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    • 1. 发明专利
    • Heat source device
    • 热源设备
    • JP2005233569A
    • 2005-09-02
    • JP2004046045
    • 2004-02-23
    • Global Cooling Bvグローバル クーリング ビー ヴイ
    • DAVID M BERKOWITZ
    • F25B27/00
    • PROBLEM TO BE SOLVED: To reduce the cost and noise, to improve the efficiency and reliability of a heat source device mainly used in heating and cooling for home use, and to improve environmental properties.
      SOLUTION: A reciprocating compressor 21 of a Rankine cycle 2 is integrally formed on a sterling engine 1 operated by a helium gas. A refrigerant liquefied by a separator 27 mounted at an outlet side of a condenser 25 and the helium gas mixed in the refrigerant are separated from each other, and the separated helium gas flows back to the sterling engine 1. Accordingly, the refrigerant is not leaked to the external even when it is leaked from the reciprocating compressor 21 to the internal, and the sterling engine 1 and the Rankine cycle 2 can be respectively operated by the helium gas and the refrigerant each as the optimum working fluid.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:降低成本和噪音,提高主要用于家庭用加热和冷却的热源装置的效率和可靠性,并改善环境性能。 解决方案:兰金循环2的往复式压缩机21一体形成在由氦气操作的英制发动机1上。 通过安装在冷凝器25的出口侧的分离器27液化的制冷剂和混合在制冷剂中的氦气彼此分离,分离的氦气流回到发动机1。因此,制冷剂不会泄漏 即使当从往复式压缩机21泄漏到内部时,外部也可以通过氦气和制冷剂分别操作英制发动机1和兰金循环2作为最佳工作流体。 版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • CASING OF FREE-PISTON STIRLING DEVICE
    • JP2003130480A
    • 2003-05-08
    • JP2001321993
    • 2001-10-19
    • GLOBAL COOLING BV
    • DAVID M BERKOWITZ
    • F25B9/14
    • PROBLEM TO BE SOLVED: To provide a casing of a free-piston stirling device being low-cost, lightweight, easy to assemble, and unaffected by deformation under pressure, while keeping airtightness high. SOLUTION: A plurality of tabs 11b are punched and formed at a circumferential surface near an open end of a front casing manufactured by the deep drawing of a metallic plate, with the tip of each tab bent and inclined radially inwards. A cylinder 23 is provided with a stepped portion 23e, a locking circumferential groove 23g, and a seal part 23c on the outer periphery thereof. When the free-piston stirling device 2 is inserted into the front casing 11 and the open end of the front casing abuts the stepped portion 23e, the tips of the tabs 11b fit into the locking circumferential groove 23g to fix the position of the free-piston stirling device along the direction of insertion. The front casing 11, a center casing 12 and a rear casing 13 are hermetically joined together by welding their respective overall peripheries together.
    • 4. 发明专利
    • Heat exchanger for stirling engine
    • JP2004069137A
    • 2004-03-04
    • JP2002227331
    • 2002-08-05
    • Global Cooling Bvグローバル クーリング ビー ヴイ
    • YOUNG RAKKU KWON
    • F02G1/055F25B9/00
    • PROBLEM TO BE SOLVED: To provide an easily assemblable heat exchanger used for a stirling engine with improved heat exchange efficiency, reduced size, and reduced weight.
      SOLUTION: An entrance plate 1, a plurality of middle plates 3 and an exit plate 2 respectively having a ring shape are closely contacting with each other and inserted between a cylindrical outer casing 4 and inner casings 5. The entrance plate 1 and the exit plate 2 have openings 1a etc. and openings 2a etc. at equal pitch interval in circumference direction to be aligned to have a half pitch deviation from each other. The middle plate 3 has openings 3a etc. at a half pitch interval of the the entrance plate 1 to be aligned to fit to every second openings 1a etc. of the entrance plate. Working-fluid flowing from the openings 1a, etc. of the entrance plate is blocked by the exit plate 2, and some portion thereof drifts toward the circumference direction on each middle plate 3. The drift toward the circumference direction increase heat-transfer area to raise heat exchange rate. Further, the drift toward the circumference direction flows out straight through the adjacent openings 1b etc., hence inhibiting increase of pressure loss.
      COPYRIGHT: (C)2004,JPO
    • 5. 发明专利
    • Low friction follow-up seal for free piston stirling device
    • 低摩擦自动密封免费活塞式搅拌装置
    • JP2003056712A
    • 2003-02-26
    • JP2001245957
    • 2001-08-14
    • Global Cooling Bvグローバル クーリング ビー ヴイ
    • DAVID M BERKOWITZ
    • F02G1/043F02G1/053F16J15/16
    • PROBLEM TO BE SOLVED: To effectively prevent gas leakage between a rod and an through-hole while reducing the manufacturing cost by mitigating the requirement of the concentricity and parallelism between the rod 11 of a free piston 1 and the through-hole 22 in a driving piston 2. SOLUTION: A circumferential groove 23 is provided in the through-hole 22 in the driving piston 2, and the low friction follow-up seal 4 formed by stacking thin-plate disks 41 is incorporated in the circular groove so that, if the concentricity and the parallelism between the rod 11 and the through hole 22 are deviated to some extent, the sealability between the low friction follow-up seal and the outer circumferential surface of the rod 11 can be secured. This constitution can thus mitigate the requirement of the concentricity and the parallelism between the rod 11 and the through-hole 22 to greatly reduce the manufacturing cost while effectively preventing gas leakage.
    • 要解决的问题:为了有效地防止杆和通孔之间的气体泄漏,同时通过减轻驱动中的自由活塞1的杆11和通孔22之间的同心度和平行度来降低制造成本 活塞2.解决方案:在驱动活塞2中的通孔22中设置周向槽23,并且通过堆叠薄板盘41形成的低摩擦随动密封件4结合在圆形槽中,使得如果 杆11和通孔22之间的同心度和平行度在一定程度上偏离,可以确保低摩擦随动密封和杆11的外圆周表面之间的密封性。 因此,能够减轻棒11与通孔22之间的同心度和平行度的大大降低制造成本,同时有效地防止气体泄漏。
    • 7. 发明专利
    • Stirling cycle engine
    • 起动循环发动机
    • JP2009047139A
    • 2009-03-05
    • JP2007216506
    • 2007-08-22
    • Global Cooling BvTwinbird Corpグローバル クーリング ビー ヴイツインバード工業株式会社
    • SAITO MAMORUDAVID BERKOWITZ
    • F02G1/053F02G1/043
    • F25B9/14F01B11/007F01B23/10F02G1/0435F02G2280/10F25B2400/073H02K7/1884H02K33/16
    • PROBLEM TO BE SOLVED: To provide a free piston-type stirling cycle engine which is inexpensive, has a small outer diameter as the whole engine and has high efficiency.
      SOLUTION: The free piston-type stirling cycle refrigerator as a free piston-type stirling cycle engine comprises a cylinder 7, a piston 18 that can be reciprocated within the cylinder 7, and an electromagnetically driving mechanism 19 as an electromagnetic mechanism that reciprocates the piston 18. The electromagnetically driving mechanism 19 comprises a moving part 20 and a stator 35. The moving part 20 comprises a permanent magnet 24 disposed outside an inner yoke 23 formed of a permeable material. The moving part 20 and the piston 18 are disposed in an axial direction, and the stator 35 and the cylinder 7 are disposed in an axial direction, whereby the outer diameter Rm of the moving part 20 in the electromagnetically driving mechanism 19 can be reduced. Thus, the inner diameter Rs and the outer diameter of the stator 35 provided outside the moving part 20 and, in its turn, the outer diameter of the whole stirling cycle refrigerator can be reduced.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种便宜的自由活塞式斯特林循环发动机,具有作为整个发动机的小外径并且效率高。 解决方案:作为自由活塞型斯特林循环发动机的自由活塞型斯特林循环冷冻机包括气缸7,可在气缸7内往复运动的活塞18和作为电磁机构的电磁驱动机构19, 往复运动活塞18.电磁驱动机构19包括移动部件20和定子35.移动部件20包括设置在由可渗透材料形成的内轭23外侧的永磁体24。 活动部20和活塞18沿轴向配置,定子35和气缸7沿轴向配置,能够减小电磁驱动机构19的移动部20的外径Rm。 因此,可以减小设置在移动部件20外侧的定子35的内径Rs和外径,从而可以减小整个斯特林循环制冷机的外径。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • VIBRATION ABSORBING UNIT
    • JP2003184947A
    • 2003-07-03
    • JP2001380651
    • 2001-12-13
    • TSUIN BADO KOGYO KKGLOBAL COOLING BV
    • SAITO MAMORUURASAWA HIDETOYONGURAKU KUON
    • F16F15/02F16F1/06F16F1/12F16F3/04F16F7/116
    • PROBLEM TO BE SOLVED: To form a device furnished with a vibration absorbing unit in a compact size. SOLUTION: The vibration absorbing unit comprises a casing 1 having a reciprocating piston 3, a first fixing member 5 arranged approximately orthogonal to a vibration direction Y of the device such as the piston 3 or the like, a second fixing member 7 arranged approximately in parallel in a designated interval with the first fixing member 5, one weight 8 arranged between both fixing members 5 and 7 so as to be approximately coaxial with a vibration center of the piston 3, and a coil spring mechanism 12 suspending the weight between both of the fixing members 5 and 7 by installing approximately in parallel to a vibration direction Y of the piston 3. Both of the fixing members 5 and 7, the weight 8, and the coil spring mechanism 12 are arranged in the inside of the casing 1. In harmony with vibration of the reciprocating piston 3, the weight 8 suspended by the coil spring mechanism 12 can absorb vibration transmitted to the casing 1 by resonating with the vibration of the piston 3 in the inside of the casing 1, and the casing 1 can be also miniaturized. COPYRIGHT: (C)2003,JPO