Refrigeration appliance with an ice container
    47.
    发明申请
    Refrigeration appliance with an ice container 有权
    具有冰箱的制冷设备

    公开(公告)号:US20170074574A1

    公开(公告)日:2017-03-16

    申请号:US14886255

    申请日:2015-10-19

    Abstract: A refrigeration appliance has a refrigerator compartment container and an ice container for providing ice. The refrigerator compartment container delimits a refrigerator compartment. A receiving niche for receiving the ice container is formed in an exterior of the refrigerator compartment container. The receiving niche has an opening to the refrigerator compartment, wherein an opening of the ice container and the opening of the receiving niche are aligned flush with one another. The ice container has a container outer wall, a container inner wall and a thermal insulation, which is arranged between the container inner wall and the container outer wall.

    Abstract translation: 制冷装置具有用于提供冰的冷藏室容器和冰​​容器。 冷藏室容器限定一个冷藏室。 在冷藏室容器的外部形成有用于容纳冰容器的收纳部。 所述接收区域具有到所述冷藏室的开口,其中,所述冰容器的开口和所述容纳孔的开口彼此齐平。 冰容器具有容器外壁,容器内壁和隔热件,其设置在容器内壁和容器外壁之间。

    Refrigerator
    48.
    发明授权
    Refrigerator 有权
    冰箱

    公开(公告)号:US07210308B2

    公开(公告)日:2007-05-01

    申请号:US10258130

    申请日:2000-12-28

    Abstract: By using a core made of laminated sheets of inorganic fibers having a particular shape and composition as part of a vacuum heat insulator for a heat insulation box, a heat insulation box excellent in long-term heat insulating properties and productivity can be provided. The vacuum heat insulator can be shaped easily. Therefore, a vacuum heat insulator suitable for a required heat insulation portion can be produced easily and applied to a heat insulation box. This property can increase coverage of the vacuum heat insulator on the heat insulation box, thus improving heat insulating properties of the heat insulation box. This can improve heat insulating properties and productivity of a refrigerator, thermal storage box, cold storage box, or vending machine, and contribute to energy savings.

    Abstract translation: 通过使用具有特定形状和组成的无机纤维的层叠片作为隔热箱的真空绝热体的一部分的芯,可以提供长期绝热性和生产率优异的隔热箱。 真空绝热体可以很容易地成型。 因此,能够容易地制造适合于所需的绝热部的真空绝热体,并将其施加到隔热箱。 这种性能可以增加绝热箱上真空绝热器的覆盖面,从而提高隔热箱的绝热性能。 这可以提高冰箱,储热箱,冷藏箱或自动售货机的隔热性能和生产率,并有助于节能。

    Vacuum insulating material and device using the same
    49.
    发明授权
    Vacuum insulating material and device using the same 有权
    真空绝热材料及使用其的装置

    公开(公告)号:US06938968B2

    公开(公告)日:2005-09-06

    申请号:US10258131

    申请日:2001-04-23

    Abstract: Vacuum heat insulator comprising a laminated core made of a plurality of sheets of inorganic fibers having 10 μm or smaller in diameter and a certain composition including SiO2 as a main component, Al2O3, CaO, and MgO, a gas barrier enveloping member, and an absorbent. The vacuum heat insulator is characterized by having at least one groove formed therein after fabrication of the vacuum heat insulator. Further, the vacuum heat insulator is characterized by using inorganic fiber core of which a peak of distribution in fiber diameter lies between 1 μm or smaller and 0.1 μm or larger, and not containing binding material for binding the fiber material. Electronic apparatuses use the vacuum heat insulator. With use of the vacuum heat insulator, electronic and electric apparatuses superior in energy saving and not to present uncomfortable feeling to the user can be provided.

    Abstract translation: 真空绝热体包括由直径10μm以下的多个无机纤维片构成的叠层铁芯,以及以SiO 2为主要成分的一定成分,Al 2 N 2 氧化铝,氧化镁,氧化镁,阻气性包封材料和吸收剂。 真空绝热器的特征在于在制造真空隔热件之后具有形成在其中的至少一个凹槽。 此外,真空绝热体的特征在于使用纤维直径分布的峰值在1μm以上0.1μm以下的无机纤维芯,不含粘合纤维材料的粘合材料。 电子设备使用真空绝热体。 通过使用真空绝热体,可以提供节能性优异且不给使用者带来不适感的电子电气装置。

    Membrane tanks
    50.
    发明授权

    公开(公告)号:US3150794A

    公开(公告)日:1964-09-29

    申请号:US18848162

    申请日:1962-04-18

    Abstract: 924,803. Storing liquefied gas. CONCH INTERNATIONAL METHANE Ltd. June 20, 1961, No. 22193/61. Class 8(2). A tank for liquefied gas, e.g. natural gas, nitrogen or helium, comprises a container constructed of dimpled, thin metal sheets surrounded by and supported on load-bearing surfaces which are part of a thermal insulation system, spaces between the outside of the dimples and the load-bearing surfaces being filled with a resilient filler, e.g. polyurethanes and polyvinyl chlorides, particularly of the foamed type, or resin bonded fibres such as glass fibres. As described a prismatic tank has a floor 9 and side walls 7 formed from dimpled stainless steel sheet fixed at 10 and 8, respectively, to plywood panels 5 and 4 which with further plywood panels 6 and 3 are bonded to balsa wood panels 2 and 1 of the insulation system. The corners between the floor and side walls are sealed by gutter-like, transversely corrugated strips 11. The resilient filler is shown as 13 between the floor and side walls 9 and 7 and the plywood panels 6 and 3. The space between the strips 11 and the panels 4 and 5 may also be filled with reslient filler. The metal sheet may, alternatively, be made of aluminium or its alloys or copper or its alloys and the thermal insulation may be quippo, cork, foamed plastics, glass, asbestos, jute fibres, mineral wool or cellular gypsum. The metal sheet may form a barrier round another vessel for the liquefied gas to prevent escape of the gas in case of rupture of that vessel; the dimples on the inside of metal sheet may in this case also be filled with resilient filler. Specifications 919,587, 924,801, 924,802 and 924,804 are referred to.

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