Stowable table

By designing a combination of foldable tabletops and support components, the balance between convenience and stability of existing foldable tables is solved, achieving both convenient storage and stable support, thus enhancing the user experience.

CN224572389UActive Publication Date: 2026-07-31SHENZHEN YUTO PACKAGING TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YUTO PACKAGING TECH
Filing Date
2025-06-18
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing foldable tables struggle to balance convenience and stability, lacking sufficient storage space and operational stability, thus impacting user experience.

Method used

A foldable tabletop structure was designed, which enables the tabletop to switch between unfolded and folded states through the combination of foldable parts and support components. The first and second support components provide support and storage in different states. Combined with the sliding design of limiting rails and support beams, the structure's stability and convenience are ensured.

Benefits of technology

It achieves a smaller size when folded for easy carrying, while providing stable support when unfolded, improving ease of use and structural strength, and meeting diverse user needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a foldable table, comprising: a tabletop and a first support assembly. The tabletop includes a foldable portion and main panels connected to opposite sides of the foldable portion, allowing the two main panels to switch between an unfolded state and a folded state via the foldable portion. Each main panel has a first side surface. The first support assembly is connected to the first side surface via a connecting end and is rotatably disposed relative to the first side surface. In the unfolded state, the two main panels are located on opposite sides of the foldable portion along a first direction, and the first support assembly intersects with the main panels. From the unfolded state to the folded state, the two main panels move relative to the foldable portion in a direction of mutual approach, and the free end of the first support assembly rotates in a direction of approaching the first side surface, so that in the folded state, the two main panels are stacked along the thickness direction of the foldable table, and the two first support assemblies are stored between the two main panels. This embodiment facilitates storage and improves ease of use.
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Description

Technical Field

[0001] This application relates to the field of packaging and processing technology, and in particular to a retractable table. Background Technology

[0002] With the diversification of modern lifestyles, outdoor activities have gradually become an important part of people's daily leisure and fitness. Whether it's camping, picnicking, or outdoor gatherings, convenient, lightweight, and versatile outdoor furniture is increasingly favored by consumers. In these outdoor activities, portable and foldable tables are particularly important, as they not only provide necessary support and storage space but also need to be easy to carry and make efficient use of space.

[0003] Most existing foldable tables employ a folding design, achieving portability and storage through unfolding and folding. However, some existing foldable tables have structural limitations. For example, while some foldable tables on the market can be folded, they often lack sufficient storage space or stability, affecting overall convenience. This forces users to compromise between portability and stability in actual use. Therefore, a new type of foldable table is needed that can provide convenient storage while ensuring stability during use, thus meeting user needs. Utility Model Content

[0004] This application provides a foldable table that improves ease of use and facilitates storage.

[0005] This application provides a foldable table, including:

[0006] A tabletop, the tabletop including a foldable portion and main body connected to opposite sides of the foldable portion, so that the two main body can be switched between an unfolded state and a folded state through the foldable portion, the main body having a first side surface;

[0007] First support assembly, two first support assemblies are respectively connected to a first side surface, the first support assembly has a connecting end and a free end, the first support assembly is connected to the first side surface through the connecting end and is rotatably disposed relative to the first side surface;

[0008] In the unfolded state, the two main panels are located on opposite sides of the foldable portion along the first direction, and the first support component is intersected with the main panels. From the unfolded state to the retracted state, the two main panels move relative to the foldable portion in a direction that approaches each other, and the free end of the first support component rotates in a direction that approaches the first side, so that in the retracted state, the two main panels are stacked along the thickness direction of the retractable table, and the two first support components are retracted between the two main panels.

[0009] According to the embodiments described in this application, the tabletop further includes a second support component, which includes a first limiting track, a second limiting track, and a support beam. The first limiting track and the second limiting track are respectively disposed on two of the first side surfaces, and the support beam is slidably disposed relative to the first limiting track and the second limiting track.

[0010] In the retracted state, the support beam is located within the first limiting track or the second limiting track;

[0011] In the unfolded state, the support beam is positioned on the first limiting rail and the second limiting rail and spans the foldable portion.

[0012] According to any of the foregoing embodiments of this application, the first limiting track and the second limiting track are hollow rods, and the support beam is slidably disposed relative to the inner walls of the first limiting track and the second limiting track;

[0013] The first limiting track and the second limiting track are respectively provided with a first viewing window and a second viewing window. In the unfolded state, the first viewing window and the second viewing window are symmetrically arranged along the second direction.

[0014] According to any of the foregoing embodiments of this application, the second support component has two parts, which are respectively disposed at opposite ends of the table board along the second direction, the first direction and the second direction intersect, and the first support component is sandwiched between the two second support components.

[0015] According to any of the foregoing embodiments of the present application, the first support component includes a first support plate, a second support plate, and a third support plate connected in succession. The second support plate and the third support plate are respectively disposed at opposite ends of the first support plate along the second direction, and the second support plate and the third support plate are foldable relative to the first support plate. The first direction and the second direction intersect.

[0016] The first support plate is connected to the main body and is rotatably disposed relative to the main body;

[0017] In the retracted state, the second support plate and the third support plate fold inward and retract between the first support plate and the main body;

[0018] In the unfolded state, the angle between the first support plate and the first side is greater than or equal to 90°, and the second support plate and the third support plate are respectively in contact with and perpendicular to the first side.

[0019] According to any of the foregoing embodiments of the present application, it further includes a limiting plate, two limiting plates are respectively connected to a first side surface, and the limiting plate is rotatably disposed relative to the first side surface;

[0020] In the unfolded state, at least a portion of the second support plate and at least a portion of the third support plate are located between the first side and the limiting plate.

[0021] According to any of the foregoing embodiments of the present application, the second support plate and / or the third support plate include a first part and a second part connected in succession, the first part being connected to the first support plate and foldable relative to the first support plate, and the second part being foldable relative to the first part.

[0022] In the stored state, the second part folds inward and is tucked between the first part and the first support plate;

[0023] In the unfolded state, the second part is attached to the first side, and at least a portion of the second part is located between the first side and the limiting plate.

[0024] According to any of the foregoing embodiments of the present application, it further includes:

[0025] A first connecting plate is connected to one end of one of the main bodies away from the foldable portion and is foldable relative to the main body. A first lug is connected to the side of the first connecting plate away from the main body, and the first connecting plate has a through-hole.

[0026] The second connecting plate is connected to the end of the other main body away from the foldable part and is foldable relative to the main body. The side of the second connecting plate away from the main body is connected to a second lug. The first support plate has a connecting hole.

[0027] In the unfolded state, the first connecting plate and the second connecting plate are folded to the opposite side of the two first support plates, and the first lug and the second lug are respectively inserted into the corresponding connecting holes;

[0028] In the retracted state, the second ear is inserted into the socket, and the first connecting plate is retracted between the second connecting plate and the table.

[0029] According to any of the foregoing embodiments of the present application, at least one of the two mainboard bodies has a first handle hole; and / or, the first support component has a second handle hole.

[0030] According to any of the foregoing embodiments of the present application, the foldable table is an integral structure; and / or, the foldable table is a corrugated cardboard storage table.

[0031] In this embodiment, the tabletop includes a foldable portion and main panels connected to opposite sides of the foldable portion, allowing the two main panels to switch between an unfolded state and a folded state via the foldable portion. The connecting ends of two first support components are rotatably connected to corresponding first side surfaces, providing support for the entire tabletop. Rotation of the connecting ends of the two first support components allows their free ends to move towards or away from the first side surfaces. In the unfolded state, the two main panels are located on opposite sides of the foldable portion along a first direction, allowing the entire tabletop to unfold flat. Simultaneously, the two first support components intersect with the first side surfaces for placing items. During the transition from the unfolded state to the folded state, the two main panels move towards each other relative to the foldable portion, and the free ends of the first support components rotate towards the first side surfaces. The foldable portion then moves the two main panels towards each other, resulting in the two main panels being stacked along the thickness direction of the foldable table in the folded state. The two first support components are stored between the two main panels, reducing the size of the foldable table, facilitating storage, and improving user convenience. Attached Figure Description

[0032] The features, advantages, and technical effects of exemplary embodiments of this application will now be described with reference to the accompanying drawings.

[0033] Figure 1 This is a structural diagram of the foldable table provided in the embodiment of this application in its folded state.

[0034] Figure 2 This is one of the structural schematic diagrams of the retractable table provided in the embodiment of this application in its unfolded state.

[0035] Figure 3 This is the second structural schematic diagram of the retractable table provided in the embodiment of this application in its unfolded state.

[0036] Figure 4 This is one of the illustrations showing the process of the foldable table in the present application switching from the folded state to the unfolded state;

[0037] Figure 5 This is the second illustration of the process of switching the foldable table from the folded state to the unfolded state provided in the embodiments of this application;

[0038] Figure 6 This is the third illustration of the process of the foldable table in the embodiment of this application switching from the folded state to the unfolded state;

[0039] Figure 7 This is the fourth illustration of the process of switching the foldable table from the folded state to the unfolded state provided in the embodiments of this application;

[0040] Figure 8 This is the fifth illustration of the process of switching the foldable table from the folded state to the unfolded state provided in the embodiments of this application.

[0041] Figure label:

[0042] 1. Tabletop; 11. Foldable section; 12. Main body; 122. First handle hole;

[0043] 2. First support assembly; 21. First support plate; 211. Connecting hole; 22. Second support plate; 23. Third support plate; 231. First part; 232. Second part; 20. Second handle hole;

[0044] 3. Second support component; 31. First limiting track; 311. First viewing window; 32. Second limiting track; 321. Second viewing window; 33. Support beam;

[0045] 4. Limit plate;

[0046] 5. First connecting plate; 51. First lug; 52. Socket;

[0047] 6. Second connecting plate; 61. Second lug;

[0048] X, first direction; Y, second direction; Z, thickness direction of the foldable table. Detailed Implementation

[0049] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are some embodiments of this application, but not all embodiments.

[0050] The terms "first," "second," "third," etc., used in the specification, claims, or accompanying drawings of this application are used to distinguish different objects, not to describe a specific order or hierarchy. In the embodiments of this application, the same reference numerals denote the same components, and for the sake of brevity, detailed descriptions of the same components are omitted in different embodiments.

[0051] In this application, the reference to "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment that is mutually exclusive with other embodiments.

[0052] In the description of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0053] In the embodiments of this application, "parallel" includes not only the case of absolute parallelism, but also the case of approximate parallelism as commonly understood in engineering; similarly, "perpendicular" also includes not only the case of absolute perpendicularity, but also the case of approximate perpendicularity as commonly understood in engineering. For example, if the angle between two directions is 88°-95°, the two directions can be considered perpendicular; if the angle between two directions is 0°-10°, the two directions can be considered parallel.

[0054] This application provides a foldable table, which is described below in conjunction with the attached document. Figure 1-8 This application describes a retractable table according to an embodiment.

[0055] Figure 1 This is a structural diagram of the foldable table provided in the embodiment of this application in its folded state. Figure 2 This is one of the structural schematic diagrams of the retractable table provided in the embodiment of this application in its unfolded state. Figure 3 This is the second structural schematic diagram of the retractable table provided in the embodiment of this application in its unfolded state.

[0056] Reference Figures 1 to 3 The foldable table provided in this application embodiment includes:

[0057] The tabletop 1 includes a foldable portion 11 and main body 12 connected to opposite sides of the foldable portion 11, so that the two main body 12 can be switched between an unfolded state and a folded state via the foldable portion 11. The main body 12 has a first side.

[0058] Two first support components 2 are respectively connected to a first side surface. Each first support component 2 has a connecting end and a free end. The first support component 2 is connected to the first side surface through the connecting end and is rotatably disposed relative to the first side surface.

[0059] In the unfolded state, the two main body bodies 12 are located on opposite sides of the foldable part 11 along the first direction X, and the first support component 2 is intersecting with the main body bodies 12.

[0060] From the unfolded state to the folded state, the two main body 12 move toward each other relative to the foldable part 11 in a direction that approaches each other, and the free end of the first support component 2 rotates toward the first side, so that in the folded state, the two main body 12 are stacked in the thickness direction Z of the foldable table, and the two first support components 2 are stored between the two main body 12.

[0061] According to the foldable table provided in this application, the tabletop 1 includes a foldable portion 11 and main body 12 connected to opposite sides of the foldable portion 11, so that the two main body 12 can switch between an unfolded state and a folded state through the foldable portion 11; the connecting ends of the two first support components 2 are respectively rotatably connected to the corresponding first side, and the two first support components 2 provide support for the entire tabletop 1, and the free ends of the two first support components 2 can move in a direction close to or away from the first side when the connecting ends of the two first support components 2 rotate. In the unfolded state, the two main body 12 are located on opposite sides of the foldable portion 11 along the first direction X, so that the entire tabletop 1... When unfolded, the two first support components 2 are respectively intersecting with the first side, providing support to the tabletop. During the transition from the unfolded state to the folded state, the two main body 12 move towards each other at their respective folding parts, and the free ends of the first support components 2 rotate towards the first side. Then, the two main body 12 are moved towards each other through the foldable part 11, so that in the folded state, the two main body 12 are stacked in the Z-axis of the thickness of the foldable table, and the two first support components 2 are stored between the two main body 12, reducing the size of the foldable table, making it easier to store, and improving the user's convenience.

[0062] It should be noted that the first direction X refers to the direction parallel to the length direction of the tabletop 1 when the foldable table is in the unfolded state. The second direction Y refers to the direction parallel to the width direction of the tabletop 1 when the foldable table is in the unfolded state. The first side is one of the sides of the main body 12 along the thickness direction Z of the foldable table.

[0063] Optionally, such as Figure 1 , Figure 2 and Figure 3As shown, the projection of the main board body 12 along its thickness direction is rectangular. However, the projection of the main board body 12 along its thickness direction can also be semi-circular, triangular, or other shapes. The two main board bodies 12 can have the same shape and size to simplify the overall structure of the foldable table and ensure its aesthetic appeal. Of course, the two main board bodies 12 can also have different shapes and sizes. Users can choose the shape and size of the two main board bodies 12 reasonably according to their actual usage needs. For example, if the projections of both main board bodies 12 along their thickness direction are rectangular, one main board body 12 can be set to a smaller size along the first direction X, while the other main board body 12 can be set to a larger size along the first direction X. In a specific embodiment, as... Figure 1 As shown, the projections of the two main body 12 along their own thickness direction are both rectangular, and the two are the same size, to prevent one main body 12 from protruding outward relative to the other, thus facilitating storage. The foldable part 11 has strong flexibility and bendability to ensure that the two main body 12 can maintain structural stability during frequent unfolding and folding.

[0064] like Figure 2 and Figure 3 As shown, two main panels 12 are connected to opposite sides of the foldable portion 11 along the first direction X. Optionally, the foldable portion 11 and the two main panels 12 can be an integral structure to simplify the assembly process of the foldable table and increase the overall stability of the tabletop 1. Alternatively, the two main panels 12 can be rotatably connected to opposite sides of the foldable portion 11 along the first direction X by means of rotating components. Optionally, the foldable portion 11 and the two main panels 12 can be made of wood, metal, plastic, or paper. For example, wood can be walnut or oak, metal can be stainless steel or aluminum alloy, plastic can be polypropylene or polycarbonate, and paper can be corrugated paper.

[0065] In some specific application scenarios, the two main panels 12 and the foldable part 11 are integrated into a single structure, and both main panels 12 and the foldable part 11 are made of corrugated cardboard. This means the entire tabletop 1 is made of corrugated cardboard, achieving a lightweight design, reducing the difficulty of carrying the table, and improving the ease of use of the foldable table. During manufacturing, a first fold line and a second fold line are respectively processed between the two main panels 12 and the foldable part 11 using corrugated cardboard processing technology. These fold lines allow the two main panels 12 to fold relative to the foldable part 11, enabling the two main panels 12 to switch between a folded state and an unfolded state.

[0066] In other specific application scenarios, the two main body 12 and the foldable part 11 are separate structures. Both main body 12 and the foldable part 11 are made of stainless steel. One of the main body 12 and the foldable part 11 has a first pivot hole, and the other is connected to a first pivot. The first pivot rotates through the first pivot hole, allowing the main body 12 to flip relative to the foldable part 11. The other main body 12 and the foldable part 11 have a second pivot hole, and the other is connected to a second pivot. The second pivot rotates through the second pivot hole, allowing the main body 12 to flip relative to the foldable part 11, thus enabling the two main body 12 to switch between a folded state and an unfolded state.

[0067] It should be noted that the materials of the two main panels 12 and the foldable part 11 can be the same or different. This application embodiment does not impose specific limitations on this, but it is necessary to ensure that there is a small difference in rigidity between the two main panels 12 and the foldable part 11 to ensure the overall stability of the entire foldable table. For example, in the previous application scenario, the material of the main panel 12 can be stainless steel, and the material of the foldable part 11 can be aluminum alloy to ensure a small difference in rigidity between the main panels 12 and the foldable part 11, thereby ensuring the structural stability of the entire tabletop 1.

[0068] like Figure 2 and Figure 3 As shown, the foldable table includes two first support components 2. The connecting ends of the two first support components 2 are respectively connected to the first sides of the two main body 12 to simultaneously provide support for the entire tabletop 1. Optionally, the first support component 2 has a connecting end and a free end. The connecting end of the first support component 2 is connected to the first side and rotatably disposed relative to the first side, thereby allowing the free end of the first support component 2 to move towards or away from the first side.

[0069] In its stored state, such as Figure 1 As shown, two main body panels 12 are stacked in the Z-direction of the foldable table, and two first support components 2 are recessed between the two main body panels 12 to reduce the space occupied by the foldable table and facilitate user carrying and storage. Optionally, in the folded state, the free end of the first support component 2 is attached to the first side, and the first support component 2 and the second support component 3 are stacked in the Z-direction of the foldable table.

[0070] In some alternative embodiments, such as Figure 1As shown, the foldable table in its folded state is rectangular, with two main panels 12 perpendicular to the foldable portion 11. The foldable portion 11 has sufficient dimensions to provide a large storage space for the two first support components 2, ensuring that the two first support components 2 can be stably folded inward between the two main panels 12 and the foldable portion 11. This mitigates the outward expansion caused by the mutual compression of the two first support components 2, thereby ensuring that the two main panels 12 can be stacked Z-layered along the thickness direction of the foldable table, minimizing the space occupied by the foldable table and providing good storage performance.

[0071] like Figure 2 and Figure 3 As shown, the two main body 12 in the unfolded state are located on opposite sides of the foldable part 11 along the first direction X to ensure the flatness of the entire tabletop 1's surface and to ensure that the surface has sufficient size.

[0072] During the process of switching from the stored state to the unfolded state, such as Figures 4 to 8 As shown, by adjusting the angle of the connecting ends of the two first support components 2 relative to the first side surface, the free ends of the two first support components 2 move away from the first side surface, so that in the unfolded state, the two first support components 2 are respectively intersected with the corresponding first side surface (e.g., Figure 2 and Figure 3 As shown, the tabletop 1 is provided with stable support through two first support components 2. In use, the connecting end of the first support component 2 is rotated so that the free end of the first support component 2 is perpendicular to the first side. The free end of the first support component 2 can be placed on a flat surface such as the ground, thereby realizing the supporting function of the first support component 2 on the tabletop 1.

[0073] In some optional embodiments, the foldable part 11, the two main body bodies 12, and the two first support components 2 are integrated into one structure. Optionally, the foldable part 11, the two main body bodies 12, and the two first support components 2 are all made of corrugated cardboard. A third fold line is processed between the connecting end of the first support component 2 and the corresponding first side through a corrugated cardboard processing technology. This third fold line ensures that the first support component 2 can be rotatably set relative to the first side, thereby realizing the storage and unfolding of the first support component 2 and improving the ease of use of the foldable table.

[0074] In some alternative embodiments, such as Figure 3 , Figure 5 , Figure 6 , Figure 7 and Figure 8As shown, the tabletop 1 also includes a second support assembly 3. The second support assembly 3 includes a first limiting rail 31, a second limiting rail 32, and a support beam 33. The first limiting rail 31 and the second limiting rail 32 are respectively disposed on two first sides. The support beam 33 is slidably disposed relative to the first limiting rail 31 and the second limiting rail 32.

[0075] In its stored state, such as Figure 5 As shown, the support beam 33 is located within the first limiting track 31 or the second limiting track 32.

[0076] In the unfolded state, such as Figure 3 As shown, the support beam 33 is respectively located on the first limiting rail 31 and the second limiting rail 32 and spans across the foldable part 11.

[0077] In these optional embodiments, the first limiting rail 31 and the second limiting rail 32 are respectively disposed on the first side of the two main body 12, and the support beam 33 is slidably disposed relative to the first limiting rail 31 and the second limiting rail 32. In the folded state, the support beam 33 is located within the first limiting rail 31 or the second limiting rail 32 to save storage space and ensure a compact structure; in the unfolded state, the support beam 33 is disposed on the first limiting rail 31 and the second limiting rail 32 and spans across the foldable part 11, thereby providing support for the tabletop 1 through the support beam 33, improving the connection strength between the two main body 12 and the foldable part 11, preventing the tabletop 1 from collapsing, and thus ensuring the structural strength of the foldable table.

[0078] Optionally, in the unfolded state, both the first limiting rail 31 and the second limiting rail 32 extend along the first direction X. The first limiting rail 31 is located on the first side of one of the main body 12, and the second limiting rail 32 is located on the first side of the other main body 12. Optionally, both the first limiting rail 31 and the second limiting rail 32 are located at the edges of the two first sides, and the first limiting rail 31 and the second limiting rail 32 are symmetrically arranged along the second direction Y. The first limiting rail 31 or the second limiting rail 32 can be an integral structure with the main body 12, with the first limiting rail 31 or the second limiting rail 32 protruding from the corresponding first side to ensure the stability of the connection between the first limiting rail 31 or the second limiting rail 32 and the main body 12. Of course, the first limiting rail 31 or the second limiting rail 32 and the main body 12 can also be a separate structure, connected by adhesive or plug-in methods.

[0079] The material of the second support component 3 can be consistent with that of the main board body 12 to ensure the stability of the connection between the second support component 3 and the tabletop 1. The specific connection method between the second support component 3 and the main board body 12 can be adapted to the different materials of these two components. For example, when both the first limiting rail 31 or the second limiting rail 32 and the main board body 12 are made of corrugated cardboard, they can be bonded together with adhesive. For example, when both the first limiting rail 31 or the second limiting rail 32 and the main board body 12 are made of stainless steel, the first limiting rail 31 or the second limiting rail 32 can be locked to the first side of the main board body 12 using screws or bolts.

[0080] like Figure 5 As shown, the support beam 33 is located on the second limiting track 32. Of course, the support beam 33 can also be located on the first limiting track 31. That is, in the folded state or when the foldable table is not fully unfolded, the support beam 33 is retracted into the first limiting track 31 or the second limiting track 32. When the two main panels 12 are unfolded in a direction away from each other and are located on opposite sides of the foldable part 11 along the first direction X, the support beam 33 can be moved manually or by other external forces so that the support beam 33 spans the foldable part 11 and is respectively located on the first limiting track 31 and the second limiting track 32. In this way, the support beam 33 provides support for the tabletop 1, improves the connection strength between the two main panels 12 and the foldable part 11, prevents the tabletop 1 from collapsing, and thus ensures the structural strength of the foldable table.

[0081] In some alternative embodiments, such as Figure 3 , Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, the first limiting rail 31 and the second limiting rail 32 are hollow rods. The support beam 33 is slidably disposed relative to the inner walls of the first limiting rail 31 and the second limiting rail 32.

[0082] The first limiting track 31 and the second limiting track 32 are respectively provided with a first viewing window 311 and a second viewing window 321. In the unfolded state, the first viewing window 311 and the second viewing window 321 are arranged symmetrically along the second direction Y.

[0083] In these optional embodiments, the first limiting rail 31 and the second limiting rail 32 are hollow rods, and the support beam 33 is slidably disposed relative to the inner wall of the first limiting rail 31 and the second limiting rail 32, so as to ensure that the support beam 33 can be stably connected to the first limiting rail 31 and the second limiting rail 32, and to ensure that the support beam 33 is not easy to fall off. When switching from the folded state to the unfolded state, the support beam 33 can move along the inner walls of the first limiting track 31 and the second limiting track 32, so that the support beam 33 is respectively positioned on the first limiting track 31 and the second limiting track 32 and spans the foldable part 11. The first limiting track 31 and the second limiting track 32 are respectively provided with a first viewing window 311 and a second viewing window 321. In the unfolded state, the first viewing window 311 and the second viewing window 321 are symmetrically arranged along the second direction Y, so that the user can easily observe the sliding position of the support beam 33. This allows the user to slide the support beam 33 to the preset position when unfolding the foldable table, improving the situation where the tabletop 1 folds over on its own because the support beam 33 has not slid to the preset position, and ensuring the structural stability of the entire foldable table.

[0084] Optional, such as Figure 5 As shown, both the first limiting track 31 and the second limiting track 32 are hollow rods. Correspondingly, the support beam 33 is a long rod. In the retracted state, the support beam 33 is located inside the first limiting track 31 or the second limiting track 32 and can slide along the inner wall of the first limiting track 31 or the second limiting track 32. This design ensures that the support beam 33 can be stably connected to the first limiting track 31 and the second limiting track 32, ensuring that the support beam 33 is not easily detached. Figure 5 As shown, the first limiting track 31 and the second limiting track 32 are respectively provided with a first viewing window 311 and a second viewing window 321. When the two main body 12 are in the unfolded state, the first viewing window 311 and the second viewing window 321 are symmetrically arranged along the second direction Y, so that the user can easily observe the sliding position of the support beam 33. This allows the user to slide the support beam 33 to the preset position when unfolding the foldable table, avoiding the situation where the table 1 will fold over on its own because the support beam 33 has not slid to the preset position, thus ensuring the structural stability of the entire foldable table.

[0085] Optionally, the first viewing window 311 and the second viewing window 321 are strip-shaped openings, and the strip-shaped openings extend along the extension direction of the first limiting rail 31 or the second limiting rail 32, so as to ensure that the first viewing window 311 and the second viewing window 321 have sufficient viewing space. Alternatively, the first viewing window 311 and the second viewing window 321 are positioned relative to the first limiting rail 31 and the second limiting rail 32 when the support beam 33 slides to the preset position. That is, when the support beam 33 slides to the preset position, the two ends of the support beam 33 are exactly located within the first viewing window 311 and the second viewing window 321, so that the user can more intuitively observe the sliding position of the support beam 33, thereby ensuring the stability of the entire foldable table.

[0086] In some optional embodiments, the first limiting track 31 and the second limiting track 32 are respectively provided with a first dovetail groove and a second dovetail groove on the side opposite to the first side. The first dovetail groove and the second dovetail groove have the same specific structure. The support beam 33 is provided with a slider. The slider extends along the extension direction of the support beam 33. The shape and size of the slider are adapted to the first dovetail groove and the second dovetail groove. The slider is slidably disposed relative to the groove walls of the first dovetail groove and the second dovetail groove. In the retracted state, the slider is located in the first dovetail groove or the second dovetail groove. When switching from the retracted state to the unfolded state, the slider moves along the groove walls of the first dovetail groove and the second dovetail groove, so that the support beam 33 is respectively disposed on the first limiting track 31 and the second limiting track 32 and spans the foldable part 11.

[0087] In some alternative embodiments, such as Figure 3 As shown, there are two second support components 3. The two second support components 3 are respectively disposed at opposite ends of the tabletop 1 along the second direction Y. The first direction X and the second direction Y intersect. The first support component 2 is sandwiched between the two second support components 3.

[0088] In these optional embodiments, the connection stability between the two main body 12 and the foldable part 11 is enhanced by the two second support components 3, further preventing the tabletop 1 from flipping or denting on its own, thereby further ensuring the structural strength and stability of the foldable table. In this embodiment, the two second support components 3 can be disposed at the edges of opposite ends of the tabletop 1 along the second direction Y, so that the first support component 2 can be clamped between the two second support components 3. The clamping action of the two second support components 3 can limit the first support component 2, preventing the connecting end of the first support component 2 from rotating arbitrarily, thereby ensuring the supporting effect of the first support component 2 on the tabletop 1.

[0089] In some alternative embodiments, such as Figure 8As shown, the first support assembly 2 includes a first support plate 21, a second support plate 22, and a third support plate 23 connected sequentially. The second support plate 22 and the third support plate 23 are respectively disposed at opposite ends of the first support plate 21 along the second direction Y, and the second support plate 22 and the third support plate 23 are foldable relative to the first support plate 21. The first direction X and the second direction Y intersect.

[0090] The first support plate 21 is connected to the main body 12 and is rotatable relative to the main body 12.

[0091] In the stowed state, the second support plate 22 and the third support plate 23 fold inward and retract between the first support plate 21 and the main body 12.

[0092] In the unfolded state, the angle between the first support plate 21 and the first side is greater than or equal to 90°, and the second support plate 22 and the third support plate 23 are respectively in contact with and perpendicular to the first side.

[0093] In these optional embodiments, the second support plate 22 and the third support plate 23 are respectively disposed at opposite ends of the first support plate 21 along the second direction Y, and the second support plate 22 and the third support plate 23 are foldable relative to the first support plate 21. In the stored state, the second support plate 22 and the third support plate 23 are folded between the first support plate 21 and the first side to realize the storage of the first support component 2. In the unfolded state, the included angle between the first support plate 21 and the first side is greater than or equal to 90°, the second support plate 22 and the third support plate 23 are folded to opposite sides of the first support plate 21 along the second direction Y, and the second support plate 22 and the third support plate 23 respectively abut against and are perpendicular to the first side. The second support plate 22 and the third support plate 23 respectively form a certain included angle with the first support plate 21, thereby supporting the tabletop 1 together through the first support plate 21, the second support plate 22 and the third support plate 23. In the unfolded state, the same first support component 2 has at least three connecting ends respectively connected to the main body 12, ensuring the stability of the stored table in use.

[0094] Optionally, the first support plate 21 is connected to the first side. The second support plate 22 and the third support plate 23 are respectively connected to the first support plate 21. When the first support plate 21 rotates relative to the first side, the second support plate 22 and the third support plate 23 can move along the direction closer to or away from the first side, so as to realize the storage or unfolding of the first support component 2. The second support plate 22 and the third support plate 23 are located at opposite ends of the first support plate 21 along the second direction Y, and both the second support plate 22 and the third support plate 23 can be folded relative to the first support plate 21. That is, by folding the second support plate 22 or the third support plate 23, the second support plate 22 or the third support plate 23 can be folded to one side of the first support plate 21 or at a certain angle to the first support plate 21.

[0095] Optionally, in the unfolded state, the first support plate 21 is perpendicular to the first side, the second support plate 22 and the third support plate 23 are perpendicular to the first side, and the second support plate 22 and the third support plate 23 are perpendicular to the first support plate 21 in pairs, so as to better ensure the supporting effect of the first support component 2 on the table 1.

[0096] Optionally, the first support plate 21, the second support plate 22, and the third support plate 23 are made of the same material as the tabletop 1, all of which are corrugated cardboard. Crease lines are provided between the second support plate 22 and the first support plate 21, and between the third support plate 23 and the first support plate 21, to allow the second support plate 22 and the third support plate 23 to fold relative to the first support plate 21. When the first support plate 21, the second support plate 22, the third support plate 23, and the tabletop 1 are all made of stainless steel or aluminum alloy, the second support plate 22 and the third support plate 23 can be hinged to the first support plate 21, allowing them to fold relative to the first support plate 21.

[0097] In some alternative embodiments, such as Figure 3 , Figure 7 and Figure 8 As shown, the foldable table also includes limiting plates 4. Two limiting plates 4 are each connected to a first side surface. The limiting plates 4 are rotatable relative to the first side surface.

[0098] In the unfolded state, such as Figure 3 and Figure 8 As shown, at least a portion of the second support plate 22 and at least a portion of the third support plate 23 are located between the first side and the limiting plate 4.

[0099] In these optional embodiments, the limiting plate 4 is connected to the first side and rotatably disposed relative to the first side. In the retracted state, the free end of the limiting plate 4 contacts the first side, and the second support plate 22 and the third support plate 23 are respectively folded over one side of the first support plate 21 and stored between the first support plate 21 and the limiting plate 4. During the process of switching from the retracted state to the unfolded state, the free end of the limiting plate 4 moves away from the first side, so that in the unfolded state, a portion of the second support plate 22 and the third support plate 23 are located between the first side and the limiting plate 4. The limiting plate 4 securely presses at least a portion of the second support plate 22 and at least a portion of the third support plate 23 onto the first side, thereby further ensuring the connection stability between the second support plate 22 and the third support plate 23 and the main body 12, and thus ensuring a better support effect of the first support component 2 on the tabletop 1.

[0100] Optionally, both the limiting plate 4 and the table 1 are made of corrugated cardboard, and a fold line is provided between the limiting plate 4 and the main body 12 so that the limiting plate 4 can rotate relative to the first side.

[0101] In some alternative embodiments, such as Figure 3 and 8 As shown, the second support plate 22 and / or the third support plate 23 include a first portion 231 and a second portion 232 connected sequentially. The first portion 231 is connected to the first support plate 21 and is foldable relative to the first support plate 21. The second portion 232 is foldable relative to the first portion 231.

[0102] In its stowed state, the second part 232 folds inward and retracts between the first part 231 and the first support plate 21.

[0103] In the unfolded state, the second part 232 is attached to the first side, and at least a portion of the second part 232 is located between the first side and the limiting plate 4.

[0104] In these optional embodiments, the first portion 231 of the second support plate 22 and / or the third support plate 23 is foldable relative to the first support plate 21, and the second portion 232 is foldable relative to the first portion 231. In the stowed state, the second portion 232 is folded between the first portion 231 and the first support plate 21, and the first portion 231 is folded between the first support plate 21 and the main body 12. During the process of switching from the stowed state to the unfolded state, the free end of the second portion 232 moves away from the first portion 231, so that the second portion 232 fits against the first side in the unfolded state. With the rotation of the limiting plate 4, at least a portion of the second portion 232 is clamped between the first side and the limiting plate 4. The clamping action of the limiting plate 4 and the first side ensures that the second support plate 22 and the third support plate 23 are tightly connected to the main body 12, thereby ensuring that the first support assembly 2 provides better support for the tabletop 1.

[0105] Optionally, the first support plate 21, the first part 231 and the second part 232 are an integral structure. The first part 231 and the first support plate 21, and the first part 231 and the second part 232 are respectively connected by fold lines so that the first part 231 can be folded relative to the first support plate 21 and the second part 232 can be folded relative to the first part 231.

[0106] In some alternative embodiments, such as Figure 1 and Figure 3 As shown, the storage table also includes:

[0107] A first connecting plate 5 is connected to the end of one of the main body 12 away from the foldable part 11 and is foldable relative to the main body 12. A first lug 51 is connected to the side of the first connecting plate 5 away from the main body 12, and the first connecting plate 5 has a through-hole 52.

[0108] The second connecting plate 6 is connected to the end of another main body 12 away from the foldable part 11 and is foldable relative to the main body 12. A second lug 61 is connected to the side of the second connecting plate 6 away from the main body 12. The first support plate 21 has a connecting hole 211.

[0109] In the unfolded state, such as Figure 3 As shown, the first connecting plate 5 and the second connecting plate 6 are folded to the opposite side of the two first support plates 21, and the first lug 51 and the second lug 61 are respectively inserted into the corresponding connecting holes 211.

[0110] In the stowed state, the second ear 61 is inserted into the socket 52. The first connecting plate 5 is retracted between the second connecting plate 6 and the tabletop 1.

[0111] In these optional embodiments, a first connecting plate 5 and a second connecting plate 6 are respectively connected to the ends of the two main body 12 away from the foldable portion 11. The first connecting plate 5 has a through-hole 52, and the end of the first connecting plate 5 away from the main body 12 is connected to a first lug 51. The end of the second connecting plate 6 away from the main body 12 is connected to a second lug 61. In the unfolded state, the first connecting plate 5 and the second connecting plate 6 are folded to the opposite side of the two first support plates 21, and the first lug 51 and the second lug 61 are respectively inserted into the corresponding connecting holes 211 to facilitate the connection through the first connecting plate 5. The first support plate 5 and the second connecting plate 6 provide stable support for the first support plate 21 and compensate for the rigidity of the first support plate 21, thereby further ensuring the stability of the entire foldable table. During the process of switching from the unfolded state to the folded state, the first ear 51 and the second ear 61 are pulled out from the connecting hole 211, so that in the folded state, the first connecting plate 5 is tucked in between the second connecting plate 6 and the tabletop 1, and the second ear 61 is inserted into the insertion hole 52, so that the two main body 12 can be folded together stably, preventing the foldable table from falling apart at will, and the entire foldable table has good storage performance.

[0112] Optionally, the first connecting plate 5, the second connecting plate 6, and the tabletop 1 are all made of corrugated cardboard. Folding lines are provided between the first connecting plate 5 and one of the main body 12, between the second connecting plate 6 and the other main body 12, between the first ear 51 and the first connecting plate 5, and between the second ear 61 and the second connecting plate 6 to ensure folding flexibility.

[0113] In some alternative embodiments, such as Figure 7 As shown, at least one of the two main body bodies 12 has a first handle hole 122.

[0114] In these optional embodiments, at least one of the two main body panels 12 has a first handle hole 122 to facilitate operation and movement. The first handle hole 122 can be precisely sized to provide sufficient space for the operator to easily move the foldable table, resulting in high convenience. Optionally, both main body panels 12 are provided with the first handle hole 122, and in the folded state, the two first handle holes 122 are arranged opposite each other, i.e., they are connected, to better facilitate the user's grip and improve the overall ease of use of the foldable table.

[0115] In some alternative embodiments, such as Figure 8 As shown, the first support component 2 has a second handle hole 20.

[0116] In these alternative embodiments, the second handle hole 20 functions similarly to the first handle hole 122, and is designed to facilitate the operator in moving the foldable table. In particular, when the foldable table is in the unfolded state, it is convenient for the user to use the first support component 2 as a point of leverage to move the entire foldable table, which helps to maintain the center of gravity balance of the foldable table during the moving process.

[0117] Of course, the first handle hole 122 and the second handle hole 20 can be selected according to actual usage needs, or both the first handle hole 122 and the second handle hole 20 can be selected (e.g., Figure 7 As shown in the image, this design significantly improves the ease of use of the foldable table.

[0118] Optionally, the first handle hole 122 and / or the second handle hole 20 are strip holes, wherein the size of the strip hole is slightly larger than the ergonomic hand size to ensure ease of operation.

[0119] In some alternative embodiments, the storage table is an integral structure.

[0120] In these optional embodiments, the foldable table is a single, integrated structure that combines desktop and storage functions. Each part of the foldable table is manufactured using precision processes, ensuring sufficient stability and sturdiness during use. The single-piece design allows for quick unfolding without assembly, saving space when not in use and facilitating storage and transport. When not in use, the table can be easily folded away without disassembly, resulting in a compact overall structure.

[0121] In some alternative embodiments, the storage table is a corrugated cardboard storage table.

[0122] In these optional embodiments, the foldable table is a corrugated cardboard storage table. Corrugated cardboard, as a lightweight yet strong material, provides sufficient support for the foldable table and has excellent recyclability, meeting environmental protection requirements. Using corrugated cardboard as the material for the foldable table not only effectively reduces manufacturing costs but also keeps the table lightweight during use, making it easy to move and transport. Furthermore, the flexibility of corrugated cardboard ensures the foldable table folds tightly, maintaining a small storage size for easy storage.

[0123] In some embodiments, the storage table is made of corrugated cardboard and is a one-piece structure to ensure the integrity and overall strength of the storage table.

[0124] Although this application has been described with reference to preferred embodiments, various modifications can be made thereto and components can be replaced with equivalents without departing from the scope of this application. In particular, the technical features mentioned in the various embodiments can be combined in any manner, provided there is no structural conflict. This application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A stowable table, characterized by, include: A tabletop, the tabletop including a foldable portion and main body connected to opposite sides of the foldable portion, so that the two main body can be switched between an unfolded state and a folded state through the foldable portion, the main body having a first side surface; First support assembly, two first support assemblies are respectively connected to a first side surface, the first support assembly has a connecting end and a free end, the first support assembly is connected to the first side surface through the connecting end and is rotatably disposed relative to the first side surface; In the unfolded state, the two main panels are located on opposite sides of the foldable portion along the first direction, and the first support component is intersected with the main panels. From the unfolded state to the retracted state, the two main panels move relative to the foldable portion in a direction that approaches each other, and the free end of the first support component rotates in a direction that approaches the first side, so that in the retracted state, the two main panels are stacked along the thickness direction of the retractable table, and the two first support components are retracted between the two main panels.

2. The stowable table of claim 1, wherein, The tabletop also includes a second support assembly, which includes a first limiting rail, a second limiting rail, and a support beam. The first limiting rail and the second limiting rail are respectively disposed on two of the first sides, and the support beam is slidably disposed relative to the first limiting rail and the second limiting rail. In the retracted state, the support beam is located within the first limiting track or the second limiting track; In the unfolded state, the support beam is positioned on the first limiting rail and the second limiting rail and spans the foldable portion.

3. The stowable table of claim 2, wherein, The first limiting track and the second limiting track are hollow rods, and the support beam is slidably disposed relative to the inner walls of the first limiting track and the second limiting track; The first limiting track and the second limiting track are respectively provided with a first viewing window and a second viewing window. In the unfolded state, the first viewing window and the second viewing window are symmetrically arranged along the second direction.

4. The stowable table of claim 2 or 3, wherein, The second support component has two components, which are respectively disposed at opposite ends of the tabletop along the second direction. The first direction and the second direction intersect, and the first support component is sandwiched between the two second support components.

5. The foldable table according to claim 1, characterized in that, The first support assembly includes a first support plate, a second support plate, and a third support plate connected in sequence. The second support plate and the third support plate are respectively disposed at opposite ends of the first support plate along the second direction, and the second support plate and the third support plate are foldable relative to the first support plate. The first direction and the second direction intersect. The first support plate is connected to the main body and is rotatably disposed relative to the main body; In the retracted state, the second support plate and the third support plate fold inward and retract between the first support plate and the main body; In the unfolded state, the angle between the first support plate and the first side is greater than or equal to 90°, and the second support plate and the third support plate are respectively in contact with and perpendicular to the first side.

6. The foldable table according to claim 5, characterized in that, It also includes a limiting plate, two of which are respectively connected to one of the first side surfaces, and the limiting plate is rotatably disposed relative to the first side surface; In the unfolded state, at least a portion of the second support plate and at least a portion of the third support plate are located between the first side and the limiting plate.

7. The foldable table according to claim 6, characterized in that, The second support plate and / or the third support plate include a first part and a second part connected in succession. The first part is connected to the first support plate and is foldable relative to the first support plate. The second part is foldable relative to the first part. In the stored state, the second part folds inward and is tucked between the first part and the first support plate; In the unfolded state, the second part is attached to the first side, and at least a portion of the second part is located between the first side and the limiting plate.

8. The table of claim 5, wherein, Also includes: A first connecting plate is connected to one end of one of the main bodies away from the foldable portion and is foldable relative to the main body. A first lug is connected to the side of the first connecting plate away from the main body, and the first connecting plate has a through-hole. The second connecting plate is connected to the end of the other main body away from the foldable part and is foldable relative to the main body. The side of the second connecting plate away from the main body is connected to a second lug. The first support plate has a connecting hole. In the unfolded state, the first connecting plate and the second connecting plate are folded to the opposite side of the two first support plates, and the first lug and the second lug are respectively inserted into the corresponding connecting holes; In the retracted state, the second ear is inserted into the socket, and the first connecting plate is retracted between the second connecting plate and the table.

9. The table of claim 1, wherein, At least one of the two mainboard bodies has a first handle hole; and / or, the first support assembly has a second handle hole.

10. The table of claim 1, wherein, The foldable table is a single-piece structure; and / or, the foldable table is a corrugated cardboard storage table.