ALC light partition board clamping structure
By adopting a clamping structure on the ALC lightweight partition wall panel and using the coordination of insertion plates, pulling plates, pulling plates and trapezoidal plates, the problem that wall panels in the prior art are not easy to maintain the same plane and connection are prone to gaps, achieving the flatness and tightness of wall panel connections, and improving installation efficiency.
Patent Information
- Application Number
- CN202421787448.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The connection method of existing ALC lightweight partition panels is fixed with bolts, which makes it difficult for the wall panels to remain on the same plane, and gaps are prone to appear at the connection, which affects the installation efficiency and subsequent splicing.
The clamping structure is adopted, through the cooperation of the insertion plate, pulling plate, pulling plate and trapezoidal plate, the side walls of the two wall panels are closely connected, and the design of limiting holes, pulling rods and movable grooves is used to achieve flat connection and close connection of the wall panels.
The flatness and tightness of the wall panel connections are achieved, the gaps are avoided, the need for later polishing is reduced, the installation efficiency is improved, and the subsequent splicing of wall panels is facilitated.
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Figure CN223017923U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of the connection of ALC lightweight partition boards, and particularly relates to a clamping structure for ALC lightweight partition boards. Background Art
[0002] The ALC lightweight partition board is a high-performance autoclaved aerated concrete board, which has remarkable characteristics such as light weight, high strength, sound insulation, heat preservation, heat insulation, and fire resistance. Its main components include cement, silica sand, gypsum, foaming agent, lightweight aggregate, etc. These raw materials are mixed, cast into shape, and then cured under high temperature and high pressure steam.
[0003] Most of the existing ALC lightweight partition boards are processed into strip boards. When installing, the strip partitions are butted and fixed with bolts.
[0004] The above-mentioned existing technical solutions have the following defects: Fixing with bolts not only easily causes the two wallboards not to be in the same plane, but also there are easily gaps at their joints. If the wallboards are not in the same plane, post-polishing is required, which not only consumes manpower but also affects the installation efficiency, and the existence of gaps at the joints will affect subsequent installation. Utility Model Content
[0005] In order to improve the flatness and tightness of the joints of ALC lightweight partition boards, this application provides a clamping structure for ALC lightweight partition boards.
[0006] The above technical purpose of this application is achieved through the following technical solutions:
[0007] A clamping structure for ALC lightweight partition boards, the clamping structure is connected to the wallboard, the wallboard is fixedly connected with an insertion plate, a limiting hole is opened on the insertion plate, a first movable groove is opened in the wallboard, a second movable groove is opened in the wallboard, and the second movable groove communicates with the first movable groove. A traction plate is arranged in the first movable groove, a pulling plate is welded on the traction plate, the pulling plate slides and one end passes through the second movable groove, a pull rod that can be detachably connected to the limiting hole is welded on the pulling plate, a third movable groove is opened on the wallboard, and the third movable groove communicates with the first movable groove. A trapezoidal plate that can push the traction plate to move is arranged in the third movable groove.
[0008] By adopting the above technical solution, after placing two wall panels side by side, the two limiting holes of one wall panel are sleeved on the pull rod of the other wall panel, and the trapezoidal plate is pushed to move into the third movable groove. The pull rod is embedded and clamped by the pull plate of the other panel in the third movable groove, enabling the opposite side walls of the two wall panels to correspond to each other and be closely butted, ensuring that the connection between the two wall panels at the joint is flat, making the surfaces of the two adjacent wall panels lie in the same plane, and it is not easy to appear gaps at their joints. In the later stage, there is no need to polish the surfaces of the wall panels, reducing the waste of manpower and material resources, and improving the installation efficiency of the wall panels, facilitating the splicing of other wall panels in the follow-up.
[0009] Optionally, one side of the trapezoidal plate is processed to form an inclined surface, and one end of the traction plate is processed to form an inclined surface that can fit with the inclined surface of the trapezoidal plate.
[0010] By adopting the above technical solution, when the trapezoidal plate is pushed, the contact surfaces of the trapezoidal plate and the traction plate are in contact and slide, enabling the traction plate to be pushed smoothly and ensuring the tight butt joint at the connection of the two wall panels.
[0011] Optionally, a chute is provided in the third movable groove, a slider is fixedly connected to the trapezoidal plate, and the slider slides in the chute. After the slider slides to one end of the chute, the trapezoidal plate is completely located in the third movable groove, and the pull plate is completely retracted into the second movable groove.
[0012] By adopting the above technical solution, when the limiting slider slides to the end of the chute inside the wall panel, the trapezoidal block is completely located in the third movable groove, and the pull plate is completely retracted into the second movable groove, which can ensure the tight connection of the two wall panels, while restricting the pulling force of the pull plate on the other wall panel, ensuring the stability of the clamping structure, and facilitating the replacement and repeated use of the wall panels.
[0013] Optionally, a linkage groove is provided on the trapezoidal plate, an elastic member is arranged in the linkage groove, one end of the elastic member is fixedly connected with a trapezoidal rod, and a slot for the trapezoidal rod to insert is provided on the inner wall of the third movable groove.
[0014] By adopting the above technical solution, after the trapezoidal plate completely enters the third movable groove, the elastic force of the elastic member pushes the trapezoidal rod to insert into the slot, which can limit the trapezoidal plate and the traction plate and improve the stability of the clamping between the two wall panels.
[0015] Optionally, one section of the trapezoidal rod is processed to form an inclined surface.
[0016] By adopting the above technical solution, when the trapezoidal plate is pushed into the third movable groove, the inclined surface of the trapezoidal rod contacts and slides with the outer wall of the wall panel, causing the trapezoidal rod to contract into the linkage groove, and at the same time the elastic member is compressed, which can improve the installation efficiency of the wall panel and facilitate the splicing of the wall panel.
[0017] Optionally, the elastic member is a spring.
[0018] By adopting the above technical solution, the spring can provide a large elastic deformation, improve the stability of the trapezoidal rod limiting the trapezoidal plate, and at the same time improve the stability of the clamping connection between the two wall panels.
[0019] Optionally, a movable opening is formed in the trapezoidal plate, the movable opening communicates with the linkage groove, a traction rod is welded on the trapezoidal rod, and the traction rod slides in the movable opening.
[0020] By adopting the above technical solution, the limit of the trapezoidal rod to the trapezoidal block can be released quickly, and then the trapezoidal plate is pulled out of the third movable groove, so that the trapezoidal plate no longer limits the traction plate, and the connection between the two wall panels can be released quickly, ensuring the functionality of the clamping structure, which is beneficial to the replacement and reuse of the wall panels.
[0021] Optionally, a sealing gasket is fixedly connected to the wall panel.
[0022] By adopting the above technical solution, the sealing performance and connection tightness of the contact surfaces of the two wall panels can be enhanced.
[0023] In summary, the present application has the following technical effects:
[0024] 1. By providing the insertion plate, the traction plate, the pulling plate and the trapezoidal plate, the opposite side walls of the two wall panels can be made to correspond to each other and be tightly butted, ensuring that the connection between the two wall panels at the joint is flat, making the plate surfaces of the two adjacent wall panels in the same plane, and there are no gaps at their joints, so there is no need to polish the plate surfaces of the wall panels later, reducing the waste of manpower and material resources, and improving the installation efficiency of the wall panels, which is convenient for the splicing of other wall panels later;
[0025] 2. By providing the linkage groove, the elastic member and the trapezoidal rod, the installation efficiency of the wall panels can be improved, which is convenient for the splicing of the wall panels. When the trapezoidal rod is inserted into the linkage groove, it can limit the trapezoidal plate and the traction plate, improve the stability of the clamping connection between the two wall panels, and at the same time ensure that the connection between the two wall panels is flat and tightly butted;
[0026] 3. By providing the sealing gasket, the sealing performance and connection tightness of the contact surfaces of the two wall panels can be enhanced. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is the external shape structure diagram of the present application;
[0028] Figure 2 is the sectional structure diagram of the present application;
[0029] Figure 3 is the present application Figure 2 the enlarged view at A in;
[0030] Figure 4It is a prominent structural diagram of the trapezoidal plate, traction rod and movable opening of the present application.
[0031] Explanation of the reference numerals in the accompanying drawings: 1. wall panel; 2. plug-in plate; 3. limiting hole; 4. first movable groove; 5. traction plate; 6. pull plate; 7. pull rod; 8. second movable groove; 9. third movable groove; 10. trapezoidal plate; 11. slide groove; 12. limiting slider; 13. sealing gasket; 14. linkage groove; 15. elastic member; 16. trapezoidal rod; 17. slot; 18. traction rod; 19. movable opening. DETAILED DESCRIPTION
[0032] The present application is further described in detail below in conjunction with the accompanying drawings.
[0033] The present application embodiment discloses an ALC lightweight partition board clamping structure, referring to Figure 1 The clamping structure is connected to the wallboard 1, and the wallboard 1 is in a rectangular shape. Two plug-in plates 2 are welded to the outer wall of one side in the length direction of the wallboard 1. The two plug-in plates 2 are made of strip plates and are spaced apart along the length direction of the wallboard 1. A limiting hole 3 is opened at the center of the board surface of the plug-in plate 2. The opening direction of the limiting hole 3 is perpendicular to the board surface of the plug-in plate 2 and passes through the plug-in plate 2.
[0034] Reference Figure 2 A first movable groove 4 is provided inside the wall panel 1 away from the plug plate 2, and the length direction of the first movable groove 4 is the same as the length direction of the wall panel 1. Two second movable grooves 8 are provided at both ends of the length direction of the first movable groove 4, and the length direction of the second movable groove 8 is perpendicular to the length direction of the first movable groove 4. One end of the second movable groove 8 is connected to the first movable groove 4, and the other end is connected to the side wall of the wall panel 1 close to the first movable groove 4. A traction plate 5 is slidably provided in the first movable groove 4, and a pull plate 6 is welded on both ends of the length direction of the traction plate 5 away from the plug plate 2. The pull plate 6 is made of a strip plate, and the length direction of the two pull plates 6 is perpendicular to the length direction of the traction plate 5. The end of the pull plate 6 away from the traction plate 5 passes through the second movable groove 8 and extends to the outside of the wall panel 1. A pull rod 7 that can be engaged with the limiting hole 3 is welded on the plate surface of the pull plate 6, and the pull rod 7 can enter the second movable groove 8.
[0035] Reference Figure 2 and Figure 3A third movable groove 9 is provided on the side wall at one end of the wall panel 1 in the length direction, and one end of the third movable groove 9 is connected to one end of the first movable groove 4. A trapezoidal plate 10 is slidably connected inside the third movable groove 9. The side of the trapezoidal plate 10 close to the first movable groove 4 is processed to form an inclined surface inclined to the plug plate 2. The traction plate 5 is processed close to the third movable groove 9 to form an inclined surface that can fit with the inclined surface of the trapezoidal plate 10. The inclined surface of the trapezoidal plate 10 slides with the inclined surface of the traction plate 5 to push the traction plate 5 to move toward the plug plate 2. A sliding groove 11 is provided in the inner cavity of the third movable groove 9 close to the plug plate 2. A limiting slider 12 is slidably connected inside the sliding groove 11. One side of the limiting slider 12 is welded to the side of the trapezoidal plate 10 close to the sliding groove 11. When the limiting slider 12 slides to the end of the sliding groove 11 located inside the wall panel 1, the trapezoidal plate 10 is completely located in the third movable groove 9, and the pull plate 6 is completely recovered into the second movable groove 8.
[0036] When installing the ALC lightweight partition board with a snap-on structure, place the two wall panels 1 side by side, put the two limit holes 3 of one of the wall panels 1 on the pull rod 7 of the other wall panel 1, push the trapezoidal plate 10 to move into the third movable groove 9, and the inclined surface of the trapezoidal plate 10 fits and slides with the inclined surface of the traction plate 5. The trapezoidal plate 10 will drive the traction plate 5 to move into the first movable groove 4, and at the same time, the traction plate 5 drives the pulling plate 6 to move into the second movable groove 8. When the trapezoidal plate 10 is completely inserted into the third movable groove 9, the pull rod 7 is embedded in and clamped in the second movable groove 8 by the plug plate 2 of another plate, so that the opposite side walls of the two wall panels 1 can correspond to each other and be tightly connected, ensuring that the connection between the two wall panels 1 is flat, so that the board surfaces of the two adjacent wall panels 1 are in the same plane, and there is no need to grind the board surfaces of the wall panels 1 in the later stage, which reduces the waste of manpower and material resources, and can improve the installation efficiency of the wall panels 1, which is convenient for the subsequent splicing of other wall panels 1.
[0037] Reference Figure 1 The outer wall of the wall panel 1 on the side where the second movable groove 8 is provided is bonded with a sealing gasket 13. When the ALC lightweight partition board is installed, the sealing gasket 13 can enhance the sealing and connection tightness of the contact surfaces of the two wall panels 1.
[0038] Reference Figure 3 A linkage groove 14 is provided on the end face of the trapezoidal plate 10 away from the pulling plate 5, and an elastic member 15 is arranged inside the linkage groove 14. In this embodiment, the elastic member 15 is a spring, and a trapezoidal rod 16 is welded to one end of the elastic member 15, and the other end of the elastic member 15 is welded to the inner wall of the linkage groove 14 away from the trapezoidal rod 16. The trapezoidal rod 16 is processed on one side of the wallboard 1 to form an inclined surface inclined to the pulling plate 6, and one end of the trapezoidal rod 16 slides inside the linkage groove 14, and the other end passes through the linkage groove 14 and extends to the outside of the linkage groove 14. A slot 17 for inserting the trapezoidal rod 16 is provided on the inner wall of the third movable groove 9 away from the limiting slider 12.
[0039] When installing the ALC lightweight partition board, push the trapezoidal plate 10 into the third movable groove 9. At this time, the inclined surface of the trapezoidal rod 16 contacts the outer wall of the wallboard 1, and the elastic member 15 is compressed. After the trapezoidal plate 10 completely enters the third movable groove 9, the elastic force of the elastic member 15 pushes the trapezoidal rod 16 into the insertion slot 17, which can limit the trapezoidal plate 10 and the traction plate 5, and improve the stability of the clamping connection between the two wallboards 1.
[0040] Refer to Figure 4 , an activity port 19 is provided on one side of the trapezoidal plate 10 away from the first movable groove 4, and the activity port 19 communicates with the inside and outside of the linkage groove 14. A traction rod 18 is welded on one side of the trapezoidal rod 16 located in the linkage groove 14 and away from the trapezoidal plate 10. One end of the traction rod 18 is welded to the trapezoidal rod 16, and the other end of the traction rod 18 slides in the activity port 19.
[0041] When removing the ALC lightweight partition board of this clamping structure, press the traction rod 18 from the outside of the trapezoidal block 10 and push the traction rod 18 in the direction away from the insertion slot 17. The movement of the traction rod 18 can drive the trapezoidal rod 16 to move outside the insertion slot 17, releasing the limit of the trapezoidal rod 16 on the trapezoidal block. At this time, the trapezoidal plate 10 can be pulled out of the third movable groove 9, so that the trapezoidal plate 10 no longer limits the traction plate 5. Pull the wallboard 1 to make the pull plate 6 extend out of the second movable groove 8, and remove the insertion plate 2 of the other wallboard 1 from the pull rod 7, so that the connection between the two wallboards 1 can be released quickly, ensuring the functionality of the clamping structure, and facilitating the replacement and reuse of the wallboard 1.
[0042] This specific embodiment is only an explanation of the present application, and it does not limit the present application. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as they are within the scope of the claims of the present application, they are protected by the patent law.
Claims
1. An ALC lightweight partition board clamping structure, characterized by: The clamping structure is connected to the wall panel (1), the wall panel (1) is fixedly connected with a plug plate (2), a limiting hole (3) is provided on the plug plate (2), a first movable groove (4) is provided in the wall panel (1), a second movable groove (8) is provided in the wall panel (1), and the second movable groove (8) is communicated with the first movable groove (4), a traction plate (5) is provided in the first movable groove (4), a pull plate (6) is welded on the traction plate (5), the pull plate (6) slides and one end of the pull plate (6) passes through the second movable groove (8), a pull rod (7) which can be detachably connected to the limiting hole (3) is welded on the pull plate (6), a third movable groove (9) is provided on the wall panel (1), and the third movable groove (9) is communicated with the first movable groove (4), and a trapezoidal plate (10) which can push the traction plate (5) to move is provided in the third movable groove (9).
2. The ALC lightweight partition board clamping structure according to claim 1 is characterized in that: One side of the trapezoidal plate (10) is processed to form an inclined surface, and one end of the traction plate (5) is processed to form an inclined surface that can fit with the inclined surface of the trapezoidal plate (10).
3. The ALC lightweight partition board clamping structure according to claim 2 is characterized in that: A slide groove (11) is provided in the third movable groove (9), and a slider is fixedly connected to the trapezoidal plate (10). The slider slides in the slide groove (11), and after the slider slides to one end of the slide groove (11), the trapezoidal plate is completely located in the third movable groove (9), and the pull plate (6) is completely recovered into the second movable groove (8).
4. The ALC lightweight partition board clamping structure according to claim 3 is characterized by: The trapezoidal plate (10) is provided with a linkage groove (14), an elastic member (15) is arranged in the linkage groove (14), one end of the elastic member (15) is fixedly connected to a trapezoidal rod (16), and the inner wall of the third movable groove (9) is provided with a slot (17) for inserting the trapezoidal rod (16).
5. The ALC lightweight partition board clamping structure according to claim 4 is characterized in that: A section of the trapezoidal rod (16) is processed to form an inclined surface.
6. The ALC lightweight partition board clamping structure according to claim 4 is characterized in that: The elastic member (15) is a spring.
7. The ALC lightweight partition board clamping structure according to claim 4 is characterized by: The trapezoidal plate (10) is provided with a movable opening (19), the movable opening (19) is connected to the linkage groove (14), a traction rod (18) is welded to the trapezoidal rod (16), and the traction rod (18) slides in the movable opening (19).
8. The ALC lightweight partition board clamping structure according to claim 1 is characterized by: A sealing gasket (13) is fixedly connected to the wall panel (1).