Mounting structure of color stone and metal heat preservation integrated plate
By using bent pieces and mounting holes in the installation structure of the integrated stone metal insulation panel, the problem of installation deformation caused by uneven exterior walls of old buildings is solved, and the flat installation and tight connection of the integrated stone metal insulation panel are achieved.
Patent Information
- Application Number
- CN202423049808.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-11
AI Technical Summary
When installing existing colored stone metal insulation panels for exterior wall decoration and renovation of old buildings, uneven wall surfaces can easily cause compression deformation, affecting the flatness and installation effect.
An installation structure for a colored stone metal insulation integrated panel was designed. It uses lower and upper bent plates fixed with screws, and installation holes are set on the bent plates to allow deformation to adapt to uneven wall surfaces. The trapezoidal joint and U-shaped insertion groove are combined to achieve horizontal positioning and tight fit of the panel.
To achieve a smooth installation of the integrated stone metal insulation panel on uneven building surfaces, maintain the straightness of the panel, and improve the aesthetics of the installation and the assembly effect.
Smart Images

Figure CN223497466U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of integrated colored stone metal insulation panels, specifically an installation structure for integrated colored stone metal insulation panels. Background Technology
[0002] Colored stone metal insulation integrated panel uses aluminized zinc steel plate with excellent corrosion resistance as the base material, water-based acrylic ester as the adhesive, sintered colored sand as the surface layer, and highly weather-resistant acrylic resin as the outermost surface layer. Insulation material is filled in the frame formed by bending the aluminized zinc steel plate. It is a decorative material that integrates insulation and decoration and is widely used in the exterior wall decoration and renovation of various public buildings and civil buildings, including multi-story, mid-rise, and high-rise buildings.
[0003] In existing technologies, the installation of integrated stone-coated metal insulation panels can be achieved by fixing them to a keel frame or by directly installing them onto the wall. However, when decorating or renovating the exterior walls of old buildings, the direct installation method is often used. Since the exterior walls of old buildings are often uneven, during installation, when the expansion bolts encounter concave areas of the wall, tightening the bolts can cause compression deformation of the integrated stone-coated metal insulation panel, affecting the surface flatness and hindering the installation of the upper integrated stone-coated metal insulation panels. Therefore, this paper provides an installation structure for integrated stone-coated metal insulation panels. Utility Model Content
[0004] The purpose of this utility model is to provide an installation structure for a colored stone metal insulation integrated panel in order to solve the problems mentioned above.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an installation structure for a colored stone metal insulation integrated panel, comprising an outer shell assembly and an insulation layer, wherein the outer shell assembly comprises an outer shell body and an installation back plate;
[0006] The mounting backplate is fixed to the top rear end of the outer shell body, and the insulation layer fills the interior of the outer shell body;
[0007] The mounting back plate is formed with a lower folded plate and an upper folded plate in sequence along the horizontal direction. The lower folded plate and the upper folded plate are fixed to the building wall by screws passing through them. The lower folded plate and the upper folded plate are deformed and bent to adapt to the concave surface of the building wall.
[0008] As a further improvement of this utility model: the mounting back plate, the lower bending piece, and the upper bending piece are all provided with mounting holes, and the mounting holes on the mounting back plate are distributed in the middle area of the lower bending piece and the upper bending piece.
[0009] As a further embodiment of this utility model: the outer shell assembly further includes a trapezoidal mating part, a U-shaped insertion groove, a trapezoidal mating groove, a U-shaped insertion part, and a concave surface;
[0010] The trapezoidal docking part and the U-shaped insertion groove are integrally formed on the top of the outer shell body, and the U-shaped insertion groove is distributed at the front end of the trapezoidal docking part;
[0011] The trapezoidal docking groove and the U-shaped insertion part are formed at the bottom of the trapezoidal docking part, and the U-shaped insertion part is distributed at the front end of the trapezoidal docking groove;
[0012] When the upper and lower outer shells are joined together, the trapezoidal docking groove and U-shaped insertion part on the upper outer shell are respectively engaged with the trapezoidal docking part and the U-shaped insertion groove to achieve horizontal positioning of the two outer shells.
[0013] The concave surface is integrally formed at the rear bottom of the trapezoidal docking part, and the concave surface is used to provide docking space for the mounting back plate on the lower outer shell body.
[0014] As a further embodiment of this utility model: the rear end surface of the trapezoidal docking part is inclined, and the top of the trapezoidal docking part is formed with an arc-shaped protrusion, and the inner wall trajectory of the trapezoidal docking groove matches the outer wall trajectory of the trapezoidal docking part.
[0015] As a further embodiment of this utility model: the outer shell body, trapezoidal connecting part, U-shaped insertion groove, trapezoidal connecting groove, U-shaped insertion part, mounting back plate and concave surface are integrally formed by steel plate through stamping and bending processes, and the lower bending piece, upper bending piece and mounting hole are integrally formed by punching process.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] By setting up lower and upper folding tabs, when there is a concave surface on the wall corresponding to the mounting holes on the lower and upper folding tabs, the screws can compress and deform the lower and upper folding tabs during installation, making them fit tightly against the wall surface. Meanwhile, the overall straightness of the installation back panel remains unchanged. In this way, when installing the integrated stone metal insulation panel on uneven building surfaces, the integrated stone metal insulation panel can maintain a good straightness, resulting in a flatter and more aesthetically pleasing installation. Furthermore, the undeformed integrated stone metal insulation panel allows for better assembly and connection. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of this utility model;
[0019] Figure 2 For the present utility model Figure 1 Enlarged view of point A in the middle;
[0020] Figure 3 This is a schematic diagram of the connection between two integrated colored stone metal insulation panels of this utility model.
[0021] In the diagram: 1. Outer shell assembly; 101. Outer shell body; 102. Trapezoidal mating part; 103. U-shaped insertion groove; 104. Trapezoidal mating groove; 105. U-shaped insertion part; 106. Mounting back plate; 107. Concave surface; 2. Insulation layer; 3. Lower folded plate; 4. Upper folded plate; 5. Mounting hole. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figures 1-3 In this embodiment of the utility model, an installation structure for a colored stone metal insulation integrated panel includes an outer shell assembly 1 and an insulation layer 2. The outer shell assembly 1 includes an outer shell body 101 and an installation back plate 106.
[0024] The mounting backplate 106 is fixed to the top rear end of the outer shell body 101, and the insulation layer 2 is filled inside the outer shell body 101;
[0025] The mounting back plate 106 is formed with a lower folded plate 3 and an upper folded plate 4 in sequence along the horizontal direction. The lower folded plate 3 and the upper folded plate 4 are fixed to the building wall by screws passing through them. The deformation and bending of the lower folded plate 3 and the upper folded plate 4 are used to adapt to the concave surface of the building wall.
[0026] Mounting holes 5 are provided on the mounting back plate 106, the lower folding plate 3, and the upper folding plate 4, and the mounting holes 5 on the mounting back plate 106 are distributed in the middle area of the lower folding plate 3 and the upper folding plate 4.
[0027] In this embodiment: When this integrated colored stone metal insulation panel is directly installed on the building wall, the mounting holes 5 provide holes for screw installation. When there is a concave surface on the wall corresponding to the mounting holes 5 on the lower bending piece 3 and the upper bending piece 4, the screws can be squeezed to deform the lower bending piece 3 and the upper bending piece 4, so that the lower bending piece 3 and the upper bending piece 4 are tightly attached to the wall, while the overall straight state of the mounting back plate 106 remains unchanged. If there is a concave surface on the wall corresponding to the mounting holes 5 on the mounting back plate 106, screws do not need to be installed on the mounting holes 5 here, and screws can be installed through other mounting holes 5. (It should be noted that: the mounting back plate 106 and the lower bending piece 3 and the upper bending piece 4 are provided with multiple mounting holes 5. During installation, it is not necessary to install screws at all mounting hole 5 positions. The number of screws can be adjusted according to the specific situation.)
[0028] Through the cooperation of the above components, the integrated stone metal insulation panel can maintain a good straight line when installed on uneven building surfaces. This not only makes the installation flatter and more aesthetically pleasing, but also allows for better docking and assembly of the non-deformed integrated stone metal insulation panel.
[0029] Please refer to this carefully. Figures 1-3 The outer casing assembly 1 also includes a trapezoidal mating part 102, a U-shaped insertion groove 103, a trapezoidal mating groove 104, a U-shaped insertion part 105, and a concave surface 107;
[0030] The trapezoidal docking part 102 and the U-shaped insertion groove 103 are integrally formed on the top of the outer shell body 101, and the U-shaped insertion groove 103 is distributed at the front end of the trapezoidal docking part 102;
[0031] The trapezoidal docking groove 104 and the U-shaped insertion part 105 are formed at the bottom of the trapezoidal docking part 102, and the U-shaped insertion part 105 is distributed at the front end of the trapezoidal docking groove 104.
[0032] When the upper and lower outer shell bodies 101 are spliced together, the trapezoidal docking groove 104 and the U-shaped insertion part 105 on the upper outer shell body 101 are respectively engaged with the trapezoidal docking part 102 and the U-shaped insertion groove 103 to achieve horizontal positioning of the two outer shell bodies 101;
[0033] The concave surface 107 is integrally formed on the rear bottom of the trapezoidal docking part 102. The concave surface 107 is used to provide docking space for the mounting back plate 106 on the lower outer shell body 101.
[0034] The rear end surface of the trapezoidal docking part 102 is inclined, and the top of the trapezoidal docking part 102 is formed with an arc-shaped protrusion. The inner wall trajectory of the trapezoidal docking groove 104 matches the outer wall trajectory of the trapezoidal docking part 102.
[0035] In this embodiment, when assembling the upper and lower colored stone metal insulation integrated panels, the trapezoidal docking groove 104 and U-shaped insertion part 105 on the upper outer shell body 101 are respectively engaged with the trapezoidal docking part 102 and U-shaped insertion groove 103 on the lower outer shell body 101, thus achieving docking. During this process, the inclined surface at the rear end of the trapezoidal docking part 102 can generate a squeezing force with the inclined surface of the U-shaped insertion groove 103, so that the bottom end of the upper outer shell body 101 is subjected to a pushing force towards the wall, thereby making the fit between the two outer shell bodies 101 tighter.
[0036] Please refer to this carefully. Figures 1-3 The outer shell body 101, trapezoidal docking part 102, U-shaped insertion groove 103, trapezoidal docking groove 104, U-shaped insertion part 105, mounting back plate 106 and concave surface 107 are integrally formed from steel plate through stamping and bending processes. The lower bending piece 3, upper bending piece 4 and mounting hole 5 are integrally formed through punching process.
[0037] In this embodiment, the outer shell assembly 1, the lower bending piece 3, the upper bending piece 4, and the mounting hole 5 are integrally formed from a single steel plate. The processing technology is the same as that of the existing colored stone metal insulation integrated panel outer shell. Production can be improved based on the existing colored stone metal insulation integrated panel processing technology, thereby facilitating promotion and production.
[0038] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. An installation structure for a colored stone metal integrated insulation panel, comprising an outer shell assembly (1) and an insulation layer (2), characterized in that, The housing assembly (1) includes a housing body (101) and a mounting back plate (106); The mounting backplate (106) is fixed to the top rear end of the outer shell body (101), and the insulation layer (2) is filled inside the outer shell body (101); The mounting back plate (106) is formed with a lower folded plate (3) and an upper folded plate (4) in sequence along the horizontal direction. The lower folded plate (3) and the upper folded plate (4) are fixed to the building wall by screws passing through them. The lower folded plate (3) and the upper folded plate (4) are deformed and bent to adapt to the concave surface of the building wall.
2. The installation structure of the integrated colored stone metal insulation panel according to claim 1, characterized in that, The mounting back plate (106), the lower bending piece (3), and the upper bending piece (4) are all provided with mounting holes (5), and the mounting holes (5) on the mounting back plate (106) are distributed in the middle area of the lower bending piece (3) and the upper bending piece (4).
3. The installation structure of the integrated colored stone metal insulation panel according to claim 1, characterized in that, The outer shell assembly (1) further includes a trapezoidal mating part (102), a U-shaped insertion groove (103), a trapezoidal mating groove (104), a U-shaped insertion part (105), and a concave surface (107); The trapezoidal docking part (102) and the U-shaped insertion groove (103) are integrally formed on the top of the outer shell body (101), and the U-shaped insertion groove (103) is distributed at the front end of the trapezoidal docking part (102); The trapezoidal docking groove (104) and the U-shaped insertion part (105) are formed at the bottom of the trapezoidal docking part (102), and the U-shaped insertion part (105) is distributed at the front end of the trapezoidal docking groove (104); When the upper and lower outer shell bodies (101) are spliced together, the trapezoidal docking groove (104) and U-shaped plug-in part (105) on the upper outer shell body (101) are respectively engaged with the trapezoidal docking part (102) and U-shaped plug-in groove (103) to achieve horizontal positioning of the two outer shell bodies (101); The concave surface (107) is integrally formed at the bottom rear end of the trapezoidal docking part (102), and the concave surface (107) is used to provide docking space for the mounting back plate (106) on the lower outer shell body (101).
4. The installation structure of the integrated colored stone metal insulation panel according to claim 3, characterized in that, The rear end surface of the trapezoidal docking part (102) is inclined, and the top of the trapezoidal docking part (102) is formed with an arc-shaped protrusion. The inner wall trajectory of the trapezoidal docking groove (104) matches the outer wall trajectory of the trapezoidal docking part (102).
5. The installation structure of the integrated colored stone metal insulation panel according to claim 3, characterized in that, The outer shell body (101), trapezoidal docking part (102), U-shaped insertion groove (103), trapezoidal docking groove (104), U-shaped insertion part (105), mounting back plate (106) and concave surface (107) are integrally formed from steel plate by stamping and bending process, and the lower bending piece (3), upper bending piece (4) and mounting hole (5) are integrally formed by punching process.