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    • 2. 发明公开
    • Ice cube maker
    • Eiswürfelbereiter
    • EP2807931A1
    • 2014-12-03
    • EP13169509.0
    • 2013-05-28
    • W. Schoonen Beheer B.V.
    • Schoonen, Wilhelmus Franciskus
    • A23G9/08F25C1/06F25C1/12F25C1/22
    • F25C1/04F25C1/06F25C1/22F25C2400/06
    • An apparatus for making ice cubes comprises a plurality of elongated elements (1, 2). A plurality of mould parts (3, 4, 5, 6) are movable with respect to the elongated elements (1, 2). The plurality of mould parts are movable to form a mould (7) around a first elongated element (1) of the elongated elements. A control unit is configured to control a movement of the plurality of mould parts with respect to the elongated elements to move the mould parts (3, 5) forming the mould (7) around the first elongated element (1) apart once a first ice column (201) has been formed in the mould (7), and form a mould (8) around a second elongated element (2) of the elongated elements. An ice remover (202) is configured to remove the first ice column (201).
    • 一种用于制造冰块的装置包括多个细长元件(1,2)。 多个模具部件(3,4,5,6)可相对于细长元件(1,2)移动。 多个模具部件可移动以形成围绕细长元件的第一细长元件(1)的模具(7)。 控制单元被配置为控制多个模具部件相对于细长元件的运动,以使形成模具(7)的模具部件(3,5)围绕第一细长元件(1)分开,一旦第一冰 柱(201)已经在模具(7)中形成,并且围绕细长元件的第二细长元件(2)形成模具(8)。 除冰器(202)被配置为移除第一冰柱(201)。
    • 6. 发明公开
    • ICE MAKING AND HARVESTING
    • EISHERSTELLUNG UND-GEWINNUNG
    • EP3063479A2
    • 2016-09-07
    • EP14858748.8
    • 2014-10-30
    • Pepsico, Inc.
    • JAFA, EmadABASHKIN, VasiliiBALANEV, AndreyMARTSINOVSKIY, GeorgyVERBITSKY, Mikhail
    • F25C1/00
    • F25C1/12F25C1/04F25C1/045F25C1/06F25C1/18F25C1/25F25C5/02F25C5/04
    • An ice making and harvesting apparatus includes a mold, and bottom and top plates. The mold includes a plurality of cells. Each cell includes side walls and defines bottom and top openings. The bottom plate is configured to move relative to a bottom surface of the mold. An upper surface of the bottom plate includes a first sealing component. A bottom side of the mold includes a second sealing component. The second sealing component is configured to form a seal with the first sealing component of the bottom plate. The bottom plate includes an inlet and a plurality of channels. Each channel is configured to supply water from the bottom plate to a corresponding cell of the mold. The top plate includes a plurality of pushing rods, each rod configured to move relative to the top opening of a corresponding cell.
    • 制冰和收获设备包括模具,底板和顶板。 模具包括多个单元。 每个单元包括侧壁并限定底部和顶部开口。 底板被配置成相对于模具的底表面移动。 底板的上表面包括第一密封部件。 模具的底侧包括第二密封部件。 第二密封部件构造成与底板的第一密封部件形成密封。 底板包括入口和多个通道。 每个通道被配置为将水从底板供应到模具的相应单元。 顶板包括多个推杆,每个杆构造成相对于相应的单元的顶部开口移动。
    • 7. 发明公开
    • Verfahren zum Steuern eines Eisbereiters und zugehöriger Eisbereiter
    • Verfahren zum Steuern eines Bereiters undzugehörigerEisbereiter
    • EP2476976A2
    • 2012-07-18
    • EP11007860.7
    • 2011-09-28
    • Keibel, Andreas, Dr.
    • Keibel, Andreas, Dr.
    • F25C1/06
    • F25C1/06F25B21/02F25C2400/14F25C2500/06F25C2600/04F25C2700/12
    • Die Erfindung betrifft ein Verfahren zum Steuern eines Eisbereiters (1), aufweisend die Schritte des Bereitstellens wenigstens einer zum Herstellen eines Eisstücks (7) aus einer vorbestimmten Menge an Wasser (8) vorgesehenen Wasseraufnahmekammer (2) mit einer Kammerwand (3), einer Einfüllöffnung (4) und einer Eisstückeausgabeöffnung (5), welcher ein Verschluss (6) zugeordnet ist; des Schließens der Eisstückeausgabeöffnung (5) mittels des Verschlusses (6); des Vorbefüllens einer geringeren als der zum Herstellen des Eisstücks (7) vorbestimmten Menge an Wasser (8) in die Wasseraufnahmekammer (2) über die Einfüllöffnung (4); des Einfrierens der geringeren als der zum Herstellen des Eisstücks (7) vorbestimmten Menge an Wasser (8), um den Verschluss (6) bezüglich der Eisstückeausgabeöffnung (5) mittels gefrorenen Wassers (8) abzudichten; des Nachfüllens einer weiteren Menge an Wasser (8) in die Wasseraufnahmekammer (2) über die Einfüllöffnung (4) nachdem die Eisstückeausgabeöffnung (5) durch gefrorenes Wasser (8) abgedichtet ist, bis die zum Herstellen eines Eisstücks (7) vorbestimmte Menge an Wasser (8) erreicht ist; und des Einfrierens der nachgefüllten Menge an Wasser (8), bis die zum Herstellen des Eisstücks (7) vorbestimmte Menge an Wasser (8) zu dem Eisstück (7) gefroren ist. Die Erfindung betrifft außerdem einen Eisbereiter (1).
    • 该方法包括冷冻比用于制造用于通过冷冻水(8)相对于冰块传送开口(5)密封封盖(6)的冰块(7)预定的水量。 另外,在通过冷冻水密封冰块传送开口之后,通过填充口(4)将另一数量的水重新注入到受水室(2)中,直至达到制造冰块的水量为止。 将再填充量的水冷冻,直到制造冰块为预定的水量被冻结。 还包括一个独立的权利要求,一个制冰机包括一个水接收室。
    • 9. 发明公开
    • ICE CUBE APPARATUS
    • ICE立方体装置
    • EP1175584A1
    • 2002-01-30
    • EP00925729.6
    • 2000-04-26
    • Wiltoe Innovatie B.V.
    • KOSTER, Roelof
    • F25C1/06F25B21/04
    • F25B21/04F25C1/06F25C1/22F25C5/06F25C2305/022F25C2400/14
    • Ice cube apparatus for the production of ice cubes, comprising a water reservoir (1) with a filling opening (3), which can be filled with a desired amount of water, an ice-cube tray (10), which is separate from the water reservoir and has at least one mould cavity (11), water-metering means for supplying a metered amount of water from the water reservoir to the mould cavity, at least one thermoelectric element (15) for freezing the amount of water in the mould cavity, control means (21) with a timer unit for providing current to the thermoelectric element for a defined freezing time, in such a manner that this element extracts heat on the side of the ice-cube tray, release means for releasing a frozen ice cube from the ice-cube tray after the cube freezing time, and discharge means for collecting and discharging the ice cube which has been released from the ice-cube tray.
    • 一种用于制造冰块的冰块装置,包括具有能够填充所需量的水的填充开口(3)的储水器(1),冰块托盘(10),冰块托盘 并具有至少一个模腔(11),用于将计量量的水从储水器供应到模腔的计量装置,至少一个用于冷冻模具中的水量的热电元件(15) 具有定时器单元的空腔控制装置(21),该定时器单元用于在确定的冷冻时间内向热电元件提供电流,使得该元件在冰块盘的侧面提取热量;释放装置,用于释放冰冻冰 在立方体冷冻时间之后从立方体盘中取出立方体,以及用于收集和排出从方冰盘释放的方冰块的排出装置。
    • 10. 发明授权
    • LIQUID CHILLER
    • 冷水机组
    • EP0603182B1
    • 1998-03-04
    • EP92911026.0
    • 1992-06-11
    • PARADIS, Marc A.
    • PARADIS, Marc A.
    • F25B47/00F25C3/04F25C1/00F25C5/02F25C5/18F28D7/10F28F9/02
    • F28F9/0275F25B39/02F25B47/006F25B2339/0242F25C1/06F25C3/04F25C2303/048F25D31/00F28D7/16F28F9/0229F28F19/006Y02P60/855
    • A method of generating very cold liquid flows, comprising sending said liquid to a heat pump circuit; said circuit including a hot-side heat exchanger (HSHE) and a cold-side heat exchanger (CSHE); said CSHE being provided with conduit means through which said liquid flows; said conduit means being in contact with and being cooled externally by cold medium. The improvement in the method comprising the installation of proper thermal barriers between said cold medium and said liquid in all areas where the velocity of said liquid is much lower than the average velocity found inside said conduit means; said improvement also comprising proper design of the entrance of said conduit means to prevent flow detachment; said design preventing any freeze-up of said liquid as well as improving efficiency and durability. An alternative to the above said improvement is simply the elimination of all areas where the velocity of sais liquid is much lower than the average velocity found inside said conduit means. Other alternatives are proposed. Apparatus is disclosed for practicing the described method. The improvement in the method also comprises the capability to generate and manipulate supercooled liquids in a way that prevents liquid line and cooler freeze-ups. The improvement in the method also comprises new vapor compression cycles as well as new absorption cycle arrangements for better practicing the described method. Applications in very diversified fields are described. The technology is given the name 'SUPERPAC', which stands for 'SUPER Pompe A Chaleur', or super heat pump.