Multi-layer building heat preservation enclosure structure
By adopting a multi-layer design in the building envelope structure, including protective panels, butt panels, seal strips and sealing gaskets, the rainwater entry problem caused by the gaps in the protection plate is solved, and higher sealing and enclosure effect are achieved, and the waterproof, fire resistance and fire resistance of the structure are improved.
Patent Information
- Application Number
- CN202422015627.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing building enclosure structure is prone to large gaps between the protective panels after docking, causing external rainwater to enter between the enclosure and the wall, causing the wall to be damp and reducing the enclosure effect.
A multi-layer building insulation enclosure structure is adopted, including protective panels, butt panels, sealing strips and sealing gaskets. Through the fit of the butt panels and the docking grooves and the misaligned fit of the sealing strips, the misaligned sealing effect is achieved and rainwater is prevented from entering.
It improves the sealing of the enclosure structure to prevent rainwater from entering, thereby avoiding moisture from the wall, enhancing the enclosure effect, and protecting the installation screws from corrosion. It has waterproof, fire-resistant and fire-resistant effects, and improves safety.
Smart Images

Figure CN223017883U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wire bending tests, and particularly to a multi-layered building thermal insulation enclosure structure. Background Technique
[0002] The enclosure system refers to the measures taken to isolate the construction site from the external environment so that the construction site becomes a relatively enclosed space. Usually, whether the enclosure structure can withstand these tests determines the service environment and quality of the building. For example, in the patent with the publication number "CN215632187U" and the patent name "A fireproof and thermal insulation building enclosure system", during use, the mounting frame is placed at a designated position, and the splicing column of one protective panel is docked with the splicing hole of another protective panel, which is convenient for docking the protective panels and improves the assembly efficiency of personnel. The positioning holes of the protective panels of multiple splicing mechanisms are positioned and docked with the positioning columns on the mounting grooves. At the same time, the docking blocks on both sides of the protective panel are docked with the docking grooves on both sides of the mounting groove, so that the protective panel is installed on the mounting groove. The mounting pin is threadedly connected to the mounting hole, so that the docking block is fixed on the docking groove through the mounting pin, and the protective panel is fixed on the mounting frame. The waterproof panel is used to prevent water seepage inside the protective panel, and the fireproof layer is used to improve the fire resistance of the protective panel, which plays a fireproof effect on the protective panel. The thermal insulation panel is used to improve the heat insulation effect, solving the problems that the building enclosure system is inconvenient to disassemble and assemble, has poor fireproof effect and poor heat insulation. The protective panel is made of asbestos material to improve the fire resistance, electrical insulation and heat insulation of the protective panel. The thermal insulation panel is made of polystyrene foam to improve the heat insulation effect of the protective panel. However, the following problems still exist in the actual use process:
[0003] In the above structure, the positioning holes of the protective panels of multiple splicing mechanisms are positioned and docked with the positioning columns on the mounting grooves. However, after docking, there are often large gaps between the protective panels, and external rainwater can enter between the enclosure and the wall through the gaps between the enclosures, resulting in the wall getting damp and thus reducing its enclosure effect.
[0004] Therefore, we propose a multi-layered building thermal insulation enclosure structure that can well solve the above problems. Content of the Utility Model
[0005] The purpose of the utility model is to provide a multi-layered building thermal insulation enclosure structure to solve the problem that there are often large gaps between the protective panels after docking in the current market, and external rainwater can enter between the enclosure and the wall through the gaps between the enclosures, resulting in the wall getting damp and thus reducing its enclosure effect as mentioned in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A multi-layered building thermal insulation enclosure structure, including a protective panel and a docking panel fixed on the left side of the protective panel for splicing;
[0007] Further included are: the docking plate is fitted with a docking groove opened on the right side of the protection plate, and sealing structures are provided on both sides of the docking plate, and the sealing effect is achieved through the cooperation between the first sealing strip and the second sealing strip.
[0008] Preferably, the first sealing strip is adhesively bonded to the right side of the protection plate, and the second sealing strip is adhesively bonded to the left side of the protection plate. At the same time, the first sealing strip and the second sealing strip are respectively fitted with the protection plate.
[0009] Preferably, two groups of the first sealing strip and the second sealing strip are provided, and the positions of the first sealing strip and the second sealing strip are staggered from each other.
[0010] Preferably, mounting screws are provided on the front side of the protection plate, and the rear ends of the mounting screws extend into the docking groove to form a threaded connection with the through holes, and at the same time, the mounting screws are also in close fit with the sealing washers, and the sealing washers are adhesively bonded to the protection plate.
[0011] Preferably, the through holes are opened on the surface of the docking plate, and three groups of through holes are provided.
[0012] Preferably, the surface of the protection plate is the surface layer, and the surface layer is made of polyvinyl chloride material. At the same time, the rear side of the surface layer is fitted with a fireproof layer, and the fireproof layer is made of a refractory board, and the rear side of the fireproof layer is fitted with a heat-insulating layer.
[0013] Preferably, the heat-insulating layer is made of rock wool material, and the rear side of the heat-insulating layer is fitted with an inner layer. At the same time, the inner layer is a mixture of cement mortar, and the inner layer is fitted with the wall.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: This multi-layered building heat-insulating and enclosing structure not only achieves the effect of staggered sealing, thereby further improving the sealing performance, thus preventing external rainwater from entering the wall through the gap between the two protection plates and causing the wall to get damp, thereby well enclosing the wall. At the same time, it can prevent rainwater from entering the interior through the gap between the mounting screw and the protection plate and corroding the mounting screw, thereby protecting the mounting screw, and has the effects of waterproof, fire-resistant and fire-proof to achieve the function of controlling the fire and improving safety. The specific content is as follows:
[0015] (1) Through the setting of the first sealing strip and the second sealing strip, the effect of double sealing is achieved. At the same time, the fitting directions of the first sealing strip and the second sealing strip are opposite, so the effect of staggered sealing is achieved, thereby further improving the sealing performance, thus preventing external rainwater from entering the wall through the gap between the two protection plates and causing the wall to get damp, thereby well enclosing the wall;
[0016] Dock the docking plate on one side of a set of protective plates with the docking groove on one side of another set of protective plates, so as to achieve the splicing effect between the two sets of protective plates and have a positioning function at the same time;
[0017] When the docking plate and the docking groove are docked and fitted, at this time, the installation screw can penetrate through one set of protective plates, and at the same time, the rear end of the installation screw penetrates through the through screw hole, so as to limit the position of the docking plate. At this time, the installation and fixation effect can be achieved, making the connection between the protective plates more stable;
[0018] By closely fitting the installation screw with the sealing washer, the sealing effect can be achieved, and thus rainwater can be prevented from entering the interior through the gap between the installation screw and the protective plate to corrode the installation screw, thereby playing a protective role for the installation screw;
[0019] At the same time, the protective plate is composed of a surface layer, a fireproof layer, a heat-insulating layer and an inner layer, and the surface is made of polyvinyl chloride material. Therefore, the surface layer has a waterproof effect. At the same time, a fireproof layer is provided below the surface layer, and the fireproof layer is made of refractory board material, so as to achieve the effect of fire resistance and fire prevention, so as to control the fire and improve safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is the front view structural schematic diagram of the present utility model;
[0021] Figure 2 is the side view structural schematic diagram of the present utility model;
[0022] Figure 3 is the cross-sectional view structural schematic diagram of the present utility model;
[0023] Figure 4 is the present utility model Figure 3 The enlarged structural schematic diagram at A in;
[0024] Figure 5 is the separated structural schematic diagram of the protective plate of the present utility model;
[0025] Figure 6 is the front view structural schematic diagram of the connection between the surface layer and the fireproof layer of the present utility model.
[0026] In the figure: 1. Protective plate; 2. Docking plate; 3. Docking groove; 4. First sealing strip; 5. Second sealing strip; 6. Installation screw; 7. Through screw hole; 8. Sealing washer; 9. Surface layer; 10. Fireproof layer; 11. Heat-insulating layer; 12. Inner layer. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0028] Please refer to Figures 1-6 , the present invention provides the following technical solutions:
[0029] Embodiment 1: To solve the problem that there are often large gaps between the protection plates 1 after docking in the prior art, and rainwater outside can enter between the enclosure and the wall through the gaps between the enclosures, resulting in the wall getting damp and thus reducing its enclosure effect. Therefore, the following solution is disclosed, including the protection plate 1 and the docking plate 2 fixed on the left side of the protection plate 1 for splicing; further including: the docking plate 2 fits into the docking groove 3 opened on the right side of the protection plate 1, and sealing structures are provided on both sides of the docking plate 2. The sealing effect is achieved through the cooperation between the first sealing strip 4 and the second sealing strip 5. The first sealing strip 4 is bonded to the right side of the protection plate 1, and the second sealing strip 5 is bonded to the left side of the protection plate 1. At the same time, the first sealing strip 4 and the second sealing strip 5 respectively fit with the protection plate 1. Both the first sealing strip 4 and the second sealing strip 5 are provided in two groups, and the positions of the first sealing strip 4 and the second sealing strip 5 are staggered from each other.
[0030] First, the docking plate 2 on one side of a group of protection plates 1 is docked with the docking groove 3 on one side of another group of protection plates 1, thereby achieving the splicing effect between the two groups of protection plates 1 and having a positioning function at the same time. At this time, when the two groups of protection plates 1 are spliced, the first sealing strip 4 on one side of one group of protection plates 1 will also fit with the other group of protection plates 1 on one side, thereby achieving the sealing effect. At the same time, the second sealing strip 5 on one side of the other group of protection plates 1 will also fit with the first group of protection plates 1, thereby achieving a double-sealing effect. At the same time, the fitting directions of the first sealing strip 4 and the second sealing strip 5 are opposite, so the effect of staggered sealing is achieved, further improving the sealing performance, thus preventing external rainwater from entering the wall through the gaps between the two groups of protection plates 1, resulting in the wall getting damp, and thus well protecting the wall;
[0031] Embodiment 2: When the existing protection plate 1 is installed, rainwater easily enters through the gaps between the screws, and it is easy to cause the screws to corrode and rust over time. Therefore, the following solution is disclosed to solve the above problem. For specific reference Figures 1-4, mounting screws 6 are provided on the front side of the protective plate 1, and the rear end of the mounting screw 6 extends into the docking groove 3 to form a threaded connection with the through-hole 7. At the same time, the mounting screw 6 is also in close contact with the sealing washer 8, and the sealing washer 8 is bonded to the protective plate 1. The through-hole 7 is opened on the surface of the docking plate 2, and three groups of through-holes 7 are provided.
[0032] Moreover, when the docking plate 2 and the docking groove 3 are docked and fitted, at this time, the mounting screw 6 can penetrate through one of the protective plates 1, and at the same time, the rear end of the mounting screw 6 penetrates through the through-hole 7, thereby limiting the position of the docking plate 2. At this time, the effect of installation and fixation can be achieved, making the connection between the protective plates 1 more stable. At the same time, the mounting screw 6 is embedded in the surface of the protective plate 1. When the mounting screw 6 is completely tightened, the mounting screw 6 will be in close contact with the sealing washer 8, thereby achieving a sealing effect, and thus preventing rainwater from entering the interior through the gap between the mounting screw 6 and the protective plate 1 to corrode the mounting screw 6, thereby playing a protective role for the mounting screw 6;
[0033] Embodiment 3: The existing enclosure structure has poor fire resistance and heat insulation performance. When a fire occurs, it is very easy to burn the enclosure structure. Therefore, the following solution is disclosed to solve the above problems. For specific reference Figure 6 , the surface of the protective plate 1 is the surface layer 9, and the surface layer 9 is made of polyvinyl chloride material. At the same time, the rear side of the surface layer 9 is attached to the fireproof layer 10, and the fireproof layer 10 is made of refractory board. And the rear side of the fireproof layer 10 is attached to the heat insulation layer 11, the heat insulation layer 11 is made of rock wool material, and the rear side of the heat insulation layer 11 is attached to the inner layer 12. At the same time, the inner layer 12 is made of cement mortar mixture, and the inner layer 12 is attached to the wall.
[0034] At the same time, the protective plate 1 is composed of the surface layer 9, the fireproof layer 10, the heat insulation layer 11 and the inner layer 12, and the surface is made of polyvinyl chloride material, so that the surface layer 9 has the effect of waterproofing. At the same time, a fireproof layer 10 is provided below the surface layer 9, and the fireproof layer 10 is made of refractory board material, thereby achieving the effect of fire resistance and fire prevention, so as to control the fire and improve safety. And a heat insulation layer 11 is provided inside the fireproof layer 10 to achieve the heat insulation effect. The heat insulation layer 11 is made of rock wool material, so that the enclosure structure has a heat insulation effect. Finally, the inner layer 12 made of cement mortar mixture is attached to the wall, thereby realizing the installation of the enclosure structure.
[0035] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0036] Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A multi-layered building thermal insulation enclosure structure, comprising a protective plate (1) and a butt joint plate (2) fixed on the left side of the protective plate (1) for splicing; It is characterized in that Also includes: The docking plate (2) is matched with a docking groove (3) provided on the right side of the protective plate (1), and sealing structures are provided on both sides of the docking plate (2), and a sealing effect is achieved through the cooperation between the first sealing strip (4) and the second sealing strip (5).
2. A multi-layered building thermal insulation enclosure structure according to claim 1, characterized in that: The first sealing strip (4) is bonded to the right side of the protective plate (1), and the second sealing strip (5) is bonded to the left side of the protective plate (1), and the first sealing strip (4) and the second sealing strip (5) are respectively fitted with the protective plate (1).
3. The multi-layered building thermal insulation enclosure structure according to claim 1, characterized in that: The first sealing strip (4) and the second sealing strip (5) are both provided in two groups, and the positions of the first sealing strip (4) and the second sealing strip (5) are staggered with each other.
4. The multi-layered building thermal insulation enclosure structure according to claim 1, characterized in that: The front side of the protective plate (1) is provided with a mounting screw (6), and the rear end of the mounting screw (6) extends into the docking groove (3) to form a threaded connection with the through screw hole (7), and the mounting screw (6) is also tightly fitted with the sealing gasket (8), and the sealing gasket (8) and the protective plate (1) are bonded.
5. The multi-layered building thermal insulation enclosure structure according to claim 4, characterized in that: The through screw holes (7) are opened on the surface of the docking plate (2), and three groups of through screw holes (7) are provided.
6. The multi-layered building thermal insulation enclosure structure according to claim 1, characterized in that: The surface of the protective plate (1) is a surface layer (9), and the surface layer (9) is made of polyvinyl chloride material. At the same time, the rear side of the surface layer (9) is in contact with the fireproof layer (10), and the fireproof layer (10) is made of fire-resistant board, and the rear side of the fireproof layer (10) is in contact with the thermal insulation layer (11).
7. The multi-layered building thermal insulation enclosure structure according to claim 6, characterized in that: The thermal insulation layer (11) is made of rock wool, and the rear side of the thermal insulation layer (11) is in contact with the inner layer (12). The inner layer (12) is made of a mixture of cement mortar, and the inner layer (12) is in contact with the wall.