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    • 2. 发明专利
    • Tubeless heat exchanger
    • 无管热交换器
    • JP2005201471A
    • 2005-07-28
    • JP2004005344
    • 2004-01-13
    • T Rad Co Ltd株式会社ティラド
    • KAWABE TAKANORI
    • F28F3/08F28F1/28
    • F28F1/28
    • PROBLEM TO BE SOLVED: To provide tubeless heat exchangers causing neither cracking nor damage without applying load to the rising parts of fins.
      SOLUTION: The tubeless heat exchangers 11, 21, 31 are provided with cores 13 formed with a plurality of passages 16 by laminating the fins 12 formed with the rising parts 15 along the peripheral edge parts and having a plurality of through holes 14, and connecting members 22, 34, 45 for connecting the passages 16 of the cores 13 to each other. The end part of the core 13 is provided with a support plate 19. A connecting hole 20 is formed in the support plate 19, corresponding to the passage 16 of the core 13, and a bent part 21 is formed along the peripheral edge part of the connecting hole 20. The connecting members 22, 34, 45 are fixed to the bent parts 21 to connect the passages 16 to each other through the support plate 19.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供无内胎式热交换器,不会对散热片的上升部分施加负载而不产生开裂或损坏。 解决方案:无内胎式热交换器11,21,31设置有形成有多个通路16的芯部13,其通过沿着周缘部分层叠形成有上升部分15的翅片12并具有多个通孔14 以及用于将芯13的通道16彼此连接的连接构件22,34,45。 芯部13的端部设置有支撑板19.连接孔20形成在支撑板19中,对应于芯部13的通道16,并且弯曲部分21沿着芯部13的周边部分形成 连接构件22,34,45固定在弯曲部21上,通过支撑板19将通路16相互连接。(C)2005年,日本专利
    • 3. 发明专利
    • Exhaust heat recovery device
    • 排气热回收装置
    • JP2006284144A
    • 2006-10-19
    • JP2005107809
    • 2005-04-04
    • Denso Corp株式会社デンソー
    • YAMANAKA YASUTOSHIHAMADA SHINICHIINOUE SEIJIOBARA KIMIKAZU
    • F28D15/02
    • F02G5/04F01N5/02F01P9/02F01P2060/16F28D15/0233F28D15/0275F28D21/0003F28F1/126F28F1/28F28F1/32F28F2270/00Y02T10/16Y02T10/166
    • PROBLEM TO BE SOLVED: To provide an exhaust heat recovery device using a heat pipe for reliably transporting heat from an evaporation part to a condensation part while preventing the condensation of operating medium in a heat insulating part.
      SOLUTION: The exhaust heat recovery device comprises a heat switching function for restricting the amount of heat transport to the condensation part 110B as the amount of heat to the evaporation part 110A is increased, and the heat pipe 110 having the evaporation part 110A arranged in an exhaust pipe 11 for distributing exhaust gas from an internal combustion engine 10 and a condensation part 110B arranged in a cooling water flow path 30 for distributing cooling water to the internal combustion engine 10, whereby exhaust heat of exhaust gas is transported to the cooling water. In the heat insulating part 110C formed between the evaporation part 110A and the condensation part 110B, a wall portion 160 is provided for preventing heat transfer from external fluid.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种使用热管的排气热回收装置,用于将热量从蒸发部可靠地输送到冷凝部,同时防止工作介质在隔热部中的冷凝。 解决方案:排气热回收装置包括热切换功能,用于当蒸发部分110A的热量增加时限制向冷凝部分110B的热量传输,并且具有蒸发部分110A的热管110 布置在排气管11中,用于分配来自内燃机10的排气和布置在冷却水流路30中的用于将冷却水分配到内燃机10的冷凝部110B,由此排气的排气被输送到 冷却水。 在形成在蒸发部110A和冷凝部110B之间的绝热部110C中,设置有用于防止从外部流体传热的壁部160。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Heat exchanger
    • 热交换器
    • JP2013124808A
    • 2013-06-24
    • JP2011273439
    • 2011-12-14
    • Daikin Industries Ltdダイキン工業株式会社
    • KAMATA TOSHIMITSUFUJIWARA AKIHIROKOIZUMI MAKOTOHYODO TAKAYUKIFUJINO HIROKAZUKIDO TERUO
    • F28F1/30F28F1/32
    • F28F17/005F28D1/05358F28D1/05383F28F1/128F28F1/28
    • PROBLEM TO BE SOLVED: To bring a fin into contact with a heat transfer tube without problems while securing a water conveyance function of condensation.SOLUTION: A first fin part 51 and a second fin part 52 in fins 50a, 50b are arranged so that a plate-thickness direction intersects with a direction of air flow F and both parts are arranged to be mutually adjacent. Each of the first fin part 51 and the second fin part 52 includes heat transfer parts 51a, 52a, upper water conveyance parts 51b, 52b, and lower water conveyance parts 51c, 52c. The heat transfer parts 51a, 52a perform heat exchange with the air. The upper water conveyance parts 51b, 52b are upwardly projected from the heat transfer parts 51a, 52a, while the lower water conveyance parts 51c, 52c are downwardly projected. An amount of projection of the upper water conveyance part 51b of the first fin part 51 differs from that of projection of the upper water conveyance part 52b of the second fin part 52, but equals the amount of projection of the lower water conveyance part 52c. The amount of projection of the lower water conveyance part 51c of the first fin part 51 differs from that of projection of the lower water conveyance part 52c of the second fin part 52 but equals the amount of projection of the upper water conveyance part 52b.
    • 要解决的问题:在确保冷凝水输送功能的同时,使翅片与传热管接触而没有问题。 解决方案:翅片50a,50b中的第一翅片部分51和第二翅片部分52布置成使得板厚度方向与空气流F的方向相交,两个部分相互相邻。 第一翅片部51和第二翼部52分别包括传热部51a,52a,上部输水部51b,52b和下部水输送部51c,52c。 传热部51a,52a与空气进行热交换。 上部输水部51b,52b从传热部51a,52a向上方突出,下部水输送部51c,52c向下方突出。 第一翅片部51的上部输水部51b的突出量与第二翼部52的上部输水部52b的突出部的突出量不同,也等于下部水输送部52c的突出量。 第一散热片51的下部水输送部51c的突出量与第二散热片52的下部输水部52c的突起的突出量不同,也等于上部水输送部52b的突出量。 版权所有(C)2013,JPO&INPIT