Integrated honeycomb type aluminum gusset plate
By designing integrated honeycomb aluminum ceiling panels with connecting components in both length and width directions, the problem of inconvenient splicing of aluminum ceiling panels was solved, enabling quick and detachable connections, thus improving assembly efficiency and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-04-07
AI Technical Summary
In current integrated ceiling construction, aluminum panels are inconvenient to assemble, requiring screws and nuts. Due to limited construction space, the assembly efficiency is low, resulting in a poor user experience.
An integrated honeycomb aluminum ceiling panel is designed, which uses connecting components along the length and width directions. The fastening plate and fastening groove cooperate to achieve quick and detachable connection, avoiding the limitation of assembly space.
It improves the splicing efficiency of aluminum ceiling panels, enhances the user experience, has a stable structure, low weight, simple assembly, and is easy to promote.
Smart Images

Figure CN224092823U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of aluminum cladding plate production, and particularly relates to an integrated honeycomb type aluminum cladding plate. BACKGROUND
[0002] In the prior art, integrated ceiling has the advantages of simple installation, flexible arrangement and convenient maintenance, and has become the mainstream of bathroom and kitchen ceiling. Nowadays, with the increasing development of integrated ceiling industry, whole-house ceiling, balcony ceiling, dining room ceiling, living room ceiling and corridor ceiling have gradually become the mainstream of home decoration. The integrated ceiling is generally installed by fixed supports and aluminum cladding plate splicing. The integrated ceiling is arranged below the roof to shield the pipes and lines of the roof, thereby playing a decorative and aesthetic role. The pipes of the roof include air supply pipes, refrigeration pipes and heating pipes, and the lines play a power supply role.
[0003] In the prior art, the aluminum alloy cladding plate is a plate made of aluminum alloy as a base material through various processes, which is widely used in fields such as building decoration, electronic equipment shell and vehicle interior decoration. It has the advantages of light weight, high strength, corrosion resistance and easy processing, and can meet the use requirements in different scenes.
[0004] In the prior art, during the construction process of the integrated ceiling, multiple aluminum cladding plates are inconvenient to splice, and usually need to be assembled with screws and nuts. During the installation process of the integrated ceiling, the assembly space is limited, and multiple aluminum cladding plates are inconvenient to splice, the assembly efficiency is low, and the user experience is poor. Therefore, improvement is needed. CONTENT OF THE INVENTION
[0005] The application is proposed to solve the technical problems in the prior art that in the traditional integrated ceiling construction process, multiple cladding plate bodies are inconvenient to splice, usually need to be spliced with screws and nuts, and during the construction process of the integrated ceiling, the construction height and construction space are limited, it is inconvenient for the operator to operate the screws and nuts, the cladding plate body assembly efficiency is low, and the user installation experience is poor. An integrated honeycomb type aluminum cladding plate is provided.
[0006] The application adopts the following scheme: an integrated honeycomb type aluminum cladding plate, comprising a cladding plate body and a connecting assembly arranged on the outer periphery of the cladding plate body, the connecting assembly comprising a first connecting group arranged along the length direction of the cladding plate body and a second connecting group arranged along the width direction of the cladding plate body, multiple cladding plate bodies can be connected by the first connecting group along the width direction of the cladding plate body, and multiple cladding plate bodies can be connected by the second connecting group along the length direction of the cladding plate body.
[0007] In some possible embodiments, the first connecting group comprises first extending portions arranged on both sides of the buckle plate body along the length direction of the buckle plate body, first buckle plates arranged on the first extending portions, and first buckle grooves arranged between the first buckle plates and the buckle plate body, the first buckle plates being capable of being matched into the first buckle grooves, so that the plurality of buckle plate bodies are connected in the width direction.
[0008] In some possible embodiments, the second connecting group comprises second extending portions arranged on both sides of the buckle plate body along the width direction of the buckle plate body, second buckle plates arranged on the second extending portions, and second buckle grooves arranged between the second buckle plates and the buckle plate body, the second buckle plates being capable of being matched into the second buckle grooves, so that the plurality of buckle plate bodies are connected in the length direction.
[0009] In some possible embodiments, the connecting assembly further comprises a gap groove arranged between the first connecting group and the second connecting group, and a circular chamfer is arranged on the groove bottom of the gap groove.
[0010] In some possible embodiments, the buckle plate body comprises an aluminum alloy substrate, a filling groove arranged on the aluminum alloy substrate, a honeycomb filling layer matched and filled in the filling groove, and an alloy cover plate matched and covered on the filling groove, and the material of the honeycomb filling layer is selected from carbon fibers or polyester fibers.
[0011] In some possible embodiments, the buckle plate body further comprises a first adhesive layer arranged between the filling groove and the honeycomb filling layer, and a second adhesive layer arranged between the honeycomb filling layer and the alloy cover plate, and the honeycomb filling layer is fixed in the filling groove through the first adhesive layer and the second adhesive layer.
[0012] In some possible embodiments, the honeycomb filling layer is arranged with a plurality of honeycomb holes, and the cross-sectional shape of the honeycomb hole is selected from any one of a regular hexagon, a regular pentagon or a regular octagon.
[0013] In some possible embodiments, the cross-sectional shape of the honeycomb filling layer is a cross shape.
[0014] In some possible embodiments, the outer periphery of the honeycomb filling layer is arranged with a buffer portion, and the buffer portion is an arc shape.
[0015] In some possible embodiments, the materials of the first adhesive layer and the second adhesive layer are both selected from epoxy resin, and the thickness of the first adhesive layer is greater than the thickness of the second adhesive layer.
[0016] Compared with the prior art, the present application has the following beneficial effects:
[0017] This application provides an integrated honeycomb aluminum ceiling panel, which includes a panel body and a connecting component disposed on the outer periphery of the panel body. The connecting component includes a first connecting group disposed along the length direction of the panel body and a second connecting group disposed along the width direction of the panel body. By setting the first connecting group, multiple panel bodies can be fastened together along the width direction of the panel body. By setting the second connecting group, multiple panel bodies can be fastened together along the length direction of the panel body. During the construction of the integrated ceiling, adjacent panel bodies can be quickly and detachably connected by the cooperation of the fastening plate and the fastening groove. The splicing process is not limited by the assembly space, which can effectively improve the splicing efficiency between multiple panel bodies and improve the user experience. It has the advantages of stable structure, low weight, simple structure, easy assembly, and easy promotion and implementation. Attached Figure Description
[0018] Figure 1 This is a structural schematic diagram of an integrated honeycomb aluminum ceiling panel according to this application;
[0019] Figure 2 This is a top view of an integrated honeycomb aluminum ceiling panel according to this application;
[0020] Figure 3 This application Figure 2 Sectional view at point AA;
[0021] Figure 4 This is an exploded structural diagram of an integrated honeycomb aluminum ceiling panel according to this application;
[0022] Figure 5 This is a schematic diagram of the honeycomb filling layer structure of this application;
[0023] Figure 6 This is a structural diagram of an integrated honeycomb aluminum ceiling panel used in actual application. Detailed Implementation
[0024] Combination Figures 1-6 The content shown further illustrates the technical solution provided in this application: an integrated honeycomb aluminum ceiling panel includes a panel body 1 and a connecting component 2 disposed on the outer periphery of the panel body 1. The connecting component 2 includes a first connecting group 3 disposed along the length direction of the panel body 1 and a second connecting group 4 disposed along the width direction of the panel body 1. Multiple panel bodies 1 can be fastened together by the first connecting group 3 along the width direction of the panel body 1, and multiple panel bodies 1 can be fastened together by the second connecting group 4 along the length direction of the panel body 1.
[0025] In actual implementation, such as Figure 6As shown, by integrating the main body of the snap-on panel, during the construction of the integrated ceiling, the snap-on panel can be spliced simply by inserting the first snap-on plate into the first snap-on groove along the length and width of the main body of the snap-on panel, and then inserting the second snap-on plate into the second snap-on groove. No bolts and nuts are needed, and the splicing process is not limited by the assembly space. This can effectively improve the splicing efficiency between multiple main bodies of the snap-on panel, enhance the user experience, and has the advantages of stable structure, low weight, simple structure, easy assembly, and easy promotion and implementation.
[0026] This application provides an integrated honeycomb aluminum ceiling panel, which includes a panel body and a connecting component disposed on the outer periphery of the panel body. The connecting component includes a first connecting group disposed along the length direction of the panel body and a second connecting group disposed along the width direction of the panel body. By setting the first connecting group, multiple panel bodies can be fastened together along the width direction of the panel body. By setting the second connecting group, multiple panel bodies can be fastened together along the length direction of the panel body. During the construction of the integrated ceiling, adjacent panel bodies can be quickly and detachably connected by the cooperation of the fastening plate and the fastening groove. The splicing process is not limited by the assembly space, which can effectively improve the splicing efficiency between multiple panel bodies and improve the user experience. It has the advantages of stable structure, low weight, simple structure, easy assembly, and easy promotion and implementation.
[0027] In this embodiment, the first connecting group 3 includes a first extension 30 disposed on both sides of the buckle body 1 along the length direction of the buckle body 1, a first fastening plate 31 disposed on the first extension 30, and a first fastening groove 32 disposed between the first fastening plate 31 and the buckle body 1. The first fastening plate 31 can be matched and extended into the first fastening groove 32 so that the plurality of buckle bodies 1 are fastened and connected along their width direction.
[0028] In this embodiment, the second connecting group 4 includes a second extension 40 disposed on both sides of the buckle body 1 along the width direction of the buckle body 1, a second fastening plate 41 disposed on the second extension 40, and a second fastening groove 42 disposed between the second fastening plate 41 and the buckle body 1. The second fastening plate 41 can be matched and extended into the second fastening groove 42 so that the multiple buckle bodies 1 are fastened and connected along their length direction.
[0029] In actual implementation, the first connecting group, the second connecting group, and the main body of the buckle plate are integrally formed. The first fastening plate and the first fastening groove are interference fit, and the second fastening plate and the second fastening groove are interference fit, which can effectively improve the connection stability between the main bodies of the buckle plate and ensure installation stability without the need for bolts and nuts.
[0030] In this embodiment, the connecting component 2 further includes a clearance groove 5 disposed between the first connecting group 3 and the second connecting group 4, and the bottom of the clearance groove 5 is provided with a rounded chamfer 6.
[0031] In actual implementation, by setting clearance grooves and rounded chamfers, it is easier to disassemble the main body of two adjacent buckle panels, which facilitates later disassembly, assembly and maintenance.
[0032] In this embodiment, the main body 1 of the buckle plate includes an aluminum alloy substrate 10, a filling groove 11 disposed on the aluminum alloy substrate 10, a honeycomb filling layer 12 matched and filled in the filling groove 11, and an alloy cover plate 13 matched and covered on the filling groove 11. The honeycomb filling layer 12 is made of carbon fiber or polyester fiber.
[0033] In actual implementation, the honeycomb filling layer is made of carbon fiber.
[0034] In this embodiment, the main body 1 of the buckle plate also includes a first adhesive layer 14 disposed between the filling groove 11 and the honeycomb filling layer 12, and a second adhesive layer 15 disposed between the honeycomb filling layer 12 and the alloy cover plate 13. The honeycomb filling layer 12 is fixed in the filling groove 11 by the first adhesive layer 14 and the second adhesive layer 15.
[0035] In actual implementation, the materials of the first and second adhesive layers can be replaced by polyurethane adhesive.
[0036] In this embodiment, a plurality of honeycomb holes 8 are arranged on the honeycomb filling layer 12, and the cross-sectional shape of the honeycomb holes 8 is selected from any one of regular hexagon, regular pentagon or regular octagon.
[0037] In actual implementation, the cross-sectional shape of the honeycomb hole 8 is selected as a regular hexagon.
[0038] In actual implementation, by setting a honeycomb filling layer, the strength of the main body of the buckle can be improved on the one hand, and the weight of the main body of the buckle can be reduced through the honeycomb holes, thus reducing the difficulty of installing the main body of the buckle in the later stage.
[0039] In this embodiment, the cross-sectional shape of the honeycomb filling layer 12 is cross-shaped.
[0040] In this embodiment, a buffer portion 9 is provided on the outer periphery of the honeycomb filling layer 12, and the buffer portion 9 is arc-shaped.
[0041] In this embodiment, both the first adhesive layer 14 and the second adhesive layer 15 are made of epoxy resin, and the thickness of the first adhesive layer 14 is greater than the thickness of the second adhesive layer 15.
[0042] This application provides an integrated honeycomb aluminum ceiling panel, which includes a panel body and a connecting component disposed on the outer periphery of the panel body. The connecting component includes a first connecting group disposed along the length direction of the panel body and a second connecting group disposed along the width direction of the panel body. By setting the first connecting group, multiple panel bodies can be fastened together along the width direction of the panel body. By setting the second connecting group, multiple panel bodies can be fastened together along the length direction of the panel body. During the construction of the integrated ceiling, adjacent panel bodies can be quickly and detachably connected by the cooperation of the fastening plate and the fastening groove. The splicing process is not limited by the assembly space, which can effectively improve the splicing efficiency between multiple panel bodies and improve the user experience. It has the advantages of stable structure, low weight, simple structure, easy assembly, and easy promotion and implementation.
[0043] The above are merely embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An integrated honeycomb aluminum ceiling panel, characterized in that, The device includes a snap-on body (1) and a connecting assembly (2) disposed on the outer periphery of the snap-on body (1). The connecting assembly (2) includes a first connecting group (3) disposed along the length direction of the snap-on body (1) and a second connecting group (4) disposed along the width direction of the snap-on body (1). Multiple snap-on bodies (1) can be fastened together by the first connecting group (3) along the width direction of the snap-on body (1), and multiple snap-on bodies (1) can be fastened together by the second connecting group (4) along the length direction of the snap-on body (1).
2. The integrated honeycomb aluminum ceiling panel according to claim 1, characterized in that, The first connecting group (3) includes a first extension (30) disposed on both sides of the buckle body (1) along the length direction of the buckle body (1), a first fastening plate (31) disposed on the first extension (30), and a first fastening groove (32) disposed between the first fastening plate (31) and the buckle body (1). The first fastening plate (31) can be matched and extended into the first fastening groove (32) so that the plurality of buckle bodies (1) are fastened and connected along their width direction.
3. The integrated honeycomb aluminum ceiling panel according to claim 1, characterized in that, The second connecting group (4) includes a second extension (40) disposed on both sides of the buckle body (1) along the width direction of the buckle body (1), a second fastening plate (41) disposed on the second extension (40), and a second fastening groove (42) disposed between the second fastening plate (41) and the buckle body (1). The second fastening plate (41) can be matched and extended into the second fastening groove (42) so that the plurality of buckle bodies (1) are fastened and connected along their length direction.
4. The integrated honeycomb aluminum ceiling panel according to claim 1, characterized in that, The connecting component (2) further includes a relief groove (5) disposed between the first connecting group (3) and the second connecting group (4), and the bottom of the relief groove (5) is provided with a rounded chamfer (6).
5. The integrated honeycomb aluminum ceiling panel according to claim 1, characterized in that, The main body (1) of the buckle includes an aluminum alloy substrate (10), a filling groove (11) provided on the aluminum alloy substrate (10), a honeycomb filling layer (12) matched and filled in the filling groove (11), and an alloy cover plate (13) matched and covered on the filling groove (11). The honeycomb filling layer (12) is made of carbon fiber or polyester fiber.
6. The integrated honeycomb aluminum ceiling panel according to claim 5, characterized in that, The main body of the buckle plate (1) further includes a first adhesive layer (14) disposed between the filling groove (11) and the honeycomb filling layer (12), and a second adhesive layer (15) disposed between the honeycomb filling layer (12) and the alloy cover plate (13). The honeycomb filling layer (12) is fixed in the filling groove (11) by the first adhesive layer (14) and the second adhesive layer (15).
7. The integrated honeycomb aluminum ceiling panel according to claim 5, characterized in that, The honeycomb filling layer (12) has a plurality of honeycomb holes (8) arranged on it, and the cross-sectional shape of the honeycomb holes (8) is selected from any one of regular hexagon, regular pentagon or regular octagon.
8. The integrated honeycomb aluminum ceiling panel according to claim 5, characterized in that, The cross-sectional shape of the honeycomb filling layer (12) is cross-shaped.
9. An integrated honeycomb aluminum ceiling panel according to claim 5, characterized in that, The honeycomb filling layer (12) has a buffer part (9) on its outer periphery, and the buffer part (9) is arc-shaped.
10. An integrated honeycomb aluminum ceiling panel according to claim 6, characterized in that, Both the first adhesive layer (14) and the second adhesive layer (15) are made of epoxy resin, and the thickness of the first adhesive layer (14) is greater than the thickness of the second adhesive layer (15).