CN210194928U - Wall heat-insulating net rack plate - Google Patents
Wall heat-insulating net rack plate Download PDFInfo
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- CN210194928U CN210194928U CN201920748740.1U CN201920748740U CN210194928U CN 210194928 U CN210194928 U CN 210194928U CN 201920748740 U CN201920748740 U CN 201920748740U CN 210194928 U CN210194928 U CN 210194928U
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- truss
- insulation board
- heat insulation
- net
- truss chord
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Abstract
The utility model provides a wall body heat preservation net rack board, including insulation board, fixed mesh piece and truss net piece, truss net piece align to grid alternates on insulation board, and the truss net piece includes inner truss chord member, outer truss chord member and a plurality of truss web members, and inner truss chord member, outer truss chord member and truss web members make up into slice net rack, and inner and outer truss chord member and fixed mesh piece or the cast-in-place wall's of building steel bar connection. The utility model has the advantages of good heat preservation effect, stable structure, high production efficiency and low production cost.
Description
Technical Field
The utility model relates to a building wall structure technical field especially relates to a wall body heat preservation net rack board.
Background
The building energy consumption accounts for about 30 percent of the total social energy consumption, and accounts for the largest proportion of the total social energy consumption, so the building energy conservation becomes the key for improving the energy utilization rate and reducing the pollution emission. The building heat preservation and structure integration technology integrates a building heat preservation function and a wall body enclosure function, can meet the existing building energy-saving standard without additionally taking heat preservation measures, realizes the novel building energy-saving technology which has the same service life as the wall body and meets the fire-fighting and fire-preventing requirements, and can effectively improve the building energy-saving effect. In current building heat preservation and structure integration technique, most heat preservation net rack board products pierce through the heated board with the steel wire through artifical plug wire and are connected with both sides wire net, and production efficiency is low, and manufacturing cost is high, and it is great to popularize and use the resistance. In addition, the heat preservation rack plate of the wire inserting production enables the heat preservation plate and the steel wire to be not tightly wrapped, the rack structure is unstable, and the heat preservation effect and the installation stability of the material are affected. Therefore, it is necessary to provide a wall insulation net rack plate to solve the above technical problems.
Disclosure of Invention
The utility model provides a technical problem provide a wall body heat preservation rack plate, this wall body heat preservation rack plate has the advantage that keeps warm effectually, and the structure is firm, and production efficiency is high, low in production cost.
In order to solve the technical problem, the utility model adopts the following technical scheme: the utility model provides a wall body heat preservation net rack board which characterized in that: the heat insulation board comprises a heat insulation board, fixing meshes and truss meshes, wherein the fixing meshes and the heat insulation board are distributed in parallel, 1 or 2 fixing meshes are distributed on the outer side of the heat insulation board when the number of the fixing meshes is 1, and are distributed on the inner side and the outer side of the heat insulation board when the number of the fixing meshes is 2, wherein the fixing meshes on the outer side of the heat insulation board are positioned in a heat insulation protective layer, and the fixing meshes on the inner side of the heat insulation board are used for being connected with steel bars of a cast-in-place wall of a; the truss net piece is provided with a plurality of truss net pieces, the truss net pieces are uniformly arranged and are inserted on the heat insulation board, each truss net piece comprises an inner truss chord member, an outer truss chord member and a plurality of truss web members, the inner truss chord member, the outer truss chord members and the truss web members are combined into a sheet-shaped grid frame, the inner truss chord members are located on the inner side of the heat insulation board, the outer truss chord members are located on the outer side of the heat insulation board, the truss web members penetrate through the heat insulation board to be connected between the inner truss chord members and the outer truss chord members, and the inner truss chord members and the outer truss chord.
Furthermore, the truss net sheets are distributed in a V shape or a splayed shape after penetrating through the heat insulation board.
Furthermore, the truss mesh is made of a metal material or a non-metal material with a small heat conductivity coefficient.
The utility model changes the wire insertion of the wall heat-insulating net frame plate into the truss net sheet, so that the truss net sheet can be manufactured in a factory in advance, and the truss net sheet is directly combined on the heat-insulating plate in the foaming process of the heat-insulating plate, thereby saving the wire insertion process and improving the production efficiency; the truss mesh is more accurately positioned, and the structure is more stable; the truss net sheets are connected with the heat insulation plates in a seamless mode, and the heat insulation performance of the wall heat insulation net frame plate is improved.
Drawings
Fig. 1 is a schematic view of a horizontal cross-sectional structure when the truss mesh of the wall heat-insulating mesh frame plate is distributed in a V shape.
Fig. 2 is a schematic view of the vertical structure of the truss mesh of the present invention.
Fig. 3 is a schematic view of a horizontal cross-sectional structure when the truss mesh of the wall heat-insulating mesh frame plate is distributed in a splayed shape.
The corresponding part names in the figure are: 1, insulating boards; 2, fixing the mesh sheet; 3, truss net sheets; 31 an inner chord; 32 outer chord and 33 truss web members.
Detailed Description
Referring to fig. 1 to 3, the utility model provides a composite heat insulation floor panel, which comprises a heat insulation board 1, a fixed net sheet 2 and a truss net sheet 3, wherein the fixed net sheet and the heat insulation board are distributed in parallel, the fixed net sheet has 1 or 2 pieces, when the fixed net sheet is 1 piece, the fixed net sheet is distributed outside the heat insulation board, when the fixed net sheet is 2 pieces, the fixed net sheet is distributed inside and outside the heat insulation board, wherein the fixed net sheet outside the heat insulation board is positioned in a heat insulation protective layer, and the fixed net sheet inside the heat insulation board is used for connecting with steel bars of a cast-in-place wall of a building; the truss net piece has a plurality of, and the truss net piece align to grid and alternates on insulation board, and the truss net piece includes inner truss chord member 31, outer truss chord member 32 and a plurality of truss web members 33, and inner truss chord member, outer truss chord member and truss web members make up into the slice grid frame, and inner truss chord member is located insulation board inboard, and outer truss chord member is located insulation board outside, and the truss web members pass insulation board and connect including truss chord member, outer truss chord member between, and inner, outer truss chord member is connected with the fixed net piece.
As shown in fig. 1, the truss mesh sheets are distributed in a V shape after penetrating through the thermal insulation board, the inner truss chord 31 is connected with the fixed mesh sheet on the inner side of the thermal insulation board, and the outer truss chord 32 is connected with the fixed mesh sheet on the outer side of the thermal insulation board.
As shown in fig. 3, the truss mesh sheets are distributed in an eight-shape after penetrating through the thermal insulation board, the inner truss chord 31 is connected with the fixed mesh sheet on the inner side of the thermal insulation board, and the outer truss chord 32 is connected with the fixed mesh sheet on the outer side of the thermal insulation board.
The utility model discloses change the plug wire of wall body heat preservation rack board into the truss net piece, like this, the truss net piece can adopt the metal material or the little non-metallic material of coefficient of heat conductivity to can make at mill earlier. The truss net sheets are directly combined on the heat insulation board in the foaming process of the heat insulation board, so that the wire inserting process is omitted, and the production efficiency is improved; the truss mesh is more accurately positioned, and the structure is more stable; the truss net sheets are connected with the heat insulation plates in a seamless mode, and the heat insulation performance of the wall heat insulation net frame plate is improved.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in any way, and those skilled in the art can make many variations and modifications of the technical solution of the present invention without departing from the scope of the technical solution of the present invention.
Claims (3)
1. The utility model provides a wall body heat preservation net rack board which characterized in that: the heat insulation board comprises a heat insulation board, fixing meshes and truss meshes, wherein the fixing meshes and the heat insulation board are distributed in parallel, 1 or 2 fixing meshes are distributed on the outer side of the heat insulation board when the number of the fixing meshes is 1, and are distributed on the inner side and the outer side of the heat insulation board when the number of the fixing meshes is 2, wherein the fixing meshes on the outer side of the heat insulation board are positioned in a heat insulation protective layer, and the fixing meshes on the inner side of the heat insulation board are used for being connected with steel bars of a cast-in-place wall of a; the truss net piece is provided with a plurality of truss net pieces, the truss net pieces are uniformly arranged and are inserted on the heat insulation board, each truss net piece comprises an inner truss chord member, an outer truss chord member and a plurality of truss web members, the inner truss chord member, the outer truss chord members and the truss web members are combined into a sheet-shaped grid frame, the inner truss chord members are located on the inner side of the heat insulation board, the outer truss chord members are located on the outer side of the heat insulation board, the truss web members penetrate through the heat insulation board to be connected between the inner truss chord members and the outer truss chord members, and the inner truss chord members and the outer truss chord.
2. The wall insulation net rack plate according to claim 1, characterized in that: the truss net sheets are distributed in a V shape or a splayed shape after penetrating through the heat insulation board.
3. The wall insulation net rack plate according to claim 1, characterized in that: the truss mesh is made of metal or nonmetal with small heat conductivity coefficient.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920748740.1U CN210194928U (en) | 2019-05-23 | 2019-05-23 | Wall heat-insulating net rack plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920748740.1U CN210194928U (en) | 2019-05-23 | 2019-05-23 | Wall heat-insulating net rack plate |
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CN210194928U true CN210194928U (en) | 2020-03-27 |
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CN201920748740.1U Active CN210194928U (en) | 2019-05-23 | 2019-05-23 | Wall heat-insulating net rack plate |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111424848A (en) * | 2020-05-21 | 2020-07-17 | 张学勇 | Assembled integral type composite heat-insulation shear wall structure and construction method thereof |
-
2019
- 2019-05-23 CN CN201920748740.1U patent/CN210194928U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111424848A (en) * | 2020-05-21 | 2020-07-17 | 张学勇 | Assembled integral type composite heat-insulation shear wall structure and construction method thereof |
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