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    • 13. 发明申请
    • APPARATUS FOR COLLECTING SUSPENDED MATTER
    • 收集悬挂物品的装置
    • WO2011034326A3
    • 2011-08-04
    • PCT/KR2010006259
    • 2010-09-15
    • SUNJE HI TEK CO LTDLEE DONG HOONKIM SANG-HYOJUNG YONG-CHULLEE JAE-HYUNKIM MU HOKIM HAN-JUPARK JAW WOOJIN WON-JUN
    • LEE DONG HOONKIM SANG-HYOJUNG YONG-CHULLEE JAE-HYUNKIM MU HOKIM HAN-JUPARK JAW WOOJIN WON-JUN
    • B03C3/47B03C3/04B03C3/40B03C3/66
    • B03C3/09B03C3/025B03C3/47B03C3/68B03C3/86
    • In order to provide a highly efficient apparatus for collecting suspended matter that is thin and compact, easy to maintain and repair, and has improved safety, the present invention relates to an apparatus for collecting suspended matter, comprising: a supporting frame provided with an outer frame defining a hollow through-portion; an emitter electrode portion detachably provided within the outer frame of the supporting frame, and including a connecting member crossing the through-portion and having a plurality of rod electrodes connected thereto; a collector electrode portion detachably disposed within the outer frame of the supporting frame, and including a metal plate electrode installed so as to face the arranged rod electrodes and defining a plurality of perforated holes so as to form an ionic breeze of ambient air and to collect suspended matter from the air; and a separable assembly frame configured so as to be separable and assembled along outer perimeters of the emitter electrode portion and the collector electrode portion, respectively.
    • 为了提供一种用于收集薄且紧凑,易于维护和修理的悬浮物质的高效装置,并且具有改进的安全性,本发明涉及一种用于收集悬浮物质的装置,其包括:支撑框架,其设置有外部 框架限定中空通道部分; 可拆卸地设置在所述支撑框架的外框架内的发射电极部分,并且包括与所述贯穿部分交叉并具有与其连接的多个杆电极的连接部件; 可拆卸地设置在所述支撑框架的外框架内的集电极部分,并且包括金属板电极,所述金属板电极安装成面对所布置的杆电极并且限定多个穿孔,以形成环境空气的离子微风并收集 空气悬浮物; 以及可分离的组装框架,其被构造成分别沿着发射极电极部分和集电极部分的外周分开和组装。
    • 16. 发明申请
    • A METHOD FOR PREPARING CATIONIC MICROGEL FOR ELECTRODEPOSITABLE COATING AND AN ELECTRODEPOSITABLE COATING COMPOSITION COMPRISING CATIONIC MICROGEL PREPARED FROM THE SAME
    • 一种制备用于电沉积涂层的阳离子微孔和包含由其制备的阳离子微孔的电沉积涂料组合物的方法
    • WO2008091082A1
    • 2008-07-31
    • PCT/KR2008/000354
    • 2008-01-21
    • KCC CORPORATIONHONG, Seok ChanKIM, Sang HunSOHN, Duck SooYANG, Han JuJUNG, Man YongLEE, Nam JuKIM, Tae Ho
    • HONG, Seok ChanKIM, Sang HunSOHN, Duck SooYANG, Han JuJUNG, Man YongLEE, Nam JuKIM, Tae Ho
    • C09D179/02
    • C09D163/00C08G59/184C08L63/00C09D5/4488C09D179/02C08L2666/22
    • The present invention relates to a method for preparing a cationic microgel for electrodepositable coating and an electrodepositable coating composition comprising cationic microgel prepared by the same method. More specifically, the present invention relates to the method for preparing a cationic microgel for electrodepositable coating and the electrodepositable coating composition comprising cationic microgel prepared from by same method, wherein the method for preparing cationic microgel for electrodepositable coating comprises the steps of (1) preparing tertiary amine salt by reacting a tertiary amine having a hydroxy group with diisocyanate followed by neutralizing the resulting mixture with acid; and (2) dispersing the tertiary amine salt resin and polyepoxy resin polymer in a dispersion media, and then reacting the tertiary amine salt resin and polyepoxy resin polymer in the presence of diamine. The cationic microgel for electrodepositable coating exhibits excellent mechanical properties when applied to electrodepositable coating. The electrodepositable coating with the cationic microgel is excellent for edge coating and provides a good smooth coating film by inhibiting the formation of craters by adequately controlling the flowability during the hardening of the coating film.
    • 本发明涉及一种制备用于电沉积涂层的阳离子微凝胶的方法和包含通过相同方法制备的阳离子微凝胶的电沉积涂料组合物。 更具体地说,本发明涉及制备用于电沉积涂层的阳离子微凝胶的方法和包含由相同方法制备的阳离子微凝胶的电沉积涂料组合物,其中用于制备用于可电沉积涂层的阳离子微凝胶的方法包括以下步骤:(1)制备 通过使具有羟基的叔胺与二异氰酸酯反应,然后用酸中和所得混合物; 和(2)将叔胺盐树脂和聚环氧树脂聚合物分散在分散介质中,然后在二胺的存在下使叔胺盐树脂和聚环氧树脂聚合物反应。 用于电沉积涂料的阳离子微凝胶当用于可电沉积涂层时表现出优异的机械性能。 具有阳离子微凝胶的电沉积涂层对于边缘涂层是优异的,并且通过适当地控制涂膜硬化期间的流动性来抑制凹坑的形成,从而提供良好的光滑涂膜。
    • 19. 发明申请
    • DUAL WEB SERVER SYSTEM AND METHOD USING HOST SERVER IN P2P WEB SERVER CONFIGURATION
    • 双网络服务器系统和使用主机服务器在P2P网络服务器配置中的方法
    • WO2005116855A1
    • 2005-12-08
    • PCT/KR2004/002220
    • 2004-09-02
    • TNARU CO., LTD.KIM, Han-Ju
    • KIM, Han-Ju
    • G06F17/00
    • H04L61/1541H04L29/12113H04L67/02
    • Disclosed is a dual web service system and method wherein a central server for buffering data of a web server substitutes for a web server that cannot provide the web service. The system includes a requesting client for transmitting a domain name of a web server client to a central server to access web site, receiving actual network access information from the central server, and accessing the web site using the information to receive web service; the web server client periodically backing up web site data of the web site on the central server, and providing the web service through web site; and the central server checking, in real time, whether the web server client can provide the web service, buffering a backup web site received from the web server client, and transmitting network access information of the backup web site if the web server client cannot provide web service.
    • 公开了一种双Web服务系统和方法,其中用于缓冲web服务器的数据的中央服务器代替不能提供web服务的web服务器。 该系统包括请求客户端,用于将中央服务器的域名发送到中央服务器以访问网站,从中央服务器接收实际的网络访问信息,以及使用该信息访问网站以接收网络服务; Web服务器客户端定期在中央服务器上备份网站的网站数据,并通过网站提供Web服务; 中央服务器实时检查Web服务器客户端是否可以提供Web服务,缓存从Web服务器客户端接收到的备份网站,以及如果Web服务器客户端无法提供备份网站的传输网络访问信息 网络服务。
    • 20. 发明申请
    • DEFROSTING APPARATUS FOR REFRIGERATORS AND METHOD FOR CONTROLLING THE SAME
    • 制冷装置的除油装置及其控制方法
    • WO1996016364A1
    • 1996-05-30
    • PCT/KR1995000149
    • 1995-11-17
    • SAMSUNG ELECTRONICS CO., LTD.YOO, Han, JuLEE, Jae, SeungSEO, Kuk-JeongLEE, Gi, HyeongPARK, Hae, JinKIM, Jong, Ki
    • SAMSUNG ELECTRONICS CO., LTD.
    • G05D23/19
    • F25D11/022F25B5/04F25B2600/23F25D17/062F25D17/065F25D21/006F25D21/06F25D29/00F25D2317/061F25D2317/0653F25D2317/0682F25D2400/04F25D2400/28F25D2400/30F25D2700/02F25D2700/12F25D2700/122F25D2700/14
    • A defrosting apparatus for a refrigerator and a method for controlling the defrosting apparatus, wherein the refrigerating compartment (3) is cooled irrespective of the internal temperature of the freezing compartment (2) when the internal temperature of the refrigerating compartment (3) is higher than a predetermined temperature, so that the refrigerating compartment (3) is maintained below the predetermined temperature. The defrosting operation is carried out in accordance with the drive times of the compressor and refrigerating compartment fan (44) when the internal temperature of the refrigerating compartment (3) is higher than the predetermined temperature even though the compressor and refrigerating compartment fan are continuously driven. Accordingly, it is possible to improve the cooling efficiency. For the rapid refrigerating operation, the point of time when the defrosting operation for the refrigerating compartment (3) begins is accurately determined by calculating a temperature drop gradient on the basis of a variation in the internal temperature of the refrigerating compartment (3). For the rapid freezing operation, the point of time when the defrosting operation for the freezing compartment begins is accurately determined by calculating a temperature drop gradient on the basis of a variation in the internal temperature of the freezing compartment. In either case, accordingly, it is possible to efficiently achieve the defrosting operation.
    • 一种用于冰箱的除霜装置和用于控制除霜装置的方法,其中当冷藏室(3)的内部温度高于冷藏室(3)时,与冷冻室(2)的内部温度无关地冷却冷藏室(3) 预定温度,使得冷藏室(3)保持在预定温度以下。 即使压缩机和冷藏室风扇被连续驱动,当冷藏室(3)的内部温度高于预定温度时,根据压缩机和冷藏室风扇(44)的驱动时间进行除霜操作 。 因此,可以提高冷却效率。 对于快速制冷操作,通过基于冷藏室(3)的内部温度的变化计算温度下降梯度来准确地确定开始冷藏室(3)的除霜操作的时间点。 对于快速冷冻操作,通过基于冷冻室的内部温度的变化计算温度下降梯度来准确地确定开始冷冻室的除霜操作的时间点。 因此,在这两种情况下,能够有效地进行除霜运转。