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CN215594509U - Non-dismantling composite heat-insulating integrated external template - Google Patents

Non-dismantling composite heat-insulating integrated external template Download PDF

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Publication number
CN215594509U
CN215594509U CN202121614510.XU CN202121614510U CN215594509U CN 215594509 U CN215594509 U CN 215594509U CN 202121614510 U CN202121614510 U CN 202121614510U CN 215594509 U CN215594509 U CN 215594509U
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CN
China
Prior art keywords
heat
layer
clamping
preservation
heat preservation
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202121614510.XU
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Chinese (zh)
Inventor
胡存美
刘桂强
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Shandong Guojian Engineering Group Co Ltd
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Shandong Guojian Engineering Group Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN202121614510.XU priority Critical patent/CN215594509U/en
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Publication of CN215594509U publication Critical patent/CN215594509U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a disassembly-free composite heat-preservation integrated external formwork, which belongs to the technical field of building heat preservation and comprises a wall body, wherein an inner anticorrosive layer, a first heat-preservation layer, a second heat-preservation layer and an outer anticorrosive layer are sequentially arranged on the right side of the wall body, fixing bolts are uniformly distributed on the right side of the inner anticorrosive layer, the left ends of the fixing bolts penetrate through the inner anticorrosive layer and extend into the wall body, first clamping grooves are formed in the right side of the inner anticorrosive layer at equal intervals from top to bottom, clamping teeth are integrally formed in the left side of the first heat-preservation layer at equal intervals from top to bottom, the clamping teeth are positioned in the first clamping grooves and are clamped and connected with the first clamping grooves, and second clamping grooves are formed in the right side of the first heat-preservation layer at equal intervals from top to bottom. The utility model discloses a, keep the wholeness of heat preservation, heat preservation leak and gap can not appear, have solved prior art intermediate temperature and have run through the heat preservation completely through the crab-bolt, have the heat preservation leak, influence the problem of heat preservation effect.

Description

Non-dismantling composite heat-insulating integrated external template
Technical Field
The utility model relates to the technical field of building heat preservation, in particular to a disassembly-free composite heat preservation integrated external template.
Background
At present, building energy conservation is generally realized by increasing the heat insulation performance of a building enclosure structure and improving the energy consumption ratio of heating/air conditioning equipment, the building enclosure structure mainly comprises a roof and a wall, so that the technical scheme of building energy conservation aiming at the roof and the wall is also infinite, and a common wall heat insulation system is a roof system based on polystyrene boards and has the defects of short service life, poor heat insulation effect and flammability.
At present, exempt from to tear open compound incubation integration exterior sheathing directly becomes an organic whole with the concrete behind the inboard concrete placement, mortar and concrete layer are smeared in the outside, form holistic insulation construction, but use the crab-bolt to directly run through all structures again with wall body fixed connection from the outside between the heated board wall body usually, the temperature runs through the heat preservation completely through the crab-bolt, makes the heat preservation have the heat preservation leak, influences the heat preservation effect of heat preservation, for this reason, it solves above-mentioned problem to provide exempt from to tear open compound incubation integration exterior sheathing.
SUMMERY OF THE UTILITY MODEL
1. Technical problem to be solved
Aiming at the problems in the prior art, the utility model aims to provide a disassembly-free composite heat-insulation integrated external template which has the advantages of keeping the integrity of a heat-insulation layer and avoiding heat-insulation holes and gaps, and solves the problem that in the prior art, the temperature completely penetrates through the heat-insulation layer through an anchor bolt, so that the heat-insulation holes exist in the heat-insulation layer and the heat-insulation effect of the heat-insulation layer is influenced.
2. Technical scheme
In order to solve the above problems, the present invention adopts the following technical solutions.
The disassembly-free composite heat-preservation integrated external formwork comprises a wall body, wherein an inner anticorrosive layer, a first heat-preservation layer, a second heat-preservation layer and an outer anticorrosive layer are sequentially arranged on the right side of the wall body, fixing bolts are uniformly distributed on the right side of the inner anticorrosive layer, the left ends of the fixing bolts penetrate through the inner anticorrosive layer and extend to the inside of the wall body, first clamping grooves are formed in the right side of the inner anticorrosive layer at equal intervals from top to bottom, clamping teeth are integrally formed in the left side of the first heat-preservation layer at equal intervals from top to bottom and are positioned in the first clamping grooves and connected with the first clamping grooves in a clamping mode, second clamping grooves are formed in the right side of the first heat-preservation layer at equal intervals from top to bottom, clamping blocks are integrally formed in the left side of the second heat-preservation layer at equal intervals from top to bottom and are positioned in the second clamping grooves in a clamping mode and connected with the second clamping grooves in a clamping mode, and the outer anticorrosive layer is fixedly connected to the right side of the second heat-preservation layer through sunk screws, the wall body, the inner anticorrosive layer, the first heat preservation layer, the second heat preservation layer and the outer anticorrosive layer are cast into a whole through concrete.
As a further scheme of the utility model: the first clamping groove and the clamping tooth are in a sawtooth shape, the tooth tip of the first clamping groove inclines downwards, and the clamping tooth is connected with the first clamping groove in a tenon-and-mortise mode.
As a further scheme of the utility model: the second clamping groove and the clamping block are in a convex shape, and the second clamping groove is in tenon-and-mortise connection with the clamping block.
As a further scheme of the utility model: the first heat preservation layer is a polystyrene board organic heat preservation material component, the second heat preservation layer is a rock wool board composite material component, and polyurethane waterproof paint is coated on the outer sides of the first heat preservation layer and the second heat preservation layer.
As a further scheme of the utility model: and grid cloth is arranged between the inner anticorrosive layer and the wall body and between the second heat preservation layer and the outer anticorrosive layer, and plastic-coated alkali-resistant layers are arranged on the surfaces of the two grid cloth.
As a further scheme of the utility model: the right side of the outer anticorrosive layer is provided with a decorative layer.
3. Advantageous effects
Compared with the prior art, the utility model has the advantages that:
(1) the disassembly-free composite heat-preservation integrated external template is aligned and clamped into the second clamping groove on the right side of the first heat-preservation layer through the clamping block on the left side of the second heat-preservation layer, the second heat-preservation layer is firmly arranged on the right side of the first heat-preservation layer through the mortise-tenon connection of the clamping block and the second clamping groove, the connection supporting strength is increased, the integrity of the second heat-preservation layer is kept, after the second heat-preservation layer is arranged with the first heat-preservation layer, the clamping teeth on the left side of the first heat-preservation layer are clamped into the first clamping groove on the right side of the inner anti-corrosion layer, the first heat-preservation layer can be arranged on the right side of the inner anti-corrosion layer through the mortise-tenon connection of the clamping teeth and the first clamping groove, the connection supporting strength is increased, the integrity of the first heat-preservation layer is kept, the connection between the first heat-preservation layer and the inner anti-corrosion layer and the second heat-preservation layer adopts the mortise connection mode of replacing the penetration of anchor bolts, and the integrity of the first heat-preservation layer and the second heat-preservation layer is guaranteed, no heat preservation leak and gap can be generated.
(2) The disassembly-free composite heat-preservation integrated external template has the advantages of light weight, good machinability, high compactness, good heat-preservation and heat-insulation effects and the like through the first heat-preservation layer of the organic heat-preservation material member made of the polystyrene board, has the characteristics of light weight, small heat conductivity coefficient, heat absorption and non-combustion for the second heat-preservation layer of the composite material member made of the rock wool board, has a good heat-preservation effect through the matching of the first heat-preservation layer and the second heat-preservation layer, is light in weight, improves the construction efficiency, and plays a role in water prevention through the polyurethane waterproof coating.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is an enlarged view of the utility model at A in FIG. 1.
The reference numbers in the figures illustrate:
1. a wall body; 2. an inner corrosion resistant layer; 3. a first insulating layer; 4. a second insulating layer; 5. an outer corrosion resistant layer; 6. fixing the bolt; 7. a first card slot; 8. clamping teeth; 9. a second card slot; 10. a clamping block; 11. mesh cloth; 12. and (7) a decorative layer.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention; it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by those skilled in the art without any inventive work are within the scope of the present invention.
Referring to fig. 1-2, a disassembly-free composite thermal insulation integrated external formwork comprises a wall body 1, an inner corrosion-resistant layer 2, a first thermal insulation layer 3, a second thermal insulation layer 4 and an outer corrosion-resistant layer 5 are sequentially arranged on the right side of the wall body 1, fixing bolts 6 are uniformly distributed on the right side of the inner corrosion-resistant layer 2, the left ends of the fixing bolts 6 penetrate through the inner corrosion-resistant layer 2 and extend into the wall body 1, first clamping grooves 7 are equidistantly formed on the right side of the inner corrosion-resistant layer 2 from top to bottom, clamping teeth 8 are equidistantly formed on the left side of the first thermal insulation layer 3 from top to bottom, the clamping teeth 8 are positioned inside the first clamping grooves 7 and are clamped and connected with the first clamping grooves 7, second clamping grooves 9 are equidistantly formed on the right side of the first thermal insulation layer 3 from top to bottom, clamping blocks 10 are equidistantly formed on the left side of the second thermal insulation layer 4 from top to bottom, the clamping blocks 10 are positioned inside the second clamping grooves 9 and are clamped and connected with the second clamping grooves 9, outer anticorrosive coating 5 passes through countersunk screw fixed connection on the right side of second heat preservation 4, and wall body 1, interior anticorrosive coating 2, first heat preservation 3, second heat preservation 4 and outer anticorrosive coating 5 become an organic whole through concrete placement.
Further, first draw-in groove 7 is the cockscomb structure and the equal slope of prong downwards with latch 8, and latch 8 is connected for tenon fourth of twelve earthly branches with the block of first draw-in groove 7, is the cockscomb structure and the equal slope of prong downwards through first draw-in groove 7 and latch 8 to for tenon fourth of twelve earthly branches connection, anticorrosive coating 2's right side including making first heat preservation 3 can install, and firm in connection has increased joint support intensity, and keep first heat preservation 3's integrality.
Further, second draw-in groove 9 is the type with fixture block 10, and second draw-in groove 9 is mortise-tenon joint with the block connection of fixture block 10, is the type with fixture block 10 through second draw-in groove 9 and for mortise-tenon joint for second heat preservation 4 can be installed on the right side of first heat preservation 3, and firm in connection has increased joint support intensity, and keeps the integrality of second heat preservation 4.
Furthermore, the first heat preservation layer 3 is a polystyrene board organic heat preservation material component, the second heat preservation layer 4 is a rock wool board composite material component, polyurethane waterproof paint is coated on the outer sides of the first heat preservation layer 3 and the second heat preservation layer 4, the first heat preservation layer 3 of the polystyrene board organic heat preservation material component has the advantages of light weight, good machinability, high compactness, good heat preservation and heat insulation effects and the like, the second heat preservation layer 4 of the rock wool board composite material component has the characteristics of light weight, small heat conduction coefficient, heat absorption and non-combustion, the first heat preservation layer 3 is matched with the second heat preservation layer 4 to achieve a good heat preservation effect, the weight is light, the construction efficiency is improved, and the polyurethane waterproof paint plays a waterproof role.
Furthermore, the grid cloth 11 is arranged between the inner anticorrosive layer 2 and the wall body 1 and between the second heat preservation layer 4 and the outer anticorrosive layer 5, the plastic-coated alkali-resistant layers are arranged on the surfaces of the two grid cloth 11, and the grid cloth 11 is high in tensile strength, not easy to deform and good in fitting performance.
Further, a decorative layer 12 is provided on the right side of the outer anticorrosive layer 5, and the appearance can be improved by the decorative layer 12.
The working principle is as follows: when the utility model is used, the inner anticorrosive layer 2 is fixedly arranged on the right side of the wall body 1 through the fixing bolt 6, the fixture block 10 on the left side of the second heat preservation layer 4 is aligned and clamped into the inside of the second clamping groove 9 on the right side of the first heat preservation layer 3, the second heat preservation layer 4 is firmly arranged on the right side of the first heat preservation layer 3 through the mortise-tenon connection of the fixture block 10 and the second clamping groove 9, the connection support strength is increased, the integrity of the second heat preservation layer 4 is kept, after the second heat preservation layer 4 is arranged with the first heat preservation layer 3, the latch 8 on the left side of the first heat preservation layer 3 is clamped into the first clamping groove 7 on the right side of the inner anticorrosive layer 2, the first heat preservation layer 3 can be arranged on the right side of the inner anticorrosive layer 2 through the mortise-tenon connection of the latch 8 and the first clamping groove 7, the connection strength is increased, the integrity of the first heat preservation layer 3 is kept, then the outer anticorrosive layer 5 is fixedly connected on the right side of the second heat preservation layer 4 through the countersunk head screw, outer anticorrosive coating 5 and interior anticorrosive coating 2 protect first heat preservation 3 and second heat preservation 4 from inside and outside, prevent that first heat preservation 3 and second heat preservation 4 from receiving the acid-base of concrete and corrode, pour into an organic whole with above-mentioned structure through the concrete at last, the connection between first heat preservation 3 and interior anticorrosive coating 2 and the second heat preservation 4 adopts tenon fourth of the twelve earthly branches connection to replace the connected mode that the crab-bolt runs through, the wholeness of first heat preservation 3 and second heat preservation 4 has been guaranteed, heat preservation leak and gap can not appear, the temperature completely runs through the heat preservation through the crab-bolt among the prior art has been solved, make the heat preservation have the heat preservation leak, influence the problem of the heat preservation effect of heat preservation.
The foregoing is only a preferred embodiment of the present invention; the scope of the utility model is not limited thereto. Any person skilled in the art should be able to cover the technical scope of the present invention by equivalent or modified solutions and modifications within the technical scope of the present invention.

Claims (6)

1. Exempt from to tear open compound incubation integration exterior sheathing, including wall body (1), its characterized in that: the wall body is characterized in that an inner anticorrosive layer (2), a first heat-insulating layer (3), a second heat-insulating layer (4) and an outer anticorrosive layer (5) are sequentially arranged on the right side of the wall body (1), uniformly distributed fixing bolts (6) are arranged on the right side of the inner anticorrosive layer (2), the left ends of the fixing bolts (6) penetrate through the inner anticorrosive layer (2) and extend into the wall body (1), first clamping grooves (7) are formed in the right side of the inner anticorrosive layer (2) in an equidistance manner from top to bottom, clamping teeth (8) are integrally formed in the left side of the first heat-insulating layer (3) in an equidistance manner from top to bottom, the clamping teeth (8) are positioned in the first clamping grooves (7) and are connected with the first clamping grooves (7) in a clamping manner, second clamping grooves (9) are formed in the right side of the first heat-insulating layer (3) in an equidistance manner from top to bottom, clamping blocks (10) are integrally formed in the left side of the second heat-insulating layer (4) in an equidistance manner from top to bottom, the clamping block (10) is located inside the second clamping groove (9) and is connected with the second clamping groove (9) in a clamping mode, the outer anticorrosive layer (5) is fixedly connected to the right side of the second heat-insulating layer (4) through countersunk screws, and the wall body (1), the inner anticorrosive layer (2), the first heat-insulating layer (3), the second heat-insulating layer (4) and the outer anticorrosive layer (5) are poured into a whole through concrete.
2. The disassembly-free composite heat-preservation integrated external template as claimed in claim 1, wherein: the first clamping groove (7) and the clamping tooth (8) are both in a sawtooth shape, the tooth tips of the clamping tooth are inclined downwards, and the clamping connection of the clamping tooth (8) and the first clamping groove (7) is tenon-and-mortise connection.
3. The disassembly-free composite heat-preservation integrated external template as claimed in claim 1, wherein: the second clamping groove (9) and the clamping block (10) are both in a convex shape, and the clamping connection of the second clamping groove (9) and the clamping block (10) is tenon-and-mortise connection.
4. The disassembly-free composite heat-preservation integrated external template as claimed in claim 1, wherein: the first heat preservation layer (3) is a polystyrene board organic heat preservation material component, the second heat preservation layer (4) is a rock wool board composite material component, and polyurethane waterproof paint is coated on the outer sides of the first heat preservation layer (3) and the second heat preservation layer (4).
5. The disassembly-free composite heat-preservation integrated external template as claimed in claim 1, wherein: all be provided with net cloth (11), two between interior anticorrosive coating (2) and wall body (1) and between second heat preservation (4) and outer anticorrosive coating (5) the surface of net cloth (11) all is provided with plastic-coated alkali-resistant layer.
6. The disassembly-free composite heat-preservation integrated external template as claimed in claim 1, wherein: the right side of the outer anticorrosive layer (5) is provided with a decorative layer (12).
CN202121614510.XU 2021-07-15 2021-07-15 Non-dismantling composite heat-insulating integrated external template Expired - Fee Related CN215594509U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121614510.XU CN215594509U (en) 2021-07-15 2021-07-15 Non-dismantling composite heat-insulating integrated external template

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121614510.XU CN215594509U (en) 2021-07-15 2021-07-15 Non-dismantling composite heat-insulating integrated external template

Publications (1)

Publication Number Publication Date
CN215594509U true CN215594509U (en) 2022-01-21

Family

ID=79878243

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121614510.XU Expired - Fee Related CN215594509U (en) 2021-07-15 2021-07-15 Non-dismantling composite heat-insulating integrated external template

Country Status (1)

Country Link
CN (1) CN215594509U (en)

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Granted publication date: 20220121