Fiber reinforced silicate fireproof plate
By designing a field-shaped wiring trough and card plate structure on the fiber-reinforced silicate fireproof board, combined with hanging sockets and limit components, the problems of wiring damaging the decorative board and cumbersome assembly are solved, and orderly cable routing and simplified installation of components are achieved, reducing material waste and improving environmental protection and practicality.
Patent Information
- Application Number
- CN202422974256.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing fiber-reinforced silicate fireproof panels lack wiring function. When wiring electric wires or network cables on the fireproof panels, they are easy to damage the decorative panels. In addition, the assembly steps are cumbersome and the entire panel needs to be replaced after damage, which wastes materials and is not environmentally friendly.
A field-shaped wiring trough and card plate structure are designed, which cooperates with the hanging sockets and limit components to achieve orderly wiring of cables and simplified installation of components. The limit plate is fixed by threaded connection to simplify the assembly steps and facilitate the individual replacement of damaged parts.
The cables are routed in an orderly manner within the fireproof board, thus avoiding tangling and spreading, simplifying the assembly steps, reducing material waste, and improving environmental protection and practicality.
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Figure CN223458965U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to fireproof board technical field, concretely is a kind of fiber reinforced silicate fireproof board. BACKGROUND
[0002] There is a kind of fiber reinforced silicate fireproof board in the market circulation, it is called FET fireproof board, it is based on fiber reinforced calcium silicate board formula process, with silica calcium as main material, adds multiple fireproof components, is handled by pressure, pressurization, steaming curing, surface polishing etc., generates a kind of professional lightweight fireproof board mainly with mullite crystal structure.
[0003] For example, the existing patent application No. 202221488486.4 discloses a moisture-proof fiber reinforced silicate fireproof board, which belongs to the technical field of fireproof boards and comprises two fireproof board bodies and two waterproof plates. A sound insulation assembly is arranged between the two fireproof board bodies. The sound insulation assembly comprises two sound insulation plates, which are arranged between the two fireproof board bodies. First sound insulation cavities and second sound insulation cavities are formed in the surfaces of the two sound insulation plates. Fireproof sound insulation cotton is fixedly arranged in the interiors of the two first sound insulation cavities. Fireproof mortar is filled in the interiors of the two second sound insulation cavities. Anti-impact assemblies are arranged between the two fireproof board bodies and the two waterproof plates. The utility model has the beneficial effects that the two waterproof plates and the water-repellent layer can prevent water from entering the interiors of the fireproof board bodies, thereby playing a moisture-proof role. The anti-impact assemblies can improve the overall strength of the fireproof board and make the fireproof board have stronger impact resistance.
[0004] However, the fiber reinforced silicate fireproof board still has some deficiencies in actual use. For example, the fiber reinforced silicate fireproof board does not have a wiring function. Some electric wires or network cables need to be wired on the fireproof board, which can squeeze or damage the decorative plate and affect the aesthetic property of the interior trim plate. In addition, the assembly steps of the fireproof board are relatively complicated. Once damaged, the fireproof board can only be replaced as a whole, which wastes materials and is not environmentally friendly. TECHNICAL FIELD
[0005] The utility model aims at providing a fiber reinforced silicate fireproof board to solve the problems in the background art.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a fiber reinforced silicate fireproof board, comprising a fireproof main plate assembly, the front and back surfaces of the fireproof main plate assembly are provided with fireproof sub-plate assemblies, the top edges of the front and back surfaces of the fireproof main plate assembly are provided with limiting assemblies, and the limiting assemblies are located directly above the fireproof sub-plate assemblies.
[0007] The fireproof main plate assembly includes a fiber reinforced silicate fireproof plate one, a front face of the fiber reinforced silicate fireproof plate one is provided with a field-shaped wiring groove, a plurality of clamping plates are fixedly installed in the wiring groove, a plurality of hanging plug-in ports are arranged on the front face and the back face of the fiber reinforced silicate fireproof plate one, and threaded interfaces are arranged on the top middle parts of the front face and the back face of the fiber reinforced silicate fireproof plate one.
[0008] The fireproof auxiliary plate assembly includes a fiber reinforced silicate fireproof plate two, a plurality of hanging plug-in plates are fixedly installed on the back face of the fiber reinforced silicate fireproof plate two, the plurality of hanging plug-in plates are in one-to-one correspondence with the plurality of hanging plug-in ports, and the hanging plug-in plates are movably plugged into the hanging plug-in ports.
[0009] The limiting assembly includes a limiting abutting plate, a groove is arranged in the middle part of the front face of the limiting abutting plate, and a fixed bolt is threadedly plugged into the front face of the groove.
[0010] Preferably, the front face and the back face of the fiber reinforced silicate fireproof plate one are provided with butt plug-in ports at two corners of the top end, and butt blocks are fixedly installed on the two side edges of the back face of the limiting abutting plate.
[0011] Preferably, the plurality of butt blocks are in one-to-one correspondence with the plurality of butt plug-in ports, and the butt blocks are movably plugged into the butt plug-in ports.
[0012] Preferably, the two fiber reinforced silicate fireproof plate twos are hung on the front face and the back face of the fiber reinforced silicate fireproof plate one respectively, and the bottom face of the limiting abutting plate is attached to the top face of the fiber reinforced silicate fireproof plate two.
[0013] Preferably, the two side faces of the fiber reinforced silicate fireproof plate one are provided with wire through grooves at the bottom end, and one end of the two wire through grooves is connected with the inside of the field-shaped wiring groove.
[0014] Preferably, the two fixed bolts are in one-to-one correspondence with the two threaded interfaces, and one end of the fixed bolt is threadedly connected into the threaded interface arranged on the same side.
[0015] Compared with the prior art, the fireproof main plate assembly has the advantages that:
[0016] The fiber reinforced silicate fireproof plate can insert cables through the cable insertion notch, and then route the cables in the cross-shaped routing groove as required, the cables can be limited by the clamping plate in the cross-shaped routing groove, so that the cables are prevented from being separated from the cross-shaped routing groove and then scattered and wound in the fireproof plate, the situation that the ordinary fireproof plate is installed and the cable insertion notch is formed on the panel to cause the structure of the decorative plate to be damaged is avoided, meanwhile, the assembly between various components of the fireproof plate can be conveniently carried out, the assembly steps are simplified, the assembly difficulty is reduced, the damaged fiber reinforced silicate fireproof plate II can be conveniently replaced, material waste is effectively reduced, and the practicality is higher. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a whole three-dimensional structure schematic diagram of the utility model;
[0018] Figure 2 It is an unfolded three-dimensional structure schematic diagram of the utility model;
[0019] Figure 3 It is a front three-dimensional structure schematic diagram of the fireproof main plate assembly of the utility model;
[0020] Figure 4 It is a back three-dimensional structure schematic diagram of the fireproof main plate assembly of the utility model;
[0021] Figure 5 It is a three-dimensional structure schematic diagram of the fireproof auxiliary plate assembly and the limiting assembly of the utility model.
[0022] In the drawing: 1, fireproof main plate assembly; 101, fiber reinforced silicate fireproof plate I; 102, cross-shaped routing groove; 103, cable insertion notch; 104, clamping plate; 105, hanging plug; 106, butt plug; 107, threaded interface; 2, fireproof auxiliary plate assembly; 201, fiber reinforced silicate fireproof plate II; 202, hanging plugboard; 3, limiting assembly; 301, limiting stop plate; 302, butt block; 303, groove; 304, fixing bolt. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] As Figures 1-5The utility model provides a technical scheme: including fireproof mainboard subassembly 1, the front and back of fireproof mainboard subassembly 1 all are provided with fireproof auxiliary board subassembly 2, the front and back top end edge of fireproof mainboard subassembly 1 is provided with limiting component 3, limiting component 3 is located directly above fireproof auxiliary board subassembly 2,
[0025] Fireproof mainboard subassembly 1 includes fiber reinforced silicate fireproof board no. 101, the front of fiber reinforced silicate fireproof board no. 101 is provided with a field type wiring slot 102, a plurality of clamping plates 104 are fixedly installed in the wiring slot of field type wiring slot 102, a plurality of hanging sockets 105 are formed in the front and back of fiber reinforced silicate fireproof board no. 101, and threaded interfaces 107 are formed in the top middle part of the front and back of fiber reinforced silicate fireproof board no. 101.
[0026] Fireproof auxiliary board subassembly 2 includes fiber reinforced silicate fireproof board no. 201, a plurality of hanging plug-in plates 202 are fixedly installed on the back of fiber reinforced silicate fireproof board no. 201, a plurality of hanging plug-in plates 202 correspond to a plurality of hanging sockets 105 one by one, and the hanging plug-in plates 202 are movably inserted into the hanging sockets 105.
[0027] Limiting component 3 includes a limiting abutting plate 301, a groove 303 is formed in the middle part of the front of the limiting abutting plate 301, and a fixed bolt 304 is screw-inserted into the front of the groove 303.
[0028] In the embodiment, a plurality of docking sockets 106 are formed at the two corners of the top of the front and back of fiber reinforced silicate fireproof board no. 101, and a plurality of docking blocks 302 are fixedly installed on the two side edges of the back of the limiting abutting plate 301.
[0029] A plurality of docking blocks 302 correspond to a plurality of docking sockets 106 one by one, and the docking blocks 302 are movably inserted into the docking sockets 106.
[0030] Two fiber reinforced silicate fireproof board no. 201 are hung on the front and back of fiber reinforced silicate fireproof board no. 101 respectively, the bottom surface of the limiting abutting plate 301 is attached to the top surface of fiber reinforced silicate fireproof board no. 201, and the preliminary assembly of fiber reinforced silicate fireproof board no. 201 and fiber reinforced silicate fireproof board no. 101 can be completed by only inserting the hanging plug-in plates 202 fixedly installed on the back of fiber reinforced silicate fireproof board no. 201 into the hanging sockets 105.
[0031] The bottom ends of both sides of the fiber reinforced silicate fireproof board 101 are provided with wire-passing slots 103, and one end of the two wire-passing slots 103 is connected to the inside of the field-shaped wiring groove 102. The cables are inserted through the wire-passing slots 103, and then the cables are routed in the field-shaped wiring groove 102 as needed. The cables can be limited by the clamping plate 104 in the field-shaped wiring groove 102 to prevent them from leaving the field-shaped wiring groove, which will cause the cables to become untied and entangled in the fireproof board. After the routing is completed, the front fireproof sub-board assembly 2 can be installed.
[0032] The two fixing bolts 304 correspond one to one with the two threaded interfaces 107. One end of the fixing bolt 304 is threadedly connected to the threaded interface 107 set on the same side. The limiting plate 301 is fixedly installed on the fiber reinforced silicate fireproof board 101 by threaded connection between the fixing bolt 304 and the threaded interface 107.
[0033] When in use, the cables can be inserted through the wire slot 103, and then routed in the field-shaped wiring groove 102 as needed. The cables can be limited in the field-shaped wiring groove 102 by the clamping plate 104 to prevent them from leaving the field-shaped wiring groove, which will cause the cables to become scattered and entangled in the fireproof board. After completing the routing, the front fireproof sub-board assembly 2 can be installed.
[0034] When the fireproof board needs to be assembled, the two fireproof sub-board components 2 can be taken out and hung on the front and back of the fireproof main board component 1, and then the vertical displacement of the fireproof sub-board component 2 can be limited by the limit component 3, so as to prevent the hanging plug-in board 202 from being separated from the hanging socket 105, and then the overall installation of the fireproof board can be completed. The assembly steps are as follows: only the hanging plug-in board 202 fixedly installed on the back of the fiber reinforced silicate fireproof board 201 needs to be inserted into the hanging socket 105 to complete the fiber reinforced silicate fireproof board 201 and the fiber reinforced silicate fireproof board 1. 01, then take out the limiting plate 301, insert the limiting plate 301 into the front and back top of the fiber reinforced silicate fireproof board 1 101 by inserting the docking block 302 into the docking socket 106, and then fix the limiting plate 301 on the fiber reinforced silicate fireproof board 1 101 by threading it with the threaded interface 107 through the fixing bolt 304. The bottom surface of the limiting plate 301 fits with the top surface of the fiber reinforced silicate fireproof board 201, thereby limiting the vertical displacement of the fireproof sub-board assembly 2, thereby completing the overall installation of the fireproof board.
[0035] When the fireproof plate surface is damaged, only need to reverse rotation fixed bolt 304 to release the limit stop plate 301 and the connection of fiber reinforced silicate fireproof plate two 201, then the limit stop plate 301 is taken down and the limit of fiber reinforced silicate fireproof plate two 201 is released, after the limit of fiber reinforced silicate fireproof plate two 201 is released, fiber reinforced silicate fireproof plate two 201 can be conveniently lifted to the oblique upper side and be unloaded from fiber reinforced silicate fireproof plate one 101, after unloading, the replaced fiber reinforced silicate fireproof plate two 201 is reassembled, which effectively reduces the waste of materials, is more environmentally friendly and has stronger practicality.
[0036] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fiber reinforced silicate fireboard, characterized in that The application relates to a fireproof main plate assembly (1), the front and back surfaces of the fireproof main plate assembly (1) are provided with fireproof sub plate assemblies (2), the front and back surfaces of the fireproof main plate assembly (1) are provided with limiting assemblies (3) at the top edges, and the limiting assemblies (3) are located directly above the fireproof sub plate assemblies (2). The fireproof main plate assembly (1) comprises a fiber-reinforced silicate fireproof plate I (101), the front surface of the fiber-reinforced silicate fireproof plate I (101) is provided with a field-shaped wiring groove (102), a plurality of clamping plates (104) are fixedly arranged in the wiring groove, a plurality of hanging plug-in ports (105) are arranged on the front and back surfaces of the fiber-reinforced silicate fireproof plate I (101), and threaded interfaces (107) are arranged at the top middle parts of the front and back surfaces of the fiber-reinforced silicate fireproof plate I (101). The fireproof sub plate assembly (2) comprises a fiber-reinforced silicate fireproof plate II (201), a plurality of hanging plug-in plates (202) are fixedly arranged on the back surface of the fiber-reinforced silicate fireproof plate II (201), the plurality of hanging plug-in plates (202) correspond to the plurality of hanging plug-in ports (105) in a one-to-one mode, and the hanging plug-in plates (202) are movably inserted into the hanging plug-in ports (105). The limiting assembly (3) comprises a limiting abutting plate (301), a groove (303) is arranged at the middle part of the front surface of the limiting abutting plate (301), and a fixing bolt (304) is screw-inserted into the front surface of the groove (303).
2. A fiber reinforced silicate fireboard according to claim 1, characterized in that The front and back surfaces of the fiber-reinforced silicate fireproof plate I (101) are provided with butt plug-in ports (106) at the corners of the top ends, and butt blocks (302) are fixedly arranged on the two side edges of the back surface of the limiting abutting plate (301).
3. A fiber reinforced silicate fireboard according to claim 2, wherein, The plurality of butt blocks (302) correspond to the plurality of butt plug-in ports (106) in a one-to-one mode, and the butt blocks (302) are movably inserted into the butt plug-in ports (106).
4. A fiber reinforced silicate fireboard according to claim 1, wherein, Two fiber-reinforced silicate fireproof plate II (201) are hung on the front and back surfaces of the fiber-reinforced silicate fireproof plate I (101) respectively, and the bottom surface of the limiting abutting plate (301) is attached to the top surface of the fiber-reinforced silicate fireproof plate II (201).
5. A fiber reinforced silicate fireboard according to claim 1, wherein, The bottom ends of the two side surfaces of the fiber-reinforced silicate fireproof plate I (101) are provided with wire through grooves (103), and one end of the two wire through grooves (103) is connected with the inside of the field-shaped wiring groove (102).
6. A fiber reinforced silicate fireboard according to claim 1, wherein The two fixing bolts (304) correspond to the two threaded interfaces (107) in a one-to-one mode, and one end of the fixing bolt (304) is screw-inserted into the threaded interface (107) arranged on the same side.
Citation Information
Patent Citations
Moistureproof fiber reinforced silicate fireproof plate
CN218406035U