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    • 1. 发明公开
    • STRUCTURE AND METHOD FOR ASSEMBLING HEAT EXCHANGER COMBINED WITH TUBE OF MULTI-ROW
    • 用于组装多管道热交换器的结构和方法
    • KR20070094260A
    • 2007-09-20
    • KR20060024700
    • 2006-03-17
    • DOOWON CLIMATE CONTROL CO LTD
    • LEE HONG YEOLPARK JEONG SANGSHIN MIN WOO
    • F28F1/00F28D1/00F28F9/00
    • F28F9/165F28D1/05341F28F1/022F28F9/013
    • A structure and a method for assembling a heat exchanger combined with tubes of a plurality of rows are provided to improve the assembling efficiency and the productivity by inserting integrated caps into both ends of header pipes after assembling tubes with the header pipes. A plurality of tubes(22,24) are combined with header pipes(12,14) while forming a plurality of rows in a width direction of the header pipes to form refrigerant moving paths in a plurality of rows. The header pipes are formed of a plurality of independent pipes combined with the tubes of each row. Sides of the pipes are closely adhered to each other so that both ends of the pipes of a length direction are fixed by integrated caps(16,18). Refrigerant communication holes(12b) are formed at the sides to convert a moving direction of the refrigerant. Fixing members are inserted into both ends of the sides of the pipes to assist fixing of the integrated caps.
    • 提供一种组合与多排的管组合的热交换器的结构和方法,以通过在将集管与组管组合管之后将集成的盖插入总管的两端来提高组装效率和生产率。 多个管(22,24)与总管(12,14)组合,同时在集管的宽度方向上形成多行,以形成多行的制冷剂移动路径。 集管由与每行的管组合的多个独立管形成。 管的侧面彼此紧密地粘合,使得长度方向的管的两端由集成的盖(16,18)固定。 制冷剂连通孔(12b)形成在侧面以转换制冷剂的移动方向。 固定构件插入到管道的两侧的两端以帮助固定一体化的盖。
    • 2. 发明授权
    • WATER-REFRIGERANT HEAT EXCHANGER
    • 水冷换热器
    • KR100726370B1
    • 2007-06-01
    • KR20060064886
    • 2006-07-11
    • DOOWON CLIMATE CONTROL CO LTD
    • SEOK KYONG SOO
    • F28D7/06F28D7/00F28F1/02F28F9/00
    • F28D7/04F28D2021/0068F28D2021/0091F28F1/04
    • A water refrigerant type heat exchanger is provided to increase heat exchange efficiency by making cooling water of a low temperature and gas refrigerant of a high temperature flow in the opposite directions, and simplify installation of the heat exchanger in a small space. A water refrigerant type heat exchanger includes a tube element(110) formed of a plurality of tubes. The tube element has a first flat tube(112) for passing cooling water of low temperature and having both horizontal ends, and two second tubes(114) for passing gas refrigerant of high temperature and having both ends(114a,114b) apart from each other in the opposite direction from the first tubes. The second tubes are stacked at both sides of the first tube, so that middles parts of the both ends of the second tube are in close contact with top and bottom surfaces of the first tube. A plurality of headers are first and second cooling water headers(122,124) and U-shaped third and fourth refrigerant headers(126,128). The first and second cooling water headers are connected to both ends of the first tube in the vertical direction, wherein one end of each of the headers is blocked by a cap(126a) and the other end is connected to a pipe for a cooling water circuit. The third and fourth refrigerant headers connected to the both ends of the second tubes in the vertical direction, wherein one end of each of the headers is blocked by a cap(128a) and the other end is connected to a pipe of a refrigerant circuit.
    • 提供一种水制冷剂型热交换器,其通过使低温的冷却水和高温的气体制冷剂在相反的方向上流动来提高热交换效率,并且简化了在较小的空间中的热交换器的安装。 水制冷剂型热交换器包括由多个管形成的管元件(110)。 管元件具有用于使低温冷却水具有两个水平端的第一扁平管(112)和用于使高温气体制冷剂通过并具有两端(114a,114b)的两个第二管(114) 另一个在与第一管相反的方向上。 第二管堆叠在第一管的两侧,使得第二管的两端的中间部分与第一管的顶表面和底表面紧密接触。 多个集管是第一和第二冷却水集管(122,124)和U形第三和第四制冷剂集管(126,128)。 第一和第二冷却水集管沿垂直方向连接到第一管的两端,其中每个集管的一端被盖(126a)阻挡,另一端连接到用于冷却水的管 电路。 第三和第四制冷剂集管沿垂直方向连接到第二管的两端,其中每个集管的一端被盖(128a)阻挡,另一端连接到制冷剂回路的管道。
    • 4. 发明公开
    • Method for pre-assembling baffle of heat exchanger
    • 预热装置的方法
    • KR20100069862A
    • 2010-06-25
    • KR20080128404
    • 2008-12-17
    • DOOWON CLIMATE CONTROL CO LTD
    • LEE HONG YEOLPARK JEONG SANG
    • F28F9/02F28F9/00
    • PURPOSE: A method of pre-assembling a baffle of a heat exchanger is provided to simplifying a process a baffle and a header pipe and to reduce manufacturing costs by simplifying a pre-assembling process. CONSTITUTION: A method of pre-assembling a baffle of a heat exchanger comprises the following steps. A baffle(110) which is arranged in the inside of a header pipe(120) in order to divide a flow passage of refrigerant is pre-assembled before brazing. A recess(126) is formed on the inside wall of the part in which a baffle hole(122) which the baffle is inserted is formed in the header pipe. The baffle is temporary assembled to the header pipe while forming a protruded part(112) which is obstinately inserted in the recess in both sides of the baffle. A sloped face is formed on the both sides of the protruded part and the recess. An assembling check face is formed on both sides of the baffle. The assembling check face corresponds with the both edge shape of the baffle hole of the header pipe.
    • 目的:提供一种预先组装热交换器的挡板的方法,以简化挡板和集管的过程,并通过简化预组装过程来降低制造成本。 构成:预先组装热交换器的挡板的方法包括以下步骤。 布置在总管(120)内部以便分配制冷剂的流动通道的挡板(110)在钎焊之前被预先组装。 在所述部件的内壁上形成有凹部(126),在所述部件的内壁上形成有所述挡板插入的挡板(122)的集管。 挡板临时组装到集管上,同时形成固定地插入挡板两侧的凹部中的突出部分(112)。 在凸部和凹部的两侧形成倾斜面。 在挡板的两侧形成组装检查面。 组装检查面对应于集管的挡板孔的两个边缘形状。
    • 5. 发明公开
    • Condenser of cooling air and water
    • 冷却空气和水的冷凝器
    • KR20100041351A
    • 2010-04-22
    • KR20080100496
    • 2008-10-14
    • DOOWON CLIMATE CONTROL CO LTD
    • SEOK KYUNG SOO
    • F25B39/04
    • PURPOSE: An air cooling and water cooling combined style condenser is provided to reduce manufacturing costs by integrating heat exchangers. CONSTITUTION: An air cooling and water cooling combined style condenser comprises a heat exchange core part. The heat exchange core part is composed of a plurality of tubes and heat radiation fin(106) installed between a first header(101) and a second header(102) which is installed to be isolated each other. Barrier wall parts(101a,102a) are formed inside the first header and the second header. The barrier wall part divides a first path and a second path in which refrigerant or cooling water flows. The tube is divided into a first tube(103) and a second tube(104).
    • 目的:提供空气冷却和水冷组合式冷凝器,通过集成热交换器来降低制造成本。 构成:空气冷却和水冷组合式冷凝器包括热交换芯部分。 热交换芯部由安装在彼此隔离的第一集管(101)和第二集管(102)之间的多个管和散热片(106)组成。 阻挡壁部分(101a,102a)形成在第一集管和第二集管内部。 阻挡壁部分分开制冷剂或冷却水流动的第一路径和第二路径。 管分成第一管(103)和第二管(104)。
    • 6. 发明公开
    • HEADER OF HIGH PRESSURE HEAT EXCHANGER
    • 高压热交换器头
    • KR20070111756A
    • 2007-11-22
    • KR20060044945
    • 2006-05-19
    • DOOWON CLIMATE CONTROL CO LTD
    • LEE HONG YEOLPARK JEONG SANG
    • F28F9/00F28F9/02F28F9/18
    • F28F9/18F28F9/0214F28F2225/08F28F2275/04
    • A header for a high pressure heat exchanger is provided to improve the machining property of a thick header by pressing, cutting or in combination thereof, simplify the structure of the header, and increasing pressure-resistance thereof. A header for a high pressure heat exchanger includes a first header pipe(42) formed with a refrigerant flowing space(S1) inside and a first plane joining surface(42a) at a side, and a second header pipe(44) formed with a refrigerant channel(S2) inside and a second plane joining surface(44a) at a side to be brazed with the first plane joining surface in close contact. A tube insertion hole(42b,44b) is formed at a corner of each of the first and second header pipes so that tubes are inserted thereinto. The tube fitting holes are connected to each other by the brazing between the first and second header pipes.
    • 提供了一种用于高压热交换器的集管,以通过压制,切割或组合来提高厚集管的加工性能,简化集管的结构,并提高其耐压性。 用于高压热交换器的集管包括:形成有内部的制冷剂流动空间(S1)的第一集管(42)和一侧的第一平面接合表面(42a)和形成有第一集管 制冷剂通道(S2)和与第一平面接合表面钎焊的一侧紧密接触的第二平面接合表面(44a)。 管插入孔(42b,44b)形成在每个第一和第二总管的角部,从而将管插入其中。 管配合孔通过第一和第二总管之间的钎焊彼此连接。
    • 9. 发明公开
    • Car heating system using ptc heater and method thereof
    • 使用PTC加热器的加热系统及其方法
    • KR20100037759A
    • 2010-04-12
    • KR20080097013
    • 2008-10-02
    • DOOWON CLIMATE CONTROL CO LTD
    • LEE WON SUKNAM KANG WOOKIM CHUL MINCHOI YI CHEOL
    • B60H1/00B60H1/08B60H1/32
    • B60H1/2218B60H1/00428Y02T10/88
    • PURPOSE: A heating device for a vehicle and method using a PTC heater is provided to reduce the maximum current used in a positive temperature co-efficient heater by minimizing an inrush current. CONSTITUTION: A heating device for a vehicle using a PTC heater comprises an input unit(110), a controller(100), a power supply unit(120), and a temperature sensing unit. A preset temperature is inputted in the input unit by a user. The controller outputs a PWM(Pulse Width Modulation) control signal. According to the PWM control signal from the controller, the power supply unit turns the power on or off. The temperature sensing unit measures the temperature of the air discharged from the positive temperature co-efficient heater. The controller outputs the PWM control signal for controlling the output of the positive temperature co-efficient heater.
    • 目的:提供一种用于车辆的加热装置和使用PTC加热器的方法,以通过最小化浪涌电流来减少在正温度系数加热器中使用的最大电流。 构成:使用PTC加热器的车辆加热装置包括输入单元(110),控制器(100),电源单元(120)和温度感测单元。 用户在输入单元中输入预设温度。 控制器输出PWM(脉宽调制)控制信号。 根据控制器的PWM控制信号,电源单元打开或关闭电源。 温度检测单元测量从正温度加热器排出的空气的温度。 控制器输出用于控制正温度系数加热器的输出的PWM控制信号。
    • 10. 发明授权
    • OIL COOLER
    • 油冷却器
    • KR100768663B1
    • 2007-10-18
    • KR20060044946
    • 2006-05-19
    • DOOWON CLIMATE CONTROL CO LTD
    • KIM YUN SUNG
    • F01P11/08F28F9/02
    • F01P11/08F01M5/002F01M2005/004F01P2050/22F01P2060/04F28F9/0234
    • An oil cooler is provided to reduce the number of manufacturing processes and the manufacturing cost without employing an additional heat transfer fin in the oil cooler. An oil cooler includes a body(50), an oil intake pipe, and an oil discharge pipe. The body includes an inner pipe(52) and an outer pipe(54). An oil flows between the inner pipe and the outer pipe. The oil introduction pipe and the oil discharge pipe are joined with both sides of the body to introduce and discharge the oil between the inner pipe and the outer pipe. The inner pipe is a flat pipe. The outer pipe is a bellows pipe. The outer pipe makes contact with the inner pipe, and the bellow pipe is formed between the inner and outer pipes.
    • 提供油冷却器以减少制造过程的数量和制造成本,而不在油冷却器中使用额外的传热翅片。 油冷却器包括主体(50),进油管和排油管。 主体包括内管(52)和外管(54)。 油在内管和外管之间流过。 油引入管和排油管与主体的两侧接合,以在内管和外管之间引入和排出油。 内管是扁平管。 外管是波纹管。 外管与内管接触,内管和外管之间形成波纹管。