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    • 3. 发明申请
    • Heat exchanger
    • 热交换器
    • US20070187081A1
    • 2007-08-16
    • US11703868
    • 2007-02-08
    • Haruhiko WatanabeSumio SusaMasaki Harada
    • Haruhiko WatanabeSumio SusaMasaki Harada
    • F28F9/02
    • F28D1/0316F02B29/0456F28D1/0391F28D2021/0082F28F1/04F28F1/126F28F3/025F28F9/0263F28F9/18Y02T10/146
    • A heat exchanger comprising: a plurality of tubes inside of which a fluid passes; fins which are joined to the outer surfaces of the tubes and promote heat exchange between a fluid passing around the tubes and the fluid passing through inside the tube; and tank sections comprising core plates having insertion holes formed for the tubes to be inserted therein and tank bodies having the core plates joined thereto for distributing or collecting the fluid to be passed through the tubes; the tube comprises a first and a second tube plates joined in opposition to each other and inner fins disposed between the first and second tube plates, and that the portion of the tube to be inserted into the insertion hole of the core plate has generally the same outer shape as the periphery of the insertion hole, and that the portions of the first and second tube plates not to be inserted into the insertion hole of the core plate have overlapping sections which overlap each other in laminating direction of the tubes.
    • 一种热交换器,包括:流体通过其中的多个管; 翅片,其连接到管的外表面并且促进通过管周围的流体和通过管内的流体之间的热交换; 以及罐部分,其包括具有形成用于插入管的插入孔的芯板和与其连接的芯板的罐体,用于分配或收集要通过管的流体; 管包括彼此相对连接的第一和第二管板以及设置在第一和第二管板之间的内部翅片,并且插入到芯板的插入孔中的管的部分具有大致相同的 外形作为插入孔的周边,并且不插入到芯板的插入孔中的第一和第二管板的部分具有在管的层叠方向上彼此重叠的重叠部分。
    • 4. 发明授权
    • Heat exchanger
    • 热交换器
    • US07210520B2
    • 2007-05-01
    • US11060603
    • 2005-02-17
    • Yasutoshi YamanakaHaruhiko WatanabeNaoki Ueda
    • Yasutoshi YamanakaHaruhiko WatanabeNaoki Ueda
    • F28F9/02
    • F28F9/0224F28D2021/0082F28F9/02F28F9/0229F28F2009/029F28F2225/08
    • A heat exchanger according to the present invention has a plurality of tubes, header tanks and a support. Fluid flows through the plurality of tubes. The header tanks have a core plate and a tank body, and are disposed at longitudinal end portions of the plurality of tubes in such a manner to be communicated with internal spaces of the plurality of tubes. The core plate has approximately arc-shaped cross-section of which both side fringes are fixed onto the tank body and of which a middle portion fixes the longitudinal end portions of the plurality of tubes therein and bulges with respect to the both side fringes toward the plurality of tubes. The tank body and the core plate form an internal space of each of the header tanks. The support retains an interval between the both side fringes.
    • 根据本发明的热交换器具有多个管,集水箱和支撑件。 流体流过多个管。 集水箱具有芯板和罐体,并且以与多个管的内部空间连通的方式设置在多个管的纵向端部。 芯板具有大致弧形的横截面,其两侧边缘固定在罐体上,其中间部分将多个管的纵向端部固定在其中,相对于两侧边缘朝向 多个管。 罐体和芯板形成每个集水箱的内部空间。 支撑件保持两边条纹之间的间隔。
    • 5. 发明申请
    • Intercooler
    • 中冷器
    • US20060042607A1
    • 2006-03-02
    • US11211031
    • 2005-08-24
    • Haruhiko WatanabeYasutoshi Yamanaka
    • Haruhiko WatanabeYasutoshi Yamanaka
    • F02B29/04F02B33/00
    • F28F3/025F02B29/045F28D1/05383F28D2021/0082F28F9/0246Y02T10/146
    • An intercooler comprises: tubes 10 in which the suction air of an internal combustion engine flows; and inner fins 11 for dividing passages in the tubes into a plurality of minute passages 100, wherein the intercooler is characterized in that when a cross sectional area in one tube 10 is S, a total passage area of the minute passages 100 in one tube 10 is Swa and an equivalent circle diameter of one minute passage 100 is de (unit: mm), the most appropriate specification of the core of the intercooler is found when de/(S/Swa) is used as a parameter. For example, in the case of an intercooler in which the inner fins 11 are straight fins and the supercharging air pressure is not less than 200 kPa, when de/(S/Swa) is made to be 0.2 to 7.5, it is possible to provide an intercooler with high performance.
    • 中间冷却器包括:管10,其中内燃机的吸入空气流过; 以及用于将管中的通道分成多个微通道100的内翅片11,其中中间冷却器的特征在于,当一个管10中的横截面积为S时,一个管10中的微通道100的总通过面积 是Swa,一分钟通道100的等效圆直径为de(单位:mm),当使用de /(S / Swa)作为参数时,发现中间冷却器的核心的最合适的规格。 例如,在内翅片11为直翅片并且增压空气压力不小于200kPa的中间冷却器的情况下,当de /(S / Swa)为0.2〜7.5时, 提供高性能的中冷器。