CN216195670U - Wall body with cavity structure - Google Patents
Wall body with cavity structure Download PDFInfo
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- CN216195670U CN216195670U CN202122487939.3U CN202122487939U CN216195670U CN 216195670 U CN216195670 U CN 216195670U CN 202122487939 U CN202122487939 U CN 202122487939U CN 216195670 U CN216195670 U CN 216195670U
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Abstract
The utility model discloses a wall body with a cavity structure, which comprises an inner leaf heat-insulation building block filling wall, an air space, an outer leaf veneer real brick masonry, a decorative brick wall tie and a vent pipe, wherein the outer leaf veneer real brick masonry is positioned at the outer side of a building outer wall and is in anchor lap joint with the inner leaf heat-insulation building block filling wall through the decorative brick wall tie; the air space is located between the inner leaf insulation building block filling wall and the outer leaf veneer real brick masonry, the vent pipe is located at the bottom of the air space, and the vent pipe and the outer leaf veneer real brick masonry are 5% in gradient. The materials adopted by the utility model are general engineering building materials, the wall body can enable the building design vertical face to achieve the real brick effect, and meanwhile, the building of the real brick of the outer leaf facing is firm and reliable with the building, and the service life of the real brick is the same as that of the building; an air space is arranged between the outer leaf wall and the inner leaf wall, and the vent pipe is communicated with the outside, so that the building and the outside breathe together.
Description
Technical Field
The utility model relates to a building wall, in particular to a wall with a cavity structure.
Background
The arrangement of the inner leaf non-bearing sintered shale heat-insulating hollow brick or the autoclaved aerated concrete heat-insulating building block is a measure for saving energy consumption on the outer surface of the building and meeting the energy-saving requirement, and is applied to the outer surface of various building main bodies for energy saving, so that the building is green and environment-friendly; therefore, a method which can quickly and effectively remove moisture and water drops and leakage on the inner wall caused by moisture and temperature difference entering the inner side of the real facing brick through the capillary cracks and can ensure that the moisture is discharged to the outer surface, so that the moisture is prevented from entering the inner surface of the inner leaf wall body, and the facing surface layer is bloated, mildewed and shed is needed, and the method is urgently needed by the technical personnel in the field.
Disclosure of Invention
In view of the above-mentioned deficiencies or inadequacies of the prior art, it would be desirable to provide a wall of a cavity structure.
According to the technical scheme that this application embodiment provided, a wall body of cavity structure, include that interior leaf insulation block infilled wall, air space, outer leaf veneer real brick build by laying bricks or stones, decorate brick wall drawknot, breather pipe, its characterized in that: the outer leaf veneer real brick masonry is positioned on the outer side of the building outer wall, and is in anchor lap joint with the inner leaf heat-insulation building block filling wall through the decorative brick wall drawknot; the air space is located the interior leaf insulation block infilled wall with the middle of the true brick of exterior leaf veneer is built by laying bricks, the breather pipe is located air space bottom, the true brick of air space and exterior leaf veneer is built and is 5% slope and outwards looks for the slope.
In the utility model, the true brick built by the exterior leaf facing true brick is a concrete decorative block, and is anchored and built with the inner leaf heat-insulation block filler wall block.
In the utility model, the inner leaf heat-insulation block filled wall is made of one of non-bearing sintered shale heat-insulation hollow bricks and autoclaved aerated concrete blocks, and a heat-insulation material is added on the outer side of the inner leaf heat-insulation block filled wall.
In the utility model, the distance between the air space and the inner leaf heat-insulation building block filling wall is the same as the building distance between the outer leaf veneer real bricks.
In the utility model, the vent pipe is arranged at the bottom of the outer leaf facing real brick masonry and the air space and is communicated with the building air space outdoors, and the angle of the vent pipe and the horizontal line are 5% of gradient and are outward slope-seeking; the material of the vent pipe is one of stainless steel and PVC material pipes.
In the utility model, a hemp ball is also arranged above the vent pipe, and waterproof mortar is filled below the vent pipe.
To sum up, the beneficial effect of this application: the materials adopted by the utility model are general engineering building materials, the wall body can enable the building design vertical face to achieve the real brick effect, meanwhile, the real brick building of the exterior leaf facing real brick is firm and reliable with the building, the service life is the same as that of the building, an air space is arranged between the exterior leaf wall and the interior leaf wall, and the vent pipe is communicated with the outside, so that the building and the outside breathe the same. The method has the characteristics of convenience in construction, short construction period, environmental friendliness, energy conservation and the like, and the inner leaf wall body and the outer leaf wall body are safe and reliable in structure and have good popularization and use values.
Drawings
Other features, objects and advantages of the present application will become more apparent upon reading of the following detailed description of non-limiting embodiments thereof, made with reference to the accompanying drawings in which:
fig. 1 is a schematic cross-sectional structure of the present invention.
Reference numbers in the figures: inner leaf heat-insulating block infilled wall-1, air space-2, outer leaf facing real brick masonry-3, decorative brick wall tie-4 and ventilating pipe-5.
Detailed Description
The present application will be described in further detail with reference to the following drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the relevant invention and not restrictive of the utility model. It should be noted that, for convenience of description, only the portions related to the present invention are shown in the drawings.
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict. The present application will be described in detail below with reference to the embodiments with reference to the attached drawings.
As shown in fig. 1: a wall body with a cavity structure comprises an inner leaf heat-insulation building block filled wall 1, an air space 2, an outer leaf veneer real brick masonry 3, a decorative brick wall tie 4 and a vent pipe 5, wherein the outer leaf veneer real brick masonry 3 is positioned on the outer side of a building outer wall, and the decorative brick wall tie 4 is in anchor lap joint with the inner leaf heat-insulation building block filled wall 1, so that the building wall body has the same building age; the true brick of the exterior leaf veneer true brick masonry 3 is a concrete decorative building block, and the interior leaf heat insulation building block infilled wall 1 adopts one of non-bearing sintered shale heat insulation hollow bricks and autoclaved aerated concrete building blocks. The air space 2 is positioned between the inner leaf heat-insulation building block filling wall 1 and the outer leaf veneer real brick masonry 1, and the thickness of the air space 2 is 20MM, so that the temperature difference between the inner leaf wall and the outer leaf wall is solved, the inner leaf wall is prevented from dewing, and the heat insulation function of the outer wall of the building is achieved. The vent pipe 5 is positioned at the bottom of the air interlayer 2 and inclines outwards with 5 percent of gradient with the outer leaf facing real brick masonry 3. The true brick masonry of the exterior lobe facing 3, because of different materials masonry, the dry shrinkage rate differs, adopt breather pipe 5 and outdoor intercommunication, the breather pipe 5 sets up interval 400 and gives other measures such as 2 condensation steam in air space and moisture of 600mm derivation to realize that the true brick masonry of the exterior lobe facing 3 is with the building body in same life-span, heat preservation and wall body and breathe masonry method together. The material of the vent pipe 5 is one of stainless steel and PVC material pipes. The breather pipe 5 is 5% slope and leans out with the water flat line, passes outer leaf veneer real brick through the gap and builds 3 walls by laying bricks or stones, establishes drainage numb group and effectively intercepts debris in air interlayer 2 one side, guarantees that 2 moisture condensate water in air interlayer discharges outdoors, guarantees that air interlayer 2 is dry promptly and keeps warm thermal-insulated again. The materials adopted by the utility model are general engineering building materials, the wall body can enable the building design vertical face to achieve the real brick effect, meanwhile, the real brick building 3 of the exterior leaf facing real brick is firm and reliable with the building, the service life is the same as that of the building, an air space layer 2 is arranged between the exterior leaf wall and the interior leaf wall, and a vent pipe 5 is communicated with the outside, so that the building and the outside breathe the same; the scheme has the characteristics of convenience in construction, short construction period, environmental friendliness and energy conservation, and the inner leaf wall body and the outer leaf wall body are safe and reliable in structure and have good popularization and use values.
The upper part of the vent pipe 5 is provided with a hemp ball, and the lower part of the vent pipe 5 is provided with waterproof mortar. The hemp may be a yarn ball or the like which absorbs moisture in the air-permeable layer.
The foregoing description is only exemplary of the preferred embodiments of the application and is provided for the purpose of illustrating the general principles of the technology and the like. Meanwhile, the scope of the utility model according to the present application is not limited to the technical solutions in which the above-described technical features are combined in a specific manner, and also covers other technical solutions in which the above-described technical features or their equivalent are combined arbitrarily without departing from the inventive concept described above. For example, the above features may be replaced with (but not limited to) features having similar functions disclosed in the present application.
Claims (6)
1. The utility model provides a wall body of cavity structure, includes that interior leaf insulation block infilled wall (1), air space (2), true brick of exterior leaf veneer build (3), decorate brick wall drawknot (4), breather pipe (5), its characterized in that: the outer leaf veneer real brick masonry (3) is positioned on the outer side of the building outer wall and is in anchor lap joint with the inner leaf heat-insulation block filler wall (1) through the decorative brick wall tie (4); air space (2) are located interior leaf insulation block infilled wall (1) with the true brick of exterior leaf veneer is built by laying bricks or stones (3) in the middle of, breather pipe (5) are located air space (2) bottom, breather pipe (5) and the true brick of exterior leaf veneer are built by laying bricks or stones (3) and are 5% slope and outwards look for the slope.
2. A wall of a cavity structure as claimed in claim 1, wherein: the true bricks of the exterior lobe facing true brick masonry (3) are concrete decorative blocks and are anchored and masonry with the blocks of the interior lobe insulation block infilled wall (1).
3. A wall of a cavity structure as claimed in claim 1, wherein: the inner leaf heat-insulation block filled wall (1) is made of one of non-bearing sintered shale heat-insulation hollow bricks and autoclaved aerated concrete blocks, and heat-insulation materials are added on the outer side of the inner leaf heat-insulation block filled wall (1).
4. A wall of a cavity structure as claimed in claim 1, wherein: the distance between the air space (2) and the inner leaf heat-insulation building block filling wall (1) is equal to the distance between the air space and the outer leaf veneer real brick masonry (3).
5. The wall body with the cavity structure as claimed in claim 1, wherein the ventilating pipe (5) is arranged at the bottom of the outer leaf facing real brick masonry (3) and the air space (2) and is communicated with the air layer of the building and the outside; the angle of the vent pipe (5) is 5% of the slope of the horizontal line and inclines outwards; the material of the vent pipe (5) is one of stainless steel and PVC material pipe.
6. A wall body with a cavity structure as claimed in claim 1, wherein a hemp ball is arranged above the vent pipe (5), and waterproof mortar is filled below the vent pipe (5).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122487939.3U CN216195670U (en) | 2021-10-15 | 2021-10-15 | Wall body with cavity structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122487939.3U CN216195670U (en) | 2021-10-15 | 2021-10-15 | Wall body with cavity structure |
Publications (1)
Publication Number | Publication Date |
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CN216195670U true CN216195670U (en) | 2022-04-05 |
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CN202122487939.3U Active CN216195670U (en) | 2021-10-15 | 2021-10-15 | Wall body with cavity structure |
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CN (1) | CN216195670U (en) |
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2021
- 2021-10-15 CN CN202122487939.3U patent/CN216195670U/en active Active
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