CN202530631U - Grids capable of enhancing structure and intensity of mineral wool board - Google Patents
Grids capable of enhancing structure and intensity of mineral wool board Download PDFInfo
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- CN202530631U CN202530631U CN2012201599543U CN201220159954U CN202530631U CN 202530631 U CN202530631 U CN 202530631U CN 2012201599543 U CN2012201599543 U CN 2012201599543U CN 201220159954 U CN201220159954 U CN 201220159954U CN 202530631 U CN202530631 U CN 202530631U
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Abstract
The utility model discloses grids capable of enhancing a structure and intensity of a mineral wool board. The grids are manufactured by engineering plastic, a high polymer or a metal material, nodes of the grids are provided with bulges, which are vertical or inclined to the surfaces of the grids, and the grids are provided with anchoring eyes. The grids, provided by the utility model, have the advantages that; protuberant grids are arranged in the middle of the mineral wool board, just as an insulation board is provided with reinforcing ribs, fibers are connected to a whole body through cotton balls, which are not crossly distributed and are loose, the bending failure load resistance and the tensile intensity of the insulation board are improved, so that the product properties can be kept stably for a long time; during construction, the anchoring eyes are anchored, so that the grids bear the weight of the insulation board, the tension of the insulation board in a radial direction is reduced, and the problems, such as deformation, craze quality and the like, can be avoided.
Description
Technical field:
The utility model belongs to building material field, specifically relates to a kind of grid that is used to strengthen mineral wool board structure and intensity.
Technical background:
Be the highly energy-consuming building at present more than 95% in the 40000000000 square metres of existing buildings in the whole nation, unit building area energy consumption is more than 2-3 a times of developed country.The benzene plate has good heat preservation and insulation, and price is relatively cheap, so outside the building wall insulation aspect has obtained popularizing and promoting.But the benzene plate has a fatal defective, that be exactly polystyrene be combustible, though in the benzene plate, added compositions such as fire retardant, like big fire, the benzene plate still can burn.In economically developed American-European countries, the most inorganic heat insulation materials that adopt of building thermal insulation material.
Mineral wool board is to be primary raw material with natural igneous rock, industrial residue etc., through high-temperature fusion, and the sheet material that the cotton of using centrifugal process etc. to process produces as cementing agent with thermosetting resin.The rock cotton board mass of system is light, and heat-insulating property is better, prevents fires, does not fire.Mineral wool fiber is parallel to the warming plate of plate face, and tensile strength is less, the warming plate that mineral wool fiber is processed perpendicular to plate face mineral wool bar; Tensile strength is bigger; Manufacturing technique requirent is higher, and the ubiquity water absorption rate is higher, is prone to shrink, ftracture; Heat-insulation system is prone to ftracture, seepage even common quality defect such as come off, and the life-span lacks.
The utility model content:
The purpose of the utility model is exactly the deficiency that overcomes prior art, and a kind of grid that strengthens mineral wool board structure and intensity is provided.
The technical scheme that the utility model provides is:
1, a kind of grid that strengthens mineral wool board structure and intensity is characterized in that described grid processes with engineering plastics, high molecular polymer or metal material, and the grid node place has vertical or favours the projection of surface mesh, leaves the anchoring eye on the grid.
2, the projection vertical height sum of said node both sides is not more than the thickness of plate.
3, said projection is " | " type, T-shape, " ↑ " type, " L " type that falls.
4, said anchoring eye evenly distributes, and quantity is 1-10.
5, described grid aperture is 1-50cm.
The advantage of the utility model is: in the middle of the mineral wool warming plate, added bossed grid; Be equivalent to be provided with reinforcing rib to warming plate; With fiber because of not connecting into an integral body by the loose cotton-wool of cross-distribution, improved warming plate counter-bending failure load, tensile strength, make the properties of product stable for extended periods of time; And carry out anchoring by the anchoring eye during construction, make grid bear warming plate weight, alleviated the radially pulling force of aspect of warming plate, avoided problems such as deformation, cracking quality.
Description of drawings
Fig. 1-Fig. 5 is a utility model grid node raised structures sketch map.
Fig. 6, Fig. 8 are the mineral wool board sectional view.
Fig. 7 is a grid anchoring eye layout.
Fig. 9 network sketch map.
Specific embodiment:
Embodiment 1:
Grid 1 usefulness PPR material is processed, and the grid aperture is 1cm, and the projection 3 of grid 1 node 2 both sides is perpendicular to surface mesh, and projection is " | " type, projection length 5mm, and an anchoring eye 4 is left in the grid center.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board; Shop one deck grid 1 above, repaves one deck mineral wool slurry in the above, through dehydration, compacting, oven dry; The spraying waterproof agent forms; The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Embodiment 2:
Grid 1 usefulness zinc-coated wire is processed, and the grid aperture is 10cm, and the projection 3 of grid node 2 both sides is perpendicular to surface mesh, and projection is T-shape, and grid hits exactly up and down and leaves two anchoring eyes 4.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board, shop one deck grid repaves one deck mineral wool slurry in the above above, warp dehydration, compacting, oven dry, the spraying waterproof agent forms.The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Embodiment 3:
Grid 1 usefulness nylon is processed, and the grid aperture is 20cm, and the projection of grid node 2 both sides hangs down 3 directly in surface mesh, and projection is " ↑ " type, and grid leaves four anchoring eyes 4 up and down.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board, shop one deck grid repaves one deck mineral wool slurry in the above above, warp dehydration, compacting, oven dry, the spraying waterproof agent forms.The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Embodiment 4:
Grid 1 usefulness polytetrafluoroethylene (PTFE) is processed, and the grid aperture is 30cm, and the projection of grid node 2 both sides hangs down 3 directly in surface mesh, and projection is down " L " type, on the grid under leave six anchoring eyes 4.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board, shop one deck grid repaves one deck mineral wool slurry in the above above, warp dehydration, compacting, oven dry, the spraying waterproof agent forms.The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Embodiment 5:
Grid 1 usefulness polyether-ether-ketone is processed, and the grid aperture is 40cm, and the projection 3 of grid node 2 both sides is perpendicular to surface mesh, and projection is " ↑ " type, grid eight the anchoring eyes 4 that evenly distribute.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the waterproof agent of spraying forms, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board, shop one deck grid repaves one deck mineral wool slurry in the above above, warp dehydration, compacting, oven dry, the spraying waterproof agent forms.The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Embodiment 6:
Grid 1 usefulness zinc-coated wire is processed, and the grid aperture is 50cm, and the projection 3 of grid node 2 both sides is perpendicular to surface mesh, and projection is " | " type, grid ten the anchoring eyes 4 that evenly distribute.Shop, bottom surface one deck gluing mineral wool when producing mineral wool board, above the lapping lattice, repave one deck mineral wool in the above, through compacting, high-temperature shaping, the spraying waterproof agent forms; One deck mediation good mineral wool slurry in shop, bottom surface when producing the sound absorption mineral wool board, shop one deck grid repaves one deck mineral wool slurry in the above above, warp dehydration, compacting, oven dry, the spraying waterproof agent forms.The several layers grid can be spread in the centre, and projection interpenetrates between grid, indicates the accurate position of knowing the anchoring eye during production.
Claims (8)
1. grid that strengthens mineral wool board structure and intensity is characterized in that described grid processes with engineering plastics, high molecular polymer or metal material, and the grid node place has vertical or favours the projection of surface mesh, leaves the anchoring eye on the grid.
2. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that the projection vertical height sum of said node both sides is not more than the thickness of plate.
3. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that said projection is " | " type.
4. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that said projection is T-shape.
5. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that said projection is " ↑ " type.
6. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that said projection is down " L " type.
7. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that said anchoring eye evenly distributes, and quantity is 1-10.
8. a kind of grid that strengthens mineral wool board structure and intensity according to claim 1 is characterized in that described grid aperture is 1-50cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2012201599543U CN202530631U (en) | 2012-04-16 | 2012-04-16 | Grids capable of enhancing structure and intensity of mineral wool board |
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CN2012201599543U CN202530631U (en) | 2012-04-16 | 2012-04-16 | Grids capable of enhancing structure and intensity of mineral wool board |
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CN202530631U true CN202530631U (en) | 2012-11-14 |
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CN2012201599543U Expired - Fee Related CN202530631U (en) | 2012-04-16 | 2012-04-16 | Grids capable of enhancing structure and intensity of mineral wool board |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103469907A (en) * | 2013-08-09 | 2013-12-25 | 汤莉群 | Reticular dimensional reinforced composite heat preservation rock wool board |
CN107288265A (en) * | 2017-05-25 | 2017-10-24 | 江苏海川新材料科技有限公司 | A kind of W types glass-fiber reinforcement material |
CN107366387A (en) * | 2017-05-25 | 2017-11-21 | 江苏海川新材料科技有限公司 | A kind of Z-type glass-fiber reinforcement material |
DE102017120624A1 (en) * | 2017-09-07 | 2019-03-07 | Groz-Beckert Kg | Textile reinforcement arrangement, method for its production and separating and / or shaping device for use in this method |
-
2012
- 2012-04-16 CN CN2012201599543U patent/CN202530631U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103469907A (en) * | 2013-08-09 | 2013-12-25 | 汤莉群 | Reticular dimensional reinforced composite heat preservation rock wool board |
CN103469907B (en) * | 2013-08-09 | 2017-10-27 | 王周琴 | Net dimension enhancing complex heat-preservation rock cotton board |
CN107288265A (en) * | 2017-05-25 | 2017-10-24 | 江苏海川新材料科技有限公司 | A kind of W types glass-fiber reinforcement material |
CN107366387A (en) * | 2017-05-25 | 2017-11-21 | 江苏海川新材料科技有限公司 | A kind of Z-type glass-fiber reinforcement material |
DE102017120624A1 (en) * | 2017-09-07 | 2019-03-07 | Groz-Beckert Kg | Textile reinforcement arrangement, method for its production and separating and / or shaping device for use in this method |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20121114 Termination date: 20140416 |