Freezer

By designing an inclined cabinet door assembly and a recessed structure of a transparent door panel, combined with a display area and abutments, the problem of poor display viewing angles in traditional freezers is solved, improving the user experience and display effect.

CN223310964UActive Publication Date: 2025-09-09QINGDAO HAIER SPECIAL ICEBOX +1
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Patent Information

Application Number
CN202422327440.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-09-09
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

The display viewing angles of items in traditional freezers are poor, which affects the attractiveness of products and the user shopping experience.

Method used

A freezer is designed, in which the cabinet door assembly is arranged upwardly with an inclined shape, the transparent door panel is partially recessed, and a display area and display assembly are arranged on the rear side panel. Abutments are used to reduce friction and enhance user viewing convenience.

Benefits of technology

The convenience and display effect of users viewing items in the freezer are improved, and the user experience is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a freezer which comprises a freezer body assembly and a freezer door assembly, and the freezer body assembly is provided with a containing cavity. The cabinet body assembly comprises a front side plate and a rear side plate arranged opposite to the front side plate, and the height of the rear side plate is larger than that of the front side plate. The cabinet door assembly is movably arranged on the cabinet body assembly to open or close the containing cavity. The cabinet door assembly comprises a door frame and a transparent door plate arranged on the door frame. When the containing cavity is closed by the cabinet door assembly, the cabinet door assembly abuts against the front side plate and the rear side plate so that the cabinet door assembly can be obliquely arranged upwards in the direction from the front side plate to the rear side plate. At least part of the transparent door plate is sunken towards the direction of the containing cavity. According to the freezer, the display view angle of objects in the freezer can be increased, a user can conveniently check the objects in the freezer, and the use experience of the user is improved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of refrigerators, and in particular to a refrigerator. Background Art

[0002] With the development of society and the improvement of people's living standards, refrigeration equipment (such as refrigerators and freezers) has become an indispensable household appliance in people's daily lives. As a refrigeration device, freezers have doors that allow light to pass through, making it easier for people to see the items stored inside. They are widely used in commercial scenarios such as supermarkets, convenience stores, and shopping malls.

[0003] In the related art, when people view items in a freezer, the display angle of the items in the freezer will affect the attractiveness of the merchandise and people's shopping experience. Traditional freezers have poor effects in displaying the items inside. Utility Model Content

[0004] In view of this, the present disclosure provides a freezer that can improve the display viewing angle of items in the freezer, which is beneficial for users to view the items in the freezer and improves the user experience.

[0005] Specifically, the present disclosure is achieved through the following technical solutions.

[0006] According to a first aspect of an embodiment of the present disclosure, a freezer is provided, comprising a cabinet body assembly and a cabinet door assembly, wherein the cabinet body assembly is provided with a storage cavity. The cabinet body assembly comprises a front side panel and a rear side panel arranged opposite to the front side panel, and the height of the rear side panel is greater than that of the front side panel. The cabinet door assembly is movably arranged on the cabinet body assembly to open or close the storage cavity. The cabinet door assembly comprises a door frame and a transparent door panel mounted on the door frame. When the cabinet door assembly closes the storage cavity, the cabinet door assembly abuts against the front side panel and the rear side panel, so that the cabinet door assembly is tilted upward in the direction from the front side panel to the rear side panel. At least part of the transparent door panel is recessed in the direction of the storage cavity.

[0007] The technical solutions provided by the embodiments of the present disclosure may include the following beneficial effects.

[0008] When the door assembly is moved, it can open or close the storage cavity. The door assembly is comprised of front and rear side panels, with the rear panel being taller than the front panel. This allows the door assembly to be tilted upward from the front panel to the rear panel, creating a tilted position for the entire door assembly, making it easier for the user to view items within the freezer. When the user views items within the freezer through the transparent door panel, at least a portion of the transparent door panel is recessed toward the storage cavity, magnifying the items within the freezer, facilitating viewing and enhancing the user experience.

[0009] The technical solution of the present disclosure is further described below.

[0010] In one embodiment, the cabinet door assembly can slide relative to the cabinet body assembly. Alternatively, the cabinet door assembly can rotate relative to the cabinet body assembly.

[0011] In one embodiment, the front side panel and the rear side panel are provided with sliding grooves, and the cabinet door assembly is installed in the sliding grooves so as to be able to slide relative to the cabinet body assembly through the sliding grooves.

[0012] In one embodiment, the door frame is provided with a protruding abutment, and the cabinet door assembly abuts against the inner wall of the sliding groove through the abutment.

[0013] In one embodiment, the abutting member includes a first abutting portion and a second abutting portion, the first abutting portion abuts against the bottom wall of the sliding groove, and the second abutting portion abuts against the side wall of the sliding groove.

[0014] In one embodiment, the cabinet assembly further includes a left side panel and a right side panel disposed opposite the left side panel. The end surfaces of the left side panel and the right side panel are disposed obliquely upward in a direction from the front side panel to the rear side panel. When the cabinet door assembly closes the accommodating cavity, the cabinet door assembly abuts against the end surfaces of the left side panel and the right side panel.

[0015] In one embodiment, the rear side panel includes a display area, at least a portion of which protrudes from the front side panel; the display area is provided with a display component, and the display component is used to display information.

[0016] In one embodiment, the display assembly includes a display piece and a light source piece. The display piece and the light source piece are spaced apart from each other, and the light source piece is disposed closer to the rear side panel relative to the display piece.

[0017] In one embodiment, the display assembly further includes a mounting member, which is used to position the display assembly in the display area. The mounting member includes a first mounting slot and a second mounting slot spaced apart from the first mounting slot. The display assembly is mounted on the mounting member via the first mounting slot, and the light source assembly is mounted on the mounting member via the second mounting slot.

[0018] In one embodiment, the display piece is detachably mounted on the mounting piece through the first mounting slot.

[0019] In one embodiment, the transparent door panel is arc-shaped and forms a magnifying glass structure relative to the display area.

[0020] In one embodiment, the door frame is provided with a third mounting groove, and the transparent door panel is mounted on the door frame through the third mounting groove.

[0021] In one embodiment, the cabinet door assembly includes two cabinet door assemblies, and the cabinet body assembly is provided with two sliding grooves corresponding to the two cabinet door assemblies one by one. The cabinet door assembly is slidably connected to the cabinet body assembly through the sliding grooves. When the cabinet door assembly opens the accommodating cavity, at least parts of the two cabinet door assemblies are spaced apart.

[0022] In one embodiment, the cabinet assembly further includes a first sealing member. The cabinet assembly has an inner sidewall extending along the depth direction of the accommodating cavity. The inner sidewall has an inserting portion, and the first sealing member has a mating portion that mates with the inserting portion. Either the inserting portion or the mating portion has an anti-slip portion. During insertion of the inserting portion into the mating portion, the anti-slip portion is compressed to form a secure connection.

[0023] In one embodiment, the anti-slip portion includes an anti-slip fin, the first sealing member has a sealing side and a connecting side that are oppositely arranged, and the plug-fitting portion is arranged on the connecting side.

[0024] When the anti-dropout fin is arranged at the plug-fitting portion, the anti-dropout fin is arranged at an acute angle along the inclined direction from the root to the top and the direction from the connecting side to the sealing side.

[0025] When the anti-slip fin is arranged at the plug-in portion, the anti-slip fin is arranged at an obtuse angle from the root to the top and from the connection side to the sealing side.

[0026] In one embodiment, a sealing portion is provided on the sealing side, and the sealing portion is used to cooperate with the cabinet door assembly.

[0027] The cabinet door assembly is used to reciprocate relative to the cabinet body to open and close the accommodating cavity. When the cabinet door assembly is relative to the accommodating cavity, the sealing portion is squeezed with the cabinet door assembly to form a sealed connection.

[0028] In one embodiment, the sealing portion includes a sealing groove, which is recessed from the sealing side to the connecting side and is used to cooperate with the cabinet door assembly for plugging and sealing.

[0029] In one embodiment, the sealing portion includes at least two sealing fins, and the roots of the sealing fins are connected to the inner wall of the sealing groove at intervals.

[0030] When the cabinet door assembly is inserted into the sealing groove, the top of each sealing fin abuts against the cabinet door assembly and undergoes elastic deformation.

[0031] In one embodiment, the first sealing member is provided with a sealing groove, the outer wall of the sealing groove is connected to the inner wall, and the inner wall of the sealing groove extending along the depth direction of the accommodating cavity is provided with an air bag.

[0032] In one embodiment, the cabinet assembly further includes a sealing fin, which includes a first fin, and the root of the first fin is connected to the airbag so that the elastic deformation of the airbag drives the top of the first fin to move toward the inside of the sealing groove, thereby reducing the opening of the sealing groove.

[0033] And / or, the sealing fin includes a second fin, the second fin is connected to the inner wall of the sealing groove, and is spaced apart from the airbag along the depth direction of the accommodating cavity.

[0034] In one embodiment, the top of the first fin is inclined toward the outside of the sealing groove relative to the root of the first fin, and the top of the second fin is inclined toward the inside of the sealing groove relative to the root of the second fin.

[0035] In one embodiment, the cabinet body assembly also includes a cabinet opening connected to the accommodating cavity, and the cabinet door assembly includes an upper cabinet door and a lower cabinet door. The upper cabinet door and the lower cabinet door are arranged at intervals along the depth direction of the accommodating cavity and are respectively slidably connected to the cabinet body to open or close the cabinet opening. The upper cabinet door is provided with a first abutting protrusion protruding toward the lower cabinet door, and the lower cabinet door is provided with a second abutting protrusion protruding toward the upper cabinet door.

[0036] The freezer also includes a second seal, which is fixed to one of the upper cabinet door and the lower cabinet door. When the cabinet opening is in a closed state, the second seal elastically squeezes the first abutting protrusion and the second abutting protrusion along the sliding direction of the upper cabinet door to form a sealing structure between the upper cabinet door and the lower cabinet door.

[0037] In one embodiment, the upper cabinet door has a first sealing fitting portion facing the lower cabinet door, the first abutting protrusion protrudes from the first sealing fitting portion, and the lower cabinet door has a second sealing fitting portion facing the upper cabinet door, the second abutting protrusion protrudes from the second sealing fitting portion.

[0038] The second sealing member is fixedly arranged on one of the first sealing matching portion and the second sealing matching portion, and elastically squeezes against the other when the cabinet opening is in a closed state.

[0039] In one embodiment, in the depth direction of the accommodating cavity, the height of the second sealing member is not less than the distance between the first sealing fitting portion and the second sealing fitting portion.

[0040] In one embodiment, the second sealing member is fixedly connected to the upper cabinet door and is loosely fitted with the lower cabinet door when the cabinet opening is in an open state.

[0041] Alternatively, the second sealing member is fixedly connected to the lower cabinet door and is loosely fitted with the upper cabinet door when the cabinet opening is in an open state.

[0042] In one embodiment, the transparent door panel is arc-shaped.

[0043] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] BRIEF DESCRIPTION OF THE DRAWINGS The accompanying drawings, which constitute a part of the present disclosure, are used to provide a further understanding of the present disclosure. The exemplary embodiments of the present disclosure and their descriptions are used to explain the present disclosure and do not constitute an improper limitation to the present disclosure.

[0045] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present disclosure. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0046] Figure 1 2 is a schematic structural diagram of a freezer shown in an embodiment.

[0047] Figure 2 for Figure 1 The schematic structural diagram of the cabinet assembly of the freezer is shown.

[0048] Figure 3 The figure is a refrigeration principle diagram of a freezer shown in an embodiment.

[0049] Figure 4 for Figure 1 The freezer is shown in a half-section at AA.

[0050] Figure 5 for Figure 4 The schematic diagram of the partial enlarged structure of the freezer is shown.

[0051] Figure 6 for Figure 4 The schematic diagram of the partial enlarged structure of the freezer is shown.

[0052] Figure 7 for Figure 4 The schematic diagram of the partial enlarged structure of the freezer is shown.

[0053] Figure 8 for Figure 1 The schematic diagram of the partial enlarged structure of the freezer is shown.

[0054] Figure 9 2 is a schematic structural diagram of a freezer shown in an embodiment.

[0055] Figure 10 for Figure 9 The freezer shown is a half-section view in FF.

[0056] Figure 11 for Figure 10 Enlarged view of point G in the middle.

[0057] Figure 12 for Figure 11 Schematic diagram of the structure of the cabinet components in the uninstalled state.

[0058] Figure 13 This is a structural diagram of a cabinet assembly in an uninstalled state according to an embodiment of the present application.

[0059] Figure 14 This is a schematic structural diagram of a first sealing member according to an embodiment of the present application.

[0060] Figure 15 for Figure 10 An enlarged view of point G in another embodiment.

[0061] Figure 16 for Figure 15 Schematic diagram of the structure of the middle cabinet assembly and the first seal.

[0062] Figure 17 This is a structural diagram of a cabinet assembly in an uninstalled state according to an embodiment of the present application.

[0063] Figure 18 This is a structural schematic diagram of a cabinet assembly in another embodiment of the present application in an uninstalled state.

[0064] Figure 19 This is a schematic structural diagram of a first sealing member according to an embodiment of the present application.

[0065] Figure 20 2 is a schematic structural diagram of a freezer shown in an embodiment.

[0066] Figure 21 for Figure 20 The freezer shown is in half section at HH.

[0067] Figure 22 for Figure 21 Enlarged view of point I in the middle.

[0068] Figure 23 This is a structural diagram of the cooperation between the second sealing member and the cabinet door assembly when the cabinet opening is open in one embodiment of the present application.

[0069] Figure 24 for Figure 21 Schematic diagram of the structure of the second sealing member cooperating with the cabinet door assembly when the middle cabinet opening is closed.

[0070] Description of the accompanying drawings.

[0071] 10. Freezer; 100. Cabinet assembly; 110. Accommodation cavity; 120. Front side panel; 130. Rear side panel; 140. Left side panel; 150. Right side panel; 160. Connecting portion; 101. Slide; 102. Display area; 200. Door assembly; 210. Abutment; 211. First abutment; 212. Second abutment; 220. Door frame; 221. Third mounting slot; 230. Transparent door panel; 240. Lower door; 250. Upper door; 260. Second sealing mating portion; 270. First sealing mating portion; 280. Second abutment protrusion; 290. First abutment protrusion; 300. Display assembly; 310. Display piece; 320. Light source; 330. Installation Part; 331, first mounting groove; 332, second mounting groove; 333, mounting portion; 400, fixing part; 500, first sealing member; 510, plug-in fitting portion; 520, sealing side; 521, first inner wall; 522, second inner wall; 530, connecting side; 540, first sealing portion; 550, second sealing portion; 600, anti-slip portion; 610, root of anti-slip fin; 620, top of anti-slip fin; 700, sealing groove; 800, airbag; 810, first fin; 811, root of first fin; 812, top of first fin; 820, second fin; 821, root of second fin; 822, top of second fin; 900, second sealing member. DETAILED DESCRIPTION

[0072] Here, the technical solutions in the embodiments (or "implementations") of the present application will be clearly and completely described in conjunction with the accompanying drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.

[0073] If there are terms related to directional indications or positional relationships in the embodiments of this application (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, height, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationship, movement, etc. between the components in a specific posture (as shown in the accompanying drawings); if the specific posture changes, the directional indication or positional relationship will also change accordingly. In addition, the terms "first" and "second" in the embodiments of this application are only used for the purpose of convenience of description and should not be understood as indicating or implying relative importance.

[0074] With the development of society and the improvement of people's living standards, refrigeration equipment (such as refrigerators and freezers) has become an indispensable household appliance in people's daily lives. However, with a wide variety of types and brands of refrigeration equipment, consumers are overwhelmed with choices. How to win consumer favor and improve product competitiveness has become an increasingly important issue for refrigeration equipment manufacturers.

[0075] As a refrigeration device, the freezer has a light-transmitting door, which makes it easy for people to observe the items stored inside. It is widely used in commercial scenarios such as supermarkets, convenience stores, and shopping malls.

[0076] The present application provides a refrigerator 10, such as Figures 1 to 3 As shown, the refrigerator 10 includes a cabinet assembly 100 and a door assembly 200. The cabinet assembly 100 is provided with a receiving cavity 110, and the door assembly 200 is movably disposed on the cabinet assembly 100 to open or close the receiving cavity 110.

[0077] like Figure 2 As shown, in some embodiments, the cabinet assembly 100 includes a front side panel 120 and a rear side panel 130 disposed opposite the front side panel 120, wherein the height of the rear side panel 130 is greater than the height of the front side panel 120. The cabinet door assembly 200 abuts against the front side panel 120 and the rear side panel 130, so that the cabinet door assembly 200 is tilted upward in the direction from the front side panel 120 to the rear side panel 130. The cabinet door assembly 200 is movably disposed on the cabinet assembly 100 to open or close the accommodating cavity 110. In this way, when the cabinet door assembly 200 is moved, the cabinet door assembly 200 can open or close the accommodating cavity 110. The cabinet door assembly 200 is on the front side panel 120 and the rear side panel 130, and the height of the rear side panel 130 is greater than the height of the front side panel 120, so that the cabinet door assembly 200 is tilted upward along the direction from the front side panel 120 to the rear side panel 130, so that the cabinet door assembly 200 is tilted as a whole to facilitate the user to view the items in the freezer 10.

[0078] It should be noted that there are many specific implementations of the cabinet door assembly 200 being movably arranged on the cabinet assembly 100, including the cabinet door assembly 200 being able to slide relative to the cabinet assembly 100, or the cabinet door assembly 200 being able to rotate relative to the cabinet assembly 100.

[0079] In some embodiments, the cabinet door assembly 200 is capable of sliding relative to the cabinet body assembly 100 .

[0080] In one example, the cabinet assembly 100 is provided with a sliding groove 101 , and the cabinet door assembly 200 slides relative to the cabinet assembly 100 via the sliding groove 101 to open or close the accommodating cavity 110 .

[0081] In other embodiments, the cabinet door assembly 200 is capable of rotating relative to the cabinet body assembly 100 .

[0082] In one example, the refrigerator 10 further includes a rotating shaft, and the door assembly 200 is rotatably connected to the cabinet assembly 100 via the rotating shaft to open or close the accommodating cavity 110 .

[0083] It should be noted that if Figure 4As shown, the height of the front side plate 120 is h1, the height of the rear side plate 130 is h2, and h2>h1.

[0084] In the related art, when people view items in the refrigerator 10, the display angle of the items in the refrigerator 10 will affect the attractiveness of the goods and people's shopping experience. The traditional refrigerator 10 has a poor effect in displaying the items inside.

[0085] Based on this, Figure 1 as well as Figure 4 As shown, in some embodiments, the cabinet door assembly 200 further includes a door frame 220 and a transparent door panel 230 mounted on the door frame 220, wherein at least a portion of the transparent door panel 230 is recessed toward the accommodating cavity 110. Thus, when a user views items in the refrigerator 10 through the transparent door panel 230, the recessed portion of the transparent door panel 230 toward the accommodating cavity 110 can magnify the items in the refrigerator 10, facilitating the user's viewing of the items in the refrigerator 10 and improving the user experience.

[0086] It should be noted that the concave direction toward the accommodating cavity 110 specifically refers to the following: Figure 4 Shown concave in direction E.

[0087] In the related art, when people take out and put items in the freezer 10, they need to open the freezer 10 and close the freezer 10 after taking out and putting. However, the cabinet door assembly 200 of the freezer 10 mentioned above is set at an angle, which will increase the pressure between the cabinet door assembly 200 and the cabinet body assembly 100, making it more difficult to open or close the freezer 10.

[0088] like Figures 4 to 6 As shown, in some embodiments, the cabinet door assembly 200 is provided with a protruding abutment 210, and the cabinet door assembly 200 abuts against the front side panel 120 and the rear side panel 130 via the abutment 210, so that the cabinet door assembly 200 is arranged upwardly and tilted along the direction from the front side panel 120 to the rear side panel 130. The cabinet door assembly 200 is slidably mounted on the cabinet body assembly 100 via the abutment 210 to open or close the accommodating cavity 110.

[0089] In this way, when the cabinet door assembly 200 slides, the cabinet door assembly 200 can open or close the accommodating cavity 110. The cabinet door assembly 200 abuts against the front side plate 120 and the rear side plate 130 through the abutment member 210, and the height of the rear side plate 130 is greater than the height of the front side plate 120, so that the cabinet door assembly 200 is tilted upward along the direction from the front side plate 120 to the rear side plate 130, which increases the abutting force between the cabinet door assembly 200 and the cabinet assembly 100, thereby increasing the friction force of the relative sliding between the cabinet door assembly 200 and the cabinet assembly 100. The abutment 210 is protruding from the cabinet door assembly 200, and the cabinet door assembly 200 abuts against the cabinet assembly 100 through the abutment 210 and slides relative to the cabinet assembly 100, which can reduce the contact area between the cabinet door assembly 200 and the cabinet assembly 100, thereby reducing the friction force of the relative sliding between the cabinet door assembly 200 and the cabinet assembly 100, allowing the user to open or close the cabinet door assembly 200 more easily, which is beneficial to improving the user experience.

[0090] It can be understood that when the cabinet door assembly 200 uses the abutment 210 to abut the cabinet body assembly 100, the contact area between the abutment 210 and the cabinet body assembly 100 is smaller than the contact area when the cabinet door assembly 200 directly abuts the cabinet body assembly 100. Therefore, the use of the abutment 210 can reduce the friction between the cabinet door assembly 200 and the cabinet body assembly 100.

[0091] In some embodiments, the abutting member 210 is made of rubber or silicone, etc. Thus, the abutting member 210 also serves to seal the abutting portion between the cabinet door assembly 200 and the cabinet body assembly 100 .

[0092] like Figure 2 、 Figure 5 as well as Figure 6 As shown, in some embodiments, the front side panel 120 and the rear side panel 130 are provided with a slide groove 101, and the cabinet door assembly 200 is installed in the slide groove 101 so as to slide relative to the cabinet assembly 100 through the slide groove 101. In this way, the cabinet door assembly 200 is installed in the slide groove 101 and can slide relative to the cabinet assembly 100 through the slide groove 101. The provision of the slide groove 101 can further improve the convenience of opening or closing the cabinet door assembly 200, further improving the user experience.

[0093] like Figure 5 As shown, in one example, the abutting member 210 is provided on the door frame 220 , and the cabinet door assembly 200 abuts against the inner wall of the sliding groove 101 through the abutting member 210 .

[0094] like Figure 5As shown, in some embodiments, the abutting member 210 includes a first abutting portion 211 and a second abutting portion 212, wherein the first abutting portion 211 abuts against the bottom wall of the slide groove 101, and the second abutting portion 212 abuts against the side wall of the slide groove 101. In this way, during the relative sliding process of the cabinet door assembly 200 and the cabinet body assembly 100, the cabinet door assembly 200 will contact the bottom wall and side wall of the slide groove 101. By providing the first abutting portion 211 and the second abutting portion 212 on the cabinet door assembly 200, and during the relative sliding process of the cabinet door assembly 200 and the cabinet body assembly 100, the first abutting portion 211 abuts against the bottom wall of the slide groove 101, and the second abutting portion 212 abuts against the side wall of the slide groove 101, the contact area of ​​the cabinet door assembly 200 and the cabinet body assembly 100 during the relative sliding process is further reduced, thereby reducing the friction force of the relative sliding between the cabinet door assembly 200 and the cabinet body assembly 100.

[0095] Of course, in other embodiments, the cabinet door assembly 200 is provided with rollers, which abut against the slide grooves 101 to enable relative sliding between the cabinet door assembly 200 and the cabinet body assembly 100. In this way, the use of the rollers and the slide grooves 101 can convert the sliding friction between the cabinet door assembly 200 and the cabinet body assembly 100 into rolling friction, thereby reducing the friction between the cabinet door assembly 200 and the cabinet body assembly 100.

[0096] In some embodiments, the first abutting portion 211 and the second abutting portion 212 are disposed on the door frame 220 .

[0097] It should be noted that there are many specific implementation methods for the door frame 220 and the first abutting portion 211 and the second abutting portion 212, including integral molding and separate manufacturing and subsequent assembly.

[0098] In some embodiments, the door frame 220 is integrally formed with the first abutting portion 211 and the second abutting portion 212. This can improve the assembly efficiency of the cabinet door assembly 200.

[0099] In the related art, the refrigerator 10 is usually provided with a display device to display graphic information of the goods in the refrigerator 10. However, in the traditional refrigerator 10, the display effect of the display device of the refrigerator 10 is poor.

[0100] like Figure 2 As shown, in some embodiments, the rear side panel 130 includes a display area 102, at least a portion of which protrudes from the front side panel 120. The display area 102 is provided with a display assembly 300, which is used to display information.

[0101] In this way, when the cabinet door assembly 200 is moved, the cabinet door assembly 200 can open or close the accommodating cavity 110. The cabinet door assembly 200 abuts against the front side panel 120 and the rear side panel 130 through the abutment 210, and the height of the rear side panel 130 is greater than the height of the front side panel 120, so that the cabinet door assembly 200 is tilted upward along the direction from the front side panel 120 to the rear side panel 130. The rear side panel 130 has a display area 102 protruding from the front side panel 120, and the display assembly 300 is set in the display area 102. The display area 102 is higher than the front side panel 120, so that the display assembly 300 is set in the display area 102 without being blocked by the front side panel 120, and the user can better observe the information displayed by the display assembly 300, and the display effect of the display assembly 300 of the freezer 10 is better.

[0102] It should be noted that there are many specific implementations of the display component 300, including billboards, light boards, cards, and display screens, etc.

[0103] It should be noted that the information displayed by the display component 300 includes at least one of graphic information, advertising information, preferential information and discount information. The graphic information includes graphic information such as pictures, prices, product instructions and the like of physical items.

[0104] like Figure 5 as well as Figure 6 As shown, in some embodiments, the cabinet door assembly 200 further includes a door frame 220 and a transparent door panel 230 mounted on the door frame 220, and the first abutting portion 211 and the second abutting portion 212 are disposed on the door frame 220. In this way, the cabinet door assembly 200 is slidably disposed in the slide groove 101 through the door frame 220. By disposing the first abutting portion 211 and the second abutting portion on the door frame 220, the door frame 220 is slidably disposed in the slide groove 101 through the first abutting portion 211 and the second abutting portion 212, thereby reducing the friction force of the relative sliding between the door frame 220 and the cabinet assembly 100, so as to facilitate the user to open or close the cabinet door assembly 200. In addition, the user can view the items in the refrigerator 10 through the transparent door panel 230, which is conducive to improving the user's shopping experience.

[0105] It should be noted that there are many specific implementations of the transparent door panel 230, including but not limited to glass, transparent plastic, etc.

[0106] In some embodiments, the transparent door panel 230 is curved and forms a magnifying glass structure relative to the display area 102. Thus, when a user views items in the refrigerator 10 or the graphic information of items displayed on the display assembly 300 through the transparent door panel 230, the curved transparent door panel 230 can magnify the items in the refrigerator 10 and the graphic information of items on the display assembly 300, making it easier for the user to view the items in the refrigerator 10 or the information displayed on the display assembly 300, thereby improving the user experience.

[0107] like Figure 7 as well as Figure 8 As shown, in some embodiments, the display assembly 300 includes a display element 310 and a light source element 320. The display element 310 and the light source element 320 are spaced apart, and the light source element 320 is positioned closer to the rear panel 130 relative to the display element 310. In this way, by spacing the display element 310 and the light source element 320 apart and positioning the light source element 320 closer to the rear panel 130 relative to the display element 310, the light source element 320 can provide light to the display element 310, thereby further improving the display effect of the display assembly 300.

[0108] It should be noted that there are many specific implementations of the light source 320, including a lamp and the like.

[0109] like Figure 7 as well as Figure 8 As shown, in some embodiments, the display assembly 300 further includes a mounting member 330, through which the display assembly 300 is mounted in the display area 102. The mounting member 330 has a first mounting groove 331 and a second mounting groove 332 spaced apart from the first mounting groove 331. The display piece 310 is mounted on the mounting member 330 through the first mounting groove 331, and the light source unit 320 is mounted on the mounting member 330 through the second mounting groove 332. Thus, the display assembly 300 is mounted in the display area 102 through the mounting member 330, which can improve the security of the display assembly 300. Furthermore, the mounting member 330 has a first mounting groove 331 and a second mounting groove 332 spaced apart from the first mounting groove 331. The display piece 310 is mounted in the first mounting groove 331, and the light source unit 320 is mounted in the second mounting groove 332. This method facilitates the installation of the display piece 310 and the light source unit 320 on the mounting member 330. Furthermore, the display element 310 and the light source element 320 are spaced apart from each other so that the light source element 320 provides light for the display assembly 300 , thereby improving the display effect of the display assembly 300 .

[0110] like Figure 7 as well as Figure 8As shown, in some embodiments, the display piece 310 is detachably mounted on the mounting member 330 via the first mounting slot 331. Thus, the display piece 310 can be detachably mounted on the mounting member 330 via the first mounting slot 331, allowing the user to replace the display piece 310 according to the items in the refrigerator 10, thereby displaying information about the items in the refrigerator 10.

[0111] like Figure 7 as well as Figure 8 As shown, in some embodiments, the mounting member 330 includes two mounting portions 333 disposed opposite each other, each of which is provided with a first mounting groove 331 and a second mounting groove 332. Thus, the two mounting portions 333 disposed opposite each other are respectively provided in the display area 102, and both mounting portions 333 are provided with a first mounting groove 331 and a second mounting groove 332, so that the display member 310 and the light source member 320 can be mounted on the mounting member 330. Using two mounting portions 333 disposed opposite each other facilitates the mounting of the display member 310 and the light source member 320 on the mounting member 330.

[0112] like Figure 7 as well as Figure 8 As shown, in some embodiments, the refrigerator 10 further includes a fixing member 400, which is fixedly connected to the rear side panel 130, and at least a portion of the fixing member 400 abuts against the display assembly 300 to fix the display assembly 300. By fixing the fixing member 400 to the rear side panel 130 and abutting at least a portion of the fixing member 400 against the display assembly 300, the display assembly 300 is fixed to the display area 102 under the action of the fixing member 400, thereby ensuring the fixing effect of the display assembly 300.

[0113] It should be noted that there may be various specific implementations of the fixed connection between the fixing member 400 and the rear side plate 130 , including but not limited to screw fixation, clamping fixation, and riveting fixation, etc.

[0114] like Figure 2 As shown, in some embodiments, two fixing members 400 are provided, one at each end of the display assembly 300, and the display assembly 300 is sandwiched between the fixing members 400 and the rear side panel 130. Thus, by providing fixing members 400 at each end of the display assembly 300 and sandwiching the display assembly 300 between the fixing members 400 and the rear side panel 130, and by the fixing members 400 being fixedly connected to the rear side panel 130, the fixing effect of the display assembly 300 is further ensured.

[0115] It should be noted that the number of cabinet door assemblies 200 can be one, two, three or four, etc., and can be set according to actual needs.

[0116] like Figure 2 As shown, in some embodiments, the cabinet assembly 100 further includes a left side panel 140 and a right side panel 150 disposed opposite the left side panel 140. The end surfaces of the left side panel 140 and the right side panel 150 are arranged upwardly and tilted in a direction from the front side panel 120 to the rear side panel 130. When the cabinet door assembly 200 closes the accommodating cavity 110, the cabinet door assembly 200 abuts against the end surfaces of the left side panel 140 and the right side panel 150. As the rear side panel 130 is higher than the front side panel 120, the cabinet door assembly 200 is arranged upwardly and tilted in a direction from the front side panel 120 to the rear side panel 130. By tilting the end surfaces of the left side panel 140 and the right side panel 150 upwardly and tilted in a direction from the front side panel 120 to the rear side panel 130, the cabinet door assembly 200 can abut against the left side panel 140 and the right side panel 150 when closing the accommodating cavity 110, thereby closing the accommodating cavity 110.

[0117] In some embodiments, the front side panel 120 , the rear side panel 130 , the left side panel 140 , the right side panel 150 , and the bottom wall of the accommodating cavity 110 are mutually arranged to form the accommodating cavity 110 .

[0118] It is understood that the orientation or position relationship indicated by "front side panel 120", "rear side panel 130", "left side panel 140", "right side panel 150" etc. is based on the attached Figure 2 The orientations or positional relationships shown are only for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the components referred to must have a specific orientation, be constructed and operate in a specific orientation, and therefore should not be understood as limiting the present disclosure.

[0119] It should be noted that the “front side panel 120 ” is usually the side panel of the refrigerator 10 close to the user during use; and the “rear side panel 130 ” is usually the side panel of the refrigerator 10 close to the wall during use.

[0120] like Figure 1 As shown, in one example, the cabinet door assembly 200 includes two cabinet door assemblies 200. Two sliding grooves 101 corresponding to the two cabinet door assemblies 200 are spaced apart on the front side panel 120 and the rear side panel 130, respectively. When the cabinet door assemblies 200 open the accommodating cavity 110, at least portions of the two cabinet door assemblies 200 are spaced apart. Thus, the two cabinet door assemblies 200 are respectively mounted in the two sliding grooves 101 in a one-to-one correspondence, allowing the refrigerator 10 to open or close the accommodating cavity 110 via the two cabinet door assemblies 200. When the cabinet door assemblies 200 open the accommodating cavity 110, at least portions of the two cabinet door assemblies 200 are spaced apart. This layout is more reasonable and reduces the space occupied by the cabinet door assemblies 200.

[0121] It is understandable that the number of cabinet door assemblies 200 can be one, two, three or four, etc., and can be set according to actual needs.

[0122] like Figure 5 as well as Figure 6 As shown, in some embodiments, the door frame 220 is provided with a third mounting groove 221, and the transparent door panel 230 is mounted on the door frame 220 through the third mounting groove 221. In this way, the transparent panel is mounted on the door frame 220 through the third mounting groove 221, which can improve the reliability of the installation between the door frame 220 and the transparent door panel 230.

[0123] like Figure 5 as well as Figure 6 As shown, in some embodiments, the transparent door panel 230 is detachably mounted to the door frame 220 via the third mounting slot 221. This facilitates installation and removal of the transparent panel from the door frame 220. If either the transparent panel or the door frame 220 is damaged, only the damaged one can be replaced, reducing repair costs.

[0124] like Figures 9 to 11 In some embodiments, the cabinet assembly 100 further includes a first sealing member 500. An inserting portion 160 is provided on the inner sidewall of the cabinet assembly 100 extending in the depth direction of the accommodating cavity 110. The first sealing member 500 includes a plug-in mating portion 510 that mates with the inserting portion 160. Either the inserting portion 160 or the plug-in mating portion 510 is provided with an anti-slip portion 600. During the plug-in mating process between the inserting portion 160 and the plug-in mating portion 510, the anti-slip portion 600 is squeezed to form a fixed connection.

[0125] It should be noted that the first seal 500 can be configured in any shape, such as a strip or block, and this application does not impose any limitation. As an example, the first seal 500 can have a thickness direction arranged along the X direction in the figure, with the first seal 500 having two opposite sides along the thickness direction, namely a sealing side 520 and a connecting side 530. The plug-in mating portion 510 can be provided on the connecting side 530 of the first seal 500. The sealing side 520 of the first seal 500 can be used to form an extrusion seal with the cabinet door assembly 200 when the cabinet door assembly 200 is closed.

[0126] The plug-in portion 160 can be a convex portion protruding from the inner sidewall of the cabinet assembly 100, and the corresponding plug-in fitting portion 510 can be a concave portion concavely provided in the first sealing member 500. The plug-in portion 160 can also be a concave portion concavely provided in the inner sidewall of the cabinet assembly 100, and the corresponding plug-in fitting portion 510 can be a convex portion protruding from the first sealing member 500, so as to form a plug-in fit between the plug-in portion 160 and the plug-in fitting portion 510. In this way, when the cabinet assembly 100 and the first sealing member 500 are assembled, the first sealing member 500 can be fixed to the inner sidewall of the cabinet assembly 100 through the plug-in connection between the plug-in portion 160 and the plug-in fitting portion 510, thereby increasing the plug-in fit area between the first sealing member 500 and the cabinet assembly 100 through the plug-in fit, thereby improving the connection stability between the first sealing member 500 and the cabinet assembly 100.

[0127] At the same time, the anti-slip portion 600 can be configured as a component such as a bump, a rib, or a fin, and the anti-slip portion 600 can be fixed to either the plug-in portion 160 or the plug-in fitting portion 510, and this application does not impose any restrictions. In this way, during the plug-in fit between the cabinet assembly 100 and the first seal 500, the anti-slip portion 600 can be squeezed between the plug-in portion 160 and the plug-in fitting portion 510, further providing an extrusion force for the connection between the plug-in portion 160 and the plug-in fitting portion 510, so that the plug-in portion 160 and the plug-in fitting portion 510 are better fixed to each other, thereby reducing the loosening and falling off of the first seal 500 due to external forces during use, and improving the connection reliability between the cabinet assembly 100 and the first seal 500.

[0128] See also Figures 11 to 14 Taking the anti-slip portion 600 as an elastic anti-slip fin as an example, the extension length of the anti-slip fin from the root to the top is not less than the installation gap between the plug-fitting portion 510 and the plug-fitting portion 160. The root 610 of the anti-slip fin can be connected to the plug-fitting portion 510. In this way, during the plug-fitting process between the plug-fitting portion 160 and the plug-fitting portion 510, the top 620 of the anti-slip fin is squeezed by the plug-fitting portion 160 and elastically deformed to form surface contact with the plug-fitting portion 160, thereby increasing the friction between the top 620 of the anti-slip fin and the plug-fitting portion 160, thereby further preventing the first sealing member 500 from falling out.

[0129] To facilitate the surface contact between the anti-slip fin and the plug-in portion 160, the cross-sectional area of ​​the root portion 610 of the anti-slip fin can be set to be larger than the cross-sectional area of ​​the top portion 620 of the anti-slip fin, so that when the anti-slip fin is squeezed, the elastic deformation of the top portion of the anti-slip fin is greater than the elastic deformation of the root portion of the anti-slip fin, thereby facilitating the surface contact between the anti-slip fin and the plug-in portion 160. At the same time, when the surface contact is formed, the root portion 610 of the anti-slip fin can also support the top portion 620 of the anti-slip fin, so that the anti-slip fin maintains a certain squeezing force between the plug-in portion 160 and the plug-in mating portion 510, thereby preventing the first sealing member 500 from falling out.

[0130] In some embodiments, to facilitate plugging and assembling the first sealing member 500 to the inner sidewall of the cabinet opening, the anti-drop fins may be arranged at an angle relative to the plug-fitting portion 510. For example, the anti-drop fins may be arranged at an acute angle from the root to the top and from the connection side 530 to the sealing side 520.

[0131] Thus, when the plug-in fitting portion 510 and the plug-in portion 160 are installed, the anti-slip fins can be rotated clockwise, causing the overall outer diameter of the anti-slip fins and the plug-in fitting portion 510 to gradually decrease, thereby reducing the friction between the top 620 of the anti-slip fins and the plug-in fitting portion 160, allowing the plug-in fitting portion 510 to be smoothly plugged into the plug-in fitting portion 160, thereby completing the installation of the first seal 500 and the cabinet assembly 100. At the same time, when the plug-in fitting portion 510 is disengaged from the plug-in fitting portion 160, the anti-slip fins can be rotated counterclockwise, causing the overall outer diameter of the anti-slip fins and the plug-in fitting portion 510 to continuously increase, thereby increasing the squeezing force between the plug-in fitting portion 510 and the plug-in fitting portion 160, thereby preventing the plug-in fitting portion 510 from disengaging from the plug-in fitting portion 160 and preventing the first seal 500 from falling off from the cabinet assembly 100. Therefore, the anti-drop fins provided in this way can not only facilitate the installation and fixation of the first sealing member 500 and the cabinet assembly 100, but also prevent the first sealing member 500 from falling off the cabinet assembly 100, so that the cabinet assembly 100 has good connection reliability.

[0132] In other examples, such as Figure 13 As shown, the anti-slip fins can also be set on the plug-in part 160 of the cabinet assembly 100. At this time, the anti-slip fins are set at an obtuse angle along the inclined direction from the root to the top and the direction from the connecting side 530 to the sealing side 520. This can also achieve easy installation and anti-slip effects between the first sealing component 500 and the cabinet assembly 100, which will not be elaborated in this application.

[0133] In some embodiments, a plurality of anti-detachment fins may be provided to form multiple barriers during the detachment process of the first sealing member 500 , thereby preventing the first sealing member 500 from detaching.

[0134] In some embodiments, to improve the sealing between the first sealing member 500 and the cabinet door assembly 200 , a sealing portion is provided on the sealing side 520 of the first sealing member 500 , and the sealing portion is used for extrusion sealing with the cabinet door assembly 200 .

[0135] As an example, the sealing portion includes a sealing groove 700, which is recessed from the sealing side 520 toward the connecting side 530 and is used to cooperate with the cabinet door assembly 200 for plugging and sealing. The sealing groove 700 can be an L-shaped groove or a U-shaped groove, etc., and this application does not impose any restrictions. In this way, the sealing groove 700 is used to increase the sealing connection area between the cabinet door assembly 200 and the first sealing member 500, and a portion of the cabinet opening is wrapped in the sealing groove 700, thereby improving the sealing effect between the cabinet door assembly 200 and the first sealing member 500.

[0136] To facilitate the formation of the sealing groove 700 , the first sealing member 500 may be elastic and bend along the connecting side 530 toward the sealing side 520 to form a sealing groove 700 on the sealing side 520 for plugging with the cabinet door assembly 200 .

[0137] In some embodiments, the sealing portion may further include an elastomer, which is disposed on the inner wall of the sealing groove 700 and is used to be squeezed with the cabinet door assembly 200 to generate elastic deformation to seal the plug-in gap between the cabinet door assembly 200 and the sealing groove 700.

[0138] As an example, the sealing groove 700 includes a first inner wall 521 and a second inner wall 522 connected to the first inner wall 521. The plug-in mating portion 510 can be connected to the outer wall corresponding to the first inner wall 521. The elastic body can be configured as a sealing fin, the root of which is connected to the second inner wall 522. During the insertion of the cabinet door assembly 200 into the sealing groove 700, the sealing fin elastically deforms and abuts between the cabinet door assembly 200 and the second inner wall 522, thereby sealing the insertion gap between the cabinet door assembly 200 and the sealing groove 700. Multiple sealing fins can be provided, each of which is spaced apart on the second inner wall 522 to form a multiple seal between the cabinet door assembly 200 and the sealing groove 700.

[0139] See also Figure 15 In some embodiments, the outer wall of the sealing groove 700 is connected to the inner wall of the cabinet assembly 100, and the inner wall of the sealing groove 700 extending along the depth direction of the accommodating cavity 110 is provided with an air bag 800. In the depth direction of the sealing groove 700, the air bag 800 protrudes from the bottom wall of the sealing groove 700.

[0140] See also Figures 15 to 19In some embodiments, to further improve the sealing effect of the cabinet assembly 100 , the cabinet assembly 100 further includes a sealing fin connected to the inner wall of the sealing groove 700 and one of the airbags 800 .

[0141] As an example, the sealing fin includes a first fin 810, the root 811 of which is connected to the airbag 800. With this arrangement, when the cabinet door enters the sealing groove 700, the cabinet door and the airbag 800 are squeezed, and the elastic deformation of the airbag 800 can form a seal with the side wall of the cabinet door. Simultaneously, the elastic deformation of the airbag 800 can drive the top 812 of the first fin to move toward the interior of the sealing groove 700, thereby reducing the opening of the sealing groove 700 and causing the first fin 810 to press against the lower surface of the cabinet door, forming a seal. This creates a double seal between the cabinet door and the sealing groove, enhancing the sealing effect of the seal.

[0142] Of course, the sealing fins may not be connected to the airbag 800, but may be arranged on the inner wall of the sealing groove 700 separately from the airbag 800. When the cabinet door is inserted into the sealing groove 700, the cabinet door, the airbag 800 and the sealing fins are squeezed to form a double seal, which is not elaborated in this application.

[0143] In some embodiments, to further improve the sealing effect, as an example, two sealing fins are provided, namely a first fin 810 and a second fin 820. The airbag 800 is provided in the first sealing portion 540, and the first fin 810 is connected to the airbag 800. The second fin 820 is connected to the second sealing portion 550, and the first fin 810 and the second fin 820 are staggered with each other. For example, the first fin 810 and the second fin 820 are staggered along the X direction, so that when the cabinet door assembly 200 is inserted into the sealing groove 700 along the X direction, the cabinet door assembly 200 first touches the top second fin 820, so that the second fin 820 moves to fit between the sealing groove 700 and the cabinet door assembly 200, forming a first layer of sealing. As the door assembly 200 continues to be inserted into the sealing groove 700, the door assembly 200 squeezes the airbag 800, causing the airbag 800 to deform, thereby driving the first fin 810 to move into the sealing groove 700, forming a second layer of sealing between the door assembly 200 and the sealing groove 700, thereby improving the sealing effect between the door assembly 200 and the sealing groove 700. At the same time, the deformation of the airbag 800 can also cause the airbag 800 to be tightly pressed against the door assembly 200 to form a third layer of sealing. It is understandable that the upper surface and lower surface of the door assembly 200 can be arranged with relative spacing along the Y direction in the figure, and the side wall of the door assembly 200 can be arranged facing the airbag 800 along the X direction.

[0144] In addition, to facilitate the entry and exit of the cabinet door assembly 200 into and out of the sealing groove 700, the first fin 810 and the second fin 820 can be inclined in different directions. Specifically, the top 812 of the first fin is inclined toward the outside of the sealing groove 700 relative to the root 811 of the first fin, and the top 822 of the second fin is inclined toward the inside of the sealing groove 700 relative to the root 821 of the second fin. For example, the inclination direction of the first fin 810 from the root to the top can be set at an obtuse angle of no more than 180 degrees with the direction in which the cabinet door assembly 200 is inserted into the sealing groove 700 (e.g., the X direction). The inclination direction of the second fin 820 from the root to the top can be set at an acute angle with the direction in which the cabinet door assembly 200 is inserted into the sealing groove 700 (e.g., the X direction).

[0145] like Figure 20 and Figure 21 In some embodiments, the cabinet assembly 100 further includes a cabinet opening connected to the accommodating cavity 110; the cabinet door assembly 200 includes an upper cabinet door 250 and a lower cabinet door 240, which are spaced apart along the depth direction of the accommodating cavity 110 and are respectively slidably connected to the cabinet assembly 100 to open or close the cabinet opening, the upper cabinet door 250 is provided with a first abutting protrusion 290 protruding toward the lower cabinet door 240, and the lower cabinet door 240 is provided with a second abutting protrusion 280 protruding toward the upper cabinet door 250; the second sealing member 900 is fixed to one of the upper cabinet door 250 and the lower cabinet door 240, and when the cabinet opening is in a closed state, the second sealing member 900 elastically squeezes with the first abutting protrusion 290 and the second abutting protrusion 280 respectively along the sliding direction of the upper cabinet door 250 to form a sealing structure between the upper cabinet door 250 and the lower cabinet door 240.

[0146] like Figures 22 to 24In some embodiments, to facilitate sealing the connection gap between the overlapping portion of the lower cabinet door 240 and the upper cabinet door 250, a second sealing member 900 may be provided between the overlapping portion of the lower cabinet door 240 and the upper cabinet door 250 to close the overlapping gap between the two cabinet doors. The second sealing member 900 may be fixedly connected to one of the upper cabinet door 250 and the lower cabinet door 240, and this application is not limited thereto. To reduce wear on the second sealing member 900 during the sliding process of the two cabinet doors, the second sealing member 900 may be clearance-matched with the other of the upper cabinet door 250 and the lower cabinet door 240 to prevent friction between the cabinet door assembly 200 and the second sealing member 900 during the sliding process. At the same time, in order to ensure that there is a good sealing effect between the cabinet door assembly 200 and the second sealing member 900 when the cabinet opening is in the closed state, a first abutting protrusion 290 protruding toward the lower cabinet door 240 can be provided on the upper cabinet door 250, and a second abutting protrusion 280 protruding toward the upper cabinet door 250 can be provided on the lower cabinet door 240, so that when the cabinet opening is in the closed state, the second sealing member 900 elastically squeezes against the first abutting protrusion 290 and the second abutting protrusion 280 respectively along the sliding direction of the upper cabinet door 250 to form a sealing structure between the upper cabinet door 250 and the lower cabinet door 240.

[0147] See also Figure 23 , Figure 23 Schematic diagram of the matching structure of the cabinet door assembly 200 and the second sealing member 900 when the cabinet opening is in the open state. As an example, taking the second sealing member 900 fixed to the lower cabinet door 240 and moving the lower cabinet door 240 to close the cabinet opening, the lower cabinet door 240 moves along the X direction to close the cabinet opening, and the lower cabinet door 240 drives the second sealing member 900 and the second abutting protrusion 280 to move along the X direction to gradually approach the first abutting protrusion 290 of the upper cabinet door 250. When the lower cabinet door 240 is sealed and matched with the left side plate 140 of the cabinet assembly 100, the second sealing member 900 is squeezed against the first abutting protrusion 290 of the upper cabinet door 250. See Figure 4 , Figure 4It is a schematic diagram of the matching structure of the cabinet door assembly 200 and the second sealing member 900 when the cabinet opening is in a closed state. At this time, the second sealing member 900 is subjected to bidirectional lateral pressure from the first abutting protrusion 290 and the second abutting protrusion 280 in the X direction, respectively, so that the second sealing member 900 undergoes elastic deformation. On the one hand, the second sealing member 900 is tightly fitted with the first abutting protrusion 290 and the second abutting protrusion 280 through elastic deformation to seal the gap of the cabinet door assembly 200 along the Y direction. On the other hand, the second sealing member 900 increases the size of the second sealing member 900 along the Y direction through elastic deformation, so that the second sealing member 900 is squeezed between the upper cabinet door 250 and the lower cabinet door 240 along the Y direction, thereby sealing the gap of the cabinet door assembly 200 along the X direction. In this way, the first abutting protrusion 290 and the second abutting protrusion 280 exert bidirectional lateral pressure on the second sealing member 900 along the X direction, so that when the cabinet opening is closed, a good sealing effect can be achieved between the second sealing member 900 and the cabinet door assembly 200.

[0148] Of course, in other embodiments, the second seal 900 can also be fixed to the upper cabinet door 250, and the upper cabinet door 250 drives the second seal 900 and the first abutting protrusion 290 to move along the opposite direction of X to gradually approach the second abutting protrusion 280 of the lower cabinet door 240, thereby realizing elastic deformation of the second seal 900 to form a sealing structure between the upper cabinet door 250 and the lower cabinet door 240. This application will not go into details about this.

[0149] Thus, when the freezer 10 provided by the present application is in use, the first abutting protrusion 290 and the second abutting protrusion 280 exert bidirectional lateral pressure on the second seal 900, so that the second seal 900 and the cabinet door assembly 200 form a sealing structure when the cabinet opening is closed, thereby providing the freezer 10 with a good sealing effect. At the same time, when the cabinet opening is open, the bidirectional lateral pressure exerted on the second seal 900 by the first abutting protrusion 290 and the second abutting protrusion 280 is canceled, and the second seal 900 recovers its elastic deformation to separate from one of the cabinet door assemblies 200, so that the second seal 900 does not generate friction due to the relative movement between the upper cabinet door 250 and the lower cabinet door 240, thereby reducing the wear of the second seal 900 during the movement of the cabinet door assembly 200, extending the service life of the second seal 900, improving the sealing effect of the freezer 10, and reducing the phenomenon of cold leakage and frosting in the freezer 10.

[0150] In addition, the bidirectional lateral pressure exerted by the first abutting protrusion 290 and the second abutting protrusion 280 on the second sealing member 900 can also limit the movement distance between the upper cabinet door 250 and the lower cabinet door 240, thereby preventing the second sealing member 900 from slipping out of the overlapping portion between the upper cabinet door 250 and the lower cabinet door 240 along the Y direction during movement of the cabinet door assembly 200, thereby causing sealing failure. As an example, the first abutting protrusion 290 and the second abutting protrusion 280 can be structures such as bumps, ribs, or fins, and this application does not impose any restrictions thereto.

[0151] See also Figure 22 and Figure 23 In some embodiments, to further enhance the sealing effect between the cabinet door assembly 200 and the second sealing member 900, the upper cabinet door 250 is provided with a first sealing mating portion 270 facing the lower cabinet door 240, and a first abutting protrusion 290 protrudes from the first sealing mating portion 270. The lower cabinet door 240 is provided with a second sealing mating portion 260 facing the upper cabinet door 250, and a second abutting protrusion 280 protrudes from the second sealing mating portion 260. The second sealing member 900 is fixed to one of the first sealing mating portion 270 and the second sealing mating portion 260 and elastically squeezes against the other when the cabinet opening is in the closed state.

[0152] It should be noted that the first sealing fitting part 270 and the second sealing fitting part 260 can squeeze the second seal 900 along the Y direction when the cabinet opening is in a closed state, so as to further increase the extrusion force between the second seal 900 and the cabinet door assembly 200, thereby improving the sealing effect between the second seal 900 and the cabinet door assembly 200.

[0153] For example, see Figure 24 In the depth direction of the accommodating cavity 110, the height H of the second sealing member 900 is no less than the distance H0 between the first sealing mating portion 270 and the second sealing mating portion 260. Along the Y direction, the distance H1 between the second sealing mating portion 260 and the upper cabinet door 250 is greater than the height H of the second sealing member 900, and the distance H2 between the first sealing mating portion 270 and the lower cabinet door 240 is also greater than the height H of the second sealing member 900.

[0154] Thus, when the cabinet opening is closed, the second seal 900 is squeezed along the X-direction by the first abutting protrusion 290 and the second abutting protrusion 280. Simultaneously, the lateral squeezing of the second seal 900 by the first abutting protrusion 290 and the second abutting protrusion 280 can also limit the moving distance between the upper cabinet door 250 and the lower cabinet door 240, so that the second sealing mating portion 260 overlaps with the first sealing mating portion 270 along the Y-direction, thereby squeezing the second seal 900 along the Y-direction. This increases the squeezing force of the second seal 900 between the cabinet door assembly 200, thereby improving the sealing effect between the second seal 900 and the cabinet door assembly 200. By way of example, the second sealing mating portion 260 and the first sealing mating portion 270 can be respectively configured as components such as bumps, ribs, or baffles, and this application does not impose any limitation thereto.

[0155] Also, see Figure 23 In the open cabinet opening, taking the second seal 900 as an example, when the upper cabinet door 250 moves in the X-direction, the first seal 270 and the second seal 260 can be displaced in the X-direction, positioning the second seal 900 between the door panel of the upper cabinet door 250 and the second seal 260. At this point, because the distance between the door panel of the upper cabinet door 250 and the second seal 260 in the Y-direction is greater than the height of the second seal 900, the second seal 900 is no longer squeezed, and a gap exists between the top of the second seal 900 and the door panel of the upper cabinet door 250 in the Y-direction. This prevents the upper cabinet door 250 from contacting the second seal 900 when moving in the X-direction, thereby preventing wear on the second seal 900 and reducing the movement resistance of the cabinet door assembly 200, allowing the user to open and close the cabinet door with ease and ease. Similarly, when the lower cabinet door 240 moves in the opposite direction of X, the second sealing fitting part 260 drives the second sealing component 900 to move together, so that the second sealing component 900 moves out from between the second sealing fitting part 260 and the first sealing fitting part 270, and is located between the second sealing fitting part 260 and the door panel of the upper cabinet door 250, so that the second sealing component 900 does not need to be squeezed and worn during the movement of the cabinet door, thereby extending the service life of the second sealing component 900 and improving the insulation effect of the freezer 10.

[0156] In other embodiments, the second seal 900 can be fixed to the first sealing fitting part 270, and the distance between the first sealing fitting part 270 and the lower cabinet door 240 along the Y direction is also greater than the height of the second seal 900. The principle is the same as the above-mentioned movement process, and this application will not elaborate on it.

[0157] It should be noted that the technical solutions or technical features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of this application is not limited to the precise structures described in the above embodiments and shown in the accompanying drawings; all modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of this application shall be included in the scope of protection of this application.

Claims

1. A freezer, characterized in that: include: A cabinet assembly is provided with a receiving cavity; the cabinet assembly includes a front side panel and a rear side panel arranged opposite to the front side panel, wherein the height of the rear side panel is greater than that of the front side panel; as well as A cabinet door assembly is movably arranged on the cabinet body assembly to open or close the accommodating cavity; the cabinet door assembly includes a door frame and a transparent door panel installed on the door frame; when the cabinet door assembly closes the accommodating cavity, the cabinet door assembly abuts against the front side panel and the rear side panel, so that the cabinet door assembly is tilted upward along the direction from the front side panel to the rear side panel; at least part of the transparent door panel is recessed toward the direction of the accommodating cavity.

2. The refrigerator according to claim 1, characterized in that: The cabinet door assembly can slide relative to the cabinet body assembly; or, the cabinet door assembly can rotate relative to the cabinet body assembly.

3. The refrigerator according to claim 2, characterized in that: The front side plate and the rear side plate are provided with sliding grooves, and the cabinet door assembly is arranged in the sliding grooves so as to be able to slide relative to the cabinet body assembly through the sliding grooves.

4. The refrigerator according to claim 3, characterized in that: The door frame is convexly provided with an abutment piece, and the cabinet door assembly abuts against the inner wall of the sliding groove through the abutment piece.

5. The refrigerator according to claim 4, characterized in that: The abutting member includes a first abutting portion and a second abutting portion, the first abutting portion abuts against the bottom wall of the sliding groove, and the second abutting portion abuts against the side wall of the sliding groove.

6. The refrigerator according to claim 1, wherein: The cabinet body assembly also includes a left side panel and a right side panel arranged opposite to the left side panel; the end surface of the left side panel and the end surface of the right side panel are arranged to be inclined upward along the direction from the front side panel to the rear side panel; when the cabinet door assembly closes the accommodating cavity, the cabinet door assembly abuts against the end surface of the left side panel and the end surface of the right side panel.

7. The refrigerator according to claim 1, wherein: The rear side panel includes a display area, at least a portion of which protrudes from the front side panel; the display area is provided with a display component, and the display component is used to display information.

8. The refrigerator according to claim 7, characterized in that: The display assembly includes a display piece and a light source piece. The display piece and the light source piece are spaced apart from each other, and the light source piece is arranged close to the rear side plate relative to the display piece.

9. The refrigerator according to claim 8, characterized in that: The display assembly also includes a mounting member, and the display assembly is set in the display area through the mounting member; the mounting member is provided with a first mounting groove and a second mounting groove spaced apart from the first mounting groove, the display member is mounted on the mounting member through the first mounting groove, and the light source member is mounted on the mounting member through the second mounting groove.

10. The refrigerator according to claim 9, characterized in that: The display piece is detachably mounted on the mounting piece through the first mounting slot.

11. The refrigerator according to claim 7, wherein: The transparent door panel is arc-shaped and forms a magnifying glass structure relative to the display area.

12. The refrigerator according to claim 1, wherein: The door frame is provided with a third mounting groove, and the transparent door panel is installed on the door frame through the third mounting groove.

13. The refrigerator according to claim 1, wherein: The cabinet door assemblies include two, and the cabinet body assembly is spaced apart with two sliding grooves corresponding to the two cabinet door assemblies. The cabinet door assembly is slidably connected to the cabinet body assembly through the sliding grooves. When the cabinet door assembly opens the accommodating cavity, at least parts of the two cabinet door assemblies are spaced apart.

14. The refrigerator according to claim 1, wherein: The cabinet assembly also includes a first sealing member, and the cabinet assembly is provided with an inner side wall extending along the depth direction of the accommodating cavity; the inner side wall is provided with a plug-in portion, and the first sealing member is provided with a plug-in fitting portion that is matched with the plug-in portion; either the plug-in portion or the plug-in fitting portion is provided with an anti-slip portion, and during the plug-in process between the plug-in portion and the plug-in fitting portion, the anti-slip portion is squeezed to form a fixed plug-in.

15. The refrigerator according to claim 14, characterized in that: The anti-slip portion includes an anti-slip fin, the first sealing member has a sealing side and a connecting side that are oppositely arranged, and the plug-in fitting portion is arranged on the connecting side; When the anti-slip fin is arranged on the plug-fitting portion, the anti-slip fin is arranged at an acute angle along the inclined direction from the root to the top and the direction from the connecting side to the sealing side; When the anti-slip fin is provided on the plug-in portion, the anti-slip fin is provided at an obtuse angle with respect to a direction from the connecting side to the sealing side along an inclined direction from the root to the top.

16. The refrigerator according to claim 15, wherein: The sealing side is provided with a sealing portion, and the sealing portion is used to cooperate with the cabinet door assembly; The cabinet door assembly is used to reciprocate relative to the cabinet body to open and close the accommodating cavity. When the cabinet door assembly is relative to the accommodating cavity, the sealing portion is squeezed with the cabinet door assembly to form a sealed connection.

17. The refrigerator according to claim 16, wherein: The sealing portion includes a sealing groove, which is recessed from the sealing side toward the connecting side and is used to cooperate with the cabinet door assembly for plugging and sealing.

18. The refrigerator according to claim 17, wherein: The sealing portion includes at least two sealing fins, and the roots of the sealing fins are connected to the inner wall of the sealing groove at intervals; When the cabinet door assembly is inserted into the sealing groove, the top of each sealing fin abuts against the cabinet door assembly and undergoes elastic deformation.

19. The refrigerator according to claim 14, wherein: The first sealing member is provided with a sealing groove, the outer wall of the sealing groove is connected to the inner wall; the inner wall of the sealing groove extending along the depth direction of the accommodating cavity is provided with an air bag.

20. The refrigerator according to claim 19, wherein: The cabinet assembly further includes a sealing fin, the sealing fin including a first fin, the root of the first fin being connected to the airbag, and when the cabinet door is engaged with the sealing groove, the airbag can generate elastic deformation to drive the first fin to seal with the lower surface of the cabinet door assembly; And / or, the sealing fin includes a second fin, the second fin is connected to the inner wall of the sealing groove, and when the cabinet door is matched with the sealing groove, the second fin is sealed and matched with the upper surface of the cabinet door assembly.

21. The refrigerator according to claim 20, wherein: The top of the first fin is inclined toward the outside of the sealing groove relative to the root of the first fin, and the top of the second fin is inclined toward the inside of the sealing groove relative to the root of the second fin.

22. The refrigerator according to claim 1, wherein: The cabinet body assembly further includes a cabinet opening communicated with the accommodating cavity, the cabinet door assembly includes an upper cabinet door and a lower cabinet door, the upper cabinet door and the lower cabinet door are spaced apart along the depth direction of the accommodating cavity, and are respectively slidably connected to the cabinet body to open or close the cabinet opening, the upper cabinet door is provided with a first abutting protrusion protruding toward the lower cabinet door, and the lower cabinet door is provided with a second abutting protrusion protruding toward the upper cabinet door; The freezer also includes a second seal, which is fixed to one of the upper cabinet door and the lower cabinet door. When the cabinet opening is in a closed state, the second seal elastically squeezes against the first abutting protrusion and the second abutting protrusion along the sliding direction of the upper cabinet door to form a sealing structure between the upper cabinet door and the lower cabinet door.

23. The refrigerator according to claim 22, wherein: The upper cabinet door is provided with a first sealing fitting portion facing the lower cabinet door, and the first abutting protrusion is protrudingly provided on the first sealing fitting portion; the lower cabinet door is provided with a second sealing fitting portion facing the upper cabinet door, and the second abutting protrusion is protrudingly provided on the second sealing fitting portion; The second sealing member is fixed to one of the first sealing matching portion and the second sealing matching portion, and elastically squeezes against the other one when the cabinet opening is in a closed state.

24. The refrigerator according to claim 23, wherein: In the depth direction of the accommodating cavity, the height of the second sealing member is not less than the distance between the first sealing fitting portion and the second sealing fitting portion.

25. The refrigerator according to claim 22, wherein: The second sealing member is fixedly connected to the upper cabinet door and is loosely fitted with the lower cabinet door when the cabinet opening is in an open state; Alternatively, the second sealing member is fixedly connected to the lower cabinet door and is loosely fitted with the upper cabinet door when the cabinet opening is in an open state.

26. The refrigerator according to any one of claims 1 to 25, characterized in that The transparent door panel is arc-shaped.