Stainless steel plate light-transmitting ceiling modeling compounded by aluminum honeycomb plate and acrylic plate
By combining aluminum honeycomb panels and acrylic panels with stainless steel translucent ceiling designs and using vacuum titanium plating technology, the problems of time-consuming and labor-intensive traditional ceiling construction, as well as waterproofing and corrosion resistance, are solved, achieving fast and environmentally friendly construction and high-performance ceiling effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-03-10
AI Technical Summary
Traditional ceiling construction is time-consuming and labor-intensive, requires secondary on-site finishing work, and is difficult to meet the requirements of waterproofing, corrosion resistance, and aging resistance.
The translucent stainless steel ceiling design, which combines aluminum honeycomb panels and acrylic panels, utilizes galvanized wire rods, main ceiling hangers, and main keel structures, along with vacuum titanium plating technology, to achieve integrated processing of the ceiling and avoid secondary painting.
It is quick to construct, environmentally friendly and energy-saving, and achieves the effects of fireproofing, waterproofing, crack prevention, wear resistance, corrosion resistance and aging resistance, shortening the construction cycle and reducing air pollution.
Smart Images

Figure CN223984165U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of building decoration technology, specifically a translucent ceiling design made of stainless steel plate composite of aluminum honeycomb panel and acrylic panel. [Background Technology]
[0002] Traditional suspended ceilings mostly use gypsum board and latex paint. After the ceiling is installed on the concrete structure, special expansion tubes and hangers are used. First, the ceiling light steel keel (main and secondary keel) is installed, then the gypsum board is sealed, then putty is applied, and finally latex paint is applied.
[0003] This construction method requires a second on-site finishing process, which is time-consuming and labor-intensive, increases air pollution, and fails to meet the requirements for waterproofing, corrosion resistance, and aging resistance. [Utility Model Content]
[0004] The purpose of this utility model is to overcome the above-mentioned shortcomings and provide a translucent ceiling design made of stainless steel composite aluminum honeycomb panel and acrylic panel, which eliminates the need for secondary on-site finishing and painting, making construction convenient and quick, shortening the construction and installation cycle, and is energy-saving and environmentally friendly.
[0005] To achieve the above objectives, a translucent suspended ceiling design combining aluminum honeycomb panels and acrylic panels with stainless steel panels is designed, including galvanized wire rods 3. Multiple galvanized wire rods 3 are suspended and spaced apart. The top ends of the galvanized wire rods 3 are fixed to the building floor slab 1 by expansion bolts 2. The bottom ends of the galvanized wire rods 3 are fixedly connected to a main ceiling hanger 4, through which a main ceiling keel 6 is hung. A covering keel 7 is connected to the lower side of the main ceiling keel 6, and the covering keel 7 is connected to the main ceiling keel 6. Below the covering keel 7, calcium silicate board 8 and paper-faced gypsum board 9 are arranged sequentially. An LED light strip 10 is installed on the gypsum board 9. A second lead screw is installed below the gypsum board 9. A metal plate hanger 11 is hung at the bottom of the second lead screw. A perforated stainless steel light-transmitting shaped panel 15 is installed on the metal plate hanger 11. The perforated stainless steel light-transmitting shaped panel 15 includes a stainless steel substrate 17. A vacuum titanium plating layer 18 is provided on the surface of the stainless steel substrate 17. A nano surface treatment layer 19 is provided on the surface of the vacuum titanium plating layer 18. An aluminum honeycomb panel 13 and a light-transmitting acrylic panel 14 are composite on the perforated stainless steel light-transmitting shaped panel 15.
[0006] Furthermore, the main ceiling hanger 4 is a semi-closed rectangular frame structure in longitudinal section. The main ceiling keel 6 is installed inside the lower part of the main ceiling hanger 4 and fixed by through screws 5. The through screws 5 are fixed to the main ceiling hanger 4, which makes installation quick and convenient and provides better structural stability.
[0007] Furthermore, the metal plate hanger 11 has a "Z" shaped structure. The top of the metal plate hanger 11 is hung on the bottom of the L-shaped plate 20 and fixed as one piece by stainless steel countersunk screws 12. The L-shaped plate 20 is fixed on the threaded rod 2, which further improves the speed of on-site construction and installation.
[0008] Furthermore, multiple perforated stainless steel translucent decorative panels 15 are provided. The second of two adjacent perforated stainless steel translucent decorative panels 15 overlaps the first and is fixed by stainless steel countersunk screws 12. A stainless steel decorative panel splicing seam 16 is reserved between adjacent perforated stainless steel translucent decorative panels 15. Thus, after all the perforated stainless steel translucent decorative panels are installed, the seams are straight and the joints are level, and the construction is completed.
[0009] Furthermore, the thickness of the vacuum titanium plating layer 18 on the surface of the stainless steel substrate 17 is 0.8-1.2 μm, thereby further meeting the requirements of environmental protection, fire resistance, water resistance, crack resistance, fingerprint resistance, wear resistance, corrosion resistance, and aging resistance.
[0010] Compared with the prior art, this utility model has the following advantages:
[0011] (1) The structure of this utility model relates to a stainless steel plate light-transmitting ceiling design composed of aluminum honeycomb panel and acrylic panel, which can be used for stainless steel surface ceiling on the roof of public buildings. The construction is convenient and quick, and no on-site painting and finishing construction is required.
[0012] (2) The hollow stainless steel light-transmitting decorative panel ceiling structure of this utility model is easy and quick to construct. It does not require glue or on-site painting. It is an environmentally friendly and energy-saving type of ceiling structure that can meet the requirements of fireproof, waterproof, crack-proof, corrosion-resistant, aging-resistant, easy to clean and friction-resistant performance.
[0013] (3) The structure of this utility model does not require secondary on-site finishing construction, and no painting is required on the construction site. The entire process is carried out in a factory assembly line, forming the product in one step, which shortens the construction and installation cycle, saves water, energy and labor, and has no air pollution.
[0014] (4) The stainless steel plate of this utility model uses vacuum titanium plating technology, which can meet the requirements of environmental protection, fire prevention, waterproofing, crack prevention, fingerprint prevention, wear resistance, corrosion resistance and aging resistance, and is worth promoting and applying. [Image Description]
[0015] Figure 1 This is a schematic diagram of a planar suspended ceiling according to an embodiment of the present utility model;
[0016] Figure 2 This is a schematic cross-sectional view of an embodiment of the present invention;
[0017] Figure 3 This is a detailed node diagram of an embodiment of the present utility model;
[0018] Figure 4 This is a cross-sectional structural diagram of the hollowed-out stainless steel light-transmitting shaped plate according to an embodiment of this utility model;
[0019] Figure 5 This is a plan view of a hollowed-out stainless steel translucent shaped panel according to an embodiment of the present utility model;
[0020] Figure 6 This is an installation diagram of the main ceiling keel according to an embodiment of this utility model;
[0021] Figure 7 This is an installation diagram of the hollowed-out stainless steel light-transmitting shaped plate according to an embodiment of this utility model;
[0022] In the diagram: 1. Building floor slab; 2. Expansion bolt; 3. Galvanized wire rod; 4. Main ceiling hanger; 5. Through screw; 6. Main ceiling keel; 7. Covering keel; 8. Calcium silicate board; 9. Paper-faced gypsum board; 10. LED light strip; 11. Metal plate hanger; 12. Stainless steel countersunk screw; 13. Aluminum honeycomb panel; 14. Translucent acrylic panel; 15. Hollow stainless steel translucent decorative panel; 16. Stainless steel decorative panel seam; 17. Stainless steel substrate; 18. Vacuum titanium plating layer; 19. Nano surface treatment layer; 20. L-shaped panel. [Detailed Implementation]
[0023] As attached Figure 1 To be continued Figure 7 As shown, this utility model provides a translucent suspended ceiling design using stainless steel panels and acrylic composite materials, including galvanized wire rods 3. Multiple galvanized wire rods 3 are suspended and spaced apart. The top ends of the galvanized wire rods 3 are fixed to the building floor slab 1 by expansion bolts 2. The bottom ends of the galvanized wire rods 3 are fixedly connected to a main ceiling hanger 4, through which a main ceiling keel 6 is hung. A facing keel 7 is connected to the lower side of the main ceiling keel 6, and the facing keel 7 is connected to the main ceiling keel 6. Below the facing keel 7, calcium silicate boards 8 and paper-faced stone are arranged in sequence. The gypsum board 9 has an LED light strip 10 installed on it. A screw rod 2 is installed below the gypsum board 9. A metal plate hanger 11 is hung at the bottom of the screw rod 2. A perforated stainless steel light-transmitting shaped panel 15 is installed on the metal plate hanger 11. The perforated stainless steel light-transmitting shaped panel 15 includes a stainless steel substrate 17. A vacuum titanium plating layer 18 is provided on the surface of the stainless steel substrate 17. A nano surface treatment layer 19 is provided on the surface of the vacuum titanium plating layer 18. An aluminum honeycomb panel 13 and a light-transmitting acrylic panel 14 are composite on the perforated stainless steel light-transmitting shaped panel 15.
[0024] Among them, the main ceiling hanger 4 is a semi-closed rectangular frame structure in longitudinal section. The main ceiling keel 6 is installed inside the lower part of the main ceiling hanger 4 and fixed by through screws 5. The through screws 5 are fixed to the main ceiling hanger 4, which is quick and convenient to install and has better structural stability. The metal plate hanger 11 has a "Z" shaped structure. The top of the metal plate hanger 11 is hung on the bottom of the L-shaped plate 20 and fixed as one piece by stainless steel countersunk screws 12. The L-shaped plate 20 is fixed on the threaded rod 2, which further improves the speed of on-site construction and installation.
[0025] Multiple perforated stainless steel translucent panels 15 are provided. The second of two adjacent perforated stainless steel translucent panels 15 overlaps the first and is fixed by stainless steel countersunk screws 12. A stainless steel panel splicing seam 16 is reserved between adjacent perforated stainless steel translucent panels 15. After all perforated stainless steel translucent panels are installed, the seams are straight and the joints are flat, and the construction is completed. The vacuum titanium plating layer 18 on the surface of the stainless steel substrate 17 has a plating thickness of 0.8-1.2 μm, thereby further meeting the requirements of environmental protection, fire resistance, water resistance, crack resistance, fingerprint resistance, wear resistance, corrosion resistance, and aging resistance.
[0026] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0027] This invention eliminates the need for secondary on-site finishing and painting. The entire process is factory-processed and streamlined, achieving one-step molding, thus shortening the construction and installation cycle. It also saves water, energy, and labor, and produces no air pollution. Furthermore, the stainless steel plate utilizes vacuum titanium plating technology (under high vacuum, a thin metal layer is deposited on the material surface through the evaporation and condensation of fine metal filaments; the melting and evaporation of the metal during vacuum plating takes only a few seconds, with the entire cycle generally not exceeding 15 seconds, and the plating thickness being 0.8-1.2 μm), achieving environmental protection, fire resistance, waterproofing, crack resistance, fingerprint resistance, wear resistance, corrosion resistance, and aging resistance.
[0028] When implementing this utility model, according to the design requirements and dimensions, the steps are as follows: First, select a 1.2mm thick stainless steel substrate 17; second, perform precise laser cutting, hollowing, and edge folding according to the design requirements; third, vacuum titanium plating is applied to the surface of the stainless steel substrate 17, and after 24 hours of surface coating stabilization, nano-treatment is performed (generally 30 minutes); fourth, 18mm thick aluminum honeycomb panel 13 and 2mm thick translucent acrylic panel 14 are respectively composited with the hollowed-out stainless steel translucent shaped panel 15; fifth, after 24 hours of firm composite bonding and surface coating stabilization, it is transported to the construction site for inspection and use.
[0029] On-site layout determines the positions of 8mm expansion bolts. On any type of building's roof, install the 8mm expansion bolts according to the layout positions. Connect the galvanized wire rod 3 to the main ceiling hanger 4, then hang the 50 series main keel. Secure the main ceiling hanger with 6mm through screws. Next, connect the 50 series facing keel to the 50 series main keel. Cover the top surface with 9mm thick calcium silicate board 8 and 9.5mm thick paper-faced gypsum board 9. Install concealed LED light strips on the gypsum board. Use a 2m level to check the flatness deviation; it should be <2mm.
[0030] Lay out the corresponding lines on the 9.5mm thick gypsum board, install an 8mm threaded rod on the 9.5mm gypsum board, hang a 2mm thick metal plate hanger 11 below, install a hollow stainless steel translucent decorative panel 15 on the metal plate hanger 11, and fix it with stainless steel countersunk screws φ3.5*25@250.
[0031] Overlap the second perforated stainless steel translucent decorative panel 15 onto the first panel, and then fix it with stainless steel countersunk screws φ3.5*25@250. The perforated stainless steel translucent decorative panel 15 should have a 1mm gap between the stainless steel decorative panels.
[0032] Once all the perforated stainless steel translucent panels are installed, the joints are straight and level, and the construction is complete.
[0033] 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.
[0034] 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 translucent suspended ceiling design using stainless steel panels and a composite of aluminum honeycomb panels and acrylic panels, characterized in that: The galvanized wire rod (3) is suspended and arranged in multiple and intervals, the top end of the galvanized wire rod (3) is fixed on the building floor (1) through the expansion bolt (2), the bottom end of the galvanized wire rod (3) is fixedly connected with the ceiling main hook (4), and the ceiling main joist (6) is hung through the ceiling main hook (4), the lower side of the ceiling main joist (6) is connected with the covering joist (7), the covering joist (7) is butt-jointed with the ceiling main joist (6), the calcium silicate board (8) and the paper-faced gypsum board (9) are sequentially arranged below the covering joist (7), the LED lamp strip (10) is installed on the paper-faced gypsum board (9), the screw rod two is installed below the paper-faced gypsum board (9), the bottom end of the screw rod two is hung with the metal plate hanger (11), the hollow stainless steel light-transmitting modeling plate (15) is installed on the metal plate hanger (11), the hollow stainless steel light-transmitting modeling plate (15) comprises a stainless steel base plate (17), a vacuum titanium plating layer (18) is arranged on the surface of the stainless steel base plate (17), a nano surface treatment layer (19) is arranged on the surface of the vacuum titanium plating layer (18), the hollow stainless steel light-transmitting modeling plate (15) is compounded with the aluminum honeycomb plate (13) and the light-transmitting acrylic plate (14).
2. The aluminum honeycomb and acrylic sheet composite stainless steel plate light-transmitting suspended ceiling molding according to claim 1, characterized in that: The ceiling main hook (4) is a half-closed rectangular frame structure in longitudinal section, the ceiling main joist (6) is arranged in the lower part of the ceiling main hook (4) and is fixed through the penetrating screw (5), and the penetrating screw (5) is fixed on the ceiling main hook (4).
3. The aluminum honeycomb and acrylic sheet composite stainless steel plate light-transmitting suspended ceiling molding according to claim 1 or 2, characterized in that: The metal plate hanger (11) is in a "Z" type structure, the top of the metal plate hanger (11) is hung on the bottom of the L-shaped plate (20) and is fixed as a whole through the stainless steel countersunk screw (12), and the L-shaped plate (20) is fixed on the screw rod two.
4. The aluminum honeycomb and acrylic sheet composite stainless steel sheet light-transmitting ceiling molding according to claim 1, characterized in that: The hollow stainless steel light-transmitting modeling plate (15) is provided in multiple, the second one of the two adjacent hollow stainless steel light-transmitting modeling plates (15) is overlapped on the first one and is fixed through the stainless steel countersunk screw (12), and a stainless steel modeling plate joint gap (16) is reserved between the adjacent hollow stainless steel light-transmitting modeling plates (15).
5. The translucent stainless steel ceiling design composed of aluminum honeycomb panels and acrylic panels as described in claim 1, characterized in that: The plating layer thickness of the vacuum titanium plating layer (18) on the surface of the stainless steel base plate (17) is 0.8-1.2uM.