Glass magnesium fireproof plate
By improving the fixing frame and installation components of the glass magnesium fireproof board, and using threaded rods, slide chutes and other components to achieve stable connection and convenient dismantling of the board, the problems of loosening and complex installation of the fireproof board are solved, the installation efficiency and stability are improved, and the fireproof performance is enhanced.
Patent Information
- Application Number
- CN202422594751.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-25
AI Technical Summary
When used, the glass magnesium fireproof board is bonded to the wall with glass glue or nail-free glue. After a long period of use, the viscosity decreases and leads to loosening, affecting the use effect and safety. The unreasonable design of the fixing mechanism leads to complex installation and difficult maintenance.
Fixing frames and installation components are adopted, including frame sleeves, placement grooves, first plate bodies, second plate bodies, heat insulation layers, removal components, etc. The board bodies are stable and conveniently removed through the cooperation of threaded rods, sliders, sliders, bolts and other components.
It improves the installation efficiency and stability of glass magnesium fireproof boards, simplifies the removal process, enhances fire resistance, heat insulation and wear resistance, and reduces safety hazards and maintenance costs.
Smart Images

Figure CN223240873U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fireproof boards, and more particularly to a glass magnesium fireproof board. Background Art
[0002] In the existing technology, when using glass magnesium fireproof boards, they are mostly directly bonded to the wall through glass glue or nail-free glue. However, due to long-term use, the viscosity of the glue will decrease, causing the fireproof boards to loosen, which not only affects the use effect of the fireproof boards, but may also cause safety hazards. In addition, the joints between each fireproof board are usually simple joints, which can easily cause the joints of the glass magnesium fireproof boards to warp, thereby affecting the overall appearance.
[0003] Secondly, the existing fireproof panels cannot be quickly released during use. This may be due to the unreasonable design of the fixing mechanism and the complicated operation, which makes it impossible for users to quickly and conveniently release the equipment during use. This not only affects the maintenance and replacement efficiency of the equipment, but may also increase maintenance costs.
[0004] Finally, the existing fireproof board cannot stably fix the device body during use. This may be due to unreasonable design of the fixing mechanism and insufficient fixing force, which causes the equipment to loosen or shift during operation. In order to solve this problem, the fixing mechanism design of the fireproof board can be improved, the fixing force can be increased, and the stability of the equipment during operation can be ensured. Utility Model Content
[0005] (1) Technical problems solved
[0006] In response to the problems existing in the prior art, the utility model provides a glass magnesium fireproof board to solve the technical problem mentioned in the background technology that the glass magnesium fireproof board is mostly directly bonded to the wall through glass glue or nail-free glue when in use. Due to long-term use, the viscosity of the glue will decrease, causing the fireproof board to loosen.
[0007] (2) Technical solution
[0008] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a glass magnesium fireproof board, comprising a fixing frame, a mounting assembly being provided on the fixing frame, the mounting assembly comprising a frame sleeve, a placement groove, a first plate body, a second plate body and a thermal insulation layer, the frame sleeve being connected to the fixing frame, the placement groove being opened on the frame sleeve, the first plate body and the second plate body being placed on the placement groove, the thermal insulation layer being arranged at one end of the first plate body and the second plate body, a dismantling assembly being provided at the bottom of the frame sleeve, the dismantling assembly comprising a mounting plate, a fixing plate and a threaded rod, the mounting plates being arranged at both ends of the frame sleeve, the fixing plates being detachably mounted on the bottom of the frame sleeve, the threaded rods being fixedly mounted at both ends of the fixing plates, and the threaded rods passing through the mounting plates.
[0009] The utility model is further configured such that a flame retardant layer is provided at one end of the heat insulation layer, a wear-resistant layer is provided at one end of the flame retardant layer, a slide groove is provided on the first plate body, a slider is installed on the second plate body, the slider is adapted to the slide groove, and the sliding movement process of the first plate body is completed through the coordinated use of various components.
[0010] The present invention is further configured such that embedded grooves are provided on both the first plate body and the second plate body, plate connecting members are placed on the embedded grooves, bolts are installed between the plate connecting members and the first plate body and the second plate body respectively, and the fixing process of the first plate body and the second plate body is completed through the coordinated use of various components.
[0011] The utility model is further configured such that a fixed sleeve is rotatably connected to the threaded rod, the inner side of the fixed sleeve is in contact with the top of the threaded rod, a movable plate is slidably connected to the fixed sleeve, and a movable rod is connected to the movable plate. The movement process of the movable rod is completed through the coordinated use of various components.
[0012] The utility model is further configured such that a retaining plate is installed on the movable rod, a spring is sleeved on the movable rod, both ends of the spring are connected to the fixed sleeve and the retaining plate, and the compression process of the spring is completed through the coordinated use of various components.
[0013] The present invention is further configured such that a rotating assembly is provided on the fixed sleeve, and the rotating assembly includes a rotating sleeve, a stabilizing hole and a sliding groove. The rotating sleeve is rotatably connected to the fixed sleeve, the stabilizing holes are evenly arranged on the rotating sleeve, the rotating sleeve is adapted to the moving rod, and the sliding groove is arranged on the inner side of the rotating sleeve. The rotation process of the rotating sleeve is completed through the coordinated use of various components.
[0014] The utility model is further configured such that a locking block is provided in a sliding connection on the sliding groove, a locking groove is provided on the threaded rod, the locking block is adapted to the locking groove, and an adjustment plate is installed on the rotating sleeve, so that the movement process of the locking block is completed through the coordinated use of various components.
[0015] The present invention is further configured such that a connecting plate is mounted on the fixing sleeve, and a tension spring is connected between the connecting plate and the adjusting plate, so that the stretching process of the tension spring is completed through the coordinated use of various components.
[0016] (3) Beneficial effects
[0017] Compared with the prior art, the present invention provides a glass magnesium fireproof board with the following beneficial effects:
[0018] 1. The design of the installation components makes the installation process of the glass magnesium fireproof board simpler and more stable. By placing the first board and the second board on the placement groove and connecting them with board connectors and bolts, a firm bond between the boards can be ensured. This design not only improves the installation efficiency, but also reduces the safety hazards caused by loose or shifting boards. At the same time, the setting of the thermal insulation layer, flame retardant layer and wear-resistant layer enhances the fireproof, heat insulation and wear-resistant properties of the fireproof board, and improves its applicability in different environments.
[0019] 2. The design of the dismantling assembly makes the dismantling process of the glass magnesium fireproof board more convenient. By rotating the fixed sleeve and moving the movable plate, the fixing of the rotating sleeve can be easily released, and the movable rod can be inserted into the stable hole to complete the fixing of the mounting plate. This design not only simplifies the dismantling process, but also reduces the damage to the board body during the dismantling process, thereby improving the maintenance and replacement efficiency of the equipment.
[0020] 3. The design of the rotating assembly further enhances the stability and safety of the glass magnesium fireproof board. By rotating the rotating sleeve and the adjusting plate, the locking block can be restricted and released, thereby completing the fixation and removal of the mounting plate. This design not only improves the fixing effect, but also simplifies the fixing and unlocking process, thereby improving the maintenance and replacement efficiency of the equipment. At the same time, the use of the tension spring provides additional stability and buffering effect, preventing the board from shifting due to vibration or impact. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the overall structure of a glass magnesium fireproof board in the utility model;
[0022] Figure 2 It is a schematic cross-sectional view of the structure of the present invention;
[0023] Figure 3 This is a schematic cross-sectional view of the dismantled components of the present invention;
[0024] Figure 4 This is a schematic cross-sectional view of the dismantled components of the present invention;
[0025] Figure 5 It is a schematic diagram of the cross-sectional side view of the structure of the dismantled components in the present invention.
[0026] In the figure: 1. Fixed frame; 2. Frame sleeve; 3. Placement groove; 4. First plate body; 5. Second plate body; 6. Insulation layer; 7. Mounting plate; 8. Fixed plate; 9. Threaded rod; 10. Flame retardant layer; 11. Wear-resistant layer; 12. Slide groove; 13. Slider; 14. Embedded groove; 15. Plate connector; 16. Bolt; 17. Fixed sleeve; 18. Moving plate; 19. Moving rod; 20. Abutting plate; 21. Spring; 22. Rotating sleeve; 23. Stabilizing hole; 24. Sliding groove; 25. Locking block; 26. Locking groove; 27. Adjusting plate; 28. Connecting plate; 29. Tension spring. DETAILED DESCRIPTION
[0027] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0028] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by ordinary technicians in the technical field to which this application belongs.
[0029] In the present invention, unless otherwise specified, directions such as "up" and "down" are usually relative to the directions shown in the drawings, or relative to the vertical, perpendicular or gravity direction; similarly, for ease of understanding and description, "left" and "right" are usually relative to the left and right shown in the drawings; "inside" and "outside" refer to the inside and outside relative to the outline of each component itself, but the above-mentioned direction words are not used to limit the present invention.
[0030] See also Figure 1-Figure 5 A glass magnesium fireproof board includes a fixing frame 1, on which an installation component is provided, the installation component including a frame sleeve 2, a placement groove 3, a first plate body 4, a second plate body 5 and a thermal insulation layer 6, the frame sleeve 2 is connected to the fixing frame 1, the placement groove 3 is opened on the frame sleeve 2, the first plate body 4 and the second plate body 5 are placed on the placement groove 3, the thermal insulation layer 6 is arranged at one end of the first plate body 4 and the second plate body 5, and a dismantling component is provided at the bottom of the frame sleeve 2, the dismantling component includes a mounting plate 7, a fixing plate 8 and a threaded rod 9, the mounting plate 7 is arranged at both ends of the frame sleeve 2, the fixing plate 8 is detachably installed at the bottom of the frame sleeve 2, the threaded rod 9 is fixedly installed at both ends of the fixing plate 8, and the threaded rod 9 passes through the mounting plate 7.
[0031] A flame retardant layer 10 is provided at one end of the heat insulation layer 6 , and a wear-resistant layer 11 is provided at one end of the flame retardant layer 10 . A slide groove 12 is provided on the first plate body 4 , and a slider 13 is installed on the second plate body 5 . The slider 13 is adapted to the slide groove 12 .
[0032] Embedded grooves 14 are provided on the first plate body 4 and the second plate body 5 . Plate connectors 15 are placed on the embedded grooves 14 . Bolts 16 are installed between the plate connectors 15 and the first plate body 4 and the second plate body 5 , respectively.
[0033] A fixed sleeve 17 is rotatably connected to the threaded rod 9 , and the inner side of the fixed sleeve 17 is fitted with the top of the threaded rod 9 . A movable plate 18 is slidably connected to the fixed sleeve 17 , and a movable rod 19 is connected to the movable plate 18 .
[0034] A moving plate 20 is mounted on the moving rod 19 , and a spring 21 is sleeved on the moving rod 19 . Two ends of the spring 21 are connected to the fixed sleeve 17 and the moving plate 20 .
[0035] In this embodiment, during use, the heat insulation layer 6, the flame retardant layer 10 and the wear-resistant layer 11 are adhered to one end of the first plate body 4 and the second plate body 5, so that they can play a certain role during use. The next step is to slide the slider 13 on the second plate body 5 along the slide groove 12 on the first plate body 4 to splice them together, and then place the plate connector 15 in the embedded groove 14 on the first plate body 4 and the second plate body 5, and then use the bolt 16 to connect the plate connector 15 to the first plate body 4 and the second plate body 5 respectively, and then fix them together and place them in the placement groove 3 in the frame sleeve 2. In use, by sliding the movable plate 18 along the fixed sleeve 17, during its sliding movement, The moving rod 19 is driven to move, and during the movement, the abutting plate 20 on the moving rod 19 compresses the spring 21. At this time, the rotating sleeve 22 is rotated along the fixed sleeve 17, and when the moving rod 19 is rotated to be aligned with the stabilizing hole 23, the moving plate 18 is released, so that the moving rod 19 is inserted into the stabilizing hole 23 under the action of the elastic potential energy of the spring 21, thereby completing the fixing process of the rotating sleeve 22, and during the rotation of the rotating sleeve 22, the rotating sleeve 22 drives the adjusting plate 27 to move, so that the tension spring 29 between the adjusting plate 27 and the connecting plate 28 is stretched, so as to drive the locking block 25 to slide along the sliding groove 24, thereby completing the collection process of the locking block 25.
[0036] See also Figure 4-5 As an implementation method of the rotating assembly: a rotating assembly is provided on the fixed sleeve 17, and the rotating assembly includes a rotating sleeve 22, a stabilizing hole 23 and a sliding groove 24. The rotating sleeve 22 is rotatably connected to the fixed sleeve 17, the stabilizing holes 23 are evenly opened on the rotating sleeve 22, the rotating sleeve 22 is adapted to the moving rod 19, and the sliding groove 24 is opened on the inner side of the rotating sleeve 22.
[0037] A locking block 25 is slidably connected to the sliding groove 24 , a locking groove 26 is opened on the threaded rod 9 , the locking block 25 is adapted to the locking groove 26 , and an adjusting plate 27 is installed on the rotating sleeve 22 .
[0038] A connecting plate 28 is mounted on the fixing sleeve 17 , and a tension spring 29 is connected between the connecting plate 28 and the adjusting plate 27 .
[0039] More specifically, the fixing sleeve 17 is rotated along the threaded rod 9. After the top of the threaded rod 9 is in contact with the inner top of the fixing sleeve 17, the abutment process is completed. At this time, the movable plate 18 is moved to drive the movable rod 19 to move, thereby releasing the fixing process of the rotating sleeve 22. The rotating sleeve 22 is reset under the action of the tension spring 29, thereby releasing the restriction process of the locking block 25, and one end of the locking block 25 is inserted into the locking groove 26 of the threaded rod 9, thereby completing the fixing process of the mounting plate 7.
[0040] In summary, when the overall equipment is in use or running: during use, by adhering the heat insulation layer 6, the flame retardant layer 10 and the wear-resistant layer 11 to one end of the first plate body 4 and the second plate body 5, it can play a certain role during use, and the next step is to slide the slider 13 on the second plate body 5 along the slide groove 12 on the first plate body 4 to splice them together, and then place the plate connector 15 in the embedded groove 14 on the first plate body 4 and the second plate body 5, and then use the bolt 16 to connect the plate connector 15 to the first plate body 4 and the second plate body 5 respectively, and then fix them together and place them in the placement groove 3 in the frame sleeve 2, and during use, by sliding the movable plate 18 along the fixed sleeve 17, during its sliding movement In the process, the moving rod 19 is driven to move, and in the process of its movement, the abutting plate 20 on the moving rod 19 is used to compress the spring 21. At this time, the rotating sleeve 22 is rotated along the fixed sleeve 17, and when the moving rod 19 is rotated to be aligned with the stabilizing hole 23, the moving plate 18 is released, so that the moving rod 19 is inserted into the stabilizing hole 23 under the action of the elastic potential energy of the spring 21, thereby completing the fixing process of the rotating sleeve 22, and in the rotation process of the rotating sleeve 22, the rotating sleeve 22 drives the adjusting plate 27 to move, so that the tension spring 29 between the adjusting plate 27 and the connecting plate 28 is stretched, so as to drive the locking block 25 to slide along the sliding groove 24, thereby completing the collection process of the locking block 25.
[0041] The fixing sleeve 17 is rotated along the threaded rod 9. After the top of the threaded rod 9 is in contact with the inner top of the fixing sleeve 17, the abutment process is completed. At this time, the movable plate 18 is moved to drive the movable rod 19 to move, so that the fixing process of the rotating sleeve 22 is released. The rotating sleeve 22 is reset under the action of the tension spring 29, so that the restriction process of the locking block 25 is released, and one end of the locking block 25 is inserted into the locking groove 26 of the threaded rod 9, so that the fixing process of the mounting plate 7 is completed.
[0042] In all the schemes mentioned above, the connection between the two components can be selected according to actual conditions by welding, bolt and nut connection, bolt or screw connection or other well-known connection methods, which will not be listed here one by one. In the above, all fixed connections are preferably welded. Although the embodiments of the present invention have been shown and described, it can be understood by ordinary technicians in this field that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A glass magnesium fireproof board, comprising a fixing frame (1), characterized by: The fixing frame (1) is provided with an installation component, the installation component comprising a frame sleeve (2), a placement groove (3), a first plate body (4), a second plate body (5) and a heat insulation layer (6); the frame sleeve (2) is connected to the fixing frame (1); the placement groove (3) is opened on the frame sleeve (2); the first plate body (4) and the second plate body (5) are placed on the placement groove (3); the heat insulation layer (6) is arranged at one end of the first plate body (4) and the second plate body (5); a removal component is provided at the bottom of the frame sleeve (2); the removal component comprises a mounting plate (7), a fixing plate (8) and a threaded rod (9); the mounting plate (7) is arranged at both ends of the frame sleeve (2); the fixing plate (8) is detachably mounted on the bottom of the frame sleeve (2); the threaded rod (9) is fixedly mounted at both ends of the fixing plate (8); and the threaded rod (9) passes through the mounting plate (7).
2. The glass magnesium fireproof board according to claim 1, characterized in that: One end of the heat-insulating layer (6) is provided with a flame-retardant layer (10), and one end of the flame-retardant layer (10) is provided with a wear-resistant layer (11). A slide groove (12) is provided on the first plate body (4), and a slider (13) is installed on the second plate body (5), and the slider (13) is adapted to the slide groove (12).
3. The glass magnesium fireproof board according to claim 2, characterized in that: The first plate body (4) and the second plate body (5) are both provided with embedded grooves (14), and plate connecting members (15) are placed on the embedded grooves (14). Bolts (16) are respectively installed between the plate connecting members (15) and the first plate body (4) and the second plate body (5).
4. The glass magnesium fireproof board according to claim 3, characterized in that: A fixed sleeve (17) is rotatably connected to the threaded rod (9), the inner side of the fixed sleeve (17) is in contact with the top of the threaded rod (9), a movable plate (18) is slidably connected to the fixed sleeve (17), and a movable rod (19) is connected to the movable plate (18).
5. The glass magnesium fireproof board according to claim 4, characterized in that: A resisting plate (20) is installed on the moving rod (19), and a spring (21) is sleeved on the moving rod (19). Two ends of the spring (21) are connected to the fixed sleeve (17) and the resisting plate (20).
6. The glass magnesium fireproof board according to claim 5, characterized in that: The fixed sleeve (17) is provided with a rotating assembly, which includes a rotating sleeve (22), a stabilizing hole (23) and a sliding groove (24). The rotating sleeve (22) is rotatably connected to the fixed sleeve (17). The stabilizing holes (23) are evenly arranged on the rotating sleeve (22). The rotating sleeve (22) is adapted to the moving rod (19). The sliding groove (24) is arranged on the inner side of the rotating sleeve (22).
7. The glass magnesium fireproof board according to claim 6, characterized in that: A locking block (25) is slidably connected to the sliding groove (24), a locking groove (26) is provided on the threaded rod (9), the locking block (25) is matched with the locking groove (26), and an adjusting plate (27) is installed on the rotating sleeve (22).
8. The glass magnesium fireproof board according to claim 7, characterized in that: A connecting plate (28) is installed on the fixing sleeve (17), and a tension spring (29) is connected between the connecting plate (28) and the adjusting plate (27).