CN220184348U - Thermal insulation wall with outer vertical face - Google Patents

Thermal insulation wall with outer vertical face Download PDF

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Publication number
CN220184348U
CN220184348U CN202321731373.7U CN202321731373U CN220184348U CN 220184348 U CN220184348 U CN 220184348U CN 202321731373 U CN202321731373 U CN 202321731373U CN 220184348 U CN220184348 U CN 220184348U
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main body
plate
heat
fixedly connected
carbon fiber
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CN202321731373.7U
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Chinese (zh)
Inventor
王强
唐国平
方强
苏向红
何华东
许文
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Zhejiang Fushui Construction Co ltd
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Zhejiang Fushui Construction Co ltd
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Abstract

The utility model relates to the technical field of building walls, and discloses an outer elevation heat-insulating wall body, which comprises a main body and a protection mechanism, wherein the protection mechanism is arranged at the front end of the main body, the heat-insulating mechanism is arranged in the main body, the heat-insulating mechanism comprises a carbon fiber plate, a polyurethane plate, a mineral wool plate, a steel wire mesh and a steel structure, and the front end of the main body is fixedly connected with the carbon fiber plate. This outer facade heat preservation wall body, two mounting grooves are used for strengthening the use of strip bonding method and compatible some pasting methods of frame method, prevent to drop, and the material that adopts is the panel that has heat preservation effect and intensity height, thereby prevent to fracture, it is fixed with the wall body through fixed orifices to recycle the anchor nail after gluing, marble slab has natural pleasing to the eye outward appearance, the characteristics that the durability is strong, through the cooperation of fixed column and fixed orifices, utilize outside adhesive to fix both, the texture groove improves marble slab's pleasing to the eye, thereby intensity has been increased in the time of improving aesthetic measure.

Description

Thermal insulation wall with outer vertical face
Technical Field
The utility model relates to the technical field of building walls, in particular to an outer elevation heat-insulating wall.
Background
The outer elevation heat insulating wall is one kind of heat insulating system for outer wall of building to raise heat insulating performance and energy benefit of building. The heat insulation effect is realized by installing a layer of heat insulation material on the surface of the building outer wall and covering a layer of protective layer on the surface of the building outer wall.
The existing facade thermal insulation wall body possibly has the problem that the construction quality is not up to standard in the installation process, so that the thermal insulation material is not firmly bonded with the surface of a building, the situation that cracking, falling or deformation occurs in a thermal insulation layer possibly occurs, the thermal insulation performance of the system is reduced, the maintenance cost is increased, moreover, the unstable installation possibly causes vibration or falling of the thermal insulation material when the wind force is large, the protective layer of the existing facade thermal insulation wall body system covers the thermal insulation material, the appearance directly influences the appearance attractiveness of the building, and if the material, color, texture or construction process of the protective layer are not proper, the integral appearance effect of the facade is possibly caused to be not ideal, the effect is not coordinated with the style or the surrounding environment of the building, the integral image and the value of the building are possibly influenced, and the bad visual influence is possibly generated on the surrounding environment.
Disclosure of Invention
(one) solving the technical problems
Aiming at the defects of the prior art, the utility model provides the outer-elevation heat-insulating wall body, so as to solve the problem that the construction quality of the outer-elevation heat-insulating wall body in the background art possibly does not reach the standard in the installation process, so that the heat-insulating material is not firmly bonded with the surface of a building, the situation that the heat-insulating layer is cracked, fallen or deformed possibly occurs, the heat-insulating performance of the system is reduced, the maintenance cost is increased, in addition, the unstable installation can cause the vibration or fall of the heat-insulating material when the wind power is large, the protective layer of the traditional outer-elevation heat-insulating wall body system is covered on the heat-insulating material, the appearance of the outer-elevation heat-insulating wall body directly influences the appearance aesthetic degree of the building, and if the material, the color, the texture or the construction process of the protective layer are not proper, the integral appearance effect of the outer-elevation is possibly not ideal, the integral image and the value of the building are possibly influenced, and the problem of bad visual influence on the surrounding environment is possibly caused.
(II) technical scheme
In order to achieve the above purpose, the present utility model provides the following technical solutions: the outer elevation heat-insulating wall body comprises a main body,
the protection mechanism is arranged at the front end of the main body,
the heat preservation mechanism is arranged in the main body,
the mounting groove is arranged at the rear side of the main body,
a fixing hole Kong Kaishe provided with five fixing holes at a front side of the main body;
the heat preservation mechanism comprises a carbon fiber plate, a polyurethane plate, a mineral wool plate, a steel wire mesh and a steel structure, wherein the carbon fiber plate is fixedly connected to the front end of the main body, and the polyurethane plate is fixedly connected to the front end of the carbon fiber plate.
Preferably, the front end fixedly connected with mineral wool board of polyurethane board, the front end fixedly connected with wire net of mineral wool board, the front end fixedly connected with steel construction of wire net, the thickness of carbon fiber board is 0.5cm-1cm, the thickness of polyurethane board is 0.5cm-1cm, the thickness of mineral wool board is 0.5cm-1cm, the thickness of wire net is 0.5cm-1cm, the thickness of steel construction is 0.5cm-1cm.
Through the technical scheme, the polyurethane board has higher heat insulation performance and strength, is suitable for places requiring higher heat insulation thickness, the mineral wool board has good heat insulation performance and sound absorption performance, is suitable for places requiring consideration of heat insulation and acoustic requirements, the carbon fiber board has higher strength and rigidity, and has good heat insulation performance, and the polymer composite material can be applied to the parts such as walls, roofs and floors in building structures to provide structural strength and heat insulation effect.
Preferably, the protection mechanism comprises fixing columns, marble plates and texture grooves, wherein the front ends of the steel structures are movably connected with the marble plates, the rear ends of the marble plates are fixedly connected with the fixing columns, and the fixing columns are provided with five fixing columns.
Through above-mentioned technical scheme, marble plate has natural pleasing to the eye outward appearance, and the durability is strong, and steel construction is used for supporting and fixing the main structure of outer facade heat preservation wall body, has characteristics that intensity is high, the durability is good.
Preferably, five fixing columns are matched with the fixing holes, texture grooves are formed in the front ends of the marble plates, and a plurality of texture grooves are formed in the front ends of the marble plates.
Through above-mentioned technical scheme, thereby the fixed column is used for fixed marble board and steel construction with the fixed orifices match.
Preferably, two mounting grooves are formed, the two mounting grooves are connected with an external adhesive, the main body is made of silicate plates, and the thickness of the main body is 0.5cm-1cm.
Through the technical scheme, the two mounting grooves are used for enhancing the use of the strip bonding method and are compatible with the bonding method of the point frame method, so that the stability is improved, falling is prevented, the main body adopts silicate boards, and the silicate boards have good heat insulation performance and fireproof performance, have higher fire resistance level, can effectively isolate heat transfer, and provide good heat insulation effect.
Compared with the prior art, the utility model provides the outer elevation heat-insulating wall body, which has the following beneficial effects:
1. this outer facade heat preservation wall body, two mounting grooves are used for strengthening the use of strip bonding method and compatible some frame method's bonding method, prevent to drop, and the material that adopts all is the panel that has heat preservation effect and intensity height to prevent to fracture, it is fixed with the wall body through fixed orifices to glue the back reuse anchor nail, thereby has improved stability.
2. This outer facade heat preservation wall body, marble plate have the nature pleasing to the eye outward appearance, and the strong characteristics of durability, through fixed column and fixed orifices cooperation, utilize outside adhesive to fix both, the texture groove improves marble plate's pleasing to the eye to increased intensity when improving aesthetic measure.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic top view of the present utility model;
FIG. 3 is a schematic cross-sectional structure of the present utility model;
fig. 4 is a schematic rear view of the present utility model.
In the figure: 1. a main body; 2. a protection mechanism; 3. a heat preservation mechanism; 4. a mounting groove; 5. a fixing hole; 201. fixing the column; 202. a marble plate; 203. texture grooves; 301. a carbon fiber plate; 302. a polyurethane board; 303. mineral wool boards; 304. a steel wire mesh; 305. and (3) a steel structure.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Embodiment one:
as shown in fig. 1-3, the present utility model provides a technical solution: the outer elevation heat preservation wall body comprises a main body 1 and a protection mechanism 2, wherein the protection mechanism 2 is arranged at the front end of the main body 1,
a heat preservation mechanism 3, wherein the heat preservation mechanism 3 is arranged inside the main body 1,
a mounting groove 4, the mounting groove 4 is arranged at the rear side of the main body 1,
the fixing holes 5 are formed in the front side of the main body 1, and five fixing holes 5 are formed;
the heat preservation mechanism 3 comprises a carbon fiber plate 301, a polyurethane plate 302, a mineral wool plate 303, a steel wire mesh 304 and a steel structure 305, wherein the carbon fiber plate 301 is fixedly connected to the front end of the main body 1, and the polyurethane plate 302 is fixedly connected to the front end of the carbon fiber plate 301.
Specifically, the front end fixedly connected with mineral wool board 303 of polyurethane board 302, the front end fixedly connected with wire net 304 of mineral wool board 303, the front end fixedly connected with steel construction 305 of wire net 304, the thickness of carbon fiber board 301 is 0.5cm-1cm, the thickness of polyurethane board 302 is 0.5cm-1cm, the thickness of mineral wool board 303 is 0.5cm-1cm, the thickness of wire net 304 is 0.5cm-1cm, the thickness of steel construction 305 is 0.5cm-1cm. The polyurethane board 302 has higher heat insulation performance and strength, is suitable for places requiring higher heat insulation thickness, the mineral wool board 303 has good heat insulation performance and sound absorption performance, is suitable for places requiring heat insulation and acoustic requirements, the carbon fiber board 301 has higher strength and rigidity, and has good heat insulation performance, and the polymer composite material can be applied to the positions of walls, roofs, floors and the like in building structures to provide structural strength and heat insulation effect.
Embodiment two:
as shown in fig. 2-4, as an improvement over the previous embodiment. Specifically, the protection mechanism 2 includes a fixing column 201, a marble plate 202, and a texture groove 203, the front end of the steel structure 305 is movably connected with the marble plate 202, the rear end of the marble plate 202 is fixedly connected with the fixing column 201, and the fixing columns 201 are provided with five. The advantage is that marble plate 202 has natural pleasing to the eye outward appearance, and the durability is strong, and steel construction 305 is used for supporting and fixed outer facade heat preservation wall's main structure, has characteristics that intensity is high, the durability is good.
Specifically, five fixing posts 201 are matched with the fixing holes 5, and a texture groove 203 is formed in the front end of the marble plate 202, and a plurality of texture grooves 203 are formed. The advantage is that the fixing posts 201 and the fixing holes 5 are matched to fix the marble plate 202 with the steel structure 305.
Specifically, two mounting grooves 4 are formed, the two mounting grooves 4 are connected with external adhesives, the main body 1 is made of silicate plates, and the thickness of the main body 1 is 0.5cm-1cm. The advantage is that two mounting grooves 4 are used for enhancing the use of the strip bonding method and being compatible with the pasting method of the point frame method, so that the stability is improved, falling is prevented, the main body 1 is made of silicate boards, and the silicate boards have good heat insulation performance and fireproof performance, have higher fire resistance level, can effectively isolate heat transfer, and provide good heat insulation effect.
When the heat insulation structure is used, an external sticky strip or adhesive is stuck on the mounting groove 4, the adhesive is coated on the rear surface of the main body 1 by a point frame method, the main body 1 is mounted on a wall surface, the polyurethane plate 302 in the heat insulation structure has higher heat insulation performance and strength, the heat insulation structure is suitable for places requiring higher heat insulation thickness, the mineral wool plate 303 has good heat insulation performance and sound absorption performance, the heat insulation structure is suitable for places requiring heat insulation and sound absorption simultaneously, the carbon fiber plate 301 has higher strength and rigidity, the heat insulation performance is good, the polymer composite material can be applied to the positions of walls, roofs, floors and the like in the building structure, so as to provide structural strength and heat insulation effect, the external anchor nails are fixed through the fixing holes 5 and the wall surface after the heat insulation structure is mounted, the adhesive is coated in the fixing holes 5, the fixing columns 201 are aligned and matched with the fixing holes 5, the rear end of the marble plate 202 is coated with the adhesive, the steel structure 305 is connected and fixed with the marble plate 202, the texture groove 203 increases the aesthetic appearance of the marble plate 202, the marble plate has strong and natural appearance, the durability is good and the heat insulation effect is ensured, and the heat insulation structure is 3 is mounted.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides an outer facade heat preservation wall body, includes main part (1), its characterized in that:
a protection mechanism (2), wherein the protection mechanism (2) is arranged at the front end of the main body (1),
the heat preservation mechanism (3), the heat preservation mechanism (3) is arranged in the main body (1),
the mounting groove (4), the mounting groove (4) is arranged at the rear side of the main body (1),
the fixing holes (5) are formed in the front side of the main body (1), and the five fixing holes (5) are formed;
the heat preservation mechanism (3) comprises a carbon fiber plate (301), a polyurethane plate (302), a mineral wool plate (303), a steel wire mesh (304) and a steel structure (305), wherein the carbon fiber plate (301) is fixedly connected to the front end of the main body (1), and the polyurethane plate (302) is fixedly connected to the front end of the carbon fiber plate (301).
2. The facade insulation wall of claim 1, wherein: the front end fixedly connected with mineral wool board (303) of polyurethane board (302), the front end fixedly connected with wire net (304) of mineral wool board (303), the front end fixedly connected with steel construction (305) of wire net (304), the thickness of carbon fiber board (301) is 0.5cm-1cm, the thickness of polyurethane board (302) is 0.5cm-1cm, the thickness of mineral wool board (303) is 0.5cm-1cm, the thickness of wire net (304) is 0.5cm-1cm, the thickness of steel construction (305) is 0.5cm-1cm.
3. The facade insulation wall of claim 2, wherein: the protection mechanism (2) comprises fixing columns (201), marble plates (202) and texture grooves (203), wherein the front ends of the steel structures (305) are movably connected with the marble plates (202), the rear ends of the marble plates (202) are fixedly connected with the fixing columns (201), and the fixing columns (201) are provided with five fixing columns.
4. A facade insulation wall as claimed in claim 3, characterised in that: five fixed columns (201) are matched with the fixed holes (5), texture grooves (203) are formed in the front ends of the marble plates (202), and a plurality of texture grooves (203) are formed.
5. The facade insulation wall of claim 1, wherein: the two mounting grooves (4) are formed, the two mounting grooves (4) are connected with external adhesives, the main body (1) is made of silicate plates, and the thickness of the main body (1) is 0.5cm-1cm.
CN202321731373.7U 2023-07-04 2023-07-04 Thermal insulation wall with outer vertical face Active CN220184348U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321731373.7U CN220184348U (en) 2023-07-04 2023-07-04 Thermal insulation wall with outer vertical face

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321731373.7U CN220184348U (en) 2023-07-04 2023-07-04 Thermal insulation wall with outer vertical face

Publications (1)

Publication Number Publication Date
CN220184348U true CN220184348U (en) 2023-12-15

Family

ID=89104059

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321731373.7U Active CN220184348U (en) 2023-07-04 2023-07-04 Thermal insulation wall with outer vertical face

Country Status (1)

Country Link
CN (1) CN220184348U (en)

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