WO2016019601A1 - 一种冰箱 - Google Patents

一种冰箱 Download PDF

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Publication number
WO2016019601A1
WO2016019601A1 PCT/CN2014/084731 CN2014084731W WO2016019601A1 WO 2016019601 A1 WO2016019601 A1 WO 2016019601A1 CN 2014084731 W CN2014084731 W CN 2014084731W WO 2016019601 A1 WO2016019601 A1 WO 2016019601A1
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WO
WIPO (PCT)
Prior art keywords
metal connecting
connecting beam
compartment
compartments
door
Prior art date
Application number
PCT/CN2014/084731
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English (en)
French (fr)
Inventor
卢静霞
李利云
李宇
Original Assignee
海信容声(广东)冰箱有限公司
卢静霞
李利云
李宇
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 海信容声(广东)冰箱有限公司, 卢静霞, 李利云, 李宇 filed Critical 海信容声(广东)冰箱有限公司
Publication of WO2016019601A1 publication Critical patent/WO2016019601A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features

Definitions

  • the present invention relates to the technical field of electrical equipment, and more particularly to a refrigerator having a freezing compartment or a greenhouse having a freezing function.
  • Refrigerators are very common at home, used to refrigerate or freeze food, keep food fresh, to improve food storage cycle, to ensure food storage quality and quality of food.
  • the traditional refrigerator freezer is generally divided into upper and lower drawers, with less division of the area and easy odor. in order to The area is divided, the food is not scented, and the storage is more convenient.
  • the freezer compartment is usually divided into left and right.
  • the existing freezer compartment is generally an integral inner tank.
  • the left and right compartments are divided by the components formed by the injection molded parts and the foam parts, but the design makes the left and right compartments easy to warm and temperature independent. Not good, and the assembly of the injection molded part and the foam part in the middle of the left and right compartments is relatively expensive.
  • the prior art discloses a refrigerator, the cabinet of the refrigerator is composed of
  • the left and right inner linings are spliced together to form mutually independent compartments, and the left and right inner splicing forms are less expensive than the intermediate inner lining to increase the cost of the split structure, and the left and right compartments are independent. it is good.
  • the position of the metal connecting beam that joins the left and right inner liners has a problem of poor sealing and easy leakage.
  • a de-emulsion device is generally provided inside the metal connecting beam to achieve the anti-condensation requirement.
  • the front end of the injection molded part is provided with a metal connecting beam, and a de-emulsion device and a rubber sponge are sequentially arranged between the inner side of the metal connecting beam and the groove of the injection molded part, and the rubber sponge strip has a heat storage function, which can relatively reduce the temperature change of the metal connecting beam, but In the existing design, the rubber sponge is separated from the metal connecting beam, so that the anti-dew effect is general.
  • the present invention provides a method for overcoming the deficiencies of the prior art.
  • the maximum distance between the adjacent inner wall of the two compartments near the metal connecting beam is larger than the width of the metal connecting beam, which solves the problem that the position of the metal connecting beam is poorly sealed and easy to leak. .
  • the technical solution adopted by the present invention is:
  • a refrigerator comprising two adjacent compartments, the compartment comprising a separate inner casing, a door body and a door seal disposed on the door body, wherein the front end portion of the connection between the two compartments Metal connection beam, close to metal connection beam
  • the maximum distance between the adjacent inner wall of the two compartments is greater than the width of the metal connecting beam, the inner tank is connected to the metal connecting beam, and the inner sides of the metal connecting beam are connected When the door is closed, it is in contact with the door seal.
  • the metal connecting beam forms a magnetic seal with the door seal.
  • the maximum distance between the adjacent bladder walls of the two compartments is 10-20 mm larger than the width of the metal connecting beam.
  • the maximum distance between the adjacent bladder walls of the two compartments is greater than the width of the metal connecting beam by 14 mm.
  • the two compartments comprise a first compartment and a second compartment, the first compartment comprising a first bladder, a first door body and a connection for connecting the first door body and the first inner tank a first door seal;
  • the second chamber includes a second inner casing, a second door body, and a second door seal for connecting the second door body and the second inner casing.
  • the front end portions of the first inner tank and the second inner tank at the junction of the two compartments are provided with a groove structure
  • the dew removing device is disposed in the groove structure.
  • a rubber sponge strip is disposed between the groove structure of the first inner tank and the groove structure of the second inner liner, and the rubber sponge strip is in close contact with the inner side of the metal connecting beam.
  • the first compartment is a freezer compartment or a greenhouse
  • the second compartment is a freezer compartment or a greenhouse with a freezing function.
  • the first compartment is a freezing compartment or a variable greenhouse having a freezing function
  • the second compartment is a refrigerating compartment.
  • the dew removing device is a dew tube formed by bending a metal pipe segment.
  • the inner sides of the metal connecting beam are in contact with the door seal to form a contact surface when the door body is closed, the metal connecting beam When the door body is closed, it contacts the door seal to form a plane, and the contact surface is flush with the plane.
  • the present invention has the following beneficial effects:
  • a refrigerator comprising two adjacent compartments, the compartment comprising a separate inner casing, a door body and a door seal disposed on the door body, the front end portion of the two compartment connection being provided with a metal connection
  • the maximum distance between the adjacent liner walls of the two compartments near the metal connecting beam is greater than the width of the metal connecting beam, and the inner tank is connected with the metal connecting beam by providing two adjacent metal connecting beams.
  • the maximum distance between the walls of the liner is greater than the width of the metal connecting beam, so that when the inner tank is connected with the metal connecting beam, a certain width of the inner surface of the metal connecting beam needs to be formed.
  • FIG. 1 is a schematic cross-sectional view of a pair of door freezer compartments according to an embodiment.
  • Figure 2 is an enlarged schematic view of the partial I structure in Figure 1.
  • orientation or positional relationship of the 'top', 'bottom', 'inside', 'outside' and the like is based on the orientation or positional relationship shown in the drawings, and is merely for the convenience of describing the present invention and simplifying the description, rather than indicating or It is to be understood that the device or elements referred to have a particular orientation, are constructed and operated in a particular orientation, and thus the terms used to describe the positional relationship in the figures are for illustrative purposes only and are not to be construed as limiting.
  • Figure 1 shows an embodiment of a refrigerator of the present invention.
  • a refrigerator includes two adjacent compartments, and the compartment includes a separate inner liner 1, a door body 2, and a door seal 3, and the door seal 3 Located on the door body 2, the front end portion of the two compartment joints is provided with a metal connecting beam 4, and the maximum distance B between the adjacent inner wall walls of the two compartments near the metal connecting beam 4 is greater than the metal connecting beam 4. of The width value, when the door body 2 is closed, the magnetic attraction on the door seal 3 interacts with the metal connecting beam 4, and the door seal 3 is in contact with the inner liner 1 on both sides of the metal connecting beam 4, the metal connecting beam 4 Form a magnetic seal with the door seal 3.
  • the maximum distance B between the adjacent inner wall of the two compartments near the metal connecting beam 4 is greater than that of the metal connecting beam 4 Width value. Since the maximum distance value B between the two liner side walls adjacent to the metal connecting beam 4 is greater than the width value of the metal connecting beam 4, the inner tank 1 is connected to the metal connecting beam 4 When connecting, a certain width of the inner surface is formed on both sides of the metal connecting beam. When the door is closed, the inner surface of the inner surface is in contact with the door seal 3 to avoid direct connection of the cold air to the metal through the interior of the room. Contact, forming a certain cold air isolation zone, can effectively reduce the leakage problem caused by the cold air in the room directly contacting the metal connecting beam.
  • this embodiment is similar to Embodiment 1, except that The two compartments include a first compartment and a second compartment, the first compartment including a first inner casing 101, a first door body 201, and a first door seal 301 for connecting the first door body and the first inner casing
  • the second chamber includes a second bladder 102, a second door 202 and a second door seal 302 for connecting the second door and the second inner casing.
  • the refrigerator further includes a casing 8 which is installed in the casing 8 of the refrigerator.
  • the maximum distance between the first inner liner 101 and the second inner liner 102 near the adjacent inner wall of the metal connecting beam 4 B It is 10 ⁇ 20mm larger than the width of the metal connecting beam, that is, the distance A between the two side edges of the metal connecting beam 4 and the adjacent inner wall is 5 ⁇ 10mm.
  • the width is constant, if the distance between the inner walls of the bladder is too large, the effective volume of the compartment will be reduced and it will not be beautiful. On the contrary, if the distance between the walls of the bladder is too small, the above will not be achieved. Enhance compartment sealing and reduce the effect of metal connection beam on the inter-room cooling capacity.
  • the distance between the walls of the inner chambers 1 adjacent to the two compartments is 14 mm larger than the width of the metal connecting beam 4. .
  • the inner side of the metal connecting beam 4 is in contact with the door seal 3 when the door body 2 is closed, and the metal connecting beam 4 is in the door body 2 When closed, it forms a plane with the door seal 3, and the contact surface is flush with the plane, avoiding the door seal 3 and the inner tank 1 due to the sinking of the inner tank 1 than the connecting beam 4
  • the cooperation is not strict enough to reinforce the sealing performance when the freezer compartment is closed, which is more conducive to solving the problem of leakage.
  • the first inner casing 101 and the second inner casing 102 are provided with a groove structure at the front end portions of the two compartment joints.
  • the groove structure 7 is in close contact with the inner side of the metal connecting beam 4.
  • the distance between the rightmost end of the groove of the first liner 101 and the leftmost end of the groove of the second liner 102 is the minimum distance value C between the two liners.
  • the freezing chamber has a relatively low surface temperature during normal cooling, and is prone to condensation.
  • a defroster 5 is generally provided inside the metal connecting beam to achieve the anti-condensation requirement.
  • the first compartment and the second compartment are a freezing compartment or a variable greenhouse having a freezing function
  • the dewing device is installed in the groove structure of the first liner 101 and the groove structure of the second liner 102.
  • the defroster device 5 is a dew tube formed by bending a metal pipe section.
  • the dew pipe is close to the compressor, and the dew pipe is heated due to the higher temperature of the compressor side, and then the desuperheater is removed. Giving the metal to the beam so that The metal connecting beam maintains a relatively high temperature to prevent the water vapor in the outside air of the tank from condensing into dew at the metal connecting beam, thereby achieving the anti-condensation requirement.
  • the dew device 5 can also be a heating wire, which directly transfers heat to the metal connecting beam through the heating wire, so that The metal connection beam maintains a relatively high temperature and also meets the requirements for anti-condensation.
  • a rubber sponge strip 6 is provided between the groove structure of the first inner liner 101 and the groove structure of the second inner liner 102, and the rubber sponge strip 6 Adheres to the inside of the metal connecting beam 4.
  • This design is such that when the compressor is turned on, the temperature of the de-emulsion device 5 is high, so that the temperature of the metal connecting beam 4 rises, the groove structure of the first inner casing 101 and the second inner casing 102 The temperature of the rubber sponge strip 6 between the groove structure is also increased; when the compressor is stopped, the temperature of the dew device 5 is rapidly lowered, but the rubber sponge strip 6 has a heat storage function, which allows the metal to connect the beam The temperature is reduced at a slower rate to prevent condensation.
  • the metal connecting beam 4 includes a first connecting rod 401, a second connecting rod 402 and a third connecting rod 403.
  • the second connecting rod 402 and the third connecting rod 403 are vertically mounted on the first connecting rod 401 and are parallel, and the second connecting rod 402 and the third connecting rod 403 are respectively
  • the upper connecting rod 402 is engaged with the groove structure of the first inner casing 101
  • the third connecting rod 403 is engaged with the groove structure of the second inner casing 102.
  • the metal connecting beam 4 can be taken out at will; once the first inner tank 101 and the second inner tank 102 are foamed, the second connecting rod 402 is First liner The groove structure of the 101, the third connecting rod 403 and the groove structure of the second inner cylinder 102 are tightly engaged, so that the metal connecting beam 4 and the first inner casing 101 and the second inner casing 102 Fixed connection.
  • the first inner tank 101 and the second inner cylinder 102 are respectively engaged by the second connecting rod 402 and the 'S' hook provided on the third connecting rod 403. .
  • hooks of various shapes may be provided on the second connecting rod 402 and the third connecting rod 403 as long as the first inner casing 101 and the second inner casing 102 can be caught.
  • This embodiment is similar to the embodiment 2 except that the first compartment is a freezing compartment or a variable greenhouse having a freezing function, and the second compartment is a refrigerating compartment.
  • the dew-discharging device is installed in the groove structure of the first inner tank, and since the surface temperature of the refrigerating chamber is relatively high during normal cooling, condensation does not easily occur, so the groove structure of the second inner tank does not need to be installed. Dew device.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Refrigerator Housings (AREA)

Abstract

一种具有冷冻室或具有冷冻功能的变温室的冰箱,包括相邻的两个间室,所述间室包括独立的内胆(1)、门体(2)以及设置在门体(2)上的门封(3),所述两个间室连接处的前端部分设有金属连接梁(4),靠近金属连接梁(4)处的两个间室相邻的内胆壁之间的最大距离值大于所述金属连接梁(4)的宽度值,内胆(1)与金属连接梁(4)连接,通过设置金属连接梁(4)相邻的两个内胆壁之间的最大距离值大于金属连接梁的宽度值,使内胆(1)在与金属连接梁(4)连接时,需要在金属连接梁(4)两侧形成一定宽度的内胆面,当门体(2)关闭时,该内胆面与门封(3)相接触避免由于间室内部的冷空气直接与金属连接梁接触,形成了一定的冷气隔离带,可以有效解决漏冷问题。

Description

一种冰箱 技术领域
本发明涉及电器设备的技术领域,更具体地,涉及一种具有冷冻室或具有冷冻功能的变温室的冰箱。
背景技术
冰箱在家中已非常普遍,其用于冷藏或冷冻食物,保持食物新鲜,以提高食物存储周期,保证食物存放质量和食用质量。传统的冰箱冷冻室一般是上下抽屉分割,区域划分比较少,容易串味。为了 细化了区域划分,食物不串味,储物更方便。目前通常将冷冻室进行左右划分,现有的冷冻室一般是一个整体内胆,左右间室由注塑件和泡沫件形成的组件分割,但这样的设计使得左右间室容易窜温,温度独立性不好,同时左右间室中间的注塑件和泡沫件形成的组件成本较高。现有技术公开了一种冰箱,冰箱的箱体由 左右 内胆 拼接 在一起,形成相互独立的间室, 左右内胆拼接形式比整体内胆中间增加分割结构形式的成本要低,左右间室 独立性 好。然而,拼接左右内胆的金属连接梁位置存在着密封性较差,容易漏冷的问题。
另外,由于金属材料的导热性,冰箱在正常制冷时 金属连接梁的表面 温度比较低,容易产生凝露,而为防止其表面凝露,一般会在金属连接梁内侧设有除露装置,实现防凝露的要求。注塑件前端设有金属连接梁,金属连接梁内侧与注塑件凹槽之间依次设有除露装置和橡胶海绵,橡胶海绵条有蓄热功能,能够相对减少金属连接梁温度变化的速度,但在现有设计中橡胶海绵与金属连接梁相分开,使得防露效果一般。
发明内容
本发明为克服现有技术的不足,提供一种 冰箱,通过设置靠近金属连接梁处的两个间室相邻的内胆壁之间的最大距离值大于金属连接梁的宽度值, 解决了 金属连接梁位置密封性较差,容易漏冷的问题。
为解决上述技术问题,本发明采用的技术方案是:
一种冰箱,包括相邻的两个间室,所述间室包括独立的内胆、门体以及设置在门体上的门封,其特征在于,所述两个间室连接处的前端部分设有金属连接梁,靠近 金属连接梁 处的两个间室相邻的内胆壁之间的最大距离值大于所述金属连接梁的宽度值,所述内胆与所述金属连接梁连接,所述金属连接梁两侧的内胆在门体关闭时与门封相接触, 所述金属连接梁与所述门封形成磁封。
改进之一,所述两个间室相邻的内胆壁之间的最大距离值比所述金属连接梁的 宽度值大 10~20mm 。
优选地,所述两个间室相邻的内胆壁之间的最大距离值比所述金属连接梁的宽度值大 14mm 。
优选地,所述两个间室包括第一间室和第二间室,所述第一间室包括第一内胆、第一门体以及用于连接第一门体和第一内胆的第一门封;第二间室包括第二内胆、第二门体以及用于连接第二门体和第二内胆的第二门封。
优选地,所述第一内胆和第二内胆在所述两个间室连接处的前端部分均设有凹槽结构 ,所述凹槽结构内设有除露装置。
优选地, 所述第一内胆的凹槽结构与所述第二内胆的凹槽结构之间设有橡胶海绵条,所述橡胶海绵条紧贴所述金属连接梁的内侧。
优选地,所述第一间室为冷冻室或变温室,所述第二间室为冷冻室或 具有冷冻功能的变温室。
优选地,所述第一间室为冷冻室或具有冷冻功能的变温室,所述第二间室为冷藏室。
优选地, 所述除露装置为由金属管段弯制而成的除露管。
优选地, 所述 金属连接梁 两侧的内胆在门体关闭时与门封相接触形成接触面,所述 金属连接梁 在门体关闭时与门封相接触形成平面,所述接触面与平面平齐。
与现有技术相比,本发明具有如下有益效果:
本发明的 一种冰箱,包括相邻的两个间室,所述间室包括独立的内胆、门体以及设置在门体上的门封,所述两个间室连接处的前端部分设有金属连接梁,靠近金属连接梁处的两个间室相邻的内胆壁之间的最大距离值大于所述金属连接梁的宽度值,内胆与金属连接梁连接,通过设置金属连接梁相邻的两个内胆壁之间的最大距离值大于金属连接梁的宽度值,使内胆在与金属连接梁连接时,需要在金属连接梁两侧形成一定宽度的内胆面,当门体关闭时,该内胆面与门封相接触避免由于间室内部的冷空气直接与金属连接梁接触,形成了一定的冷气隔离带,可以有效的减弱因为间室内的冷空气直接和金属连接梁接触导致的漏冷问题。
附图说明
图 1 为实施例一种对开门冷冻室俯视截面示意图。
图 2 为图 1 中局部 I 结构放大示意图。
具体实施方式
下面结合具体实施方式对本发明作进一步的说明。
本发明实施例的附图中相同或相似的标号对应相同或相似的部件;在本发明的描述中,需要理解的是,若有术语'上'、'下'、'左'、'右'、'顶'、'底'、'内'、'外'等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此附图中描述位置关系的用语仅用于示例性说明,不能理解为对本专利的限制。
此外,若有'第一'、'第二'等术语仅用于描述目的,主要是用于区分不同的装置、元件或组成部分(具体的种类和构造可能相同也可能不同),并非用于表明或暗示所指示装置、元件或组成部分的相对重要性和数量,而不能理解为指示或者暗示相对重要性。
实施例 1
图 1 所示为本发明一种冰箱的实施例。
如图 1 所示,一种冰箱,包括相邻的两个间室,间室包括独立的内胆 1 、门体 2 以及门封 3 ,门封 3 位于门体 2 上,两个间室连接处的前端部分设有 金属连接梁 4 ,靠近 金属连接梁 4 处两个间室相邻的内胆壁之间的最大距离值 B 大于金属连接梁 4 的 宽度值,当门体 2 关闭时,门封 3 上的磁吸与 金属连接梁 4 相互作用紧贴在一起,同时门封 3 与 金属连接梁4 两侧的内胆 1 相接触,金属连接梁 4 与门封 3 形成磁封。
其中,靠近 金属连接梁 4 处两个间室相邻的内胆壁之间的最大距离值 B 大于金属连接梁 4 的 宽度值。由于与金属连接梁 4 相邻的两个内胆侧壁之间的最大距离值 B 大于金属连接梁 4 的宽度值 ,使内胆 1 在与金属连接梁 4 连接时,在金属连接梁两侧形成一定宽度的内胆面,当门体关闭时,该内胆面与门封 3 相接触避免由于间室内部的冷空气直接与金属连接梁 4 接触,形成了一定的冷气隔离带,可以有效的减弱因为间室内的冷空气直接和金属连接梁接触导致的漏冷问题。
实施例 2
如图 1 至 2 所示,本实施例与实施例 1 类似,所不同之处在于, 两个间室包括第一间室和第二间室,第一间室包括第一内胆 101 、第一门体 201 以及用于连接第一门体和第一内胆的第一门封 301 ;第二间室包括第二内胆 102 、第二门体 202 以及用于连接第二门体和第二内胆的第二门封 302 。冰箱还包括箱体外壳 8 ,两个间室安装于冰箱的箱体外壳 8 内。
其中,第一内胆 101 、第二内胆 102 靠近金属连接梁 4 处相邻的内胆壁之间的最大距离值 B 比金属连接梁的 宽度值大 10~20mm ,即金属连接梁 4 两侧边缘分别与相邻的内胆壁之间的距离值 A 为 5~10mm 。在金属连接梁 4 宽度一定的情况下,如果内胆壁之间的距离过大,会造成间室的有效体积减少,且不美观;相反,如果内胆壁之间的距离过小,就达不到上述 增强间室密封性和减少金属连接梁对间室内冷量传递的效果 。优选地,如图 2 所示,两个间室相邻的内胆 1 壁之间的距离值比金属连接梁 4 的 宽度值大 14mm 。
金属连接梁4 两侧的内胆 1 在门体 2 关闭时与门封 3 相接触形成接触面, 金属连接梁4 在门体 2 关闭时与门封 3 相接触形成平面,该接触面与平面平齐, 避免由于内胆 1 比连接梁 4 下陷而导致门封 3 与内胆 1 配合的不够严实,加固了冷冻室关闭时的密封性,更有利于解决漏冷问题。
另外,如图 2 所示,第一内胆 101 和第二内胆 102 在两个间室连接处的前端部分均设有凹槽结构 7 ,凹槽结构 7 紧贴金属连接梁 4 的内侧。第一内胆 101 凹槽的最右端与第二内胆 102 凹槽的最左端之间的距离值为两个内胆之间的最小距离值 C 。 冷冻室在正常制冷时其表面温度比较低,容易产生凝露,而为防止其表面凝露,一般会在金属连接梁内侧设有除露装置5,从而实现防凝露的要求。 如图 2 所示,第一间室和第二间室为冷冻室或 具有冷冻功能的变温室, 第一内胆 101 的凹槽结构与第二内胆 102 的凹槽结构中均安装有除露装置 5 。优选地,除露装置 5 为由金属管段弯制而成的除露管,实际中除露管靠近压缩机旁边,由于压缩机旁边温度较高,使得除露管受热,然后除露管传热给 金属连接梁 ,使 金属连接梁 处保持相对较高的温度,以避免箱体外界空气中的水蒸气在金属连接梁处遇冷而凝结成露水,从而实现防凝露的要求, 露水多的话,会顺冰箱门框流到地面,门框长期凝结露水,会使门框处的金属外壳生锈。另外, 除露装置 5 也可以为加热丝 ,通过加热丝直接传热给金属连接梁,使 金属连接梁 处保持相对较高的温度,同样达到防凝露的要求。
第一内胆 101 的凹槽结构与第二内胆 102 的凹槽结构之间设有橡胶海绵条 6 ,橡胶海绵条 6 紧贴金属连接梁 4 的内侧。这样设计使得当压缩机开机时,除露装置 5 温度较高,使得金属连接梁 4 温度升高,第一内胆 101 的凹槽结构与第二内胆 102 的凹槽结构之间设置的橡胶海绵条 6 温度也升高;当压缩机停机时,除露装置 5 温度迅速降低,但橡胶海绵条 6 有蓄热功能,能让 金属连接梁 温度降低的速度变慢,从而起到防凝露效果。
如图 2 所示,同时金属连接梁 4 包括第一连接杆 401 、第二连接杆 402 和第三连接杆 403 ,第二连接杆 402 和第三连接杆 403 均垂直安装于第一连接杆 401 且相平行,第二连接杆 402 和第三连接杆 403 上均设有与凹槽结构卡接的结构,第二连接杆 402 与第一内胆 101 的凹槽结构卡接,第三连接杆 403 与第二内胆 102 的凹槽结构卡接。当第一内胆 101 与第二内胆 102 未发泡时,第二连接杆 402 与第一内胆 101 的凹槽结构、第三连接杆 403 与第二内胆 102 的凹槽结构并没有紧紧的卡住,具有可活动性,此时金属连接梁 4 是可以随意取出的;一旦第一内胆 101 与第二内胆 102 发泡,第二连接杆 402 与第一内胆 101 的凹槽结构、第三连接杆 403 与第二内胆 102 的凹槽结构紧紧卡接,使金属连接梁 4 与第一内胆 101 、第二内胆 102 固定连接。本实施例中,通过第二连接杆 402 和第三连接杆 403 上设置的' S '挂钩分别卡接住第一内胆 101 、第二内胆 102 。除了本实施例外,第二连接杆 402 和第三连接杆 403 上可以设置多种形状的挂钩, 只要能卡住第一内胆 101 与第二内胆 102 即可 。
实施例 3
本实施例与实施例 2 类似,所不同之处在于, 第一间室为冷冻室或 具有冷冻功能的变温室,第二间室为冷藏室, 第一内胆的凹槽结构中安装有除露装置,而由于 冷藏室 在正常制冷时其表面温度相对较高,不容易产生凝露,所以第 二内胆的凹槽结构中不需安装除露装置。
显然,本发明的上述实施例仅仅是为清楚地说明本发明所作的举例,而并非是对本发明的实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明权利要求的保护范围之内。

Claims (10)

  1. 一种冰箱,包括相邻的两个间室,所述间室包括独立的内胆( 1 )、门体( 2 )以及设置在门体上的门封( 3 ),其特征在于,所述两个间室连接处的前端部分设有金属连接梁( 4 ),靠近 金属连接梁 ( 4 )处的两个间室相邻的内胆壁之间的最大距离值大于所述金属连接梁( 4 )的宽度值,所述内胆与所述金属连接梁连接,所述金属连接梁两侧的内胆( 1 )在门体( 2 )关闭时与门封( 3 )相接触,所述金属连接梁( 4 )与所述门封( 3 )形成磁封。
  2. 根据权利要求 1 所述的冰箱 ,其特征在于,所述两个间室相邻的内胆( 1 )壁之间的最大距离值比所述金属连接梁的 宽度值大 10~20mm 。
  3. 根据权利要求 2 所述的冰箱,其特征在于,所述两个间室相邻的内胆( 1 )壁之间的最大距离值比所述金属连接梁的 宽度值大 14mm 。
  4. 根据权利要求 1 至 3 任一项所述的冰箱,其特征在于,所述两个间室包括第一间室和第二间室,所述第一间室包括第一内胆( 101 )、第一门体( 201 )以及用于连接第一门体和 第一内胆的第一门封( 301 );第二间室包括第二内胆( 102 )、第二门体( 202 )以及用于连接第二门体和第二内胆的第二门封( 302 )。
  5. 根据权利要求 4 所述的冰箱,其特征在于,所述第一内胆( 101 )和第二内胆( 102 )在所述两个间室连接处的前端部分均设有凹槽结构 ( 7 ),所述凹槽结构( 7 )内设有除露装置( 5 )。
  6. 根据权利要求 5 所述的冰箱,其特征在于,所述第一内胆( 101 )的凹槽结构与所述第二内胆( 102 )的凹槽结构之间设有橡胶海绵条( 6 ),所述橡胶海绵条( 6 )紧贴所述金属连接梁( 4 )的内侧。
  7. 根据权利要求 6 所述的冰箱,其特征在于,所述第一间室为冷冻室或变温室,所述第二间室为冷冻室或 具有冷冻功能的变温室。
  8. 根据权利要求 6 所述的冰箱,其特征在于,所述第一间室为冷冻室或变温室,所述第二间室为冷藏室。
  9. 根据权利要求 5 所述的冰箱,其特征在于,所述除露装置( 5 )为由金属管段弯制而成的除露管。
  10. 如权利要求 1 所述的冰箱,其特征在于,所述 金属连接梁 两侧的内胆( 1 )在门体( 2 )关闭时与门封( 3 )相接触形成接触面,所述 金属连接梁 ( 4 )在门体( 2 )关闭时与门封( 3 )相接触形成平面,所述接触面与平面平齐。
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CN109307396A (zh) * 2018-11-16 2019-02-05 广东伊洛斯制冷科技有限公司 一种冷柜拼装结构
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