High-strength gypsum modeling suspended ceiling mounting structure
By introducing a reinforcement stabilization mechanism into the ceiling mounting frame and utilizing the cooperation and snap-fit installation components of the internal thread column and the external thread rod, the stability problem of the ceiling mounting frame during the installation of high-strength gypsum board is solved, achieving a more stable fixing effect.
Patent Information
- Application Number
- CN202422764686.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-13
AI Technical Summary
When installing high-strength gypsum board on the existing ceiling mounting frame, the sliding sleeve slides on the keel for installation, and the elastic part drives the plug rod to engage, causing the lifting rod to be easily deformed when the gypsum board is touched, and the sliding groove and the lifting rod are unstable, affecting the installation stability.
The design of the reinforced stabilization mechanism includes a connection component, a reinforced stabilization component, a strengthened clamping mechanism and a snap-fit installation component. Through the cooperation of the internal thread column and the external threaded rod, the height of the lifting rod is adjusted and fixed, the auxiliary boom and the keel are reinforced, and the snap-fit installation component improves the clamping fixation to ensure stable installation.
The reinforcement stability of the ceiling mounting frame when installing high-strength gypsum boards is improved, the lifting rod is prevented from being deformed by force, and instability is not easily generated after installation, thereby enhancing the fixing effect.
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Figure CN223482101U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of gypsum ceiling installation frame, specifically relating to a high-strength gypsum ceiling installation structure. Background Technology
[0002] High-strength gypsum board is a material made primarily of building gypsum. It is a lightweight, high-strength, thin, easy-to-process building board with good sound insulation, heat insulation, and fire resistance properties. When high-strength gypsum board is installed on the wall or ceiling, it is usually installed using a ceiling mounting frame. The existing ceiling mounting frame is a hanger used to fix the high-strength gypsum board. The ceiling mounting frame facilitates the installation of the lifting rod, making it more stable after installation. At the same time, it strengthens the lifting installation and improves the stability of the main body of the ceiling mounting frame when installing high-strength gypsum board.
[0003] According to the energy-saving gypsum board ceiling anti-cracking installation structure disclosed in the authorized patent application CN202220494301.4, existing ceiling mounting brackets directly slide the sliding sleeve onto the keel installation position when installing high-strength gypsum board designs. The elastic element drives the plug-in rod to engage for installation. At the same time, the keel and gypsum board are connected by a separate lifting rod. Therefore, when the gypsum board is touched after installation, the lifting rod is easily stressed. The lifting rod then stresses the elastic element, which is prone to deformation, causing the plug-in rod to move. This makes the sliding groove and lifting rod unstable, thus reducing the stability of the installation and affecting the reinforcement stability of the ceiling mounting bracket when installing high-strength gypsum board designs. Therefore, this utility model proposes a high-strength gypsum board ceiling installation structure. Utility Model Content
[0004] The purpose of this utility model is to provide a high-strength gypsum board ceiling installation structure to solve the problem mentioned in the background art, where the sliding sleeve slides on the keel and is installed by the elastic action of the elastic element driving the plug rod to insert and install. At the same time, the keel and the gypsum board are installed through a separate lifting rod. Therefore, when the gypsum board is touched after installation, the lifting rod is easily stressed. The lifting rod then stresses the elastic element, which is prone to deformation, causing the plug rod to move and making the sliding groove and lifting rod unstable.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a high-strength gypsum board ceiling installation structure, comprising a ceiling mounting frame body, the ceiling mounting frame body comprising a keel and a high-strength gypsum board, main hangers welded and fixed at both ends of the upper surface of the keel, sliding seats fixedly installed at both ends of the keel, mounting base plates fixed at both ends of the upper surface of the high-strength gypsum board, clamping plates installed at both ends of the mounting base plates and the upper surface of the high-strength gypsum board, a lifting rod welded and fixed at the connection between the lower surface of the sliding seat and the upper surface of the mounting base plate, and the ceiling mounting frame body further comprising:
[0006] A reinforcement and stabilization mechanism, comprising a connecting assembly whose end of the clamping plate is located on the upper surface of a high-strength gypsum board, wherein a reinforcement and stabilization assembly is provided at the connection between the end of the connecting assembly and the side of the slide, and a reinforcing fixing assembly is provided at the end of the reinforcement and stabilization assembly.
[0007] A reinforced clamping mechanism is provided, and the reinforced clamping mechanism includes a reinforced clamping assembly disposed at the connection of two clamping plates, wherein the end of the reinforced clamping assembly is provided with a snap-fit mounting assembly.
[0008] Preferably, the connecting assembly includes a fixed extension plate welded and fixed to one end of the pressure plate on the upper surface of the high-strength gypsum board, and the lower surface of the fixed extension plate is fixedly installed to the surface of the high-strength gypsum board by bolts, and the end of the fixed extension plate is installed to the connecting ring by a connecting pin.
[0009] Preferably, the reinforcement and stabilization component includes mounting seats welded and fixed to both sides of the slide. The bottom end of the mounting seat is equipped with an external threaded rod via a connecting pin. The outer surface of the external threaded rod has an internal threaded column. The bottom end of the internal threaded column is provided with a rotating groove, and the connecting ring is rotatably connected to the inside of the rotating groove.
[0010] Preferably, the bottom end of the rotating groove and the internal threaded column are an integral structure, and the end of the internal threaded column and the fixed extension plate are rotatably connected to the rotating groove through the connecting ring.
[0011] Preferably, the reinforcing fixing assembly includes an auxiliary rod that is mounted on the top of the mounting base via a connecting pin, and a fixing ring is mounted on the end of the auxiliary rod via a connecting pin.
[0012] Preferably, the reinforcing clamping assembly includes a reinforcing connecting plate disposed at the connection point of the other end of the two clamping plates, and a fixing plate is integrally disposed at both ends of the upper surface of the reinforcing connecting plate, and the fixing plate is fixed to the surface of the clamping plate by bolts.
[0013] Preferably, the snap-fit mounting assembly includes a slot 1 formed at the other end of the clamping plate, slot 2 formed at both ends of the mounting base plate, a snap-fit plate 3 integrally formed at the end of the reinforcing connecting plate, a snap-fit plate 4 integrally formed on the lower surface of the snap-fit plate 3, and the snap-fit plate 4 engaging with the interior of the slot 2.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] By designing a reinforced and stable mechanism, when the main body of the ceiling mounting frame is installed and in use, the end of the connecting ring rotates inside the rotating groove, causing the internal threaded column to rotate in place. The internal threaded column rotates to the installation height on the outer surface of the external threaded rod. At this time, the lifting rod is adjusted to a certain height and fixed. Simultaneously, the fixing ring closes and is fixedly installed on the surface of the wall top. The sliding seat and keel are reinforced and installed through the auxiliary hanging rod, thereby strengthening the side installation of the high-strength gypsum board. When the high-strength gypsum board is subjected to contact force, it is still reinforced and stable by the internal threaded column and external threaded rod, which is not prone to instability. It is easy to strengthen the auxiliary fixing installation and improve the reinforcement stability of the main body of the ceiling mounting frame when installing high-strength gypsum board. Attached Figure Description
[0016] Figure 1 It is a structural diagram of the utility model;
[0017] Figure 2 For this utility model Figure 1 Enlarged structural diagram of section A;
[0018] Figure 3 This is a side sectional view of the present invention.
[0019] Figure 4 For this utility model Figure 3 Enlarged structural diagram of section C;
[0020] Figure 5 This is a partial structural diagram of the internally threaded column and the externally threaded rod of this utility model;
[0021] Figure 6 For this utility model Figure 1 Enlarged structural diagram of section B;
[0022] Figure 7 For this utility model Figure 6 Enlarged structural diagram of section D in the middle;
[0023] In the diagram: 100, Ceiling mounting frame main body; 101, High-strength gypsum board; 102, Mounting base plate; 103, Pressure plate; 1031, Reinforcing connecting plate; 1032, Fixing plate; 1033, Slot 1; 1034, Slot 3; 1035, Slot 4; 1036, Slot 2; 104, Lifting rod; 1041, Fixed extension plate; 1042, Internal threaded column; 1043, External threaded rod; 1044, Mounting base; 1045, Fixing ring; 1046, Auxiliary hanger; 1047, Connecting ring; 1048, Rotating groove; 105, Keel; 106, Main hanger; 107, Sliding seat. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1 to 7 This utility model provides a technical solution: a high-strength gypsum board ceiling installation structure, including a ceiling mounting frame body 100. The ceiling mounting frame body 100 includes a keel 105 and a high-strength gypsum board 101. Main hangers 106 are welded and fixed to both ends of the upper surface of the keel 105. Sliding seats 107 are fixedly installed at both ends of the keel 105. The keel 105 is fixedly installed on the wall ceiling by the main hangers 106. The sliding seats 107 are then slid onto the surface of the keel 105 to the installation position and fixed with bolts. Mounting base plates 102 are fixed to both ends of the upper surface of the high-strength gypsum board 101. Pressure plates 103 are installed at both ends of the mounting base 102 and the upper surface of the high-strength gypsum board 101. A lifting rod 104 is welded and fixed at the connection between the lower surface of the slide block 107 and the upper surface of the mounting base 102. After installation, the height of the lifting rod 104 is adjusted. After the mounting base 102 is fixed to the surface of the high-strength gypsum board 101, the lifting rod 104 is fixedly installed. The mounting base 102 is then pressed and fixed by the pressure plates 103 again, so that the lifting rod 104 is fixedly installed, thereby hoisting the high-strength gypsum board 101 to the position of use. The ceiling mounting frame body 100 is also equipped with:
[0026] The reinforcement and stabilization mechanism includes a connecting component whose end of the pressure plate 103 is located on the upper surface of the high-strength gypsum board 101. A reinforcement and stabilization component is provided at the connection between the end of the connecting component and the side of the slide block 107. A reinforcing and fixing component is provided at the end of the reinforcement and stabilization component. After the ceiling mounting frame body 100 is fixedly installed, the reinforcement and stabilization mechanism can reinforce the installation of the ceiling mounting frame body 100 on the high-strength gypsum board 101, making the installation and use more stable and improving the reinforcement stability of the ceiling mounting frame body 100 when installing the high-strength gypsum board 101.
[0027] To facilitate the installation of the internally threaded post 1042 and the reinforcement of the high-strength gypsum board 101 via the connecting assembly, in this embodiment, preferably, the connecting assembly includes a fixed extension plate 1041 welded and fixed to one end of the clamping plate 103 on the upper surface of the high-strength gypsum board 101, and the lower surface of the fixed extension plate 1041 is fixed to the surface of the high-strength gypsum board 101 by bolts. The end of the fixed extension plate 1041 is installed to the connecting ring 1047 by a connecting pin. After the fixed extension plate 1041 is fixed to the end of the clamping plate 103 on the surface of the high-strength gypsum board 101, the internally threaded post 1042 can be installed via the connecting ring 1047, which also facilitates installation, rotation, and adjustment.
[0028] To facilitate the reinforcement and installation of the high-strength gypsum board 101 between its side and the keel 105 using a reinforcement and stabilization component, and to enhance its installation and use, in this embodiment, preferably, the reinforcement and stabilization component includes mounting seats 1044 welded and fixed to both sides of the slide block 107. An external threaded rod 1043 is mounted on the bottom end of the mounting seat 1044 via a connecting pin. An internal threaded post 1042 is rotatably threaded onto the outer surface of the external threaded rod 1043. A rotating groove 1048 is provided at the bottom end of the internal threaded post 1042, and a connecting ring 1047 is rotatably connected to the interior of the rotating groove 1048. This allows the connecting ring 1047 to rotate within the rotating groove 1048, adjusting the internal threaded post 1042 on the outer surface of the external threaded rod 1043 until the external threaded rod 1043 and the internal threaded post 1042 are adjusted to the installation height, facilitating reinforcement and installation.
[0029] In order to facilitate the reinforcement of the slide block 107 to the wall and ensure stable hoisting and use by strengthening the fixing components, in this embodiment, preferably, the strengthening fixing components include an auxiliary suspension rod 1046 installed at the top of the mounting base 1044 by a connecting pin, and a fixing ring 1045 installed at the end of the auxiliary suspension rod 1046 by a connecting pin. After the fixing ring 1045 is fixed to the top of the wall, the auxiliary suspension rod 1046 is fixed, and the slide block 107 is reinforced and hoisted for installation by the auxiliary suspension rod 1046.
[0030] The reinforced clamping mechanism includes a reinforced clamping component located at the connection of the two clamping plates 103. The end of the reinforced clamping component is provided with a snap-fit installation component. After the ceiling mounting frame body 100 is installed and used, the reinforced clamping mechanism strengthens and reinforces the space between the two clamping plates 103, thereby strengthening and pressing the mounting base plate 102 and the clamping plates 103 together. This improves the stability of the bottom end of the lifting rod 104 when the ceiling mounting frame body 100 is used to install and fix the high-strength gypsum board 101.
[0031] In order to facilitate the reinforcement of the connection between the two clamping plates 103 and the mounting base plate 102 by means of a reinforced clamping assembly, in this embodiment, preferably, the reinforced clamping assembly includes a reinforced connecting plate 1031 disposed at the connection of the other ends of the two clamping plates 103. Both ends of the upper surface of the reinforced connecting plate 1031 are integrally provided with fixing plates 1032. The fixing plates 1032 are fixed to the surfaces of the clamping plates 103 by bolts. The reinforced connecting plate 1031 can be installed at the connection of the ends of the two clamping plates 103, and the fixing plates 1032 are fixed to the ends of the clamping plates 103 by bolts again. This facilitates the fixed installation of the reinforced connecting plate 1031 to strengthen the fixation between the two clamping plates 103 and reinforce the installation and use.
[0032] To facilitate the snap-fit installation and reinforcement of the reinforcing connecting plate 1031 using the snap-fit installation assembly, in this embodiment, preferably, the snap-fit installation assembly includes a slot 1033 at the other end of the clamping plate 103, which facilitates the snap-fit installation of the clamping plate 1034, thereby enabling the installation and use of the two clamping plates 103. Both ends of the mounting base plate 102 are provided with slots 1036. The end of the reinforcing connecting plate 1031 is integrally provided with the clamping plate 1034, and the lower surface of the clamping plate 1034 is integrally provided with the clamping plate 1035. The clamping plate 1035 is snapped into the interior of the slot 1036. The clamping plate 1035 is snapped into the interior of the slot 1036 to reinforce the bottom end of the clamping plate 103 with the mounting base plate 102 and the reinforcing connecting plate 1031, thereby facilitating the reinforced clamping and use.
[0033] The working principle and usage process of this utility model: When the main body 100 of the ceiling mounting frame is installed and used, the height is adjusted by the lifting rod 104. The internally threaded column 1042 is held by hand, causing the end of the connecting ring 1047 to rotate inside the rotating groove 1048, thus rotating the internally threaded column 1042 in its original position. During rotation, the internally threaded column 1042 rotates to the outer surface of the externally threaded rod 1043 to adjust to the installation height. At this time, the lifting rod 104 is raised and lowered to a certain height and fixed. After the keel 105 is fixed to the wall and ceiling via the main hanging rod 106, the fixing... The fixed ring 1045 is closed and fixedly installed on the surface of the wall top. The slide 107 and the keel 105 are reinforced and installed by the auxiliary hanger 1046, so that the high-strength gypsum board 101 is easy to strengthen and fix during installation and use. This strengthens the side installation of the high-strength gypsum board 101. When the ceiling mounting frame body 100 is installed, the high-strength gypsum board 101 is touched and subjected to force. It is still reinforced and stably installed by the internal thread column 1042 and the external thread rod 1043, which is not easy to cause instability. It is easy to strengthen the auxiliary fixing installation and improve the reinforcement stability of the ceiling mounting frame body 100 when installing the high-strength gypsum board 101.
[0034] Finally, after the ceiling mounting bracket body 100 is installed, when the clamping plate 103 is pressed against the mounting base plate 102, the fourth clamping plate 1035 is once again engaged inside the second clamping slot 1036, and the third clamping plate 1034 is engaged inside the first clamping slot 1033. The reinforcing connecting plate 1031 is then engaged and installed at the end connection of the two clamping plates 103. The rotating bolts fix the fixing plate 1032 to the end of the clamping plate 103, reinforcing the installation of the reinforcing connecting plate 1031. Thus, after the clamping plate 103 is installed, the ends of the two clamping plates 103 are reinforced. Moreover, when subjected to force after installation, it is not easy for the clamping plate 103 to deform and bulge, causing the clamping to be loose. This facilitates the reinforced and fixed installation, making the installation more secure and improving the bottom end of the lifting rod 104 when the ceiling mounting bracket body 100 is used to install the high-strength gypsum board 101.
[0035] Although embodiments of the present invention have been shown and described (see the detailed description above), 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 present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A high-strength gypsum board ceiling installation structure, comprising a ceiling mounting frame body (100), the ceiling mounting frame body (100) comprising a keel (105) and a high-strength gypsum board (101), wherein main hangers (106) are welded and fixed to both ends of the upper surface of the keel (105), and sliding seats (107) are fixedly installed at both ends of the keel (105); mounting base plates (102) are fixed to both ends of the upper surface of the high-strength gypsum board (101); clamping plates (103) are installed at both ends of the mounting base plate (102) and the upper surface of the high-strength gypsum board (101); and a lifting rod (104) is welded and fixed at the connection between the lower surface of the sliding seat (107) and the upper surface of the mounting base plate (102), characterized in that: The ceiling mounting bracket body (100) is also equipped with: A reinforcement and stabilization mechanism, wherein the reinforcement and stabilization mechanism includes a connecting component whose end of the pressure plate (103) is located on the upper surface of the high-strength gypsum board (101), and a reinforcement and stabilization component is provided at the connection between the end of the connecting component and the side of the slide (107), and a reinforcing and fixing component is provided at the end of the reinforcement and stabilization component. A reinforced clamping mechanism is provided, and the reinforced clamping mechanism includes a reinforced clamping assembly disposed at the connection of two clamping plates (103), and the end of the reinforced clamping assembly is provided with a snap-fit mounting assembly.
2. The high-strength gypsum board ceiling installation structure according to claim 1, characterized in that: The connecting assembly includes a fixed extension plate (1041) welded and fixed to one end of the pressure plate (103) on the upper surface of the high-strength gypsum board (101), and the lower surface of the fixed extension plate (1041) is fixed to the surface of the high-strength gypsum board (101) by bolts, and the end of the fixed extension plate (1041) is installed with a connecting ring (1047) by a connecting pin.
3. The high-strength gypsum board ceiling installation structure according to claim 2, characterized in that: The reinforcement and stabilization component includes mounting seats (1044) welded and fixed to both sides of the slide (107). The bottom end of the mounting seat (1044) is equipped with an external threaded rod (1043) through a connecting pin. The outer surface of the external threaded rod (1043) is threaded with an internal threaded post (1042). The bottom end of the internal threaded post (1042) is provided with a rotating groove (1048), and the connecting ring (1047) is rotatably connected to the inside of the rotating groove (1048).
4. The high-strength gypsum board ceiling installation structure according to claim 3, characterized in that: The bottom end of the rotating groove (1048) and the internal threaded column (1042) are an integral structure, and the ends of the internal threaded column (1042) and the fixed extension plate (1041) are rotatably connected to the rotating groove (1048) through the connecting ring (1047).
5. The high-strength gypsum board ceiling installation structure according to claim 3, characterized in that: The reinforcing and fixing assembly includes an auxiliary rod (1046) mounted on the top of the mounting base (1044) via a connecting pin, and a retaining ring (1045) is mounted on the end of the auxiliary rod (1046) via a connecting pin.
6. The high-strength gypsum board ceiling installation structure according to claim 1, characterized in that: The reinforced clamping assembly includes a reinforced connecting plate (1031) disposed at the connection point of the other end of the two clamping plates (103). Both ends of the upper surface of the reinforced connecting plate (1031) are integrally provided with fixing plates (1032), and the fixing plates (1032) are fixed to the surfaces of the clamping plates (103) by bolts.
7. The high-strength gypsum board ceiling installation structure according to claim 6, characterized in that: The locking and mounting assembly includes a first locking groove (1033) at the other end of the clamping plate (103), a second locking groove (1036) at both ends of the mounting base plate (102), a third locking plate (1034) integrally provided at the end of the reinforcing connecting plate (1031), a fourth locking plate (1035) integrally provided on the lower surface of the third locking plate (1034), and the fourth locking plate (1035) is locked and connected to the inside of the second locking groove (1036).
Citation Information
Patent Citations
Energy-saving gypsum board suspended ceiling anti-cracking mounting structure
CN216949031U