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    • 2. 发明专利
    • Absorption refrigerating machine
    • 吸收式制冷机
    • JP2011202948A
    • 2011-10-13
    • JP2011125893
    • 2011-06-06
    • Sanyo Electric Co Ltd三洋電機株式会社
    • ISHIZAKI SHUJIKOBAYASHI TAKAHIROTOKUDA TETSUYASATO JUNSUKEOANA HIDEAKIISHIFUKU SOICHI
    • F25B15/00
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To provide an absorption refrigerating machine, especially a double-effect absorption refrigerating machine, capable of securely preventing freezing of cold water in an evaporator if a cooling water pump independently starts during operation stop.SOLUTION: A high-temperature regenerator 1, a low-temperature regenerator 2, a condenser 3, the evaporator 4, an absorber 5, a high-temperature heat exchanger 6, and a low-temperature heat exchanger 7 are connected via a conduit. The absorption refrigerating machine is provided with a cooling water conduit 11 passing inside a condenser 3 after passing inside the absorber 5, a load-side cold water conduit 14 passing inside the evaporator 4, and the cooling water pump 12 for supplying cooling water to the cooling water conduit 11. The absorption refrigerating machine is further provided with a cooling water bypass conduit 21 for connecting the upstream side of the cooling water conduit from the absorber 5 and the downstream side from the absorber 5, and the cooling water bypass conduit 21 is provided with an opening/closing valve 22. If the cooling water pump 12 independently starts during operation stop, the opening/closing valve 22 is opened to circulate a part of the cooling water in the cooling water bypass conduit 21.
    • 要解决的问题:提供一种吸收式制冷机,特别是双效吸收式制冷机,如果在运行停止期间独立启动冷却水泵,则能够可靠地防止蒸发器中的冷水冻结。解决方案:高温再生器 如图1所示,通过导管连接低温再生器2,冷凝器3,蒸发器4,吸收器5,高温热交换器6和低温热交换器7。 吸收式制冷机在通过吸收器5内部的冷凝器3内部设置有冷却水导管11,通过蒸发器4内的负载侧冷水导管14和冷却水供给冷却水12 冷却水导管11.吸收式制冷机还设有冷却水旁路管道21,用于将冷却水管道的上游侧与吸收器5连接,下游侧与吸收器5连接,冷却水旁通管道21为 设置有打开/关闭阀22.如果冷却水泵12在运行停止期间独立启动,则打开/关闭阀22打开以使冷却水旁通管道21中的一部分冷却水循环。
    • 3. 发明专利
    • Absorption refrigerating machine
    • 吸收式制冷机
    • JP2010266163A
    • 2010-11-25
    • JP2009119481
    • 2009-05-18
    • Sanyo Electric Co Ltd三洋電機株式会社
    • ISHIZAKI SHUJIKOBAYASHI TAKAHIROTANAKA YOSUKEYOSHIMI KATSUSUKEKUDO JUNHATAYAMA AKIRA
    • F25B15/00
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To provide an absorption refrigerating machine capable of evading a liquid absorbent from being crystallized.
      SOLUTION: The absorption refrigerating machine 100 includes a high temperature regenerator 1, and a low temperature regenerator 2, and is constituted to make a dilute liquid branch to flow in the high temperature regenerator 1 and the low temperature regenerator 2. The absorption refrigerating machine is provided with a proportional control means 41 for controlling a ratio of the dilute liquid branched and flowing in the high temperature regenerator 1 to the dilute liquid branched and flowing in the low temperature regenerator 2, and the proportional control means 41 conducts control to raise the ratio of the dilute liquid flowing in the regenerator with a high concentration of the dilute liquid out of the high temperature regenerator 1 and the low temperature regenerator 2.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够避免液体吸收剂结晶化的吸收式制冷机。 解决方案:吸收式制冷机100包括高温再生器1和低温再生器2,构成为使稀液分支在高温再生器1和低温再生器2中流动。吸收 冷冻机设置有比例控制装置41,用于控制在高温再生器1中分支和流动的稀液在低温再生器2中分支和流动的稀液的比例,比例控制装置41进行控制 将高浓度的稀释液从高温再生器1和低温再生器2中提高再生器中流动的稀液的比例。(C)2011,JPO&INPIT
    • 4. 发明专利
    • Relief valve
    • 救护阀
    • JP2009079777A
    • 2009-04-16
    • JP2009011970
    • 2009-01-22
    • Sanyo Electric Co Ltd三洋電機株式会社
    • HASEGAWA SETSUNISHIKAWA TAKEHIROKATO TETSUYAKOBAYASHI TAKAHIROOGASAWARA KOSUKE
    • F16K17/06
    • PROBLEM TO BE SOLVED: To provide the relief valve for a fuel gas supply unit which can assure the safety by solving the pressure resistance problem of the fuel gas supply unit when it is used for the pressure feed line such as city gas.
      SOLUTION: This relief valve is equipped with the inlet port 36 which is connected to the discharge line 27 of a compressor 7 to boost the city gas etc. of about 2 Kpa of pressure to about 600 Kpa of pressure, the valve port 38 which communicates this inlet port 36 with the outlet port 37, the valve body 51 which can block this valve port 38 freely and the spring member 52 which presses this valve body 51 to the valve port 38. It is characterized that the spring constant of the spring member 52 is set as the spring constant which the valve port 38 is opened when the pressure such as the boosted city gas is set to 0.9 Mpa or more and the valve port 38 is closed when it is set to 0.8 Mpa or less.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于燃料气体供应单元的安全阀,其可以通过在用于诸如城市燃气的压力进料管线时解决燃料气体供应单元的耐压问题来确保安全性。

      解决方案:该安全阀装有入口36,入口36连接到压缩机7的排放管线27,以将城市煤气等提升到约2Kpa的压力至约600Kpa的压力,阀口 38,其将该入口端口36与出口37连通,可自由地阻塞该阀口38的阀体51和将该阀体51推压到阀口38的弹簧构件52.其特征在于,弹簧常数 弹簧构件52被设定为弹簧常数,当增压城市气体的压力设定为0.9Mpa以上时阀口38打开,当阀门38设定为0.8Mpa以下时,阀口38关闭。 版权所有(C)2009,JPO&INPIT

    • 5. 发明专利
    • Cooling device
    • 冷却装置
    • JP2007335497A
    • 2007-12-27
    • JP2006163291
    • 2006-06-13
    • Sanyo Electric Co Ltd三洋電機株式会社
    • YANAGI HIROFUMIUCHIDA TOMOHIROKOBAYASHI TAKAHIRO
    • H05K7/20G05D23/00
    • PROBLEM TO BE SOLVED: To provide a cooling device for controlling cooling operation in accordance with amount of heat generated by a heat generating material having variation in the thermal load while achieving protection of a compressor. SOLUTION: A controller 40 starts operation of the compressor 22 when air temperature within a storing chamber 4 rises to the cooling start setting temperature, and stops the operation of the compressor 22 when the air temperature in the storing chamber 4 becomes equal to or lower than the predetermined cooling start setting temperature. Moreover, the controller 40 has the predetermined re-start inhibiting time from the stop of operation of the compressor 22. In the case where air temperature within the storing chamber 4 rises to the cooling start setting temperature before the re-start inhibiting time has passed after stop of the operation of the compressor 22, the controller 40 executes a cooling stop setting temperature correction mode to execute compensation for lowering the cooling stop setting temperature than the initial cooling stop setting temperature. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于根据具有热负荷变化的发热材料产生的热量来控制冷却操作的冷却装置,同时实现压缩机的保护。 解决方案:当存储室4内的空气温度上升到冷却开始设定温度时,控制器40开始压缩机22的运转,当储存室4内的空气温度变为等于 或低于预定的制冷开始设定温度。 此外,控制器40具有从压缩机22的停止运转开始的规定的重新开始禁止时间。在再起动禁止时间过去之前,存储室4内的空气温度上升到冷却开始设定温度的情况 在停止压缩机22的操作之后,控制器40执行冷却停止设定温度校正模式,以执行比初始冷却停止设定温度降低冷却停止设定温度的补偿。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Heat exchanger
    • 热交换器
    • JP2007187413A
    • 2007-07-26
    • JP2006007267
    • 2006-01-16
    • Sanyo Electric Co Ltd三洋電機株式会社
    • YANAGI HIROFUMITAMAYAMA KOJISATO JUNKOBAYASHI TAKAHIROHARIO SATOSHIUCHIDA TOMOHIRO
    • F28D1/047F25B1/00F25B39/00
    • PROBLEM TO BE SOLVED: To provide a heat exchanger which effectively prevents main piping used for the heat exchanger, from being damaged due to the initiation of a crack caused by refrigerant pressure in the heat exchanger using a refrigerant of high pressure. SOLUTION: In the heat exchanger (a gas cooler 24), refrigerant piping 3 of meandering shape is composed of the main piping 32 having a straight pipe part, and curved bend piping 36 connecting the ends 33 of the main piping 32 to each other. The end 37 of the bent piping 36 is inserted in the end 33 of the main pipe 32 and welded. The outer diameter of the end 37 of the bend piping 36 is smaller than the outer diameter of the end 33 of the main piping 32. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种热交换器,其有效地防止用于热交换器的主管道由于在使用高压制冷剂的热交换器中的制冷剂压力引起的裂纹而被损坏。 解决方案:在热交换器(气体冷却器24)中,蜿蜒形状的制冷剂管道3由具有直管部分的主管道32和将主管道32的端部33连接到 彼此。 弯曲管道36的端部37插入主管32的端部33并被焊接。 弯曲管道36的端部37的外径小于主管道32的端部33的外径。版权所有:(C)2007,JPO&INPIT
    • 7. 发明专利
    • Frozen dessert making unit
    • 冷冻DESSERT制作单位
    • JP2005117941A
    • 2005-05-12
    • JP2003355278
    • 2003-10-15
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KAWASAKI DAISEIISHII TAKESHIKUROSAWA TAKESHIMAEDA KAZUYAIKEMOTO KOICHIROKITATSUME NAOTOKOBAYASHI TAKAHIRO
    • A23G9/22
    • PROBLEM TO BE SOLVED: To provide a frozen dessert making unit with which mix is sanitarily supplied to a cooling cylinder from a mix raw material bag via compressed air to make frozen dessert. SOLUTION: The frozen dessert making unit is provided with the following: a cold reserving chamber 2 reserving a flexible mix raw material bag 5 comprising a bag main body 21 where mix is stored and a hermetically sealed space separated from the bag body; a mix raw material tube 34 through which the mix is taken out from the mix raw material bag 5; an air pump 27 supplying the compressed air to the space between the bag main body 21 and the mix raw material bag 5 to push out the mix; a cooling cylinder 8 cooling the mix supplied from the bag while stirring the mix to make frozen dessert; a bag case 31 attached to the inside of the cold reserving chamber and having an upper case member 80 positioning at the upper side of the mix raw material bag 5 and having such a size as to hold the mix raw material bag 5, and a lower case member 90 detachably attached to the upper case member 80 and positioning at the lower side of the mix raw material bag 5 to hold the bag. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种冷冻甜点制造单元,通过压缩空气将混合物从混合原料袋中经过冷冻甜食从卫生地提供给冷却筒。 冷冻甜点制作单元具有以下部件:冷藏室2,储存柔性混合原料袋5,所述柔性混合原料袋5包括储存混合物的袋主体21和与袋体分离的气密密封空间; 混合原料管34,从混合原料袋5中取出混合物; 将压缩空气供给到袋主体21和混合原料袋5之间的空气泵27,推出混合物; 冷却筒8,在搅拌混合物的同时冷却从袋中提供的混合物,制成冷冻甜点; 一个安装在冷藏室内部的袋子壳体31,它具有一个定位在混合原料袋5的上侧的上壳体构件80,并具有保持混合原料袋5的尺寸,以及较低的 壳体构件90可拆卸地附接到上壳体构件80并且定位在混合原料袋5的下侧以保持袋。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Refrigerating apparatus
    • 制冷设备
    • JP2013108654A
    • 2013-06-06
    • JP2011253058
    • 2011-11-18
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KAWAKUBO KENTADANO MASAYAKOYAMA KIYOSHIKOBAYASHI TAKAHIROMIHARA KAZUHIKONISHIKAWA HIROSHI
    • F25B1/00F04B49/06F04B49/10F04C28/28F04C29/02F25B43/02F25B49/02
    • PROBLEM TO BE SOLVED: To provide a refrigerating apparatus capable of achieving suitable oil quantity control.SOLUTION: The refrigerating apparatus 1 includes a cooling medium circuit 10 for performing refrigeration cycle operations using carbon dioxide as a cooling medium. The cooling medium circuit 10 includes: a compressor 11 having oil stored in a case 12 and discharging the cooling medium with the oil to a high-pressure ejection pipe 21; an oil separator 22 arranged in the high-pressure ejection pipe 21; and an oil returning pipe 28 for returning the oil into the case 12, the oil having been separated by means of the oil separator 22. The apparatus also includes: an oil level sensor 31 for detecting an oil level in the compressor 11; and a display panel 51 for displaying a state of the oil level in the compressor 11 on the basis of detection signals obtained from the oil level sensor 31.
    • 解决的问题:提供能够实现适当的油量控制的制冷装置。 解决方案:制冷装置1包括用于使用二氧化碳作为冷却介质进行制冷循环操作的冷却介质回路10。 冷却介质回路10包括:压缩机11,其具有储存在壳体12中的油,并将具有油的冷却介质排出到高压喷射管21; 布置在高压喷射管21中的油分离器22; 以及用于将油返回壳体12的回油管28,油通过分油器22分离。该设备还包括:油位传感器31,用于检测压缩机11中的油位; 以及用于基于从油位传感器31获得的检测信号显示压缩机11中的油位的状态的显示面板51.(C)2013,JPO&INPIT
    • 10. 发明专利
    • Multistage compression type rotary compressor and compression type rotary compressor
    • 多级压缩式旋转压缩机和压缩式旋转压缩机
    • JP2012177353A
    • 2012-09-13
    • JP2011041778
    • 2011-02-28
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KOBAYASHI TAKAHIRO
    • F04C18/356F04C23/00F04C29/00
    • PROBLEM TO BE SOLVED: To provide a multistage compression type rotary compressor equipped with a cylinder capable of closing a spring chamber without carrying out a press-fitting operation.SOLUTION: The multistage compression type rotary compressor includes first and second rotary compression elements 3, 4 to be driven by a drive element 2 in a sealed container. The first and second rotary compression elements 3, 4 include cylinders 31, 41, rollers 33, 43 rotating eccentrically in the cylinders 31, 41, and vanes 34, 44 for partitioning the interior of the cylinders 31, 41 into a low pressure chamber and a high pressure chamber while abutting on the rollers 33, 43 where refrigerant gas is compressed by the first and second rotary compression elements 3, 4 to high pressure and ejected. A spring chamber which stores a spring 46 provided at the cylinder 41, or part of the second rotary compression element 4 is opened while penetrating through both upper and lower surfaces of the cylinder 41 crossing with the outer circumferential surface and the spring chamber even if inserted with the spring 46 is formed to keep a length to secure the compression state at all the time.
    • 要解决的问题:提供一种配备有能够关闭弹簧室的气缸的多级压缩式旋转式压缩机,而不进行压配合操作。 解决方案:多级压缩式旋转压缩机包括由密封容器中的驱动元件2驱动的第一和第二旋转压缩元件3,4。 第一和第二旋转压缩元件3,4包括气缸31,41,在气缸31,41和叶片34,44中偏心旋转的滚子33,43,用于将气缸31,41的内部分隔成低压室, 同时抵靠在辊33,33上的高压室,其中制冷剂气体被第一和第二旋转压缩元件3,4压缩到高压并被排出。 存储设置在气缸41或第二旋转压缩元件4的一部分的弹簧46的弹簧室在穿过与外周面和弹簧室交叉的气缸41的上表面和下表面的同时被打开,即使插入 弹簧46形成为保持长度以一直保持压缩状态。 版权所有(C)2012,JPO&INPIT