CN220414665U - Deformation-and-displacement-preventing sandwich panel - Google Patents

Deformation-and-displacement-preventing sandwich panel Download PDF

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Publication number
CN220414665U
CN220414665U CN202321847951.3U CN202321847951U CN220414665U CN 220414665 U CN220414665 U CN 220414665U CN 202321847951 U CN202321847951 U CN 202321847951U CN 220414665 U CN220414665 U CN 220414665U
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China
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deformation
preventing
shifting
layer
displacement
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CN202321847951.3U
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Chinese (zh)
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陈祖来
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Zhanhong Energy Saving Technology Co ltd
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Zhanhong Energy Saving Technology Co ltd
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Abstract

The utility model discloses a deformation-displacement-preventing sandwich board, and particularly relates to the field of building boards. The utility model provides a deformation-shift-preventing sandwich panel, which comprises a panel body, wherein the panel body comprises two metal plates, a silicane layer, a rock wool layer and a deformation-preventing layer, the two metal plates are oppositely arranged in the up-down direction, the silicane layer comprises two layers, the two silicane layers are oppositely arranged in the up-down direction, the two silicane layers are arranged between the two metal plates, the rock wool layer is arranged between the two silicane layers, the deformation-preventing layer is arranged on the silicane layer, a first displacement-preventing mechanism is arranged between the silicane layer and the rock wool layer, and a second displacement-preventing mechanism is arranged between the metal plates and the silicane layer.

Description

Deformation-and-displacement-preventing sandwich panel
Technical Field
The utility model relates to the field of building boards, in particular to a deformation-and displacement-preventing sandwich board.
Background
The color steel sandwich board is a common product in the current building materials, not only can well realize flame retardance, sound insulation, but also is environment-friendly and efficient, is formed by pressing an upper metal panel layer, a lower metal panel layer and a middle polymer heat insulation inner core layer, and has the characteristics of simplicity and convenience in installation, light weight, environment friendliness and high efficiency.
At present, the color steel sandwich panel has no deformation preventing structure, when encountering external force impact, bending deformation is easy to occur, meanwhile, as the color steel sandwich panel is of a composite multi-layer structure, layers are bonded through glue, and the color steel sandwich panel lacks a displacement preventing structure, when bending deformation occurs, displacement is easy to occur between the layers, and damage is further caused to the color steel sandwich panel.
Disclosure of Invention
The utility model aims to overcome the technical problems and provide the deformation-displacement-preventing sandwich panel.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows: the utility model provides a sandwich panel of preapring for an unfavorable turn of events shape aversion, includes the plate body, the plate body includes metal sheet, stratum silicate, rock wool layer, preapring for an unfavorable turn of events shape layer, the metal sheet includes two, and two metal sheets dispose relatively in upper and lower direction, the stratum silicate includes two-layer, and two-layer stratum silicate is located between two metal sheets, the rock wool layer sets up between two-layer stratum silicate, preapring for an unfavorable turn of events shape layer set up in on the stratum silicate, wherein, the stratum silicate with be equipped with first anti-shift mechanism between the stratum silicate, the metal sheet with be equipped with second anti-shift mechanism between the stratum silicate.
Further, the first anti-shifting mechanism comprises a first anti-shifting groove and a first anti-shifting block, the first anti-shifting groove is formed in the rock wool layer, the first anti-shifting block is arranged on the silicon layer, the first anti-shifting block is installed in the first anti-shifting groove, the first anti-shifting groove comprises a plurality of first anti-shifting grooves which are uniformly distributed on the rock wool layer, the first anti-shifting block comprises a plurality of first anti-shifting blocks, and the plurality of first anti-shifting blocks are uniformly distributed on the silicon layer.
Further, the second anti-shifting mechanism comprises a second anti-shifting groove and a second anti-shifting block, the second anti-shifting groove is formed in the metal plate, the second anti-shifting block is arranged on the silicon layer, the second anti-shifting block is installed in the second anti-shifting groove, the second anti-shifting groove comprises a plurality of second anti-shifting grooves, the plurality of second anti-shifting grooves are uniformly arranged on the metal plate, the second anti-shifting block comprises a plurality of second anti-shifting blocks, and the plurality of second anti-shifting blocks are uniformly arranged on the silicon layer.
Further, the cross sections of the first anti-displacement groove, the first anti-displacement block, the second anti-displacement groove and the second anti-displacement block are all isosceles trapezoid structures.
Further, the deformation-preventing layer comprises deformation-preventing cross bars and deformation-preventing longitudinal bars, the deformation-preventing cross bars and the deformation-preventing longitudinal bars are all provided with a plurality of deformation-preventing cross bars and the deformation-preventing longitudinal bars which are arranged in a crossing manner, wherein the silicalite layer is provided with transverse deformation-preventing grooves and longitudinal deformation-preventing grooves, the deformation-preventing cross bars are arranged in the transverse deformation-preventing grooves, and the deformation-preventing longitudinal bars are arranged in the longitudinal deformation-preventing grooves.
Further, the metal plate is a color-coated steel plate, a stainless steel plate or an aluminum plate.
Further, the thickness of the metal plate is 0.4-0.8mm.
Further, the effective length of the plate body is 1000-1200mm.
As can be seen from the above description of the present utility model, compared with the prior art, the present utility model provides a deformation-displacement-preventing sandwich panel, which has the following advantages: the deformation-resistant and displacement-resistant sandwich board comprises a board body, wherein the board body comprises two metal plates, a silicane layer, a rock wool layer and deformation-resistant layers, the two metal plates are oppositely arranged in the vertical direction, the silicane layer comprises two layers, the two silicane layers are oppositely arranged in the vertical direction, the two silicane layers are arranged between the two metal plates, the rock wool layer is arranged between the two silicane layers, the deformation-resistant layers are arranged on the silicane layer, the bending resistance of the board body is improved through the deformation-resistant layers, the board body cannot be easily subjected to bending deformation when being impacted by external force, meanwhile, a first displacement-resistant mechanism is arranged between the silicane layer and the rock wool layer, and a second displacement-resistant mechanism is arranged between the metal plates and the silicane layer, so that a displacement phenomenon cannot easily occur when the board body is bent between the silicane layer and the rock wool layer, and the metal plates are further prevented from being damaged.
Drawings
Fig. 1 is a schematic view of the overall structure of the deformation-displacement-preventing sandwich panel of the present utility model.
Fig. 2 is an exploded view of the deformation-displacement preventing sandwich panel of the present utility model.
Fig. 3 is a schematic structural view of a silicon layer.
Fig. 4 is a schematic structural view of the deformation preventing layer.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the present utility model without making any inventive effort, shall fall within the scope of the present utility model.
Referring to fig. 1-4, a deformation-displacement-preventing sandwich panel comprises a panel body 1, wherein the panel body 1 comprises a metal plate 11, a silicalite layer 12, a rock wool layer 13 and a deformation-preventing layer 14, the metal plate 11 comprises two metal plates 11, the two metal plates 11 are oppositely arranged in the vertical direction, the silicalite layer 12 comprises two layers, the two silicalite layers 12 are oppositely arranged in the vertical direction, the two silicalite layers 12 are positioned between the two metal plates 11, the rock wool layer 13 is arranged between the two silicalite layers 12, the deformation-preventing layer 14 is arranged on the silicalite layers 12, wherein the bending strength of the panel body 1 is improved through the deformation-preventing layer 14, so that the panel body 1 is not easy to bend and deform when being impacted by external force, meanwhile, a first displacement-preventing mechanism 2 is arranged between the silicalite layer 12 and the rock wool layer 13, and a second displacement-preventing mechanism 3 is arranged between the metal plate 11 and the silicalite layer 12, so that the deformation-preventing layer 14 is not easy to damage the panel body 1 when the panel body 1 is further bent.
The first anti-shifting mechanism 2 comprises a first anti-shifting groove 21 and a first anti-shifting block 22, the first anti-shifting groove 21 is formed in the rock wool layer 13, the first anti-shifting block 22 is formed in the silica layer 12, the first anti-shifting block 22 is installed in the first anti-shifting groove 21, the first anti-shifting groove 21 comprises a plurality of first anti-shifting grooves 21 which are uniformly distributed on the rock wool layer 13, the first anti-shifting block 22 comprises a plurality of first anti-shifting blocks 22 which are uniformly distributed on the silica layer 12, and the number of the first anti-shifting blocks 22 is equal to the number of the first anti-shifting grooves 21.
The second anti-shifting mechanism 3 comprises a second anti-shifting groove 31 and a second anti-shifting block 32, the second anti-shifting groove 31 is arranged on the metal plate 11, the second anti-shifting block 32 is arranged on the silicalite layer 12, the second anti-shifting block 32 is arranged in the second anti-shifting groove 31, the second anti-shifting groove 31 comprises a plurality of second anti-shifting grooves 31 which are uniformly arranged on the metal plate 11, the second anti-shifting block 32 comprises a plurality of second anti-shifting blocks 32 which are uniformly arranged on the silicalite layer 12, and the number of the second anti-shifting blocks 32 is equal to the number of the second anti-shifting grooves 31.
The first anti-displacement groove 21, the first anti-displacement block, the second anti-displacement groove 31 and the second anti-displacement block 32 are all isosceles trapezoid structures in cross section, so that the first anti-displacement block 22 is conveniently inserted into the first anti-displacement groove 21 and the second anti-displacement block 32 is conveniently inserted into the second anti-displacement groove 31 during production.
The deformation-preventing layer 14 comprises deformation-preventing cross bars 141 and deformation-preventing longitudinal bars 142, the deformation-preventing cross bars 141 and the deformation-preventing longitudinal bars 142 are all provided with a plurality of deformation-preventing cross bars 141 and the deformation-preventing longitudinal bars 142 which are arranged in a crossing manner, wherein the silicalite layer 12 is provided with transverse deformation-preventing grooves 121 and longitudinal deformation-preventing grooves 122, the deformation-preventing cross bars 141 are arranged in the transverse deformation-preventing grooves 121, and the deformation-preventing longitudinal bars 142 are arranged in the longitudinal deformation-preventing grooves 122.
The metal plate 11 is a color-coated steel plate, a stainless steel plate or an aluminum plate.
The thickness of the metal plate 11 is 0.4-0.8mm.
The effective length of the plate body 1 is 1000-1200mm.
The deformation and displacement preventing sandwich panel provided by the utility model has the following advantages: the deformation-resistant and displacement-resistant sandwich board comprises a board body, wherein the board body comprises two metal plates, a silicane layer, a rock wool layer and deformation-resistant layers, the two metal plates are oppositely arranged in the vertical direction, the silicane layer comprises two layers, the two silicane layers are oppositely arranged in the vertical direction, the two silicane layers are arranged between the two metal plates, the rock wool layer is arranged between the two silicane layers, the deformation-resistant layers are arranged on the silicane layer, the bending resistance of the board body is improved through the deformation-resistant layers, the board body cannot be easily subjected to bending deformation when being impacted by external force, meanwhile, a first displacement-resistant mechanism is arranged between the silicane layer and the rock wool layer, and a second displacement-resistant mechanism is arranged between the metal plates and the silicane layer, so that a displacement phenomenon cannot easily occur when the board body is bent between the silicane layer and the rock wool layer, and the metal plates are further prevented from being damaged.
The foregoing is merely a few specific embodiments of the present utility model, but the design concept of the present utility model is not limited thereto, and any insubstantial modification of the present utility model by using the concept should be construed as infringement of the protection scope of the present utility model.

Claims (8)

1. A deformation-displacement-preventing sandwich panel, characterized in that: the anti-deformation plate comprises a plate body, wherein the plate body comprises two metal plates, a silicane layer, a rock wool layer and an anti-deformation layer, the two metal plates are oppositely arranged in the up-down direction, the silicane layer comprises two layers, the two silicane layers are oppositely arranged in the up-down direction, the two silicane layers are arranged between the two metal plates, the rock wool layer is arranged between the two silicane layers, the anti-deformation layer is arranged on the silicane layer, a first anti-displacement mechanism is arranged between the silicane layer and the rock wool layer, and a second anti-displacement mechanism is arranged between the metal plates and the silicane layer.
2. The deformation-displacement preventing sandwich panel according to claim 1, wherein: the first anti-shifting mechanism comprises a first anti-shifting groove and a first anti-shifting block, the first anti-shifting groove is formed in the rock wool layer, the first anti-shifting block is arranged on the silicon layer, the first anti-shifting block is installed in the first anti-shifting groove, the first anti-shifting groove comprises a plurality of first anti-shifting grooves, the plurality of first anti-shifting grooves are uniformly arranged on the rock wool layer, the first anti-shifting block comprises a plurality of first anti-shifting blocks, and the plurality of first anti-shifting blocks are uniformly arranged on the silicon layer.
3. The deformation-displacement preventing sandwich panel according to claim 2, characterized in that: the second prevents shifting mechanism including the second prevent shifting groove, the second prevent shifting the piece, the second prevent shifting the groove set up in on the metal sheet, the second prevent shifting the piece set up in on the stratum, the second prevent shifting the piece install in the second prevent shifting the inslot, wherein, the second prevent shifting the groove including a plurality of, a plurality of second prevent shifting the groove evenly arrange in on the metal sheet, the second prevent shifting the piece including a plurality of, a plurality of second prevent shifting the piece evenly arrange in on the stratum.
4. A deformation-displacement preventing sandwich panel according to claim 3, characterized in that: the cross sections of the first anti-shifting groove, the first anti-shifting block, the second anti-shifting groove and the second anti-shifting block are all isosceles trapezoid structures.
5. The deformation-displacement preventing sandwich panel according to claim 1, wherein: the deformation-preventing layer comprises deformation-preventing cross bars and deformation-preventing longitudinal bars, the deformation-preventing cross bars and the deformation-preventing longitudinal bars are all provided with a plurality of deformation-preventing cross bars, the deformation-preventing cross bars and the deformation-preventing longitudinal bars are arranged in a crossing manner in a transverse and longitudinal mode, the silicalite layer is provided with transverse deformation-preventing grooves and longitudinal deformation-preventing grooves, the deformation-preventing cross bars are arranged in the transverse deformation-preventing grooves, and the deformation-preventing longitudinal bars are arranged in the longitudinal deformation-preventing grooves.
6. The deformation-displacement preventing sandwich panel according to claim 1, wherein: the metal plate is a color-coated steel plate, a stainless steel plate or an aluminum plate.
7. The deformation-displacement preventing sandwich panel according to claim 1, wherein: the thickness of the metal plate is 0.4-0.8mm.
8. The deformation-displacement preventing sandwich panel according to claim 1, wherein: the effective length of the plate body is 1000-1200mm.
CN202321847951.3U 2023-07-14 2023-07-14 Deformation-and-displacement-preventing sandwich panel Active CN220414665U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321847951.3U CN220414665U (en) 2023-07-14 2023-07-14 Deformation-and-displacement-preventing sandwich panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321847951.3U CN220414665U (en) 2023-07-14 2023-07-14 Deformation-and-displacement-preventing sandwich panel

Publications (1)

Publication Number Publication Date
CN220414665U true CN220414665U (en) 2024-01-30

Family

ID=89657338

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321847951.3U Active CN220414665U (en) 2023-07-14 2023-07-14 Deformation-and-displacement-preventing sandwich panel

Country Status (1)

Country Link
CN (1) CN220414665U (en)

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