A multi-specialty integrated variable spatial modular wall panel that can be disassembled without damage
By integrating electromechanical pipelines and quick-connect connectors within the aluminum alloy frame keel, combined with I-beam aluminum connectors and track clips, the modular wall panels can be installed quickly and disassembled without damage. This solves the problems of limited functionality and difficult assembly/disassembly in existing technologies, and improves impact resistance and intelligent integration capabilities.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- NO 1 CONSTR ENG CO LTD OF CHINA CONSTR THIRD ENG BUREAU CO LTD
- Filing Date
- 2026-04-23
- Publication Date
- 2026-05-29
AI Technical Summary
Existing modular wall panels have limited functionality, cannot integrate electromechanical pipelines, are prone to damage to pipelines during disassembly and assembly, have poor impact resistance, and are difficult to disassemble conveniently.
The aluminum alloy frame keel has an internal cavity for integrated electromechanical pipelines. Quick-connect connectors enable electromechanical connection. Combined with I-beam aluminum connectors and upper and lower track buckles, spring locking points and magnetic strips enable rapid mechanical assembly and non-destructive disassembly of the wall panels.
It enables the non-destructive and rapid disassembly and reassembly of wall panels and electromechanical systems, improves impact resistance and stability, and meets the flexibility and intelligent needs of modern office spaces.
Smart Images

Figure CN122106209A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of modular wall panel construction technology, specifically to a multi-disciplinary integrated variable space modular wall panel that can be disassembled without damage. Background Technology
[0002] At present, there are few types of modular wall panels on the market. The mainstream products still need to be assembled piece by piece on site, which makes the construction process complicated and the cycle lengthy. Although some modular wall panels are used in hotels, conference halls and other places for partitioning, they have obvious limitations. Tracks need to be laid in the ceiling, which affects the overall decorative effect. They are only used for partitioning and do not integrate electromechanical pipelines inside, which cannot meet the office needs. At the same time, the weight-bearing performance is poor because the sliding rods are held by the top track. In addition, the design of some modular wall panels using U-shaped tracks to fix to the structural surface and inserting the wall into the tracks also has shortcomings. The weight of a single wall panel is large, requiring two people to work together to install it. Furthermore, it is difficult to disassemble the wall panel or outer decorative panel without damage when replacing it, which can easily cause significant damage to the structural surface or the wall panel.
[0003] The above content is only used to help understand the technical solution of the present invention and does not represent an admission that the above content is the closest prior art. Summary of the Invention
[0004] The purpose of this invention is to provide a modular wall panel that can be disassembled without damage, integrating multiple disciplines and changing space, to solve the problems mentioned in the background art of the prior art where the modular wall panel has a single function, cannot integrate electromechanical pipelines, is prone to damage to pipelines during disassembly and assembly, and is difficult to balance overall impact resistance and convenient disassembly.
[0005] To achieve the above objectives, the present invention provides the following technical solution: A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, comprising: Multiple prefabricated wall panel units, adjacent wall panel units are detachably connected by I-beam aluminum connectors, each wall panel unit includes: The aluminum alloy frame keel has at least one middle crossbeam with a cavity inside for running electromechanical pipelines. Modular polystyrene particleboard is embedded in the aluminum alloy frame keel; Electromechanical lines are integrated into the cavity of the middle crossbeam, and quick-connect electromechanical connectors are provided at their ends. The grooves for the horizontal beams located at the top, middle, and bottom of the wall panel unit; The upper track and the lower track are fixed to the building's roof and ground, respectively, and the inner sides of the upper track and the lower track are provided with guide rails; The wall panel unit achieves vertical load-bearing through the grooves of its upper and lower crossbeams engaging with the upper track and lower guide rail. When adjacent wall panel units are connected side by side through the I-beam aluminum connectors, their corresponding quick-connect electromechanical connectors can be plugged into each other to achieve the connection of electromechanical circuits.
[0006] Furthermore, the upper and lower tracks are detachably connected to the building structure via a combination of spring locking points, screws, and customized magnetic strips; the spring locking points are embedded or fixed in the building structure, the customized magnetic strips have reserved holes, and the screws pass through the tracks and the reserved holes in sequence before being screwed into the spring locking points.
[0007] Furthermore, pre-made elastic rubber sheets are provided between the upper track and the concrete roof slab, and between the lower track and the floor veneer panel.
[0008] Furthermore, a gateway system is integrated within the cavity of the central crossbeam, and the gateway system is electrically connected to the electromechanical pipeline.
[0009] Furthermore, one side of the I-beam aluminum connector is fixed to the vertical keel of a wall panel unit by screws, and the other side is provided with a buckle for engaging with the vertical keel of an adjacent wall panel unit.
[0010] Furthermore, it also includes edge trim profiles, which are provided with long guide rails for snap-fit connection with the keel grooves on the side of the vertical keel of the wall panel unit at the end.
[0011] Furthermore, the wall panel unit completes the assembly of the aluminum alloy frame keel, the installation of electromechanical pipelines and quick-connect electromechanical connectors, and the embedding of modular polystyrene particle boards in the factory, forming a standardized prefabricated module that integrates electromechanical functions.
[0012] Furthermore, the guide rail is filled with a pre-made elastic sealing strip.
[0013] Furthermore, the quick-connect electromechanical connector is a blind-fit connector.
[0014] Compared with the prior art, the beneficial effects of the present invention are: This invention integrates prefabricated electromechanical pipelines and quick-connect connectors into the cavity of the central beam of the wall panel unit. This allows the wall panel to function as a space divider while simultaneously forming a plug-and-play electromechanical functional carrier. The wall panel unit can be quickly and mechanically assembled using I-beam aluminum connectors, and combined with the snap-fit connection of the upper and lower rails, it ensures overall impact resistance and stability while enabling the wall panel body and the integrated electromechanical system to be disassembled and reassembled without damage and with ease. This fundamentally solves the problems of traditional wall panels having limited functionality and being difficult to modify, and meets the comprehensive needs of modern office spaces for flexibility and intelligence. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a diagram showing the fit between the upper track and the concrete top slab of the present invention. Figure 3 This is a diagram showing the fit between the lower track and the structural surface of the present invention; Figure 4 This is a schematic diagram of the aluminum alloy frame keel structure of the prefabricated wall panel unit of the present invention; Figure 5 This is a cross-sectional view of the magnetic decorative panel installation node at the upper crossbeam of the present invention; Figure 6 This is a cross-sectional view of the magnetic decorative panel installation node at the lower crossbeam of this invention; Figure 7 This is a schematic diagram of the integration of internal electromechanical pipelines and quick-connect connectors in the crossbeam of the present invention; Figure 8 This is a diagram showing the fit between the vertical keel and the long impact rail of the present invention; Figure 9 This is a diagram showing the fit between the vertical keel and the I-beam aluminum in this invention; Figure 10 This is a diagram showing the fit between the spring locking point and the screw in this invention. Figure 11 This is a schematic diagram showing the appearance of the magnetic decorative panel of the present invention after all panels are installed. Figure 12 for Figure 11 Enlarged view of point A in the middle; Figure 13 for Figure 11 Enlarged view of point B in the middle; Figure 14 for Figure 11 Enlarged view of point C in the middle.
[0016] Attached reference numerals: 1. Concrete roof slab; 2. L-shaped angle steel; 3. Spring locking point; 4. Screw; 5. Magnetic strip; 6. Finished elastic rubber sheet; 7. Finished upper buckle plate; 8. Upper track; 9. Guide rail; 10. Finished elastic sealing strip; 11. Structural surface; 12. Steel column; 13. Decorative panel; 14. Lower skirting board; 15. Lower track; 16. Upper beam; 17. Beam groove; 18. Magnetic wall panel; 19. Lower beam; 20. Middle beam; 21. Screw hole; 22. Mechanical and electrical pipeline; 23. Quick-connect mechanical and electrical connector; 24. Edge trim keel profile; 25. Vertical keel; 26. Keel groove; 27. Long impact rail; 28. I-beam aluminum; 29. Exposed frame decorative line; 30. Reserved hole; 31. Modular polystyrene particle board; 32. Customized magnetic strip. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] Please see Figure 1-14 The present invention provides a technical solution: A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, comprising: Multiple prefabricated wall panel units, adjacent wall panel units are detachably connected by I-beam aluminum 28 connectors, each wall panel unit includes: The aluminum alloy frame keel has at least one central crossbeam 20 with a cavity inside for passing through electromechanical pipelines 22. Modular polystyrene particleboard 31 is embedded in the aluminum alloy frame keel; Electromechanical pipeline 22 is integrated into the cavity of the middle crossbeam 20, and its end is provided with a quick-connect electromechanical connector 23; The horizontal beam groove 17 is located at the upper, middle and lower ends of the wall panel unit; The upper track 8 and the lower track 15 are fixed to the roof and ground of the building, respectively, and the inner sides of the upper track 8 and the lower track 15 are provided with guide rails 9. The wall panel unit achieves vertical support by engaging with the upper rail 8 and the lower guide rail 9 through the upper and lower crossbeam grooves 17. When adjacent wall panel units are connected side by side through the I-beam aluminum 28 connectors, their corresponding quick-connect electromechanical connectors 23 can be plugged into each other to achieve the connection of electromechanical circuits.
[0019] As an improvement, such as Figure 2-3 , Figure 12 , Figure 14 As shown, the upper track 8 and the lower track 15 are detachably connected to the building structure through a combination of spring locking points 3, screws 4 and customized magnetic strips 32; the spring locking points 3 are embedded or fixed in the building structure, the customized magnetic strips 32 are provided with reserved holes 30, and the screws 4 pass through the track and the reserved holes 30 in sequence before being screwed into the spring locking points 3.
[0020] Furthermore, finished elastic rubber sheets 6 are provided between the upper track 8 and the concrete top slab 1, and between the lower track 15 and the ground decorative panel 13. The lower end of the decorative panel 13 is fixed to the structural surface 11 by a steel column 12.
[0021] It should be added that, during the pouring of the concrete top slab 1, multiple sets of L-shaped angle steel 2 are pre-embedded in pairs at predetermined intervals. The upper rail 8 and the lower rail 15 are respectively installed with upper crossbeam 16 and lower crossbeam 19. Customized magnetic strips 32 are also installed in the crossbeam grooves 17 corresponding to the upper crossbeam 16, middle crossbeam 20 and lower crossbeam 19. The customized magnetic strips 32 here are magnetically connected to the magnetic wall panel 18 through magnetic strips 5. Among them, such as Figure 12 , Figure 14 As shown, the assembled aluminum alloy frame is installed between the upper track 8 and the lower track 15. The upper guide rail 9 in the upper track 8 can be snapped into the crossbeam groove 17 corresponding to the upper crossbeam 16, and the lower guide rail 9 in the lower track 15 can be snapped into the crossbeam groove 17 corresponding to the lower crossbeam 19, so that the wall panel frame is firmly connected to the upper and lower tracks.
[0022] As an improvement, such as Figure 7 , Figure 13 As shown, a gateway system is also integrated inside the cavity of the middle crossbeam 20, and the gateway system is electrically connected to the electromechanical pipeline 22.
[0023] Furthermore, such as Figure 9 As shown, one side of the I-beam aluminum 28 connector is fixed to the vertical keel 25 of a wall panel unit by screws, and the other side is provided with a buckle for engaging with the vertical keel 25 of the adjacent wall panel unit. Specifically, the upper crossbeam 16 and the lower crossbeam 19 are connected to the vertical keel 25 using angle brackets, and the middle crossbeam 20 is connected to the vertical keel 25 using screws. The screws fix the middle crossbeam 20 to the vertical keel 25 through screw holes 21. According to this connection method, a complete aluminum alloy frame can be assembled.
[0024] As an improvement, such as Figure 8 As shown, it also includes an edge trim profile 24, which is provided with a long guide rail 27 for snap-fit connection with the keel groove 26 on the side of the vertical keel 25 of the wall panel unit located at the end.
[0025] Furthermore, such as Figure 9 As shown, the wall panel unit completes the assembly of the aluminum alloy frame keel, the installation of electromechanical pipelines 22 and quick-connect electromechanical connectors 23, and the embedding of modular polystyrene particle boards 31 in the factory, forming a standardized prefabricated module integrating electromechanical functions, and the joints between the wall panels are sealed with exposed frame decorative lines 29. After the wall panels are installed, the joints between the wall panels and the upper track 8 and the lower track 15 are fastened with finished upper snap-on panels 7 and lower skirting boards 14, respectively.
[0026] Furthermore, the guide rail 9 is filled with a pre-made elastic sealing strip 10.
[0027] It should be noted that: in the specific implementation process of this invention, such as Figure 2-3 , Figure 5-7 , Figure 13 As shown, the wall panel unit is fastened and vertically supported by the upper crossbeam 16 and the lower crossbeam 19 and the inner side of the upper track 8 and the lower track 15 fixed on the building. When adjacent wall panel units are connected side by side by I-beams 28, the quick-connect electromechanical connectors 23 on their sides automatically plug in and connect the power, network and other lines instantly to form a fully functional partition system. like Figure 2-3 , Figure 12 , Figure 14 As shown, during installation, the customized magnetic strip 32 is first placed on the spring locking point 3 and attached to the surface of the L-shaped angle steel 2. Then, the upper rail 8 is inserted into the customized magnetic strip 32. The screw 4 is passed through the rail and the reserved hole 30 and screwed into the spring locking point 3. Tightening the screw 4 will compress the spring in the spring locking point 3, generating a strong rebound preload force, thereby firmly tightening and fixing the rail. When disassembling, simply loosen the screw 4 to remove the entire rail, and the embedded parts are intact. The installation method of the lower rail 15 is the same. This connection method ensures impact resistance and stability while achieving non-destructive disassembly and assembly of the rail. like Figure 5-6 As shown, in addition, the magnetic wall panel 18 of the present invention has a magnetic strip 5 attached or fixed with screws on the inner side, which can be connected to the customized magnetic strip 32 reserved in the groove of the aluminum keel 17 by adsorption. This simplifies the traditional process of connecting the decorative layer and the base wall panel. At the same time, since the decorative layer and the base panel are magnetically adsorbed, there is no damage to the base wall panel when disassembling. When the owner wants to change the decorative effect, the interior decoration effect can be quickly switched, achieving the effect of keeping the base layer unchanged while changing the decorative effect.
[0028] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0029] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, characterized in that, include: Multiple prefabricated wall panel units, adjacent wall panel units are detachably connected by I-beam aluminum (28) connectors, each wall panel unit includes: The aluminum alloy frame keel has at least one middle crossbeam (20) with a cavity inside for running electromechanical pipelines (22); Modular polystyrene particleboard (31) is embedded in the aluminum alloy frame keel; Electromechanical pipelines (22) are integrated into the cavity of the middle crossbeam (20), and quick-connect electromechanical connectors (23) are provided at their ends. The horizontal beam groove (17) is located at the upper, middle and lower ends of the wall panel unit. The upper track (8) and the lower track (15) are fixed to the top surface of the building and the ground respectively, and the inner side of the upper track (8) and the lower track (15) is provided with guide rails (9). The wall panel unit achieves vertical bearing by engaging with the upper rail (8) and the lower guide rail (9) through the upper and lower crossbeam grooves (17). When adjacent wall panel units are connected side by side through the I-beam aluminum (28) connectors, their corresponding quick-connect electromechanical connectors (23) can be plugged into each other to achieve the connection of electromechanical circuits.
2. The modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage according to claim 1, characterized in that: The upper track (8) and lower track (15) are detachably connected to the building structure through a combination of spring locking points (3), screws (4) and customized magnetic strips (32); the spring locking points (3) are embedded or fixed in the building structure, the customized magnetic strips (32) are provided with reserved holes (30), and the screws (4) pass through the track and the reserved holes (30) in sequence and are screwed into the spring locking points (3).
3. The modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage according to claim 1, characterized in that: Finished elastic rubber sheets (6) are provided between the upper track (8) and the concrete top slab (1) and between the lower track (15) and the ground veneer panel (13).
4. The modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage according to claim 1, characterized in that: The cavity of the middle crossbeam (20) also integrates a gateway system, which is electrically connected to the electromechanical pipeline (22).
5. A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, as described in claim 4, characterized in that: One side of the I-beam aluminum (28) connector is fixed to the vertical keel (25) of a wall panel unit by screws, and the other side is provided with a buckle for engaging with the vertical keel (25) of the adjacent wall panel unit.
6. The modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage according to claim 1, characterized in that: It also includes edge trim profiles (24), which are provided with long rails (27) for snap-fit connection with the keel grooves (26) on the side of the vertical keel (25) of the wall panel unit at the end.
7. A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, as described in claim 6, is characterized in that: The wall panel unit completes the assembly of the aluminum alloy frame keel, the installation of electromechanical pipelines (22) and quick-connect electromechanical connectors (23) in the factory, and the embedding of modular polystyrene particle boards (31) to form a standardized prefabricated module integrating electromechanical functions.
8. A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, as described in claim 7, characterized in that: The guide rail (9) is filled with a finished elastic sealing strip (10).
9. A modular wall panel with multi-disciplinary integrated variable space that can be disassembled without damage, as described in claim 8, characterized in that: The quick-connect electromechanical connector (23) is a blind-fit connector.