Refrigerator
By setting a limit assembly in the refrigerator, the limit piece is slidably connected to the sliding part to form a limit area, which solves the problem of unstable storage of bottled drinks, increases the storage capacity and stability, optimizes space utilization, and reduces wear and noise.
Patent Information
- Application Number
- CN202422716438.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Existing refrigerators have the problems of poor stability and limited storage capacity when storing bottled drinks, especially insufficient height when placed vertically and easy rolling when placed horizontally.
A refrigerator is designed, which includes a limit assembly. The limit member is slidably connected to the sliding part and is fixed to the shelf body through a fixing member to form a limit area, which can adapt to storage items of different sizes and shapes and improve stability and storage capacity.
The storage stability and safety of bottled drinks are improved, the utilization rate of the internal space of the refrigerator is enhanced, the cleaning and maintenance process is simplified, and the production cost and wear noise are reduced.
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Figure CN223448736U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present application relate to the technical field of household appliances. In particular, a refrigerator is provided. BACKGROUND
[0002] A refrigerator can be used to chill bottled drinks to improve the taste of the drinks. The refrigerator can also be used to store bottled drinks that have been opened but not completely consumed, thereby delaying the deterioration of the drinks.
[0003] In related art, a refrigerator is provided with shelves, and a user can lay a bottled drink down to store it on the shelves. The user can also store a bottled drink vertically on the shelves.
[0004] However, existing refrigerators have the problems of unstable storage of bottled drinks and limited storage capacity. SUMMARY
[0005] Embodiments of the present application provide a refrigerator that improves the stability of the storage of bottled drinks, improves the storage capacity of bottled drinks, and improves the space utilization of the refrigerator.
[0006] In a first aspect, embodiments of the present application provide a refrigerator, comprising:
[0007] a cabinet having a cavity;
[0008] an inner container located in the cavity, the inner container forming a storage cavity;
[0009] a shelf assembly disposed in the storage cavity.
[0010] a limiting assembly disposed on the shelf body.
[0011] The shelf assembly includes a shelf body. The shelf body is connected to the inner wall of the inner container. The shelf body is provided with a sliding portion. The extension direction of the sliding portion is parallel to the width direction of the refrigerator.
[0012] The limiting assembly includes:
[0013] a limiting piece, the limiting piece being in sliding connection with the sliding portion; an end of the limiting piece away from the shelf body extending towards the top of the cabinet;
[0014] a fixing piece, the fixing piece being configured to fix the limiting piece to the shelf body.
[0015] The above technical solution has the following advantages or beneficial effects: During the user's use of the refrigerator, the user can manually move the limiting piece, at which time the limiting piece slides along the sliding part. When the user moves the limiting piece to the position needed by the user, the user fixes the limiting piece on the shelf body through the fixing piece. In this way, a limiting area is formed between the limiting piece and the inner wall of the inner container. The user can store bottled drinks in the limiting area. By placing bottled drinks or storage items in the limiting area, the limiting assembly limits the movement of the bottled drinks or storage items, improving the stability of the refrigerator in storing bottled drinks or storage items, thereby increasing the storage capacity of the bottled drinks, avoiding the rolling of the bottled drinks, preventing the bottled drinks from moving or toppling when the refrigerator door is opened or closed, and improving the storage safety of the bottled drinks.
[0016] By setting the limiting assembly, the user can adjust the position of the limiting area according to the needs of the user to adapt to storage items of different sizes and shapes. The refrigerator provided by the embodiments of the present application allows the user to flexibly adjust the position of the limiting piece according to the current storage needs, thereby quickly switching between bottled drinks and other items. This flexibility enables the refrigerator to adapt to diverse usage scenarios.
[0017] By adjusting the position of the limiting piece, the user can optimize the space utilization rate inside the refrigerator, ensuring that different types of items can be reasonably stored. At the same time, the process of manually operating the limiting piece by the user is simple and intuitive, and the user can easily adjust without the need for complex tools or steps. This design improves the user experience.
[0018] In addition, the movable design of the limiting piece allows the user to easily remove or adjust the limiting piece, thereby simplifying the cleaning and maintenance process inside the refrigerator.
[0019] In some embodiments of the present application, the sliding part is configured to form a sliding groove, and the sliding groove extends along the extension direction of the sliding part.
[0020] The part of the limiting piece close to the shelf body is located in the sliding groove.
[0021] The bottom of the sliding groove is provided with a through hole. The limiting piece is connected with the fixing piece through the through hole.
[0022] The above technical solution has the following advantages or beneficial effects: The design of the sliding groove and the through hole is relatively simple, easy to manufacture and maintain. This simplicity helps to reduce production costs and improve product reliability. The limiting piece is connected with the fixing piece through the through hole, providing a stable fixing mechanism to prevent accidental movement of the limiting piece in the sliding groove. This stability is crucial to ensure the safety of the storage items.
[0023] In some embodiments of the present application, the limiting piece is an elastic piece; the elastic piece is used to absorb the energy generated by the collision between the refrigerator storage items and the limiting piece.
[0024] The above technical scheme has the following advantages or beneficial effects: the limiting piece is made of a material with elastic properties, and can be an elastic column made of silica gel or polyurethane. The elastic piece can deform within a certain range. Because the elastic piece has a certain buffering capacity, it provides flexible support for the stored items, avoids collisions between the stored items and the limiting piece, reduces the impact of the stored items, and improves the storage stability of bottled beverages and other stored items. In addition, the elastic piece can reduce friction with the sliding groove and other components during sliding and fixing, thereby reducing wear and noise and prolonging the service life of the limiting piece.
[0025] In some embodiments of the present application, the limiting assembly further includes an elastic sleeve, which is sleeved around the outer periphery of the limiting piece, and the end of the elastic sleeve close to the shelf body abuts against the shelf body.
[0026] The above technical scheme has the following advantages or beneficial effects: the elastic sleeve can be a silica gel sleeve or a polyurethane sleeve. When the limiting piece is connected through the through hole and the fixing piece, the bottled beverage abuts against the elastic sleeve. The provision of the elastic sleeve avoids direct collisions between the bottled beverage and the limiting piece and the stored items, reduces wear, and is conducive to improving the storage of bottled beverages. The elastic sleeve can absorb and buffer external impact or vibration, protecting the stored items from the influence of the opening and closing of the refrigerator door or external vibration. This is particularly important for storing fragile items.
[0027] In addition, the elastic sleeve provides additional protection for the limiting piece, preventing it from being worn, scratched, or otherwise physically damaged during use. This protection prolongs the service life of the limiting piece. The elastic sleeve can reduce the friction noise between the limiting piece and the sliding groove or other components, providing a quieter user experience.
[0028] In addition, the soft touch of the elastic sleeve makes it more comfortable for users to adjust the limiting piece, making the operation process smoother. Moreover, the elastic sleeve can be in different colors or textures, not only increasing visual aesthetics, but also being used to identify limiting pieces of different functions or positions, making it easier for users to identify and operate.
[0029] In addition, the abutment of the end of the elastic sleeve close to the shelf body with the shelf body increases the friction, preventing the limiting piece from sliding or shifting during use and improving the stability of the limiting piece. The elastic sleeve can prevent the limiting piece from scratching or damaging the surface of the shelf body, maintaining the appearance and integrity of the shelf.
[0030] In some embodiments of the present application, the limiting piece and the fixing piece are screwed or clamped.
[0031] The above technical scheme has the following advantages or beneficial effects: both the screw connection and the clamping connection can ensure that the limiting piece does not accidentally fall off during use, thereby improving the safety of the stored items. At the same time, the screw connection and the clamping connection have the advantages of convenient installation and convenient disassembly, which is convenient for user operation.
[0032] In some embodiments of the present application, the number of sliding parts is multiple. The multiple sliding parts are arranged at intervals along the depth direction of the refrigerator.
[0033] The above technical scheme has the following advantages or beneficial effects: by providing multiple sliding parts, users can create multiple independent storage areas inside the refrigerator, avoiding interference between items and improving storage efficiency. The design of multiple sliding parts can ensure that the limiting piece is stably supported at different positions, preventing the stored items from moving accidentally when the refrigerator door is opened or closed.
[0034] Multiple sliding parts provide multiple position options for limiting pieces, allowing users to flexibly adjust the position of the limiting piece according to the size and shape of the stored items, thereby optimizing the use of internal space in the refrigerator. This design can accommodate different heights and sizes of stored items, whether tall bottles of drinks or short cans of food, and can achieve stable storage by adjusting the position of the limiting piece. Users can easily move the limiting piece between different sliding parts without complex operation steps. This design improves user experience and makes the use of the refrigerator more convenient.
[0035] In some embodiments of the present application, the number of limiting pieces is multiple, and the multiple limiting pieces are arranged at intervals along the extension direction of the sliding part.
[0036] The above technical scheme has the following advantages or beneficial effects: multiple limiting pieces can move freely in the sliding groove as needed, allowing users to flexibly adjust the position of the limiting piece according to different storage needs, thereby optimizing the use of space inside the refrigerator. Users can adjust the distance between the limiting pieces to accommodate different sizes of stored items, whether bottles of drinks or other shaped items, and can be well fixed and supported.
[0037] In some embodiments of the present application, the shelf assembly further comprises a cushion layer. The cushion layer is arranged on one side of the shelf body near the top of the box; the cushion layer is connected to the shelf body.
[0038] The cushion layer is provided with an opening, and the opening is arranged corresponding to the sliding part.
[0039] The cushion layer is an elastic cushion layer.
[0040] The above technical scheme has the following advantages or beneficial effects: the elastic cushion layer provides additional cushioning, reducing direct hard contact between the shelf body and the stored items, reducing wear and impact, and protecting the stored items, especially fragile items.
[0041] The elastic cushion layer can absorb vibrations and impacts during the operation of the refrigerator, preventing the stored items from moving or being damaged due to vibrations. At the same time, the friction of the cushion layer can increase the stability of the stored items, preventing the items from sliding when the refrigerator door is opened or closed. In addition, the elastic properties of the cushion layer help to reduce the noise generated when the shelf body comes into contact with other components inside the refrigerator, providing a quieter user experience.
[0042] By setting the openings on the cushion layer corresponding to the sliding part, allowing the free movement and adjustment of the sliding part, the flexibility and adaptability of the shelf assembly are enhanced.
[0043] In some embodiments of the present application, one of the shelf body and the cushion layer is provided with a positioning protrusion, and the other of the shelf body and the cushion layer is provided with a positioning recess; the positioning protrusion and the positioning recess are correspondingly arranged;
[0044] The shelf body and the cushion layer are connected through the positioning protrusion and the positioning recess.
[0045] The above technical solutions have the following advantages or beneficial effects: the cooperation of the positioning protrusion and the recess provides a mechanical locking function, ensuring that the cushion layer cannot be easily displaced or detached during use, maintaining its stability on the shelf body. This connection method usually does not require additional tools for quick installation and disassembly, and users can easily replace or clean the cushion layer. Moreover, the design of the positioning protrusion and the recess ensures that the cushion layer can be accurately aligned and positioned, avoiding misalignment of the cushion layer on the shelf body, thereby maintaining the neatness and aesthetics of the interior of the refrigerator. Through the mechanical cooperation of the protrusion and the recess, the cushion layer has better anti-slip performance on the shelf body, preventing the cushion layer from sliding due to vibrations or external forces during use of the refrigerator.
[0046] In a second aspect, the embodiments of the present application provide a refrigerator, comprising:
[0047] The cabinet has a cavity;
[0048] The inner container is located in the cavity, and the inner container forms a storage cavity.
[0049] The shelf assembly is arranged in the storage cavity.
[0050] The limiting assembly is arranged on the shelf body.
[0051] The shelf assembly includes a shelf body. The shelf body is connected to the inner wall of the inner container; the shelf body is provided with a sliding part; the extension direction of the sliding part is parallel to the width direction of the refrigerator;
[0052] The limiting assembly includes:
[0053] The limiting member is used for sliding connection with the sliding part;
[0054] The fixing member is used to fix the limiting member at different positions of the shelf body.
[0055] The refrigerator provided by the embodiment of the application forms a limiting area between the limiting member and the inner wall of the inner container. By placing the bottled drinks or storage articles in the limiting area, the limiting member limits the movement of the bottled drinks or storage articles, improves the stability of the refrigerator in storing the bottled drinks or storage articles, avoids the rolling of the bottled drinks, prevents the bottled drinks from moving or toppling when the refrigerator door is opened or closed, and improves the storage safety of the bottled drinks. By setting the limiting member, the limiting member can slide along the sliding part, and the position of the limiting area can be flexibly adjusted to adapt to storage articles of different sizes and shapes, thereby improving the space utilization rate of the refrigerator. BRIEF DESCRIPTION OF DRAWINGS
[0056] In order to more clearly illustrate the embodiments of the application or the implementation manners in the related art, the drawings needed to be used in the embodiment or related art description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0057] Figure 1 The structural schematic diagram of the refrigerator provided by the embodiment of the application is shown in the figure.
[0058] Figure 2 The structural schematic diagram of the storage chamber of the refrigerator provided by the embodiment of the application is shown in the figure.
[0059] Figure 3 The structural schematic diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the application is shown in the figure. Figure 1
[0060] Figure 4 The structural schematic diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the application is shown in the figure. Figure 2
[0061] Figure 5 The structural schematic diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the application is shown in the figure. Figure 3
[0062] Figure 6 The structural schematic diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the application is shown in the figure. Figure 4
[0063] Figure 7 The structural schematic diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the application is shown in the figure. Figure 5
[0064] Figure 8 Structure diagram of the shelf assembly and the limiting assembly of the refrigerator provided by the embodiment of the present application Figure 6 ;
[0065] Figure 9 Structure diagram of the shelf body of the refrigerator provided by the embodiment of the present application
[0066] Figure 10 Structure diagram of the cushion layer of the refrigerator provided by the embodiment of the present application
[0067] Figure 11 Structure diagram of the limiting member and the fixing member of the refrigerator provided by the embodiment of the present application
[0068] Explanation of reference signs:
[0069] 100: cabinet
[0070] 200: inner container; 210: container rib
[0071] 300: shelf assembly; 310: shelf body; 320: cushion layer; 330: positioning protrusion; 340: positioning recess; 350: cushion layer corner; 360: sliding part; 361: sliding groove
[0072] 400: limiting assembly; 410: limiting member; 420: elastic sleeve; 430: fixing member
[0073] 500: bottled beverage DETAILED DESCRIPTION
[0074] In order to make the purpose, the implementation and the advantages of the present application more clear, the following will combine the drawings in the exemplary embodiments of the present application, make the clear, complete description of the exemplary implementation 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.
[0075] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the following described embodiments, 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.
[0076] In addition, the terms "include" and "have" and any variations thereof are intended to cover but not exclusive inclusion, for example, the product or equipment containing a series of components is not necessarily limited to the clearly listed components, but can include other components that are not clearly listed or inherent to these products or equipment.
[0077] In the description of the present application, it needs to 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 shown in the drawings, and are 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.
[0078] The terms "first", "second" are only for descriptive purpose, 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.
[0079] In the description of the present application, it needs to be explained that, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, can be fixed connection, can also be detachable connection, or integral connection; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through intermediate medium, can be the communication inside two elements. 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.
[0080] The refrigerator can be used to chill bottled drinks to improve the taste of the drinks. The refrigerator can also store bottled drinks that have been opened but not completely consumed, delaying the deterioration of the drinks.
[0081] In the related art, a shelf is arranged in the refrigerator, and the user can lay the bottled drinks to store them on the shelf. The user can also store the bottled drinks vertically on the shelf. If the bottled drinks are placed vertically on the shelf of the refrigerator, the refrigerator has the problem of insufficient storage height. If the bottled drinks are laid to store, the bottled drinks have the problems of easy rolling and limited storage capacity in this scenario. In the related art, some refrigerators are provided with accessories, such as wine racks, but have the problems of limited storage capacity and occupying valuable storage space when not in use.
[0082] In view of this, the application provides a refrigerator. The refrigerator comprises a cabinet, an inner container, a shelf assembly and a limiting assembly. The shelf assembly is arranged in the storage cavity. The limiting assembly is arranged on the shelf body. The shelf assembly comprises a shelf body. The shelf body is connected to the inner wall of the inner container. A sliding part is arranged on the shelf body. The extension direction of the sliding part is parallel to the width direction of the refrigerator. The limiting assembly comprises a limiting piece and a fixing piece. The limiting piece is in sliding connection with the sliding part, and the end of the limiting piece away from the shelf body extends towards the top of the cabinet. The fixing piece is configured to fix the limiting piece to the shelf body. The limiting piece and the inner container form a limiting area.
[0083] By placing the bottled drinks or stored items in the limiting area, the limiting piece can limit the movement of the bottled drinks or stored items, improve the stability of the refrigerator in storing the bottled drinks or stored items, avoid the rolling of the bottled drinks, prevent the movement or dumping of the bottled drinks when the refrigerator door is opened or closed, and improve the storage safety of the bottled drinks. By arranging the limiting piece, the limiting piece can slide along the sliding part, and the position of the limiting area can be flexibly adjusted to adapt to stored items of different sizes and shapes, thereby improving the space utilization rate of the refrigerator.
[0084] The technical solutions in the embodiments of the application will be described clearly and completely below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0085] Referring to Figures 1 to 8 The application provides a refrigerator.
[0086] The refrigerator comprises a cabinet 100 having a cavity.
[0087] The refrigerator further comprises an inner container 200 located in the cavity. The inner container 200 forms a storage cavity. The inner container forms a container rib 210. The storage cavity is used to store cylindrical containers such as water bottles, beverage bottles, sauce bottles and cans.
[0088] The refrigerator further comprises a shelf assembly 300 arranged in the storage cavity.
[0089] The refrigerator further comprises a limiting assembly 400 located in the storage cavity. The limiting assembly 400 is arranged on the shelf body 310.
[0090] The shelf assembly 300 comprises a shelf body 310. The shelf body 310 is connected with the inner wall of the inner container 200. The shelf body 310 abuts against the container rib 210. The container rib 210 is used to strengthen or support the shelf body 310. A sliding part 360 is arranged on the shelf body 310. The sliding part 360 is connected with the shelf body 310. The extension direction of the sliding part 360 is parallel to the width direction of the refrigerator.
[0091] The limiting assembly 400 comprises a limiting part 410. The limiting part 410 is used to be slidingly connected with the sliding part 360. One end of the limiting part 410 close to the shelf body 310 is slidingly connected with the sliding part 360. The other end of the limiting part 410 away from the shelf body 310 extends towards the top of the cabinet 100.
[0092] The limiting assembly 400 further comprises a fixing part 430. The fixing part 430 is used to fix the limiting part 410 at different positions of the shelf body 310. The fixing part 430 is configured to fix the limiting part 410 at the shelf body 310.
[0093] For the convenience of description, the subsequent description is described by taking that the bottled drinks are stored in the storage cavity.
[0094] Wherein, referring to Figure 1 , the height direction of the refrigerator refers to the direction shown by Z in Figure 1 . The width direction of the refrigerator refers to the direction shown by X in Figure 1 . The depth direction of the refrigerator refers to the direction shown by Y in Figure 1 .
[0095] During the use of the refrigerator by the user, the user can move the limiting part 410. The limiting part 410 slides along the sliding part 360. When the user moves the limiting part 410 to the position needed by the user, the user fixes the limiting part 410 on the shelf body through the fixing part 430. In this way, the limiting part 410 and the inner wall of the inner container 200 form a limiting area. The user can store the bottled drinks 500 in the limiting area. By placing the bottled drinks 500 or the storage articles in the limiting area, the movement of the bottled drinks 500 or the storage articles is limited by the limiting part 410, the stability of the refrigerator for storing the bottled drinks 500 or the storage articles is improved, the storage capacity of the bottled drinks 500 is improved, the rolling of the bottled drinks 500 is avoided, the movement or the toppling of the bottled drinks 500 when the refrigerator door is opened or closed is prevented, and the storage safety of the bottled drinks 500 is improved.
[0096] By setting the limiting part 410 to be slidingly connected with the sliding part 360, the position of the limiting area can be flexibly adjusted to adapt to storage articles of different sizes and shapes, and the space utilization rate of the interior of the refrigerator is improved.
[0097] In addition, the movable design of the limiter 410 allows the user to easily remove or adjust the limiter 410, thereby simplifying the cleaning and maintenance process inside the refrigerator.
[0098] For example, the material of the shelf body 310 can be any one of glass, polymethyl methacrylate (PMMA or acrylic), polystyrene, and stainless steel. The shelf body 310 can be transparent or opaque.
[0099] In some embodiments, reference Figure 4 and Figure 6 As shown, when a user wishes to store a bottled drink 500 on the shelf body 310, the user manually moves the stopper 410, which then slides along the sliding portion 360. Once the stopper 410 reaches the desired position, the user secures the stopper 410 using the fixing member 430. This creates a restraining zone between the stopper 410 and the inner wall of the liner 200. The user can then store the bottled drink 500 on the shelf body 310. Simultaneously, the stopper 410 and the inner liner 200 of the box 100 prevent the bottled drink 500 from rolling, thereby improving the storage stability of the bottled drink 500.
[0100] In other embodiments, referring to Figure 5 As shown, when the user does not need to store the bottled beverage 500, the user can manually move the stopper 410 to the edge of the shelf body 310 near the inner wall of the inner container 200. In this way, the user can store other storage items on the shelf body 310. The repositioning of the stopper 410 frees up the central area of the shelf body 310, making it suitable for storing other types of storage items.
[0101] The refrigerator provided in the embodiment of the present application allows the user to flexibly adjust the position of the limiter 410 according to current storage needs, thereby quickly switching between bottled drinks 500 and other items. This flexibility enables the refrigerator to adapt to a variety of usage scenarios.
[0102] By adjusting the position of the stopper 410, the user can optimize the space utilization inside the refrigerator, ensuring that different types of items have appropriate storage space. Furthermore, the manual operation of the stopper 410 is simple and intuitive, allowing users to easily adjust without complicated tools or steps. This design enhances the user experience.
[0103] As an achievable embodiment, the sliding portion 360 is configured to form a sliding groove 361, and the sliding groove 361 extends along the extending direction of the sliding portion 360. The extending direction of the sliding portion 360 is as shown in FIG. Figure 2 The direction indicated by X.
[0104] In this way, the limiting piece 410 can move flexibly in the width direction of the refrigerator. Users can adjust the position of the limiting piece 410 according to storage needs to optimize the utilization of the internal space of the refrigerator.
[0105] The end of the limiting piece 410 close to the shelf body 310 is located in the sliding groove 361. The bottom of the sliding groove 361 is provided with a through hole. The design of the sliding groove 361 and the through hole is relatively simple, easy to manufacture and maintain. This simplicity helps to reduce production costs and improve product reliability.
[0106] The limiting piece 410 is connected through the through hole and the fixing piece 430, providing a stable fixing mechanism to prevent the limiting piece 410 from moving accidentally in the sliding groove 361. This stability is crucial to ensure the safety of stored items.
[0107] As an implementable embodiment, the number of sliding parts 360 is multiple. Along the depth direction of the refrigerator, multiple sliding parts 360 are arranged at intervals. The depth direction of the refrigerator refers to the direction indicated by the total Y. Figure 1
[0108] Illustratively, by providing multiple sliding parts 360, users can create multiple independent storage areas inside the refrigerator, avoiding interference between items and improving storage efficiency. The design of multiple sliding parts 360 can ensure that the limiting piece 410 is stably supported at different positions, preventing stored items from moving accidentally when the refrigerator door is opened or closed.
[0109] Multiple sliding parts 360 provide multiple position options for the limiting piece 410, allowing users to adjust the position of the limiting piece 410 flexibly according to the size and shape of the stored items, thereby optimizing the utilization of the internal space of the refrigerator. This design can accommodate different heights and sizes of stored items, whether tall bottles of drinks 500 or small cans of food, can be stably stored by adjusting the position of the limiting piece 410. Users can easily move the limiting piece 410 between different sliding parts 360 without complex operation steps. This design improves user experience, making the use of the refrigerator more convenient.
[0110] As an implementable embodiment, the number of limiting pieces 410 is multiple, and multiple limiting pieces 410 are arranged at intervals along the extension direction of the sliding part 360.
[0111] Illustratively, multiple limiting pieces 410 can move freely in the sliding groove 361 as needed, allowing users to adjust the position of the limiting piece 410 flexibly according to different storage needs, thereby optimizing the utilization of the internal space of the refrigerator. Users can adjust the distance between the limiting pieces 410 to accommodate different sizes of stored items, whether bottles of drinks 500 or other shaped items, can be well fixed and supported.
[0112] In some embodiments, at least a portion of the stopper 410 is an elastic portion, and the elastic portion of the stopper 410 contacts the bottled beverage 500. In this way, the provision of the elastic portion helps to provide a cushioning or shock-absorbing effect when the stopper 410 contacts the bottled beverage 500, thereby preventing the bottled beverage 500 from being damaged during storage or transportation.
[0113] The bottom of the stopper 410 is rigid. The rigid bottom provides a solid foundation to ensure that the stopper 410 maintains its shape and position during use.
[0114] In other embodiments, the stopper 410 is an elastic member; the elastic member is used to absorb the energy generated by the collision between the refrigerator stored items and the stopper 410. The stopper 410 is made of a material with elastic properties and can deform within a certain range. Because the elastic member has a certain buffering capacity, it provides flexible support for the stored items, preventing collisions between the stored items and the stopper 410, reducing bumps and bumps of the stored items, and improving the storage stability of stored items such as bottled drinks 500. In addition, the elastic member can reduce friction with the slide 361 and other components during the sliding and fixing process, thereby reducing wear and noise and extending the service life of the stopper 410.
[0115] Exemplarily, the limiting member 410 may be an elastic column made of silicone or polyurethane.
[0116] As a feasible implementation method, refer to Figure 8 and Figure 11 As shown, the limiting assembly 400 further includes an elastic sleeve 420 , which is sleeved on the outer periphery of the limiting member 410 , and one end of the elastic sleeve 420 close to the shelf body 310 abuts against the shelf body 310 .
[0117] For example, when a bottled beverage 500 is placed in the restricted area, it abuts against the elastic sleeve 420. This prevents direct collision between the bottled beverage 500 and the stored items and the restrictor 410, reducing wear and tear and facilitating the storage of the bottled beverage 500. The elastic sleeve can absorb and cushion external shock or vibration, protecting the stored items from the effects of the refrigerator door opening and closing or external vibrations. This is particularly important for storing glass bottles.
[0118] Furthermore, the elastic sleeve provides additional protection for the retaining member 410, preventing it from abrasion, scratching, or other physical damage during use. This protection extends the service life of the retaining member 410. The elastic sleeve reduces frictional noise between the retaining member 410 and the chute 361 or other components, providing a quieter user experience. Furthermore, the elastic sleeve reduces the noise generated when the bottled beverage 500 contacts the elastic sleeve 420.
[0119] In addition, the soft touch of the elastic sleeve makes the user more comfortable when adjusting the limiting piece 410, and the operation process is more smooth. Moreover, the elastic sleeve 420 can adopt different colors or textures, which not only increases the visual beauty, but also can be used to identify different functions or positions of the limiting piece 410, facilitating the user to identify and operate.
[0120] Exemplarily, the elastic sleeve can be a silicone sleeve or a polyurethane sleeve.
[0121] Exemplarily, the abutment of the elastic sleeve 420 and the shelf body 310 increases the friction, preventing the limiting piece 410 from sliding or shifting during use, and improving the stability of the limiting piece 410. The elastic sleeve 420 can prevent the limiting piece 410 from scratching or damaging the surface of the shelf body 310, maintaining the beauty and integrity of the shelf.
[0122] As an implementable embodiment, the limiting piece 410 and the fixing piece 430 are screwed or clamped.
[0123] In some embodiments, the limiting piece 410 and the fixing piece 430 are screwed. The screwing connection mode ensures the connection strength between the limiting piece 410 and the fixing piece 430, ensures that the limiting piece 410 remains stable during use, is not easy to loosen, and improves the safety of stored items. At the same time, the screwing connection mode allows the user to accurately adjust the position and fastening degree of the limiting piece 410 to adapt to different storage needs.
[0124] In other embodiments, the limiting piece 410 and the fixing piece 430 are clamped. The clamping connection mode provides reliable fixation through mechanical buckling, while allowing a certain flexibility. The clamping connection mode provides the ability to quickly adjust, and the user can quickly change the position of the limiting piece 410 as needed.
[0125] Both screwing and clamping connection modes can ensure that the limiting piece 410 does not accidentally fall off during use, thereby improving the safety of stored items.
[0126] As an implementable embodiment, the fixing piece 430 has a fixed end, the fixed end has a first thread; the limiting piece 410 has a limiting end, the limiting end has a second thread; the fixing piece 430 and the limiting piece 410 are threadedly connected through the first thread and the second thread.
[0127] In some embodiments, the fixing piece 430 has a fixed end, the outer periphery of the fixed end has a first thread; the limiting piece 410 has an opening, the opening faces the bottom of the box 100, the inner periphery of the opening has a second thread; the fixing piece 430 and the limiting piece 410 are threadedly connected through the first thread and the second thread.
[0128] In some embodiments, the fixing member 430 has a fixing opening, and the inner periphery of the fixing opening has a first thread; the limiting member 410 has a limiting end, and the outer periphery of the limiting end has a second thread; the fixing member 430 and the limiting member 410 are threadedly connected through the first thread and the second thread.
[0129] The threaded connection provides strong mechanical bonding force, ensuring that the limiting member 410 remains stable during use and is not easily loosened or detached. Users can adjust the position and tightness of the limiting member 410 by rotating the fixing member 430. This adjustability allows users to make precise adjustments according to storage needs. The threaded connection makes the installation and removal process of the limiting member 410 and the fixing member 430 relatively simple, and users can complete the operation by simply rotating the fixing member 430 without the need for complex tools. In addition, threaded connections generally have high durability and can withstand repeated installation and removal operations while maintaining the stability of the connection. Threaded connections can effectively prevent loosening due to vibration or external forces, ensuring the stability of the limiting member 410 during use of the refrigerator.
[0130] As an implementable embodiment, referring to FIGS. 1-3, Figure 9 and Figure 10 The shelf assembly 300 further includes a cushion layer 320. The cushion layer 320 is arranged on one side of the shelf body 310 close to the top of the cabinet 100; and the cushion layer 320 is connected with the shelf body 310.
[0131] The cushion layer 320 is provided with an opening, which is arranged corresponding to the sliding part 360.
[0132] The cushion layer 320 is an elastic cushion layer.
[0133] Illustratively, the elastic cushion layer provides additional cushioning, reducing direct hard contact between the shelf body 310 and the stored items, reducing wear and impact, and protecting the stored items, especially fragile items.
[0134] The elastic cushion layer can absorb vibrations and impacts during operation of the refrigerator, preventing the stored items from moving or being damaged due to vibrations. At the same time, the friction of the cushion layer 320 can increase the stability of the stored items, preventing the items from sliding when the refrigerator door is opened or closed.
[0135] In addition, the elastic properties of the cushion layer 320 help to reduce noise generated when the shelf body 310 comes into contact with other components within the refrigerator, providing a quieter user experience.
[0136] By arranging the opening on the cushion layer 320 corresponding to the sliding part 360, the sliding part 360 is allowed to move and adjust freely, enhancing the flexibility and adaptability of the shelf assembly 300.
[0137] Exemplarily, the material of the elastic cushion layer includes food-grade silica gel, food-grade polyurethane, and other soft materials.
[0138] Exemplarily, during the preparation of the elastic cushion layer, antibacterial agents such as silver ions, copper ions, or other antibacterial compounds can be added. These antibacterial agents can effectively inhibit the growth of bacteria and other microorganisms.
[0139] As an implementable embodiment, one of the shelf body 310 and the cushion layer 320 is provided with a positioning protrusion 330, and the other of the shelf body 310 and the cushion layer 320 is provided with a positioning recess 340; the positioning protrusion 330 and the positioning recess 340 are correspondingly arranged;
[0140] The shelf body 310 and the cushion layer 320 are connected through the positioning protrusion 330 and the positioning recess 340.
[0141] The cooperation of the positioning protrusion 330 and the recess provides a mechanical locking function, ensuring that the cushion layer 320 will not be easily displaced or detached during use, maintaining its stability on the shelf body 310. This connection method usually does not require additional tools to achieve quick installation and disassembly, and users can easily replace or clean the cushion layer 320. Moreover, the design of the positioning protrusion 330 and the recess ensures that the cushion layer 320 can be accurately aligned and positioned, avoiding misalignment of the cushion layer 320 on the shelf body 310, thereby maintaining the neatness and beauty of the interior of the refrigerator. Through the mechanical cooperation of the protrusion and the recess, the cushion layer 320 has better anti-slip performance on the shelf body 310, preventing the cushion layer 320 from sliding due to vibration or external force during use of the refrigerator.
[0142] Exemplarily, the cushion layer 320 is provided with a cushion layer corner 350, wherein the cushion layer corner 350 can be arranged close to the cabinet door of the box body 100, or the cushion layer corner 350 can be arranged close to the side wall of the inner container 200, so as to facilitate the user to remove the cushion layer 320 for cleaning and other operations.
[0143] 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.
[0144] For the sake of explanation, the foregoing descriptions have been presented in terms of specific embodiments. However, it is to be appreciated that specific embodiments described herein are not intended to limit the scope of the present application, which is defined with reference to the following claims. Various modifications and changes can be made thereto by those skilled in the art which fall within the scope of the present application as defined by the following claims. The embodiments were chosen and described in order to explain the principles of the application and the practical application and to enable others skilled in the art to understand for implementing various embodiments and with various modifications as are suited to the particular use contemplated.
Claims
1. A refrigerator, characterized in that: include: A box (100) having a cavity; An inner liner (200), the inner liner (200) is located in the cavity, and the inner liner (200) forms a storage cavity; A shelf assembly (300) is provided in the storage cavity, and the shelf assembly (300) comprises: The shelf body (310) is connected to the inner wall of the inner container (200); a sliding portion (360) is provided on the shelf body (310); the extending direction of the sliding portion (360) is parallel to the width direction of the refrigerator; The limiting assembly (400) is arranged on the shelf body (310), and the limiting assembly (400) includes: A limiting member (410) is slidably connected to the sliding portion (360); one end of the limiting member (410) facing away from the shelf body (310) extends toward the top of the box body (100); The fixing member (430) is configured to fix the limiting member (410) to the shelf body (310).
2. The refrigerator according to claim 1, wherein: The sliding portion (360) is structured to form a sliding groove (361), and the sliding groove (361) extends along the extension direction of the sliding portion; The portion of the limiting member (410) close to the shelf body (310) is located in the slide groove (361); A through hole is provided at the bottom of the slide groove (361); the limiting member (410) passes through the through hole and is connected to the fixing member (430).
3. The refrigerator according to claim 1, wherein: The limiting member (410) is an elastic member, and the elastic member is used to absorb energy generated by the collision between the items stored in the refrigerator and the limiting member (410).
4. The refrigerator according to claim 1, wherein The limiting assembly (400) further comprises an elastic sleeve (420), which is sleeved on the outer periphery of the limiting component (410), and one end of the elastic sleeve (420) close to the shelf body (310) abuts against the shelf body (310).
5. The refrigerator according to claim 1, wherein The limiting member (410) and the fixing member (430) are screwed or clamped.
6. The refrigerator according to any one of claims 1 to 5, characterized in that: There are multiple sliding parts (360), and the multiple sliding parts (360) are arranged at intervals along the depth direction of the refrigerator.
7. The refrigerator according to any one of claims 1 to 5, characterized in that: There are a plurality of limiting members (410), and the limiting members (410) are arranged at intervals along the extending direction of the sliding portion (360).
8. The refrigerator according to claim 6, characterized in that The shelf assembly (300) further includes: A cushion layer (320), the cushion layer (320) is arranged on one side of the shelf body (310) close to the top of the box body (100); the cushion layer (320) and the shelf body (310) are connected; The cushion layer (320) is provided with an opening, and the opening and the sliding portion (360) are provided correspondingly.
9. The refrigerator according to claim 8, characterized in that A positioning protrusion (330) is provided on one of the shelf body (310) and the cushion layer (320), and a positioning recess (340) is provided on the other of the shelf body (310) and the cushion layer (320); the positioning protrusion (330) and the positioning recess (340) are provided correspondingly; The shelf body (310) and the cushion layer (320) are connected via positioning protrusions (330) and positioning recesses (340).
10. A refrigerator, characterized in that: include: A box (100) having a cavity; An inner liner (200), the inner liner (200) is located in the cavity, and the inner liner (200) forms a storage cavity; A shelf assembly (300) is provided in the storage cavity, and the shelf assembly (300) comprises: The shelf body (310) is connected to the inner wall of the inner container (200); a sliding portion (360) is provided on the shelf body (310); the extending direction of the sliding portion (360) is parallel to the width direction of the refrigerator; A limiting assembly (400) is located in the storage cavity; the limiting assembly (400) is arranged on the shelf body (310), and the limiting assembly (400) includes: A limiting member (410), the limiting member (410) is used for sliding connection with the sliding portion (360); The fixing member (430) is used to fix the limiting member (410) at different positions of the shelf body (310).