Colored stone and metal heat preservation integrated plate convenient to install
By designing connecting components on the integrated colored stone metal insulation panel, the problem of fixing and blocking between panels is solved, enabling convenient panel replacement and installation.
Patent Information
- Application Number
- CN202423091548.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-16
AI Technical Summary
When installing existing integrated stone metal insulation panels, the direct splicing between the upper and lower panels obstructs the screw fixing area, making it difficult to replace damaged panels individually.
The design incorporates a mating assembly, including a side-convex snap-fit plate and a rubber filler layer. The convex snap-fit part and the concave mating groove work together to achieve quick splicing while leaving a gap for easy replacement of damaged panels.
It enables rapid splicing and fixing of the integrated stone metal insulation panel, and facilitates easy disassembly and replacement when damaged, thus improving replacement efficiency and installation convenience.
Smart Images

Figure CN223593705U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a color stone metal heat preservation integrated board technical field, specifically a color stone metal heat preservation integrated board convenient to install. BACKGROUND
[0002] The color stone metal heat preservation integrated board is a kind of decorative material integrating heat preservation and decoration, which is widely applied to various public buildings and civil buildings, including the outer wall decoration and reconstruction of new and old buildings such as multi-storey, small high-rise and high-rise buildings, and is prepared by taking the aluminum-zinc plated steel plate with excellent corrosion resistance as base plate, taking water-based acrylate as adhesive, taking sintered color sand as surface layer, taking the acrylate resin with extremely strong weather resistance as the outermost layer, and filling heat preservation material in the frame formed by bending the aluminum-zinc plated steel plate.
[0003] The existing color stone metal heat preservation integrated board is directly spliced between the upper and lower color stone metal heat preservation integrated boards, and the upper color stone metal heat preservation integrated board shields the screw fixing area of the lower color stone metal heat preservation integrated board, so that when a color stone metal heat preservation integrated board is damaged due to external impact, the damaged color stone metal heat preservation integrated board cannot be replaced alone. SUMMARY
[0004] The utility model discloses a color stone metal heat preservation integrated board convenient to install.
[0005] To achieve the above object, the utility model provides the following technical scheme: a color stone metal heat preservation integrated board convenient to install, which comprises an integrated board composed of an outer surface layer and a heat preservation layer.
[0006] The concave butt joint groove is symmetrically formed at the top end and the bottom end of the rectangular outer frame, the splicing concave surface is symmetrically formed at the upper end and the lower end of the front end of the rectangular outer frame, and the fixing back plate and the butt joint concave surface are integrally formed at the upper end and the lower end of the rear end of the rectangular outer frame.
[0007] The butt joint assembly is arranged at the splicing position of the upper and lower integrated boards, and is used to limit the splicing of the two integrated boards and reserve space between the two integrated boards, so that the single integrated board can be replaced later.
[0008] As a further scheme of the utility model, the butt joint assembly comprises a side inverted convex clamping plate and a convex clamping portion.
[0009] The convex clamping part is integrally formed on the upper and lower surfaces of the lateral and inverted convex clamping plate horizontal part, the lateral and inverted convex clamping plate horizontal part is clamped in the middle area of the upper and lower two rectangular frames, and the vertical part of the lateral and inverted convex clamping plate is clamped in the inner side of the splicing concave surface at the front end of the upper and lower two rectangular frames.
[0010] The convex clamping part is clamped in the inner side of the concave butt joint groove on the upper and lower two rectangular frames, so that the relative limiting and fixing of the lateral and inverted convex clamping plate and the rectangular frame is realized, and the lateral and inverted convex clamping plate is used to fill and shield the splicing reserved space of the two rectangular frames.
[0011] As a further scheme of the utility model: the butt joint assembly further includes a rubber filling layer and a shrink hole.
[0012] The rubber filling layer is filled in the inner side of the lateral and inverted convex clamping plate, and is used to provide internal support for the lateral and inverted convex clamping plate.
[0013] The shrink hole is formed in the inner side of the rubber filling layer and penetrates through both sides of the rubber filling layer, and is used to provide a shrink space for the deformation of the rubber filling layer.
[0014] As a further scheme of the utility model: the rear end of the lateral and inverted convex clamping plate horizontal part is in an open structure, a plurality of shrink holes are arranged along the horizontal direction, and one of the shrink holes is arranged on the rear end surface of the rubber filling layer.
[0015] As a further scheme of the utility model: the height and horizontal depth of the butt joint concave surface are matched with the height and thickness of the fixed back plate respectively, and the thickness of the vertical part of the lateral and inverted convex clamping plate is matched with the horizontal depth of the splicing concave surface.
[0016] Compared with the prior art, the utility model has the advantages that:
[0017] By arranging the butt joint assembly, the two integrated plates can be quickly spliced and fixed, and a gap space is reserved between the two integrated plates. When one integrated plate is damaged, the butt joint assembly at the top of the integrated plate is removed, the screw on the integrated plate is exposed, the integrated plate can be conveniently removed, and compared with the traditional color stone metal heat preservation integrated plate mounting structure, the replacement convenience and efficiency of the integrated plate are effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Fig. 1 It is a structural schematic view of the utility model;
[0019] Fig. 2 It is a split schematic view of the utility model;
[0020] Fig. 3 It is a split schematic view of the butt joint assembly of the utility model.
[0021] In the figure: 1, an integrated plate; 101, an outer veneer layer; 102, a thermal insulation layer; 2, an abutting assembly; 201, a side-inverted convex clamping plate; 202, a convex clamping portion; 203, a rubber filling layer; 204, a shrinkage hole;
[0022] 1011, a rectangular outer frame; 1012, a concave abutting groove; 1013, a splicing concave surface; 1014, a fixed back plate; 1015, an abutting concave surface. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0024] Please refer to Figs. 1-3 In the embodiments of the present application, a color stone metal thermal insulation integrated plate convenient to install comprises an integrated plate 1 composed of an outer veneer layer 101 and a thermal insulation layer 102, and the outer veneer layer 101 comprises a rectangular outer frame 1011, a concave abutting groove 1012, a splicing concave surface 1013, a fixed back plate 1014 and an abutting concave surface 1015.
[0025] The concave abutting groove 1012 is symmetrically formed at the top end and the bottom end of the rectangular outer frame 1011, the splicing concave surface 1013 is symmetrically formed at the upper end and the lower end of the front end of the rectangular outer frame 1011, the fixed back plate 1014 and the abutting concave surface 1015 are integrally formed at the upper end and the lower end of the rear end of the rectangular outer frame 1011 respectively, and the thermal insulation layer 102 is filled in the inner side of the rectangular outer frame 1011.
[0026] The splicing part of the upper and lower two integrated plates 1 is provided with an abutting assembly 2, the abutting assembly 2 is used for realizing the limiting splicing of the two integrated plates 1, and at the same time, a space is reserved between the two integrated plates 1, so that the single integrated plate 1 is convenient to replace in the later period.
[0027] The abutting assembly 2 comprises a side-inverted convex clamping plate 201 and a convex clamping portion 202.
[0028] The convex clamping portion 202 is integrally formed on the upper and lower surfaces of the horizontal part of the side-inverted convex clamping plate 201, the horizontal part of the side-inverted convex clamping plate 201 is clamped in the middle region of the upper and lower two rectangular outer frames 1011, and the vertical part of the side-inverted convex clamping plate 201 is clamped in the inner side of the splicing concave surface 1013 of the front end of the upper and lower two rectangular outer frames 1011.
[0029] The convex clamping part 202 is clamped in the inner side of the concave counter groove 1012 on the upper and lower two rectangular outer frames 1011, for realizing the relative limiting and fixing of the side-inverted convex clamping plate 201 and the rectangular outer frame 1011, and the side-inverted convex clamping plate 201 is used for realizing the filling and shielding of the splicing reserved space of the two rectangular outer frames 1011.
[0030] In the embodiment, it needs to be supplemented that the outer surface 101 is integrally formed by bending the aluminum-zinc plated steel plate, and the front end surface of the rectangular outer frame 1011 is sprayed with sintered colored sand;
[0031] When the color stone metal heat preservation integrated plate is installed, the operation steps are as follows:
[0032] When the first integrated plate 1 at the lowest position is installed, a bottom support keel is first installed at the corresponding position, which is similar to a “concave” type strip, so that the bottom of the integrated plate 1 is inserted into the inner side of the “concave” type strip, and the “concave” type strip provides horizontal support for the first integrated plate 1 at the lowest position, and then the screw is drilled into the fixed back plate 1014 and fixed with the wall surface (or vertical keel);
[0033] Then the counter assembly 2 is clamped into the upper side of the first integrated plate 1, so that the lower convex clamping part 202 is clamped into the inner side of the concave counter groove 1012 at the top of the first integrated plate 1, and then the second integrated plate 1 is installed, so that the concave counter groove 1012 at the bottom of the second integrated plate 1 is clamped outside the upper convex clamping part 202, and then the fixed back plate 1014 at the top of the second integrated plate 1 is fixed by the screw, and the overall operation is the same as the installation method of the traditional color stone metal heat preservation integrated plate, which is simple and convenient (it needs to be noted that the position of the screw on the fixed back plate 1014 is as close to the lower side as possible to avoid being blocked by the upper integrated plate 1);
[0034] When a certain integrated plate 1 needs to be replaced due to damage, the counter assembly 2 at the top of the integrated plate 1 can be disassembled by tools, for example, the surface of the side-inverted concave clamping plate 201 is adsorbed by a suction cup, and then pulled outward, at this time, the convex clamping part 202 and the concave counter groove 1012 are extruded, the transverse part of the side-inverted concave clamping plate 201 shrinks under the extrusion force, so that the convex clamping part 202 and the concave counter groove 1012 are separated, and then the counter assembly 2 can be pulled out to realize disassembly;
[0035] After the counter assembly 2 is disassembled, the fixed back plate 1014 at the top of the damaged integrated plate 1 and the screw fixed on the fixed back plate 1014 can be seen, at this time, the screw can be disassembled by external tools (such as a screwdriver), so that the fixed connection between the integrated plate 1 and the wall surface (or vertical keel) is released;
[0036] After the damaged integrated plate 1 is applied downward pushing force, it is extruded to deform the lower side inverted concave clamping plate 201, so that the integrated plate 1 moves downward by a distance, so that the fixed back plate 1014 on the integrated plate 1 is completely moved downward to the lower side of the upper integrated plate 1, at this time, the integrated plate 1 can be taken out;
[0037] After a new integrated plate 1 is taken, it is in an inclined state and is connected with the lower side inverted concave clamping plate 201, then the lower side inverted concave clamping plate 201 is pressed downward to be contracted, so that the upper surface of the fixed back plate 1014 of the new integrated plate 1 is lower than the bottom end of the upper integrated plate 1, then the new integrated plate 1 is pushed to be close to the wall surface (or vertical keel), when the new integrated plate 1 is in a vertical state, the downward pushing force on the new integrated plate 1 is removed, at this time, the lower side inverted concave clamping plate 201 is reset under the action of its own elastic force, the fixed back plate 1014 on the top of the new integrated plate 1 is inserted into the inner side of the connecting concave surface 1015 of the upper integrated plate 1;
[0038] Then the fixed back plate 1014 of the new integrated plate 1 is fixed by screws, finally the gap space between the new integrated plate 1 and the upper integrated plate 1 is sealed by the connecting assembly 2.
[0039] Please refer to Figs. 1-3 The connecting assembly 2 further comprises a rubber filling layer 203 and a contraction hole 204;
[0040] The rubber filling layer 203 is filled in the inner side of the side inverted convex clamping plate 201, and is used for providing internal support for the side inverted convex clamping plate 201;
[0041] The contraction hole 204 is formed in the inner side of the rubber filling layer 203 and penetrates through both sides of the rubber filling layer 203, and is used for providing contraction space for the deformation of the rubber filling layer 203;
[0042] The rear end of the horizontal part of the side inverted convex clamping plate 201 is in an open structure, a plurality of contraction holes 204 are arranged in the horizontal direction, and one of the contraction holes 204 is arranged on the rear end face of the rubber filling layer 203.
[0043] In the embodiment, the side inverted convex clamping plate 201 has certain support strength through the rubber filling layer 203, so that the upper integrated plate 1 can be supported when the integrated plate 1 is installed and assembled, and the correct installation position of the upper integrated plate 1 is ensured;
[0044] The setting of the contraction hole 204 can make the rubber filling layer 203 have contraction space, when the side inverted convex clamping plate 201 is extruded by external large pressure, the rubber filling layer 203 is extruded and contracted, so as to provide space for the deformation and contraction of the side inverted convex clamping plate 201, and the smooth disassembly and assembly of the side inverted convex clamping plate 201 and the integrated plate 1 is ensured;
[0045] The shrinkage hole 204 distributed on the rear end surface of the rubber filling layer 203 is arc-shaped, so that the rubber filling layer 203 is not in contact with the fixed back plate 1014, and the screws of the fixed back plate 1014 are avoided.
[0046] Please refer to Figs. 1-2 The height and horizontal depth of the butt concave surface 1015 are matched with the height and thickness of the fixed back plate 1014 respectively, and the thickness of the vertical part of the side inverted convex clamping plate 201 is matched with the horizontal depth of the splicing concave surface 1013.
[0047] In the embodiment, the upper and lower integrated plates 1 and the front end surface of the side inverted convex clamping plate 201 are flush after the integrated plate 1 is installed, and the installation appearance is ensured.
[0048] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A color stone metal thermal insulation integrated panel convenient to install, comprising an integrated panel (1) composed of an outer veneer layer (101) and a thermal insulation layer (102), characterized in that, The outer facing layer (101) comprises a rectangular outer frame (1011), a concave butt joint groove (1012), a splicing concave surface (1013), a fixed back plate (1014), and a butt joint concave surface (1015). The concave butt joint groove (1012) is symmetrically formed at the top end and the bottom end of the rectangular outer frame (1011), the splicing concave surface (1013) is symmetrically formed at the upper end and the lower end of the front end of the rectangular outer frame (1011), the fixed back plate (1014) and the butt joint concave surface (1015) are integrally formed at the upper end and the lower end of the rear end of the rectangular outer frame (1011) respectively, and the heat preservation layer (102) is filled in the inner side of the rectangular outer frame (1011). The splicing part of the upper and lower two integrated plates (1) is provided with a butt joint assembly (2), which is used to realize the limiting splicing of the two integrated plates (1) and reserve space between the two integrated plates (1), so as to facilitate the replacement of the single integrated plate (1) in the later period.
2. The color stone metal thermal insulation integrated panel for easy installation according to claim 1, characterized in that, The butt joint assembly (2) comprises a side-inverted convex clamping plate (201) and a convex clamping part (202). The convex clamping part (202) is integrally formed on the upper and lower surfaces of the horizontal part of the side-inverted convex clamping plate (201), the horizontal part of the side-inverted convex clamping plate (201) is clamped in the middle region of the upper and lower rectangular outer frames (1011), and the vertical part of the side-inverted convex clamping plate (201) is clamped in the inner side of the splicing concave surface (1013) at the front end of the upper and lower rectangular outer frames (1011). The convex clamping part (202) is clamped in the inner side of the concave butt joint groove (1012) on the upper and lower rectangular outer frames (1011), which is used to realize the relative limiting fixation of the side-inverted convex clamping plate (201) and the rectangular outer frame (1011), and the side-inverted convex clamping plate (201) is used to fill and shield the splicing space reserved for the two rectangular outer frames (1011).
3. The color stone metal thermal insulation integrated panel for easy installation according to claim 2, characterized in that, The butt joint assembly (2) further comprises a rubber filling layer (203) and a shrinkage hole (204). The rubber filling layer (203) is filled in the inner side of the side-inverted convex clamping plate (201), which is used to provide internal support for the side-inverted convex clamping plate (201). The shrinkage hole (204) is formed in the inner side of the rubber filling layer (203) and penetrates through both sides of the rubber filling layer (203), which is used to provide a shrinkage space for the deformation of the rubber filling layer (203).
4. The color stone metal thermal insulation integrated panel for easy installation according to claim 3, characterized in that, The rear end of the horizontal part of the side-inverted convex clamping plate (201) is in an open structure, a plurality of shrinkage holes (204) are arranged along the horizontal direction, and one of the shrinkage holes (204) is distributed on the rear end surface of the rubber filling layer (203).
5. The color stone metal thermal insulation integrated panel for easy installation according to claim 2, wherein The height and the horizontal depth of the butt joint concave surface (1015) are matched with the height and the thickness of the fixed back plate (1014) respectively, and the thickness of the vertical part of the side-inverted convex clamping plate (201) is matched with the horizontal depth of the splicing concave surface (1013).