WO2015043483A1 - 冰箱的组装方法 - Google Patents

冰箱的组装方法 Download PDF

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Publication number
WO2015043483A1
WO2015043483A1 PCT/CN2014/087432 CN2014087432W WO2015043483A1 WO 2015043483 A1 WO2015043483 A1 WO 2015043483A1 CN 2014087432 W CN2014087432 W CN 2014087432W WO 2015043483 A1 WO2015043483 A1 WO 2015043483A1
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WO
WIPO (PCT)
Prior art keywords
refrigerator
exhaust pipe
pipe
casing
insulation panel
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2014/087432
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English (en)
French (fr)
Inventor
曾凡君
胡敏辉
高鸿鹄
刘磊
郑桥
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Haier Group Corp
Qingdao Haier Co Ltd
Original Assignee
Haier Group Corp
Qingdao Haier Co Ltd
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Publication date
Application filed by Haier Group Corp, Qingdao Haier Co Ltd filed Critical Haier Group Corp
Publication of WO2015043483A1 publication Critical patent/WO2015043483A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • F25D23/00General constructional features
    • F25D23/06Walls
    • F25D23/062Walls defining a cabinet
    • 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
    • F25D23/006General constructional features for mounting refrigerating machinery components
    • 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
    • F25D21/00Defrosting; Preventing frosting; Removing condensed or defrost water
    • F25D21/04Preventing the formation of frost or condensate
    • 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
    • F25D2201/00Insulation
    • F25D2201/10Insulation with respect to heat
    • F25D2201/14Insulation with respect to heat using subatmospheric pressure

Definitions

  • the invention relates to a method of assembling a refrigerator.
  • the refrigerator is a refrigeration device that maintains a constant low temperature.
  • the method for installing a vacuum insulation panel of a refrigerator includes: 1) disposing a condenser on an outer surface of the refrigerator casing; 2) filling the filler into a receiving groove of the vacuum insulation panel; and 3) The vacuum insulation panel is mounted to an inner surface of the refrigerator casing, and the condenser is housed in the accommodation groove to eliminate air in the accommodation groove by the filler.
  • the refrigerator fills the gap around the condenser by the filling provided, since the air around the condenser cannot be discharged due to the previous case, the air around the condenser still exists, thereby causing a gap to exist, thereby causing the refrigerator case.
  • An object of the present invention is to provide an assembly method of a refrigerator which can effectively eliminate air around a condensing duct during assembly and prevent separation of a refrigerator casing and a vacuum panel.
  • the present invention adopts the following technical solution: a method for assembling a refrigerator, comprising the following steps:
  • the vacuum insulation panel is fixed on the inner side of the refrigerator casing, wherein the condensation pipe and the exhaust pipe are located between the vacuum insulation panel and the refrigerator casing;
  • Foaming is performed on the side of the vacuum insulation panel away from the outer casing of the refrigerator to press the vacuum insulation panel toward the outer casing of the refrigerator until a foamed layer is formed.
  • the exhaust pipe and the condensation pipe are arranged side by side and abut against each other.
  • the exhaust pipe abuts against the outer casing of the refrigerator.
  • the vacuum insulation panel is provided with a storage groove for accommodating the condensation pipe and the exhaust pipe.
  • the condensing duct includes a straight line section extending in the height direction of the refrigerator casing.
  • the exhaust pipe and the straight section of the condensing pipe are disposed one on one.
  • the intake port of the exhaust pipe is located below the middle portion of the straight section of the condensing duct.
  • the exhaust pipe is fixed to the inner side of the refrigerator casing by an adhesive tape.
  • the diameter of the exhaust pipe is not greater than the diameter of the condenser.
  • the condensation tube is fixed to the inside of the refrigerator casing by an adhesive tape, and the refrigerator casing is fixed to the vacuum insulation panel by tape.
  • the utility model has the beneficial effects that: in the assembly method of the refrigerator, by providing an exhaust pipe and abutting the air inlet of the exhaust pipe against the condensing pipe, the air around the condensing pipe can be effectively eliminated, thereby preventing assembly
  • the refrigerator casing is separated from the vacuum insulation panel.
  • FIG. 1 is a partial structural view of a refrigerator in a specific embodiment of the present invention.
  • Figure 2 is an exploded view of Figure 1.
  • Figure 3 is a schematic view showing the structure of a cross-sectional view taken along line A-A of Figure 1;
  • FIG. 4 is an enlarged view of a circle B in FIG. 3.
  • Fig. 5 is a structural view showing still another part of the refrigerator in the embodiment of the present invention.
  • a refrigerator according to an embodiment of the present invention includes a box body and a door body (not shown) disposed on the opening side of the box body to close or open the box body.
  • the casing includes a liner (not shown) and a refrigerator frame, an air-conditioning circuit, and a venting member 1 that are coated on the outer side of the inner casing.
  • the refrigerator rack body includes a refrigerator casing 2, a bottom steel 5 disposed at the bottom of the refrigerator casing 2, a vacuum insulation panel 3 disposed inside the refrigerator casing 2, and a foam layer (not shown).
  • the refrigerator casing 2 is U-shaped and includes a top wall 21 and two side walls 22 on both sides of the top wall 21.
  • the vacuum insulation panel 3 is disposed inside the two side walls 22 between the side wall 22 and the foam layer.
  • the vacuum insulation panel 3 is fixed to the refrigerator casing 2 by an adhesive tape 6.
  • the cold air circuit includes a condenser disposed in the refrigerator frame.
  • the condenser is connected by a plurality of sections of the condenser tube 4.
  • the condensing duct 4 abuts against the outer casing 1 of the refrigerator to facilitate heat dissipation of the condensing duct 4.
  • the condensing duct 4 is fixed to the inside of the refrigerator casing 2 by an adhesive tape 6 which is disposed between the side wall 22 and the vacuum heat insulating panel 3.
  • the condensing duct 4 includes an inner condensing duct 41 disposed between the refrigerator casing 2 and the vacuum heat insulating panel 3, and an outer condensing duct 42 not disposed between the refrigerator casing 2 and the vacuum heat insulating panel 3.
  • the inner condenser tube 41 is a straight line segment extending in the height direction of the refrigerator. It is true that the inner condensing duct 41 may further include a part of the bent section, or may be a straight section extending in the width direction of the refrigerator, or may include a bent section connecting the straight sections.
  • the exhausting member 1 is an exhaust pipe.
  • the exhaust pipe 1 includes an intake port 11 and an air outlet 12 disposed opposite to the intake port 11.
  • the intake port 11 abuts against the inner condenser tube 41 to discharge the air around the inner condenser tube 41 to the outside of the refrigerator. Since the air inlet 11 of the exhaust pipe 1 is disposed against the inner condensing pipe 41, when the foaming material presses the vacuum heat insulating plate 3 to move the vacuum heat insulating plate 3 toward the refrigerator casing 2 during the foaming process, the original surrounding The air around the inner condensing duct 41 will concentrate toward the intake port 11 of the exhaust pipe 1 and be exhausted through the exhaust pipe 1.
  • the intake port 11 is disposed below the middle portion of the inner condensing duct 41.
  • the air outlet 12 of the exhaust pipe 1 is disposed at one side of the bottom steel 5 of the refrigerator.
  • the exhaust pipe 1 and the inner condensation pipe 41 are arranged side by side and abut against each other.
  • the exhaust pipe 1 and the inner condenser pipe 41 are disposed one on one.
  • the diameter of the exhaust pipe 1 is not larger than the diameter of the inner condenser pipe 41.
  • the diameter of the exhaust pipe 1 is the same as the diameter of the inner condenser tube 41, and in other embodiments, the diameter of the exhaust pipe 1 may also be smaller than the diameter of the inner condenser tube 41.
  • the exhaust pipe 1 abuts against the refrigerator casing 2.
  • the exhaust pipe 1 is fixed to the inner side of the refrigerator casing 2 by an adhesive tape 6.
  • the vacuum insulation panel 3 is provided with a housing groove 31 having an opening facing the side wall 11.
  • the exhaust pipe 1 and the inner condenser 41 are housed in the housing groove 31 of the vacuum insulation panel 3. It is a matter of course that since the vacuum insulation panel 3 itself has a certain elasticity, the storage tray 31 may not be provided on the vacuum insulation panel 3.
  • the inner condensing duct 41 includes a straight section and a bent section, and the exhaust pipe 1 is disposed in a one-to-one relationship with the straight section of the inner condensing duct 41.
  • the intake port 11 of the exhaust pipe 1 is located below the middle portion of the straight section of the inner condenser pipe 41.
  • a method for assembling a refrigerator includes steps S1 to S4.
  • the refrigerator casing 2 is U-shaped and includes a top wall 21 and two side walls 22 on both sides of the top wall 21.
  • the condenser includes an inner condenser tube 41 and an outer condenser tube 42 that are connected to each other.
  • the diameter of the exhaust pipe 1 is not larger than the diameter of the inner condenser pipe 41. In the present embodiment, the diameter of the exhaust pipe 1 is the same as the diameter of the inner condenser tube 41, and in other embodiments, the diameter of the exhaust pipe 1 may also be smaller than the diameter of the inner condenser tube 41.
  • the inner condensing pipe 41 and the exhaust pipe 1 are fixed to the inner side of the refrigerator casing 2, wherein the inner condensing pipe 41 abuts against the refrigerator casing 1, and the exhaust pipe 1 has an air inlet 11 and an air outlet 12 And the air inlet 11 is placed against the inner condenser tube 41.
  • the intake port 11 of the exhaust pipe 1 is located below the middle portion of the inner condenser pipe 41.
  • the outer condenser tube 42 is placed against the inner side of the refrigerator casing 1 while the inner condenser tube 41 is placed against the inner side of the refrigerator casing 1.
  • the inner condensing duct 41 is disposed only on the two side walls 22 of the refrigerator casing 1, and the inner condensing duct 41 is in the height direction of the refrigerator casing (that is, equivalent to the height direction of the refrigerator after assembly). A straight line segment that extends upward.
  • each of the side walls 22 is provided with two inner condensation tubes 41.
  • the outer condensing duct 42 is disposed on the top wall 21 and the side wall 22 of the refrigerator casing 1, and the portion thereof is disposed in a straight line section or partially in a bent section.
  • the exhaust pipe 1 and the inner condensing pipe 41 are arranged side by side and abut against each other, and the exhaust pipe 1 simultaneously abuts against the refrigerator casing 2.
  • the exhaust pipe 1 and the inner condenser pipe 41 are disposed one on one. Both the exhaust pipe 1 and the condensing pipe 4 are fixed to the inner side of the refrigerator casing 2 by an adhesive tape 6.
  • the inner condensing duct 41 includes a straight section and a bent section, and the exhaust pipe 1 and the straight section of the inner condensing duct 41 are disposed one on one.
  • the intake port 11 of the exhaust pipe 1 is located below the middle portion of the straight section of the inner condenser pipe 41.
  • the assembly manner between the exhaust pipe 1, the condensing pipe 4 and the refrigerator casing 2 is not fixed, and the condensing pipe 4 is generally arranged on the refrigerator casing 2 first. Then, the position of the exhaust pipe 1 corresponding to the inner condensing pipe 41 of the condensing pipe 4 is arranged on the refrigerator casing 2, and finally the condensing pipe 4 and the exhaust pipe 1 are fixed by the tape 6.
  • other assembly sequences such as fixing the condensing tube 4 and the exhaust pipe 1 first, and then fixing to the refrigerator casing 2 may be employed.
  • the vacuum insulation panel 3 is fixed to the refrigerator casing 1 by an adhesive tape 6.
  • the vacuum insulation panel 3 is provided with a housing groove 31.
  • the receiving groove 31 faces the refrigerator casing 2 at the time of assembly. After the vacuum insulation panel 3 is fixed to the refrigerator casing 2, the inner condensation pipe 41 and the exhaust pipe 1 are housed in the accommodation groove 31.
  • the air inlet 11 of the exhaust pipe 1 is placed against the inner condensation pipe 41
  • the air around the inner condensation pipe 41 can be effectively eliminated, thereby preventing the refrigerator casing.
  • 2 is separated from the vacuum insulation panel 3.
  • the assembly method of the refrigerator by providing the exhaust pipe 1 and abutting the intake port 11 of the exhaust pipe 1 against the inner condenser pipe 41, the air around the inner condenser pipe 41 can be effectively eliminated, thereby preventing assembly.
  • the refrigerator casing 2 is separated from the vacuum insulation panel 3.

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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

提供了一种冰箱的组装方法,其包括以下步骤:提供冰箱外壳(2)、冷凝管(4)及排气管(1);将冷凝管(4)和排气管(1)固定在冰箱外壳(2)的内侧,其中将冷凝管(4)贴靠在冰箱外壳(2)上,排气管(1)具有进气口(11),且将进气口(11)贴靠冷凝管(4)设置;提供真空绝热板(3),将真空绝热板(3)固定在冰箱外壳(2)的内侧,其中冷凝管(4)和排气管(1)位于真空绝热板(3)和冰箱外壳(2)之间;在真空绝热板(3)远离冰箱外壳(2)的一侧进行发泡,以使真空绝热板(3)朝冰箱外壳(2)的方向挤压直至形成发泡层。该组装方法能有效地消除冷凝管(4)周边的空气,进而防止组装后的冰箱外壳(2)与真空绝热板(3)分离。

Description

冰箱的组装方法
【技术领域】
本发明涉及一种冰箱的组装方法。
【背景技术】
冰箱为保持恒定低温的一种制冷设备。中国专利申请第CN201210529459 号公开了一种冰箱的真空隔热板的安装方法包括:1)将冷凝器设置在冰箱壳体的外表面上;2)将填充物填入真空隔热板的容纳槽内;和3)将所述真空隔热板安装到所述冰箱壳体的内表面上,且所述冷凝器容纳在所述容纳槽内以通过所述填充物消除所述容纳槽内的空气。虽然该冰箱通过设置的填充物来填充冷凝器周边的间隙,但是,由于该前案无法将冷凝器周边的空气排出,所以冷凝器周边的空气仍存在,从而导致有间隙存在,进而导致冰箱壳体与真空隔热板分层的问题。又,在安装的时候,填充物与壳体、真空隔热板之间也可能存在空气。除此以外,该种结构在实施过程中,需要填充物在冷凝器的纵长方向上完全包覆冷凝器,所以其成本较高。
有鉴于此,有必要对现有的冰箱的组装方法予以改进以解决上述问题。
【发明内容】
本发明的目的在于提供一种在组装的过程中能有效消除冷凝管周边空气,防止冰箱外壳和真空板分离的冰箱的组装方法。
为实现前述目的,本发明采用如下技术方案:一种冰箱的组装方法,包括如下步骤:
提供冰箱外壳、冷凝管及排气管;
将冷凝管和排气管固定在冰箱外壳的内侧,其中将所述冷凝管贴靠在冰箱外壳上,所述排气管具有进气口,且将所述进气口贴靠冷凝管设置;
提供真空绝热板,将真空绝热板固定在冰箱外壳的内侧,其中,所述冷凝管和排气管位于真空绝热板和冰箱外壳之间;
在真空绝热板远离冰箱外壳的一侧进行发泡以使真空绝热板朝冰箱外壳的方向挤压直至形成发泡层。
作为本发明的进一步改进,所述排气管与冷凝管之间呈并排且贴靠设置。
作为本发明的进一步改进,所述排气管贴靠冰箱外壳。
作为本发明的进一步改进,所述真空绝热板上设置有用以收纳冷凝管和排气管的收纳槽。
作为本发明的进一步改进,所述冷凝管包括沿冰箱外壳的高度方向上延伸的直线段。
作为本发明的进一步改进,所述排气管与冷凝管的直线段呈一对一设置。
作为本发明的进一步改进,所述排气管的进气口位于所述冷凝管的直线段的中段偏下。
作为本发明的进一步改进,所述排气管通过胶带固定在冰箱外壳的内侧。
作为本发明的进一步改进,所述排气管的直径不大于冷凝管的直径。
作为本发明的进一步改进,所述冷凝管通过胶带固定在冰箱外壳的内侧,所述冰箱外壳与真空绝热板之间通过胶带固定。
本发明的有益效果是:在冰箱的组装方法中,通过提供排气管,并将该排气管的进气口贴靠冷凝管,从而能有效的消除冷凝管周边的空气,进而防止组装后的冰箱外壳与真空绝热板分离。
【附图说明】
图1为本发明具体实施方式中冰箱的部分结构图。
图2为图1的爆炸图。
图3为图1中A-A向的剖视图部分的结构示意图。
图4为图3中圆圈B的放大图。
图5为本发明具体实施方式中冰箱的又一部分的结构图。
【具体实施方式】
请参见图1、图2及图5,本发明一实施例中的冰箱包括箱体和设置在箱体开口侧以封闭或者开启箱体的门体(未图示)。所述箱体包括内胆(未图示)和包覆在内胆外侧的冰箱架体、冷气回路及排气件1。
所述冰箱架体包括冰箱外壳2、设置在冰箱外壳2底部的底钢5、设置在冰箱外壳2内侧的真空绝热板3及发泡层(未图示)。所述冰箱外壳2呈U型,其包括顶壁21、和位于顶壁21两侧的两侧壁22。所述真空绝热板3设置在两侧壁22的内侧,位于侧壁22与发泡层之间。所述真空绝热板3通过胶带6固定在冰箱外壳2上。
请参见图1和图2,所述冷气回路包括设置在冰箱架体内的冷凝器。所述冷凝器由若干段冷凝管4连接而成。所述冷凝管4贴靠在冰箱外壳1上以便于冷凝管4散热。所述冷凝管4通过胶带6固定在冰箱外壳2的内侧,其中部分冷凝管4设置在侧壁22和真空绝热板3之间。
所述冷凝管4包括设置在冰箱外壳2和真空绝热板3之间的内冷凝管41及未设置在冰箱外壳2和真空绝热板3之间的外冷凝管42。在本实施例中,所述内冷凝管41为沿冰箱的高度方向上延伸的直线段。诚然,该内冷凝管41还可以包括一部分折弯段,或也可以为沿冰箱的宽度方向上延伸的直线段,又或包括连接直线段的折弯段。
请参见图1、图2及图5,所述排气件1为排气管。所述排气管1包括进气口11和与所述进气口11相对设置的出气口12。所述进气口11贴靠内冷凝管41以将内冷凝管41周边的空气排至冰箱外部。由于排气管1的进气口11贴靠内冷凝管41设置,所以,当在发泡过程中,发泡材料挤压真空绝热板3使真空绝热板3朝冰箱外壳2移动时,原本围绕在内冷凝管41周边的空气将集中朝排气管1的进气口11方向流动,并通过排气管1排出。为了更好的使内冷凝管41周边的空气排出,将所述进气口11设置在位于所述内冷凝管41的中段偏下。所述排气管1的出气口12设置在冰箱的底钢5的一侧。
请参见图2和图4,所述排气管1与内冷凝管41之间呈并排且贴靠设置。所述排气管1与内冷凝管41呈一对一设置。所述排气管1的直径不大于内冷凝管41的直径。在本实施例中,所述排气管1的直径与内冷凝管41的直径相同,而在其他实施方式中,该排气管1的直径也可以小于内冷凝管41的直径。所述排气管1贴靠冰箱外壳2。排气管1通过胶带6固定在冰箱外壳2的内侧。在本实施例中,所述真空绝热板3上设置有开口朝向侧壁11的收纳槽31。排气管1与内冷凝管41收容在真空绝热板3的收纳槽31内。诚然,由于真空绝热板3本身具有一定的弹性,所以,该真空绝热板3上也可以不设置收纳槽31。
在其他实施方式中,该内冷凝管41包括平直段和折弯段,所述排气管1与内冷凝管41的平直段呈一对一设置。所述排气管1的进气口11位于内冷凝管41的平直段的中段偏下。
请参见图1至图5,一种冰箱的组装方法包括步骤S1至S4。
S1:提供冰箱外壳2、冷凝器及排气管1。在该步骤中,所述冰箱外壳2呈U型,其包括顶壁21、和位于顶壁21两侧的两侧壁22。所述冷凝器包括相互连接的内冷凝管41和外冷凝管42。所述排气管1的直径不大于内冷凝管41的直径。在本实施例中,所述排气管1的直径与内冷凝管41的直径相同,而在其他实施方式中,该排气管1的直径也可以小于内冷凝管41的直径。
S2:将内冷凝管41和排气管1固定在冰箱外壳2的内侧,其中所述内冷凝管41贴靠在冰箱外壳1上,所述排气管1具有进气口11和出气口12,且所述进气口11贴靠内冷凝管41设置。所述排气管1的进气口11位于内冷凝管41的中段偏下。在本步骤中,在将内冷凝管41贴靠冰箱外壳1的内侧的同时,将所述外冷凝管42贴靠在冰箱外壳1的内侧。在本实施方式中,所述内冷凝管41仅设置在冰箱外壳1的两侧壁22上,且内冷凝管41为沿冰箱外壳的高度方向(即等同于组装完成后的冰箱的高度方向)上延伸的直线段。在本实施例中,每个侧壁22上设置有两段内冷凝管41。所述外冷凝管42设置在冰箱外壳1的顶壁21及侧壁22上,其部分呈直线段或者部分呈弯折段设置。
在本步骤中,所述排气管1与内冷凝管41之间呈并排且贴靠设置,并且排气管1同时贴靠冰箱外壳2。所述排气管1与内冷凝管41呈一对一设置。所述排气管1和冷凝管4均通过胶带6固定在冰箱外壳2的内侧。
诚然,该内冷凝管41包括平直段和折弯段,所述排气管1与内冷凝管41的平直段呈一对一设置。所述排气管1的进气口11位于内冷凝管41的平直段的中段偏下。
在此需要说明的是:在本步骤中,排气管1、冷凝管4及冰箱外壳2之间的装配方式没有固定的先后顺序,一般为先将冷凝管4排布在冰箱外壳2上,然后再将排气管1对应冷凝管4的内冷凝管41的位置排布在冰箱外壳2上,最后用胶带6将冷凝管4、排气管1固定。当然,在其他实施方式中,还可以采用先将冷凝管4和排气管1固定,然后再固定到冰箱外壳2上等其他装配顺序。
S3:提供真空绝热板3,将真空绝热板3固定在冰箱外壳2的内侧,其中,步骤S2中已安装在冰箱外壳2上的内冷凝管41和排气管1位于真空绝热板3和冰箱外壳2之间。该真空绝热板3通过胶带6固定在冰箱外壳1上。在本实施方式中,所提供的真空绝热板3上设置有收纳槽31。在装配的时候,所述收纳槽31朝向冰箱外壳2。在真空绝热板3固定到冰箱外壳2上后,内冷凝管41和排气管1收纳在收纳槽31内。
S4:在真空绝热板3远离冰箱外壳1的一侧进行发泡以使真空绝热板3朝冰箱外壳1的方向挤压直至形成发泡层。
当然,除上述步骤外,要组装完成一个完整的冰箱还包括其他不同的步骤。但由于其他步骤与现有技术所采用的步骤相同,故不再赘述。
综上所述,通过在冰箱内设置排气管1,且该排气管1的进气口11贴靠内冷凝管41设置,从而能有效消除内冷凝管41周边的空气,进而防止冰箱外壳2与真空绝热板3分离。在冰箱的组装方法中,通过提供排气管1,并将该排气管1的进气口11贴靠内冷凝管41,从而能有效的消除内冷凝管41周边的空气,进而防止组装后的冰箱外壳2与真空绝热板3分离。
尽管为示例目的,已经公开了本发明的优选实施方式,但是本领域的普通技术人员将意识到,在不脱离由所附的权利要求书公开的本发明的范围和精神的情况下,各种改进、增加以及取代是可能的。

Claims (10)

  1. 一种冰箱的组装方法,其特征在于:包括如下步骤:
    提供冰箱外壳、冷凝管及排气管;
    将冷凝管和排气管固定在冰箱外壳的内侧,其中将所述冷凝管贴靠在冰箱外壳上,所述排气管具有进气口,且将所述进气口贴靠冷凝管设置;
    提供真空绝热板,将真空绝热板固定在冰箱外壳的内侧,其中,所述冷凝管和排气管位于真空绝热板和冰箱外壳之间;
    在真空绝热板远离冰箱外壳的一侧进行发泡以使真空绝热板朝冰箱外壳的方向挤压直至形成发泡层。
  2. 根据权利要求1所述的冰箱的组装方法,其特征在于:所述排气管与冷凝管之间呈并排且贴靠设置。
  3. 根据权利要求2所述的冰箱的组装方法,其特征在于:所述排气管贴靠冰箱外壳。
  4. 根据权利要求3所述的冰箱的组装方法,其特征在于:所述真空绝热板上设置有用以收纳冷凝管和排气管的收纳槽。
  5. 根据权利要求4所述的冰箱的组装方法,其特征在于:所述冷凝管包括沿冰箱外壳的高度方向上延伸的直线段。
  6. 根据权利要求5所述的冰箱的组装方法,其特征在于:所述排气管与冷凝管的直线段呈一对一设置。
  7. 根据权利要求5所述的冰箱的组装方法,其特征在于:所述排气管的进气口位于所述冷凝管的直线段的中段偏下。
  8. 根据权利要求3所述的冰箱的组装方法,其特征在于:所述排气管通过胶带固定在冰箱外壳的内侧。
  9. 根据权利要求1所述的冰箱的组装方法,其特征在于:所述排气管的直径不大于冷凝管的直径。
  10. 根据权利要求1所述的冰箱的组装方法,其特征在于:所述冷凝管通过胶带固定在冰箱外壳的内侧,所述冰箱外壳与真空绝热板之间通过胶带固定。
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WO2012169520A1 (ja) * 2011-06-07 2012-12-13 シャープ株式会社 冷蔵庫
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JP2011102599A (ja) * 2009-11-10 2011-05-26 Toshiba Corp 真空断熱パネル及びそれを用いた冷蔵庫
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