WO2024001289A1 - 隔板组件及制冷设备 - Google Patents

隔板组件及制冷设备 Download PDF

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Publication number
WO2024001289A1
WO2024001289A1 PCT/CN2023/080641 CN2023080641W WO2024001289A1 WO 2024001289 A1 WO2024001289 A1 WO 2024001289A1 CN 2023080641 W CN2023080641 W CN 2023080641W WO 2024001289 A1 WO2024001289 A1 WO 2024001289A1
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WO
WIPO (PCT)
Prior art keywords
display
bracket
display panel
partition assembly
partition
Prior art date
Application number
PCT/CN2023/080641
Other languages
English (en)
French (fr)
Inventor
王洪宇
刘敏
王栋
Original Assignee
青岛海尔电冰箱有限公司
海尔智家股份有限公司
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.)
Filing date
Publication date
Application filed by 青岛海尔电冰箱有限公司, 海尔智家股份有限公司 filed Critical 青岛海尔电冰箱有限公司
Publication of WO2024001289A1 publication Critical patent/WO2024001289A1/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
    • F25D23/00General constructional features
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J15/00Sealings
    • F16J15/02Sealings between relatively-stationary surfaces
    • F16J15/06Sealings between relatively-stationary surfaces with solid packing compressed between sealing surfaces
    • 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
    • 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
    • F25D29/00Arrangement or mounting of control or safety devices
    • 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
    • F25D2400/00General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
    • F25D2400/36Visual displays

Definitions

  • the present invention relates to a partition assembly, and in particular to a refrigeration equipment having the partition assembly.
  • the object of the present invention is to provide a partition assembly and refrigeration equipment that can install a display module inside the refrigeration equipment.
  • one embodiment of the present invention provides a partition assembly for refrigeration equipment, including a display module.
  • the display module includes:
  • the panel bracket includes a bracket body, a bracket limiting wall protruding downward from the bracket body, and a bracket groove body surrounded by the bracket limiting wall and penetrating the bracket body;
  • a display panel connected to the bracket body
  • a display film is attached to the display panel and aligned with the bracket groove;
  • a display bracket is at least partially embedded in the bracket slot and fixedly connected to the panel bracket, and the display bracket includes a plurality of light-transmitting holes;
  • a display panel is connected to the display bracket, the display panel includes several display units, each display unit corresponds to each light-transmitting hole in a one-to-one manner;
  • the sealing layer includes a first sealing layer connected between the display bracket and the bracket limiting wall, and a second sealing layer connected between the display panel and the display bracket.
  • the partition assembly further includes an annular seal
  • the display bracket includes an annular sealing groove facing the display panel, and the annular sealing groove is arranged around the outside of all the light-transmitting holes, so The annular sealing members are respectively connected between the display panel and the annular sealing groove bracket.
  • the display bracket includes a display limiting wall and a lower opening surrounded by the display limiting wall.
  • the lower opening is connected to the light-transmitting hole, and the shape of the lower opening is consistent with the shape of the lower opening.
  • the shape of the display panel is consistent.
  • the display bracket includes a fitting wall, the cross section of the fitting wall coincides with the cross section of the bracket groove body;
  • annular glue groove is provided between the display limiting wall and the fitting wall, and the annular glue groove is arranged around the outside of the lower opening.
  • the sealing layer is configured as colloid, and the colloid covers the display bracket and the The gap between the bracket limiting walls and the gap between the display panel and the display bracket are covered.
  • the display bracket includes a plurality of hot melt pillars arranged downward, and the display panel includes positioning holes for passing through the hot melt pillars.
  • the bracket limiting wall includes a plurality of first clamping parts
  • the display bracket includes a plurality of second clamping parts
  • the first clamping part and the second clamping part Snap connection
  • the bracket limiting wall includes a plurality of first screw holes
  • the display bracket includes a plurality of second screw holes
  • the display module also includes screws fixed to the first screw holes and the second screw holes. Pickup.
  • the display panel includes a circuit board and a plurality of touch-sensing components connected to the circuit board, and each of the touch-sensing components passes through the light-transmitting hole and offsets the display film.
  • the partition assembly includes a main partition, the main partition includes a display slot, the display module is fixedly connected in the display slot, and wiring is provided in the display slot.
  • the display panel includes lead wires, and the wires are directly connected to the lead wires.
  • one embodiment of the present invention provides a refrigeration equipment, including the above-mentioned partition assembly.
  • the present invention has the following beneficial effects: after the partition assembly is installed inside the refrigeration equipment, the partition assembly can also have a display function, and the partition assembly of this structure can achieve a better sealing effect.
  • the gaps between the structures are blocked by the sealing layer to prevent water vapor from entering the interior of the display module.
  • the light emitted from the display panel reaches the display film through the light-transmitting holes, which can also make the light illuminate evenly; because it can be realized in refrigeration equipment
  • the built-in display module can make the refrigeration equipment more intelligent.
  • Figure 1 is a schematic structural diagram of a refrigeration equipment according to an embodiment of the present invention.
  • Figure 2 is a first exploded schematic diagram of the partition assembly according to an embodiment of the present invention.
  • Figure 3 is a second exploded schematic diagram of the partition assembly according to an embodiment of the present invention.
  • Figure 4 is an exploded schematic diagram of a display module looking from below according to an embodiment of the present invention.
  • Figure 5 is a partial enlarged view of position A in Figure 4.
  • Figure 6 is a schematic bottom view of a display module according to an embodiment of the present invention.
  • Figure 7 is a schematic cross-sectional view from below of a display module according to an embodiment of the present invention.
  • Figure 8 is a schematic structural diagram of a display module viewed from below according to an embodiment of the present invention.
  • partition assembly 2000, inner tank; S1, refrigerator compartment; S2, freezer compartment; 100, display module; 200, main partition; 300, auxiliary partition; 10, panel bracket; 11, bracket slot Body; 12. Bracket limiting wall; 13. First snapping part; 14. First screw hole; 15. Second snapping part; 16. Hook; 17. Second matching part; 18. Snap; 20 , display bracket; 21. inner wall; 210. light-transmitting hole; 22. display limiting wall; 220. lower opening; 221. step portion; 23. fitting wall; 230. ring-shaped rubber groove; 231. second snap connection 24. Hot melt column; 25. Annular sealing groove; 26. Third screw hole; 27. Second screw hole; 30. Display panel; 31. Lead wire; 32. Positioning hole; 40. Display panel; 50. Display Membrane; 60, annular seal; 70, upper partition; 71, display groove; 72, first engaging part; 73, first matching part; 74. Wiring.
  • An embodiment of the present invention provides a refrigeration equipment and a partition assembly.
  • a display module can be disposed inside the partition assembly to realize more functions of the partition assembly and operate in a low-temperature and high-humidity environment.
  • the refrigeration equipment in this embodiment may be a refrigerator, a freezer, a vertical refrigerator, a wine cabinet, etc.
  • the following embodiments may be described using a refrigerator as an example.
  • the refrigeration equipment includes a box body, an inner tank 2000 installed in the box body, a door frame surrounded by a connection between the inner tank 2000 and the box body, a refrigeration cavity surrounded by the inner tank 2000, and an opening of the refrigeration cavity surrounded by the door frame. Covering the open door body, the refrigeration equipment also includes a partition assembly 1000 fixedly connected to the inner container 2000.
  • the inner container 2000 includes a pair of side walls of the inner container 2000 arranged on the left and right.
  • the partition assembly 1000 is fixed between the side walls of the inner container 2000. As shown in FIG. 1 , the partition assembly 1000 can divide the refrigeration cavity into two cavities, namely the refrigerator compartment S1 and the freezing compartment S2.
  • the partition assembly 1000 is defined to separate the refrigeration cavity into two upper and lower cavities, and the upper cavity and the lower cavity can also be distinguished.
  • the refrigerator is placed vertically on the ground, and the partition assembly 1000 can be horizontally fixed to the inner tank 2000.
  • the direction of the door body relative to the inner tank 2000 is defined as the front, and the opposite direction is defined as the rear.
  • the user's left hand direction is left and the right hand direction is right.
  • Level is just a name definition and is not limited to a "level" in the physical sense; of course, in the preferred embodiment, the level can be parallel to the horizontal plane in physics.
  • the partition assembly 1000 can be divided into upper and lower spaces, or left and right spaces, and can also include conventional refrigeration spaces or multi-functional hot and cold cabinets.
  • the present invention takes the partition assembly 1000 that separates the upper and lower spaces and is used in a refrigerator as an example.
  • the freezing chamber S2 is provided below the refrigerating chamber S1.
  • the partition assembly 1000 of this embodiment includes a main partition 200, an auxiliary partition 300 and a display module 100.
  • the main partition 200 includes an upper partition 70 and a lower partition.
  • a display slot 71 is provided above the upper partition 70.
  • the module 100 is fixedly connected in the display slot 71.
  • a main cavity is enclosed between the lower part of the upper partition 70 and the lower partition.
  • the main cavity is provided with a thermal insulation component, which may be a foam material, as shown in Figures 1 and 2. .
  • freezing chamber S2 lower partition - thermal insulation - upper partition 70 - display module 100 - refrigerator compartment S1, that is to say, between the bottom of the display module 100 and the freezing compartment S2
  • the insulation member is used to prevent the display module 100 from directly contacting the freezing chamber S2, which has a very low temperature, and is only exposed to the refrigerator chamber S1. This allows the display module 100 to be disposed on the partition assembly 1000 and avoids the impact of low temperature on the display module 100 .
  • the main partition 200 is used to be fixedly connected to the inner tank 2000 of the refrigeration equipment.
  • the main partition 200 has an upper and lower accommodation space.
  • the accommodation space has an upper opening and a lower opening.
  • the auxiliary partition 300 can be fixed in the accommodation space of the main partition 200.
  • the partition assembly 1000 has a first state and a second state. In the first state, the auxiliary partition 300 can be fixed in the accommodation space of the main partition 200. 300 is accommodated in the accommodation space, and the auxiliary partition 300 simultaneously closes the upper opening and the lower opening; in the second state, the auxiliary partition 300 is moved out of the accommodation space.
  • the display module 100 is disposed in front of the auxiliary partition 300 .
  • the partition assembly 1000 has more functions.
  • the partition assembly 1000 can simultaneously realize the disassembly and assembly of the sub-partition 300 and the display function of the display module 100.
  • the sub-partition 300 is disassembled and installed behind the display module 100 and does not affect the display of the display module 100 .
  • the display module 100 includes a panel bracket 10 fixedly connected to the display slot 71, a display panel 40 arranged above the panel bracket 10, and a display bracket 20 and a display panel 30 arranged below the display panel 40.
  • display film 50 and sealing layer specifically:
  • the panel bracket 10 includes a bracket body, a bracket limiting wall 12 protruding downward from the bracket body, and a bracket groove 11 surrounded by the bracket limiting wall 12 and penetrating the bracket body.
  • the bracket body is provided with a hook 16 and a hook.
  • Deduct 18 The wire harness can be fixed in the hook 16, as shown in Figure 8, to prevent the wire harness from being broken when the display module 100 and the display slot 71 are installed and engaged.
  • the buckle 18 forms a slot, and the display panel 40 is inserted into the buckle 18 to fix it.
  • the display panel 40 is connected to the bracket body, and is exposed in the refrigerator compartment S1. A touch area and/or a display area are provided on the display panel 40.
  • the display panel 40 may be a kind of ultra-white glass, and the display panel 40 may be a kind of ultra-white glass.
  • the brackets 10 are fixed together with double-sided tape as a glass bracket assembly.
  • the display bracket 20 is at least partially embedded in the bracket groove 11 and fixedly connected with the panel bracket 10 .
  • the display bracket 20 includes a plurality of light-transmitting holes 210 .
  • the display panel 30 is connected to the display bracket 20 .
  • the display panel 30 includes a touch sensing portion corresponding to the touch area and/or a display unit corresponding to the display area.
  • Each display unit corresponds to each light-transmitting hole 210 one-to-one.
  • the display film 50 is attached to the display panel 40 and aligned with the bracket groove 11; the display film 50 is provided with several logos corresponding to the touch area and/or the display area.
  • the display film 50 can be a colored sticker with logos on it.
  • the display unit on the display panel 30 emits light to illuminate the corresponding marks, or the touch sensing portion aligns the marks.
  • the sealing layer includes a first sealing layer connected between the display bracket 20 and the bracket limiting wall 12 , and a second sealing layer connected between the display panel 30 and the display bracket 20 .
  • the partition assembly 1000 of this structure can achieve a better sealing effect, and the gaps between the various structures are blocked by the sealing layer to prevent water vapor from entering the interior of the display module 100.
  • the display bracket 20 of this embodiment includes a circle of fitting walls 23 and a circle of display limiting walls 22.
  • the display limiting walls 22 surround a cavity, and the cavity has a lower opening 220, specifically as follows
  • a plurality of inner walls 21, a plurality of hot melt columns 24 and a number of third screw holes 26 are provided in the cavity.
  • the inner wall 21 surrounds the light-transmitting hole 210, and the lower opening 220 communicates with the light-transmitting hole 210.
  • the shape matches the shape of the display panel 30 .
  • the cross section of the fitting wall 23 is consistent with the cross section of the bracket groove body 11.
  • An annular glue groove 230 is provided between the fitting wall 23 and the display limiting wall 22.
  • the annular glue groove 230 is arranged around outside the lower opening 220.
  • the shape of the lower opening 220 matches the shape of the display panel 30. As shown in Figure 7, there may be a certain tolerance distance during production. For example, the surrounding gap between the display panel 30 and the display limiting wall 22 is about 0.2mm, which is very small. After the display panel 30 is tightly attached to the display bracket 20, avoid setting a sealing layer. That is, after filling the glue, the glue will enter the inside of the display bracket 20, especially into the light-transmitting hole 210, affecting the spread of light and causing uneven display brightness. The problem.
  • the display bracket 20 includes a step portion 221 provided on the display limiting wall 22.
  • the step portion 221 is provided around the lower opening 220 and is formed as an indentation in the thickness direction of the display limiting wall 22.
  • the height of the step portion 221 is consistent with the height of the inner wall 21, so that after the display panel 30 is assembled with the display bracket 20, it will offset the step portion 221 and the inner wall 21 to form a support.
  • the display panel 30 After the display panel 30 is installed in the display bracket 20, it can be fixed by bolts passing through the holes on the display panel 30 and the third screw hole 26.
  • the light-transmitting hole 210 has a preset depth, and the light-transmitting hole 210 of the preset depth is used to make the light irradiated by the display unit on the display film 50 display uniformly.
  • the display unit may be an LED lamp bead that emits a point light source. If the point light source is too close to the display film 50, the display effect will be too bright in some places and too dark in other places.
  • light-transmitting holes 210 with a preset depth are provided, so that there is a certain distance between the light source position and the display film 50. When the display film 50 is viewed from top to bottom, the brightness of the logo on the display film 50 is uniform and the display effect is better.
  • the display panel 30 includes a circuit board and several touch sensing portions connected to the circuit board. Each touch sensing portion passes through the light-transmitting hole 210 and offsets the display film 50 .
  • the touch sensing portion may include a touch sensing capacitor disposed on the circuit board. and a spring connected to the capacitor. The spring passes through the light-transmitting hole 210 until it reaches the position of the display film 50.
  • the touch sensing part passes through the light-transmitting hole 210 and corresponds to the mark of the touch area.
  • the display unit passes through the light-transmitting hole 210 and corresponds to the mark of the display area.
  • these logos can be the same logo, that is to say, one logo can play the role of touch and display at the same time. In this way, when the outside world touches the mark of the touch area corresponding to the display film 50, the induced potential can be transmitted to the capacitor through the spring, thereby realizing touch control.
  • the partition assembly 1000 also includes an annular seal 60.
  • the display bracket 20 includes an annular sealing groove 25 facing the display panel 40.
  • the annular sealing groove 25 is circumferentially provided outside all the light-transmitting holes 210.
  • the annular sealing member 60 is disposed in the annular sealing groove 25. , and are respectively in contact with the display panel 40 and the display bracket 20 ring.
  • the display film 50 and the annular sealing member 60 are both pasted on the upward side of the display bracket 20.
  • the annular sealing member 60 can prevent water vapor from entering the light-transmitting hole 210 from above, and the sealing layer prevents water vapor from entering the light-transmitting hole 210 from above. The lower part enters into the light-transmitting hole 210.
  • the display bracket 20 includes a plurality of hot melt posts 24 arranged downward, and the display panel 30 includes positioning holes 32 for passing through the hot melt posts 24 .
  • the hot-melt pillar 24 plays a role in positioning and error prevention during the installation process to prevent the display panel 30 from being installed incorrectly. At the same time, the hot-melt pillar 24 tightly adheres the display panel 30 to the display bracket 20 after being heated.
  • the bracket limiting wall 12 includes a plurality of first clamping parts 13, and the display bracket 20 includes a plurality of second clamping parts 231.
  • the first clamping parts 13 are engaged with the second clamping parts 231;
  • the bracket limiting wall 12 includes a plurality of first screw holes 14
  • the display bracket 20 includes a plurality of second screw holes 27
  • the display module 100 further includes screw connectors fixed to the first screw holes 14 and the second screw holes 27 .
  • the screw joints are screws or bolts that firmly connect the display bracket 20 and the panel bracket 10 together.
  • the sealing layer is configured as colloid, and the colloid covers the gap between the display bracket 20 and the bracket limiting wall 12 and the gap between the display panel 30 and the display bracket 20 .
  • Colloid is a medium that acts as a seal, preventing water vapor from entering the cracks and gaps.
  • the display panel 30 is first fixed to the display bracket 20, and the panel bracket 10 is fixed to the display panel 40. Then the display film 50 and the annular seal 60 are pasted on the display bracket 20, and then the display bracket 20 is fixed to the panel.
  • the bracket 10 is fixed, and after being fixed, glue is poured, that is, the above-mentioned sealing layer is provided, thereby completing the installation of the entire display module 100 .
  • the display slot 71 is provided with a wiring 74.
  • the display panel 30 includes a lead 31.
  • the wiring 74 is directly connected to the lead 31, as shown in Figure 8. Direct connection is different from connection through a plug connector. Since the plug connector has a certain height, it takes up space. , and the display module 100 and the main partition 200 need to be stabilized during installation before the connector can be connected, which is more troublesome; when using the structure of this embodiment, the factory only needs one step when installing the display module 100. Only one hand can be used to connect the leads 31. There is no need to use two hands to connect the connector and then fix it with tape, which improves production efficiency.
  • first engaging parts 72 are provided on the front side of the display slot 71 , and the panel bracket 10 is provided with a second engaging part 15 mated with the first engaging parts 72 ; the first engaging parts 72 and the second engaging parts 15 are all arranged in an "L" shape, and the two "L"-shaped engaging parts are engaged with each other.
  • a plurality of first mating parts 73 are provided on the rear side of the display slot 71 , and the panel bracket 10 is provided with a second mating part 17 mated with the first mating parts 73 .
  • the first fitting part 73 and the second fitting part 17 may both be holes, wherein the first fitting part 73 has threads inside, and screws or bolts are set to pass through the second fitting part 17 and the first fitting part 73 in sequence, and the display module 100 fixed.
  • the above-mentioned display module 100 is first assembled, and then the second engaging portion 15 at the front end of the display module 100 is engaged with the first engaging portion 72 of the display slot 71 to realize the display module 100
  • the front end of the display module 100 is relatively fixed to the display slot 71, and then the display module 100 is turned over.
  • the second mating portion 17 of the rear end of the display module 100 is also fixed to the display slot 71, thereby completing the installation of the display module 100 on the partition assembly 1000. .
  • the upper surface of the upper partition 70 that is not covered by the display module 100 is located on the same plane as the upper surface of the display panel 40 . This creates better integration and makes it easier to place items on it.
  • this embodiment has the following beneficial effects:
  • the partition assembly After the partition assembly is installed inside the refrigeration equipment, the partition assembly can also have a display function, and the partition assembly of this structure can achieve a better sealing effect.
  • the gaps between the various structures are blocked by the sealing layer to prevent water vapor from entering. to the inside of the display module.
  • the light emitted from the display board reaches the display film through the light-transmitting hole, which can also make the light illuminate evenly; since the display module can be installed in the refrigeration equipment, the intelligence of the refrigeration equipment can be improved. .

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Illuminated Signs And Luminous Advertising (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

本发明揭示了一种隔板组件及制冷设备,隔板组件包括显示模组,显示模组包括面板支架、显示面板、显示膜、显示支架、显示板和密封层,密封层包括连接于显示支架和面板支架之间第一密封层、以及连接于显示板和显示支架之间的第二密封层;隔板组件可以实现更好的密封效果,显示板上发出的光经过透光孔到达显示膜,也可以使光的照亮均匀。

Description

隔板组件及制冷设备 技术领域
本发明涉及一种隔板组件,尤其涉及一种具有该隔板组件的制冷设备。
背景技术
随着智能家居的发展,目前存在一些带有显示屏、触摸屏的制冷设备,如智能冰箱,由于冰箱内部的温度低、湿度大,只有显示结构的密封性能足够好才能保证电子元器件的正常工作,才能使显示屏幕上不会产生雾气。而现有的显示结构不能达到该要求,导致现在冰箱的显示面板一般都只能设置在冰箱的外面,无法设置在冰箱内,不利于智能家居的进一步发展。
发明内容
为解决现有技术中的制冷设备内部无法设置显示屏的问题,本发明的目的在于提供一种能将显示模组设置在制冷设备内部的隔板组件及制冷设备。
为实现上述发明目的,本发明一实施方式提供一种用于制冷设备的隔板组件,包括显示模组,所述显示模组包括:
面板支架,包括支架本体、由所述支架本体向下凸伸的支架限位壁、由所述支架限位壁围出的贯穿所述支架本体的支架槽体;
显示面板,连接于所述支架本体;
显示膜,贴合于所述显示面板并与所述支架槽体对齐;
显示支架,至少部分嵌入所述支架槽体内并与所述面板支架固定连接,所述显示支架包括若干个透光孔;
显示板,连接于所述显示支架,所述显示板包括若干个显示单元,每个显示单元与每个透光孔一一对应;
密封层,包括连接于所述显示支架和所述支架限位壁之间第一密封层、以及连接于所述显示板和所述显示支架之间的第二密封层。
作为本发明的进一步改进,所述隔板组件还包括环形密封件,所述显示支架包括朝向所述显示面板的环形密封槽,所述环形密封槽环设于全部所述透光孔外侧,所述环形密封件分别连接于所述显示面板和所述环形密封槽支架之间。
作为本发明的进一步改进,所述显示支架包括显示限位壁、以及由所述显示限位壁围出的下开口,所述下开口连通所述透光孔,所述下开口的形状与所述显示板的形状吻合。
作为本发明的进一步改进,所述显示支架包括贴合壁,所述贴合壁的横截面与所述支架槽体的横截面吻合;
所述显示限位壁和所述贴合壁之间设置环形容胶槽,所述环形容胶槽环设于所述下开口的外侧。
作为本发明的进一步改进,所述密封层设置为胶体,所述胶体覆盖所述显示支架和所 述支架限位壁之间的间隙、以及覆盖所述显示板和所述显示支架之间的间隙。
作为本发明的进一步改进,所述显示支架包括若干个向下设置的热熔柱,所所述显示板包括用于穿过所述热熔柱的定位孔。
作为本发明的进一步改进,所述支架限位壁包括若干个第一卡接部,所述显示支架包括若干个第二卡接部,所述第一卡接部与所述第二卡接部卡合连接;
所述支架限位壁包括若干个第一螺孔,所述显示支架包括若干个第二螺孔,所述显示模组还包括与所述第一螺孔和所述第二螺孔固定的螺接件。
作为本发明的进一步改进,所述显示板包括电路板和若干个连接所述电路板的触摸感应件,每个所述触摸感应件均穿过所述透光孔与所述显示膜相抵。
作为本发明的进一步改进,所述隔板组件包括主隔板,所述主隔板包括显示槽,所述显示模组固定连接于所述显示槽内,所述显示槽内设置接线,所述显示板包括引线,所述接线和所述引线直接连接。
为实现上述发明目的之一,本发明一实施例提供了一种制冷设备,包括上述的隔板组件。
与现有技术相比,本发明具有以下有益效果:该隔板组件安装于制冷设备内部后,隔板组件还可以具有显示功能,且该结构的隔板组件可以实现更好的密封效果,各个结构之间连接的缝隙被密封层阻隔,避免水汽进入到显示模组内部,另外显示板上发出的光经过透光孔到达显示膜,也可以使光的照亮均匀;由于可以实现在制冷设备内设置显示模组,可以使制冷设备的智能程度提高。
附图说明
图1是本发明一实施例的制冷设备的结构示意图;
图2是本发明一实施例的隔板组件的第一爆炸示意图;
图3是本发明一实施例的隔板组件的第二爆炸示意图;
图4是本发明一实施例的显示模组的仰视的爆炸示意图;
图5是图4中A处的局部放大图;
图6是本发明一实施例的显示模组的仰视示意图;
图7是本发明一实施例的显示模组的仰视的剖视示意图;
图8是本发明一实施例的显示模组的仰视的结构示意图;
其中,1000、隔板组件;2000、内胆;S1、冷藏室;S2、冷冻室;100、显示模组;200、主隔板;300、副隔板;10、面板支架;11、支架槽体;12、支架限位壁;13、第一卡接部;14、第一螺孔;15、第二卡合部;16、卡勾;17、第二配合部;18、卡扣;20、显示支架;21、内壁;210、透光孔;22、显示限位壁;220、下开口;221、台阶部;23、贴合壁;230、环形容胶槽;231、第二卡接部;24、热熔柱;25、环形密封槽;26、第三螺孔;27、第二螺孔;30、显示板;31、引线;32、定位孔;40、显示面板;50、显示膜;60、环形密封件;70、上隔板;71、显示槽;72、第一卡合部;73、第一配合部; 74、接线。
具体实施方式
以下将结合附图所示的具体实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构、方法、或功能上的变换均包含在本发明的保护范围内。
应该理解,本文使用的例如“上”、“上方”、“下”、“下方”等表示空间相对位置的术语是出于便于说明的目的来描述如附图中所示的一个单元或特征相对于另一个单元或特征的关系。空间相对位置的术语可以旨在包括设备在使用或工作中除了图中所示方位以外的不同方位。
本发明一实施例提供一种制冷设备及隔板组件,可以将显示模组设置在隔板组件内部,实现隔板组件的更多功能,以及在低温高湿的环境中运行。
本实施例的制冷设备,可以是冰箱、冷柜、立式冷藏柜、酒柜等,下文的实施例可以以冰箱为例进行说明。制冷设备包括箱体、设置于箱体内的内胆2000、内胆2000和箱体的连接处围出的门框、由内胆2000围出的制冷腔体、门框围出制冷腔体的敞口、覆盖敞口的门体,制冷设备还包括与内胆2000固定连接的隔板组件1000,内胆2000包括左右设置的一对内胆2000侧壁,隔板组件1000固定在内胆2000侧壁之间,如图1所示,隔板组件1000可以将制冷腔体分隔为两个腔体,分别为冷藏室S1和冷冻室S2。
为清楚地表达本实施例中所描述的位置与方向,在本实施例中,定义隔板组件1000可以将制冷腔体分隔为上下两个腔体,上腔体和下腔体的区分也可以参照重力的方向,此时,冰箱竖直放置于地面上,隔板组件1000可以水平地与内胆2000固定,门体相对于内胆2000的方向为前,反方向定义为后,以用户从前向后面向敞口为例,用户的左手方向为左,右手方向为右。水平仅为一种名称定义,并不限定为物理学意义上的“水平”;当然,在优选的本实施例中,水平可以平行于物理学中的水平面。
另外,隔板组件1000可以分隔为上下空间,也可以是左右空间,也包括常规的制冷空间或者多功能的冷热柜,本发明以分隔上下空间、应用在冰箱中的隔板组件1000为例进行详细的说明,其中,冷冻室S2设置于冷藏室S1的下方。
本实施例的隔板组件1000,包括主隔板200、副隔板300和显示模组100,主隔板200包括上隔板70和下隔板,上隔板70上方设置显示槽71,显示模组100固定连接于显示槽71内,上隔板70下方和下隔板之间合围出主腔体,主腔体内设置保温件,保温件可以是发泡材料,如图1和2所示。
这样设置,从下向上依次是:冷冻室S2-下隔板-保温件-上隔板70-显示模组100-冷藏室S1,也就是说,显示模组100的下方与冷冻室S2之间间隔着保温件,避免显示模组100直接接触温度很低的冷冻室S2,仅暴露于冷藏室S1。使得显示模组100可以设置在隔板组件1000上,又避免了温度过低对显示模组100的影响。
主隔板200用于与制冷设备的内胆2000固定连接,主隔板200具有上下贯通的容置空 间,容置空间具有上开口和下开口,副隔板300可固定于主隔板200的容置空间内,隔板组件1000具有第一状态和第二状态,于第一状态,副隔板300容置于容置空间内,副隔板300同时封闭上开口和下开口;于第二状态,副隔板300从容置空间内移出。
显示模组100设置于副隔板300的前方。这样一方面使隔板组件1000具有了更多的功能,隔板组件1000可以同时实现副隔板300的拆装、显示模组100的显示作用,另一方面方便用户通过隔板组件1000与制冷设备智能交互。副隔板300的拆装在显示模组100的后方,不影响显示模组100的显示。
如图3和4所示,显示模组100包括固定连接于显示槽71的面板支架10、设置于面板支架10上方的显示面板40、以及设置于显示面板40下方的显示支架20、显示板30、显示膜50和密封层,具体地:
面板支架10包括支架本体、由支架本体向下凸伸的支架限位壁12、由支架限位壁12围出的贯穿支架本体的支架槽体11,另外支架本体上设置有卡勾16和卡扣18。可以将线束固定在卡勾16内,如图8所示,避免显示模组100与显示槽71安装扣合时,压断线束。卡扣18形成一个槽,将显示面板40插入该卡扣18内,起到固定的作用。
显示面板40连接于支架本体,显示面板40暴露于冷藏室S1内,显示面板40上设置触控区和/或显示区,本实施例中,显示面板40可以是一种超白玻璃,与面板支架10通过双面胶带固定一起,作为玻璃支架总成。
显示支架20至少部分嵌入支架槽体11内并与面板支架10固定连接,显示支架20包括若干个透光孔210。
显示板30连接于显示支架20,显示板30包括与触控区对应的触摸感应部、和/或与显示区对应的显示单元,每个显示单元与每个透光孔210一一对应。
显示膜50,贴合于显示面板40并与支架槽体11对齐;显示膜50上设置与触控区和/或显示区对应的若干标识,显示膜50可以是一种彩色的贴纸,上面标识有冰箱内的运行参数的显示或者运转状态调整的选项,例如冷藏模式、速冷、节能、温度、保鲜、解冻、联网等选项。显示板30上的显示单元发出光照亮对应的标识,或者触摸感应部对齐这些标识。
密封层,包括连接于显示支架20和支架限位壁12之间第一密封层、以及连接于显示板30和显示支架20之间的第二密封层。该结构的隔板组件1000可以实现更好的密封效果,各个结构之间连接的缝隙被密封层阻隔,避免水汽进入到显示模组100内部。
下面从显示支架20的角度做更具体阐述:
如图5~7所示,本实施例的显示支架20包括一圈贴合壁23和一圈显示限位壁22,显示限位壁22围出腔体,腔体具有下开口220,具体如图5所示,腔体内设置多个内壁21、多个热熔柱24和若干个第三螺孔26,内壁21围出透光孔210,下开口220连通透光孔210,下开口220的形状与显示板30的形状吻合。贴合壁23的横截面与支架槽体11的横截面吻合,贴合壁23和显示限位壁22之间设置环形容胶槽230,环形容胶槽230环设于 下开口220的外侧。
下开口220的形状与显示板30的形状吻合,如图7所示,在生产中可以存在一定的公差距离,例如显示板30与显示限位壁22的四周间隙约为0.2mm,间隙很小,在显示板30紧贴在显示支架20上后,避免设置密封层,即灌胶后,胶进入显示支架20内部,尤其是进入到透光孔210内影响灯光的传播,造成显示亮度不均匀的问题。
另外,显示支架20包括设置在显示限位壁22上的台阶部221,台阶部221环所述下开口220一周设置、且形成在所述显示限位壁22的厚度方向上的缩进,另外,台阶部221的高度与内壁21的高度一致,这样显示板30与显示支架20组装后,与台阶部221和内壁21相抵,形成支撑。
显示板30装入显示支架20后,可以通过螺栓穿过显示板30上的孔与第三螺孔26固定。
透光孔210具有预设深度,预设深度的透光孔210用于使显示单元照射在显示膜50上的光显示均匀。显示单元可以是LED灯珠,发出点光源,若点光源距离显示膜50过近,显示效果是局部过亮,其他地方过暗。这里设置间隔着预设深度的透光孔210,这样光源位置与显示膜50存在一定距离,从上向下看显示膜50时,显示膜50上的标识亮度均匀,显示效果更好。
显示板30包括电路板和若干个连接电路板的触摸感应部,每个触摸感应部均穿过透光孔210与显示膜50相抵,触摸感应部可以包括设置在电路板上的触摸感应电容、以及连接于电容的弹簧,弹簧穿过透光孔210,直到到达显示膜50的位置,触摸感应部通过透光孔210对应触控区的标识,显示单元通过透光孔210对应显示区的标识,这些标识可以同为一个标识,也就是说,一个标识可以同时起到触控和显示的作用。这样在外界触摸显示膜50对应的触控区的标识时,可以通过弹簧将感应电势传输到电容,进而实现触摸控制。
隔板组件1000还包括环形密封件60,显示支架20包括朝向显示面板40的环形密封槽25,环形密封槽25环设于全部透光孔210外侧,环形密封件60设置于环形密封槽25内、且分别抵接于显示面板40和显示支架20环。显示膜50和环形密封件60都粘贴在显示支架20向上的一面,环形密封件60可以避免水汽从透光孔210的上方进入到透光孔210内,密封层避免水汽从透光孔210的下方进入到透光孔210内。
显示支架20包括若干个向下设置的热熔柱24,显示板30包括用于穿过热熔柱24的定位孔32。热熔柱24在安装过程中起定位和防差错作用,避免显示板30装错,同时热熔柱24在热熔后,将显示板30紧贴在显示支架20上。
支架限位壁12包括若干个第一卡接部13,显示支架20包括若干个第二卡接部231,第一卡接部13与第二卡接部231卡合连接;
支架限位壁12包括若干个第一螺孔14,显示支架20包括若干个第二螺孔27,显示模组100还包括与第一螺孔14和第二螺孔27固定的螺接件。螺接件是螺钉或螺栓,将显示支架20和面板支架10固定连接在一起。
密封层设置为胶体,胶体覆盖显示支架20和支架限位壁12之间的间隙、以及覆盖显示板30和显示支架20之间的间隙。胶体是一种可以起到密封作用的介质,可避免水汽进入各个缝隙和间隙。
在安装过程中,先将显示板30与显示支架20固定,面板支架10与显示面板40固定,然后将显示膜50和环形密封件60都粘贴在显示支架20上,接着将显示支架20与面板支架10固定,固定后进行灌胶,也就是设置上述的密封层,从而完成整个显示模组100的安装。
然后将显示模组100与显示槽71进行电路连接:
显示槽71内设置接线74,显示板30包括引线31,接线74和引线31直接连接,如图8所示,直接连接区别于通过插接件连接,由于插接件具有一定的高度,占用空间,且安装时需要稳定住显示模组100和主隔板200,才能进行插接件的插接,较为麻烦;而使用本实施例的结构时,工厂在安装显示模组100时,仅需一只手对接引线31即可,无需用两只手将接插件对接后,再用胶带固定,提高了生产效率。
然后将显示模组100与显示槽71固定连接:
显示槽71内的前侧设置若干个第一卡合部72,面板支架10设置与第一卡合部72配接的第二卡合部15;第一卡合部72和第二卡合部15均设置为“L”形,两个“L”形的卡合部相互卡接。
显示槽71内的后侧设置若干个第一配合部73,面板支架10设置与第一配合部73配接的第二配合部17。第一配合部73和第二配合部17可以都是孔,其中第一配合部73内有螺纹,设置螺钉或螺栓依次穿过第二配合部17和第一配合部73,将显示模组100固定。
在安装的过程中,先将上述的显示模组100组装完成,再将显示模组100前端的第二卡合部15与显示槽71的第一卡合部72卡合,实现显示模组100的前端与显示槽71的相对固定,然后翻转显示模组100,显示模组100后端的第二配合部17也与显示槽71固定,从而完成了显示模组100在隔板组件1000上的安装。
另外,上隔板70的未被显示模组100覆盖的上表面与显示面板40的上表面位于同一平面。这样形成的一体性更好,也可以方便在上面摆放物品。
与现有技术相比,本实施例具有以下有益效果:
该隔板组件安装于制冷设备内部后,隔板组件还可以具有显示功能,且该结构的隔板组件可以实现更好的密封效果,各个结构之间连接的缝隙被密封层阻隔,避免水汽进入到显示模组内部,另外显示板上发出的光经过透光孔到达显示膜,也可以使光的照亮均匀;由于可以实现在制冷设备内设置显示模组,可以使制冷设备的智能程度提高。
应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施方式中的技术方案也可以经适当组合,形成本领域技术人员可以理 解的其他实施方式。
上文所列出的一系列的详细说明仅仅是针对本发明的可行性实施方式的具体说明,它们并非用以限制本发明的保护范围,凡未脱离本发明技艺精神所作的等效实施方式或变更均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种用于制冷设备的隔板组件,其特征在于,包括显示模组,所述显示模组包括:
    面板支架,包括支架本体、由所述支架本体向下凸伸的支架限位壁、由所述支架限位壁围出的贯穿所述支架本体的支架槽体;
    显示面板,连接于所述支架本体;
    显示膜,贴合于所述显示面板并与所述支架槽体对齐;
    显示支架,至少部分嵌入所述支架槽体内并与所述面板支架固定连接,所述显示支架包括若干个透光孔;
    显示板,连接于所述显示支架,所述显示板包括若干个显示单元,每个显示单元与每个透光孔一一对应;
    密封层,包括连接于所述显示支架和所述支架限位壁之间第一密封层、以及连接于所述显示板和所述显示支架之间的第二密封层。
  2. 根据权利要求1所述的隔板组件,其特征在于,所述隔板组件还包括环形密封件,所述显示支架包括朝向所述显示面板的环形密封槽,所述环形密封槽环设于全部所述透光孔外侧,所述环形密封件设置于所述环形密封槽内、且分别抵接于所述显示面板和所述显示支架环。
  3. 根据权利要求1所述的隔板组件,其特征在于,所述显示支架包括显示限位壁、以及由所述显示限位壁围出的下开口,所述下开口连通所述透光孔,所述下开口的形状与所述显示板的形状吻合。
  4. 根据权利要求3所述的隔板组件,其特征在于,所述显示支架包括贴合壁,所述贴合壁的横截面与所述支架槽体的横截面吻合;
    所述显示限位壁和所述贴合壁之间设置环形容胶槽,所述环形容胶槽环设于所述下开口的外侧。
  5. 根据权利要求4所述的隔板组件,其特征在于,所述密封层设置为胶体,所述胶体覆盖所述显示支架和所述支架限位壁之间的间隙、以及覆盖所述显示板和所述显示支架之间的间隙。
  6. 根据权利要求1所述的隔板组件,其特征在于,所述显示支架包括若干个向下设置的热熔柱,所所述显示板包括用于穿过所述热熔柱的定位孔。
  7. 根据权利要求1所述的隔板组件,其特征在于,所述支架限位壁包括若干个第一卡接部,所述显示支架包括若干个第二卡接部,所述第一卡接部与所述第二卡接部卡合连接;
    所述支架限位壁包括若干个第一螺孔,所述显示支架包括若干个第二螺孔,所述显示模组还包括与所述第一螺孔和所述第二螺孔固定的螺接件。
  8. 根据权利要求1所述的隔板组件,其特征在于,所述显示板包括电路板和若干个连接所述电路板的触摸感应件,每个所述触摸感应件均穿过所述透光孔与所述显示膜相抵。
  9. 根据权利要求1所述的隔板组件,其特征在于,所述隔板组件包括主隔板,所述主 隔板包括显示槽,所述显示模组固定连接于所述显示槽内,所述显示槽内设置接线,所述显示板包括引线,所述接线和所述引线直接连接。
  10. 一种制冷设备,其特征在于,包括如权利要求1所述的隔板组件。
PCT/CN2023/080641 2022-07-01 2023-03-10 隔板组件及制冷设备 WO2024001289A1 (zh)

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