An integrated wall panel with auxiliary support structure
By introducing auxiliary support structures into integrated wall panels, including ratchet teeth, self-tapping screws, and locking components, the problem of deformation and loosening of wall panels under external forces and long-term use is solved, achieving a stable connection and simplified installation, adapting to uneven wall surfaces, and improving installation efficiency and safety.
Patent Information
- Application Number
- CN202511485852.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2045-10-17
AI Technical Summary
Integrated wall panels may deform or loosen during installation due to external forces or prolonged use, affecting overall stability and safety. This is especially true on irregular walls or in special designs where installation is difficult and current technology relies on insufficient wall support.
The integrated wall panel with auxiliary support structure, including mounting plates No. 1 and No. 2, uses ratchet teeth, self-tapping screws, locking components, automatic locking components and auxiliary support components to achieve active support and stable connection of the wall panel, offset the material's own weight and external impact, and prevent deformation and loosening.
It improves the connection stability and safety of wall panels, simplifies the installation process, reduces costs, and can adapt to uneven wall surfaces, ensuring long-term stability and safety.
Smart Images

Figure CN120946031B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of wall panel technology, specifically relating to an integrated wall panel with an auxiliary support structure. Background Technology
[0002] Integrated wall panels are a new type of wall decoration and building material that combines multiple functions such as wall decoration, sound insulation, heat preservation, fireproofing, and moisture resistance. They are easy to install and quick to construct, and are widely used in the decoration of residential, office, and shopping mall spaces. With the increasing awareness of environmental protection and the growing demand for green building materials, integrated wall panels, as an environmentally friendly, convenient, and efficient decoration material, have a very broad market prospect. Therefore, integrated wall panels may become one of the mainstream materials in the future construction and decoration market.
[0003] During installation, integrated wall panels may deform or loosen under external forces. Especially after prolonged use, the weight of the material itself or vibrations may cause the joints to become loose, affecting overall stability and safety. Installers then rely on the wall's own support to ensure the verticality and flatness of the wall panels. This can pose installation difficulties for irregular or specially designed walls, potentially leading to inaccurate installation, deformation, or tilting. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art and provide an integrated wall panel with an auxiliary support structure.
[0005] The technical solution adopted to solve the above technical problems is: an integrated wall panel with an auxiliary support structure, including a first mounting plate and a second mounting plate. The top of the first mounting plate and the second mounting plate are glued with a baffle, and the bottom of the first mounting plate and the second mounting plate are engaged with a baffle plate. The side of the first mounting plate facing the second mounting plate is welded with a number of ratchet teeth arranged linearly and equally. The first mounting plate and the second mounting plate are respectively threaded with a number of self-tapping screws arranged linearly and equally, for connecting and fixing to the wall.
[0006] A locking assembly is provided between the first baffle and the second baffle to connect and lock the two baffles, facilitating the maintenance and installation of the integrated wall panel. At the same time, several plates arranged linearly and equidistantly are engaged between the first mounting plate and the second mounting plate. A retaining plate is engaged on one side of each plate, and two auxiliary support assemblies are provided between the plate and the retaining plate to support the second mounting plate. In addition, an automatic locking assembly is provided inside the plate for quick installation of the integrated wall panel, reducing installation costs.
[0007] Through the above technical solution, the wall panel is actively supported by the elastic structure, which can offset the stress caused by the material's own weight, external impact, and vibration. The two rotating plates in the component are rotatably connected to the plate and the clamping plate, respectively. The No. 3 spring in the middle can provide continuous elastic support to the rotating plate, pushing the rubber plate to fit tightly against the outer wall of the No. 2 mounting plate, so that the plate and the mounting plate form a "flexible and stable" connection, avoiding local deformation caused by external pressure during installation. At the same time, it can buffer the downward force generated by the material's own weight during long-term use and reduce loosening at the joints due to uneven stress.
[0008] Furthermore, the automatic locking component includes a hollow groove inside the plate, and a horizontally arranged limiting groove is provided in the middle of the hollow groove inside the plate. At the same time, through grooves are provided at the top and bottom of the plate. A slider is provided in the limiting groove inside the plate, and the slider is slidably connected to the plate. At the same time, the plate limits the slider.
[0009] Furthermore, the slider has a through groove that is inclined, and an L-shaped adjusting rod is provided in the groove at the bottom of the plate. The L-shaped adjusting rod is slidably connected to the plate. One end of the L-shaped adjusting rod is located outside the plate, and the other end of the L-shaped adjusting rod is located inside the groove. The L-shaped adjusting rod is slidably connected to the slider.
[0010] Through the above technical solution, after the wedge block and the slide bar are engaged in the wedge groove, the second spring will apply a continuous preload to the slide bar, so that the wedge structure is tightly engaged, preventing the joint from loosening due to long-term vibration. The limit rod of the automatic locking component is always engaged with the ratchet under the action of the first spring, which can resist the displacement caused by material shrinkage or vibration, and ensure that the joint between the plates is tight for a long time.
[0011] Furthermore, the plate is hollow on the side away from the card plate. A limit rod is fixedly connected to one side of the slider, and the other end of the limit rod is slidably connected to the plate. At the same time, the through end of the limit rod is located in the cavity on one side of the plate. The through end of the limit rod is located between two ratchet teeth. The plate engages with the ratchet teeth, and the ratchet teeth support the plate. A first spring is provided between the limit rod and the plate. The two ends of the first spring are fixedly connected to the limit rod and the plate, respectively.
[0012] With the above technical solution, when the panel is pushed in, the limiting rod automatically engages with the ratchet under the force of the first spring. The ratchet supports the panel, and its unidirectional nature naturally provides an anti-backward function, which can effectively resist the downward loosening tendency of the wall panel caused by vibration or material shrinkage, and ensure the stability of long-term use.
[0013] Furthermore, the auxiliary support assembly includes two rotating plates arranged in a mirror symmetrical manner, with one end of each rotating plate rotatably connected to the plate and the clamping plate, respectively, while the other end of each rotating plate is fixedly connected to a rubber plate. The two rubber plates are in contact with the outer wall of the second mounting plate, and a third spring is rotatably connected to the middle of each rotating plate. The ends of the two third springs away from the rotating plates are rotatably connected to the plate and the clamping plate, respectively.
[0014] Furthermore, the locking assembly includes a slot at the joint of the first baffle and the second baffle, and the slot between the first baffle and the second baffle is arranged in a cross shape. At the same time, two second springs are arranged in the transverse slots of the first baffle and the second baffle. One end of the two second springs is fixedly connected to the first baffle and the second baffle respectively, and the other end of the second spring is fixedly connected to a sliding rod. The two sliding rods are slidably connected to the first baffle and the second baffle respectively.
[0015] Through the above technical solution, the bottommost baffles No. 1 and No. 2 are finally fixed by the locking assembly. When the locking rod is pressed down, the sliding rod is pushed open by the conical surface of the connecting rod. After it is in place, the No. 2 spring pushes the sliding rod back to its original position, so that its wedge groove is tightly engaged with the wedge block on the locking rod, forming a "locking". This purely mechanical self-locking structure is very reliable, ensuring the stability of the bottom of the entire wall panel system and preventing settlement and loosening due to time.
[0016] Furthermore, the end of the slide rod away from the second spring is chamfered, and a wedge-shaped groove is provided on the top of the side of the slide rod away from the second spring. At the same time, a wedge-shaped block is provided in the wedge-shaped groove. A locking rod is fixedly connected between the tops of the two wedge-shaped blocks, and the wedge-shaped blocks are slidably connected to the slide rod. Meanwhile, a connecting rod is fixedly connected at the center of the bottom of the locking rod.
[0017] Through the above technical solution, the rotating plate can rotate slightly with the curvature of the wall. With the extension and contraction of the No. 3 spring, the rubber plate can adapt to the slight concavity and convexity of the wall. It can achieve a tight fit without relying on the absolute flatness of the wall. The elastic deformation of the spring can also compensate for slight errors during installation and reduce the requirements for base treatment.
[0018] Furthermore, the locking rod is located in the slot between the first baffle and the second baffle, and the locking rod is slidably connected to the first baffle and the second baffle. At the same time, a connecting rod is fixedly connected to the center of the bottom of the locking rod. The top of the connecting rod is chamfered, and the bottom of the connecting rod is conical. The chamfered end of the top of the connecting rod fits into the chamfered end of the sliding rod.
[0019] Through the above technical solutions, the rubber sheet not only provides friction, but its material itself can also absorb and buffer some of the impact energy, reducing the vibration transmitted to the entire wall panel system and further improving the safety and lifespan of long-term use.
[0020] The beneficial effects of the present invention are as follows: (1) The present invention uses an auxiliary support component consisting of two mirror-set rotating plates and rubber plates, and provides continuous pressure through a No. 3 spring. After installation, the two rubber plates will be tightly attached to the outer walls on both sides of the No. 2 mounting plate to form a bidirectional clamping force. This design "enhances connection stability" and can effectively resist the weight of the wall panel itself, vibration during use, and slight external impact, preventing the wall panel from deforming or warping inward or outward due to these forces. At the same time, the No. 1 mounting plate, the No. 2 mounting plate, and the stop strip are first fixed to the wall to construct a preliminary installation frame. The subsequent wall panel modules are actually installed and supported on this frame, rather than directly and completely relying on the original wall surface. This allows the wall surface to be adjusted through this frame even if it is slightly uneven, ensuring the overall flatness of the final wall surface.
[0021] (2) By employing an automatic locking component, during installation, the limiting rod inside the panel can automatically engage with the ratchet of the first mounting plate under the action of the first spring, achieving rapid engagement and locking between the panel and the mounting plate. The ratchet provides effective support for the panel. Subsequent panels can be stacked in an orderly manner by cooperating with the L-shaped adjusting rod of the previous panel through the bottom through groove. The entire process requires no complicated operation, significantly shortening the installation period and reducing labor and material costs. Furthermore, during disassembly, simply pressing the L-shaped adjusting rod on the outside of the panel drives the slider to slide within the limiting groove, thereby pulling the limiting rod to compress the first spring and disengage it from the ratchet engagement structure. At this point, the panel can be easily removed from the slot of the first mounting plate. The entire disassembly process does not require violent prying or professional tools, and the components are undamaged. It allows for precise disassembly and assembly of a single panel, avoiding damage to the entire wall panel and greatly improving maintenance and replacement efficiency.
[0022] (3) By using a locking component, the present invention can efficiently complete the connection and fixation of the first baffle and the second baffle without the need for additional tools or consumables. During installation, it is only necessary to align the holes and slots of the first baffle and the second baffle, and then put the locking rod and its connecting rod into the holes and slots. The conical bottom end of the connecting rod can push the two sliding rods to compress the second spring. After the connecting rod slides past the sliding rod, the wedge block will be embedded in the wedge groove of the sliding rod. Under the elastic restoring force of the second spring, automatic locking is achieved, quickly forming a stable bottom support structure and greatly simplifying the installation process. Attached Figure Description
[0023] Figure 1 This is a first-view structural schematic diagram of the present invention;
[0024] Figure 2 This is a schematic diagram of the second perspective structure of the present invention;
[0025] Figure 3 This is a schematic diagram of the third-view structure of the present invention;
[0026] Figure 4 This is a first-view structural diagram of the connection between the plate and the card plate of the present invention;
[0027] Figure 5 This is a second-view structural diagram of the connection between the plate and the card plate of the present invention;
[0028] Figure 6 This is a schematic diagram of the connection between the auxiliary support component and the plate of the present invention;
[0029] Figure 7 This is a schematic diagram of the connection between the plate and the first mounting plate of the present invention;
[0030] Figure 8 yes Figure 7 A magnified structural diagram at point A;
[0031] Figure 9 This is a schematic diagram of the connection component structure between mounting plate No. 1 and mounting plate No. 2 of the present invention;
[0032] Figure 10 yes Figure 9 A magnified structural diagram at point B;
[0033] Figure 11 This is a schematic diagram of the connection between the plate and the first mounting plate of the present invention;
[0034] Figure 12 yes Figure 11 A magnified structural diagram at point C;
[0035] Figure 13 This is a partial cross-sectional view of the first and second baffles of the present invention;
[0036] Figure 14 This is a partial structural diagram of the first and second baffles of the present invention;
[0037] Figure 15 This is a schematic diagram of the connection between the first baffle and the locking rod of the present invention;
[0038] Figure 16 This is a schematic diagram of the slide bar and structure of the present invention.
[0039] Reference numerals: 11. Mounting plate No. 1; 12. Mounting plate No. 2; 13. Self-tapping screw; 14. Baffle No. 1; 15. Baffle No. 2; 16. Stop bar; 17. Plate; 18. Locking plate; 19. Ratchet; 2. Automatic locking assembly; 21. Hollow groove; 22. Limiting groove; 23. Through groove; 24. Slider; 25. Slide groove; 26. L-shaped adjusting rod; 27. Limiting rod; 28. Spring No. 1; 3. Locking assembly; 31. Hole groove; 32. Spring No. 2; 33. Slide rod; 34. Locking rod; 35. Wedge groove; 36. Wedge block; 37. Connecting rod; 4. Auxiliary support assembly; 41. Rotating plate; 42. Rubber plate; 43. Spring No. 3. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0041] like Figures 1-3 As shown, an integrated wall panel with an auxiliary support structure in this embodiment includes a first mounting plate 11 and a second mounting plate 12. A baffle 16 is glued to the top of the first mounting plate 11 and the second mounting plate 12, and a first baffle 14 and a second baffle 15 are engaged at the bottom of the first mounting plate 11 and the second mounting plate 12. A plurality of ratchet teeth 19 arranged linearly and equally spaced are welded to the side of the first mounting plate 11 facing the second mounting plate 12, and a plurality of self-tapping screws 13 arranged linearly and equally spaced are threaded onto the first mounting plate 11 and the second mounting plate 12 respectively for connection and fixation to the wall.
[0042] like Figures 1-16As shown, a locking component 3 is provided between the first baffle 14 and the second baffle 15 for connecting and locking the first baffle 14 and the second baffle 15, facilitating the maintenance and installation of the integrated wall panel. The locking component 3 includes a slot 31 formed at the joint of the first baffle 14 and the second baffle 15, and the slot 31 between the first baffle 14 and the second baffle 15 is arranged in a cross shape. At the same time, two second springs 32 are installed in the transverse slots 31 of the first baffle 14 and the second baffle 15. One end of the two second springs 32 is fixedly connected to the first baffle 14 and the second baffle 15 respectively, and the second... The other end of spring 32 is fixedly connected to a slide rod 33. The end of slide rod 33 away from spring 32 is chamfered, and a wedge-shaped groove 35 is formed on the top of the side of slide rod 33 away from spring 32. A wedge-shaped block 36 is provided in the wedge-shaped groove 35. A locking rod 34 is fixedly connected between the tops of the two wedge blocks 36. After the wedge blocks 36 and the wedge-shaped groove 35 of slide rod 33 are engaged, spring 32 will apply a continuous preload to slide rod 33, so that the wedge structure is tightly engaged, preventing the joint from loosening due to long-term vibration. The limiting rod 27 of automatic locking component 2 is always engaged with ratchet 1 under the action of spring 28. The 9-locking mechanism resists displacement caused by material shrinkage or vibration, ensuring a long-term tight seal between the plates 17. The locking rod 34 is located in the slot 31 between the first baffle 14 and the second baffle 15, and is slidably connected to both baffles 14 and 15. A connecting rod 37 is fixedly connected to the center of the bottom of the locking rod 34. The top of the connecting rod 37 is chamfered, and the bottom is conical. The chamfered end of the connecting rod 37 fits against the chamfered end of the sliding rod 33, and the wedge block 36 is slidably connected to the sliding rod 33. The locking rod 34 is fixed at its center. The system is connected by a connecting rod 37, and two sliding rods 33 are slidably connected to the first baffle 14 and the second baffle 15 respectively. The bottom first baffle 14 and the second baffle 15 are finally fixed by the locking assembly 3. When the locking rod 34 is pressed down, the sliding rod 33 is pushed open by the conical surface of the connecting rod 37. After it is in place, the second spring 32 pushes the sliding rod 33 back to its original position, so that its wedge groove 35 is tightly engaged with the wedge block 36 on the locking rod 34, forming a "locking engagement". This purely mechanical self-locking structure is very reliable, ensuring the stability of the bottom of the entire wall panel system and preventing settlement and loosening due to time.
[0043] like Figures 1-8As shown, several plates 17 arranged linearly and equidistantly are engaged between mounting plate 11 and mounting plate 12. A retaining plate 18 is engaged on one side of each plate 17, and two auxiliary support components 4 are arranged between the plates 17 and retaining plates 18 to support mounting plate 12. Each auxiliary support component 4 includes two mirror-symmetrical rotating plates 41, one end of which is rotatably connected to the plate 17 and retaining plate 18 respectively. The other end of each rotating plate 41 is fixedly connected to a rubber plate 42. The rubber plate 42 not only provides friction but also absorbs and buffers some impact energy, reducing vibration transmitted to the entire wall panel system and further improving long-term safety and lifespan. This elastic structure provides active support for the wall panel, offsetting the stress caused by material weight, external impact, and vibration. The two rotating plates 41 in the component rotate with the plate 17 and retaining plate 18 respectively. The connection, with the third spring 43 in the middle providing continuous elastic support to the rotating plate 41, pushes the rubber plate 42 to fit tightly against the outer wall of the second mounting plate 12, creating a "flexible yet stable" connection between the plate 17 and the mounting plate. This avoids localized deformation caused by external pressure during installation and also buffers the downward force generated by the material's own weight during long-term use, reducing loosening at the joints due to uneven stress. The two rubber plates 42 fit against the outer wall of the second mounting plate 12, and the third spring 43 is rotatably connected to the middle of the rotating plate 41. At the same time, the ends of the two third springs 43 away from the rotating plate 41 are rotatably connected to the plate 17 and the clamping plate 18, respectively. The rotating plate 41 can rotate slightly with the curvature of the wall surface. With the expansion and contraction of the third spring 43, the rubber plate 42 can adapt to the slight unevenness of the wall surface, achieving a tight fit without relying on an absolutely flat wall surface. The elastic deformation of the springs can also compensate for slight errors during installation, reducing the requirements for base treatment.
[0044] like Figures 2-16As shown, the panel 17 is equipped with an automatic locking component 2 for quick installation of the integrated wall panel, reducing installation costs. The automatic locking component 2 includes a hollow groove 21 inside the panel 17, and a horizontally oriented limiting groove 22 in the middle of the hollow groove 21. The panel 17 also has through grooves 23 at its top and bottom. A slider 24 is installed within the limiting groove 22 inside the panel 17. The side of the panel 17 away from the locking plate 18 is hollow. A limiting rod 27 is fixedly connected to one side of the slider 24, and the other end of the limiting rod 27 is slidably connected to the panel 17. The through end of the limiting rod 27 is located in the cavity on one side of the panel 17, between two ratchet teeth 19. When the panel 17 is pushed in, the limiting rod 27 automatically engages with the ratchet teeth 19 under the force of the first spring 28, and the ratchet teeth 19 support the panel 17. The unidirectional nature of the ratchet 19 naturally provides an anti-backward function, effectively resisting the downward loosening tendency of the wall panel caused by vibration or material shrinkage, ensuring long-term stability. The plate 17 engages with the ratchet 19, and the ratchet 19 supports the plate 17. At the same time, a first spring 28 is provided between the limiting rod 27 and the plate 17. The two ends of the first spring 28 are fixedly connected to the limiting rod 27 and the plate 17, respectively. The slider 24 has a through-hole with an inclined sliding groove 25. An L-shaped adjusting rod 26 is provided in the through groove 23 at the bottom of the plate 17. The L-shaped adjusting rod 26 is slidably connected to the plate 17. One end of the L-shaped adjusting rod 26 is located outside the plate 17, and the other end is located in the sliding groove 25. The L-shaped adjusting rod 26 is slidably connected to the slider 24, and the slider 24 is slidably connected to the plate 17. At the same time, the plate 17 limits the slider 24.
[0045] The working principle of this embodiment is as follows: Before installing the wall panel, glue is applied to one side of the retaining strip 16 to bond it to the first mounting plate 11 and the second mounting plate 12. First, the first mounting plate 11 and the second mounting plate 12 are connected and fixed to the wall using self-tapping screws 13. Then, the first plate 17 is inserted into the slot of the first mounting plate 11 from one side, and the plate 17 is bonded to the retaining strip 16. At the same time, the limiting rod 27 in the plate 17 is engaged in the ratchet 19. The ratchet 19 engages and locks with the plate 17, while the rubber plate 42 connected to the other end of the plate 17 fits against the outer wall of the second mounting plate 12. At the same time, the locking plate 18 engages with the plate 17, and the rubber plate 42 connected to the locking plate 18 fits against the outer wall of the second mounting plate 12. Under the action of the third spring 43, the two rubber plates 42 support the rotating plate 41, thereby causing the rotating plate 41 to move in the opposite direction, so that the rubber plates 42 fit tightly against the outer wall of the second mounting plate 12, enhancing the connection stability.
[0046] Then, the panels 17 and the clips 18 are engaged one by one, and the subsequent panels 17 are placed at the bottom of the first panel 17 to form a linear and equidistant arrangement. The L-shaped adjustment rod 26 at the bottom of the first panel 17 then enters the through groove 23 of the subsequent panel 17 to achieve rapid installation of the wall panel.
[0047] Then, directly below the bottom plate 17 of mounting plate 11 and mounting plate 12, insert the second baffle 15 into the slot of mounting plate 11. The baffle 16 below the bottom plate 17 is directly inserted, and the protrusion at the top of the second baffle 15 is inserted into the through slot 23 of the bottom plate 17. Then, engage the first baffle 14 with the second mounting plate 12, and align the slots 31 of the first baffle 14 and the second baffle 15. At this point, insert the locking rod 34 and its connecting rod 37 directly into the slots 31 of the first baffle 14 and the second baffle 15. Under the action of the conical end structure at the bottom of the connecting rod 37, the two sliding rods 33 can be pushed to move towards the first baffle 14 and the second baffle 15 respectively, compressing and contracting the second spring 32.
[0048] After the connecting rod 37 slides between the two sliding rods 33, the two wedge-shaped blocks 36 at the bottom of the locking rod 34 enter the wedge-shaped grooves 35 at the top of the sliding rod 33, and are locked in place by the reaction action of the second spring 32. At this time, the locking rod 34 forms a stable connection with the first baffle 14 and the second baffle 15 to ensure the firmness of the bottom structure. As the connecting rod 37 is fully embedded, the sliding rod 33 is locked with the wedge-shaped blocks 36 by the elastic recovery action of the second spring 32 to prevent loosening. The entire installation process does not require additional tools and achieves rapid splicing and locking through the precise cooperation between components.
[0049] When the wall panel needs to be disassembled, simply apply force to pull the locking rod 34 and its connecting rod 37 out of the slot 31, so that the bottom conical structure pushes the slide rod 33 to move towards the first baffle 14 and the second baffle 15. The second spring 32 retracts, and the slide rod 33 disengages from the wedge block 36. The locking rod 34 can then be removed from between the first baffle 14 and the second baffle 15. Then, each section of the panel 17 and the retaining plate 18 can be disassembled upwards in sequence. The second baffle 15 at the bottom can be directly removed from the retaining groove of the first mounting plate 11.
[0050] When removing panel 17, the L-shaped adjusting rod 26 can be pressed directly to push it into the panel 17, causing the other end of the L-shaped adjusting rod 26 to slide in the groove 25 of the slider 24. This causes the slider 24 to move towards the locking plate 18 in the limiting groove 22, thereby pulling the limiting rod 27 to move. At the same time, the first spring 28 contracts and deforms, causing the limiting rod 27 to separate from the ratchet 19. After the limiting rod 27 disengages from the ratchet 19, panel 17 can be easily removed from the slot of the first mounting plate 11. The entire disassembly process is smooth and unobstructed. By operating step by step in this manner, all wall panels can be removed quickly. There are no screws between the components, and quick disassembly and assembly can be achieved without the use of tools. Maintenance and replacement are convenient and efficient. Each component is injection molded from high-strength engineering plastics, which has good wear resistance and anti-aging properties and is not easily deformed after long-term use.
[0051] The L-shaped adjusting rod 26 has an ergonomic pressing structure design that makes operation effortless. Reset relies on the elastic recovery of spring 28, which provides a rapid response. All locking parts are equipped with limit structures to prevent accidental disengagement and ensure that the overall system remains stable under vibration or external impact. The components are undamaged after disassembly and can be reassembled, making it suitable for frequent disassembly and assembly scenarios.
[0052] The first panel 17 at the top separates from the slot end of the first mounting plate 11. The entire wall panel system can be quickly disassembled, and all components can be reused. The disassembly process also requires no tools, is easy to operate, and does not damage the wall. Subsequently, the components separate in an orderly manner under the action of gravity and structural restraint. During the disassembly process, there is no need to disassemble the glued parts. The entire disassembly can be completed by simply releasing the clips, thus maximizing the protection of the integrity of the wall surface.
[0053] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention.
Claims
1. An integrated wallboard with auxiliary support structure, comprising a first mounting plate (11) and a second mounting plate (12), the first mounting plate (11) and the second mounting plate (12) are bonded with a baffle (16) on top, and the first mounting plate (11) and the second mounting plate (12) are clamped with a first baffle (14) and a second baffle (15) on the bottom, characterized in that: The first mounting plate (11) is welded with a plurality of ratchets (19) arranged linearly and equidistantly on the side facing the second mounting plate (12), and the first mounting plate (11) and the second mounting plate (12) are respectively threadedly connected with a plurality of self-tapping screws (13) arranged linearly and equidistantly, for connecting and fixing with the wall; The locking assembly (3) is arranged between the first baffle (14) and the second baffle (15), for connecting and locking the first baffle (14) and the second baffle (15), facilitating the maintenance and installation of the integrated wallboard, and meanwhile, a plurality of plate blocks (17) arranged linearly and equidistantly are clamped between the first mounting plate (11) and the second mounting plate (12), the plate block (17) is clamped with a clamping plate (18) on one side, and two auxiliary supporting assemblies (4) are arranged between the plate block (17) and the clamping plate (18), for supporting the second mounting plate (12), and meanwhile, the automatic locking assembly (2) is arranged in the plate block (17), for quickly installing the integrated wallboard and reducing the installation cost; The automatic locking assembly (2) comprises a hollow groove (21) formed in the plate block (17), a limiting groove (22) arranged horizontally and formed in the middle of the hollow groove (21) in the plate block (17), and through grooves (23) formed in the top and bottom of the plate block (17), the limiting groove (22) in the plate block (17) is provided with a sliding block (24), the sliding block (24) is slidably connected with the plate block (17), and the plate block (17) limits the sliding block (24); The sliding block (24) is provided with an inclined sliding groove (25), an L-shaped adjusting rod (26) is arranged in the through groove (23) at the bottom of the plate block (17), the L-shaped adjusting rod (26) is slidably connected with the plate block (17), one end of the L-shaped adjusting rod (26) is located outside the plate block (17), the other end of the L-shaped adjusting rod (26) is located in the sliding groove (25), and the L-shaped adjusting rod (26) is slidably connected with the sliding block (24); The plate block (17) is provided in a hollow structure on the side away from the clamping plate (18), the sliding block (24) is fixedly connected with a limiting rod (27) on one side, the other end of the limiting rod (27) is slidably connected with the plate block (17), the penetrating end of the limiting rod (27) is located in the cavity on one side of the plate block (17), the penetrating end of the limiting rod (27) is located between the two ratchets (19), the plate block (17) is clamped with the ratchets (19), the ratchets (19) support the plate block (17), a first spring (28) is arranged between the limiting rod (27) and the plate block (17), and the two ends of the first spring (28) are fixedly connected with the limiting rod (27) and the plate block (17) respectively.
2. An integrated wall panel with secondary support structure according to claim 1, wherein, The auxiliary support assembly (4) comprises two mirror-symmetrically arranged rotating plates (41), one end of each of the two rotating plates (41) is rotatably connected with the plate block (17) and the clamping plate (18), and the other end of the rotating plate (41) is fixedly connected with a rubber plate (42), the two rubber plates (42) are attached to the outer wall of the second mounting plate (12), the middle part of the rotating plate (41) is rotatably connected with a third spring (43), and the other end of each of the two third springs (43) is rotatably connected with the plate block (17) and the clamping plate (18).
3. The integrated wall panel with auxiliary support structure of claim 1, wherein, The locking assembly (3) comprises a hole slot (31) formed at the joint of the first baffle (14) and the second baffle (15), the hole slot (31) between the first baffle (14) and the second baffle (15) is arranged in a cross-shaped structure, two second springs (32) are arranged in the transverse hole slot (31) of the first baffle (14) and the second baffle (15), one end of each of the two second springs (32) is fixedly connected with the first baffle (14) and the second baffle (15), the other end of the second spring (32) is fixedly connected with a sliding rod (33), and the two sliding rods (33) are slidably connected with the first baffle (14) and the second baffle (15) respectively.
4. The integrated wall panel with auxiliary support structure of claim 3, wherein, The end of the sliding rod (33) away from the second spring (32) is arranged in an inverted angle, a wedge-shaped groove (35) is formed at the top of the side of the sliding rod (33) away from the second spring (32), a wedge-shaped block (36) is arranged in the wedge-shaped groove (35), two wedge-shaped blocks (36) are fixedly connected with a locking rod (34) at the top, the wedge-shaped block (36) is slidably connected with the sliding rod (33), and the bottom center of the locking rod (34) is fixedly connected with a connecting rod (37).
5. An integrated wall panel with secondary support structure according to claim 4, wherein, The locking rod (34) is arranged in the hole slot (31) between the first baffle (14) and the second baffle (15), the locking rod (34) is slidably connected with the first baffle (14) and the second baffle (15), the bottom center of the locking rod (34) is fixedly connected with the connecting rod (37), the top end of the connecting rod (37) is arranged in an inverted angle, the bottom end of the connecting rod (37) is arranged in a conical structure, and the inverted angle end of the top of the connecting rod (37) is attached to the inverted angle end of the sliding rod (33).
Citation Information
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