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    • 7. 发明专利
    • Coldness storage device
    • 商店存储设备
    • JP2008309452A
    • 2008-12-25
    • JP2007160355
    • 2007-06-18
    • Aisin Seiki Co Ltdアイシン精機株式会社
    • GOTO TETSUYA
    • F25B9/00F28D20/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a coldness storage device capable of preventing a flow of a coldness storing material, reducing a dead space in the coldness storage device, and improving refrigerating performance.
      SOLUTION: In this coldness storage device 1, an internal space where a working medium is circulated through passages 4, 13 is filled with granular coldness storage materials 9a, 9b. An internal space is incorporated with distributors 6, 10 including a plurality of branch passages 5, 12 for distributing the working medium, and retainers 8a, 8c which are disposed between the distributors 6, 10 and coldness storage materials 9a, 9b to retain the coldness storage materials 9a, 9b and pass the working medium. The distributors 6, 10 are incorporated with a plurality of small coiled springs 7, 11 which energize the retainers 8a, 8c toward the coldness storage materials 9a, 9b, and the small coiled springs 7, 11 are housed at least in part of the plurality of branch passages 5, 12 in the distributors 6, 10, and dispersed and disposed on a surface orthogonal to the circulating direction of the working medium and the axial direction of the coldness storage device 1.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种能够防止冷藏存储材料流动的冷藏存储装置,减少冷藏储存装置中的死区,提高制冷性能。 解决方案:在这种冷藏存储装置1中,工作介质通过通道4,13循环的内部空间填充有颗粒状冷藏储存材料9a,9b。 内部空间与分配器6,10相结合,分配器6,10包括用于分配工作介质的多个分支通道5,12,以及设置在分配器6,10和冷藏储存材料9a,9b之间的保持器8a,8c,以保持冷 存储材料9a,9b并通过工作介质。 分配器6,10结合有多个小螺旋弹簧7,11,其将保持器8a,8c朝向冷藏存储材料9a,9b通电,并且小螺旋弹簧7,11被至少部分地容纳在多个 分散器6,10中的分支通路5,12,并且分散并设置在与工作介质的循环方向正交的表面和冷藏存储装置1的轴向方向上。(C)2009年, JPO&INPIT
    • 8. 发明专利
    • HEAT EXCHANGER
    • JPH08121987A
    • 1996-05-17
    • JP26426394
    • 1994-10-27
    • AISIN SEIKI
    • GOTO TETSUYASHIMIZU MASUMI
    • F28F3/08
    • PURPOSE: To enable a pressure loss of a fluid to be reduced while keeping an improved heat exchanging efficiency without changing an entire length by a method wherein some heat transfer plates are arranged roughly at a high temperature side of a heat exchanger to reduce the number of the plates and concurrently the heat transfer plates are closely arranged at a low temperature side to increase its number. CONSTITUTION: A heat transfer plate 42 of a counter-flow type heat exchanger is comprised of a heat transfer plate 421 and a heat transfer plate 422 alternatively laminated from each other. One heat transfer plate 421 is formed with a first group of fine holes 421a and a second group of fine holes 421b gas-liquid tightly separated from each other, and the other heat transfer plate 422 is formed with a first group of fine holes 422a and a second group of fine holes 422b gas-liquid tightly separated from the former holes. A heat insulating plate 43 inserted to be contacted between the heat transfer plates 421, 422 is comprised of heat insulating plates 431, 432 having different thickness. One heat insulating plate 431 is arranged at a high temperature side to have its thickness of about 0.2mm and the other heat insulating plate 432 is arranged at a low temperature side to have a thickness of about 0.1mm. In other words, the heat transfer plate 42 is roughly arranged at the high temperature side to reduce its number and they are closely arranged at the low temperature side so as to increase its number.
    • 9. 发明专利
    • HELIUM LIQUEFYING FREEZER DEVICE
    • JPH04288456A
    • 1992-10-13
    • JP4841591
    • 1991-03-13
    • AISIN SEIKI
    • GOTO TETSUYA
    • F25B9/00F25B9/02F25B9/14
    • PURPOSE:To use two compressors having the same performance to each other as a supplying means and to enable a freezing capacbility for each of systems to be set at the same value by a method wherein herium gas is supplied to the two systems, precooled at each of the systems, thereafter the gas is liquefied through a Joule-Thomson valve and supplied to a freezing load. CONSTITUTION:A herium gas liquefying freezer device for a linear motor car is operated such that two superconductive coils 14a and 14b are cooled by one compressor 2. The compressor 2 has compression parts 4a and 4b of two systems. After compressed and discharged herium gas is cooled in a stepwise manner down to a value less than a reversing temperature in sequence by heat exchangers 5 to 8 and pre-cooling heat exhangers 9 to 11 of Starling cycle freezers 1a and 1b, the gas is pased through the Joule-Thomson valve 12, liquefied and stored in tanks 13a and 13b so as to cool the superconductive voils 14a and 14b. In this case, as the freezers 1a and 1b, the freezers having the same performance to each other are used and then performance of each of the compression parts 4a and 4b is made same, thereby a freezing capability of each of the superconductive coils 14a and 14b is blalanced.