Refrigeration appliance

CN115342577BActive Publication Date: 2026-08-11QINDAO HAIER REFRIGERATOR CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-01
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]为解决现有技术中制冷设备内部、尤其是隔板组件上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隔板组件内部的制冷设备

Benefits of technology

[0017]Compared with the prior art, the present invention has the following beneficial effects: by setting the display module on the partition assembly inside the refrigeration equipment, the partition assembly can have a display function, and the partition assembly with this structure can achieve a better sealing effect. The gaps between the various structures are blocked by the sealing layer, preventing moisture from entering the display module. Although there is a large temperature difference between the top and bottom of the partition assembly, the temperature can be prevented from being too low by the heat insulation component below. In addition, the light emitted from the display panel reaches the display panel through the light-transmitting holes, which can also make the light illumination uniform. Since the display module can be set inside the refrigeration equipment, the intelligence level of the refrigeration equipment can be improved.

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Abstract

This invention discloses a refrigeration device, including an inner liner and a partition assembly fixedly connected to the inner liner. The partition assembly divides the inner liner into a refrigerator compartment and a freezer compartment, with the freezer compartment located below the refrigerator compartment. The partition assembly includes a main partition and a display module. The main partition includes an upper partition and a lower partition. A display slot is provided above the upper partition, and a main cavity is formed between the lower upper partition and the lower partition. An insulation component is installed inside the main cavity. By placing the display module on the partition assembly inside the refrigeration device, the partition assembly can have a display function, and although there is a large temperature difference between the upper and lower parts of the partition assembly, the temperature can be prevented from becoming too low by the insulation component below.
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Description

Technical Field

[0001] This invention relates to the field of refrigeration technology, and more particularly to a refrigeration device. Background Technology

[0002] With the development of smart homes, some refrigeration devices, such as smart refrigerators, currently have displays and touchscreens. However, due to the low temperature and high humidity inside refrigerators, especially when the display is mounted on the shelf assembly, the temperature difference between the top and bottom of the assembly is too large. Affected by the low temperature of the freezer compartment, the display structure needs to maintain a relatively stable temperature to ensure the normal operation of electronic components and prevent frost from forming on the screen. Current display structures cannot meet this requirement, meaning that refrigerator display panels are generally located on the outside of the refrigerator, not inside, which hinders the further development of smart homes. Summary of the Invention

[0003] To address the problem that displays cannot be installed inside refrigeration equipment, especially on partition assemblies, in the prior art, the present invention aims to provide a refrigeration device that can install display modules inside partition assemblies.

[0004] To achieve the above-mentioned objective, one embodiment of the present invention provides a refrigeration device, including an inner liner and a partition assembly fixedly connected to the inner liner. The partition assembly divides the inner liner into a refrigerator compartment and a freezer compartment, with the freezer compartment located below the refrigerator compartment. The partition assembly includes:

[0005] The main partition includes an upper partition and a lower partition. A display slot is provided above the upper partition, and a main cavity is formed between the lower part of the upper partition and the lower partition. A heat insulation component is provided inside the main cavity.

[0006] The display module includes a panel bracket fixedly connected to the display slot, a display panel disposed above the panel bracket, and a display plate disposed below the display panel. The display panel is exposed in the refrigerator compartment. The display panel is provided with a touch area and / or a display area. The display plate includes a touch sensing part corresponding to the touch area and / or a display unit corresponding to the display area.

[0007] As a further improvement of the present invention, the display module further includes a display bracket and a display film. The display bracket is fixedly connected to the panel bracket and includes a plurality of light-transmitting holes. The display film is provided with a plurality of markings corresponding to the touch area and / or the display area. The touch sensing part and / or the display unit corresponds to the markings through the light-transmitting holes.

[0008] As a further improvement of the present invention, the light-transmitting hole has a preset depth, and the light-transmitting hole of the preset depth is used to make the light irradiated by the display unit onto the display film uniform.

[0009] As a further improvement of the present invention, the panel bracket includes a bracket body, a bracket limiting wall extending downward from the bracket body, and a bracket groove extending through the bracket body and surrounded by the bracket limiting wall. The display bracket includes a fitting wall, the cross-section of which matches the cross-section of the bracket groove.

[0010] As a further improvement of the present invention, the display bracket includes a display limiting wall and a lower opening enclosed by the display limiting wall, the lower opening communicating with the light-transmitting hole, and the shape of the lower opening matching the shape of the display panel.

[0011] As a further improvement of the present invention, the display module further includes a sealing layer, the sealing layer including a first sealing layer connected between the bonding wall and the bracket limiting wall, and a second sealing layer connected between the display panel and the display limiting wall.

[0012] As a further improvement of the present invention, the partition assembly further includes an annular seal, the display bracket includes an annular sealing groove facing the display panel, the annular sealing groove is disposed around the outside of all the light-transmitting holes, and the annular seal is disposed within the annular sealing groove and abuts against the display panel and the display bracket ring respectively.

[0013] As a further improvement of the present invention, a plurality of first engaging portions are provided on the front side of the display slot, and the panel bracket is provided with second engaging portions that mate with the first engaging portions;

[0014] The rear side of the display slot is provided with a plurality of first mating parts, and the panel bracket is provided with a second mating part that mates with the first mating parts.

[0015] As a further improvement of the present invention, wiring is provided in the display slot, the display panel includes leads, and the wiring and the leads are directly connected.

[0016] As a further improvement of the present invention, the upper surface of the upper partition that is not covered by the display module is located on the same plane as the upper surface of the display panel.

[0017] Compared with the prior art, the present invention has the following beneficial effects: by setting the display module on the partition assembly inside the refrigeration equipment, the partition assembly can have a display function, and the partition assembly with this structure can achieve a better sealing effect. The gaps between the various structures are blocked by the sealing layer, preventing moisture from entering the display module. Although there is a large temperature difference between the top and bottom of the partition assembly, the temperature can be prevented from being too low by the heat insulation component below. In addition, the light emitted from the display panel reaches the display panel through the light-transmitting holes, which can also make the light illumination uniform. Since the display module can be set inside the refrigeration equipment, the intelligence level of the refrigeration equipment can be improved. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of a refrigeration device according to an embodiment of the present invention;

[0019] Figure 2 This is a first exploded view of a partition assembly according to an embodiment of the present invention;

[0020] Figure 3 This is a second exploded view of a partition assembly according to an embodiment of the present invention;

[0021] Figure 4 This is an exploded view of a display module according to an embodiment of the present invention from below;

[0022] Figure 5 yes Figure 4 A magnified view of a section at point A in the middle;

[0023] Figure 6 This is a bottom view schematic diagram of a display module according to an embodiment of the present invention;

[0024] Figure 7 This is a bottom cross-sectional view of a display module according to an embodiment of the present invention;

[0025] Figure 8 This is a bottom-view structural diagram of a display module according to an embodiment of the present invention;

[0026] Among them, 1000 is the partition assembly; 2000 is the inner liner; S1 is the refrigerator compartment; S2 is the freezer compartment; 100 is the display module; 200 is the main partition; 300 is the secondary partition; 10 is the panel bracket; 11 is the bracket groove; 12 is the bracket limiting wall; 13 is the first snap-fit ​​part; 14 is the first screw hole; 15 is the second snap-fit ​​part; 16 is the hook; 17 is the second mating part; 18 is the buckle; 20 is the display bracket; 21 is the inner wall; 210 is the light-transmitting hole; 22 is the display limiting wall. 220. Lower opening; 221. Stepped portion; 23. Fitting wall; 230. Annular rubber groove; 231. Second snap-fit ​​portion; 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 film; 60. Annular seal; 70. Upper partition; 71. Display groove; 72. First snap-fit ​​portion; 73. First mating portion; 74. Wiring. Detailed Implementation

[0027] The present invention will now be described in detail with reference to the specific embodiments shown in the accompanying drawings. However, these embodiments do not limit the present invention, and any structural, methodological, or functional modifications made by those skilled in the art based on these embodiments are included within the scope of protection of the present invention.

[0028] It should be understood that terms such as “above,” “over,” “below,” and “under” used herein to indicate spatial relative position are for illustrative purposes to describe the relationship of one unit or feature relative to another unit or feature as shown in the accompanying drawings. The terms “spatial relative position” may be intended to include different orientations of the equipment in use or operation other than those shown in the figures.

[0029] One embodiment of the present invention provides a refrigeration device that can set a display module inside a partition assembly to realize more functions of the partition assembly and to operate in a low temperature and high humidity environment.

[0030] The refrigeration equipment in this embodiment can be a refrigerator, freezer, upright refrigerator, wine cabinet, etc. The following embodiment will use a refrigerator as an example. The refrigeration equipment includes a cabinet, an inner liner 2000 disposed within the cabinet, a door frame enclosing the connection between the inner liner 2000 and the cabinet, a refrigeration cavity enclosed by the inner liner 2000, an opening of the refrigeration cavity enclosed by the door frame, and a door covering the opening. The refrigeration equipment also includes a partition assembly 1000 fixedly connected to the inner liner 2000. The inner liner 2000 includes a pair of inner liner 2000 side walls disposed on the left and right sides, and the partition assembly 1000 is fixed between the inner liner 2000 side walls. Figure 1 As shown, the partition assembly 1000 can divide the refrigeration chamber into two chambers, namely the refrigerator chamber S1 and the freezer chamber S2.

[0031] To clearly express the positions and directions described in this embodiment, the partition assembly 1000 is defined to divide the refrigeration cavity into upper and lower cavities. The distinction between the upper and lower cavities can also be referenced to the direction of gravity. In this case, the refrigerator is placed vertically on the ground, and the partition assembly 1000 can be horizontally fixed to the inner liner 2000. The direction of the door relative to the inner liner 2000 is defined as front, and the opposite direction is defined as back. Taking a user facing the open door from front to back as an example, the user's left hand is left, and their right hand is right. "Horizontal" is merely a noun and is not limited to the physical meaning of "horizontal"; however, in this preferred embodiment, "horizontal" can be parallel to the horizontal plane in physics.

[0032] In addition, the partition assembly 1000 can be divided into upper and lower spaces, or left and right spaces, including conventional refrigeration spaces or multi-functional refrigerators and freezers. This invention will be described in detail using the partition assembly 1000, which is used in a refrigerator to divide upper and lower spaces, as an example. The freezer compartment S2 is located below the refrigerator compartment S1.

[0033] The partition assembly 1000 of this embodiment includes a main partition 200, a secondary 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, and the display module 100 is fixedly connected to the display slot 71. A main cavity is formed between the lower part of the upper partition 70 and the lower partition. An insulation component is provided inside the main cavity. The insulation component can be a foamed material, such as... Figure 1 and 2 As shown.

[0034] This configuration, from bottom to top, is: freezer compartment S2 - lower partition - insulation component - upper partition 70 - display module 100 - refrigerator compartment S1. In other words, the display module 100 is separated from the freezer compartment S2 by an insulation component, preventing the display module 100 from directly contacting the very low temperature of the freezer compartment S2, and exposing it only to the refrigerator compartment S1. This allows the display module 100 to be positioned on the partition assembly 1000 while also preventing excessively low temperatures from affecting the display module 100.

[0035] The main partition 200 is used to fix it to the inner liner 2000 of the refrigeration equipment. The main partition 200 has a vertically penetrating accommodating space with an upper opening and a lower opening. The secondary partition 300 can be fixed in the accommodating space of the main partition 200. The partition assembly 1000 has a first state and a second state. In the first state, the secondary partition 300 is accommodated in the accommodating space, and the secondary partition 300 simultaneously closes the upper opening and the lower opening. In the second state, the secondary partition 300 is removed from the accommodating space.

[0036] The display module 100 is positioned in front of the sub-partition 300. This gives the partition assembly 1000 more functions, allowing it to simultaneously facilitate the installation and removal of the sub-partition 300 and the display function of the display module 100. It also allows users to interact intelligently with the refrigeration equipment through the partition assembly 1000. The installation and removal of the sub-partition 300 is located behind the display module 100, so it does not affect the display function of the display module 100.

[0037] like Figure 3 and 4 As shown, the display module 100 includes a panel bracket 10 fixedly connected to the display slot 71, a display panel 40 disposed above the panel bracket 10, a display bracket 20 disposed below the display panel 40, a display plate 30, a display film 50, and a sealing layer. Specifically:

[0038] The panel bracket 10 includes a bracket body, a bracket limiting wall 12 protruding downward from the bracket body, and a bracket groove 11 extending through the bracket body and enclosed by the bracket limiting wall 12. Additionally, the bracket body is provided with hooks 16 and clips 18. The wire harness can be fixed in the hooks 16, such as... Figure 8 As shown, this design prevents the wiring harness from being crushed when the display module 100 is installed and fastened to the display slot 71. The clip 18 forms a slot into which the display panel 40 is inserted for securing it.

[0039] The display panel 40 is connected to the bracket body and exposed inside the refrigerator compartment S1. The display panel 40 is provided with a touch area and / or a display area. In this embodiment, the display panel 40 can be an ultra-white glass and is fixed together with the panel bracket 10 by double-sided tape as a glass bracket assembly.

[0040] The display bracket 20 is at least partially embedded in the bracket groove 11 and fixedly connected to the panel bracket 10. The display bracket 20 includes a plurality of light-transmitting holes 210.

[0041] The display panel 30 is connected to the display bracket 20. The display panel 30 includes a touch sensing part 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.

[0042] The display film 50 is attached to the display panel 40 and aligned with the bracket groove 11. The display film 50 has several markings corresponding to the touch area and / or display area. The display film 50 can be a colored sticker displaying the refrigerator's operating parameters or options for adjusting operating status, such as refrigeration mode, quick cooling, energy saving, temperature, preservation, defrosting, and network connectivity. The display unit on the display panel 30 emits light to illuminate the corresponding markings, or the touch sensor aligns with these markings.

[0043] The sealing layer includes a first sealing layer connecting the display bracket 20 and the bracket limiting wall 12, and a second sealing layer connecting the display panel 30 and the display bracket 20. This partition assembly 1000 achieves better sealing, as the gaps between the various structures are blocked by the sealing layer, preventing moisture from entering the display module 100.

[0044] The following is a more detailed explanation from the perspective of the display bracket 20:

[0045] like Figures 5-7 As shown, the display bracket 20 in this embodiment includes a fitting wall 23 and a display limiting wall 22. The display limiting wall 22 surrounds the cavity, which has a lower opening 220, as detailed below. Figure 5 As shown, the cavity is provided with multiple inner walls 21, multiple hot-melt pillars 24, and several third screw holes 26. The inner walls 21 surround light-transmitting holes 210, and the lower opening 220 connects to the light-transmitting holes 210. The shape of the lower opening 220 matches the shape of the display panel 30. The cross-section of the fitting wall 23 matches the cross-section of the bracket groove 11. An annular adhesive groove 230 is provided between the fitting wall 23 and the display limiting wall 22, and the annular adhesive groove 230 is arranged around the outside of the lower opening 220.

[0046] The shape of the lower opening 220 matches the shape of the display panel 30, such as Figure 7 As shown, certain tolerances may exist during production. For example, the gap between the display panel 30 and the display limiting wall 22 is about 0.2mm. The gap is very small. After the display panel 30 is tightly attached to the display bracket 20, avoid setting a sealing layer. That is, after potting, the glue will enter the interior of the display bracket 20, especially into the light-transmitting hole 210, affecting the propagation of light and causing uneven display brightness.

[0047] In addition, the display bracket 20 includes a step portion 221 disposed on the display limiting wall 22. The step portion 221 is disposed around the lower opening 220 and is recessed in the thickness direction of the display limiting wall 22. Furthermore, the height of the step portion 221 is the same as the height of the inner wall 21. Thus, after the display panel 30 is assembled with the display bracket 20, it abuts against the step portion 221 and the inner wall 21 to form a support.

[0048] After the display panel 30 is installed into 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.

[0049] The light-transmitting holes 210 have a preset depth, which is used to ensure that the light illuminating the display film 50 from the display unit is uniform. The display unit can be an LED lamp bead emitting a point light source. If the point light source is too close to the display film 50, the display effect will be that some areas are too bright and other areas are too dark. Here, the light-transmitting holes 210 are spaced at a preset depth, so that the position of the light source is at a certain distance from the display film 50. When looking at the display film 50 from above, the brightness of the markings on the display film 50 is uniform, and the display effect is better.

[0050] The display panel 30 includes a circuit board and several touch-sensing units connected to the circuit board. Each touch-sensing unit passes through a light-transmitting hole 210 and abuts against the display film 50. Each touch-sensing unit may include a touch-sensing capacitor mounted 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 on the display film 50. The touch-sensing unit corresponds to a mark in the touch area through the light-transmitting hole 210, and the display unit corresponds to a mark in the display area through the light-transmitting hole 210. These marks can be the same mark; that is, one mark can simultaneously function as both a touch control and a display. Thus, when the mark corresponding to the touch area on the display film 50 is touched externally, the induced potential is transmitted to the capacitor via the spring, thereby achieving touch control.

[0051] 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 arranged around the outside of all the light-transmitting holes 210. The annular seal 60 is disposed within the annular sealing groove 25 and abuts against the display panel 40 and the ring of the display bracket 20. The display film 50 and the annular seal 60 are both adhered to the upward side of the display bracket 20. The annular seal 60 can prevent moisture from entering the light-transmitting holes 210 from above, and the sealing layer prevents moisture from entering the light-transmitting holes 210 from below.

[0052] The display bracket 20 includes several downwardly positioned hot-melt pillars 24, and the display panel 30 includes positioning holes 32 for passing through the hot-melt pillars 24. The hot-melt pillars 24 serve to position and prevent errors during installation, avoiding incorrect installation of the display panel 30. After the hot-melt pillars 24 are fused, they will ensure that the display panel 30 is tightly attached to the display bracket 20.

[0053] The bracket limiting wall 12 includes a plurality of first snap-fit ​​parts 13, and the display bracket 20 includes a plurality of second snap-fit ​​parts 231, wherein the first snap-fit ​​parts 13 and the second snap-fit ​​parts 231 are snapped together.

[0054] 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, and the display module 100 further includes screw connectors fixed to the first screw holes 14 and second screw holes 27. The screw connectors are screws or bolts, which fix the display bracket 20 and the panel bracket 10 together.

[0055] The sealing layer is made of a colloid, which covers the gap between the display bracket 20 and the bracket limiting wall 12, as well as the gap between the display panel 30 and the display bracket 20. The colloid is a medium that can act as a sealant, preventing moisture from entering the various gaps and crevices.

[0056] During installation, 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 attached to the display bracket 20. Next, the display bracket 20 is fixed to the panel bracket 10. After fixing, glue is applied, which is to set the above-mentioned sealing layer, thereby completing the installation of the entire display module 100.

[0057] Then, the display module 100 is connected to the display slot 71 via circuitry:

[0058] Wiring 74 is provided inside the display slot 71, and the display board 30 includes lead wires 31. Wiring 74 and lead wires 31 are directly connected, such as... Figure 8 As shown, direct connection differs from connection via connectors. Connectors have a certain height, occupy space, and require the display module 100 and main partition 200 to be stabilized before they can be connected, which is quite troublesome. However, with the structure of this embodiment, when installing the display module 100, the factory only needs one hand to connect the lead wire 31, eliminating the need to use two hands to connect the connectors and then fix them with tape, thus improving production efficiency.

[0059] Then, the display module 100 is fixedly connected to the display slot 71:

[0060] Several first engaging parts 72 are provided on the front side of the display slot 71, and the panel bracket 10 is provided with second engaging parts 15 that mate with the first engaging parts 72; both the first engaging parts 72 and the second engaging parts 15 are set in an "L" shape, and the two "L" shaped engaging parts engage with each other.

[0061] Several first mating parts 73 are provided on the rear side of the display slot 71, and the panel bracket 10 is provided with second mating parts 17 that mate with the first mating parts 73. The first mating parts 73 and the second mating parts 17 can both be holes, wherein the first mating parts 73 have threads, and screws or bolts are provided to pass through the second mating parts 17 and the first mating parts 73 in sequence to fix the display module 100.

[0062] During installation, the display module 100 is first assembled, and then the second engaging part 15 at the front end of the display module 100 is engaged with the first engaging part 72 of the display slot 71 to fix the front end of the display module 100 relative to the display slot 71. Then, the display module 100 is flipped over, and the second mating part 17 at the rear end of the display module 100 is also fixed with the display slot 71, thus completing the installation of the display module 100 on the partition assembly 1000.

[0063] In addition, the upper surface of the upper partition 70 that is not covered by the display module 100 is on the same plane as the upper surface of the display panel 40. This results in better integration and also makes it easier to place items on it.

[0064] Compared with the prior art, this embodiment has the following beneficial effects:

[0065] By placing the display module 100 on the partition assembly 1000 inside the refrigeration equipment, the partition assembly 1000 can have a display function. This structure of the partition assembly 1000 can achieve a better sealing effect. The gaps between the various structures are blocked by the sealing layer, preventing moisture from entering the interior of the display module 100. Although there is a large temperature difference between the top and bottom of the partition assembly 1000, the temperature can be prevented from getting too low by the heat insulation component below. In addition, the light emitted from the display panel 30 reaches the display panel 40 through the light-transmitting hole 210, which can also make the light illumination uniform. Since the display module 100 can be set inside the refrigeration equipment, the intelligence level of the refrigeration equipment can be improved.

[0066] It should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This way of describing the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

[0067] The detailed descriptions listed above are merely specific descriptions of feasible embodiments of the present invention, and are not intended to limit the scope of protection of the present invention. All equivalent embodiments or modifications made without departing from the spirit of the present invention should be included within the scope of protection of the present invention.

Claims

1. A refrigeration device, comprising an inner liner and a partition assembly fixedly connected to the inner liner, characterized in that, The partition assembly divides the inner liner into a refrigerator compartment and a freezer compartment, with the freezer compartment located below the refrigerator compartment. The partition assembly includes: The main partition includes an upper partition and a lower partition. A display slot is provided above the upper partition. The main cavity is enclosed between the lower part of the upper partition and the lower partition. A heat insulation component is provided inside the main cavity. The display module includes a panel bracket fixedly connected to the display slot, a display panel disposed above the panel bracket, a display plate disposed below the display panel, a sealing layer, a display support, and a display film. The display panel is exposed in the refrigerator compartment and has a touch area and a display area. The display support is fixedly connected to the panel bracket and includes several light-transmitting holes, a bonding wall, a display limiting wall, a lower opening enclosed by the display limiting wall, and a stepped portion disposed on the display limiting wall. The display plate also includes a circuit board and several touch-sensing units connected to the circuit board. The display film has several markings corresponding to the touch area and the display area. The touch-sensing units and display units correspond to the markings through the light-transmitting holes. The display plate includes touch-sensing units corresponding to the touch area and display area, and each touch-sensing unit passes through the light-transmitting holes. The hole abuts against the display film; the panel bracket includes a bracket body, a bracket limiting wall protruding downward from the bracket body, and a bracket groove extending through the bracket body and enclosed by the bracket limiting wall, the cross-section of the fitting wall matches the cross-section of the bracket groove; the lower opening communicates with the light-transmitting hole, the shape of the lower opening matches the shape of the display panel, an annular adhesive groove is provided between the fitting wall and the display limiting wall, the annular adhesive groove is arranged around the outside of the lower opening; the display limiting wall encloses a cavity, an inner wall is provided inside the cavity, a stepped portion is arranged around the lower opening and is recessed in the thickness direction of the display limiting wall, the height of the stepped portion is the same as the height of the inner wall, so that the display panel abuts against the stepped portion and the inner wall; the sealing layer is a colloid, the colloid covers the gap between the display bracket and the bracket limiting wall, and covers the gap between the display panel and the display bracket.

2. The refrigeration equipment according to claim 1, characterized in that, The light-transmitting hole has a preset depth, and the light-transmitting hole of the preset depth is used to make the light irradiated by the display unit onto the display film uniform.

3. The refrigeration equipment according to claim 1, characterized in that, The sealing layer includes a first sealing layer connected between the fitting wall and the bracket limiting wall, and a second sealing layer connected between the display panel and the display limiting wall.

4. The refrigeration equipment according to claim 1, characterized in that, The partition assembly further includes an annular seal, and the display bracket includes an annular sealing groove facing the display panel. The annular sealing groove is disposed around the outside of all the light-transmitting holes, and the annular seal is disposed inside the annular sealing groove and abuts against the display panel and the display bracket ring, respectively.

5. The refrigeration equipment according to claim 1, characterized in that, The front side of the display slot is provided with a plurality of first engaging parts, and the panel bracket is provided with second engaging parts that mate with the first engaging parts; The rear side of the display slot is provided with a plurality of first mating parts, and the panel bracket is provided with a second mating part that mates with the first mating parts.

6. The refrigeration equipment according to claim 1, characterized in that, Wiring is provided inside the display slot, and the display panel includes leads. The wiring and the leads are directly connected.

7. The refrigeration equipment according to claim 1, characterized in that, The upper surface of the upper partition that is not covered by the display module is on the same plane as the upper surface of the display panel.

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