Las ultra-high temperature clad plate

Through the design of sliding rails and locking plug-in mechanisms, combined with antibacterial, anti-corrosion and built-in metal skeleton layers, the problems of low installation efficiency, poor aesthetics and insufficient toughness of LAS ultra-high temperature composite panels are solved, and efficient installation and disassembly and multi-functional enhancement are achieved.

CN117485007BActive Publication Date: 2025-10-17WUHAN DINGYE ENVIRONMENTAL PROTECTION ENG TECH CO LTD
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Patent Information

Application Number
CN202311556301.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-21
Publication Date
2025-10-17
Estimated Expiration
2043-11-21

AI Technical Summary

Technical Problem

Existing LAS ultra-high temperature composite panels have low installation and disassembly efficiency, poor aesthetics, lack of antibacterial and anti-corrosion capabilities, high production costs and insufficient toughness.

Method used

It adopts the sliding connection of sliding rails and inserts combined with a locking connection mechanism, combines an antibacterial layer, an anti-corrosion layer, a built-in metal skeleton layer and a ceramic insulation board, and uses the connection and fixation of cross inserts and elastic blocks to enhance the structural strength and toughness.

Benefits of technology

It realizes the rapid installation and disassembly of composite panels, improves the antibacterial, anti-corrosion and heat insulation capabilities, reduces production costs, and enhances the toughness and aesthetics of the panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses LAS superhigh-temperature composite plate, including composite plate assembly, the composite plate assembly one side is equipped with sliding rail, and the sliding rail one side center is equipped with sliding slot, and the both ends of sliding rail are equipped with two first countersunk grooves, the application through the installation of locking plug-in mechanism, using cross plug plate and elastic clamping block plug-in and clamping, cooperate with the plug-in fixing of sliding rail and plug strip, realize the quick plug-in fixing of two composite plate assemblies, the installation and dismounting efficiency is high, through the setting of antibacterial layer and anticorrosive layer, improve the antibacterial and anticorrosive ability of composite plate assembly, avoid the appearance of plate decay, prolong the service life of plate, through the installation of built-in metal framework layer, the ceramic heat insulation plate is installed in the accommodating groove of built-in metal framework layer, and then polyurethane is filled as thermal insulation material, improve the heat insulation and thermal insulation capacity of plate, the added metal mesh improves the toughness of plate.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of composite panels, in particular to LAS super high temperature composite panels. BACKGROUND

[0002] Composite panels are plates composed of different materials with different functions, and composite panels are generally divided into metal composite panels, wood composite panels, color steel composite panels, rock wool composite panels, etc. according to different materials. LAS super high temperature composite panels are also one of them. For example, the Chinese patent with the name of super high temperature fire-resistant composite insulation board and the authorization announcement number of CN 214983886 U, which includes a fire-resistant composite insulation board body and a protection assembly, mainly uses the anti-collision plate in the protection assembly and the high-temperature-resistant steel wire mesh to reinforce the fire-resistant composite insulation board body, thereby improving the anti-collision and anti-seismic ability of the fire-resistant composite insulation board body. The technical method of this patent has certain technical defects:

[0003] 1. First of all, the scheme uses the insertion and fixation of the connecting groove and the connecting rod, and then uses the bolts to pass through the threaded holes at the top of the connecting grooves to realize the splicing and fixation of the two fire-resistant composite insulation board bodies. Using this way to install, a large number of bolts need to be screwed when installing and dismounting, which is low in work efficiency, time-consuming and laborious, and the bolts are directly exposed, which greatly reduces the aesthetic degree of the composite panel;

[0004] 2. The technical scheme uses the heat preservation layer, the heat insulation layer and the fire-resistant layer to be arranged on the fire-resistant composite insulation board body in sequence, which can achieve the effect of heat preservation and insulation, but does not have an antibacterial and anticorrosive layer. After long-term use, the panel may be corroded, which shortens the service life of the fire-resistant composite insulation board body;

[0005] 3. The technical scheme uses the anti-collision plate and the buffer to improve the anti-collision ability of the panel, which can enhance the anti-collision ability of the panel, but consumes more materials and has high production cost, and at the same time, the toughness of the panel cannot be improved, which reduces the practicality of the composite panel. SUMMARY

[0006] The present application aims to provide LAS super high temperature composite panels to solve the problems in the background art.

[0007] To achieve the above-mentioned purpose, the present application provides the following technical scheme: LAS super high temperature composite panels, including a composite panel assembly, the composite panel assembly is installed with a sliding insertion rail on one side, and a sliding insertion slot is opened in the center of one side of the sliding insertion rail, two first countersunk grooves are symmetrically opened at the ends of the sliding insertion rail, two first cross grooves are opened in the center of the two first countersunk grooves, two first arc grooves are symmetrically opened on one side of the two first countersunk grooves, and two locking plug-in mechanisms are installed inside the two first countersunk grooves.

[0008] Preferably, an insert is installed on the other side of the composite board assembly, and two second countersunk grooves are symmetrically opened on both end surfaces of the insert, two second cross grooves are opened in the center of the two second countersunk grooves, and two second arc grooves are opened on one side of the two second countersunk grooves.

[0009] Preferably, the composite panel assembly includes a LAS layer, an ultra-high temperature heat-resistant layer, a built-in metal skeleton layer, a substrate layer, an antibacterial layer, an anti-corrosion layer and a waterproof layer. A built-in metal skeleton layer is provided on the top of the substrate layer, and an ultra-high temperature heat-resistant layer is provided on the top of the built-in metal skeleton layer, and a LAS layer is provided on the top of the ultra-high temperature heat-resistant layer.

[0010] Preferably, an antibacterial layer is provided at the bottom of the substrate layer, an anti-corrosion layer is provided at the bottom of the antibacterial layer, and a waterproof layer is provided at the bottom of the anti-corrosion layer.

[0011] Preferably, the built-in metal skeleton layer includes a metal skeleton plate, a frame, a metal mesh, a receiving groove, an adhesive groove and a ceramic heat insulation board. The metal skeleton plate is installed on the top of the substrate layer, and a frame is installed on the outer periphery of the top of the metal skeleton plate. The top of the metal skeleton plate is evenly provided with receiving grooves, and a ceramic heat insulation board is installed inside the receiving groove, and polyurethane is filled between the ceramic heat insulation board and the receiving groove.

[0012] Preferably, a metal mesh is installed on the top of the metal frame plate, and bonding grooves are evenly opened on the top of the metal frame plate near the frame.

[0013] Preferably, the inside of the bonding groove and the inside of the frame are both filled with adhesive.

[0014] Preferably, the locking and plug-in mechanism includes a countersunk plate, a cross plug-in plate, an elastic block, a conical head, a tensioning strip, a plug-in column, a groove hole, a through hole and a friction strip. Countersunk plates are installed inside the two first countersunk grooves, and two plug-in columns are installed at the center of the bottom of the two countersunk plates. Two cross plug-in plates are symmetrically installed on the outer circumference of the top of the two plug-in columns, and tensioning strips are evenly installed on both sides of the two cross plug-in plates. The two cross plug-in plates are cross-distributed.

[0015] Preferably, a through hole is provided at the center of one side of the countersunk plate, and two groove holes are symmetrically provided on both sides of the center of the top of the countersunk plate.

[0016] Preferably, sixteen elastic blocks are symmetrically installed on the bottom of the outer circumference of the two plug-in columns, and one side of the sixteen elastic blocks is an arc surface, and friction strips are evenly installed on one side of the sixteen elastic blocks, and a conical head is installed at the bottom of the plug-in column.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] 1. The present invention realizes the rapid plug-in and fixation of two composite board assemblies through the installation of the locking plug-in mechanism, the plug-in and clamping of the cross plug-in plate and the elastic clamping block, and the plug-in and fixation of the sliding plug-in rail and the plug-in strip, and has high installation and disassembly efficiency;

[0019] 2. The present invention improves the antibacterial and anticorrosive capabilities of the composite board assembly by providing an antibacterial layer and an anticorrosive layer, thereby preventing the board from being corroded and extending the service life of the board;

[0020] 3. The present invention installs a built-in metal skeleton layer, and installs a ceramic insulation board in the receiving groove opened on the built-in metal skeleton layer, which is then filled with polyurethane as a thermal insulation material, thereby improving the thermal insulation capacity of the board. The added metal mesh improves the toughness of the board. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a three-dimensional diagram of the overall structure of the present invention;

[0022] Figure 2 For the present invention Figure 1 A magnified schematic diagram of area A in the middle;

[0023] Figure 3 For the present invention Figure 1 A magnified schematic diagram of area B in the middle;

[0024] Figure 4 It is a front cross-sectional view of the overall structure of the present invention;

[0025] Figure 5 For the present invention Figure 4 Enlarged schematic diagram of area C in the middle;

[0026] Figure 6 This is a three-dimensional diagram of the composite panel assembly of the present invention after being spliced;

[0027] Figure 7 A three-dimensional diagram of the locking and plugging mechanism of the present invention;

[0028] Figure 8 For the present invention Figure 7 Enlarged schematic diagram of area D in the middle;

[0029] Figure 9 This is a three-dimensional diagram of the built-in metal skeleton layer of the present invention;

[0030] Figure 10 For the present invention Figure 9 Enlarged schematic diagram of area E in the middle;

[0031] In the figure: 1, composite board assembly; 2, sliding insertion rail; 3, sliding insertion slot; 4, first cross slot; 5, first countersunk head slot; 6, first arc-shaped slot; 7, second cross slot; 8, insertion strip; 9, second countersunk head slot; 10, second arc-shaped slot; 11, locking insertion mechanism; 101, LAS layer; 102, super-high-temperature heat-resistant layer; 103, built-in metal framework layer; 104, base plate layer; 105, antibacterial layer; 106, anticorrosion layer; 107, waterproof layer; 10301, metal framework plate; 10302, frame; 10303, metal mesh; 10304, containing groove; 10305, bonding groove; 10306, ceramic heat insulation plate; 1101, countersunk head plate; 1102, cross insertion plate; 1103, elastic clamping block; 1104, conical head; 1105, tensioning strip; 1106, insertion column; 1107, groove hole; 1108, through hole; 1109, friction strip. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0033] Please refer to Figures 1-10The application provides a LAS ultrahigh-temperature composite plate, which comprises a composite plate assembly 1, the composite plate assembly 1 comprises an LAS layer 101, an ultrahigh-temperature heat-resistant layer 102, an embedded metal framework layer 103, a base plate layer 104, an antibacterial layer 105, a corrosion-resistant layer 106 and a waterproof layer 107, the embedded metal framework layer 103 is arranged on the top of the base plate layer 104, the ultrahigh-temperature heat-resistant layer 102 is arranged on the top of the embedded metal framework layer 103, the LAS layer 101 is arranged on the top of the ultrahigh-temperature heat-resistant layer 102, the antibacterial layer 105 is arranged on the bottom of the base plate layer 104, the corrosion-resistant layer 106 is arranged on the bottom of the antibacterial layer 105, the waterproof layer 107 is arranged on the bottom of the corrosion-resistant layer 106, the waterproof layer 107 improves the waterproof capacity of the composite plate assembly 1, the corrosion-resistant layer 106 is used for improving the corrosion-resistant capacity of the composite plate assembly 1, the antibacterial layer 105 improves the antibacterial capacity of the composite plate assembly 1, the embedded metal framework layer 103 comprises a metal framework plate 10301, a frame 10302, a metal mesh 10303, a containing groove 10304, a bonding groove 10305 and a ceramic heat insulation plate 10306, the metal framework plate 10301 is installed on the top of the base plate layer 104, the frame 10302 is peripherally installed on the top of the metal framework plate 10301, the containing groove 10304 is uniformly arranged on the top of the metal framework plate 10301, the ceramic heat insulation plate 10306 is installed in the containing groove 10304, and the containing groove 10304 is filled with polyurethane, the metal mesh 10303 is installed on the top of the metal framework plate 10301, the bonding groove 10305 is uniformly arranged on the top of the metal framework plate 10301 near the frame 10302, the bonding groove 10305 and the frame 10302 are filled with a bonding agent, the setting of the bonding groove 10305 increases the contact area of the bonding agent and the metal framework plate 10301, and the setting is favorable for improving the bonding effect, the installation of the metal mesh 10303 and the metal framework plate 10301 improves the overall structural strength of the composite plate assembly 1, a sliding rail 2 is installed on one side of the composite plate assembly 1, a sliding slot 3 is arranged in the center of one side of the sliding rail 2, two first countersunk grooves 5 are symmetrically arranged on the two end faces of the sliding rail 2, two first cross grooves 4 are arranged in the centers of the two first countersunk grooves 5, two first arc grooves 6 are symmetrically arranged on one side of the two first countersunk grooves 5, two locking plug-in mechanisms 11 are installed in the two first countersunk grooves 5, a plug strip 8 is installed on the other side of the composite plate assembly 1, two second countersunk grooves 9 are symmetrically arranged on the two end faces of the plug strip 8, two second cross grooves 7 are arranged in the centers of the two second countersunk grooves 9, and two second arc grooves 10 are arranged on one side of the two second countersunk grooves 9, the sliding plug-in of the plug strip 8 and the sliding slot 3 realizes the sliding plug-in of two composite plate assemblies 1, and the locking plug-in mechanism 11 is used for realizing the rapid assembly of the two composite plate assemblies 1 in the use process, so that the working efficiency is high,The locking and inserting mechanism 11 comprises a sunk plate 1101, a cross inserting plate 1102, an elastic clamping block 1103, a tapered head 1104, a tension strip 1105, an inserting column 1106, a groove hole 1107, a through hole 1108 and a friction strip 1109, the two first sunk grooves 5 are internally provided with the sunk plates 1101, the bottom center of the two sunk plates 1101 is provided with the two inserting columns 1106, the top outer circle of the two inserting columns 1106 is symmetrically provided with the two cross inserting plates 1102, the two cross inserting plates 1102 are uniformly provided with the tension strips 1105 on the two sides, the two cross inserting plates 1102 are cross-distributed, the sunk plate 1101 is provided with the through hole 1108 on one side center, the top center of the sunk plate 1101 is symmetrically provided with the two groove holes 1107 on the two sides, the outer circle of the two inserting columns 1106 is symmetrically provided with the sixteen elastic clamping blocks 1103 on the bottom, one side of the sixteen elastic clamping blocks 1103 is an arc surface, one side of the sixteen elastic clamping blocks 1103 is uniformly provided with the friction strips 1109, and the inserting column 1106 is provided with the tapered head 1104 on the bottom, the cross inserting plate 1102 in the locking and inserting mechanism 11 is inserted and fixed, and the inserting and fixing of the two composite board assemblies 1 is realized.

[0034] Working principle: in the using process, when the composite board assembly 1 needs to be spliced, first, the insertion strip 8 on one side of the composite board assembly 1 is inserted into the sliding insertion slot 3 on the sliding insertion rail 2, and the insertion strip 8 and the sliding insertion slot 3 are preliminarily inserted and slid, then the tapered head 1104 in the locking insertion mechanism 11 is inserted into the hole formed by the first arc-shaped groove 6 and the second arc-shaped groove 10, the outer circumference of the insertion column 1106 is matched with the inner wall of the hole formed by the first arc-shaped groove 6 and the second arc-shaped groove 10, the cross-shaped insertion plate 1102 is inserted along the first cross-shaped groove 4 and the second cross-shaped groove 7, the tension strip 1105 is made of rubber, the tension strip 1105 is in interference fit with the first cross-shaped groove 4 and the second cross-shaped groove 7, the insertion of the insertion strip 8 and the sliding insertion slot 3 is fixed, the elastic clamping block 1103 and the friction strip 1109 are matched with the inner wall of the hole formed by the first arc-shaped groove 6 and the second arc-shaped groove 10, the anti-skid effect of the friction strip 1109 is utilized, and the situation that the locking insertion mechanism 11 is pulled out is avoided, when the composite board assembly 1 needs to be removed, the hook is hung on the groove hole 1107, the hook is pulled away from the composite board assembly 1, the sunk plate 1101 is driven to move away from the composite board assembly 1, then the insertion column 1106 and the cross-shaped insertion plate 1102 are driven to move away from the composite board assembly 1, so that the locking insertion mechanism 11 is pulled out of the composite board assembly 1, then the insertion strip 8 is pulled out along the sliding insertion slot 3, the quick installation and removal of the composite board assembly 1 is realized, the work efficiency is improved, meanwhile, the LAS layer 101 on the top of the composite board assembly 1 is alcohol ether phosphate, the pollution resistance of the composite board assembly 1 is improved, the super-high temperature heat-resistant layer 102 is made of carbon ceramic, the fire resistance and high temperature resistance of the composite board assembly 1 are improved, the metal skeleton plate 10301, the frame 10302 and the metal mesh 10303 in the built-in metal skeleton layer 103 are arranged, the structural strength of the composite board assembly 1 is improved, the installation of the metal mesh 10303 improves the ductility and bending resistance of the metal mesh 10303, the accommodation groove 10304 and the ceramic heat insulation plate 10306 are arranged, the heat preservation and heat insulation of the composite board assembly 1 are improved, the bonding groove 10305 is used for increasing the contact area with the bonding agent, the bonding effect is improved, the first sunk groove 5 and the second sunk groove 9 are used for accommodating the sunk plate 1101, and the locking insertion mechanism 11 is located on the side edge of the composite board assembly 1, the aesthetic degree of the composite board assembly 1 is improved, the through hole 1108 is used for connecting the two groove holes 1107, the substrate layer 104 is used for installing the built-in metal skeleton layer 103 and the antibacterial layer 105, the antibacterial layer 105 is a silver nitrate coating, the antibacterial ability of the composite board assembly 1 is improved, the growth of bacteria is reduced, the corrosion-resistant layer 106 is an epoxy resin coating, the corrosion resistance of the composite board assembly 1 is improved, and the waterproof layer 107 is a polyurethane waterproof coating, the waterproof ability of the composite board assembly 1 is improved.

[0035] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the present application can be implemented in other particular forms without departing from the spirit or essential characteristics of the present application. The embodiments should therefore be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims with respect to the figures of the patent document.

Claims

1. LAS ultra-high temperature composite plate, comprising a composite plate assembly (1), characterized in that: A sliding rail (2) is installed on one side of the composite plate assembly (1), and a sliding slot (3) is provided at the center of one side of the sliding rail (2). Two first countersunk grooves (5) are symmetrically provided at both ends of the sliding rail (2), and two first cross grooves (4) are provided at the centers of the two first countersunk grooves (5). Two first arc grooves (6) are symmetrically provided on one side of the two first countersunk grooves (5), and two locking plug-in mechanisms (11) are installed inside the two first countersunk grooves (5). The other side of the composite plate assembly (1) is provided with an insert (8), and two second countersunk grooves (9) are symmetrically provided on both ends of the insert (8), two second cross grooves (7) are provided in the centers of the two second countersunk grooves (9), and two second arc grooves (10) are provided on one side of the two second countersunk grooves (9); The composite plate assembly (1) comprises a LAS layer (101), an ultra-high temperature heat-resistant layer (102), a built-in metal skeleton layer (103), a substrate layer (104), an antibacterial layer (105), an anti-corrosion layer (106) and a waterproof layer (107); the built-in metal skeleton layer (103) is provided on top of the substrate layer (104); the ultra-high temperature heat-resistant layer (102) is provided on top of the built-in metal skeleton layer (103); and the LAS layer (101) is provided on top of the ultra-high temperature heat-resistant layer (102); The built-in metal skeleton layer (103) comprises a metal skeleton plate (10301), a frame (10302), a metal mesh (10303), a receiving groove (10304), a bonding groove (10305) and a ceramic heat insulation plate (10306); the metal skeleton plate (10301) is installed on the top of the substrate layer (104); the frame (10302) is installed on the periphery of the top of the metal skeleton plate (10301); the receiving grooves (10304) are evenly opened on the top of the metal skeleton plate (10301); the ceramic heat insulation plate (10306) is installed inside the receiving groove (10304); and polyurethane is filled between the ceramic heat insulation plate (10306) and the receiving groove (10304); The locking plug-in mechanism (11) comprises a countersunk plate (1101), a cross plug plate (1102), an elastic block (1103), a conical head (1104), a tensioning strip (1105), a plug column (1106), a groove hole (1107), a through hole (1108) and a friction strip (1109), wherein the two first countersunk grooves (5) are both internally installed with a countersunk plate (1101), and two plug columns (1106) are installed at the bottom center of the two countersunk plates (1101), and two cross plug plates (1102) are symmetrically installed on the outer circumference of the top of the two plug columns (1106), and tensioning strips (1105) are evenly installed on both sides of the two cross plug plates (1102), and the two cross plug plates (1102) are cross-distributed; A through hole (1108) is provided at the center of one side of the countersunk plate (1101), and two groove holes (1107) are symmetrically provided on both sides of the center of the top of the countersunk plate (1101); Sixteen elastic clamping blocks (1103) are symmetrically installed at the bottom of the outer circumference of the two plug-in columns (1106), and one side of the sixteen elastic clamping blocks (1103) is an arc surface. Friction strips (1109) are evenly installed on one side of the sixteen elastic clamping blocks (1103), and a conical head (1104) is installed at the bottom of the plug-in column (1106).

2. The LAS ultra-high temperature composite panel according to claim 1, characterized in that: An antibacterial layer (105) is provided at the bottom of the substrate layer (104), an anti-corrosion layer (106) is provided at the bottom of the antibacterial layer (105), and a waterproof layer (107) is provided at the bottom of the anti-corrosion layer (106).

3. The LAS ultra-high temperature composite panel according to claim 1, characterized in that: A metal mesh (10303) is installed on the top of the metal skeleton plate (10301), and bonding grooves (10305) are evenly arranged at positions near the frame (10302) on the top of the metal skeleton plate (10301).

4. The LAS ultra-high temperature composite panel according to claim 3, characterized in that: The interior of the bonding groove (10305) and the interior of the frame (10302) are both filled with adhesive.

Citation Information

Patent Citations

  • Ultrahigh-temperature fire-resistant composite insulation board

    CN214983886U

  • Foam board convenient to splice

    CN218985959U

  • Polymer solid wood composite flooring and preparation method thereof

    US20230072645A1