Refrigerator
The detachable shelf design, through the cooperation of the connecting shell, sub-shelves and moving parts, solves the problem of complicated shelf position replacement in refrigerators, realizes arbitrary adjustment of the shelf in the height direction and simplifies disassembly and assembly, thus improving operational efficiency.
Patent Information
- Application Number
- CN202520535647.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-25
AI Technical Summary
The existing refrigerator shelves are complicated to change when they are moved, and the support structure is fixed in position, so it is not possible to change them arbitrarily in the height direction of the refrigerator.
The shelf design is detachable, including a connecting shell, sub-shelves and a movable component. The movable component can switch between the connecting and detaching positions to connect and disconnect the shelf from the inner liner. The movable component is driven by an elastic element to simplify the assembly and disassembly process.
It enables the shelves to be adjusted to any position in the height direction of the cabinet, simplifies the assembly and disassembly process, improves installation and disassembly efficiency, and saves resources.
Smart Images

Figure CN223909829U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The embodiment of the present application relates to the refrigeration technical field, in particular to a refrigerator. BACKGROUND
[0002] At present, the refrigerator generally comprises a cabinet, a cabinet door and a refrigeration system. The cabinet forms a refrigeration compartment. The cabinet door can open and close the refrigeration compartment. The refrigeration system comprises a compressor, a condenser, a throttling device and an evaporator. The evaporator can transfer cold energy to air when working, so as to reduce the temperature in the refrigeration compartment, so that the refrigeration compartment can refrigerate or freeze articles.
[0003] The inner container is usually provided with shelves to place articles. The existing shelves are generally inserted into the groove of the inner container, or placed on the support structure of the inner container. When it is necessary to change the position of the shelf in the inner container, the shelf needs to be pulled out of the inner container.
[0004] The operation of changing the position of the existing shelf is complex, and the position of the shelf support structure is fixed, so the position of the shelf cannot be arbitrarily changed in the height direction of the cabinet. Therefore, the present application provides a refrigerator. CONTENT OF THE UTILITY MODEL
[0005] The embodiment of the present application provides a refrigerator, which can solve the technical problems of complex operation when changing the position of the shelf and the position of the shelf can be arbitrarily changed in the height direction of the cabinet.
[0006] In a first aspect, the embodiment of the present application provides a refrigerator, comprising:
[0007] The cabinet comprises an inner container. The inner container comprises inner container side plates arranged on the side of the inner container. The inner container side plates have two, and the two inner container side plates are arranged opposite and spaced apart in the width direction of the cabinet.
[0008] The shelf is detachably clamped between the two inner container side plates. The shelf comprises:
[0009] The connecting shell is formed with a mounting cavity.
[0010] Two sub-shelves are connected to the two sides of the connecting shell in the width direction of the cabinet. At least one of the sub-shelves is partially inserted into the connecting shell and is in sliding connection with the connecting shell.
[0011] The moving piece is at least partially located in the mounting cavity. The moving piece has a connecting position and a dismounting position, and the moving piece switches between the connecting position and the dismounting position by moving.
[0012] When the moving piece is in the connecting position, the shelf is clamped between the two inner container side plates, and the two sub-shelves are in contact with the end portions of the connecting shell away from the inner container side plates, and the sub-shelves in sliding connection with the connecting shell are clamped between the moving piece and the inner container side plates.
[0013] When the moving piece is in the dismounting position, the sub-shelves in sliding connection with the connecting shell slide into the mounting cavity, so that the end portions of the two sub-shelves away from the connecting shell are out of contact with the inner container side plates.
[0014] The shelf is provided with a connecting shell, two sub-shelves and a moving piece, and the moving piece is switched between the connecting position and the dismounting position, so that the moving piece is in the connecting position to realize the connection of the shelf and the inner container, the moving piece is moved to the dismounting position to drive the sub-shelves to slide into the mounting cavity, the size of the shelf in the width direction of the box body is reduced, the sub-shelves are separated from the inner container side plates, the shelf is dismounted from the inner container, the dismounting process does not need to move the shelf out of the inner container, and the shelf can be mounted on the inner container again by moving the moving piece, the dismounting process is convenient, and the position of the shelf in the height direction of the box body can be changed at will.
[0015] According to one embodiment of the present application, a third connecting portion is arranged on the connecting shell.
[0016] The shelf comprises:
[0017] An elastic piece is arranged in the mounting cavity.
[0018] A connecting piece;
[0019] When the connecting piece is connected with the third connecting portion, the connecting piece is located on the side of the moving piece away from the elastic piece, the connecting piece and the elastic piece limit the moving piece in the connecting position, and the moving piece and the connecting shell compress the elastic piece.
[0020] After the connecting piece is disconnected from the third connecting portion, the compressed elastic piece drives the moving piece to move from the connecting position to the dismounting position.
[0021] The shelf is provided with a connecting piece and an elastic piece, the moving piece is limited in the connecting position by the connection of the connecting piece with the third connecting portion, the moving piece is stably in the connecting position, when the connecting piece is disconnected from the third connecting portion, the moving piece is driven to move to the dismounting position by the force generated by the compression of the elastic piece, and no other driving piece is needed, so that resources can be saved.
[0022] According to one embodiment of the present application, the two sub-layer frames are slidably connected with the connecting shell along the width direction of the box, so that the sub-layer frames can be closest to and farthest from the inner container side plates during installation and disassembly of the layer frames, thereby improving the installation and disassembly efficiency.
[0023] The moving piece switches between the connecting position and the disassembling position by moving along the height direction of the box, so that the moving piece can quickly switch between the connecting position and the disassembling position, thereby improving the installation and disassembly efficiency.
[0024] According to one embodiment of the present application, when the connecting piece is connected with the third connecting part, the connecting piece is located on the side of the moving piece close to the bottom end of the box, so that the user can conveniently control the connecting piece, and the moving piece can be conveniently switched between the connecting position and the disassembling position.
[0025] According to one embodiment of the present application, the two sub-layer frames are respectively a first layer frame and a second layer frame.
[0026] The first layer frame comprises a first support plate and a first connecting part, the first connecting part is connected with the first support plate, and the first connecting part is located at the end of the first layer frame connected with the connecting shell; a first plug plate is arranged at the end of the first connecting part away from the first support plate, and the first plug plate is inserted into the installation cavity.
[0027] The second layer frame comprises a second support plate and a second connecting part, the second connecting part is connected with the second support plate, and the second connecting part is located at the end of the second layer frame connected with the connecting shell; a second plug plate is arranged at the end of the second connecting part away from the second support plate, and the second plug plate is inserted into the installation cavity.
[0028] When the moving piece is located at the connecting position, the first plug plate and the second plug plate are in contact with the moving piece, and the first support plate and the second support plate are respectively in contact with the two inner container side plates.
[0029] The first layer frame comprises a first support plate and a first connecting part, and the first connecting part comprises a first plug plate, so that the first layer frame can be connected with the inner container and the connecting shell while supporting the articles; the second layer frame comprises a second support plate and a second connecting part, and the second connecting part comprises a second plug plate, so that the second layer frame can be connected with the inner container and the connecting shell while supporting the articles.
[0030] According to one embodiment of the present application, the moving piece comprises a moving plate.
[0031] When the moving piece is located at the connecting position, the sub-layer frame is clamped between the moving plate and the inner container side plate.
[0032] When the moving piece is in the dismounting position, the moving plate is located on the side of the first plug-in plate and the second plug-in plate close to the bottom end of the box body in the height direction of the box body, the moving plate can avoid the first layer frame and the second layer frame, so that the first layer frame and the second layer frame can move into the mounting cavity, and the end of the first layer frame and the second layer frame away from the connecting shell is out of contact with the side plate of the inner container.
[0033] According to an embodiment of the present application, a first limiting surface is formed on the first plug-in plate, and a second limiting surface is formed on the second plug-in plate.
[0034] When the moving piece is in the connecting position, the moving piece is located on the side of the first limiting surface and the second limiting surface close to the bottom end of the box body.
[0035] According to an embodiment of the present application, a first guide surface is formed on the end of the first plug-in plate away from the first support plate, and the top end of the first guide surface is located on the side of the bottom end of the first guide surface away from the first support plate.
[0036] A second guide surface is formed on the end of the second plug-in plate away from the second support plate, and the top end of the second guide surface is located on the side of the bottom end of the second guide surface away from the second support plate.
[0037] The first limiting surface and the second limiting surface are arranged to limit the moving piece, so that the moving piece can be accurately moved to the connecting position.
[0038] According to an embodiment of the present application, a first supporting plate is arranged on the connecting shell; the first supporting plate is located on the side of the third connecting part close to the bottom end of the box body; when the moving piece is in the dismounting position, the first supporting plate supports the connecting piece, and the connecting shell or the connecting piece supports the moving piece.
[0039] The first limiting surface and the second limiting surface are arranged to limit the moving piece, so that the moving piece can be accurately moved to the connecting position.
[0040] In a second aspect, the embodiments of the present application provide a refrigerator, which comprises:
[0041] A box body comprises an inner container; the inner container comprises side plates arranged on the side of the inner container, and the side plates are arranged opposite to each other and spaced apart in the width direction of the box body;
[0042] A layer frame is detachably clamped between the two side plates of the inner container; the layer frame comprises:
[0043] A connecting shell is arranged in the mounting cavity.
[0044] Two sub-layer racks, along the width direction of the box, two sub-layer racks are connected to the two sides of the connecting shell respectively; at least one of the sub-layer racks is inserted into the connecting shell and is in sliding connection with the connecting shell;
[0045] A moving part, at least partially located in the installation cavity;
[0046] When the layer rack is clamped between the two inner tank side plates, the ends of the two sub-layer racks away from the connecting shell are in contact with the two inner tank side plates respectively, and the sub-layer rack in sliding connection with the connecting shell is clamped between the moving part and the inner tank side plate;
[0047] When the layer rack is removed from the inner tank side plate, the moving part moves relative to the connecting shell, and the sub-layer rack in sliding connection with the connecting shell slides into the installation cavity, so that the ends of the two sub-layer racks away from the connecting shell are out of contact with the inner tank side plate.
[0048] The layer rack includes a connecting shell, two sub-layer racks and a moving part, which can realize the connection of the layer rack and the inner tank, and by sliding the moving part and the sub-layer rack into the installation cavity, the size of the layer rack in the width direction of the box can be reduced, the sub-layer rack is separated from the inner tank side plate, the layer rack is removed from the inner tank, and the removal process does not need to move the layer rack out of the inner tank, and the layer rack can be installed on the inner tank again by moving the moving part, so that the disassembly and assembly process is convenient; and the position of the layer rack in the height direction of the box can be changed arbitrarily. BRIEF DESCRIPTION OF DRAWINGS
[0049] In order to more clearly illustrate the embodiments of the present application or the implementation manners in the related art, the drawings needed to be used in the embodiments or related art description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0050] Figure 1 It is a front view of a refrigerator of an embodiment of the present application;
[0051] Figure 2 It is a top view of a layer rack of an embodiment of the present application;
[0052] Figure 3 It is a sectional view of a layer rack of an embodiment of the present application;
[0053] Figure 4 It is a sectional view of a layer rack of an embodiment of the present application;
[0054] Figure 5 It is another sectional view of a layer rack of an embodiment of the present application;
[0055] Figure 6Another partial structure sectional view of the shelf according to an embodiment of the present application;
[0056] Figure 7 An exploded view of the shelf according to an embodiment of the present application;
[0057] Figure 8 A partial structure exploded view of the shelf according to an embodiment of the present application;
[0058] Figure 9 Another partial structure sectional view of the shelf according to an embodiment of the present application;
[0059] Figure 10 Another partial structure exploded view of the shelf according to an embodiment of the present application;
[0060] Figure 11 A structure view of the first shell according to an embodiment of the present application;
[0061] Figure 12 A structure view of the second shell according to an embodiment of the present application;
[0062] Figure 13 A partial structure view of the second shell according to an embodiment of the present application;
[0063] Figure 14 Another partial structure view of the second shell according to an embodiment of the present application;
[0064] Figure 15 A structure view of the connecting piece according to an embodiment of the present application;
[0065] Figure 16 A structure view of the connecting piece from another perspective according to an embodiment of the present application;
[0066] Figure 17 A structure view of the moving piece according to an embodiment of the present application.
[0067] Explanation of reference signs:
[0068] 1: box body; 2: box door;
[0069] 3: shelf; 31: connecting shell; 311: mounting cavity;
[0070] 312: first shell; 3121: first guide column; 3123: third limiting plate;
[0071] 313: second shell; 3131: third connecting part; 3132: first connecting hole; 31321: first through hole; 31322: first avoiding hole; 3133: connecting hole side; 3134: first supporting plate; 3135: first connecting plate; 3136: second shell;
[0072] 3141: first insertion hole; 31411: first upper insertion hole; 31412: first lower insertion hole;
[0073] 3142: second insertion hole; 31421: second upper insertion hole; 31422: second lower insertion hole;
[0074] 31431: first upper guide plate; 31432: first lower guide plate;
[0075] 31441: first upper limiting plate; 31442: first lower limiting plate;
[0076] 31451: second upper guide plate; 31452: second lower guide plate;
[0077] 31461: second upper limiting plate; 31462: second lower limiting plate;
[0078] 32: sub-layer frame;
[0079] 321: first layer frame; 3211: first support plate; 3212: first connecting part; 32121: first insertion plate; 321211: first limiting surface; 321212: first guide surface; 32122: first insertion slot; 32123: first limiting slot;
[0080] 322: second layer frame; 3221: second support plate; 3222: second connecting part; 32221: second insertion plate; 322211: second limiting surface; 322212: second guide surface; 32222: second insertion slot; 32223: second limiting slot;
[0081] 33: moving part; 331: moving plate; 3311: third guide surface; 3312: fourth guide surface; 332: second guide column; 333: first positioning column;
[0082] 34: elastic part;
[0083] 35: connecting part; 351: connecting body; 3511: first positioning slot; 352: limiting protrusion; 353: rotating part. DETAILED DESCRIPTION
[0084] In order to make the purposes, embodiments and advantages of the present application clearer, the following will combine the drawings in the exemplary embodiments of the present application to clearly and completely describe the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only a part of the embodiments of the present application, but not all the embodiments.
[0085] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the embodiments described next, and is not intended to limit the embodiments of the present application. Unless otherwise specified, these terms should be understood according to their ordinary and general meanings.
[0086] In addition, the terms "include" and "have" and any variations thereof are intended to cover but not exclusively include, for example, a product or device containing a series of components does not have to be limited to those components clearly listed, but can include other components not clearly listed or inherent to these products or devices.
[0087] In the description of the present application, it should be understood that the terms "center", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0088] The terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0089] In the description of the present application, it should be noted that unless otherwise specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication between the two elements inside. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0090] The technical solutions in the embodiments of the present application will be described clearly and completely in the following description of the embodiments of the present application, obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0091] As described in the background, in the related art, a shelf is usually arranged in the inner container to place articles. The existing shelf is generally inserted into a groove of the inner container or placed on a support structure of the inner container. When the position of the shelf in the inner container needs to be changed, the shelf needs to be pulled out of the inner container. The operation is complicated when the position of the shelf is changed. Moreover, the position of the support structure of the shelf is fixed and the position of the shelf in the height direction of the box body cannot be changed arbitrarily.
[0092] To solve the above technical problems, the present application provides a refrigerator. The refrigerator comprises a box body and a shelf. The box body comprises an inner container. The inner container comprises inner container side plates arranged on the side of the inner container. The inner container side plates have two. The two inner container side plates are arranged opposite and spaced apart in the width direction of the box body. The shelf is detachably clamped between the two inner container side plates. The shelf comprises a connecting shell, two sub-shelves and a moving piece. The connecting shell forms an installation cavity. In the width direction of the box body, the two sub-shelves are connected to the two sides of the connecting shell respectively. At least one sub-shelf is partially inserted into the connecting shell and is in sliding connection with the connecting shell. The moving piece is at least partially located in the installation cavity. The moving piece has a connecting position and a dismounting position. The moving piece switches between the connecting position and the dismounting position by moving. When the moving piece is in the connecting position, the shelf is clamped between the two inner container side plates. The ends of the two sub-shelves away from the connecting shell are in contact with the two inner container side plates respectively. The sub-shelf in sliding connection with the connecting shell is clamped between the moving piece and the inner container side plate. When the moving piece is in the dismounting position, the sub-shelf in sliding connection with the connecting shell slides into the installation cavity, so that the ends of the two sub-shelves away from the connecting shell are out of contact with the inner container side plate. The moving piece can be connected with the inner container in the connecting position, the moving piece can be moved to the dismounting position, the sub-shelf can be driven to slide into the installation cavity, the size of the shelf in the width direction of the box body can be reduced, the sub-shelf can be separated from the inner container side plate, the shelf can be dismounted from the inner container, the dismounting process does not need to move the shelf out of the inner container, the shelf can be mounted on the inner container again by moving the moving piece, the dismounting and mounting process is convenient, and the position of the shelf in the height direction of the box body can be changed arbitrarily.
[0093] Reference Figure 1 The embodiments of the present application provide a refrigerator. The refrigerator can comprise a box body 1. The box body 1 can define a refrigeration compartment. The refrigeration compartment can have multiple. The refrigeration compartment can be a refrigeration compartment or a freezing compartment.
[0094] Reference Figure 1 The refrigerator can comprise a box door 2. The box door 2 can be rotatably connected with the box body 1 to open or close the refrigeration compartment. The box door 2 and the box body 1 can be hinged, so that the box door 2 can rotate relative to the box body 1. The box door 2 can be a refrigeration door for closing the refrigeration compartment. The box door 2 can also be a freezing door for closing the freezing compartment.
[0095] The bottom end of the cabinet 1 to the top end of the cabinet 1 can be a height direction of the cabinet 1. The cabinet 1 has a width direction, one side end of the cabinet 1 to the other side end of the cabinet 1 can be a width direction of the cabinet 1. The cabinet 1 has a front-rear direction, the front side of the cabinet 1 to the rear side of the cabinet 1 can be a front-rear direction of the cabinet 1. Among the height direction, the width direction and the front-rear direction of the cabinet 1, any two directions are perpendicular to each other.
[0096] The cabinet door 2 can be connected at the front end of the cabinet 1. The refrigerating chamber and the freezing chamber can be arranged in sequence in the height direction of the cabinet 1. The refrigerating chamber and the freezing chamber can also be arranged in sequence in the width direction of the cabinet 1.
[0097] In some embodiments, the refrigerator can include a refrigeration system. The refrigeration system can include a compressor, a condenser, a throttling device and an evaporator connected in a cycle.
[0098] When the refrigeration system is running, the compressor compresses the refrigerant vapor to generate high-temperature and high-pressure refrigerant vapor and delivers the refrigerant vapor into the condenser. The condenser liquefies the high-temperature and high-pressure refrigerant vapor to generate high-temperature and low-pressure refrigerant liquid and delivers the refrigerant liquid into the throttling device. The throttling device depressurizes the refrigerant liquid to change the high-pressure and low-temperature refrigerant liquid into low-pressure and low-temperature refrigerant liquid and delivers the refrigerant liquid into the evaporator. The evaporator receives the low-pressure and low-temperature refrigerant liquid and makes it boil under isobaric conditions to absorb heat and vaporize to form refrigerant vapor, thereby reducing the temperature in the refrigeration chamber.
[0099] In some embodiments, the cabinet 1 can include a cabinet shell. The cabinet 1 can include a liner. The liner can be arranged in the cabinet shell.
[0100] The liner can include liner side plates. The liner side plates can be arranged at the side of the liner. The liner side plates can be at least two. The two liner side plates can be oppositely and spacedly arranged in the width direction of the cabinet.
[0101] In some embodiments, referring to Figure 2 , the refrigerator can include a shelf 3. The shelf 3 can be detachably arranged in the liner. Specifically, the shelf 3 can be detachably clamped between the two liner side plates. The shelf 3 can include a connecting shell 31. The connecting shell 31 can form an installation cavity 311 therein.
[0102] Referring to Figure 2 , the shelf 3 can include two sub-shelves 32. Along the width direction of the cabinet 1, the two sub-shelves 32 are respectively connected at the two sides of the connecting shell 31. At least one sub-shelf 32 is partially inserted into the connecting shell 31 and is in sliding connection with the connecting shell 31.
[0103] Referring to Figure 3 , Figure 4 , Figure 5 and Figure 6, the layer shelf 3 can include a moving piece 33. The moving piece 33 is at least partially located in the installation cavity 311. The moving piece 33 has a connecting position. The moving piece 33 has a dismounting position. The moving piece 33 switches between the connecting position and the dismounting position by moving.
[0104] Figure 4 The moving piece 33 is shown in the connecting position. Referring to Figure 3 When the moving piece 33 is in the connecting position, the layer shelf 3 is clamped between the two inner tank side plates, and the two sub-layer shelves 32 are in contact with the two inner tank side plates respectively at the ends away from the connecting shell 31. The sub-layer shelf 32 connected with the connecting shell 31 is clamped between the moving piece 33 and the inner tank side plate.
[0105] Figure 5 And Figure 6 The moving piece 33 is shown in the connecting position. Referring to Figure 5 And Figure 6 When the moving piece 33 is in the dismounting position, the sub-layer shelf 32 connected with the connecting shell 31 slides into the installation cavity 311, so that the two sub-layer shelves 32 are out of contact with the inner tank side plate at the ends away from the connecting shell 31, so that the layer shelf is dismounted from the inner tank.
[0106] The layer shelf includes a connecting shell, two sub-layer shelves and a moving piece, and the moving piece switches between the connecting position and the dismounting position. In the connecting position, the moving piece can realize the connection of the layer shelf and the inner tank. The moving piece can be moved to the dismounting position, the sub-layer shelf can be driven to slide into the installation cavity, the size of the layer shelf in the width direction of the box body can be reduced, the sub-layer shelf is separated from the inner tank side plate, the layer shelf is dismounted from the inner tank, and the dismounting process does not need to move the layer shelf out of the inner tank. The layer shelf can be mounted on the inner tank again by moving the moving piece, and the dismounting process is convenient. The position of the layer shelf in the height direction of the box body can be changed at will.
[0107] In some embodiments, referring to Figure 3 , Figure 4 , Figure 5 And Figure 6 When the layer shelf 3 is clamped between the two inner tank side plates, the two sub-layer shelves 32 are in contact with the two inner tank side plates respectively at the ends away from the connecting shell 31. The sub-layer shelf 32 connected with the connecting shell 31 is clamped between the moving piece 33 and the inner tank side plate. When the layer shelf is dismounted from the inner tank side plate, the moving piece moves relative to the connecting shell 31, and the sub-layer shelf 32 connected with the connecting shell 31 slides into the installation cavity 311, so that the two sub-layer shelves 32 are out of contact with the inner tank side plate at the ends away from the connecting shell 31.
[0108] The layer frame comprises a connecting shell, two sub-layer frames and a moving piece, can realize the connection of the layer frame and the inner container, can reduce the size of the layer frame in the width direction of the box through the sliding of the moving piece and the sub-layer frame in the installation cavity, can make the sub-layer frame and the side plate of the inner container separate, can detach the layer frame from the inner container, the detachment process does not need to move the layer frame out of the inner container, and the moving piece can be installed on the inner container again, the detachment process is convenient; and the position of the layer frame in the height direction of the box can be changed at will.
[0109] In some embodiments, referring to Figure 3 、 Figure 4 、 Figure 5 and Figure 6 , the layer frame 3 can comprise an elastic piece 34. The elastic piece 34 can be a telescopic spring. The elastic piece 34 can be arranged in the installation cavity 311. The elastic piece 34 can be located between the moving piece 33 and the connecting shell 31.
[0110] The layer frame 3 can comprise a connecting piece 35. The connecting piece 35 is detachably connected with the connecting shell 31. The connecting shell 31 can be provided with a third connecting part 3131.
[0111] When the connecting piece 35 is connected with the third connecting part 3131, the connecting piece 35 can be located on the side of the moving piece 33 away from the elastic piece 34, the connecting piece 35 and the elastic piece 34 limit the moving piece 33 in the connecting position, and the moving piece 33 and the connecting shell 31 compress the elastic piece 34.
[0112] After the connecting piece 35 is disconnected with the third connecting part 3131, the moving piece driven by the compressed elastic piece moves from the connecting position to the detachment position.
[0113] The layer frame comprises a connecting piece and an elastic piece, the moving piece can be limited in the connecting position through the connection of the connecting piece with the third connecting part, so that the moving piece stably stays in the connecting position, when the connecting piece is disconnected with the third connecting part, the moving piece can be driven to move to the detachment position by the force generated by the compression of the elastic piece, without the need to set other driving pieces, so that resources can be saved.
[0114] In some embodiments, the two sub-layer frames 32 and the connecting shell 31 are slidably connected in the width direction of the box 1, so that the sub-layer frames can be closest to and farthest from the side plate of the inner container during the installation and detachment of the layer frame, and the installation and detachment efficiency can be improved. The moving piece 33 switches between the connecting position and the detachment position through the movement in the height direction of the box 1, so that the moving piece can quickly switch between the connecting position and the detachment position, and the installation and detachment efficiency can be improved.
[0115] In some embodiments, the elastic member 34 is located on the side of the moving member 33 away from the bottom end of the box body 1. When the connecting member 35 is connected with the third connecting part 3131, the connecting member 35 is located on the side of the moving member 33 close to the bottom end of the box body 1, which facilitates the user to control the connecting member and can facilitate the control of the moving member to switch between the connecting position and the disassembling position.
[0116] When the moving member 33 is switched from the connecting position to the disassembling position, the moving member 33 moves along the height direction of the box body 1 to the side close to the bottom end of the box body 1. When the moving member 33 is switched from the disassembling position to the connecting position, the moving member 33 moves along the height direction of the box body 1 to the side away from the bottom end of the box body 1.
[0117] In some embodiments, referring to Figure 7 and Figure 8 , the two sub-layer frames 32 can be a first layer frame 321 and a second layer frame 322 respectively. The first layer frame 321 can include a first support plate 3211. The first layer frame 321 can include a first connecting part 3212. The first connecting part 3212 can be connected with the first support plate 3211. The first connecting part 3212 is located at the end of the first layer frame 321 connected with the connecting shell 31. The first support plate 3211 is located at the end of the first layer frame 321 away from the connecting shell 31. The first connecting part 3212 is located at the end of the first layer frame connected with the connecting shell 31.
[0118] The end of the first connecting part 3212 away from the first support plate 3211 is provided with a first plug plate 32121. The first plug plate 32121 is inserted into the mounting cavity 311.
[0119] Referring to Figure 8 , the second layer frame 322 includes a second support plate 3221. The second layer frame 322 includes a second connecting part 3222. The second connecting part 3222 is connected with the second support plate 3221. The second connecting part 3222 is located at the end of the second layer frame 322 connected with the connecting shell 31.
[0120] The end of the second connecting part 3222 away from the second support plate is provided with a second plug plate 32221, and the second plug plate 32221 is inserted into the mounting cavity 311.
[0121] When the moving member 33 is in the connecting position, the first plug plate and the second plug plate are in contact with the moving member 33, and the first support plate 3211 and the second support plate 3221 are respectively in contact with the two inner container side plates.
[0122] The first layer frame comprises a first support plate and a first connecting part, and the first connecting part comprises a first plug plate, which can support the articles and realize the connection of the first layer frame with the inner container and the connecting shell; the second layer frame comprises a second support plate and a second connecting part, and the second connecting part comprises a second plug plate, which can support the articles and realize the connection of the second layer frame with the inner container and the connecting shell.
[0123] In some embodiments, with reference to Figure 9 and Figure 10 The moving piece 33 can comprise a moving plate 331. When the moving piece 33 is in the connecting position, the sub-layer frame 32 is clamped between the moving plate 331 and the side plate of the inner container. When the moving piece 33 is in the dismounting position, along the height direction of the box body 1, the moving plate 331 is located on the side close to the bottom end of the box body 1 of the first plug plate 32121 and the second plug plate 32221, and the moving plate can avoid the first layer frame and the second layer frame, so that the first layer frame and the second layer frame can move into the mounting cavity, and the end of the first layer frame and the second layer frame away from the connecting shell is out of contact with the side plate of the inner container.
[0124] In some embodiments, with reference to Figure 9 and Figure 10 The first plug plate 32121 is formed with a first limiting surface 321211, and the second plug plate 32221 is formed with a second limiting surface 322211.
[0125] When the moving piece 33 is in the connecting position, the moving piece 33 is located on the side close to the bottom end of the box body 1 of the first limiting surface 321211 and the second limiting surface 322211. The first limiting surface and the second limiting surface can limit the movement of the moving piece, so that the moving piece can accurately move to the connecting position.
[0126] In some embodiments, with reference to Figure 9 and Figure 10 The first plug plate 32121 is formed with a first guiding surface 321212 at the end away from the first support plate 3211, and the top end of the first guiding surface 321212 is located on the side away from the first support plate 3211 of the bottom end of the first guiding surface 321212.
[0127] The second plug plate 32221 is formed with a second guiding surface 322212 at the end away from the second support plate 3221, and the top end of the second guiding surface 322212 is located on the side away from the second support plate 3221 of the bottom end of the second guiding surface 322212. The first guiding surface and the second guiding surface can guide the movement of the moving piece, so as to facilitate the movement of the moving piece from the dismounting position to the connecting position.
[0128] The moving piece 33 is provided with a third guide surface 3311 matched with the first guide surface 321212. The moving piece 33 is provided with a fourth guide surface 3312 matched with the second guide surface 322212. The third guide surface 3311 and the fourth guide surface 3312 are respectively located on both sides of the moving piece 33 in the width direction of the box body.
[0129] When the moving piece 33 is located at the connecting position, the third guide surface 3311 is in contact with the first guide surface 321212, and the fourth guide surface 3312 is in contact with the second guide surface 322212.
[0130] The third guide surface 3311 is located on the moving plate 331. The fourth guide surface 3312 is also located on the moving plate 331. The third guide surface 3311 and the fourth guide surface 3312 are respectively located on both sides of the moving plate 331 in the width direction of the box body.
[0131] In some embodiments, referring to Figure 10 , Figure 11 and Figure 12 , the connecting shell 31 is formed with a first insertion hole 3141 and a second insertion hole 3142 on both sides in the width direction of the box body 1. The two sub-shelves 32 are respectively inserted into the installation cavity 311 from the first insertion hole 3141 and the second insertion hole 3142.
[0132] In some embodiments, referring to Figure 10 , Figure 11 and Figure 12 , the first insertion plate 32121 can have a plurality of layers. The plurality of layers of the first insertion plate 32121 can be sequentially and spaced apart along a first direction. Along the first direction, a first insertion slot 32122 can be arranged between adjacent two layers of the first insertion plate 32121. The second insertion plate 32221 can have a plurality of layers. The plurality of layers of the second insertion plate 32221 can be sequentially and spaced apart along the first direction. Along the first direction, a second insertion slot 32222 can be arranged between adjacent two layers of the second insertion plate 32221. Wherein, when the moving piece 33 is located at the connecting position, the first direction can be parallel to the height direction of the box body 1.
[0133] In some embodiments, referring to Figure 10 , Figure 11 and Figure 12 , the connecting shell 31 can include a first outer shell 312. The connecting shell 31 can include a second outer shell 313. The first outer shell 312 and the second outer shell 313 can be sequentially and spaced apart along a first direction, and the first outer shell 312 and the second outer shell 313 enclose the installation cavity 311.
[0134] In some embodiments, referring to Figure 10 , Figure 11 and Figure 12The first jack 3141 can include a first upper jack 31411. The first jack 3141 can include a first lower jack 31412. At least one layer of the first upper jack 31411 can be formed on the first shell 312. At least one layer of the first lower jack 31412 can be formed on the second shell 313. Among the plurality of layers of the first plugboard 32121, at least one layer of the first plugboard 32121 is inserted into the first upper jack 31411, and at least one layer of the first plugboard 32121 is inserted into the first lower jack 31412, so that the first layer frame 321 is with the first shell 312 and the second shell 313. Among the plurality of layers of the first plugboard 32121, at least one layer of the first plugboard 32121 is inserted between the first shell 312 and the second shell 313.
[0135] The first shell 312 is provided with a first upper guide plate 31431 for surrounding the first upper jack 31411. When the first plugboard 32121 is inserted into the first upper jack 31411, the first upper guide plate 31431 is inserted into the first plug slot 32122. The second shell 313 is provided with a first lower guide plate 31432 for surrounding the first lower jack 31412. When the first plugboard 32121 is inserted into the first lower jack 31412, the first lower guide plate 31432 is inserted into the first plug slot 32122. The first upper guide plate and the first lower guide plate can guide the sliding of the first layer frame, and can reduce the shaking of the first layer frame 321 along the first direction.
[0136] In some embodiments, referring to Figure 10 、 Figure 11 and Figure 12 The second jack 3142 can include a second upper jack 31421. The second jack 3142 can include a second lower jack 31422. At least one layer of the second upper jack 31421 can be formed on the first shell 312. At least one layer of the second lower jack 31422 can be formed on the second shell 313.
[0137] Among the plurality of layers of the second plugboard 32221, at least one layer of the second plugboard 32221 is inserted into the second upper jack 31421, and at least one layer of the second plugboard 32221 is inserted into the second lower jack 31422, so that the second layer frame 322 is with the first shell 312 and the second shell 313. Among the plurality of layers of the second plugboard 32221, at least one layer of the second plugboard 32221 is inserted between the first shell 312 and the second shell 313.
[0138] The first shell 312 is provided with a second upper guide plate 31451 for surrounding a second upper insertion hole 31421. When the second insertion plate 32221 is inserted into the second upper insertion hole 31421, the second upper guide plate 31451 is inserted into the second insertion slot 32222. The second shell 313 is provided with a second lower guide plate 31452 for surrounding a second lower insertion hole 31422. When the second insertion plate 32221 is inserted into the second lower insertion hole 31422, the second lower guide plate 31452 is inserted into the second insertion slot 32222. The second upper guide plate and the second lower guide plate can guide the sliding of the second layer frame, and can reduce the shaking of the second layer frame 322 in the first direction.
[0139] In some embodiments, referring to Figure 10 、 Figure 11 and Figure 12 , one layer of first insertion plates 32121 inserted into the first insertion hole 3141 can have one first insertion plate 32121. One layer of second insertion plates 32221 inserted into the second insertion hole 3142 can have one second insertion plate 32221.
[0140] In some embodiments, one layer of first insertion plates 32121 inserted into the first insertion hole 3141 can have at least two first insertion plates 32121. The first insertion plates 32121 in the same layer can be sequentially and spaced apart in the second direction. The first insertion plates 32121 in the same layer can be sequentially and spaced apart in the second direction. Adjacent two first insertion plates 32121 in the same layer are provided with a first limiting slot 32123.
[0141] The first shell 312 can be provided with a first upper limiting plate 31441 for surrounding a first upper insertion hole 31411. When the first insertion plate 32121 is inserted into the first upper insertion hole 31411, the first upper limiting plate 31441 is inserted into the first limiting slot 32123.
[0142] The second shell 313 can be provided with a first lower limiting plate 31442 for surrounding a first lower insertion hole 31412. When the first insertion plate 32121 is inserted into the first lower insertion hole 31412, the first lower limiting plate 31442 is inserted into the first limiting slot 32123.
[0143] In some embodiments, referring to Figure 10 、 Figure 11 and Figure 12 , one layer of second insertion plates 32221 inserted into the second insertion hole 3142 can have at least two second insertion plates 32221. The second insertion plates 32221 in the same layer can be sequentially and spaced apart in the second direction. Adjacent two second insertion plates 32221 in the same layer are provided with a second limiting slot 32223.
[0144] The first shell 312 can be provided with a second upper limiting plate 31461 for enclosing a second upper insertion hole 31421. The second insertion plate 32221 is inserted into the second upper insertion hole 31421, and the second upper limiting plate 31461 is inserted into the second limiting groove 32223.
[0145] The second shell 313 can be provided with a second lower limiting plate 31462 for enclosing a second lower insertion hole 31422. The second insertion plate 32221 is inserted into the second lower insertion hole 31422, and the second lower limiting plate 31462 is inserted into the second limiting groove 32223.
[0146] In some embodiments, when the first insertion plate has at least two, the first guide surfaces 321212 on all the first insertion plates are coplanar. When the second insertion plate has at least two, the second guide surfaces 322212 on all the second insertion plates are coplanar.
[0147] In some embodiments, referring to Figure 10 、 Figure 11 and Figure 12 , the elastic member 34 can be located between the moving member 33 and the first shell 312. The first shell 312 can be provided with a first guide column 3121. The elastic member 34 can be sleeved on the first guide column 3121, and the first guide column 3121 is arranged to limit and guide the elastic member.
[0148] In some embodiments, the first shell can include a first housing. The first housing is formed with a first upper insertion hole 31411 and a second upper insertion hole 31421. The first guide column 3121 is connected to the first housing. The first guide column 3121 is located on the side of the first housing close to the moving member.
[0149] In some embodiments, referring to Figure 10 , the moving member 33 can include a second guide column 332. The second guide column 332 can be located on the side of the moving plate 331 close to the elastic member 34. The elastic member 34 can be sleeved on the second guide column 332, and the second guide column 332 is arranged to limit and guide the elastic member.
[0150] In some embodiments, the elastic member 34 can have two. The two elastic members 34 can be spaced apart in the second direction. The first guide column 3121 can have two. The two first guide columns 3121 can be spaced apart in the second direction. The second guide column 332 can have two, and the two second guide columns 332 can be spaced apart in the second direction.
[0151] In some embodiments, referring to Figure 11 、 Figure 12 and Figure 10The third limiting plate 3123 can be arranged between the two elastic members 34.
[0152] When the moving member 33 is in the connecting position, the third limiting plate 3123 is arranged between the two sub-layer frames 32. When the moving member is in the disassembling position, the third limiting plate 3123 is arranged between the two sub-layer frames 32 to avoid the collision of the two sub-layer frames 32 when sliding into the mounting cavity.
[0153] In some embodiments, referring to Figure 11 、 Figure 12 、 Figure 10 and Figure 11 , the connecting shell 31 is formed with a first connecting hole 3132. The first connecting hole 3132 is in communication with the mounting cavity 311. The first connecting hole 3132 is in communication with the space outside the connecting shell 31, so that the first connecting hole 3132 communicates the mounting cavity 311 with the space outside the connecting shell 31. The first connecting hole 3132 is formed on the second shell 313.
[0154] When the connecting member 35 is connected with the third connecting part 3131, the connecting member 35 is inserted into the first connecting hole 3132, and the connecting member 35 is located on the side of the moving member 33 away from the elastic member 34. The connecting member 35 and the elastic member 34 limit the moving member 33 in the connecting position, and the connecting member 35 is in contact with the moving member 33.
[0155] In some embodiments, referring to Figure 12 、 Figure 10 、 Figure 11 and Figure 12 , the connecting shell 31 includes a connecting hole side surface 3133 surrounding the first connecting hole 3132. The third connecting part 3131 is a first groove body formed at the connecting hole side surface 3133.
[0156] The connecting member 35 is inserted into the first connecting hole 3132, and rotating the connecting member 35 makes the connecting member 35 partially inserted into the first groove body, so as to realize the connection between the connecting member 35 and the first connecting part.
[0157] The connecting member 35 includes a connecting body 351. The connecting member 35 includes a limiting protrusion 352. The limiting protrusion 352 has at least two. The at least two limiting protrusions are circumferentially spaced around the connecting body 351. The limiting protrusion 352 is connected with the side of the connecting body 351. The number of the first groove bodies is the same as the number of the limiting protrusions.
[0158] The first connecting hole 3132 includes a first through hole 31321. The first through hole 31321 is in communication with the mounting cavity 311. The first through hole 31321 is in communication with the space outside the connecting shell 31
[0159] The first connecting hole 3132 comprises a first avoiding hole 31322. The number of the first avoiding hole 31322 is the same as the number of the limiting protrusion 352. The first avoiding hole 31322 has at least two. The at least two first avoiding holes 31322 are arranged in a circumferential direction around the first through hole 31321. The first avoiding hole 31322 is in communication with the first through hole 31321.
[0160] The connecting body 351 is inserted into the first through hole 31321, the limiting protrusion 352 is inserted into the first avoiding hole 31322, the connecting body 351 is rotated in the third direction when the limiting protrusion 352 is opposite to the first slot, the limiting protrusion 352 is inserted into the first slot, and the connection between the connecting piece 35 and the first connecting part is achieved.
[0161] The connecting body 351 is rotated in the opposite direction of the third direction, so that the limiting protrusion 352 is turned out of the first slot, the connection between the connecting piece 35 and the first connecting part is separated, and the moving piece 33 driven by the compressed elastic piece 34 moves from the connection position to the disassembly position. The moving piece 33 drives the connecting piece 35 to move.
[0162] In some embodiments, referring to Figure 10 、 Figure 11 、 Figure 12 and Figure 10 , the connecting shell 31 is provided with a first supporting plate 3134. The first supporting plate 3134 is located on one side of the third connecting part 3131 close to the bottom end of the box body 1. When the moving piece 33 is in the disassembly position, the first supporting plate 3134 supports the connecting piece 35, and the connecting shell 31 or the connecting piece 35 supports the moving piece 33. The first supporting plate is arranged to support the connecting piece when the moving piece is in the disassembly position, so as to avoid the connecting piece from being taken off the connecting shell. The connecting piece 35 can be taken off the first supporting plate by rotating the connecting piece 35.
[0163] In some embodiments, referring to Figure 11 、 Figure 12 、 Figure 17 and Figure 10 , the second shell can comprise a second shell body 3136. The first connecting hole 3132 is formed on the second shell body. The second shell comprises a first supporting plate 3134. The second shell comprises a first connecting plate 3135. The first connecting plate 3135 is located below the second shell body 3136. The top end of the first connecting plate 3135 is connected with the second shell body 3136. The bottom end of the first connecting plate 3135 is connected with one end of the first supporting plate 3134.
[0164] In some embodiments, referring to Figure 11 , the moving piece 33 can comprise a first positioning column 333. The first positioning column 333 can be connected with the moving plate 331. The first positioning column 333 is located on one side of the moving plate 331 close to the connecting piece 35.
[0165] The connecting piece 35 is provided with a first positioning slot 3511. The first positioning slot 3511 is formed on the connecting body 351. When the moving piece 33 is in the connecting position, the first positioning column 333 is inserted into the first positioning slot 3511. When the moving piece 33 is in the disassembling position, the first positioning column 333 is inserted into the first positioning slot 3511, and the first positioning column 333 is inserted into the first connecting hole 3132.
[0166] In some embodiments, with reference to Figure 12 、 Figure 13 、 Figure 14 and Figure 15 Figure 16 Figure 13 Figure 14 Figure 15 Figure 16 Figure 13 Figure 14 Figure 15 Figure 16 Figure 13 Figure 14 Figure 15 Figure 16 Figure 17 Figure 13 Figure 14 Figure 15 Figure 16 , the connecting piece 35 is provided with a rotating part 353. The rotating part 353 is connected with the connecting body. When the moving piece 33 is in the connecting position, the rotating part 353 is located on the side of the connecting body 351 away from the moving piece 33.
[0167] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
[0168] In order to facilitate explanation, the above description has been made in combination with specific embodiments. However, the above exemplary discussion is not intended to exhaust or limit the embodiments to the specific forms disclosed above. Various modifications and variations can be derived according to the above teachings. The selection and description of the above embodiments are to better explain the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.
Claims
1. A refrigerator characterized by comprising: The utility model relates to a box (1) including inner container, the inner container includes the inner container side plate of being located in the side of inner container, the inner container side plate has two, two inner container side plate is opposite and interval arrangement in the width direction of box (1), the layer frame (3) of being detachably clamped between two inner container side plate, the layer frame (3) includes the connecting shell (31), the connecting shell (31) is formed with installation cavity (311) in, two sub-layer frame (32) are connected in the two sides of connecting shell (31) along the width direction of box (1), at least one sub-layer frame (32) is partially inserted into connecting shell (31) and is connected with connecting shell (31) slidingly, the moving part (33) is at least partially located in installation cavity (311), the moving part (33) has connecting position and dismounting position, and the moving part (33) switches between connecting position and dismounting position through moving, when the moving part (33) is in connecting position, the layer frame (3) is clamped between two inner container side plate, and the end of two sub-layer frame (32) away from connecting shell (31) is contacted with two inner container side plate respectively, and the sub-layer frame (32) connected with connecting shell (31) slidingly is clamped between moving part (33) and inner container side plate, when the moving part (33) is in dismounting position, the sub-layer frame (32) connected with connecting shell (31) slidingly slides into installation cavity (311), so that the end of two sub-layer frame (32) away from connecting shell (31) is contacted with inner container side plate. The connecting shell (31) is equipped with third connecting part (3131); The layer frame (3) includes: The elastic member (34) is arranged in the installation cavity (311); The connecting member (35) is connected with the third connecting part (3131), and the connecting member (35) is located on the side of the moving part (33) away from the elastic member (34), the connecting member (35) and the elastic member (34) limit the moving part (33) in the connecting position, and the moving part (33) and the connecting shell (31) compress the elastic member (34); After the connecting member (35) is disconnected with the third connecting part (3131), the compressed elastic member (34) drives the moving part (33) to move from the connecting position to the dismounting position. The two sub-layer frames (32) are connected with the connecting shell (31) along the width direction of the box (1). The moving part (33) switches between the connecting position and the dismounting position by moving along the height direction of the box (1).
2. The refrigerator according to claim 1, characterized in that, When the connecting member (35) is connected with the third connecting part (3131), the connecting member (35) is located on the side of the moving part (33) close to the bottom end of the box (1). The two sub-layer frames (32) are a first layer frame (321) and a second layer frame (322), respectively; 3. The refrigerator according to claim 2, characterized in that, 4. The refrigerator according to claim 3, characterized in that, 5. The refrigerator according to claim 4, characterized in that, The first layer frame (321) comprises a first support plate (3211) and a first connecting part (3212), the first connecting part (3212) is connected with the first support plate (3211), and the first connecting part (3212) is located at an end of the first layer frame (321) connected with the connecting shell (31); an end of the first connecting part (3212) away from the first support plate (3211) is provided with a first plug-in plate (32121), and the first plug-in plate (32121) is inserted into the mounting cavity (311); The second layer frame (322) comprises a second support plate (3221) and a second connecting part (3222), the second connecting part (3222) is connected with the second support plate (3221), and the second connecting part (3222) is located at an end of the second layer frame (322) connected with the connecting shell (31); an end of the second connecting part (3222) away from the second support plate (3221) is provided with a second plug-in plate (32221), and the second plug-in plate (32221) is inserted into the mounting cavity (311); When the moving piece (33) is located at the connecting position, the first plug-in plate (32121) and the second plug-in plate (32221) are in contact with the moving piece (33), and the first support plate (3211) and the second support plate (3221) are respectively in contact with two inner container side plates.
6. The refrigerator according to claim 5, characterized in that, The moving piece (33) comprises a moving plate (331); When the moving piece (33) is located at the connecting position, the sub-layer frame (32) is clamped between the moving plate (331) and the inner container side plate; When the moving piece (33) is located at the dismounting position, along the height direction of the box body (1), the moving plate (331) is located on one side of the first plug-in plate (32121) and the second plug-in plate (32221) close to the bottom end of the box body (1).
7. The refrigerator according to claim 5, characterized in that, A first limiting surface (321211) is formed on the first plug-in plate (32121), and a second limiting surface (322211) is formed on the second plug-in plate (32221); When the moving piece (33) is located at the connecting position, the moving piece (33) is located on one side of the first limiting surface (321211) and the second limiting surface (322211) close to the bottom end of the box body (1).
8. The refrigerator according to claim 7, characterized in that, An end of the first plug-in plate (32121) away from the first support plate (3211) is provided with a first guide surface (321212), and a top end of the first guide surface (321212) is located on one side of a bottom end of the first guide surface (321212) away from the first support plate (3211); An end of the second plug-in plate (32221) away from the second support plate (3221) is provided with a second guide surface (322212), and a top end of the second guide surface (322212) is located on one side of a bottom end of the second guide surface (322212) away from the second support plate (3221).
9. The refrigerator according to claim 3, characterized in that, The connecting shell (31) is provided with a first supporting plate (3134); the first supporting plate (3134) is located at one side of the third connecting part (3131) close to the bottom end of the box body (1); when the moving part (33) is in the disassembling position, the first supporting plate (3134) supports the connecting part (35), and the connecting shell (31) or the connecting part (35) supports the moving part (33).
10. A refrigerator characterized by comprising: Comprise: The box body (1) comprises an inner container; the inner container comprises inner container side plates arranged on the side of the inner container, and the inner container side plates have two, and the two inner container side plates are oppositely and spacedly arranged in the width direction of the box body (1); The shelf (3) is detachably clamped between the two inner container side plates; the shelf (3) comprises: The connecting shell (31) is formed with a mounting cavity (311) in the connecting shell (31); Two sub-shelves (32) are connected to the two sides of the connecting shell (31) in the width direction of the box body (1); at least one of the sub-shelves (32) is inserted into the connecting shell (31) and is in sliding connection with the connecting shell (31); The moving part (33) is at least partially located in the mounting cavity (311); When the shelf (3) is clamped between the two inner container side plates, the ends of the two sub-shelves (32) away from the connecting shell (31) are respectively in contact with the two inner container side plates, and the sub-shelf (32) in sliding connection with the connecting shell (31) is clamped between the moving part (33) and the inner container side plate; When the shelf is disassembled from the inner container side plate, the moving part moves relative to the connecting shell (31), the sub-shelf (32) in sliding connection with the connecting shell (31) slides into the mounting cavity (311), so that the ends of the two sub-shelves (32) away from the connecting shell (31) are out of contact with the inner container side plate.