会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明公开
    • A COOLING DEVICE
    • EP3243029A1
    • 2017-11-15
    • EP16700389.6
    • 2016-01-05
    • Arçelik Anonim Sirketi
    • KAYA, UnsalAYNUR, Tolga NurettinTINAR, EgemenERTIS, Vasi KadirKARAKAYA, ErkanBASTAN, ErkanAYDIN, Ilyas
    • F25B5/00F25D17/06
    • F25D17/065F25B5/00F25B49/02F25B2600/2511F25B2700/2104F25D2700/122
    • The present invention relates to a cooling device (1) comprising a fresh food compartment (2) wherein the foodstuffs are placed to be cooled; a freezing compartment (3) that is kept at lower temperatures than the fresh food compartment (2) and wherein the foodstuffs are placed to be frozen; a compressor (4) that provides the compression of the refrigerant fluid; a condenser (5) that enables the refrigerant fluid leaving the compressor (3) to be condensed and thus to change into liquid phase; at least one fresh food compartment evaporator (6) that provides the cooling of the fresh food compartment (2) by performing heat transfer between the refrigerant fluid and the environment; at least one freezing compartment evaporator (7) that provides the cooling of the freezing compartment (3) by performing heat transfer between the refrigerant fluid and the environment; a first temperature sensor (8) that measures the temperature of the fresh food compartment for controlling the cooling process; and a second temperature sensor (9) that measures the temperature of the freezing compartment (3) for controlling the freezing process, wherein - a bypass line (12) that is disposed between the freezing compartment evaporator (7) and the fresh food compartment evaporator (6), - a second valve (13) that is disposed at the inlet of the bypass line (12), and - the control unit (11) that enables the refrigerant fluid leaving the freezing compartment evaporator (7) to pass through the second valve (13) to be delivered to the bypass line (12) or the compressor (4) according to the data received from the first temperature sensor (8) and the second temperature sensor (9).
    • 5. 发明公开
    • REFRIGERATOR
    • 冰箱
    • EP3232140A2
    • 2017-10-18
    • EP17165734.9
    • 2017-04-10
    • Dongbu Daewoo Electronics Corporation
    • Yang, Sung Jin
    • F25C1/10F25C1/22F25B5/02F25C5/00
    • F25C1/24F25B5/02F25B2600/2511F25C1/10F25C1/22F25C5/06F25C5/08F25C5/182F25C5/22F25C2400/10F25D17/04F25D2323/024
    • Refrigerator including an ice-making unit (30) disposed in the door (20) and being able to make ice through direct cooling by a refrigerant without using cold air flow. A cold air generation system circulates the refrigerant for supplying a cold air flow for the refrigerator. A refrigerant pipe (120) is installed in the refrigerator main body (10) to branch off some refrigerant from the cold air generation system. An ice-making pipe (110) is installed within the ice-making unit (30) and receives the refrigerant from the refrigerant pipe (120). Water freezes into ice through heat transfer between the ice-making unit (30) and the ice-making pipe (110) containing refrigerant. A soft pipe (130) is disposed around a hinge shaft of the refrigerator main body (10) and the door (20) and configured to interconnect the ice-making pipe (110) and the refrigerant pipe (120) in a twistable manner.
    • 冰箱包括设置在门(20)中的制冰单元(30),并且能够通过制冷剂的直接冷却来制冰,而不使用冷气流。 冷空气产生系统使制冷剂循环以供应冰箱的冷气流。 制冷剂管道(120)安装在冰箱主体(10)中以从冷空气生成系统分流一些制冷剂。 制冰管(110)安装在制冰单元(30)内并接收来自制冷剂管(120)的制冷剂。 水通过制冰单元(30)和含有制冷剂的制冰管(110)之间的热传递而冰冻成冰。 软管(130)设置在冰箱主体(10)的铰链轴和门(20)的周围,并且被构造成以可扭转的方式将制冰管(110)和制冷剂管(120)互连。
    • 7. 发明公开
    • REFRIGERATOR
    • 冰箱
    • EP3104105A3
    • 2017-03-29
    • EP16172852.2
    • 2016-06-03
    • LG ELECTRONICS INC.
    • KIM, HyuksoonLEE, Suwon
    • F25D11/02F25B41/06F25B5/02
    • F25B49/02F25B5/02F25B41/04F25B41/067F25B2341/0661F25B2600/25F25B2600/2511F25B2700/02F25B2700/2104F25B2700/2106F25D11/022F25D21/04F25D2700/12F25D2700/122F25D2700/14
    • The present disclosure provides a refrigerator including a compressor (160), a condenser (161), a refrigerating chamber evaporator (181), a freezing chamber evaporator (182);
      a first capillary (212a') and a second capillary (212b') configured to reduce a pressure of refrigerant connected to the freezing chamber evaporator (182) to form refrigerant passages distinguished from each other;
      a third capillary (212c') configured to reduce a pressure of refrigerant connected to the refrigerating chamber evaporator (181) to form a refrigerant passage; and
      a 4-way valve (200) provided with an inlet connected to the condenser (161), and a first through a third outlet (212a, 212b, 212c) connected to the first through the third capillary to selectively distribute refrigerant to at least one of the first through the third capillary (212a' - 212c') according to the opening and closing of the first through the third outlet (212a - 212c).
    • 本发明提供一种冰箱,其包括压缩机160,冷凝器161,冷藏室蒸发器181,冷冻室蒸发器182, 第一毛细管(212a')和第二毛细管(212b'),所述第一毛细管(212a')和第二毛细管(212b')被配置为降低连接到所述冷冻室蒸发器(182) 第三毛细管(212c'),所述第三毛细管(212c')构造成降低连接到所述冷藏室蒸发器(181)的制冷剂的压力以形成制冷剂通道; 和设置有连接到冷凝器(161)的入口的四通阀(200)以及连接到第一到第三毛细管以选择性地将制冷剂选择性地分配到第一到第三出口(212a,212b,212c) 根据第一至第三出口(212a-212c)的打开和关闭而形成第一至第三毛细管(212a'至212c')中的一个。
    • 8. 发明公开
    • REFRIGERATION SYSTEM INCLUDING EVAPORATORS ASSOCIATED IN PARALLEL
    • KÜHLSYSTEMMIT并行VERBUNDENEN VERDAMPFERN
    • EP3121540A1
    • 2017-01-25
    • EP16179277.5
    • 2016-07-13
    • Whirlpool S.A.
    • Thiessen, Marcio Roberto
    • F25B5/02F25B31/00
    • F25B5/02F25B31/002F25B2500/01F25B2600/2511F25D11/022
    • The present invention belongs to the technological field of refrigeration systems and, more particularly refrigeration systems used in residential applications, for example, refrigeration appliances comprising at least two climate chambers at different temperatures. Conventionally, existing Refrigeration systems including evaporators connected in parallel require complex compressors comprising at least two suction paths, or alternatively functional complex arrangements unable to maintain independence between the individual evaporators. Disclosed is a refrigeration system including evaporators (51,52) connected in parallel where each of said evaporators operates through a separate feeding principle, and that this aspect makes it possible, with the aid of a liquid accumulator (6) and phase separator, maintaining the independence between the individual evaporators, besides the use of a compressor (1).
    • 本发明属于制冷系统的技术领域,尤其是住宅应用中使用的制冷系统,例如在不同温度下包括至少两个气候室的制冷设备。 通常,包括并联连接的蒸发器的现有制冷系统需要复杂的压缩机,该压缩机包括至少两个吸入路径,或者不能维持各个蒸发器之间的独立性的功能复合装置。 公开了一种包括并联连接的蒸发器(51,52)的制冷系统,其中每个所述蒸发器通过单独的进料原理操作,并且该方面使得可以借助于储液器(6)和相分离器维持 除了使用压缩机(1)之外,各个蒸发器之间的独立性。