Parquet stainless steel aluminum honeycomb composite board decorative ceiling structure
By combining the inlaid stainless steel aluminum honeycomb composite panels with a stable steel frame system, the problems of aesthetics, flatness and ease of maintenance of the ceiling materials are solved, achieving efficient decorative effects and improved safety.
Patent Information
- Application Number
- CN202423029655.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Existing ceiling decoration materials have shortcomings in aesthetics, decorative novelty, flatness and ease of maintenance, and the safety and durability of traditional materials need to be improved.
The decorative ceiling structure with a mirror effect is formed by combining parquet stainless steel and aluminum honeycomb composite panels, acrylic light-emitting panels and light strips, and is fixed with a stable steel frame system composed of galvanized angle steel and square tubes.
It improves the flatness and stability of the ceiling, enhances the visual effect and safety, while improving the convenience and durability of maintenance, meeting the multiple needs of interior design.
Smart Images

Figure CN223482099U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of building decoration technology, specifically a decorative ceiling structure made of mosaic stainless steel aluminum honeycomb composite panels. [Background Technology]
[0002] Currently, for aesthetic purposes, existing decoration projects often use suspended ceilings in interior ceilings. However, traditional suspended ceilings are usually made of materials such as gypsum board, paint, aluminum panels, mineral wool boards, and solid-color stainless steel. While these materials do beautify the house, they are already very common in society. The requirements for decorative effect and novelty can no longer meet people's growing awareness and desire for novelty. Moreover, the flatness of the board surface often fails to meet the requirements, and the convenience of later maintenance is not high. [Utility Model Content]
[0003] The purpose of this utility model is to overcome the above-mentioned shortcomings and provide a decorative ceiling structure for inlaid stainless steel aluminum honeycomb composite panels, which can improve the flatness of the stainless steel panel surface, increase stability and ease of later maintenance, and improve the safety of the ceiling structure and the visual effect.
[0004] To achieve the above objectives, a decorative ceiling structure for a mosaic stainless steel aluminum honeycomb composite panel is designed, comprising a building structural floor slab 1. Expansion bolts 2 are installed on the building structural floor slab 1. The bottom of the expansion bolts 2 is fixedly connected to vertical galvanized angle steel 4 via galvanized angle brackets 3. The vertical galvanized angle steel 4 is arranged vertically. The bottom end of the vertical galvanized angle steel 4 is fixedly connected to a grid-shaped steel frame structure. The grid-shaped steel frame structure is composed of horizontally arranged galvanized angle steel 5 arranged in both longitudinal and transverse directions. Vertically arranged vertical galvanized square tubes 6 are welded to the grid-shaped steel frame structure. Horizontally arranged transverse galvanized square tubes 7 are welded to the bottom end of the vertical galvanized square tubes 6. A stainless steel aluminum honeycomb composite panel 8 is fixed below the transverse galvanized square tubes 7. The stainless steel aluminum honeycomb composite panel 8 is composed of stainless steel mosaic panels and aluminum honeycomb panels. An acrylic light-emitting panel 10 is fixed inside the stainless steel aluminum honeycomb composite panel 8. A light strip 9 is installed inside the acrylic light-emitting panel 10.
[0005] Furthermore, the acrylic light-emitting plate 10 is fixed in the groove formed between adjacent stainless steel aluminum honeycomb composite plates 8. The acrylic light-emitting plate 10 is a hollow cuboid structure formed by bonding acrylic plates. The light strip 9 is detachably installed on the top of the acrylic light-emitting plate 10.
[0006] Furthermore, the stainless steel aluminum honeycomb composite panel 8 includes a galvanized back plate 11, a honeycomb core 12, and a stainless steel mosaic panel 13. The galvanized back plate 11 is fixedly connected to the transverse galvanized square tube 7. The stainless steel mosaic panel 13 is provided below the galvanized back plate 11. The honeycomb core 12 is provided between the stainless steel mosaic panel 13 and the galvanized back plate 11. This composite panel can ensure the flatness of the stainless steel and achieve a stainless steel mirror effect.
[0007] Furthermore, the aluminum honeycomb panel is composed of a galvanized back plate 11 and a honeycomb core 12. The aluminum honeycomb panel and the stainless steel mosaic panel 13 are pressed together as one piece. L-shaped stainless steel corner brackets 14 are embedded in the flat cloth of the aluminum honeycomb panel. The L-shaped stainless steel corner brackets 14 are fixedly connected to the transverse galvanized square tubes 7 by bolts. The galvanized back plate 11 is welded to the transverse galvanized square tubes 7, which further increases the stability and ease of later maintenance.
[0008] Furthermore, the stainless steel mosaic panel 13 is made of mirror stainless steel material, and the stainless steel mosaic panel 13 is divided into sections for wire drawing and / or frosting treatment, thereby processing a wire drawing surface and / or frosting surface. The preparation of this stainless steel mosaic is very simple and very convenient to use.
[0009] Furthermore, the stainless steel mosaic panel 13 is divided into sections with a brushed surface 13-1, a mirror surface 13-2, and a frosted surface 13-3, which further enhances the visual effect.
[0010] Compared with the prior art, this utility model has the following advantages:
[0011] (1) The stainless steel material of the mosaic ceiling of this utility model is novel, the decorative effect is improved, the safety of the ceiling structure is improved, there is no color difference, no color change, the durability is improved, and the flatness and stability of the panel are improved.
[0012] (2) The new type of ceiling structure uses stainless steel + aluminum honeycomb composite panels with different stainless steel surface mosaic effects as the ceiling surface material, which improves the flatness of the panel surface and has a better visual effect.
[0013] (3) This utility model uses 2mm thick mosaic stainless steel with different finishes + 18mm thick aluminum honeycomb plate to press into 20mm thick stainless steel composite plate, which can ensure the flatness of stainless steel and achieve the mirror effect of stainless steel.
[0014] (4) During installation, the embedded L-shaped custom stainless steel corner brackets embedded in the stainless steel aluminum honeycomb panel are bolted to the 20*40*2.5mm galvanized square tube horizontal steel frame, thereby increasing stability and ease of maintenance.
[0015] (5) This utility model satisfies the requirements of interior design effect, use effect and safety, and is worth promoting and applying. [Image Description]
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 yes Figure 1 A magnified view of a portion of the image;
[0018] Figure 3 This is a schematic diagram of the stainless steel mosaic pattern of this utility model;
[0019] Figure 4 This is a schematic diagram of the planar structure of this utility model;
[0020] In the diagram: 1. Building structural floor slab; 2. Expansion bolt; 3. Galvanized angle bracket; 4. Vertical galvanized angle steel; 5. Horizontal galvanized angle steel; 6. Vertical galvanized square tube; 7. Horizontal galvanized square tube; 8. Stainless steel aluminum honeycomb composite panel; 9. LED strip; 10. Acrylic luminous panel; 11. Galvanized back panel; 12. Honeycomb core; 13. Stainless steel mosaic panel; 13-1. Brushed finish; 13-2. Mirror finish; 13-3. Frosted finish; 14. L-shaped stainless steel angle bracket. [Detailed Implementation]
[0021] As attached Figure 1 To be continued Figure 4 As shown, this utility model relates to a stainless steel ceiling decoration with different decorative patterns, and more particularly to a novel decorative ceiling for interior decoration. The decorative ceiling structure of this stainless steel aluminum honeycomb composite panel includes a building structural floor slab 1, on which expansion bolts 2 are installed. The bottom of the expansion bolts 2 is fixedly connected to vertical galvanized angle steel 4 via galvanized angle brackets 3. The vertical galvanized angle steel 4 is arranged vertically, and a grid-shaped steel frame structure is fixedly connected to the bottom of the vertical galvanized angle steel 4. The grid-shaped steel frame structure is composed of horizontally arranged galvanized angle steel 5 in both longitudinal and transverse directions. Vertically arranged... A vertical galvanized square tube 6 is attached to the bottom of which a horizontally arranged transverse galvanized square tube 7 is welded. A stainless steel aluminum honeycomb composite panel 8 is fixed below the transverse galvanized square tube 7. The stainless steel aluminum honeycomb composite panel 8 is composed of stainless steel mosaic panels and aluminum honeycomb panels. An acrylic light-emitting panel 10 is fixed inside the stainless steel aluminum honeycomb composite panel 8. A light strip 9 is installed inside the acrylic light-emitting panel 10. The acrylic light-emitting panel 10 is fixed in the groove formed between adjacent stainless steel aluminum honeycomb composite panels 8. The acrylic light-emitting panel 10 is a hollow cuboid structure formed by bonding acrylic panels. The light strip 9 is detachably installed on the top inside the acrylic light-emitting panel 10.
[0022] Among them, the stainless steel aluminum honeycomb composite panel 8 includes a galvanized back plate 11, a honeycomb core 12 and a stainless steel mosaic panel 13. The galvanized back plate 11 is fixedly connected to the horizontal galvanized square tube 7. The stainless steel mosaic panel 13 is provided below the galvanized back plate 11. The honeycomb core 12 is provided between the stainless steel mosaic panel 13 and the galvanized back plate 11. This composite panel can ensure the flatness of stainless steel and achieve the mirror effect of stainless steel.
[0023] The aluminum honeycomb panel consists of a galvanized back plate 11 and a honeycomb core 12. The aluminum honeycomb panel and the stainless steel mosaic panel 13 are pressed together as one piece. L-shaped stainless steel corner brackets 14 are embedded in the flat cloth of the aluminum honeycomb panel. The L-shaped stainless steel corner brackets 14 are fixedly connected to the horizontal galvanized square tubes 7 by bolts. The galvanized back plate 11 is welded to the horizontal galvanized square tubes 7, which further increases the stability and the convenience of later maintenance.
[0024] The stainless steel mosaic panel 13 is made of mirror-finish stainless steel. Sections of the panel are brushed or / and frosted, resulting in brushed or / and frosted surfaces. This stainless steel mosaic is very simple to prepare and very convenient to use. Furthermore, the stainless steel mosaic panel 13 is divided into sections with brushed surface 13-1, mirror surface 13-2, and frosted surface 13-3, further enhancing the visual effect.
[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0026] This novel ceiling structure uses stainless steel with different decorative patterns and aluminum honeycomb pressed composite panels as the ceiling surface material. A 20mm thick stainless steel composite panel is made by pressing 2mm thick patterned stainless steel with different finishes and 18mm thick aluminum honeycomb panels together, ensuring the flatness of the stainless steel and achieving a mirror finish. Using a single module of 2500mm x 1160mm, brushed, mirror, and frosted surfaces are combined. During processing, mirror-finish stainless steel is used as the raw material, and brushed and frosted surfaces are processed in sections to form the single module.
[0027] When pressing stainless steel aluminum honeycomb composite panels, L-shaped custom stainless steel angle brackets are embedded flat on the surface of the aluminum honeycomb panels as a fixing method to the ceiling steel frame system. The ceiling support system uses M8 expansion bolts to fix vertical L30*3 galvanized angle steel as vertical force transmission members on the ceiling floor slab. Below, horizontal L30*3 galvanized angle steel members are connected to form a grid-shaped steel frame structure, serving as the overall skeleton support system for the ceiling.
[0028] During installation of the mosaic stainless steel composite panels, based on the locations of the L-shaped custom stainless steel corner brackets embedded in the stainless steel aluminum honeycomb composite panels, 20*40*2.5mm galvanized square tubing is welded longitudinally and transversely to the horizontal steel frame of the ceiling to serve as the fixing frame structure for the stainless steel aluminum honeycomb composite panels. During installation, the embedded L-shaped custom stainless steel corner brackets within the stainless steel aluminum honeycomb panels are bolted to the 20*40*2.5mm galvanized square tubing horizontal steel frame to increase stability and facilitate future maintenance.
[0029] The contents not described in detail in this specification are existing technologies known to those skilled in the art. The standard parts used can be purchased from the market, and the irregular parts can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the existing technology. The machinery, parts and equipment adopt conventional models in the existing technology, and the circuit connection adopts conventional connection methods in the existing technology, which will not be described in detail here.
[0030] This utility model is not limited to the above-described embodiments. Any changes, modifications, substitutions, combinations, or simplifications made without departing from the spirit and principle of this utility model shall be considered equivalent substitutions and shall be included within the protection scope of this utility model.
Claims
1. A decorative ceiling structure made of mosaic stainless steel and aluminum honeycomb composite panels, comprising a building structural floor slab (1), wherein expansion bolts (2) are installed on the building structural floor slab (1), characterized in that: The expansion bolt (2) is fixedly connected to a vertical galvanized angle steel (4) by a galvanized angle bracket (3). The vertical galvanized angle steel (4) is arranged vertically. The bottom end of the vertical galvanized angle steel (4) is fixedly connected to a grid-shaped steel frame structure. The grid-shaped steel frame structure is composed of horizontal galvanized angle steel (5) arranged in both longitudinal and transverse directions. Vertical galvanized square tubes (6) are welded to the grid-shaped steel frame structure. Horizontal galvanized square tubes (7) are welded to the bottom end of the vertical galvanized square tubes (6). Stainless steel aluminum honeycomb composite panel (8) is fixed below the horizontal galvanized square tubes (7). The stainless steel aluminum honeycomb composite panel (8) is composed of stainless steel mosaic panel and aluminum honeycomb panel. An acrylic light-emitting panel (10) is fixed inside the stainless steel aluminum honeycomb composite panel (8). A light strip (9) is installed inside the acrylic light-emitting panel (10).
2. The decorative ceiling structure of the mosaic stainless steel-aluminum honeycomb composite panel as described in claim 1, characterized in that: The acrylic light-emitting plate (10) is fixed in the groove formed between adjacent stainless steel aluminum honeycomb composite plates (8). The acrylic light-emitting plate (10) is a hollow cuboid structure formed by bonding acrylic plates. The light strip (9) is detachably installed on the top of the acrylic light-emitting plate (10).
3. The decorative ceiling structure of the mosaic stainless steel-aluminum honeycomb composite panel as described in claim 1, characterized in that: The stainless steel aluminum honeycomb composite panel (8) includes a galvanized back plate (11), a honeycomb core (12) and a stainless steel mosaic plate (13). The galvanized back plate (11) is fixedly connected to a horizontal galvanized square tube (7). The stainless steel mosaic plate (13) is provided below the galvanized back plate (11). The honeycomb core (12) is provided between the stainless steel mosaic plate (13) and the galvanized back plate (11).
4. The decorative ceiling structure of the mosaic stainless steel-aluminum honeycomb composite panel as described in claim 1, characterized in that: The aluminum honeycomb panel is composed of a galvanized back plate (11) and a honeycomb core (12). The aluminum honeycomb panel and the stainless steel mosaic panel (13) are pressed together. L-shaped stainless steel corner brackets (14) are embedded in the flat cloth of the aluminum honeycomb panel. The L-shaped stainless steel corner brackets (14) are fixedly connected to the transverse galvanized square tube (7) by bolts. The galvanized back plate (11) is welded to the transverse galvanized square tube (7).
5. The decorative ceiling structure of the mosaic stainless steel-aluminum honeycomb composite panel as described in any one of claims 1 to 4, characterized in that: The stainless steel mosaic panel (13) is made of mirror stainless steel material. The stainless steel mosaic panel (13) is divided into sections for wire drawing and / or frosting treatment, and then processed to have a wire drawing surface and / or frosting surface.
6. The decorative ceiling structure of the mosaic stainless steel-aluminum honeycomb composite panel as described in any one of claims 1 to 4, characterized in that: The stainless steel mosaic panel (13) is divided into sections with a brushed surface (13-1), a mirror surface (13-2), and a frosted surface (13-3).