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    • 2. 发明申请
    • MULTI-EVAPORATION SYSTEM
    • 多蒸发系统
    • US20110113803A1
    • 2011-05-19
    • US13001117
    • 2010-05-14
    • Yong Nam AhnTae Young ParkEun Gi MinDeok Soo Kim
    • Yong Nam AhnTae Young ParkEun Gi MinDeok Soo Kim
    • F25B41/04F25B1/06F25B39/02
    • F25B5/02B60H1/323F25B41/00F25B2341/0661F28D1/05391F28D2021/0085
    • Provided is a multi-evaporation system which carries out a multi-evaporation process in an air-conditioning cycle of a vehicle air conditioning system, thereby enhancing system efficiency. The multi-evaporation system includes a compressor 10 which sucks and compresses refrigerant; a condenser 20 which condenses the refrigerant compressed in the compressor 10; an expanding means 30 which receives the refrigerant condensed in the condenser 20 through an inlet port 31, branches the refrigerant into at lest two or more, discharges the refrigerant through at least two or more discharging part 32a to 32n, and throttles the refrigerant before or after the refrigerant is branched; and an evaporator 40 which comprises at least two or more evaporating parts 41 to 4N so as to receive and evaporate the refrigerant discharged from the expanding means 30 and then introduce the evaporated refrigerant into the compressor 10.
    • 提供了一种在车辆空调系统的空调循环中进行多蒸发处理的多蒸发系统,从而提高系统效率。 多蒸发系统包括吸入和压缩制冷剂的压缩机10; 将在压缩机10中压缩的制冷剂冷凝的冷凝器20; 接收通过入口31冷凝在冷凝器20中的制冷剂的膨胀装置30将制冷剂分流至少两个或更多个,通过至少两个或更多个排放部分32a至32n排出制冷剂,并将制冷剂在 制冷剂分支后; 以及蒸发器40,其包括至少两个或更多个蒸发部分41至4N,以便接收和蒸发从膨胀装置30排出的制冷剂,然后将蒸发的制冷剂引入压缩机10。
    • 4. 发明申请
    • FIELD COIL ASSEMBLY OF ELECTROMAGNETIC CLUTCH FOR COMPRESSOR AND METHOD FOR MANUFACTURING THE SAME
    • 用于压缩机的电磁离合器的现场线圈组件及其制造方法
    • US20090278640A1
    • 2009-11-12
    • US12435837
    • 2009-05-05
    • Sung-Taeg OHTae-Young PARK
    • Sung-Taeg OHTae-Young PARK
    • H01F7/128
    • H01F7/128F16D27/14H01F2007/062
    • The present invention relates to a field coil assembly of an electromagnetic clutch for a compressor and a method for manufacturing the same. A field coil assembly 20 of the present invention includes a coil installed to a core 22 and made by winding a wire W to generate a magnetic flux, and a connector 30 coupled thereto. At this time, the connector 30 is provided at one side of the core 22 and has a terminal 50 therein, thereby being electrically connected to one end of the wire W. In addition, a protective coating portion 80 is formed at a connecting portion between the terminal 50 and the end of the wire W to thereby prevent the connecting portion of the wire W and the terminal 50 from being exposed to the outside. According to the present invention, the connecting portion between the terminal 50 and the coil is not exposed to moisture or air, thereby preventing electric short circuit from occurring by galvanic corrosion between the terminal 50 and the coil. As a result, there is an advantage in that the operation reliability and durability of the field coil assembly are improved.
    • 本发明涉及一种用于压缩机的电磁离合器的励磁线圈组件及其制造方法。 本发明的励磁线圈组件20包括安装在芯22上并通过缠绕线W以产生磁通而形成的线圈,以及连接到其上的连接器30。 此时,连接器30设置在芯部22的一侧,并且在其中具有端子50,从而与导线W的一端电连接。此外,保护涂层部分80形成在 端子50和电线W的端部,从而防止电线W和端子50的连接部分暴露于外部。 根据本发明,端子50和线圈之间的连接部分不暴露于湿气或空气,从而防止端子50和线圈之间的电偶腐蚀发生电短路。 结果,具有提高励磁线圈组件的操作可靠性和耐久性的优点。
    • 5. 发明授权
    • Multistage gas and liquid phase separation type condenser
    • 多级气液分离式冷凝器
    • US5988267A
    • 1999-11-23
    • US097482
    • 1998-06-15
    • Tae Young ParkKwang Heon Oh
    • Tae Young ParkKwang Heon Oh
    • F28F9/02F25B39/04F25B40/02F28D1/053F25B1/00
    • F28D1/05375F25B39/04F25B40/02F25B2339/0441F25B2339/0444F28D2021/0084
    • A multistage gaseous and liquid phase separation type condenser has a pair of headers disposed in parallel with each other, and a plurality of flat tubes each connected to the headers at opposite ends thereof and corrugated fins interposed between adjacent flat tubes. Each header is divided by baffles into four chambers. The second header has a receiver and chambers of the second header have communication passageways for placing the chambers of the second header in flow communication with the receiver. The first header has an inlet pipe connected to a middle chamber thereof so as to form an inlet path and an outlet pipe connected to a lower chamber thereof. While the refrigerant flows through the paths defined by a plurality of flat tubes, a first separation of gaseous and liquid phases of the refrigerant occurs within the second header so that the separated gaseous refrigerant is recondensed flowing through an upper path above the inlet path and introduced into the receiver via the communication passageway, whereas the separated liquid refrigerant is introduced into the receiver. A second separation of gaseous and liquid phases of the refrigerant occurs within the receiver in connection with a certain amount of the liquid refrigerant stored in the receiver. The liquid refrigerant in the receiver is communicated with the lower path via a lower communication passageway formed in the lower chamber of the second header.
    • 多级气相和液相分离型冷凝器具有彼此平行设置的一对集管,以及分别连接到其两端的集管和多个相互平坦的管之间的波纹状翅片的扁平管。 每个头部被挡板分成四个腔室。 第二标头具有接收器,并且第二标头的室具有用于放置第二标题室与接收器流动连通的通信通道。 第一集管具有连接到其中间室的入口管,以形成连接到其下室的入口路径和出口管。 当制冷剂流过由多个扁平管限定的路径时,在第二集管内发生制冷剂的气相和液相的第一分离,使得分离的气态制冷剂再凝结流过入口路径上方的上部路径并引入 通过通信通道进入接收器,而分离的液体制冷剂被引入接收器。 与存储在接收器中的一定量的液体制冷剂相关地在接收器内发生制冷剂的气相和液相的第二分离。 接收器中的液体制冷剂通过形成在第二集管的下室中的下连通通道与下通道连通。