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    • 1. 发明授权
    • Ice making machine
    • 制冰机
    • US07168262B2
    • 2007-01-30
    • US11087756
    • 2005-03-24
    • Akihiko HiranoMasao SanukiChiyoshi ToyaKazuhiro Yoshida
    • Akihiko HiranoMasao SanukiChiyoshi ToyaKazuhiro Yoshida
    • F25C5/10
    • F25B47/022F25B2400/0403F25B2600/2507F25C5/10F25C2600/04
    • In external unit 19, three-way valve 25 provided downstream of CPR 23 enables a switching connection between CPR 23 and branch line 21A of first bypass line 21 with respect to liquid line 18 A. In internal unit 20, second bypass line 27 connects inlet side of receiver 13 and inlet side of evaporator 16, and open/close valve 28 is provided along second bypass line 27. At de-icing, three-way valve 25 switches to first bypass line 21 side and open/close valve 28 opens. There upon, hot gas from compressor 11 circulates from first bypass line 21 to liquid line 18A to enter evaporator 16 through second bypass line 27 while squeezing out liquid refrigerant. Evaporator 16 is heated by manifest heat of introduced hot gas, and when the internal pressure of vaporator 16 rises to a condensation temperature over 0° C., de-icing is performed efficiently by manifest heat plus latent heat.
    • 在外部单元19中,设置在CPR23下游的三通阀25能够实现第一旁通管线21的CPR 23与分支管线21A之间相对于液体管线18A的切换连接。在内部单元20中,第二旁路管线27连接 接收器13的入口侧和蒸发器16的入口侧,以及第二旁路管线27设置开/关阀28。 在除冰时,三通阀25切换到第一旁通管路21侧,打开/关闭阀28打开。 此时,来自压缩机11的热气体从第一旁通管路21循环到液体管线18A,通过第二旁路管线27进入蒸发器16,同时挤出液体制冷剂。 蒸发器16被引入的热气体的明显的热量加热,并且当蒸发器16的内部压力上升到超过0℃的冷凝温度时,通过明显的加热潜热来有效地进行除冰。
    • 2. 发明申请
    • Ice making machine
    • 制冰机
    • US20060213215A1
    • 2006-09-28
    • US11087756
    • 2005-03-24
    • Akihiko HiranoMasao SanukiChiyoshi ToyaKazuhiro Yoshida
    • Akihiko HiranoMasao SanukiChiyoshi ToyaKazuhiro Yoshida
    • F25B41/00F25B49/00F25C1/00F25C5/10
    • F25B47/022F25B2400/0403F25B2600/2507F25C5/10F25C2600/04
    • In external unit 19, three-way valve 25 provided downstream of CPR 23 enables a switching connection between CPR 23 and branch line 21A of first bypass line 21 with respect to liquid line 18 A. In internal unit 20, second bypass line 27 connects inlet side of receiver 13 and inlet side of evaporator 16, and open/close valve 28 is provided along second bypass line 27. At de-icing, three-way valve 25 switches to first bypass line 21 side and open/close valve 28 opens. There upon, hot gas from compressor 11 circulates from first bypass line 21 to liquid line 18A to enter evaporator 16 through second bypass line 27 while squeezing out liquid refrigerant. Evaporator 16 is heated by manifest heat of introduced hot gas, and when the internal pressure of vaporator 16 rises to a condensation temperature over 0° C., de-icing is performed efficiently by manifest heat plus latent heat.
    • 在外部单元19中,设置在CPR23下游的三通阀25能够实现第一旁通管线21的CPR 23与分支管线21A之间相对于液体管线18A的切换连接。在内部单元20中,第二旁路管线27连接 接收器13的入口侧和蒸发器16的入口侧,以及沿着第二旁路管线27设置开/关阀28.在除冰时,三通阀25切换到第一旁通管路21侧,打开/关闭阀28打开 。 此时,来自压缩机11的热气体从第一旁通管路21循环到液体管线18A,同时挤出液体制冷剂,通过第二旁路管线27进入蒸发器16。 蒸发器16被引入的热气体的明显的热量加热,并且当蒸发器16的内部压力上升到超过0℃的冷凝温度时,通过明显的加热潜热来有效地进行除冰。
    • 3. 发明申请
    • Cooling device
    • 冷却装置
    • US20060107671A1
    • 2006-05-25
    • US10995110
    • 2004-11-24
    • Kazuhiro YoshidaKazuyoshi SekiAkihiko HiranoMasahide YatoriChiyoshi Toya
    • Kazuhiro YoshidaKazuyoshi SekiAkihiko HiranoMasahide YatoriChiyoshi Toya
    • F25D21/06F25B41/00F25B49/00
    • F25B41/043F25B47/022F25B2400/0403F25B2400/0411F25B2400/0415F25B2400/16
    • In a cooling system having a compressor for supplying refrigerant under pressure, a condenser for condensing the refrigerant supplied from the compressor, a liquid receiver arranged to temporarily store the condensed refrigerant supplied from the condenser, an expansion valve for expanding the refrigerant supplied from the liquid receiver, and an evaporator arranged to effect evaporation of the expanded refrigerant for cooling the surrounding thereof, a bypass conduit is arranged to bypass the liquid receiver and expansion valve, and an electrically operated flow passage changeover valve is provided to selectively connect a supply passage of refrigerant to the liquid receiver and expansion valve and to the bypass conduit so that the supply passage of refrigerant is connected to the liquid receiver and expansion valve during operation at a cooling mode and is connected to the bypass conduit during operation at a defrost mode.
    • 在具有用于在压力下供给制冷剂的压缩机的冷却系统中,设置用于冷凝从压缩机供给的制冷剂的冷凝器,设置成临时存储从冷凝器供给的冷凝的制冷剂的液体接收器,用于使从液体供给的制冷剂膨胀的膨胀阀 接收器和蒸发器,其布置成实现用于冷却其周围的膨胀制冷剂的蒸发,旁通管道布置成绕过液体接收器和膨胀阀,并且提供电动流道切换阀,以选择性地连接 制冷剂到液体接收器和膨胀阀和旁路管道,使得制冷剂的供给通道在冷却模式下操作期间连接到液体接收器和膨胀阀,并且在除霜模式下操作期间连接到旁路管道。
    • 4. 发明授权
    • Cooling device
    • 冷却装置
    • US07331189B2
    • 2008-02-19
    • US10995110
    • 2004-11-24
    • Kazuhiro YoshidaKazuyoshi SekiAkihiko HiranoMasahide YatoriChiyoshi Toya
    • Kazuhiro YoshidaKazuyoshi SekiAkihiko HiranoMasahide YatoriChiyoshi Toya
    • F25D21/06F25B41/00F25B49/00
    • F25B41/043F25B47/022F25B2400/0403F25B2400/0411F25B2400/0415F25B2400/16
    • In a cooling system having a compressor for supplying refrigerant under pressure, a condenser for condensing the refrigerant supplied from the compressor, a liquid receiver arranged to temporarily store the condensed refrigerant supplied from the condenser, an expansion valve for expanding the refrigerant supplied from the liquid receiver, and an evaporator arranged to effect evaporation of the expanded refrigerant for cooling the surrounding thereof, a bypass conduit is arranged to bypass the liquid receiver and expansion valve, and an electrically operated flow passage changeover valve is provided to selectively connect a supply passage of refrigerant to the liquid receiver and expansion valve and to the bypass conduit so that the supply passage of refrigerant is connected to the liquid receiver and expansion valve during operation at a cooling mode and is connected to the bypass conduit during operation at a defrost mode.
    • 在具有用于在压力下供给制冷剂的压缩机的冷却系统中,设置用于冷凝从压缩机供给的制冷剂的冷凝器,设置成临时存储从冷凝器供给的冷凝的制冷剂的液体接收器,用于使从液体供给的制冷剂膨胀的膨胀阀 接收器和蒸发器,其布置成实现用于冷却其周围的膨胀制冷剂的蒸发,旁通管道布置成绕过液体接收器和膨胀阀,并且提供电动流道切换阀,以选择性地连接 制冷剂到液体接收器和膨胀阀和旁路管道,使得制冷剂的供给通道在冷却模式下操作期间连接到液体接收器和膨胀阀,并且在除霜模式下操作期间连接到旁路管道。
    • 6. 发明申请
    • STEAM GENERATOR
    • 蒸汽发生器
    • US20120037145A1
    • 2012-02-16
    • US13125861
    • 2009-10-23
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko HiranoHiroshi KaiMasao SanukiMotohiko MouriYoshitaka Uchihori
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko HiranoHiroshi KaiMasao SanukiMotohiko MouriYoshitaka Uchihori
    • A47J27/04F22B1/28
    • H05B6/108B24B49/105F01K17/02F22B1/281F22B37/26
    • The subject of the present invention is to provide a steam generator constructed small in size. A steam generator 20 of the present invention is composed of a cylindrical steam generation vessel 30 having a steam generation portion 31 formed to store an amount of water for generating steam and a steam passage 32 formed on the upper end of the steam generation portion for spouting steam generated in the steam generation portion, a heater element 40 disposed within the steam generation vessel 30, and an induction heating coil wound around the periphery of the steam generation vessel 30 for energizing the heater element. The heater element 40 is energized by supply of electric power to the heating coil so that steam generated by boiling of the water in the steam generation portion spouts upward from the steam passage. In the steam generator 20, a steam discharge duct 70 is mounted on the upper end of the steam passage 32 for receiving the steam spouting upward from the steam passage to discharge it in a lateral direction such that drops of hot water adhered to a ceiling surface of the discharge duct fall and circulate into the steam generation part 31.
    • 本发明的主题是提供一种尺寸小的蒸汽发生器。 本发明的蒸汽发生器20由圆筒形蒸汽发生容器30构成,该圆筒形蒸汽发生容器30具有形成用于储存一定量的用于产生蒸汽的水分的蒸汽发生部分31和形成在蒸汽发生部分上端的蒸汽通道32,用于喷射 在蒸汽产生部分产生的蒸汽,设置在蒸汽发生容器30内的加热器元件40,以及卷绕在蒸汽发生容器30周围的感应加热线圈,用于激励加热器元件。 加热器元件40通过向加热线圈供应电力而被激励,使得由蒸汽产生部分中的水沸腾产生的蒸汽从蒸汽通道向上喷出。 在蒸汽发生器20中,蒸汽排出管道70安装在蒸汽通道32的上端,用于接收从蒸汽通道向上喷出的蒸汽,以沿横向方向排出蒸汽,使得水滴附着在天花板表面上 的排出管道落下并循环到蒸汽发生部31中。
    • 8. 发明申请
    • COOKING APPARATUS WITH STEAM GENERATING DEVICE
    • 具有蒸汽发生装置的烹饪装置
    • US20120018424A1
    • 2012-01-26
    • US13060104
    • 2009-08-20
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko Hirano
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko Hirano
    • H05B6/12
    • F24C15/327F22B1/281F22B1/284F24C7/082H05B6/108
    • ObjectProvide a cooking device with a steam generating device having a reduced size and capable of producing steam in a short time.Means of SolutionA cooking apparatus comprising a cooking chamber for accommodating foodstuff in its interior for cooking, a heater for heating interior of said cooking chamber and an electric fan for generating convectional flow of air heated by said heater in said cooking chamber, characterized in that, an induction heating type steam generating device for supply steam into said cooking chamber is disposed on the side wall of said cooking chamber, wherein said steam generating device comprises a steam generating vessel which store prescribed amount of water, an induction heater body disposed in said steam generating vessel for heating water and an induction heating coil wound around outer peripheral of said steam generating vessel for heating said induction heater.
    • 对象提供具有减小尺寸并且能够在短时间内产生蒸汽的蒸汽发生装置的烹饪装置。 解决方案一种烹饪设备,包括用于在其内部容纳食物的烹饪室,用于烹饪,用于加热烹饪室内部的加热器和用于在所述烹饪室中产生由所述加热器加热的空气的对流流的电风扇,其特征在于, 在所述烹饪室的侧壁上设置用于向所述烹饪室供给蒸汽的感应加热型蒸汽发生装置,其中所述蒸汽发生装置包括存储规定量的水的蒸汽发生容器,设置在所述烹饪室中的感应加热器主体 用于加热水的蒸汽发生容器和缠绕在所述蒸汽发生容器外周的感应加热线圈,用于加热所述感应加热器。
    • 9. 发明申请
    • COOKING APPARATUS
    • 烹饪设备
    • US20120017769A1
    • 2012-01-26
    • US13060101
    • 2009-08-20
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko Hirano
    • Kazuhiko InoueEiji SuzukiShinichi KagaYukimasa TakedaAkihiko Hirano
    • A47J27/62
    • F24C7/08F24C15/327
    • ObjectA cooking apparatus, wherein, independent of the quantity and the temperature of the foodstuff contained in a cooking chamber of the cooking apparatus, the food stuff can be cooked in a consistent time period by initial-heating processing and main-heating processing.Means of SolutionA cooking device is provided with a controller for performing initial-heating processing before a transition to main-heating processing. The initial-heating processing is processing which, when the temperature in a cooking chamber is dropped by a foodstuff placed in the cooking chamber, controls supply of electricity to a heater provided in the cooking chamber, and the control is performed such that the temperature in the cooking chamber rises along temperature rising line which defines a temperature rise rate at which the temperature in the cooking chamber reaches a predetermined preset cooking temperature from an initial-heating start temperature, which is set on the basis of a previously determined time period for initial heating, after the time period for initial-heating has elapsed.Selected FigureFIG. 7
    • 对象一种烹饪设备,其中,独立于包含在烹饪设备的烹饪室中的食物的数量和温度,可以通过初始加热处理和主加热处理在一致的时间段内烹饪食物。 解决方案烹饪装置设置有用于在转换到主加热处理之前执行初始加热处理的控制器。 初始加热处理是当烹饪室中的温度被放置在烹饪室中的食物掉下来时控制向设置在烹饪室中的加热器的供电的处理,并且进行控制,使得温度 烹饪室沿着温度上升线上升,其定义了从初始加热开始温度开始的烹饪室内的温度达到预定的烹调温度的温度上升率,该初始加热开始温度是根据预先确定的初始时间段设定的 在初始加热的时间段过去之后进行加热。 所选图 7