CN207500721U - A kind of high intensity alumina silicate thermal insulation board - Google Patents
A kind of high intensity alumina silicate thermal insulation board Download PDFInfo
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- CN207500721U CN207500721U CN201721637833.4U CN201721637833U CN207500721U CN 207500721 U CN207500721 U CN 207500721U CN 201721637833 U CN201721637833 U CN 201721637833U CN 207500721 U CN207500721 U CN 207500721U
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Abstract
The utility model discloses a kind of high intensity alumina silicate thermal insulation boards, including substrate connected in sequence from bottom to up, first partition, middle plate, second partition, top plate, substrate, first partition, middle plate, second partition, top plate is mutually parallel, substrate, middle plate is connect with first partition, middle plate, top plate is connect with second partition, the first partition includes first rectangular frame, the more steel wires parallel with first rectangular frame long side are installed in the first rectangular frame, the second partition includes second rectangular frame, the more steel wires parallel with first rectangular frame broadside are installed in the second rectangular frame, the substrate, middle plate, top plate is high density silicate aluminum board.Steel wire is added in the utility model one, not only there is the thermal insulation of traditional silicate aluminum board, but also with higher intensity.
Description
Technical field
The utility model is related to a kind of silicate aluminum boards, and in particular to a kind of high intensity alumina silicate thermal insulation board.
Background technology
Through 2000 DEG C or more furnace meltings, fiber and uniform is blown out by mechanical spray by selected high-quality flint clay for silicate aluminum board
Special binding agent is added in, oil-proofing agent, hydrophober is heated to be cured.It is mainly used for power industry, electric boiler, steam turbine
And nuclear power is heat-insulated, the fire-proof and thermal-insulation of the fire-proof and thermal-insulation of shipping industry, construction industry, fire resistant doorsets, chemical engineering industry high-temperature reaction equipment and
Wall liner, automobile, train manufacturing industry, fire prevention, heat-insulated, kiln lining-up, fire door, the head cover of heating equipment are close.
At present, China's silicate aluminum board heat-insulation and heat-preservation product category is various, all with good heat insulation and preservation effect, but intensity
It is low, do not have high-strength and overpressure resistant, resistance to drawing, so cannot be applied in the like environments such as cement plant rotation kiln cylinder body, limit
The application environment of silicate aluminum board is made.
Utility model content
Technical problem to be solved in the utility model is that the intensity of existing silicate aluminum board is low, and it is an object of the present invention to provide a kind of high
Intensity alumina silicate thermal insulation board solves the problems, such as that the intensity of existing silicate aluminum board is low.
The utility model is achieved through the following technical solutions:
A kind of high intensity alumina silicate thermal insulation board, including substrate connected in sequence from bottom to up, first partition, middle plate, second
Partition board, top plate, substrate, first partition, middle plate, second partition, top plate are mutually parallel, and substrate, middle plate are connect with first partition,
Middle plate, top plate are connect with second partition, and the first partition includes first rectangular frame, is installed in the first rectangular frame
There are the more steel wires parallel with first rectangular frame long side, the second partition includes second rectangular frame, second rectangle
The more steel wires parallel with first rectangular frame broadside are installed, the substrate, middle plate, top plate are high density silicic acid in frame
Aluminium sheet.
The utility model changes the structure of traditional silicate aluminum board, and the utility model had both had the heat-insulated of traditional silicate aluminum board
Property, and with higher intensity;Traditional silicate aluminum board position is an integral molding structure, and the utility model is formed using multilayered structure
Silicate aluminum board, and the first partition with steel wire, second partition are added in multilayered structure, steel wire can increase alumina silicate
The intensity of plate so that silicate aluminum board pressure resistance, resistance to drawing;The realization principle of the utility model is:Substrate, the are sequentially compressed from bottom to up
One partition board, middle plate, second partition, top plate, middle plate is between first partition and second partition so that the maximum intensity of middle plate, tool
There are stronger pressure resistance, cutting resistance;First partition and second partition respectively play substrate, top plate supporting role, and base
Plate, top plate play the heat-blocking action of superficial layer;When external force pulls a kind of high intensity alumina silicate thermal insulation board of the utility model, need
Internal steel wire is broken and can tear high intensity alumina silicate thermal insulation board, and steel wire is difficult to break, therefore, this practicality is new
A kind of intensity of high intensity alumina silicate thermal insulation board of type is big, solves the problems, such as that the intensity of existing silicate aluminum board is low;The utility model
The mode of multi-layer framework is employed, once, a certain layer structure occurs damaged, can directly replace when layer structure, other layers remain unchanged energy
It is enough to use, and existing silicate aluminum board is integrated, it is whole all to use if being damaged, therefore, the silicon of the utility model
Sour aluminium sheet service life is long, and stock utilization is high, at low cost.
Fixed plate is provided between substrate and top plate, the fixed plate is located at the side of substrate and top plate, substrate and top plate
Fixed plate is both provided on two sides in relative position, is provided with what is connect with top plate upper face at the top of the fixed plate
First transverse slat, the base portion of the fixed plate are provided with the second transverse slat being connect with substrate lower face, fixed plate coated substrate,
First partition, middle plate, second partition, top plate side.Fixed plate is by substrate, first partition, middle plate, second in the utility model
Partition board, top plate side all connect, compression, fixed function are played to each layer;It only needs the first transverse slat and top plate
It is fixed, the second transverse slat is fixed with substrate, it will be able to compress each layer to centre, therefore, the height of fixed plate is less than substrate, the
The height that the uncompressed preceding heap of one partition board, middle plate, second partition, top plate comes;Connected between each plate it is closer, silicate aluminum board
Intensity is higher.The utility model just can be by substrate, first partition, middle plate, second partition, top plate using simple fixed plate
It compresses, it is easy to operate, it is at low cost, convenient for improving production efficiency.
Convex block is both provided on the two sides of the upper face of the first partition, the both sides of lower face, is set on substrate, middle plate
It is equipped with the groove being connect with the convex block in first partition;On the two sides of the upper face of the second partition, the both sides of lower face
Convex block is both provided with, the groove that connection is matched with the convex block on second partition is provided on top plate, middle plate.It is each in the utility model
It is connected between plate by convex block and groove, steel wire is enabled to closely to be connect with each layer.
Second partition is both connected to the convex block in the same side in first partition in the same groove of middle plate.On middle plate
Groove connect second partition and first partition simultaneously, cost-effective, the number of openings in reduction on plate, be conducive to improve in plate
Intensity.
The thickness of the middle plate is more than the thickness of top plate, and the thickness of top plate is equal with the thickness of substrate.The intensity of middle plate is most
Greatly, in the case where silicate aluminum board thickness really is certain, the thickness of plate in increase, it will be able to effectively enhance entire silicate aluminum board
Intensity.
The utility model compared with prior art, has the following advantages and advantages:
1st, add steel wire in a kind of high intensity alumina silicate thermal insulation board of the utility model, both have traditional silicate aluminum board every
It is hot, and with higher intensity;
2nd, a kind of high intensity alumina silicate thermal insulation board of the utility model employs the mode of multi-layer framework, once, a certain layer knot
Breakage occurs for structure, can directly replace when layer structure, and service life is long, and stock utilization is high;
3rd, a kind of high intensity alumina silicate thermal insulation board of the utility model also has at low cost, and density is big, the high spy of production efficiency
Point.
Description of the drawings
Attached drawing described herein is used for providing further understanding the utility model embodiment, forms the one of the application
Part does not form the restriction to the utility model embodiment.In the accompanying drawings:
FIG. 1 is a schematic structural view of the utility model.
Label and corresponding parts title in attached drawing:
1- substrates, 2- first partitions, plate in 3-, 4- second partitions, 5- top plates, 6- fixed plates, the first transverse slats of 7-, 8- second
Transverse slat, 9- convex blocks, 10- grooves.
Specific embodiment
For the purpose of this utility model, technical solution and advantage is more clearly understood, with reference to embodiment and attached drawing,
The utility model is described in further detail, and the exemplary embodiment and its explanation of the utility model are only used for explaining this
Utility model is not intended to limit the scope of the present invention.
Embodiment 1
As shown in Figure 1, a kind of high intensity alumina silicate thermal insulation board of the utility model, including substrate connected in sequence from bottom to up
1st, first partition 2, middle plate 3, second partition 4, top plate 5, substrate 1, first partition 2, middle plate 3, second partition 4, top plate 5 are mutually flat
Row, substrate 1, middle plate 3 are connect with first partition 2, and middle plate 3, top plate 5 are connect with second partition 4, and the first partition 2 is wrapped
First rectangular frame is included, the more steel wires parallel with first rectangular frame long side are installed in the first rectangular frame, it is described
Second partition 4 includes second rectangular frame, be equipped in the second rectangular frame more it is parallel with first rectangular frame broadside
Steel wire, the substrate 1, middle plate 3, top plate 5 are high density silicate aluminum board.The thickness of the middle plate 3 is more than the thickness of top plate 5
Degree, the thickness of top plate 5 are equal with the thickness of substrate 1.
The utility model changes the structure of traditional silicate aluminum board, and the utility model had both had the heat-insulated of traditional silicate aluminum board
Property, and with higher intensity;Traditional silicate aluminum board position is an integral molding structure, and the utility model is formed using multilayered structure
Silicate aluminum board, and the first partition with steel wire, second partition are added in multilayered structure, steel wire can increase alumina silicate
The intensity of plate so that silicate aluminum board pressure resistance, resistance to drawing;The realization principle of the utility model is:Substrate, the are sequentially compressed from bottom to up
One partition board, middle plate, second partition, top plate, middle plate is between first partition and second partition so that the maximum intensity of middle plate, tool
There are stronger pressure resistance, cutting resistance;First partition and second partition respectively play substrate, top plate supporting role, and base
Plate, top plate play the heat-blocking action of superficial layer;When external force pulls a kind of high intensity alumina silicate thermal insulation board of the utility model, need
Internal steel wire is broken and can tear high intensity alumina silicate thermal insulation board, and steel wire is difficult to break, therefore, this practicality is new
A kind of intensity of high intensity alumina silicate thermal insulation board of type is big, solves the problems, such as that the intensity of existing silicate aluminum board is low;The utility model
The mode of multi-layer framework is employed, once, a certain layer structure occurs damaged, can directly replace when layer structure, other layers remain unchanged energy
It is enough to use, and existing silicate aluminum board is integrated, it is whole all to use if being damaged, therefore, the silicon of the utility model
Sour aluminium sheet service life is long, and stock utilization is high, at low cost.
Embodiment 2
Based on embodiment 1, fixed plate 6 is provided between substrate 1 and top plate 5, the fixed plate 6 is located at substrate 1 and top plate 5
Side, substrate 1 and top plate 5, which are on the two sides of relative position, is both provided with fixed plate 6, and the top of the fixed plate 6 is set
The first transverse slat 7 being connect with 5 upper face of top plate is equipped with, the base portion of the fixed plate 6 is provided with what is connect with 5 lower face of substrate
Second transverse slat 8, fixed plate 6 have coated the side of substrate 1, first partition 2, middle plate 3, second partition 4, top plate 5.
Fixed plate all connects the side of substrate, first partition, middle plate, second partition, top plate in the utility model
Come, compression, fixed function are played to each layer;It only needs to fix the first transverse slat with top plate, the second transverse slat is fixed with substrate,
Each layer can just be compressed to centre, therefore, the height of fixed plate is less than substrate, first partition, middle plate, second partition, top plate
The height that uncompressed preceding heap comes;Connect closer between each plate, the intensity of silicate aluminum board is higher.The utility model utilizes
Simple fixed plate can just compress substrate, first partition, middle plate, second partition, top plate, easy to operate, at low cost, be convenient for
Improve production efficiency.
Embodiment 3
Based on above-described embodiment, it is both provided on the two sides of upper face of the first partition 2, the both sides of lower face convex
Block 9 is provided with the groove 10 being connect with the convex block 9 in first partition 2 on substrate 1, middle plate 3;The upper face of the second partition 4
Two sides, lower face both sides on be both provided with convex block 9, be provided on top plate 5, middle plate 3 and the convex block 9 on second partition 4
Match the groove 10 of connection.Second partition 4 is both connected to the same of middle plate 3 with being in the convex block 9 of the same side in first partition 2
In groove 10.
It is connected between each plate by convex block and groove in the utility model, steel wire is enabled to closely to connect with each layer
It connects.Groove on middle plate connects second partition and first partition simultaneously, cost-effective, the number of openings in reduction on plate, favorably
The intensity of plate in raising.
Above-described specific embodiment, the purpose of this utility model, technical solution and advantageous effect have been carried out into
One step is described in detail, it should be understood that the foregoing is merely specific embodiment of the present utility model, is not used to limit
Determine the scope of protection of the utility model, within the spirit and principle of the utility model, any modification for being made equally is replaced
It changes, improve, should be included within the scope of protection of this utility model.
Claims (5)
1. a kind of high intensity alumina silicate thermal insulation board, which is characterized in that including substrate (1) connected in sequence from bottom to up, first every
Plate (2), middle plate (3), second partition (4), top plate (5), substrate (1), first partition (2), middle plate (3), second partition (4), top
Plate (5) is mutually parallel, and substrate (1), middle plate (3) are connect with first partition (2), and middle plate (3), top plate (5) are and second partition
(4) it connects, the first partition (2) includes first rectangular frame, more and the first square are equipped in the first rectangular frame
The parallel steel wire of shape frame long side, the second partition (4) include second rectangular frame, are equipped in the second rectangular frame
The more steel wires parallel with first rectangular frame broadside, the substrate (1), middle plate (3), top plate (5) are high density alumina silicate
Plate.
2. a kind of high intensity alumina silicate thermal insulation board according to claim 1, which is characterized in that substrate (1) and top plate (5) it
Between be provided with fixed plate (6), the fixed plate (6) positioned at the side of substrate (1) and top plate (5), substrate (1) at top plate (5)
In being both provided with fixed plate (6) on the two sides of relative position, it is provided at the top of the fixed plate (6) and top plate (5) upper plate
The first transverse slat (7) of face connection, the base portion of the fixed plate (6) are provided with the second transverse slat being connect with substrate (1) lower face
(8), fixed plate (6) has coated the side of substrate (1), first partition (2), middle plate (3), second partition (4), top plate (5).
3. a kind of high intensity alumina silicate thermal insulation board according to claim 1, which is characterized in that the first partition (2)
Convex block (9) is both provided on the two sides of upper face, the both sides of lower face, be provided on substrate (1), middle plate (3) with first every
The groove (10) of convex block (9) connection on plate (2);On the two sides of upper face of the second partition (4), the both sides of lower face
Convex block (9) is both provided with, the groove that connection is matched with the convex block (9) on second partition (4) is provided on top plate (5), middle plate (3)
(10)。
A kind of 4. high intensity alumina silicate thermal insulation board according to claim 3, which is characterized in that second partition (4) and first
The convex block (9) in the same side is both connected in the same groove (10) of middle plate (3) on partition board (2).
A kind of 5. high intensity alumina silicate thermal insulation board according to claim 1, which is characterized in that the thickness of the middle plate (3)
More than the thickness of top plate (5), the thickness of top plate (5) is equal with the thickness of substrate (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721637833.4U CN207500721U (en) | 2017-11-30 | 2017-11-30 | A kind of high intensity alumina silicate thermal insulation board |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721637833.4U CN207500721U (en) | 2017-11-30 | 2017-11-30 | A kind of high intensity alumina silicate thermal insulation board |
Publications (1)
Publication Number | Publication Date |
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CN207500721U true CN207500721U (en) | 2018-06-15 |
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ID=62507181
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CN201721637833.4U Active CN207500721U (en) | 2017-11-30 | 2017-11-30 | A kind of high intensity alumina silicate thermal insulation board |
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CN (1) | CN207500721U (en) |
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2017
- 2017-11-30 CN CN201721637833.4U patent/CN207500721U/en active Active
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