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    • 3. 发明申请
    • Window type air conditioner
    • 窗式空调
    • US20070051121A1
    • 2007-03-08
    • US10576880
    • 2004-09-16
    • Yoon-Seob EomJeong-Hwan KooNae-Hyun ParkDong-Joo HanByeong-Jo RyooKyung-soo Lee
    • Yoon-Seob EomJeong-Hwan KooNae-Hyun ParkDong-Joo HanByeong-Jo RyooKyung-soo Lee
    • F25D23/12F25D17/06
    • F24F1/027F24F2013/205
    • A window type air conditioner comprises: a case (10) of which one side is positioned at an indoor side and another side is positioned at an outdoor side; an indoor heat exchanger (22) mounted inside the case positioned at the indoor side thus to be heat-exchanged with the indoor air; an indoor centrifugal fan (24) opposite to the indoor heat exchanger for generating a blowing force so that the indoor air can pass through the indoor heat exchanger; an outdoor heat exchanger (32) mounted inside the case positioned at the outdoor side thus to be heat-exchanged with the outdoor air; and an outdoor centrifugal fan (34) opposite to the outdoor heat exchanger for blowing the outdoor air by a centrifugal force. According to this, an air volume lowering due to a flow channel resistance is prevented at the time of sucking and discharging the outdoor air, and the entire size of the air conditioner is reduced.
    • 一种窗式空调机,其特征在于,包括:一侧位于室内侧,另一侧位于室外侧的箱体(10) 室内热交换器(22),安装在位于室内的壳体内部,与室内空气进行热交换; 与室内热交换器相对的室内离心风扇(24),用于产生吹风力,室内空气能够通过室内热交换器; 室外热交换器(32),其安装在位于室外侧的壳体内部,从而与室外空气进行热交换; 以及与室外热交换器相对的室外离心风扇(34),用于通过离心力吹送室外空气。 据此,在吸入和排出室外空气时防止由于流路阻力而导致的风量降低,并且空调的整体尺寸减小。
    • 4. 发明申请
    • Heat exchanger for dryer and condensing type dryer using the same
    • 用于干燥器和冷凝式干燥器的热交换器使用它
    • US20060288602A1
    • 2006-12-28
    • US11444437
    • 2006-06-01
    • Hyun-Uk LeeJung-Geun OhYoon-Seob Eom
    • Hyun-Uk LeeJung-Geun OhYoon-Seob Eom
    • F26B19/00
    • D06F58/24F28D1/0391F28F1/022F28F1/40
    • A heat exchanger for a dryer includes a plurality of tube units configured to conduct warm humid air and a plurality of fin units configured to conduct a flow of ambient air. The tube units and fin units are alternately stacked to form a core. The fin units includes a plurality of air channels formed by repeatedly bending a flat metal plate in a zigzag fashion and a plurality of fins formed on surfaces of the air channels. The tube units have a duct form with both ends opened. The tube units may be formed by extrusion. A plurality of channel walls can be formed inside the tube units. A plurality of grooves or fins can also be formed inside the tube units. A plurality of channel walls can also be vertically formed inside the tube units. In this case, the grooves or fins can be formed on the channel walls. The grooves or fins can also be formed in a spiral form on the inner surfaces of the tube units.
    • 用于干燥器的热交换器包括多个管单元,其构造成传导温暖的潮湿空气,以及多个鳍单元,其构造成进行环境空气流。 管单元和翅片单元交替堆叠形成芯。 翅片单元包括通过以锯齿形方式重复弯曲平板金属板而形成的多个空气通道和形成在空气通道表面上的多个翅片。 管单元具有两端打开的管道形式。 管单元可以通过挤出形成。 可以在管单元内部形成多个通道壁。 也可以在管单元内形成多个槽或翅片。 多个通道壁也可以垂直地形成在管单元内。 在这种情况下,槽或翅片可以形成在通道壁上。 槽或翅片也可以以螺旋形式形成在管单元的内表面上。
    • 5. 发明申请
    • Heat exchanger for dryer and condensing type dryer having the same
    • 具有干燥机和冷凝式干燥机的热交换器
    • US20060266505A1
    • 2006-11-30
    • US11440092
    • 2006-05-25
    • Hyun-Uk LeeJung-Geun OhYoon-Seob Eom
    • Hyun-Uk LeeJung-Geun OhYoon-Seob Eom
    • F28F3/00B23K31/02
    • D06F58/24B23K1/0012B23K2101/14F28D7/1684F28F1/04F28F3/025
    • A heat exchanger for a dryer includes a plurality of tube units in which wet air is circulated, and a plurality of fin units alternately laminated with the plurality of tube units, in which external air flows. The tube and fin units are bonded to one another at contact portions by a cladding material interposed therebetween. The cladding material is formed of a material having a melting point lower than the melting points of the tube and fin units. The cladding material can be a metallic material including aluminum or aluminum alloy. A very thin layer of cladding material helps to increase the heat transfer efficiency of the device. Likewise, using a cladding material with good thermal transfer characteristics helps to improve the heat transfer efficiency of the device. Bonding the tube units to the fin units using such a cladding material can reduce the fabrication cost and fabrication time compared to heat exchange units where the bonding is done with an epoxy.
    • 用于干燥器的热交换器包括多个其中湿空气循环的管单元,以及与外部空气流动的多个管单元交替层叠的多个翅片单元。 管和翅片单元通过介于其间的包层材料在接触部分处彼此接合。 包层材料由熔点低于管和翅片单元的熔点的材料形成。 包层材料可以是包括铝或铝合金的金属材料。 非常薄的包层材料有助于提高器件的传热效率。 同样,使用具有良好热传递特性的覆层材料有助于提高器件的传热效率。 与使用环氧树脂进行接合的热交换单元相比,使用这种包层材料将管单元接合到翅片单元可以降低制造成本和制造时间。