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    • 1. 发明公开
    • 저압 열플라즈마 장치용 이중 투명 수평 반응관 장치
    • 用于低压热等离子体设备的双重透明水平反应管装置
    • KR1020040092676A
    • 2004-11-04
    • KR1020030026200
    • 2003-04-25
    • 김승수
    • 최봉근심승환김경훈김영택주경황인기심광보
    • B82B3/00B82Y40/00
    • B01J19/088B82Y40/00
    • PURPOSE: Provided is a duplicate transparent horizontal reaction tube device for a low pressure heat plasma apparatus, which permits a user to observe the overall state of plasma, is easily detachable for washing, and has improved safety and various lengths. CONSTITUTION: The duplicate transparent horizontal reaction tube(4) is disposed between a plasma gun(2) and a fractionation chamber in a low pressure heat plasma apparatus. The reaction tube comprises a quartz tube(12) having an inner path through which plasma jet is ejected from the plasma gun(2), and a transparent plastic cooling tube(14) disposed to surround the exterior of the quartz tube(12) and forming a cooling path(13) through which cooling water flows at the outside of the quartz tube(12). Both ends of the quartz tube(12) and the cooling tube(14) are tightly coupled to a first body(62) and a second body(68) having an inlet(56) and outlet(58) for cooling water, respectively, by a quartz tube protection ring(52,54,152,154) and a cooling tube protection ring(36,38,136,138).
    • 目的:提供一种用于低压等离子体设备的重复的透明水平反应管装置,其允许用户观察等离子体的整体状态,易于拆卸以进行洗涤,并且具有改进的安全性和各种长度。 构成:在低压热等离子体装置中,将重复的透明水平反应管(4)设置在等离子体枪(2)和分馏室之间。 反应管包括石英管(12),其具有从等离子体枪(2)喷射等离子体射流的内部路径和设置成围绕石英管(12)的外部设置的透明塑料冷却管(14),以及 形成冷却水在石英管(12)的外侧流过的冷却路径(13)。 石英管(12)和冷却管(14)的两端紧密地联接到具有分别用于冷却水的入口(56)和出口(58)的第一主体(62)和第二主体(68) 通过石英管保护环(52,54,152,154)和冷却管保护环(36,38,136,138)。
    • 2. 发明公开
    • 투스텝 싸이클론 챔버를 통한 분말의 분급 시스템
    • 粉末分级系统使用两步循环罐,通过保持室内低压来防止纳米颗粒聚集
    • KR1020040088343A
    • 2004-10-16
    • KR1020030022600
    • 2003-04-10
    • 김승수
    • 최봉근심승환김경훈김영택주경황인기심광보
    • B04C5/24B04C5/12B04C5/15B82Y40/00
    • B01D50/00B01D45/12B04C5/103B04C5/24B04C5/30B04C2009/005
    • PURPOSE: A power classification system using a two-stepped cyclone chamber is provided to prevent the aggregation phenomenon of nano-particles by introducing a vortex generating chamber, to efficiently classify them, and to fine-granulate the classified particle size, and to increase return rate and recycling degree of the powder. CONSTITUTION: The powder classification system for classifying and collecting the fine powder by size, which is shaped by quenching after a solid powder passes the plasma range and is vaporized, includes; a first chamber(10) having a cylindrical cyclone structure in which an inlet(11), introducing a carrier gas containing the scattered fine powder, quenched after vaporization, is deflected, so as to generate the vortex, and a powder collecting barrel(16) at its lower part; a second chamber(20), connected with the first chamber(10) by a feeding tube(30), having the same structure and collecting barrel(26) as the first chamber(10); and a vacuum pump(50), connected with the second chamber(20), and creating a low pressure by a high vacuum of the second chamber(20).
    • 目的:提供一种使用两级旋风室的功率分级系统,通过引入涡流发生室来防止纳米颗粒的聚集现象,对其进行有效分类,并对分级粒度进行细粒化,并提高回收率 粉末的速率和回收程度。 构成:固体粉末通过等离子体范围并蒸发后通过淬火成形而分级收集细粉末的粉末分级系统包括: 具有圆柱形旋风结构的第一室(10),其中引入含有散射细粉末的载气(在蒸发后淬火)的入口(11)被偏转以产生涡流,并且将粉末收集筒(16 )在其下部; 第二室(20),通过供给管(30)与第一室(10)连接,具有与第一室(10)相同的结构和收集桶(26); 以及与所述第二室(20)连接的真空泵(50),并且通过所述第二室(20)的高真空产生低压。