Deformable wall-mounted folding dining table

By incorporating magnetic blocks and an adjustable storage mechanism, the design solves the problem of seat and tabletop occupies passageway in narrow spaces when using wall-mounted folding dining tables. It achieves integrated storage of seat and tabletop, improving user comfort and safety.

CN121647463AInactive Publication Date: 2026-03-13CHANGZHOU INST OF MECHATRONIC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-31
Publication Date
2026-03-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing wall-mounted folding dining tables use a distributed folding structure for the seats and tabletops, which means that even after being stored in a long and narrow space, they still occupy passage space, affecting the smooth flow of people and easily causing safety hazards such as bumps and collisions.

Method used

Employing magnetic blocks and an adjustable storage mechanism, the seats and tables are integrated and stored together through the magnetic attraction of the blocks. Combined with detachable fixing bolts and adjustment slots, this ensures that the seats and tables fit together perfectly and avoids taking up passage space.

Benefits of technology

The integrated storage of seats and tables eliminates the safety hazards of bumps and collisions during passage, adapts to the needs of narrow and long spaces, and improves the comfort and safety of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a deformable wall-mounted folding dining table, and relates to the technical field of folding dining tables, the deformable wall-mounted folding dining table comprises a table plate and a folding triangular support, external force is applied to a connection extension plate, the connection extension plate rotates around a supporting shaft until a first magnetic attraction block and a connection connecting plate generate attraction force, and primary positioning and fixing of the connection extension plate and the connection connecting plate are achieved; then, upward rotating force is applied to the connection connecting plate until the other face of the connection connecting plate is completely attracted to a second magnetic attraction block, then the seat is integrally attached to the lower surface of the table plate through the storage mechanism, integrated storage of the seat and the table plate is achieved, and then the table plate is stored in a manner of being attached to the wall in cooperation with a folding triangular support. The dining table and the seat form a wall-mounted integrated compact storage form, the problem that the seat is attached to the wall surface or the side surface of the table plate after being folded to occupy the passing space is avoided, the potential safety hazard of collision during passing of people is effectively eliminated, the passing smoothness of the people is not influenced, and the dining table is adaptive to the use scenes of long and narrow spaces, small apartments and temporary dining areas.
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Description

Technical Field

[0001] This invention belongs to the field of folding dining table technology, and more specifically, relates to a deformable wall-mounted folding dining table. Background Technology

[0002] With the acceleration of urbanization, the demand for space utilization in small apartments, loft spaces, and temporary dining areas (such as balconies and corridor transition areas) is increasing. Wall-mounted folding dining tables, with their core advantages of being able to be stored against the wall when not in use and not taking up floor space, have become the preferred furniture for these scenarios and are widely used in homes, serviced apartments, office break rooms, and other places.

[0003] The core folding mechanism of existing wall-mounted folding dining tables mostly adopts a folding triangular bracket structure. The tabletop can be unfolded and supported by the rotation and opening of the bracket, and can also be stored against the wall. Some products are designed with foldable chairs to form a combination of table and chair furniture to meet the needs of multiple people dining.

[0004] However, existing products mostly use a decentralized folding structure for the seats and tables, with the seats set up independently of the main folding mechanism of the dining table. When used in narrow corridors, transition passages between small kitchens and dining rooms, balconies and other space-constrained areas, the folded table and chair combination will still occupy some passage space, which not only affects the smooth flow of people, but also easily causes safety hazards such as bumps and collisions. Summary of the Invention

[0005] To address the aforementioned technical problems, this invention provides a deformable wall-mounted folding dining table. This solves the problem that existing products often employ a decentralized folding structure for the chairs and tabletops, with the chairs set independently of the main folding mechanism. When used in space-constrained areas such as narrow corridors, transitional passages between small kitchens and dining rooms, and balconies, the folded table and chair combination still occupies some passage space, affecting the smooth flow of people and easily causing safety hazards such as bumps and collisions.

[0006] A deformable wall-mounted folding dining table includes a tabletop and a folding triangular support. A seat is provided on the lower surface of the tabletop, and a storage mechanism is provided on the outside of the seat. The storage mechanism includes a base, a pivot, an adjustment plate, a connecting plate, a support connecting seat, an L-shaped groove, a support shaft, and a connecting extension plate. A first magnetic block is embedded on one side of the connecting extension plate corresponding to the connecting plate, and a second magnetic block is embedded on the lower surface of the tabletop.

[0007] Preferably, there are two bases, both of which are set on the lower surface of the table. The two ends of the rotating shaft are rotatably connected to the adjacent sides of the two bases respectively. The end of the adjusting plate is fixedly installed on the outside of the rotating shaft. The connecting plate is set on the end of the adjusting plate away from the rotating shaft. The support connecting seat is fixedly installed on the end of the connecting plate away from the adjusting plate. The L-shaped groove is opened on the outside of the support connecting seat. The support shaft is rotatably connected to the inside of the L-shaped groove. The end of the connecting extension plate is fixedly installed on the outside of the support shaft. The seat is fixedly installed on the outside of the connecting extension plate.

[0008] Preferably, each side of the tabletop corresponding to each base is provided with a square nut, and each base corresponding to the square nut is rotatably connected to a fixing bolt. The fixing bolt is threaded into the inside of the square nut. Each side of the tabletop corresponding to each base has an assembly slot, and the square nut is engaged in the assembly slot. Each side of the tabletop corresponding to each assembly slot has an assembly hole, and each base corresponding to the assembly hole has a through hole. The assembly hole communicates with the inside of the assembly slot. The fixing bolt is rotatably connected into the inside of the through hole. The fixing bolt passes through the through hole and the assembly hole in sequence and is threaded into the square nut. The base is fixed to the tabletop by axial locking force. The threaded connection is tight and reliable, with strong load-bearing capacity. The detachable design facilitates component disassembly and maintenance, improving the practicality of the product.

[0009] Preferably, each fixing bolt is fitted with a washer, which is located between the bolt head and the base to enhance the anti-loosening performance of the connection structure, compensate for assembly gaps, and improve the overall connection stability.

[0010] Preferably, the two bases have connecting holes on their adjacent sides, and the two ends of the rotating shaft are rotatably connected to the inside of the two connecting holes respectively.

[0011] Preferably, the adjusting plate has an adjusting groove inside, the opening of which communicates with the outside of the adjusting plate. A limiting plate is slidably connected inside the adjusting groove, and the end of the limiting plate is fixedly installed on the outside of the connecting plate. Threaded holes are opened at both ends of the adjusting plate corresponding to the opening of the adjusting groove, and these threaded holes communicate with the inside of the adjusting groove. A fixing screw is threaded into each threaded hole. The limiting plate transmits the force of the connecting plate and, in conjunction with the adjusting groove, achieves the adjustment and positioning of the seat height. By rotating the adjusting screw end to adjust the fit between it and the limiting plate, the limiting plate can be locked and unlocked, thus fixing the adjusted seat height.

[0012] Preferably, the folding triangular bracket includes a fixed base, a load-bearing arm, a slide, a folding support arm, and a folding lock.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] In this invention, an external force is applied to the connecting extension plate, causing it to rotate around the support axis within the L-shaped groove of the support connecting seat until the side of the connecting extension plate corresponding to the connecting connecting plate is tightly fitted with the connecting connecting plate. At this point, the first magnetic block embedded in the connecting extension plate generates an adsorption force with the connecting connecting plate, achieving initial positioning and fixation of the connecting extension plate and the connecting connecting plate, preventing the connecting extension plate from rotating arbitrarily around the support axis during subsequent storage. After the adsorption and positioning of the connecting extension plate and the connecting connecting plate are completed, an upward rotational force is applied to the connecting connecting plate, causing the connecting connecting plate to drive the connecting extension plate, the seat, and the support connecting seat to rotate around the rotation axis between the two bases. During the rotation, the adsorption state between the first magnetic block and the connecting connecting plate is maintained, preventing the connecting extension plate and the seat from... As the chair wobbles and shifts, the connecting plate continues to rotate until the end furthest from the pivot point approaches the underside of the tabletop. This continues until the other side of the connecting plate is fully attracted to the second magnetic block embedded in the underside of the tabletop. The magnetic force of the second magnetic block positions and fixes the connecting plate to the underside of the tabletop, allowing the chair to be integrated with the tabletop through the storage mechanism. This integrated storage of the chair and tabletop is achieved. Subsequently, a folding triangular bracket is used to wall-mount the tabletop, creating a compact, wall-mounted integrated storage solution. This completely avoids the problem of the chair folding and sticking to the wall or side of the tabletop, thus eliminating the safety hazard of bumping into people during passage and ensuring smooth passage. It is suitable for narrow spaces, small apartments, and temporary dining areas.

[0015] In this invention, the two ends of the rotating shaft are inserted into the connecting holes on the opposite surfaces of the two bases, so that the rotating shaft and the bases form a rotational fit, completing the pre-assembly of the rotating component of the storage mechanism. Then, the two bases with the rotating shaft are attached to the corresponding installation positions on the lower surface of the table, so that the through holes on the bases are precisely aligned with the mounting holes on the table. Next, washers are placed on the outside of the fixing bolts. Finally, the fixing bolts are passed through the through holes of the bases and the mounting holes of the table in sequence until they form a threaded fastening connection with the square nut in the mounting slot. The axial locking force of the fixing bolts firmly fixes the bases to the lower surface of the table, completing the overall assembly. The detachable design of the storage mechanism facilitates subsequent component inspection, replacement and maintenance. When the rotating shaft, base, support connecting seat and other storage mechanism components are worn, deformed or malfunctioning, the storage mechanism and the table can be quickly separated by removing the fixing bolts without damaging the table body and the folding triangular bracket structure, reducing the difficulty of maintenance and replacement costs.

[0016] In this invention, the square nut is first embedded into the pre-set assembly slot on the table. The shape of the assembly slot limits the rotation of the square nut during subsequent assembly. The square nut is detachable, which, compared to an integrated connection structure, allows for easy removal and replacement when the nut is worn or stripped, without the need to replace the entire table or base, thus reducing maintenance costs.

[0017] In this invention, an adjustable locking mechanism is constructed through the coordinated design of the adjusting groove, the limiting plate, and the fixing screw. During adjustment, simply rotate the fixing screw to disengage it from the limiting plate, thereby releasing the locking constraint on the limiting plate. At this point, the limiting plate can be slid along the adjusting groove by moving the seat. The adjusting groove can precisely constrain the sliding trajectory of the limiting plate, preventing deviation and achieving smooth adjustment of the seat height. After adjusting to the target height, rotate the fixing screw in the opposite direction to make the end of the fixing screw tightly abut against the surface of the limiting plate, thereby firmly locking the seat height. This facilitates adaptation to the sitting posture needs of users of different heights and improves user comfort. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0019] Figure 2 This is the present invention. Figure 1 Structural diagram of the center table;

[0020] Figure 3 This is the present invention. Figure 2 Schematic diagram of the structure of a square nut;

[0021] Figure 4 This is the present invention. Figure 3 Schematic diagram of the middle adjustment plate;

[0022] Figure 5 This is the present invention. Figure 4 Schematic diagram of the central base;

[0023] Figure 6 This is the present invention. Figure 5 A schematic diagram of the structure of the middle adjustment plate from below;

[0024] Figure 7 This is the present invention. Figure 1 Enlarged structural diagram at point A;

[0025] Figure 8 This is the present invention. Figure 2 A magnified structural diagram at point B in the middle.

[0026] In the diagram, the correspondence between the component names and the attached drawing numbers is as follows: 1. Tabletop; 2. Seat; 3. Base; 4. Rotating shaft; 5. Adjusting plate; 6. Connecting plate; 7. Support connecting seat; 8. L-shaped groove; 9. Support shaft; 10. Connecting extension plate; 11. First magnetic block; 12. Second magnetic block; 13. Square nut; 14. Fixing bolt; 15. Assembly slot; 16. Assembly hole; 17. Through hole; 18. Washer; 19. Connecting hole; 20. Adjusting groove; 21. Limiting plate; 22. Threaded hole; 23. Fixing screw; 24. Fixing base; 25. Load-bearing arm; 26. Slide groove; 27. Folding support arm; 28. Folding lock. Detailed Implementation

[0027] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.

[0028] Please see Figures 1-8 This invention provides a deformable wall-mounted folding dining table, including a tabletop 1 and a folding triangular support. The folding triangular support includes a fixed base 24, a load-bearing arm 25, a sliding groove 26, a folding support arm 27, and a folding lock 28. The tabletop 1 serves as the reference carrier of the overall structure, undertaking core functions such as dining and placing items. The folding triangular support provides support for the tabletop 1 in its unfolded state, keeping the tabletop 1 horizontal and stable. The triangular structure has excellent load-bearing stability, effectively distributing the force on the tabletop 1 and preventing the tabletop 1 from shaking or tilting during use. The folding function works in conjunction with the storage of the chair 2 to reduce the overall space occupation, making it suitable for small apartments, wall-mounted storage, and other scenarios, thus improving the product's applicability.

[0029] The fixed base 24 is a component that connects directly to the wall. It typically has screw holes for fixing with expansion screws or self-tapping screws, providing a stable support base for the entire bracket. The load-bearing arm 25 is the main horizontal load-bearing component, used to place the shelf or tabletop. The folding support arm 27, as an oblique force-bearing structure, disperses the pressure generated by the placement of items through a stable triangular structure. When the tabletop 1 is unfolded, the folding support arm 27 is in an oblique tensioned state, which can distribute the pressure on the tabletop 1 to the fixed base 24 and the wall, further enhancing the overall load-bearing performance and preventing the load-bearing arm 25 from bending due to excessive stress at a single point. The folding latch 28 is the core component for one-click folding. It is usually a spring latch design. When the bracket is unfolded, the latch automatically pops out under the action of the spring. The end of the latch contacts and locks with the end of the folding support arm 27, restricting the sliding of the folding support arm 27 and preventing the load-bearing arm 25 from folding back, ensuring a stable support state. When it is time to store after use, simply press the latch with your finger, and the spring will retract to release the lock. At this time, press down on the load-bearing arm 25, and one end of the folding support arm 27 will slide back synchronously in the slide groove 26 of the load-bearing arm 25, so that the load-bearing arm 25 and the tabletop 1 fit together against the wall, completing the storage action.

[0030] A seat 2 is provided on the lower surface of the tabletop 1. A storage mechanism is provided on the outside of the seat 2. The storage mechanism includes a base 3, a rotating shaft 4, an adjusting plate 5, a connecting plate 6, a supporting connecting seat 7, an L-shaped groove 8, a supporting shaft 9, and a connecting extension plate 10. There are two bases 3, both of which are provided on the lower surface of the tabletop 1. The two ends of the rotating shaft 4 are rotatably connected to the adjacent sides of the two bases 3 respectively. The end of the adjusting plate 5 is fixedly installed on the outside of the rotating shaft 4. The connecting plate 6 is provided on the end of the adjusting plate 5 away from the rotating shaft 4. The supporting connecting seat 7 is fixedly installed on the end of the connecting connecting plate 6 away from the adjusting plate 5. The L-shaped groove 8 is opened on the outside of the supporting connecting seat 7. The supporting shaft 9 is rotatably connected inside the L-shaped groove 8. The end of the connecting extension plate 10 is fixedly installed on the outside of the supporting shaft 9. The seat 2 is fixedly installed on the outside of the connecting extension plate 10.

[0031] Seat 2 provides seating functionality, working in conjunction with table 1 to meet needs for dining, resting, and other scenarios. Base 3 serves as a fixed support component for the storage mechanism, connecting table 1 to pivot 4 and providing a rotation mounting point for pivot 4. Pivot 4 connects two bases 3 to adjustment plate 5, enabling the adjustment plate 5, connecting plate 6, seat 2, and other components to rotate around base 3, providing primary rotational support for storage. Adjustment plate 5 connects pivot 4 to connecting plate 6, and connecting plate 6 connects adjustment plate 5 to support connecting seat 7, transmitting force to allow seat 2 to move synchronously with adjustment plate 5. Support connecting seat 7 provides rotational mounting space for support shaft 9 via L-shaped groove 8. The L-shaped groove 8 structure constrains the installation position of the support shaft 9, ensuring smooth rotation of the support shaft 9 while limiting the rotation angle of the connecting extension plate 10. The L-shaped groove 8 provides rotational accommodation space for the support shaft 9, and at the same time limits the rotation range of the connecting extension plate 10 through the inner side wall. The support shaft 9 connects the support connecting seat 7 and the connecting extension plate 10, realizing the rotational movement of the connecting extension plate 10 around the support connecting seat 7, providing secondary rotational support for the storage action. The connecting extension plate 10 is used to extend the distance between the seat 2 and the table 1, so that the seat 2 meets the seating space requirements after unfolding.

[0032] A first magnetic block 11 is embedded on one side of the connecting extension plate 10 corresponding to the connecting connecting plate 6, and a second magnetic block 12 is embedded on the lower surface of the tabletop 1. The first magnetic block 11 is embedded on the side of the connecting extension plate 10 corresponding to the connecting connecting plate 6. The area of ​​the connecting connecting plate 6 corresponding to the magnetic block is made of martensitic stainless steel, while the other areas can be made of lightweight materials to balance the adsorption function and the overall load. When stored, it generates magnetic adsorption force with the connecting connecting plate 6 to achieve the initial positioning of the connecting extension plate 10 and the connecting connecting plate 6. The second magnetic block 12 is embedded on the lower surface of the tabletop 1. When stored, it adsorbs the side of the connecting connecting plate 6 away from the connecting extension plate 10 to achieve the secondary positioning of the connecting connecting plate 6 and the tabletop 1.

[0033] Each tabletop 1 has an assembly slot 15 on one side corresponding to each base 3. A square nut 13 is engaged inside each assembly slot 15. Each tabletop 1 has an assembly hole 16 on one side corresponding to each assembly slot 15. The assembly hole 16 communicates with the inside of the assembly slot 15. Each base 3 has a through hole 17 on one side corresponding to the assembly hole 16. A fixing bolt 14 is rotatably connected inside each through hole 17. The fixing bolt 14 is threaded into the inside of the square nut 13 through the assembly hole 16.

[0034] The mounting slot 15 is used for pre-positioning of the square nut 13 to prevent the square nut 13 from rotating circumferentially. The square nut 13 engages with the fixing bolt 14 through threads to lock the base 3 onto the table plate 1. The mounting hole 16 passes through the table plate 1 and the mounting slot 15, providing a passage for the fixing bolt 14 to pass through. The through hole 17 is opened in the base 3 and aligned with the mounting hole 16 to guide the fixing bolt 14 to accurately connect to the square nut 13. The fixing bolt 14 passes through the through hole 17 and the mounting hole 16 in sequence and is threadedly connected to the square nut 13. The base 3 is fixed to the table plate 1 by axial locking force. The threaded connection is tight and reliable, with strong load-bearing capacity. The detachable design facilitates component disassembly, assembly, and maintenance, improving the practicality of the product.

[0035] Each fixing bolt 14 is fitted with a washer 18. The washer 18 is located between the head of the fixing bolt 14 and the base 3. The washer 18 prevents the head of the fixing bolt 14 from directly pressing the base 3, which would cause local deformation and wear. It also extends the service life of the base 3, enhances the anti-loosening performance of the connection structure, compensates for assembly gaps, and improves the overall connection stability.

[0036] Both bases 3 have connecting holes 19 on their adjacent sides. The two ends of the rotating shaft 4 are rotatably connected to the inside of the two connecting holes 19. The connecting holes 19 are used for the rotational installation of the two ends of the rotating shaft 4 and constrain the radial displacement of the rotating shaft 4.

[0037] The adjusting plate 5 has an adjusting groove 20 inside, and the opening of the adjusting groove 20 communicates with the outside of the adjusting plate 5. A limiting plate 21 is slidably connected inside the adjusting groove 20. The end of the limiting plate 21 is fixedly installed on the outside of the connecting plate 6. The adjusting plate 5 has threaded holes 22 at both ends corresponding to the opening of the adjusting groove 20. The threaded holes 22 communicate with the inside of the adjusting groove 20. A fixing screw 23 is threadedly connected inside each threaded hole 22.

[0038] The adjustment groove 20 provides sliding space for the limiting plate 21, constraining the sliding trajectory of the limiting plate 21. The limiting plate 21 transmits the force of the connecting plate 6 and, together with the adjustment groove 20, realizes the adjustment and positioning of the seat 2 height. The threaded hole 22 provides a threaded installation channel for the fixing screw 23. The symmetrical layout of the double threaded holes 22 ensures that the fixing screw 23 has a balanced locking force on the limiting plate 21, avoiding the offset of the limiting plate 21 caused by single-end locking. By rotating to adjust the contact state between the end of the fixing screw 23 and the limiting plate 21, the locking and unlocking of the limiting plate 21 is realized, and the height of the seat 2 is fixed after adjustment.

[0039] Working principle:

[0040] First, the square nut 13 is inserted into the pre-set mounting slot 15 on the tabletop 1. The shape of the mounting slot 15 limits the rotation of the square nut 13 during subsequent assembly. Simultaneously, the two ends of the rotating shaft 4 are inserted into the corresponding connecting holes 19 on the opposite sides of the two bases 3, creating a rotational fit between the rotating shaft 4 and the bases 3, completing the pre-assembly of the rotating component of the storage mechanism. Then, the two bases 3 with the rotating shaft 4 are fitted onto the corresponding installation positions on the lower surface of the tabletop 1, ensuring precise alignment of the through holes 17 on the bases 3 with the mounting holes 16 on the tabletop 1. Next, the washer 18 is fitted over the fixing bolt 14, ensuring the washer... The washer 18 is located between the head of the fixing bolt 14 and the base 3. Through the buffering and bearing effect of the washer 18, the pressure on the surface of the base 3 when the fixing bolt 14 is tightened is dispersed, so as to avoid the base 3 from deforming due to excessive local stress. At the same time, it enhances the anti-loosening performance of the connection structure. Finally, the fixing bolt 14 is passed through the through hole 17 of the base 3 and the assembly hole 16 of the table 1 in sequence until it forms a threaded fastening connection with the square nut 13 in the assembly slot 15. The axial locking force of the fixing bolt 14 firmly fixes the base 3 to the lower surface of the table 1, completing the overall assembly and ensuring the stability of the connection between the base 3 and the table 1 during subsequent use and storage.

[0041] The second step is to rotate the fixing screw 23 away from the surface of the limiting plate 21 when the table 1 and seat 2 need to be stored. At this time, move the seat 2 upward so that the connecting plate 6 and the adjusting plate 5 are in contact. Then rotate the fixing screw 23 in the opposite direction so that the end of the fixing screw 23 abuts against the surface of the limiting plate 21.

[0042] The third step involves applying external force to the connecting extension plate 10, causing it to rotate around the support shaft 9 within the L-shaped groove 8 of the support connecting seat 7 until the side of the connecting extension plate 10 corresponding to the connecting connecting plate 6 is tightly fitted with the connecting connecting plate 6. At this point, the first magnetic block 11 embedded on the connecting extension plate 10 generates an adsorption force with the connecting connecting plate 6, achieving initial positioning and fixation of the connecting extension plate 10 and the connecting connecting plate 6. This prevents the connecting extension plate 10 from rotating arbitrarily around the support shaft 9 during subsequent storage. After completing the adsorption and positioning of the connecting extension plate 10 and the connecting connecting plate 6, an upward rotational force is applied to the connecting connecting plate 6, causing the connecting connecting plate 6 to... The movable connecting extension plate 10, seat 2 and support connecting seat 7 rotate around the rotating shaft 4 between the two bases 3. During the rotation, the first magnetic block 11 is kept in an adsorption state with the connecting plate 6 to prevent the connecting extension plate 10 and seat 2 from shaking or shifting. The connecting plate 6 continues to rotate until the end away from the rotating shaft 4 moves closer to the lower surface of the table 1 until the other side of the connecting plate 6 is completely adsorbed with the second magnetic block 12 embedded in the lower surface of the table 1. The adsorption force of the second magnetic block 12 is used to fix the connecting plate 6 to the lower surface of the table 1, thereby allowing the seat 2 to fit against the lower surface of the table 1 through the storage mechanism to complete the storage action.

[0043] Fourth step: After storage is completed, the seat 2 is constrained between the lower surface of the table 1 and the storage mechanism. The double adsorption of the first magnetic block 11 and the second magnetic block 12 can effectively prevent the storage structure from loosening and ensure the stability of the storage state. Finally, press the folding lock 28 to overcome the spring force and make the lock retract, releasing the locking constraint on the folding support arm 27. Press down on the load-bearing arm 25 to drive one end of the folding support arm 27 to slide back synchronously in the slide groove 26, so that the load-bearing arm 25 and the table 1 flip towards the wall and finally fit against the wall to complete the overall storage.

[0044] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A deformable wall-mounted folding dining table, comprising a tabletop (1) and a folding triangular support, characterized in that: The lower surface of the table (1) is provided with a seat (2), and the outside of the seat (2) is provided with a storage mechanism, which includes a base (3), a rotating shaft (4), an adjusting plate (5), a connecting plate (6), a supporting connecting seat (7), an L-shaped groove (8), a supporting shaft (9), and a connecting extension plate (10). The connecting extension plate (10) is inlaid with a first magnetic block (11) on one side corresponding to the connecting connecting plate (6), and the tabletop (1) is inlaid with a second magnetic block (12) on the lower surface.

2. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, There are two bases (3), both of which are set on the lower surface of the table (1). The two ends of the rotating shaft (4) are rotatably connected to the adjacent sides of the two bases (3). The end of the adjusting plate (5) is fixedly installed on the outside of the rotating shaft (4). The connecting plate (6) is set on the end of the adjusting plate (5) away from the rotating shaft (4). The supporting connecting seat (7) is fixedly installed on the end of the connecting connecting plate (6) away from the adjusting plate (5). The L-shaped groove (8) is opened on the outside of the supporting connecting seat (7). The supporting shaft (9) is rotatably connected to the inside of the L-shaped groove (8). The end of the connecting extension plate (10) is fixedly installed on the outside of the supporting shaft (9). The seat (2) is fixedly installed on the outside of the connecting extension plate (10).

3. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, The tabletop (1) is provided with a square nut (13) on one side corresponding to each base (3), and a fixing bolt (14) is rotatably connected to one side of each base (3) corresponding to the square nut (13). The fixing bolt (14) is threaded inside the square nut (13).

4. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, The tabletop (1) has an assembly slot (15) on one side corresponding to each base (3); The square nut (13) is engaged inside the assembly slot (15).

5. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, The tabletop (1) has an assembly hole (16) on one side corresponding to each assembly slot (15), and each base (3) has a through hole (17) on one side corresponding to the assembly hole (16). The assembly hole (16) is connected to the inside of the assembly slot (15), and the fixing bolt (14) is rotatably connected to the inside of the through hole (17).

6. The deformable wall-mounted folding dining table as described in claim 3, characterized in that, Each of the fixing bolts (14) is fitted with a washer (18) on the outside, and the washer (18) is located between the head of the fixing bolt (14) and the base (3).

7. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, Both of the two bases (3) have connecting holes (19) on their adjacent sides, and the two ends of the rotating shaft (4) are rotatably connected to the inside of the two connecting holes (19).

8. The deformable wall-mounted folding dining table as described in claim 1, characterized in that, The adjustment plate (5) has an adjustment groove (20) inside. The opening of the adjustment groove (20) is connected to the outside of the adjustment plate (5). A limit plate (21) is slidably connected inside the adjustment groove (20). The end of the limit plate (21) is fixedly installed on the outside of the connecting plate (6).

9. A deformable wall-mounted folding dining table as described in claim 1, characterized in that, The adjusting plate (5) has threaded holes (22) at both ends of the opening of the adjusting groove (20). The threaded holes (22) are connected to the interior of the adjusting groove (20), and each threaded hole (22) is threaded with a fixing screw (23).

10. A deformable wall-mounted folding dining table as described in claim 1, characterized in that, The folding triangular bracket includes a fixed base (24), a load-bearing arm (25), a slide (26), a folding support arm (27), and a folding lock (28).