CN220266907U - Energy-saving building outer wall structure - Google Patents

Energy-saving building outer wall structure Download PDF

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Publication number
CN220266907U
CN220266907U CN202321864532.0U CN202321864532U CN220266907U CN 220266907 U CN220266907 U CN 220266907U CN 202321864532 U CN202321864532 U CN 202321864532U CN 220266907 U CN220266907 U CN 220266907U
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wall
building outer
seted
energy
groove
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CN202321864532.0U
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吴从从
何伟国
何伟鹏
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Hangzhou Muyuan Construction Engineering Co ltd
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Hangzhou Muyuan Construction Engineering Co ltd
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Abstract

The application discloses energy-conserving building outer wall structure belongs to building outer wall structure technical field, and this energy-conserving building outer wall structure includes building outer wall main part and embedded heat insulating board that sets up in the building outer wall main part, the spread groove has all been seted up to the equal symmetry in both ends of building outer wall main part, and the mounting groove has all been seted up at the lateral wall both ends of building outer wall main part, and wherein the top of building outer wall main part is fixed with the guide plate that the slope set up, the draw-in groove has all been seted up to the inner wall both sides of spread groove to be fixed with the decorative board through draw-in groove detachable, the arc wall has all been seted up to the inner wall both sides of mounting groove, and the inner wall central point department of mounting groove has seted up the telescopic hole, adjacent two coincide grafting has the mounting panel between the mounting groove, the locating hole has all been seted up at the both ends of mounting panel, elasticity grafting has the locating lever with the locating hole joint in the telescopic hole, and this energy-conserving building outer wall structure has promoted the fixed and the convenience of dismantling of building outer wall main part.

Description

Energy-saving building outer wall structure
Technical Field
The application relates to the field of building outer wall structures, in particular to an energy-saving building outer wall structure.
Background
The energy-saving building is a low-energy building designed after building planning partitions, groups and monomers, building orientation, spacing, solar radiation, wind direction and external space environment are researched according to a basic method of climate design and energy saving, when the existing energy-saving building outer wall structure is used in a rainy day and rainy days, accumulated water permeates into a wall body and is difficult to discharge, the wall body is easy to corrode, the service life of the building wall body is influenced, and the existing energy-saving building outer wall is usually connected and fixed by using concrete mortar.
The application number is 202222052541.1, the energy-saving building outer wall structure comprises a building outer wall body, a wall substrate is arranged in the middle of the building outer wall body, two sides of the wall substrate are connected with heat insulation layers, and a sound insulation cotton plate is arranged in the middle of the heat insulation layers; the utility model provides a building outer wall, including building outer wall, collecting hole, guide hole, connecting block, locating screw, connecting block and connecting block.
Firstly, the rainwater on the surface of a building wall body is increased by using the collecting holes, meanwhile, the strength of the interior of the building outer wall main body is influenced by the embedded drain pipe, and meanwhile, the bottom of the building outer wall main body is influenced by water discharged from the water outlet holes; although the fixing connection plate and the bolts can keep the head-to-tail connection among the plurality of building outer wall main bodies, the bolts are extremely easy to rust under the condition of long-time outdoor use, and therefore the wall body is still difficult to disassemble and reorganize.
Disclosure of Invention
The content of the present application is intended to introduce concepts in a simplified form that are further described below in the detailed description. The section of this application is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter.
In order to solve the technical problem that the above background art part mentioned, some embodiments of this application provide an energy-conserving building outer wall structure, this energy-conserving building outer wall structure include building outer wall main part and embedded heat insulating board that sets up in the building outer wall main part, the spread groove has all been seted up to the both ends of building outer wall main part symmetry, and the mounting groove has all been seted up at the lateral wall both ends of building outer wall main part, and wherein the top of building outer wall main part is fixed with the guide plate that the slope set up, the draw-in groove has all been seted up to the inner wall both sides of spread groove to be fixed with the decorative board through draw-in groove detachable, the arc wall has all been seted up to the inner wall both sides of mounting groove, and the inner wall central point department of mounting groove has seted up the concertina grafting and has the mounting panel between the adjacent two the mounting groove, the locating hole has all been seted up at the both ends of mounting panel, elasticity grafting has the locating lever with the locating hole joint in the telescopic hole.
When the energy-saving building outer wall structure of the technical scheme is used, the backflow plate is fixed at the top end of the building outer wall main body, water flow is blocked and conveyed through the backflow plate, rainwater on the surface of the building outer wall main body is greatly reduced, meanwhile, the fastening groove is formed in the side wall of the building outer wall main body, the heat insulation plate is embedded and installed in the fastening groove, the decorative plate is detachably fixed through the connecting grooves formed in the two ends of the building outer wall main body, and the heat insulation effect of the building outer wall main body and the convenience in installation and detachment of the decorative plate are improved; through all having seted up the mounting groove at the lateral wall both ends of building outer wall main part, the arc wall has all been seted up in the inner wall both sides of mounting groove, the mounting panel is coincide grafting in the arc wall through the arc piece on it, simultaneously the spring in the telescopic hole of mounting groove inner wall promotes the locating lever and makes it coincide grafting in the locating hole at mounting panel both ends, thereby make between two adjacent building outer wall main parts keep fixed, simultaneously when dismantling building outer wall main part, extrude the locating lever from the lateral wall of mounting panel and make it shift out from the locating hole, thereby make separation between two building outer wall main parts fixed mutually, the convenience of building outer wall main part fixed and dismantlement has been promoted.
Preferably, the two ends of the side wall of the building outer wall main body are provided with fastening grooves, and the two heat insulation boards are in T-shaped structure and are in damping insertion connection in the fastening grooves.
Further, the side wall of decorative board is rectangular array and is fixed with a plurality of connecting plates, the both ends of connecting plate have all seted up the recess.
Furthermore, elastic plates are fixed on the inner walls of the two grooves, and are connected in the connecting grooves in an anastomotic manner through the elastic plates.
Furthermore, the two elastic plates are provided with inclined grooves at one ends far away from the decorative plate, and the outer walls of the two elastic plates are fixed with clamping blocks which are anastomosed and inserted in the clamping grooves.
Furthermore, the two ends of the mounting plate are both fixed with arc blocks, and the arc blocks are anastomosed and inserted in the arc grooves.
Furthermore, a spring is embedded in the telescopic hole, and one end of the positioning rod, which extends out of the telescopic hole, is anastomotic and inserted into the positioning hole.
The beneficial effects of this application lie in: 1. according to the utility model, the backflow plate is fixed at the top end of the building outer wall main body, water flow is blocked and conveyed through the backflow plate, rainwater on the surface of the building outer wall main body is greatly reduced, meanwhile, the fastening groove is formed in the side wall of the building outer wall main body, the heat insulation plate is embedded and installed in the fastening groove, and the decorative plate is detachably fixed through the connecting grooves formed in the two ends of the building outer wall main body, so that the heat insulation effect of the building outer wall main body and the convenience of installing and detaching the decorative plate are improved.
2. Through all having seted up the mounting groove at the lateral wall both ends of building outer wall main part, the arc wall has all been seted up in the inner wall both sides of mounting groove, the mounting panel is coincide grafting in the arc wall through the arc piece on it, simultaneously the spring in the telescopic hole of mounting groove inner wall promotes the locating lever and makes it coincide grafting in the locating hole at mounting panel both ends, thereby make between two adjacent building outer wall main parts keep fixed, simultaneously when dismantling building outer wall main part, extrude the locating lever from the lateral wall of mounting panel and make it shift out from the locating hole, thereby make separation between two building outer wall main parts fixed mutually, the convenience of building outer wall main part fixed and dismantlement has been promoted.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, are included to provide a further understanding of the application and to provide a further understanding of the application with regard to the other features, objects and advantages of the application. The drawings of the illustrative embodiments of the present application and their descriptions are for the purpose of illustrating the present application and are not to be construed as unduly limiting the present application.
In addition, the same or similar reference numerals denote the same or similar elements throughout the drawings. It should be understood that the figures are schematic and that elements and components are not necessarily drawn to scale.
In the drawings:
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic view of a split structure of a main body of an outer wall of a building according to the present utility model;
FIG. 3 is a schematic view of a decoration plate structure according to the present utility model;
FIG. 4 is a schematic view of the main structure of the outer wall of the building according to the present utility model;
fig. 5 is a schematic view of the internal structure of the main body of the building outer wall according to the present utility model.
Reference numerals:
1. a building outer wall main body; 2. a decorative plate; 3. a heat insulating plate; 4. a connecting groove; 5. a connecting plate; 6. a fastening groove; 7. a clamping groove; 8. a groove; 9. a clamping block; 10. an inclined groove; 11. an elastic plate; 12. a deflector; 13. a mounting plate; 14. a mounting groove; 15. an arc-shaped block; 16. a spring; 17. a positioning rod; 18. a telescopic hole; 19. an arc-shaped groove; 20. and positioning holes.
Detailed Description
Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While certain embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be embodied in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete. It should be understood that the drawings and embodiments of the present disclosure are for illustration purposes only and are not intended to limit the scope of the present disclosure.
It should be noted that, for convenience of description, only the portions related to the present utility model are shown in the drawings. Embodiments of the present disclosure and features of embodiments may be combined with each other without conflict.
It should be noted that the terms "first," "second," and the like in this disclosure are merely used to distinguish between different devices, modules, or units and are not used to define an order or interdependence of functions performed by the devices, modules, or units.
It should be noted that references to "one", "a plurality" and "a plurality" in this disclosure are intended to be illustrative rather than limiting, and those of ordinary skill in the art will appreciate that "one or more" is intended to be understood as "one or more" unless the context clearly indicates otherwise.
The present disclosure will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
Referring to fig. 1, an energy-saving building outer wall structure comprises a building outer wall main body 1 and a heat insulation board 3 embedded in the building outer wall main body 1, wherein connecting grooves 4 are symmetrically formed in two ends of the building outer wall main body 1, mounting grooves 14 are formed in two ends of the side wall of the building outer wall main body 1, guide plates 12 which are obliquely arranged are fixed at the top end of the building outer wall main body 1, clamping grooves 7 are formed in two sides of the inner wall of the connecting grooves 4, decorative plates 2 are detachably fixed through the clamping grooves 7, arc grooves 19 are formed in two sides of the inner wall of the mounting grooves 14, telescopic holes 18 are formed in the center position of the inner wall of the mounting grooves 14, mounting plates 13 are connected between two adjacent mounting grooves 14 in an anastomotic manner, positioning holes 20 are formed in two ends of each mounting plate 13, positioning rods 17 which are clamped with the positioning holes 20 are elastically connected in the telescopic holes 18 in an inserting manner, the mounting plates 13 are connected in the arc grooves 19 in an anastomotic manner through arc blocks 15 on the mounting plates, springs 16 in the inner wall telescopic holes 18 of the mounting grooves 14 push the positioning rods 17 to be connected in the positioning holes 20 in the two ends of the positioning holes 13 in an anastomotic manner, and accordingly the main body 1 is kept between the two adjacent mounting plates 1 and the two mounting plates are fixed between the two mounting plates 1 and are fixed, and the two mounting plates are fixed between the two mounting plates 1 are extruded and are fixed, and the two mounting plates are fixed between the two mounting plates 1 are fixed and are separated from the side walls 1 and are fixed at the side walls 1 at the side walls and are fixed at the side walls 1 at the positioning plates.
Referring to fig. 1 and 2, fastening grooves 6 are formed at both ends of the side wall of the building outer wall main body 1, two heat insulation boards 3 are in damping insertion in the fastening grooves 6 in a T-shaped structure, so that the heat insulation boards 3 are kept fixed in the fastening grooves 6, a plurality of connection boards 5 are fixed on the side wall of the decorative board 2 in a rectangular array, grooves 8 are formed at both ends of the connection boards 5, elastic boards 11 are fixed on the inner walls of the two grooves 8, the two elastic boards 11 are inserted in the connection grooves 4 in an anastomotic manner, inclined grooves 10 are formed at one ends of the two elastic boards 11, far away from the decorative board 2, of the building outer wall main body 1, and clamping blocks 9 which are inserted in the clamping grooves 7 in an anastomotic manner are fixed on the outer walls of the two elastic boards 11, when the connection boards 5 and the elastic boards 11 are inserted in the connection grooves 4 in an anastomotic manner, the inclined grooves 10 on the elastic boards 11 are abutted against the inner walls of the connection grooves 4, the clamping blocks 9 are extruded with the inner walls of the connection grooves 4 in the continuous extrusion process, and the elastic boards 11 are elastically deformed towards the grooves 8 until the elastic boards 11 are pushed to be inserted in the grooves 7 in an anastomotic manner after the elastic boards 11 are completely inserted, so that the decorative board 2 is kept in contact with the side wall of the building outer wall main body 1, and is kept in contact with the side walls of the heat insulation boards 3.
Referring to fig. 3 and 4, the two ends of the mounting plate 13 are both fixed with arc blocks 15, the arc blocks 15 are in fit connection with the arc grooves 19, the telescopic holes 18 are internally embedded with springs 16, one ends of the positioning rods 17, which extend out of the telescopic holes 18, are in fit connection with the positioning holes 20, the springs 16 in the telescopic holes 18 on the inner wall of the mounting groove 14 push the positioning rods 17 to be in fit connection with the positioning holes 20 on the two ends of the mounting plate 13, so that two adjacent building outer wall bodies 1 are kept fixed, and meanwhile, when the building outer wall bodies 1 are disassembled, the positioning rods 17 are extruded from the side walls of the mounting plate 13 to be removed from the positioning holes 20, so that the two fixed building outer wall bodies 1 are separated.
Working principle: the baffle 12 blocks and conveys water flow, rainwater on the surface of the building outer wall main body 1 is greatly reduced, the two ends of the side wall of the building outer wall main body 1 are respectively provided with an installation groove 14, the two sides of the inner wall of the installation groove 14 are respectively provided with an arc groove 19, the installation plate 13 is anastomotic ly inserted into the arc grooves 19 through arc blocks 15 on the installation grooves, meanwhile, a spring 16 in a telescopic hole 18 of the inner wall of the installation groove 14 pushes a positioning rod 17 to be anastomotic ly inserted into positioning holes 20 at the two ends of the installation plate 13, so that two adjacent building outer wall main bodies 1 are kept fixed, and meanwhile, when the building outer wall main bodies 1 are disassembled, the positioning rod 17 is extruded from the side wall of the installation plate 13 to be moved out of the positioning holes 20, so that the two fixed building outer wall main bodies 1 are separated.
The foregoing description is only of the preferred embodiments of the present disclosure and description of the principles of the technology being employed. It will be appreciated by those skilled in the art that the scope of the utility model in the embodiments of the present disclosure is not limited to the specific combination of the above technical features, but encompasses other technical features formed by any combination of the above technical features or their equivalents without departing from the spirit of the utility model. Such as the above-described features, are mutually substituted with (but not limited to) the features having similar functions disclosed in the embodiments of the present disclosure.

Claims (7)

1. The utility model provides an energy-conserving building outer wall structure, this energy-conserving building outer wall structure includes building outer wall main part (1) and embedded heat insulating board (3) that set up in building outer wall main part (1), a serial communication port, spread groove (4) have all been seted up to the both ends of building outer wall main part (1), and mounting groove (14) have all been seted up at the lateral wall both ends of building outer wall main part (1), and guide plate (12) that the slope set up are fixed with on the top of building outer wall main part (1), draw-in groove (7) have all been seted up to inner wall both sides of spread groove (4) to be fixed with decorative board (2) through draw-in groove (7) detachable, arc wall (19) have all been seted up to the inner wall both sides of mounting groove (14), and have seted up telescopic hole (18) in the inner wall central point of mounting groove (14), and two adjacent coincide grafting between mounting groove (14) have mounting panel (13), locating hole (20) have all been seted up at the both ends of mounting panel (13), elasticity grafting has locating lever (17) with locating hole (20) joint.
2. The energy-saving building outer wall structure according to claim 1, wherein fastening grooves (6) are formed at two ends of the side wall of the building outer wall main body (1), and the two heat insulation boards (3) are in damping insertion connection in the fastening grooves (6) in a T-shaped structure.
3. The energy-saving building outer wall structure according to claim 1, wherein a plurality of connecting plates (5) are fixed on the side wall of the decorative plate (2) in a rectangular array, and grooves (8) are formed at two ends of each connecting plate (5).
4. An energy-saving building outer wall structure according to claim 3, characterized in that the inner walls of both grooves (8) are fixed with elastic plates (11) and are connected in the connecting groove (4) in an anastomotic manner through the elastic plates (11).
5. The energy-saving building outer wall structure according to claim 4, wherein the two elastic plates (11) are provided with inclined grooves (10) at one ends far away from the decorative plate (2), and clamping blocks (9) which are connected in the clamping grooves (7) in an anastomotic manner are fixed on the outer walls of the two elastic plates (11).
6. An energy-saving building outer wall structure according to claim 1, wherein the two ends of the mounting plate (13) are both fixed with arc blocks (15), and the arc blocks (15) are in fit connection with the arc grooves (19).
7. The energy-saving building outer wall structure according to claim 1, wherein a spring (16) is embedded in the telescopic hole (18), and one end of the positioning rod (17) extending out of the telescopic hole (18) is in fit connection with and inserted into the positioning hole (20).
CN202321864532.0U 2023-07-17 2023-07-17 Energy-saving building outer wall structure Active CN220266907U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321864532.0U CN220266907U (en) 2023-07-17 2023-07-17 Energy-saving building outer wall structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321864532.0U CN220266907U (en) 2023-07-17 2023-07-17 Energy-saving building outer wall structure

Publications (1)

Publication Number Publication Date
CN220266907U true CN220266907U (en) 2023-12-29

Family

ID=89313366

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321864532.0U Active CN220266907U (en) 2023-07-17 2023-07-17 Energy-saving building outer wall structure

Country Status (1)

Country Link
CN (1) CN220266907U (en)

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