Hanging buckle type wallboard system
Through the buckle structure of the buckle-type wall panel system, the complex problem of existing wall panel installation is solved, efficient construction and detachable wall panel installation are achieved, construction efficiency is improved and resource recycling is promoted.
Patent Information
- Application Number
- CN202422638679.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-31
AI Technical Summary
The existing wall panels have complex installation structures, difficult construction, low installation efficiency and non-detachable results, resulting in low construction efficiency and waste of resources.
It adopts a buckle-type structure, which is fixed to the blank wall through upper and lower hanging strips and corner codes. The wall panel body is firmly buckled to the hanger by using the upper and lower buckle locks. The module unit is prefabricated in the factory and is quickly installed on site.
It improves construction efficiency, realizes rapid installation of wall panels and subsequent removable recycling, and is green and environmentally friendly.
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Figure CN223281611U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building construction, in particular to a hanging buckle type wall panel system. Background Art
[0002] Wall panels, also known as wall skirts or wainscots, are a new type of decorative wall material that has been developed in recent years. They are widely used in architectural decoration for their ease of installation, energy-saving and environmentally friendly features, and elegant aesthetics. The function of a wall panel is determined by its modules. Using different modules, you can create a wall surface with a specific function, such as insulation, soundproofing, ventilation, and lighting. Wall panels can also serve as housings for various electrical appliances, allowing heat to be discharged through dedicated ducts behind the wall panels, preventing it from entering the interior, reducing the load on air conditioning, and saving energy and space.
[0003] In the prior art, the installation structure of wall panels is complicated. For example, Chinese patent No. CN210530036U discloses a wall panel installation structure for assembled buildings, including a wall panel body, a frame provided on the wall panel body, a plug-in plate fixedly connected to one side of the frame, a slot provided on the side of the frame away from the plug-in plate, and sliding plates connected to both sides of the frame perpendicular to the plug-in plate. The wall panels are fixed in a splicing manner, and the frame is installed on each wall panel to effectively protect the wall panels. The wall panels are connected in series with the fixed plates and the fixed cross bars to make the wall surface more stable. The guide plates and guide blocks are provided, and the movable blocks of the limit slots are manually pushed out to facilitate the later disassembly of each spliced wall panel. The sliding connection between the frame and the sliding plate is beneficial to the early installation and the later disassembly. When the wall panels are spliced, the gaps can be filled with rubber strips to improve the overall sealing, organize the structure, and are simple and convenient to assemble and disassemble. The wall panels are firmly fixed and have good sealing and high practicality. However, the existing wall panel installation still has disadvantages in actual construction, such as complex installation structure, difficult construction, low installation efficiency, and non-removable, so it needs to be improved. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the utility model proposes a hook-type wall panel system, which adopts a hook-type structure, is easy to construct, has high installation efficiency, and is detachable.
[0005] To implement the above technical solution, the utility model provides a hanging wall panel system, comprising: a hanger installed on a rough wall, a wall panel installed on the hanger, the hanger comprising an upper hanging bar and a lower hanging bar spaced side by side, the upper hanging bar and the lower hanging bar are both fixed to the rough wall by angle codes, the wall panel comprises a wall panel body spliced together by a plurality of module units, an upper buckle lock and a lower buckle lock are installed on the end edges of each wall panel body, the upper buckle lock and the lower buckle lock are fixed to the end edges of the wall panel body by fixing aluminum bars, the upper end of the back of the wall panel body is buckled on the upper hanging bar by the upper buckle lock, and the lower end of the back of the wall panel body is buckled on the lower hanging bar by the lower buckle lock.
[0006] In the above technical solution, during actual construction, it is only necessary to fix the upper hanging bar and the lower hanging bar on the rough wall through the angle code, and then buckle the wall panel body one by one on the upper hanging bar and the lower hanging bar respectively through the upper buckle lock and the lower buckle lock. The wall panel body can be firmly buckled on the hanging rack through the upper buckle lock and the lower buckle lock, thereby greatly improving the installation efficiency. In addition, in subsequent maintenance, the upper buckle lock and the lower buckle lock can be used to disassemble the entire wall panel, thereby realizing the recycling of the wall panel, which is green and environmentally friendly.
[0007] Preferably, the upper buckle lock includes a base plate, which is fixed to a fixed aluminum bar by screws, a trigger is installed on the base plate, a trigger lever is installed on the trigger, a trigger rod is installed on one side of the trigger lever, the trigger rod is hinged to the base plate by a first fixing screw, a trigger gasket is installed at the bottom of the trigger rod, the trigger gasket corresponds to the trigger lever, a bearing is installed on the top of the trigger rod, a lock hook seat is hinged to the upper end of the base plate by a second fixing screw, the bottom of the lock hook seat fits with the bearing at the top of the trigger rod, the movable lock hook is hinged to the lock hook seat by a third fixing screw, and the base plate is located at the first fixing screw. A spring limit screw is installed at the lower right side of the screw, and a first spring limit column is installed on the trigger rod at the lower left side of the first fixing screw. The first spring is sleeved on the first fixing screw, and the left and right ends of the first spring extending outward contact the first spring limit column and the spring limit screw respectively. The second spring is sleeved on the second fixing screw, and the left and right ends of the second spring extending outward contact the first fixing screw and the third fixing screw respectively. The third spring is sleeved on the third fixing screw, and the left and right ends of the third spring extending outward contact the third spring limit column set on the lock hook seat and the third spring limit column set on the movable lock hook respectively. During actual installation, the buckle lock has two working states, namely locked state and unlocked state. In the locked state: at this time, the lock hook seat is perpendicular to the right edge of the base plate, the trigger rod is parallel to the right edge of the base plate, the top bearing just presses the hook at the bottom of the lock hook seat, and the trigger is in the attracted state. Unlocked state: At this time, the trigger is triggered and released, the trigger lever presses the trigger gasket to the right, driving the trigger lever to rotate counterclockwise, the bearing at the top of the trigger lever disengages from the hook at the bottom of the lock hook seat, and the lock hook seat tilts upward under the action of the spring.
[0008] Preferably, a lock hook seat limiting screw is provided on the left side of the lock hook seat on the bottom plate, and the lock hook seat limiting screw can limit the maximum height of the lock hook seat tilting upward under the action of the spring.
[0009] Preferably, the lower buckle lock includes a buckle lock bar, which is fixed to the fixed aluminum bar by an upper fixing screw. A base is provided at the bottom of the buckle lock bar. The hook is hinged in the base by a lower fixing screw. The locking hook is hinged to the hook by a locking hook fixing screw. The hook is provided with a third spring limit screw and a fourth spring limit screw. The base is provided with a second spring limit screw. The hook spring is sleeved on the lower fixing screw, and the left and right ends of the hook spring extending outward contact the third spring limit screw and the second spring limit screw respectively. The locking hook spring is sleeved on the locking hook fixing screw, and the left and right ends of the locking hook spring extending outward contact the second spring limit screw and the fourth spring limit screw respectively. During actual installation, before the module is installed, due to the action of the hook spring, the hook is pressed into the position of the lower limit slot block, and the locking hook is opened, forming a relaxed state. When the module is properly installed, the hook is pressed into the upper limit slot block, and the locking hook is pushed by the upper limit slot block and adheres to the edge of the hook slot, forming a locked state. The installation process of the lower buckle lock is as follows: press the wall panel hook groove down onto the hanging bar, and then push it toward the hanging bar. When the wall panel is at right angles to the hanging bar, the locking hook is close to the hanging bar, and the small hook protruding below clamps the hanging bar and tightens it.
[0010] Preferably, an upper limit slot block and a lower limit slot block are respectively provided on the upper and lower ends of the hook on the base, which are used to limit the maximum distance when the hook moves up and down.
[0011] Preferably, the modular unit includes a modular outer frame, the end edges of which are provided with fixing holes, and adjacent modular outer frames are fixedly connected by screws, and the decorative panel covers the surface of the modular outer frame. The modular unit can be modularly assembled in the factory and directly assembled into wall panels during on-site construction.
[0012] The utility model provides a hook-type wall panel system with the following advantages: the hook-type wall panel system adopts a hook-type structure, is easy to construct, has high installation efficiency, and is detachable. During actual construction, it is only necessary to fix the upper and lower hanging bars to the rough wall through the corner brackets, and then snap the wall panels onto the upper and lower hanging bars one by one through the upper and lower snap locks. The upper and lower snap locks can securely snap the wall panels onto the hanging rack, thereby greatly improving installation efficiency. In addition, the upper and lower snap locks can be used to disassemble the entire wall panel during subsequent maintenance, thereby achieving recycling and environmental protection. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a schematic diagram of the assembly structure of the utility model.
[0014] Figure 2 This is a schematic diagram of the assembly structure of the rough wall and the hanging rack in the utility model.
[0015] Figure 3 This is a schematic diagram of the assembly structure between the wall panel, upper buckle and lower buckle in the utility model.
[0016] Figure 4 This is an exploded schematic diagram of the assembly structure of the wall panel, upper buckle lock, lower buckle lock and fixed aluminum strip in the utility model.
[0017] Figure 5 This is a schematic diagram of the assembly structure of the module unit in the present utility model.
[0018] Figure 6 It is an exploded schematic diagram of the assembly structure of the module unit in the present invention.
[0019] Figure 7 This is a schematic diagram of the assembly structure of the lower buckle lock in the utility model.
[0020] Figure 8 This is an exploded schematic diagram of the assembly structure of the lower buckle lock in the utility model.
[0021] Figure 9 This is a schematic diagram of the assembly process of the lower buckle lock and the lower hanging bar in the utility model.
[0022] Figure 10 This is a schematic diagram of the assembly structure of the upper buckle lock in the locked state in the utility model.
[0023] Figure 11 This is a schematic diagram of the assembly structure of the upper buckle lock in the unlocked state in the utility model.
[0024] Figure 12 It is an exploded schematic diagram of the assembly structure of the upper buckle lock in the utility model.
[0025] Figure 13 This is a schematic diagram of the assembly process of the upper buckle lock and the upper hanging strip in the utility model.
[0026] In the figure: 1. rough wall; 2. hanging rack; 21. upper hanging bar; 22. lower hanging bar; 23. corner bracket; 3. wall panel; 31. module unit; 311. decorative panel; 312. module frame; 313. fixing hole; 32. upper buckle lock; 321. bottom plate; 322. trigger; 323. trigger gasket; 324. trigger lever; 325. trigger lever; 326. bearing; 327. lock hook seat; 328. movable lock hook; 329. lock hook seat limiting screw; 3210. first spring; 3211. first spring limiting column; 3212. spring limiting screw; 3213. first fixing screw; 3214. second fixing screw; 3215. Three fixing screws; 3216, second spring limiting column; 3217, third spring limiting column; 3218, second spring; 3219, third spring; 33, lower buckle lock; 331, locking hook; 332, locking hook spring; 333, hook slot; 334, hook; 335, locking hook fixing screw; 336, lower limiting slot block; 337, upper limiting slot block; 338, lower fixing screw; 339, hook spring; 3310, base; 3311, buckle lock strip; 3312, upper fixing screw; 3313, second spring limiting screw; 3314, third spring limiting screw; 3315, fourth spring limiting screw; 34, fixing aluminum strip. DETAILED DESCRIPTION
[0027] The following is a clear and complete description of the technical solutions in the embodiments of the present invention, in conjunction with the accompanying drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. All other embodiments obtained by ordinary persons in this field without creative work are within the scope of protection of the present invention.
[0028] Embodiment: A hook-and-loop wall panel system.
[0029] Reference Figures 1 to 13 As shown, a hanging wall panel system includes: a hanger 2 installed on a rough wall 1, a wall panel 3 is installed on the hanger 2, the hanger 2 includes an upper hanging bar 21 and a lower hanging bar 22 arranged side by side and spaced apart, the upper hanging bar 21 and the lower hanging bar 22 are fixed to the rough wall 1 through angle codes 23, the wall panel 3 includes a wall panel body spliced together by multiple module units 31, and an upper buckle 32 and a lower buckle 33 are installed on the end edge of each wall panel body, the upper buckle 32 and the lower buckle 33 are fixed to the end edge of the wall panel body through a fixed aluminum bar 34, the upper end of the back of the wall panel body is buckled on the upper hanging bar 21 through the upper buckle 32, and the lower end of the back of the wall panel body is buckled on the lower hanging bar 22 through the lower buckle 33.
[0030] Reference Figure 5 and Figure 6As shown, the module unit 31 includes a module outer frame 312, with fixing holes 313 provided on the end edges of the module outer frame 312. Adjacent module outer frames 312 are fixedly connected by screws, and a decorative panel 311 covers the surface of the module outer frame 312. The module unit 31 can be modularly assembled in the factory and directly assembled into wall panels during on-site construction.
[0031] Reference Figures 10 to 13As shown, the upper buckle lock 32 includes a base plate 321, which is fixed to the fixed aluminum bar 34 by screws. A trigger 322 is installed on the base plate 321, and a trigger lever 324 is installed on the trigger 322. A trigger rod 325 is installed on one side of the trigger lever 324. The trigger rod 325 is hinged to the base plate 321 by a first fixing screw 3213. A trigger gasket 323 is installed at the bottom of the trigger rod 325. The trigger gasket 323 and the trigger lever are in contact with each other. The top of the trigger rod 325 is provided with a bearing 326, and the lock hook seat 327 is hinged to the upper end of the bottom plate 321 by a second fixing screw 3214. The bottom of the lock hook seat 327 fits with the bearing 326 at the top of the trigger rod 325. The movable lock hook 328 is hinged to the lock hook seat 327 by a third fixing screw 3215. A spring limit screw 3212 is installed on the bottom plate 321 at the right bottom of the first fixing screw 3213. A first spring limiting column 3211 is installed at the lower left of the fixing screw 3213. The first spring 3210 is sleeved on the first fixing screw 3213, and the left and right ends of the first spring 3210 extending outwards are in contact with the first spring limiting column 3211 and the spring limiting screw 3212 respectively. The second spring 3218 is sleeved on the second fixing screw 3214, and the left and right ends of the second spring 3218 extending outwards are in contact with the first fixing screw 3213 and the third fixing screw 3215 respectively. A spring 3219 is sleeved onto the third fixing screw 3215, and the outwardly extending left and right edges of the third spring 3219 contact the third spring limiting posts 3217 provided on the hook seat 327 and the third spring limiting posts 3217 provided on the movable hook 328, respectively. A hook seat limiting screw 329 is provided on the base plate 321, located to the left of the hook seat 327. This setting of the hook seat limiting screw 329 limits the maximum height to which the hook seat 327 can tilt upward under the action of the spring. During actual installation, the buckle lock 32 has two operating states: a locked state and an unlocked state. In the locked state, the hook seat 327 is perpendicular to the right edge of the base plate 321, the trigger rod 325 is parallel to the right edge of the base plate 321, the top bearing 326 presses against the hook at the bottom of the hook seat 327, and the trigger 322 is in the engaged state. Unlocked: At this point, the trigger 322 is released, and the trigger lever 324 presses the trigger gasket 323 to the right, causing the trigger lever 325 to rotate counterclockwise. The bearing 326 on the top of the trigger lever 325 disengages the hook at the bottom of the lock hook seat 327, and the lock hook seat 327 tilts upward under the action of the spring. During actual installation, when the upper buckle 32 presses against the upper hanging bar 21, the movable lock hook 328 on the lock hook seat 327 is lifted by the upper hanging bar 21. When the upper hanging bar 21 reaches the installation position, the movable lock hook 328 is reset and locked to the upper hanging bar 21 under the action of the second spring 3218 and the third spring 3219, completing the installation.During actual disassembly, when the trigger 322 is triggered, the top bearing 326 of the trigger rod 325 disengages from the lock hook seat 327, and the movable lock hook 328 is lifted up by the lock hook seat 327 to disengage from the upper hanging bar 21, and the module unit 31 can be pulled outward to disengage from the upper hanging bar 21.
[0032] Reference Figures 7 to 9 As shown, the lower buckle lock 33 includes a buckle lock strip 3311, and the buckle lock strip 3311 is fixed to the fixed aluminum strip 34 by an upper fixing screw 3312. A base 3310 is provided at the bottom of the buckle lock strip 3311, and the hook 334 is hinged in the base 3310 by a lower fixing screw 338. An upper limit slot block 337 and a lower limit slot block 336 are respectively provided at the upper and lower ends of the hook 334 on the base 3310, respectively for limiting the maximum distance when the hook 334 moves up and down, and the locking hook 331 is hinged to the hook 334 by a locking hook fixing screw 335. A third spring limiting screw 3314 and a fourth spring limiting screw 3315 are provided on 334, and a second spring limiting screw 3313 is provided on the base 3310. The hook spring 339 is sleeved on the lower fixing screw 338, and the left and right ends of the hook spring 339 extending outward are in contact with the third spring limiting screw 3314 and the second spring limiting screw 3313 respectively. The locking hook spring 332 is sleeved on the locking hook fixing screw 335, and the left and right ends of the locking hook spring 332 extending outward are in contact with the second spring limiting screw 3313 and the fourth spring limiting screw 3315 respectively. During actual installation, before the module unit 31 is installed, the hook 334 is pressed into the lower limit slot 336 due to the action of the hook spring 339, and the locking hook 331 is opened, forming a relaxed state. When the module unit 31 is properly installed, the hook 334 is pressed into the upper limit slot 337, and the locking hook 331 is pushed by the upper limit slot 337 and pressed against the edge of the hook slot 333, forming a locked state. The installation process of the lower buckle lock is as follows: the hook slot 33 is pressed downward onto the lower hanging bar 22, and then pushed toward the lower hanging bar 22. When the lower buckle lock 33 is at right angles to the lower hanging bar 22, the locking hook 331 is pressed against the lower hanging bar 22, and the small hook protruding from the bottom of the locking hook 331 clamps the lower hanging bar 22 and tightens it.
[0033] The present hook-and-hook wall panel system adopts a hook-and-hook structure, which is easy to construct, has high installation efficiency, and is detachable. During actual construction, it is only necessary to fix the upper hanging bar 21 and the lower hanging bar 22 on the rough wall 1 through the corner code 23, and then snap the wall panel body composed of multiple module units 31 onto the upper hanging bar 21 and the lower hanging bar 22 one by one through the upper buckle 32 and the lower buckle 33. The upper buckle 32 and the lower buckle 33 can securely snap the wall panel body onto the hanger 2, thereby greatly improving the installation efficiency. In addition, the upper buckle 32 and the lower buckle 33 can be used to disassemble the entire wall panel in subsequent maintenance, thereby realizing the recycling of the wall panel and being environmentally friendly.
[0034] The above description is only a preferred embodiment of the present invention, but the present invention should not be limited to the contents disclosed in the embodiment and the drawings. Therefore, any equivalent or modification completed without departing from the spirit disclosed in the present invention shall fall within the scope of protection of the present invention.
Claims
1. A hook-type wall panel system, comprising a hanger mounted on a rough wall, with a wall panel mounted on the hanger, characterized in that: The hanging rack includes an upper hanging bar and a lower hanging bar arranged side by side at intervals, and the upper hanging bar and the lower hanging bar are fixed to the rough wall by angle codes. The wall panel includes a wall panel body composed of multiple module units, and each wall panel body is equipped with an upper buckle and a lower buckle on the end edge, and the upper buckle and the lower buckle are fixed to the end edge of the wall panel body by fixing aluminum bars. The upper end of the back of the wall panel body is buckled on the upper hanging bar by the upper buckle, and the lower end of the back of the wall panel body is buckled on the lower hanging bar by the lower buckle.
2. The hook-type wall panel system according to claim 1, characterized in that: The upper buckle lock includes a base plate, which is fixed to a fixed aluminum bar by screws, a trigger is installed on the base plate, a trigger lever is installed on the trigger, a trigger rod is installed on one side of the trigger lever, the trigger rod is hinged to the base plate by a first fixing screw, a trigger gasket is installed at the bottom of the trigger rod, the trigger gasket corresponds to the trigger lever, a bearing is installed on the top of the trigger rod, a lock hook seat is hinged to the upper end of the base plate by a second fixing screw, the bottom of the lock hook seat is matched with the bearing at the top of the trigger rod, the movable lock hook is hinged to the lock hook seat by a third fixing screw, and the base plate is located on the first fixing screw A spring limiting screw is installed at the lower right corner, and a first spring limiting column is installed on the trigger rod at the lower left corner of the first fixing screw. The first spring is sleeved on the first fixing screw, and the left and right end edges of the first spring extending outward are respectively in contact with the first spring limiting column and the spring limiting screw. The second spring is sleeved on the second fixing screw, and the left and right end edges of the second spring extending outward are respectively in contact with the first fixing screw and the third fixing screw. The third spring is sleeved on the third fixing screw, and the left and right end edges of the third spring extending outward are respectively in contact with the third spring limiting column arranged on the lock hook seat and the third spring limiting column arranged on the movable lock hook.
3. The hook-type wall panel system according to claim 2, characterized in that: A locking hook seat limiting screw is provided on the bottom plate on the left side of the locking hook seat.
4. The hook-type wall panel system according to claim 1, characterized in that: The lower buckle lock includes a buckle lock bar, which is fixed to the fixed aluminum bar by an upper fixing screw. A base is provided at the bottom of the buckle lock bar, the hook is hinged in the base by a lower fixing screw, and the locking hook is hinged to the hook by a locking hook fixing screw. A third spring limit screw and a fourth spring limit screw are provided on the hook, and a second spring limit screw is provided on the base. The hook spring is sleeved on the lower fixing screw, and the left and right end edges of the hook spring extending outward are respectively in contact with the third spring limit screw and the second spring limit screw. The locking hook spring is sleeved on the locking hook fixing screw, and the left and right end edges of the locking hook spring extending outward are respectively in contact with the second spring limit screw and the fourth spring limit screw.
5. The hook-type wall panel system according to claim 4, characterized in that: An upper limit slot block and a lower limit slot block are respectively provided on the upper and lower ends of the hook on the base.
6. The hook-type wall panel system according to claim 1, characterized in that: The module unit includes a module outer frame, the end edges of the module outer frame are provided with fixing holes, adjacent module outer frames are fixedly connected by screws, and the decorative panel covers the surface of the module outer frame.
Citation Information
Patent Citations
Wallboard mounting structure for fabricated building
CN210530036U