense the evaporated material flows along the channel, and an insulating member to prevent heat generated from the heating unit from being transmitted to the body. The heating unit heats the material while the heating unit is in direct contact with the material, and the heating unit is in point or line contact with the insulating member. The heating unit has a plurality of locating parts formed therein such that the material is located in the locating parts. Different materials are located in the locating parts, and the locating parts are heated to temperatures at which the respective materials are evaporated in the same time.
    • 本文公开了一种纳米颗粒发生器,其可以降低功耗,可以小型化,并且可以同时产生具有各种不同材料特性的纳米颗粒。 纳米颗粒发生器包括主体,加热单元,用于加热容纳在主体中的材料以使材料蒸发;延伸穿过主体的通道,使得冷凝蒸发的材料的流体沿着通道流动;绝缘构件 以防止从加热单元产生的热量传递到主体。 加热单元在加热单元与材料直接接触的同时加热材料,并且加热单元与绝缘构件进行点或线接触。 加热单元具有形成在其中的多个定位部件,使得材料位于定位部分中。 不同的材料位于定位部件中,并将定位部件加热到相同材料在同一时间蒸发的温度。
    • 8. 发明申请
    • Method and apparatus for manufacturing electrode for fuel cells
    • 燃料电池用电极的制造方法及装置
    • US20080113089A1
    • 2008-05-15
    • US11892530
    • 2007-08-23
    • Jun Ho Ji
    • Jun Ho Ji
    • H01M4/88B05C13/00B05C19/00
    • H01M4/92H01M4/8867H01M4/926H01M2008/1095
    • A method and apparatus for manufacturing an electrode for fuel cells that are capable of manufacturing an electrode in which micro catalyst particles are uniformly dispersed through a simple manufacturing process. The electrode manufacturing method includes disposing at least one heating unit to heat a material, evaporating the material using the at least one heating unit to create catalyst particles, and supplying and attaching the created catalyst particles to a carbon carrier. The electrode manufacturing apparatus includes a process chamber, a catalyst particle generator mounted in the process chamber, the catalyst particle generator directly heating a material to create catalyst particles, and a transfer device to transfer a carbon carrier disposed in the process chamber.
    • 一种用于制造燃料电池用电极的方法和装置,其能够通过简单的制造工艺制造其中微量催化剂颗粒均匀分散的电极。 所述电极制造方法包括设置至少一个加热单元以加热材料,使用所述至少一个加热单元蒸发所述材料以产生催化剂颗粒,以及将所产生的催化剂颗粒供应和附着到碳载体上。 电极制造装置包括处理室,安装在处理室中的催化剂颗粒发生器,催化剂颗粒发生器直接加热材料以产生催化剂颗粒;以及转移装置,用于转移设置在处理室中的碳载体。
    • 9. 发明申请
    • Electric precipitator
    • 电除尘器
    • US20100288127A1
    • 2010-11-18
    • US12662556
    • 2010-04-22
    • Kochiyama YasuhikoHyong-Soo NohJun Ho JiSo Young Yun
    • Kochiyama YasuhikoHyong-Soo NohJun Ho JiSo Young Yun
    • B03C3/40
    • B03C3/86B03C3/64
    • Disclosed herein is an electric precipitator including at least one high voltage electrode including a pair of film members made of a non-conductive material and attached to each other and an electrode layer disposed between the pair of film members, and at least one low voltage electrode disposed alternately with the at least one high voltage electrode such that that the at least one high voltage electrode and the at least one low voltage electrode are separated from each other. Support members made of an insulating member to maintain separation of the at least one high voltage electrode and the at least one low voltage electrode from each other are mounted on one of the at least one high voltage electrode and the at least one low voltage electrode.
    • 这里公开了一种电除尘器,其包括至少一个高压电极,其包括由非导电材料制成并彼此附接的一对膜构件和设置在所述一对膜构件之间的电极层和至少一个低压电极 与所述至少一个高压电极交替布置,使得所述至少一个高压电极和所述至少一个低压电极彼此分离。 至少一个高压电极和至少一个低电压电极中的一个安装有由绝缘构件制成的支撑构件以将至少一个高压电极和至少一个低压电极彼此分离。
    • 10. 发明申请
    • Nano particle generator
    • 纳米颗粒发生器
    • US20090127252A1
    • 2009-05-21
    • US12318277
    • 2008-12-23
    • Jun Ho JiHyung Soo Noh
    • Jun Ho JiHyung Soo Noh
    • H05B6/10
    • B01J6/00B01J6/007B01J2219/00013B01J2219/00128B01J2219/0013B01J2219/00135B01J2219/00155B82Y30/00B82Y40/00
    • The nano particle generator includes a body, a heating unit to heat a material received in the body such that the material is evaporated, a channel extending through the body such that a fluid to condense the evaporated material flows along the channel, and an insulating member to prevent heat generated from the heating unit from being transmitted to the body. The heating unit heats the material while the heating unit is in direct contact with the material, and the heating unit is in point or line contact with the insulating member. The heating unit has a plurality of locating parts formed therein such that the material is located in the locating parts. Different materials are located in the locating parts, and the locating parts are heated to temperatures at which the respective materials are evaporated in the same time.
    • 纳米颗粒发生器包括主体,加热单元,用于加热容纳在主体中的材料以使材料蒸发;延伸穿过主体的通道,使得冷凝蒸发的材料的流体沿着通道流动;绝缘构件 以防止从加热单元产生的热量传递到主体。 加热单元在加热单元与材料直接接触的同时加热材料,并且加热单元与绝缘构件进行点或线接触。 加热单元具有形成在其中的多个定位部件,使得材料位于定位部分中。 不同的材料位于定位部件中,并将定位部件加热到相同材料在同一时间蒸发的温度。