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    • 5. 发明申请
    • Heat exchanger
    • 热交换器
    • US20050269066A1
    • 2005-12-08
    • US11203153
    • 2005-08-15
    • Hirofumi HoriuchiRyoichi HoshinoNoboru OgasawaraTakashi TamuraTakashi TeradaFutoshi Watanabe
    • Hirofumi HoriuchiRyoichi HoshinoNoboru OgasawaraTakashi TamuraTakashi TeradaFutoshi Watanabe
    • F28F3/08F25B39/02F28D1/03F28D9/00F28F1/02F28F9/22F28D1/02
    • F28D1/035F28D1/0333F28D1/0375F28F1/022Y02P80/156
    • The invention relates to heat exchangers for use in motor vehicles or for industrial use, for example, to heat exchangers for use as evaporators, condensers, oil coolers, intercoolers, heater cores, etc. The invention provides a heat exchanger comprising pairs of plates with each plate of the pair having formed on one side thereof a peripheral ridge, central ridge and channel dividing U-shaped ridges which are formed by forging or cutting. Each pair of plates are fitted together and joined, with channel recesses thereof opposed to each other to form a flat tube and a plurality of U-shaped divided fluid passageways in a U-shaped fluid channel inside the tube. Each pair of adjacent flat tubes are joined by spectacle-shaped header members interposed between the upper ends of the tubes and each comprising a front and a rear fluid passing tube portion and a connecting portion therebetween to provide a front and a rear header in communication with the upper ends of the flat tubes. The flat tubes have a reduced front-to-rear width, diminished wall thickness (thinner layers) and increased heat transfer efficiency to provide a heat exchanger which achieves a higher heat transfer efficiency and greatly improved heat exchange performance.
    • 本发明涉及用于机动车辆或工业用途的热交换器,例如用作蒸发器,冷凝器,油冷却器,中间冷却器,加热器芯等的热交换器。本发明提供了一种热交换器,其包括成对的具有 该对中的每个板的一侧形成有通过锻造或切割形成的外周脊,中心脊和通道分割的U形脊。 每对板被安装在一起并连接,其通道凹槽彼此相对以在管内的U形流体通道中形成扁平管和多个U形分开的流体通道。 每对相邻的扁平管通过插入在管的上端之间的眼镜状的头部构件连接,并且每个包括前后流体通过管部分和它们之间的连接部分,以提供与前部和后部头部连通的前部和后部头部 扁平管的上端。 扁平管具有减小的前后宽度,减小的壁厚(较薄层)和增加的传热效率,以提供实现更高传热效率和大大改善的热交换性能的热交换器。
    • 9. 发明授权
    • Intermediate heat exchanger
    • 中间热交换器
    • US08789389B2
    • 2014-07-29
    • US13390749
    • 2010-10-12
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • Noboru OgasawaraTatsuya HanafusaMakoto Numasawa
    • F25B41/00
    • F25B40/00F25B43/006F25B2400/16F25B2500/18
    • An intermediate heat exchanger 10 includes a double tube 11 and a liquid reservoir 14. The double tube 11 has an outer tube 15 and an inner tube 16 disposed inside the outer tube 15 with a clearance formed therebetween. The clearance between the outer tube 15 and the inner tube serves as a high-temperature-side refrigerant passage 12, through which refrigerant of high pressure flowing out of a condenser flows, and the interior of the inner tube 16 serves as a low-temperature-side refrigerant passage 13, through which refrigerant of low pressure flowing out of an evaporator flows. The liquid reservoir 14, which communicates with the high-temperature-side refrigerant passage 12 of the double tube 11, stores the refrigerant of high pressure flowing out of the condenser before the pressure of the refrigerant is reduced by a pressure reducer, and separate liquid-phase refrigerant and gas-phase refrigerant. The outer tube 15 of the double tube 11 has a refrigerant inlet 17 and a refrigerant outlet 18 communicating with the high-temperature-side refrigerant passage 12. At an intermediate position between the refrigerant inlet 17 and the refrigerant outlet 18, refrigerant flows from the high-temperature-side refrigerant passage 12 of the double tube 11 into the liquid reservoir 14, and returns from the liquid reservoir 14 to the high-temperature-side refrigerant passage 12.
    • 中间热交换器10包括双管11和液体储存器14.双管11具有设置在外管15内部的外管15和内管16,其间形成有间隙。 外管15和内管之间的间隙用作高温侧制冷剂通道12,通过该高压侧制冷剂通道12流出冷凝器的高压制冷剂流过,并且内管16的内部用作低温 从制冷剂通路13流出的低压制冷剂流过。 与双管11的高温侧制冷剂通路12连通的储液槽14在通过减压器减压制冷剂的压力之前,储存从冷凝器流出的高压制冷剂,分离液 相制冷剂和气相制冷剂。 双管11的外管15具有与高温侧制冷剂通路12连通的制冷剂入口17和制冷剂出口18.在制冷剂入口17与制冷剂出口18之间的中间位置,制冷剂从 双管11的高温侧制冷剂通路12进入储液器14,从储液器14返回到高温侧制冷剂通路12。