Honeycomb aluminum plate composite stone sheet
Technical Field
The utility model relates to the field of stone plates, in particular to a honeycomb aluminum plate composite stone thin plate.
Background
The stone plate is a natural or artificial stone plate and is widely applied to building decoration and home design;
In the Chinese patent of CN202222524975.7, a composite stone plate which can be mutually embedded is disclosed, the convex blocks are inserted into the grooves through the matching between the convex blocks and the grooves, the right composite stone plate is parallel to the left composite stone plate, and the right composite stone plate is pushed leftwards, so that the convex blocks on the right composite stone plate are completely inserted into the left composite stone plate, the outer walls of the convex blocks are mutually embedded with the inner walls of the grooves due to the clearance matching between the convex blocks and the grooves, the embedding is more firm, the cement mortar is not needed to be purely used for embedding, the edge of the composite stone plate is free from the convex phenomenon, and the two composite stone plates can be always in an embedded state, so that the use effect is improved;
The traditional stone plate has the advantages of strong decoration and good durability, but has the problems of large weight, easy fragmentation, complex installation and the like, while the honeycomb aluminum plate has the characteristics of light weight, shock resistance, sound insulation, heat insulation and the like, but has weaker surface decoration, and the flame retardant property of the traditional stone plate needs to be improved, so the honeycomb aluminum plate composite stone plate is provided.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model aims to provide the honeycomb aluminum plate composite stone sheet, the honeycomb aluminum plate component and the stone substrate are bonded together, so that the stone plate is light, the decoration of the honeycomb aluminum plate can be improved, the aperture of a honeycomb core is 5-20 mm, the thickness of the aluminum plate is 0.3-1.5 mm, the stone substrate can be natural stone or artificial stone sheet with the thickness of 0.5-2 mm, the aluminum honeycomb core is filled with a flame-retardant core material, the flame can be prevented from directly contacting the honeycomb aluminum plate or a stone layer, the spread of fire is delayed, part of flame-retardant materials (such as expanded graphite) are subjected to thermal expansion, inert gases are released, oxygen is diluted, the combustion chain reaction is blocked, phase-change material microcapsules such as paraffin and fatty acid are filled, heat absorption/release can be carried out at a phase-change temperature (20-30 ℃) and environmental temperature fluctuation is regulated through latent heat storage, for example, solar heat is absorbed in the day (solid-liquid state) and the energy consumption of an air conditioner in a building is reduced at night, and the environment is more energy-saving and environment-friendly.
The technical aim of the utility model is realized by the following technical scheme:
the honeycomb aluminum plate composite stone sheet comprises a stone substrate, wherein the upper end of the stone substrate is connected with a honeycomb aluminum plate component, and the outside of the honeycomb aluminum plate component is connected with a connecting component;
The honeycomb aluminum plate assembly comprises an aluminum honeycomb core, aluminum plate bodies are adhered to the upper end and the lower end of the aluminum honeycomb core, a flame-retardant core material is filled in the aluminum honeycomb core, phase-change material microcapsules are filled in the aluminum honeycomb core, a fiber reinforcement layer is adhered to the lower end of the aluminum plate body through a first excessive adhesive layer, a second excessive adhesive layer is adhered to a stone substrate at the lower end of the fiber reinforcement layer, and an edge-covered aluminum profile is fixedly connected to the edges of the aluminum honeycomb core and the aluminum plate body.
The honeycomb aluminum plate component and the stone substrate are bonded together, so that the stone plate is light, the decoration property of the honeycomb aluminum plate can be improved, the aperture of the honeycomb core can be 5mm-20mm, the thickness of the aluminum plate can be 0.3mm-1.5mm, the stone substrate can be natural stone or artificial stone thin plate with the thickness of 0.5mm-2mm, flame can be prevented from directly contacting the honeycomb aluminum plate or stone layer by filling the flame-retardant core material in the aluminum honeycomb core, the spread of fire is delayed, part of flame-retardant materials (such as expanded graphite) are expanded when encountering heat, inert gas is released, oxygen is diluted, combustion chain reaction is blocked, phase-change material microcapsules such as paraffin and fatty acid are filled, heat absorption/release can be realized at the phase-change temperature (20-30 ℃) and environmental temperature fluctuation is regulated through latent heat storage, for example, solar heat energy absorption (solid-liquid state) is realized in daytime, heat release (liquid-solid state) is realized at night, air conditioner energy consumption in a building is reduced, and the environment is more energy-saving and environment-friendly.
Further, the lower end of the stone substrate is coated with a primer layer, and the lower end of the primer layer is coated with a silver ion nano coating.
The surface adhesion force of the stone material can be enhanced by coating the primer layer, the defects of the stone material surface are filled, the adhesion of other coatings is facilitated, the antibacterial and mildew-proof effects of the stone substrate can be improved by coating the silver ion nano-coating, the organic matters (such as grease and dust) can be decomposed by the catalytic action of nano-silver, and the cleaning frequency is reduced.
Further, the connecting assembly comprises a first fixing plate, the first fixing plate is embedded at the left end of the edge-covering aluminum profile, the first fixing plate is detachably connected with the edge-covering aluminum profile through a locking screw, and the locking screw is in threaded connection with the first fixing plate and the edge-covering aluminum profile.
Further, the front end of the edge-covering aluminum profile is embedded with a second fixing plate, the second fixing plate is detachably connected with the edge-covering aluminum profile through a locking screw, and the locking screw is in threaded connection with the second fixing plate and the edge-covering aluminum profile.
Further, the left end fixedly connected with inserts first of fixed plate, insert first is equidistant the arranging.
Further, the front end of the second fixing plate is fixedly connected with a second inserting block, and the second inserting blocks are distributed at equal intervals.
Further, a first slot is formed in the right end of the edge-covering aluminum profile and the right end of the honeycomb aluminum plate component, and a second slot is formed in the rear end of the edge-covering aluminum profile and the rear end of the honeycomb aluminum plate component.
Further, the first plug is matched with the first slot, and the second plug is matched with the second slot.
In summary, the utility model has the following beneficial effects:
1. The honeycomb aluminum plate component and the stone substrate are bonded together, so that the stone plate is light, the decoration property of the honeycomb aluminum plate can be improved, the aperture of the honeycomb core can be 5mm-20mm, the thickness of the aluminum plate can be 0.3mm-1.5mm, the stone substrate can be natural stone or artificial stone thin plate with the thickness of 0.5mm-2mm, flame can be prevented from directly contacting the honeycomb aluminum plate or stone layer by filling the flame-retardant core material in the aluminum honeycomb core, the spread of fire is delayed, part of flame-retardant materials (such as expanded graphite) are expanded when encountering heat, inert gas is released, oxygen is diluted, combustion chain reaction is blocked, phase-change material microcapsules such as paraffin and fatty acid are filled, heat absorption/release can be realized at the phase-change temperature (20-30 ℃) and environmental temperature fluctuation is regulated by storing latent heat, for example, solar heat energy (solid-liquid state) is absorbed in daytime, heat (liquid-solid state) is released at night, air conditioner energy consumption in a building is reduced, and the honeycomb aluminum plate component is more energy-saving and environment-friendly;
2. The surface adhesion force of the stone material can be enhanced by coating the primer layer, the defects of the stone material surface are filled, the adhesion of other coatings is facilitated, the antibacterial and mildew-proof effects of the stone substrate can be improved by coating the silver ion nano-coating, the organic matters (such as grease and dust) can be decomposed by the catalytic action of nano-silver, and the cleaning frequency is reduced.
Drawings
FIG. 1 is a schematic view of the overall structure in the present embodiment;
FIG. 2 is a schematic diagram of a first slot and a second slot in the present embodiment;
FIG. 3 is a schematic view of the cross-section of the present embodiment;
Fig. 4 is a schematic top view of the aluminum honeycomb core in the present embodiment;
fig. 5 is a schematic structural view at a in fig. 3 in the present embodiment.
In the figure, 1, a stone substrate, 2, a honeycomb aluminum plate component, 201, an aluminum honeycomb core, 202, an aluminum plate body, 203, a flame-retardant core material, 204, a phase change material microcapsule, 205, a first excessive bonding layer, 206, a fiber reinforced layer, 207, a second excessive bonding layer, 208, an edge-covered aluminum profile, 209, a primer layer, 210, a silver ion nano coating, 3, a connecting component, 301, a first fixing plate, 302, a locking screw, 303, a second fixing plate, 304, a first inserting block, 305, a second inserting block, 306, a first inserting groove, 307 and a second inserting groove.
Detailed Description
The present utility model will be described in further detail with reference to the accompanying drawings.
Wherein like parts are designated by like reference numerals. It should be noted that the words "front", "back", "left", "right", "upper" and "lower" used in the following description refer to directions in the drawings, and the words "bottom" and "top", "inner" and "outer" refer to directions toward or away from, respectively, the geometric center of a particular component.
Referring to fig. 1-5, a honeycomb aluminum plate composite stone sheet in a preferred embodiment of the present utility model comprises a stone substrate 1, wherein the upper end of the stone substrate 1 is connected with a honeycomb aluminum plate assembly 2, and the outside of the honeycomb aluminum plate assembly 2 is connected with a connecting assembly 3;
The honeycomb aluminum plate assembly 2 comprises an aluminum honeycomb core 201, aluminum plate bodies 202 are adhered to the upper end and the lower end of the aluminum honeycomb core 201, a flame-retardant core material 203 is filled in the aluminum honeycomb core 201, a phase-change material microcapsule 204 is filled in the aluminum honeycomb core 201, a fiber reinforcement layer 206 is adhered to the lower end of the lower aluminum plate body 202 through a first excessive adhesive layer 205, the lower end of the fiber reinforcement layer 206 is adhered to a stone substrate 1 through a second excessive adhesive layer 207, and an edge-covered aluminum profile 208 is fixedly connected to the edges of the aluminum honeycomb core 201 and the aluminum plate body 202.
By bonding the honeycomb aluminum plate component 2 and the stone substrate 1 together, the lightweight stone plate can be realized, the decoration property of the honeycomb aluminum plate can be improved, the aperture of the honeycomb core can be 5mm-20mm, the thickness of the aluminum plate can be 0.3mm-1.5mm, the stone substrate 1 can be natural stone or artificial stone thin plate with the thickness of 0.5mm-2mm, the aluminum honeycomb core 201 is filled with the flame-retardant core material 203, the flame can be prevented from directly contacting the honeycomb aluminum plate or stone layer, the spread of fire is delayed, part of flame-retardant materials (such as expanded graphite) are expanded when being heated, inert gases are released, oxygen is diluted, the combustion chain reaction is blocked, heat absorption/release can be realized at the phase change temperature (20-30 ℃) through filling phase change material microcapsules 204 such as paraffin and fatty acid, and environmental temperature fluctuation is regulated through latent heat storage, for example, solar heat (solid-liquid state) is absorbed in daytime, heat release (liquid-state) is reduced, air conditioner energy consumption in a building is reduced, more energy is saved, and the aluminum profile 208 is arranged to protect the aluminum honeycomb core 201 and the aluminum plate 202 are fixed.
Referring to fig. 1 to 5, the lower end of the stone substrate 1 is coated with a primer layer 209, and the lower end of the primer layer 209 is coated with a silver ion nano-coating 210.
The primer layer 209 is coated to enhance the interfacial adhesion, fill the defects of stone surface, facilitate the adhesion of other coatings, and the silver ion nano-coating 210 is coated to improve the antibacterial and mildew-proof effects of the stone substrate 1, so that the catalysis of nano-silver can decompose organic matters (such as grease and dust) and reduce the cleaning frequency.
Referring to fig. 1-5, the connecting assembly 3 includes a first fixing plate 301, the first fixing plate 301 is embedded in the left end of the aluminum profile 208, the first fixing plate 301 is detachably connected with the aluminum profile 208 through a locking screw 302, and the locking screw 302 is in threaded connection with both the first fixing plate 301 and the aluminum profile 208.
Referring to fig. 1-5, a second fixing plate 303 is embedded in the front end of the edge-covering aluminum profile 208, the second fixing plate 303 is detachably connected with the edge-covering aluminum profile 208 through a locking screw 302, and the locking screw 302 is in threaded connection with the second fixing plate 303 and the edge-covering aluminum profile 208.
Through the embedding of the first fixing plate 301 and the second fixing plate 303 with the edge-covering aluminum profile 208 respectively and the fixation of the first fixing plate 301, the second fixing plate 303 and the edge-covering aluminum profile 208 through the locking screw 302, the installation and the disassembly between the first fixing plate 301, the second fixing plate 303 and the edge-covering aluminum profile 208 can be facilitated, and the first fixing plate 301, the second fixing plate 303, the first inserting block 304 and the second inserting block 305 can be disassembled when the edge-covering aluminum profile is installed, so that the whole flatness of the edge of the plate is not affected.
Referring to fig. 1-5, a first insert block 304 is fixedly connected to the left end of the first fixing plate 301, and the first insert blocks 304 are equidistantly arranged.
Referring to fig. 1-5, the front end of the second fixing plate 303 is fixedly connected with the second insert blocks 305, and the second insert blocks 305 are equidistantly arranged.
Referring to fig. 1-5, a slot one 306 is formed at the right end of the hemming aluminum section 208 and the honeycomb aluminum plate assembly 2, and a slot two 307 is formed at the rear end of the hemming aluminum section 208 and the honeycomb aluminum plate assembly 2.
Referring to fig. 1-5, a first insert 304 is adapted to a first insert 306, and a second insert 305 is adapted to a second insert 307.
The first insert block 304 and the first slot 306 are arranged, so that the installation and the disassembly between two or more plates adjacent left and right can be facilitated, the first insert block 304 is inserted into the corresponding first slot 306 during installation, the second insert block 305 and the second slot 307 are arranged, the installation and the disassembly between two or more plates adjacent front and back can be facilitated, and the second insert block 305 is inserted into the corresponding second slot 307 during installation.
Bonding the honeycomb aluminum plate component 2 and the stone substrate 1 together, not only reducing the weight of the stone plate, but also improving the decoration of the honeycomb aluminum plate, wherein the aperture of the honeycomb core can be 5mm-20mm, the thickness of the aluminum plate can be 0.3mm-1.5mm, the stone substrate 1 can be natural stone or artificial stone thin plate with the thickness of 0.5mm-2mm, flame is prevented from directly contacting the honeycomb aluminum plate or stone layer by filling the flame-retardant core material 203 in the aluminum honeycomb core 201, the spreading of the fire is delayed, part of flame-retardant materials (such as expanded graphite) are expanded by heating, inert gas is released, oxygen is diluted and the combustion chain reaction is blocked, heat absorption/release can be realized at the phase-change temperature (20-30 ℃) by filling the phase-change material microcapsule 204 such as paraffin and fatty acid, and environmental temperature fluctuation is regulated by storing latent heat, for example, solar heat is absorbed in daytime (solid-liquid state) and night heat release (liquid-state) is reduced, air conditioner energy consumption in a building is more energy-saving and environment-friendly, and the aluminum profile 208 is provided, and the aluminum fixing effect can be realized on the honeycomb core 201 and the aluminum plate 202;
the primer layer 209 is coated to enhance the interfacial adhesion, fill the defects of the stone surface, facilitate the adhesion of other coatings, improve the antibacterial and mildew-proof effects of the stone substrate 1 by coating the silver ion nano-coating 210, and decompose organic matters (such as grease and dust) by the catalysis of nano-silver so as to reduce the cleaning frequency;
The first insert block 304 and the first slot 306 are arranged, so that the installation and the disassembly between two or more plates adjacent left and right can be facilitated, the first insert block 304 is inserted into the corresponding first slot 306 during the installation, the second insert block 305 and the second slot 307 are arranged, the installation and the disassembly between two or more plates adjacent front and back can be facilitated, and the second insert block 305 is inserted into the corresponding second slot 307 during the installation;
When the fixing plate I301, the fixing plate II 303, the insert block I304 and the insert block II 305 are detached when being installed at the edge, so that the whole flatness of the edge of the plate is not affected.
The foregoing has shown and described the basic principles and main features of the present utility model and the advantages of the present utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.