REFRIGERATOR
    31.
    发明公开
    REFRIGERATOR 审中-公开

    公开(公告)号:EP3467409A1

    公开(公告)日:2019-04-10

    申请号:EP17805503.4

    申请日:2017-02-23

    IPC分类号: F25D11/00

    摘要: The present invention provides a refrigerator, comprising: an adsorption container (20), an air compressor (30) and a nitrogen storage tank (50). A sealed storage space (11) is formed in a storage compartment of the refrigerator. The adsorption container (20) with carbon molecular sieves disposed therein is disposed in the storage compartment. The air compressor (30) is directly connected to the adsorption container through an air inlet pipe and configured to supply compressed air for the adsorption container in a controlled manner so as to allow the carbon molecular sieves to prepare nitrogen by means of the compressed air. A gas inlet end of the nitrogen storage tank (50) is connected to the adsorption container (20), and a gas outlet end thereof is communicated with the storage space (11). The content of oxygen in the storage space (11) is reduced. Thus, the freshness preservation performance of the refrigerator is improved.

    MULTIFUNCTIONAL CHAMBER AND REFRIGERATOR

    公开(公告)号:EP3187802B1

    公开(公告)日:2018-10-03

    申请号:EP15862878.4

    申请日:2015-05-30

    IPC分类号: F25D25/02 F25D17/04

    摘要: Provided is a multifunctional chamber (100) and a refrigerator. The chamber (100) comprises an inner container (300) and a door body (200), the inner container (300) being enclosed by a plurality of plate bodies, and the chamber (100) further comprises at least one opening (311), a moisture preserving module (303), an upper cover (310) and at least one air port (304); the opening (311) is provided in at least one of a plurality of plate bodies; and the moisture preserving module (303) is disposed at the opening (311), and the moisture preserving module (303) is used for regulating and controlling the humidity of the chamber (100). The upper cover (310) is movably disposed on the moisture preserving module (303); and the air port (304) is provided in at least one of a plurality of plate bodies and is used for discharging moisture from the chamber (100). When the chamber (100) is at a high-humidity mode, the upper cover (310) moves at the moisture preserving module (303) to expose the moisture preserving module (303); and when the chamber (100) is at a drying mode, the upper cover (310) completely covers the moisture preserving module (303). The chamber (100) can switch between the high-humidity mode and the drying mode according to the humidity requirements of the stored products, thereby achieving an object of flexibly adjusting the chamber environment and reducing the waste of chamber.

    SHELF SYSTEM AND CONTROL METHOD THEREOF
    35.
    发明公开

    公开(公告)号:EP3372929A1

    公开(公告)日:2018-09-12

    申请号:EP16861273.7

    申请日:2016-06-17

    IPC分类号: F25D25/02

    摘要: A shelf system (100) and control method thereof. The shelf system (100) comprises: a shelf main body (11), for storing articles; a weight sensing device (12), disposed on the shelf main body (11); a processor (13), connected to the weight sensing device (12), and for recording storage weight information of an article recorded on the weight sensing device (12) and article storage time information, and comparing the time information with a preset time region to determine an article state; and a display device (14) connected to the processor (13), and for displaying the weight information and article state of the article stored on the shelf main body (11). By the weight sensing device (12) acquiring article weight information, and recording article storage time information, and the processor (13) performing processing thereon and displaying in real time the article weight information and article state on the display device (14), the invention reminds a user of article placement information, preventing an article from spoiling.

    REFRIGERATOR, AND VENTILATION DOOR DEVICE THEREOF

    公开(公告)号:EP3367022A1

    公开(公告)日:2018-08-29

    申请号:EP16856627.1

    申请日:2016-06-08

    IPC分类号: F25D11/00

    摘要: A refrigerator (10), and ventilation door device (100) thereof. The ventilation door device (100) comprises: a bottom frame (110) provided with a ventilation opening (112); a door plate (120) disposed abutting the bottom frame (110), configured to shift in a parallel plane of the bottom frame (110) so as to adjust an area of the ventilation opening (112), and having, at a side opposite to the bottom frame (110), a guideway (122) forming a predetermined angle with respect to the shifting direction of the door plate (120); and an adjustment member (130) having a guide post (132) protruding toward the guideway (122), wherein the guide post (132) is movably inserted in the guideway (122), and upon moving of the adjustment member (130) in a direction perpendicular to the shifting direction of the door plate (120), the guide post (132) drives the door plate (120) to shift. The refrigerator (10) comprises storage compartments (101, 102, 103) and an air channel (300) and the ventilation door device (100) configured to deliver cooling air to the storage compartments (101, 102, 103). The bottom frame (110) is disposed in the air channel (300), and the cooling air flow rate of the air channel (300) is adjusted by adjusting the ventilation area of the ventilation opening (112).

    BRANCHING AIR SUPPLY DEVICE AND REFRIGERATOR WITH BRANCHING AIR SUPPLY DEVICE

    公开(公告)号:EP3343142A1

    公开(公告)日:2018-07-04

    申请号:EP16840652.8

    申请日:2016-06-08

    IPC分类号: F25D17/04 F25D11/02

    摘要: Provided are a branching air supply device (100) and a refrigerator with the branching air supply device (100). The branching air supply device (100) comprises: a housing (20), provided with at least one air inlet (21) and multiple air outlets (22); an adjusting piece (30), configured to completely shield, partially shield, or completely expose each air outlet (22) in a controlled mode, to adjust an air-outlet area of each of the multiple air outlets (22); and an air-feeding device (60), configured to enable airflow to flow into the housing (20) from at least one air inlet (21) and to flow out of the housing (20) from one or more of the multiple air outlets (22). The branching air supply device (100) and the refrigerator can conveniently adjust the flow path and the flow rate of cool air uniformly, and can improve the air supply efficiency.

    FREEZING AND COLD STORAGE DEVICE AND DEFROSTING CONTROL METHOD THEREFOR
    38.
    发明公开
    FREEZING AND COLD STORAGE DEVICE AND DEFROSTING CONTROL METHOD THEREFOR 审中-公开
    冷冻和冷藏装置及其分解控制方法

    公开(公告)号:EP3290837A1

    公开(公告)日:2018-03-07

    申请号:EP15890602.4

    申请日:2015-10-30

    IPC分类号: F25D21/06

    摘要: A freezing and cold storage device (1) and a defrosting control method therefor. The freezing and cold storage device (1) comprises a box body (100) and a door body (200). At least one storage chamber, an air supply passage for supplying cooling airflow to the storage chamber, a return air passage which is used for the airflow from the storage chamber to flow by, a cooling chamber (40) with an air supply opening portion and an air return opening portion and accommodating an evaporator (41), a fan (42) and a defrosting heater (43) and a defrosting air return passage (60) communicating the air supply opening portion and the air return opening portion of the cooling chamber (40) are defined in the box body (100). The air supply passage and the defrosting air return passage (60) are separately internally provided with an air supply valve and a defrosting air return valve (61) so as to selectively switch on and/or block the air supply passage and the defrosting air return passage (60). The defrosting control method comprises the steps of receiving a defrosting signal, starting a defrosting heater (43) disposed on an evaporator (41), closing an air supply valve, and opening a defrosting air return valve (61) so as to enable heat generated by the defrosting to circularly defrost the evaporator (41).

    摘要翻译: 一种冷冻和蓄冷装置(1)及其除霜控制方法。 冷冻冷藏装置(1)包括箱体(100)和门体(200)。 至少一个储存室,用于向储存室供应冷却气流的供气通道,用于使来自储存室的气流流过的返回气道,具有供气开口部的冷却室(40)以及 (41),风扇(42)和除霜加热器(43)以及除霜空气返回通道(60),所述除霜空气返回通道(60)连通所述冷却室的所述供气开口部分和所述空气返回开口部分 (40)被限定在箱体(100)中。 空气供给通路和除霜空气返回通路(60)分别在内部设置有空气供给阀和除霜空气回流阀(61),以选择性地接通和/或阻断空气供给通路和除霜空气返回 通道(60)。 除霜控制方法包括以下步骤:接收除霜信号;启动设置在蒸发器(41)上的除霜加热器(43);关闭空气供给阀;打开除霜空气回流阀(61),以便产生热量 通过除霜将蒸发器(41)循环除霜。

    SEMICONDUCTOR REFRIGERATOR
    40.
    发明公开
    SEMICONDUCTOR REFRIGERATOR 审中-公开
    HALBLEITERKÜHLSCHRANK

    公开(公告)号:EP3220081A4

    公开(公告)日:2017-10-04

    申请号:EP15869100

    申请日:2015-09-28

    IPC分类号: F25D19/00 F25B21/02

    摘要: A semiconductor refrigerator comprises a liner (100), at least one semiconductor refrigerating sheet and a plurality of cold-end heat exchanging devices (200). Each cold-end heat exchanging device (200) is configured to allow a refrigerant to flow and perform phase-change heat exchange in the cold-end heat exchanging device (200), so as to transfer cold at a cold end of the at least one semiconductor refrigerating sheet to a storage chamber of the liner (100). Each cold-end heat exchanging device (200) is provided with three refrigerant pipelines (20), each refrigerant pipeline (20) is provided with an evaporating segment (21) with a closed end that is bent and extended downwards in a vertical plane, and evaporating segments (21) of the three refrigerant pipelines (20) of each cold-end heat exchanging device (200) are respectively connected to a rear wall and two side walls of the liner (100) in a thermal manner. Because the plurality of cold-end heat exchanging devices (200) is provided, an effective heat exchange area of a thermal connection to the liner (100) of the refrigerator is enlarged significantly, and therefore energy efficiency of the semiconductor refrigerator is improved significantly.

    摘要翻译: 半导体致冷器包括衬里(100),至少一个半导体致冷片和多个冷端热交换装置(200)。 每个冷端热交换装置(200)构造成允许制冷剂流动并且在冷端热交换装置(200)中执行相变热交换,从而在至少一个冷端热交换装置 一个半导体制冷片连接到衬里(100)的储存室。 每个冷端热交换装置200设有三条制冷剂管道20,每条制冷剂管道20设有蒸发段21, 并且每个冷端热交换装置(200)的三个制冷剂管道(20)的蒸发段(21)分别以热方式连接到衬里(100)的后壁和两个侧壁。 由于设置了多个冷端热交换装置(200),与冰箱的衬里(100)的热连接的有效热交换面积显着增大,因此半导体致冷器的能量效率显着提高。