A storage table

By designing a folding bracket and an extended combination table for storage, the contradiction between tabletop usage needs and space occupation is resolved, enabling flexible expansion and storage of the tabletop area, providing a stable connection and convenient operation, and improving the flexibility and adaptability of use.

CN224509647UActive Publication Date: 2026-07-17TCL DISPLAY TECH HUIZHOU

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TCL DISPLAY TECH HUIZHOU
Filing Date
2025-08-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing storage shelves take up a lot of storage space when the countertop is expanded, while they are difficult to meet actual usage needs when the design is small, resulting in a contradiction between usage needs and space occupation.

Method used

Design a storage shelf, including a folding bracket and an extended combination table. Through the movable connection between the folding part and the fixed part, combined with the sliding connection between the base and the extended table, the table surface area can be flexibly expanded and stored. Magnetic fixing connection and installation base are used to provide stable use and convenient disassembly.

Benefits of technology

While meeting the needs of larger countertops, it reduces the space occupied by storage, provides a stable connection and convenient operation, and improves the flexibility and adaptability of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a can accomodate storage table relates to storage table technical field, this can accomodate storage table includes folding support and extension combination platform, folding support includes folding part and is used for connecting installation base's fixed part, folding part swing joint is in fixed part, extension combination platform includes base and extension platform, base is connected in folding part, extension platform swing joint is in base.
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Description

Technical Field

[0001] This utility model belongs to the technical field of storage tables, and in particular relates to a storage table that can be stored. Background Technology

[0002] In daily life or work, we often encounter situations where there isn't enough counter space. For example, when repairing equipment, many repair tools require a large countertop to place them.

[0003] In existing technologies, storage shelves that can be stored at the bottom or side of the countertop are used to expand countertop area. However, such shelves have certain problems: if the countertop is designed to be large, it will take up a lot of storage space; if the area is designed to be small, it will be difficult to meet actual usage needs. Therefore, existing storage shelves present a contradiction between usage needs and space occupation. Utility Model Content

[0004] In view of this, the present invention provides a storage table that can be folded up, aiming to meet the needs of using a large tabletop while reducing the space occupied for storage.

[0005] The technical solution of this utility model is implemented as follows:

[0006] This utility model provides a retractable storage table, which includes a folding bracket and an extended combination table; the folding bracket includes a folding part and a fixing part for connecting to the mounting base; the folding part is movably connected to the fixing part; the extended combination table includes a base and an extension table, the base is connected to the folding part; the extension table is movably connected to the base. Attached Figure Description

[0007] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0008] Figure 1 A schematic diagram of the overall structure (unfolded state) of an embodiment of the retractable storage table provided by this utility model;

[0009] Figure 2 for Figure 1 A diagram illustrating the folded-up storage shelf;

[0010] Figure 3 for Figure 1 A schematic diagram of the structure of the expansion combination station;

[0011] Figure 4 for Figure 1 First-view structural diagram of the folding bracket in the middle;

[0012] Figure 5 for Figure 1 The second-view structural diagram of the folding bracket in the image.

[0013] Explanation of reference numerals in the attached figures:

[0014] 1. Folding bracket; 11. Folding part; 111. First connecting rod; 1111. First elongated hole; 1112. Buckle; 1113. Clearance notch; 112. Second connecting rod; 113. First shaft; 114. Second shaft; 115. Abutment; 116. Torsion spring; 117. Third shaft; 12. Fixing part; 2. Extension assembly platform; 21. Base; 21a. Front; 21b. Back; 211. First guard edge; 22. Extension platform; 221. Slide groove; 222. Second guard edge; 223. Clearance hole. Detailed Implementation

[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0016] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0017] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0018] In daily life or work, we often encounter situations where there isn't enough counter space. For example, when repairing equipment, many repair tools require a large countertop to place them.

[0019] In existing technologies, storage shelves that can be stored at the bottom or side of the countertop are used to expand countertop area. However, such shelves have certain problems: if the countertop is designed to be large, it will take up a lot of storage space; if the area is designed to be small, it will be difficult to meet actual usage needs. Therefore, existing storage shelves present a contradiction between usage needs and space occupation.

[0020] In view of this, the present invention provides a foldable storage table to resolve the contradiction between desktop usage needs and storage space occupation in the prior art.

[0021] Please see Figure 1 and Figure 2 The retractable storage shelf includes a folding bracket 1 and an extended combination shelf 2. The folding bracket 1 consists of a folding part 11 and a fixing part 12. The fixing part 12 is used to connect to the mounting base; the connection method is usually a fixed connection, such as magnetic fixing, screw fixing, snap fixing, or bolt fixing, to ensure the stability of the connection. The mounting base can be equipment, a table, a wall, or other objects that require an extended shelf. The "mounting base" can be understood as the supporting body used in conjunction with the retractable storage shelf. For example, in an office setting, the fixing part 12 can be installed on the side or bottom of a desk; in a kitchen setting, it can be installed on a cabinet door or the side of a worktop. The specific installation location can be flexibly selected according to actual usage needs.

[0022] To facilitate the removal of the shelf when it is not needed, the fixing part 12 is preferably connected to the mounting base via magnetic attachment. That is, the retractable shelf can be fixed to the mounting base and can also be moved away as needed.

[0023] The folding part 11 is movably connected to the fixed part 12, and the movable connection can be achieved in various ways, such as by using a hinge structure to achieve angle changes, or by using a slide rail in conjunction with a locking mechanism. Because the folding part 11 and the fixed part 12 are movably connected, the folding part 11 can be folded relative to the fixed part 12 (e.g., ...). Figure 2 (as shown) and expanded (as shown) Figure 1 (As shown), and can then be stored away when the extension station 22 is not needed, saving space.

[0024] The extension platform 2 includes a base 21 and an extension platform 22. This auxiliary platform can also be folded or unfolded relative to the extension platform 22. The base 21 is connected to the folding section 11, while the extension platform 22 is movably connected to the base 21. The extension platform 22 can be movably connected in various ways, such as by sliding, rotating, or nesting to achieve positional changes.

[0025] The specific unfolding process is as follows: First, the folding part 11 of the folding bracket 1 is unfolded from the fixing part 12. This action can be completed manually or by a specific drive device. During the unfolding process, the folding part 11 moves the base 21 connected to it, so that the entire extended assembly 2 gradually becomes usable. Since the extended platform 22 is movably connected to the base 21, its position also changes accordingly as the base 21 moves.

[0026] The specific storage process is as follows: First, slide or rotate the extension platform 22 to a position where it overlaps with the base platform 21 to the maximum extent, thereby reducing the overall space occupied. When the extension platform 22 is fully retracted, the entire storage shelf presents a smaller form. Next, fold the folding part 11 of the folding bracket 1 towards the fixing part 12. This action can be achieved manually or by a specific drive device. During the folding process, the folding part 11 drives the base platform 21 connected to it to move synchronously, so that the extension combination platform 2 gradually retracts to the desired size. Figure 2 The compact state shown.

[0027] The retractable storage table provided by this utility model includes a folding bracket 1 and an extended combination table 2. The folding bracket 1 includes a folding part 11 and a fixing part 12 for connecting to the mounting base. The folding part 11 is movably connected to the fixing part 12. The extended combination table 2 includes a base 21 and an extension table 22. The base 21 is connected to the folding part 11, and the extension table 22 is movably connected to the base 21. This utility model embodiment, through the setting of the folding bracket 1, realizes the overall folding and unfolding of the extended combination table 2 relative to the mounting base; and through the movable connection between the extension table 22 and the base 21, it effectively reduces the storage space occupied while ensuring usage needs. Therefore, the retractable storage table provided by this utility model, through the coordinated design of the folding bracket 1 and the extended combination table 2, solves the contradiction between usage needs and space occupation in traditional storage tables, that is, it meets the need for a larger tabletop while reducing the storage space occupied.

[0028] In some embodiments, please refer to Figure 1 and Figure 3To allow users to easily adjust the overlap area between the extension platform 22 and the base platform 21 through a simple sliding operation, the extension platform 22 is slidably connected to either the front 21a or the back 21b of the base platform 21 (the connection state of the extension platform 22 slidably connected to the front 21a of the base platform is not shown graphically in this embodiment). The front 21a of the base platform 21 is the side facing the user during normal use, while the back 21b is the side opposite to the front 21a. The extension platform 22 can move between the front 21a and the back 21b of the base platform 21 through a sliding connection, thereby adjusting the overlap area between them.

[0029] The direction in which the extension platform 22 slides relative to the base 21 can be along the length of the base 21, the width of the base 21, or the diagonal direction of the base 21, depending on the design requirements and usage scenario. For example, in some embodiments, the extension platform 22 slides along the length of the base 21, a design more suitable for applications requiring extension of the work area in a single direction. In other embodiments, the extension platform 22 slides along the width, adapting to environments with limited lateral space but feasible vertical extension. Furthermore, using a diagonal sliding method can, to some extent, combine the advantages of both directions, thereby improving the applicability of the shelf.

[0030] Furthermore, the folding part 11 can be folded or unfolded relative to the fixed part 12 for easy storage. That is, when the folding part 11 is unfolded, the extended combination table moves from the storage position to the use position along with the folding part 11, and the table surface area is expanded; when the folding part 11 is folded, the extended combination table moves from the use position to the storage position along with the folding part 11, and the overall volume is reduced to reduce the space occupied during storage.

[0031] Meanwhile, the overlapping area between the base 21 and the extension platform 22 can be expanded or reduced to improve the flexibility of the shelf's use. The "overlapping area" can be understood as the area of ​​the portion of the base 21 and the extension platform 22 that overlaps with each other. By changing the overlapping area, the overall usable area of ​​the shelf can be flexibly changed to meet the needs of different scenarios. For example, when a larger operating space is required, the overlapping area can be reduced to extend the surface of platform 22, such as... Figure 1 As shown; however, when storing or moving items, the overlapping area can be increased to reduce the area occupied, such as... Figure 3 As shown.

[0032] This embodiment of the invention utilizes an extension platform 22 slidably connected to a base 21, allowing users to easily adjust the overlap area between the extension platform 22 and the base 21 through a simple sliding operation. This alters the overall usable area of ​​the shelf, improving operational convenience. Furthermore, the folding and unfolding mechanism of the folding part 11 relative to the fixed part 12 enables the extended combination shelf to flexibly switch between its usable and storage positions, facilitating storage. Additionally, adjusting the overlap area by sliding the extension platform allows for the acquisition of a suitable shelf size, enhancing the flexibility of this foldable shelf.

[0033] In some embodiments, please refer to Figure 3 To achieve a sliding connection between the base 21 and the extension platform 22, a folding configuration is made at the edge of either the base 21 or the extension platform 22. Specifically, the edge of one of the base 21 and the extension platform 22 is folded to form a groove 221; the edge of the other is slidably connected within the groove 221.

[0034] The arrangement of the base 21 and the extension platform 22 includes at least two methods. First, the edge of the base 21 is folded to form a groove 221, and the edge of the extension platform 22 is slidably connected within this groove 221. Second, the edge of the extension platform 22 is folded to form the groove 221, and the edge of the base 21 is slidably connected within this groove 221. Furthermore, to ensure smooth sliding without significant gaps, the width of the groove 221 can be matched to the thickness of the sliding component. In addition, the length of the groove 221 can be reasonably set according to the sliding range of the extension platform 22, thereby avoiding the extension platform 22 being unable to fully unfold or retract due to the groove 221 being too short.

[0035] This embodiment of the invention achieves a stable sliding connection between the expansion platform 22 and the base 21 by forming a folded groove 221 on the edge of the base 21 or the expansion platform 22, and slidably connecting the edge of the other to the groove 221. This method not only improves the stability of the expansion platform 22 during sliding but also prevents shaking or displacement caused by external forces. Furthermore, the folded groove 221 has a simple structure and is easy to manufacture, which can reduce production costs and improve the product's economic efficiency to a certain extent.

[0036] In some embodiments, please refer to Figure 3 To reduce the risk of items slipping off the base 21, a guard is provided at the edge of the base 21. Specifically, the edge of the base 21 is folded to form a first guard 211, which protrudes relative to the surface of the base 21; the first guard 211 is slidably connected within a groove 221. The height of the first guard should be appropriate, effectively limiting movement without obstructing the sliding operation.

[0037] Furthermore, to adapt to the needs and usage scenarios of different users, the height of the first guard 211 can be designed to be adjustable. Through a simple adjustment mechanism, users can flexibly change the height of the guard according to their actual needs. For example, when placing taller items, the guard can be raised to enhance the limiting effect; while when reducing visual obstruction or operational limitations is needed, the guard can be lowered. This flexibility allows the shelf to better meet diverse usage needs.

[0038] This embodiment of the invention effectively reduces the risk of items slipping off the base 21 by providing a retaining edge at its edge. Furthermore, by designing the retaining edge to be adjustable, the adaptability and practicality of the shelf are further enhanced.

[0039] In some embodiments, please refer to Figure 3 To reduce the risk of items slipping off the extension platform 22, a guard edge is provided at the edge of the extension platform 22. Specifically, there are two extension platforms 22, which are correspondingly located at opposite ends of the base 21; the edges of the two relatively far ends of the two extension platforms 22 are folded over to form a second guard edge 222; the second guard edge 222 protrudes relative to the surface of the extension platform 22.

[0040] The height of the second guard 222 can also be adjusted according to actual needs. For example, by setting a retractable structure on the edge of the extension platform 22, users can flexibly adjust the height of the guard according to the height of the placed items. This design not only effectively prevents items from slipping, but also adapts to the needs of different scenarios, such as lowering the guard height for easy access when placing small tools, or increasing the guard height for better limiting protection when placing larger objects.

[0041] This embodiment of the invention further enhances the practicality and safety of the shelf by providing a retaining edge at the edge of the extension platform 22. This design not only effectively prevents items from accidentally slipping and falling during use, but also guides the user's operation to a certain extent, making the placement of items more orderly.

[0042] In some embodiments, please refer to Figure 1 and Figure 2 To avoid the risk of the extension platform 22 completely detaching from the base 21 during sliding, the extension platform 22 passes through the fasteners on the back side 21b of the base 21. Specifically, the extension platform 22 is sandwiched between the folding part 11 and the base 21, and the extension platform 22 is provided with a clearance hole 223, which extends along the sliding direction of the extension platform 22; the base 21 and the folding part 11 are connected by fasteners, and the fasteners pass through the clearance hole 223.

[0043] The fasteners can be bolts, screws, or other components with a fixing function. The clearance hole 223 ensures that the extension platform 22 is not obstructed by the fasteners during sliding. Simultaneously, the fasteners passing through the clearance hole 223 effectively limit the range of movement of the extension platform 22, preventing it from detaching from the base 21. Furthermore, the length of the clearance hole 223 can be designed according to the sliding stroke of the extension platform 22, ensuring that the extension platform 22 remains connected in both its fully extended and minimally retracted states.

[0044] This embodiment of the utility model achieves stability and safety of the expansion platform 22 during the sliding process by setting a clearance hole 223 on the expansion platform 22 and combining it with the fastener connection method, thereby avoiding the risk of the expansion platform 22 detaching from the base platform 21.

[0045] In some embodiments, please refer to Figure 4 To simplify the structure of the folding part 11, it is configured as a connecting rod. Specifically, the folding part 11 includes a first connecting rod 111 and a second connecting rod 112. The first connecting rod 111 is connected to the back surface 21b of the base 21; the first connecting rod 111 is provided with a first elongated hole 1111; the second connecting rod 112 is hinged to the first connecting rod 111 via a first shaft 113, which can slide within the first elongated hole 1111; wherein, the first connecting rod 111 and the second connecting rod 112 are respectively hinged to opposite ends of the fixing part 12.

[0046] The hinge structure of the first link 111 and the second link 112 allows the folding part 11 to rotate flexibly within a certain angle range, thereby realizing the folding and unfolding of the base 21 relative to the fixed part 12. The design of the first elongated hole 1111 provides sliding space for the first shaft 113, allowing the first shaft 113 to adjust its position as needed during folding or unfolding, thus changing the overall shape of the folding part 11. This design not only simplifies the structure of the folding part 11 but also improves its ease of operation, allowing users to easily complete the folding action by pulling or pushing the base 21.

[0047] If the fixing part 12 is fixed to the side of the mounting base, the unfolding angle of the first connecting rod 111 relative to the fixing part 12 can be a right angle, and the unfolding angle of the second connecting rod 112 relative to the fixing part 12 can be close to 45 degrees. This angle design allows the folding part 11 to maintain good stability when unfolded, while reducing the space occupied when folded. The hinge between the first connecting rod 111 and the second connecting rod 112, combined with the sliding function of the first elongated hole 1111, can realize the positioning of the folding part 11 at different angles, thereby meeting the needs of various usage scenarios. For example, when a large tabletop support is required, the folding part 11 can be unfolded to its maximum angle to provide stable support; while when storing or transporting, it can be folded into a compact state for easy storage and transportation.

[0048] When the user needs to use the shelf, simply unfold the base 21 from its folded state. At this time, the first connecting rod 111 and the second connecting rod 112 will change angle accordingly, and the first shaft 113 will slide within the first elongated hole 1111 to adapt to the shape adjustment of the folded part 11. After unfolding, the angle between the base 21 and the fixing part 12 is fixed, thus providing the user with a stable shelf platform. When the user is finished using the shelf and needs to store it, simply fold the base 21 towards the fixing part 12. At this time, the first connecting rod 111 and the second connecting rod 112 will again change angle, and the first shaft 113 will slide within the first elongated hole 1111 to facilitate the folding action. This linkage structure design simplifies the folding part 11. During this process, the user does not need additional tools or complex operations; simply pushing and pulling manually is sufficient to unfold or fold the shelf, greatly improving ease of use.

[0049] This embodiment of the utility model simplifies the functionality and reliability of the folding part 11 by setting the folding part 11 as a connecting rod structure composed of a first connecting rod 111 and a second connecting rod 112, and combining it with the design of the first elongated hole 1111.

[0050] In some embodiments, please refer to Figure 4 and Figure 5 To enhance the stability of the folded portion 11 after unfolding, an abutment structure is added to the folded portion 11. Specifically, the folded portion 11 also includes an abutment member 115 and a torsion spring 116; the first elongated hole 1111 has a first end and a second end opposite to each other, the first end being close to the hinge point between the first connecting rod 111 and the fixing part 12; the first connecting rod 111 is provided with a second shaft 114, and the abutment member 115 is sleeved on the second shaft 114 so as to be able to rotate relative to the first connecting rod 111 around the second shaft 114; the torsion spring 116 is sleeved on the second shaft 114; one end of the torsion spring 116 abuts against the first connecting rod 111, and the other end abuts against the abutment member 115; wherein, the torsion spring 116 deforms, causing the inclination angle of the abutment member 115 relative to the first connecting rod 111 to change, so as to press against or avoid the second shaft 114.

[0051] The abutment member 115, being sleeved on the second shaft 114, has the ability to rotate around the second shaft 114; and the abutment member 115 and the second shaft 114 form a seesaw structure. The torsion spring 116 is sleeved on the second shaft 114, which serves to limit and stabilize the torsion spring 116. Since the abutment member 115 is elastically held by the torsion spring 116, it can rotate upwards or downwards around the second shaft 114, thereby gradually pressing against or gradually avoiding the first shaft 113.

[0052] The specific implementation principle of the torsion spring 116 and the abutment 115 is as follows: When the folding part 11 is unfolded, the elastic action of the torsion spring 116 causes the abutment 115 to rotate around the second axis 114 until the abutment 115 contacts the first axis 113 and generates a certain clamping force. This clamping force can effectively limit the sliding of the first axis 113 within the first elongated hole 1111, thereby enhancing the stability of the folding part 11 in the unfolded state. Specifically, when the first axis 113 is located at the first end of the first elongated hole 1111, the abutment 115 rotates upward under the action of the torsion spring 116, and the upper end of the abutment 115 forms a clamping state with the first axis 113, preventing it from moving arbitrarily due to external force. When folding is required, the user only needs to apply a certain external force to press the lower end of the abutment 115, causing it to rotate downward around the second axis 114, thereby avoiding the movement path of the first axis 113. At this time, the first axis 113 can slide freely within the first elongated hole 1111, completing the folding action. This design, through the cooperation of torsion spring 116 and abutment 115, not only enhances the stability of the folding part 11 when unfolded, but also ensures the smoothness of the folding process, avoiding structural loosening or jamming caused by misoperation.

[0053] This embodiment of the invention further optimizes the functionality of the folding section 11 by adding a torsion spring 116 and an abutment member 115. In the unfolded state, the tight contact between the abutment member 115 and the first shaft 113 effectively prevents the folding section 11 from accidentally folding due to external force, thus improving the overall stability of the shelf. During folding, the user only needs to apply a small amount of external force to release the limiting effect of the abutment member 115, making operation simpler.

[0054] In some embodiments, please refer to Figure 4 and Figure 5 To improve the stability of the torsion spring 116 abutting between the abutment member 115 and the first connecting rod 111, a latch 1112 is provided on the first connecting rod 111. Specifically, the latch 1112 is provided on the side of the first connecting rod 111 facing the torsion spring 116; one end of the torsion spring 116 abuts against the latch 1112, and the other end abuts against the abutment member 115.

[0055] During the specific installation of the torsion spring 116: After the torsion spring 116 is fitted onto the second shaft 114, one end of the torsion spring 116 is embedded in the buckle 1112, and the other end is in close contact with the abutment 115. The design of the buckle 1112 provides a stable fixing point for the torsion spring 116, preventing it from shifting or loosening during use. This structure not only enhances the stability of the torsion spring 116 but also improves the overall reliability of the folding part 11. Through the limiting effect of the buckle 1112, the torsion spring 116 can always maintain appropriate elastic pressure, thereby ensuring that the clamping force between the abutment 115 and the first shaft 113 is in an ideal state.

[0056] This embodiment of the utility model improves the stability of the torsion spring 116 in the folding part 11 by setting a buckle 1112 on the first connecting rod 111, thus providing users with a more reliable user experience.

[0057] In some embodiments, please refer to Figure 4 In order to improve the degree of folding of the folding part 11 relative to the fixed part 12, a corresponding avoidance structure is provided for the first link 111. Specifically, the second link 112 is hinged to the fixed part 12 via the third shaft 117; the first link 111 is provided with an avoidance notch 1113 so that the first link 111 avoids the third shaft 117 when folded relative to the fixed part 12.

[0058] The design of the avoidance notch 1113 allows the first link 111 to effectively avoid interference from the third axis 117 during folding, thereby achieving a more compact folding effect. The shape and size of the avoidance notch 1113 can be adjusted according to the position of the third axis 117 and the movement trajectory of the folding part 11 to reduce the collision and / or friction between the first link 111 and the third axis 117 in the folded state.

[0059] By providing an avoidance notch 1113 on the first connecting rod 111, this embodiment of the utility model not only improves the folding degree of the folding part 11, but also reduces the space occupied by the overall structure, making the shelf more space-saving when stored.

[0060] In some embodiments, please refer to Figure 1 To facilitate the connection and disassembly of the shelf to the mounting base, a magnetic attachment is incorporated into the shelf. Specifically, a magnetic element is installed inside the fixing part 12 to attract the mounting base.

[0061] The magnetic connector can be embedded inside the fixing part 12 to maintain the clean appearance of the shelf. To accommodate mounting bases of different materials or thicknesses, the magnetic strength of the magnetic connector can be adjusted according to actual needs. For example, in scenarios where the mounting base needs to be frequently moved or replaced, a stronger magnetic design can be selected to ensure a stable connection; while in environments requiring easy operation, a moderate magnetic configuration can be used to make disassembly and reassembly easier for users.

[0062] This embodiment of the invention utilizes magnetic attachments to allow the shelf to connect quickly and securely to the mounting base, while also enabling easy disassembly when needed. This design not only simplifies the installation and disassembly process but also avoids the complexity and wear issues that can arise from traditional mechanical connection methods.

[0063] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A stowable staging platform, comprising: include: A folding bracket includes a folding part and a fixing part for connecting to a mounting base, the folding part being movably connected to the fixing part, and the mounting base being an object for which the platform needs to be extended; as well as, An extension platform includes a base and an extension platform, wherein the base is connected to the folding portion and the extension platform is movably connected to the base.

2. The table of claim 1, wherein, The extension platform is slidably connected to the front or back of the base; The folding portion can be folded or unfolded relative to the fixing portion; The overlap area between the base and the extension stage can be increased or decreased.

3. The table of claim 1, wherein: The edge of one of the base and the extension stage is folded to form a groove, and the edge of the other is slidably connected to the groove.

4. The table of claim 3, wherein: The edge of the base is folded to form a first stop, which protrudes relative to the surface of the base; the first stop is slidably connected within the groove.

5. The table of claim 1, wherein: The extension platform is sandwiched between the folding part and the base. The extension platform is provided with a clearance hole that extends along the sliding direction of the extension platform. The base and the folding part are connected by a fastener that passes through the clearance hole.

6. The table of claim 1, wherein: The fold includes: A first connecting rod is connected to the back of the base; the first connecting rod is provided with a first elongated hole; The second link is hinged to the first link via a first shaft, which can slide within the first elongated hole; The first connecting rod and the second connecting rod are respectively hinged to the opposite ends of the fixed part.

7. The table of claim 6, wherein: The first elongated hole has a first end and a second end opposite to each other, with the first end close to the hinge point between the first connecting rod and the fixed part; The first link is provided with a second axis, and the folding part further includes: An abutment is sleeved on the second shaft so that it can rotate about the second shaft relative to the first connecting rod; A torsion spring is sleeved on the second shaft; one end of the torsion spring abuts against the first connecting rod, and the other end abuts against the abutting member; The torsion spring deforms, causing the angle of inclination of the abutment relative to the first connecting rod to change, so as to press against or avoid the first shaft.

8. The table of claim 7, wherein: The first connecting rod has a buckle on its side facing the torsion spring. One end of the torsion spring abuts against the buckle, and the other end abuts against the abutting member.

9. The table of claim 1, wherein: The fixing part is provided with a magnetic suction component, which is used to attract the mounting base.

10. The storage and display table of any of claims 1-9, wherein, Two extension platforms are provided, and they are correspondingly arranged at opposite ends of the base; the edges of the two relatively far ends of the two extension platforms are folded over to form a second stop; the second stop protrudes relative to the platform surface of the extension platform.