An assembled concave-convex modeling ceiling installation design structure

Through the prefabricated concave-convex shape ceiling installation design structure, the combination of steel frame conversion layer, ceiling components, adapter board and connecting board is used to solve the problem that the existing technology cannot be lifted along the curved surface, and the improvement of the sense of space and artistic creativity of the building and the satisfaction of personalized aesthetic needs.

CN116180965BActive Publication Date: 2025-06-27CHINA CONSTR SECOND BUREAU DECORATION ENG CO
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Patent Information

Application Number
CN202310233669.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-13
Publication Date
2025-06-27
Estimated Expiration
2043-03-13

AI Technical Summary

Technical Problem

The existing technology cannot lift aluminum strip panels along curved surface shapes, resulting in the damage to the sense of space and artistic creativity of the building, and the interior decoration is inconsistent with the external artistic shape structure.

Method used

The prefabricated concave-convex shape suspended ceiling installation design structure is adopted, including steel frame conversion layer, ceiling components, adapter board and connecting board. Through the combination of suspended ceiling panels, light boxes, adapter board and connecting board, it forms concave-convex shapes, enhancing the sense of space and artistic creativity.

Benefits of technology

It has achieved the improvement of the sense of space and artistic creativity of the building, so that the interior decoration matches the exterior artistic modeling structure, meets personalized aesthetic needs, and is convenient for installation through boom connections and stable structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an installation design structure for an assembled concave-convex shaped ceiling, which includes a steel frame conversion layer, a ceiling component, an adapter plate, and a connection plate; the steel frame conversion layer is connected to the bottom surface of the structure through square pipes; the ceiling component includes three ceiling panels that enclose an equilateral triangle, and the splicing edges of the three ceiling panels slope downward to form a triangular pyramid shape. There is a gap at the splicing of the ceiling panels, and a light box is provided at the gap. Both the light box and the ceiling panels are connected to the steel frame conversion layer through suspension rods; there is a gap between adjacent ceiling components, and the adapter plate is arranged at the gap and is connected to the steel frame conversion layer through a suspension rod; the connection plate is arranged at the intersection of the adapter plates and is connected to the adapter plate. Through the mutual combination and splicing of the ceiling panels, the light box, the adapter plates, and the connection plate, the present application forms a concave-convex shape, enhancing the sense of space and artistic creativity inside the building, making the interior decoration of the building match the external artistic shape structure, and meeting the increasingly improved personalized aesthetic needs of people.
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Description

Technical Field

[0001] The present invention relates to the technical field of suspended ceilings, and in particular to an installation design structure for an assembled concave-convex shaped suspended ceiling. Background Art

[0002] With the rapid development of modern building decoration and metal suspended ceilings, in large and medium-sized buildings with a strong modern sense and grandeur, such as airports, ports, expositions, convention centers, high-star hotels, theaters, etc., the requirement for beautiful and grand interior decoration has penetrated the entire building and decoration industry. The roofs of these buildings are mostly designed into various artistic shapes.

[0003] However, currently, when hoisting aluminum strip panels under such structured buildings, generally only a flat ceiling can be hoisted, and it is impossible to hoist a corresponding curved ceiling along the curved shape, thus greatly destroying the internal sense of space and artistic creativity of such buildings, making the interior decoration of the building extremely inconsistent with the external artistic shape structure. Summary of the Invention

[0004] The present invention provides an installation design structure for an assembled concave-convex shaped suspended ceiling with simple structure, convenient installation and beautiful shape.

[0005] The technical problem to be solved is that currently only a flat ceiling can be hoisted, and it is impossible to hoist a corresponding curved ceiling along the curved shape, thus greatly destroying the internal sense of space and artistic creativity of such buildings, making the interior decoration of the building extremely inconsistent with the external artistic shape structure.

[0006] To solve the above technical problems, the present invention adopts the following technical solutions:

[0007] An installation design structure for an assembled concave-convex shaped suspended ceiling of the present invention includes a steel frame conversion layer, a ceiling component, a transition plate and a connection plate;

[0008] The steel frame conversion layer is connected to the bottom surface of the structure through square pipes;

[0009] The ceiling component includes multiple non-coplanar ceiling boards, and the multiple ceiling boards are combined to form a convex or concave shape. There is a gap at the splicing position of the ceiling boards, and a light box is provided at the gap. Both the light box and the ceiling boards are connected to the steel frame conversion layer through suspension rods; the splicing edge of the ceiling board is turned up to form an L-shaped flange, and the bottom edge of the light box abuts against the flange;

[0010] There is a gap between adjacent ceiling components, and the transition plate is arranged at the gap and is connected to the steel frame conversion layer through a suspension rod;

[0011] The connection plate is in a regular hexagon shape, is arranged at the intersection of the transition plates and is connected to the transition plates; the transition plates and the connection plate are in the same plane.

[0012] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the ceiling assembly includes three ceiling panels that form a regular triangle, and the splicing edges of the three ceiling panels are inclined downward or upward to form a triangular pyramid shape.

[0013] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the steel frame conversion layer includes a plurality of transverse keels and longitudinal keels, and the transverse keels and longitudinal keels are connected to the bottom surface of the structure through square tubes.

[0014] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the ceiling board is an isosceles triangle, and the back of the board is provided with a plurality of reinforcing ribs perpendicular to the bottom edge.

[0015] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the adapter plate has a U-shaped cross-section, with folded edges at both ends connected to the connecting plate, an outwardly folded extension edge at the open end, and a gap between the adapter plate and the ceiling plate.

[0016] The present invention provides an assembled concave-convex ceiling installation design structure, further comprising a decorative layer installed on a structural column, wherein the decorative layer comprises a keel frame installed on the structural column, decorative panels arranged at intervals on the periphery of the structural column and installed on the keel frame, and spacers installed between adjacent decorative panels and connected to the keel frame;

[0017] The decorative plate comprises a lower section of equal cross section and an upper section of variable cross section, wherein the middle parts of the equal cross section and the variable cross section are concave to form a convex-shaped lamp trough, the cross-sectional width of the variable cross section gradually increases from bottom to top and a notch is formed at its end for splicing with the ceiling plate, and a light box is installed between the ceiling plate and the variable cross section;

[0018] The spacer bar has a U-shaped cross section, and its upper end is connected to the connecting plate.

[0019] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the keel frame includes a horizontal keel installed on a structural column, a plurality of annular keels fixed to the horizontal keel, and a vertical keel connected between the annular keels.

[0020] The present invention provides an assembled concave-convex ceiling installation design structure. Further, the plate edge of the decorative plate is folded inward to form an inner turn-down edge, the inner turn-down edge and the spacer are connected to a U-shaped buckle through rivets, and the U-shaped buckle is connected to the vertical keel.

[0021] The present invention provides an assembled concave-convex ceiling installation design structure, and further, a U-shaped cover is installed between the inner flange and the spacer bar.

[0022] An assembled concave-convex modeling ceiling installation design structure of the present invention. Further, a triangular pyramid shape is formed at the joint between the variable cross-section section and the ceiling board.

[0023] Compared with the prior art, the present invention has the following beneficial effects:

[0024] 1. In this application, the ceiling board, light box, adapter plate, and connecting plate are combined and spliced with each other to form a concave-convex shape, enhancing the sense of space and artistic creativity inside the building, making the interior decoration of the building match the external artistic modeling structure, and meeting the increasingly improved personalized aesthetic needs of people;

[0025] 2. The ceiling board, light box, and adapter plate are all connected to the steel frame conversion layer through suspension rods, which is convenient for installation, has a stable structure, and each component is independent of each other, facilitating the control of the installation accuracy and shape of the components;

[0026] 3. By changing the structure of the decorative layer on the structural column, the decorative plate is coordinated with the ceiling board, making the node change of the ceiling structure at the structural column more natural and beautiful.

[0027] The following further illustrates the present invention with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 is a schematic plan view of the present invention;

[0029] Figure 2 is a schematic structural view of the steel frame conversion layer of the present invention;

[0030] Figure 3 is Figure 1 an enlarged schematic view of part A in

[0031] Figure 4 is Figure 3 a schematic sectional view of section 1-1 in

[0032] Figure 5 is a schematic structural view of the ceiling board of the present invention;

[0033] Figure 6 is Figure 3 a schematic sectional view of section 2-2 in

[0034] Figure 7 is a schematic elevation view of the structural column of the present invention;

[0035] Figure 8 is Figure 7 a schematic sectional view of section 3-3 in

[0036] Figure 9 is a vertical sectional view of the structural column.

[0037] Reference numerals:

[0038] 1. Steel frame transfer layer; 11. Horizontal keel; 12. Longitudinal keel; 13. Square tube; 2. Ceiling assembly; 21. Ceiling board; 22. Light box; 23. Light strip; 24. Hanging code; 25. Hanging rod; 26. Flanged edge; 27. Reinforcement rib; 3. Adapter plate; 31. Folded edge; 32. Extended edge; 4. Connecting plate; 5. Keel frame; 51. Horizontal keel; 52. Annular keel; 53. Vertical keel; 6. Decorative panel; 61. Equal section section; 62. Variable section section; 63. Light trough; 64. Inner flange; 65. U-shaped buckle; 66. Cover; 7. Spacer; 8. Structural column. DETAILED DESCRIPTION

[0039] like Figure 1 As shown, an assembled concave-convex ceiling installation design structure of the present invention includes a steel frame conversion layer 1, a ceiling component 2, an adapter plate 3, a connecting plate 4 and a decorative layer installed on a structural column 8.

[0040] Reference Figure 2 The steel frame transfer layer 1 includes a plurality of horizontally arranged transverse keels 11 and longitudinal keels 12 , and the transverse keels 11 and longitudinal keels 12 are fixed to the bottom surface of the structure through square tubes 13 .

[0041] Combination Figures 3 - 5 , multiple groups of ceiling components 2 are provided, each group of ceiling components 2 includes multiple unequal-surface ceiling panels 21, multiple ceiling panels 21 are combined to form a convex or concave shape, and the ceiling panels 21 can be triangular, quadrilateral or polygonal, or a combination of the above multiple shapes. This application takes the ceiling panels 21 as triangular, combined into a convex shape as an example for explanation:

[0042] The ceiling assembly 2 includes three ceiling panels 21 that form an equilateral triangle. The spliced ​​edges of the three ceiling panels 21 are tilted downward to form a downwardly convex triangular pyramid shape, forming a downward convex shape of the ceiling. There is a gap at the splicing of the ceiling panels 21, and a light box 22 is provided in the gap. A light strip 23 is installed in the light box 22. The light box 22 and the ceiling panels 21 are connected to the steel frame conversion layer 1 through hanging codes 24 and hanging rods 25. The spliced ​​edges of the ceiling panels 21 are folded upward to form an L-shaped flange 26, and the bottom edge of the light box 22 abuts against the flange 26.

[0043] The ceiling plate 21 is in the shape of an isosceles triangle, and a plurality of reinforcing ribs 27 perpendicular to the bottom edge are arranged on the back of the plate. The reinforcing ribs 27 are welded and fixed to the edge of the ceiling plate 21 .

[0044] Reference Figure 6There is a gap between two adjacent groups of ceiling components 2. The adapter plate 3 is arranged at the gap and is connected to the steel frame conversion layer 1 through the suspension rod 25 and the hanging code 24. There is a gap between the adapter plate 3 and the ceiling plate 21, which is used to adjust the installation position of the ceiling plate 21 and the adapter plate 3 to ensure the installation accuracy. The cross-section of the adapter plate 3 is U-shaped, and its two ends are provided with folded edges 31 connected to the connecting plate 4, and the open end is provided with an extended edge 32 that is horizontally folded outward.

[0045] The connecting plate 4 is in a regular hexagonal shape, and is disposed at the intersection of the adapter plates 3 and connected to the adapter plates 3 . The adapter plates 3 and the connecting plate 4 are located in the same plane and are slightly higher than the height of the non-joined edges of the ceiling plate 21 .

[0046] Combination Figures 7 - 9 The decorative layer includes a keel frame 5 installed on the structural column 8, decorative panels 6 arranged at intervals on the periphery of the structural column 8 and installed on the keel frame 5, and spacer strips 7 installed between adjacent decorative panels 6 and connected to the keel frame 5.

[0047] The decorative plate 6 is in the shape of a curved surface, and includes a uniform cross-section section 61 at the bottom and a variable cross-section section 62 at the top. The uniform cross-section section 61 and the variable cross-section section 62 are concave in the middle to form a convex lamp trough 63. The cross-sectional width of the variable cross-section section 62 gradually increases from bottom to top and a notch is formed at its end for splicing with the ceiling plate 21. The ceiling plate 21 and the variable cross-section section 62 are spliced ​​to form a downward convex triangular pyramid shape. A light box 22 is installed between the ceiling plate 21 and the variable cross-section section 62. The ends of the light boxes 22 and the light boxes 22 and the light trough 63 are all provided with folded edges for splicing.

[0048] The keel frame 5 includes a horizontal keel 51 installed on the structural column 8, a plurality of annular keels 52 fixed to the horizontal keel 51, and a vertical keel 53 connected between the annular keels 52, wherein the length of the horizontal keel 51 and the diameter of the annular keel 52 gradually increase with the change of the variable cross-section segment 62, thereby adapting to the installation of the variable cross-section segment 62.

[0049] The spacer bar 7 has a U-shaped cross section, and its upper end is connected to the connecting plate 4. The edge of the decorative plate 6 is folded inward to form an inner flange 64, and the inner flange 64 and the spacer bar 7 are connected to the U-shaped buckle 65 through rivets, and the U-shaped buckle 65 is connected to the vertical keel 53; a U-shaped cover 66 is installed between the inner flange 64 and the spacer bar 7 for sealing and shaping.

[0050] The present application forms a concave and convex shape by combining and splicing the ceiling plate 21, the light box 22, the adapter plate 3 and the connecting plate 4, thereby enhancing the sense of space and artistic creativity inside the building, so that the interior decoration of the building matches the exterior artistic structure, and meets people's increasingly improved personalized aesthetic needs;

[0051] In addition, the ceiling panel 21, the light box 22, and the adapter plate 3 are all connected to the steel frame conversion layer 1 through the suspension rods 25, which is convenient for installation, has a stable structure, and the components are independent of each other, facilitating the control of the installation accuracy and shape of the components;

[0052] Moreover, by changing the structure of the decorative layer on the structural column 8, the decorative panel 6 is coordinated with the ceiling panel 21, making the node change of the ceiling structure at the structural column 8 more natural and beautiful.

[0053] The embodiments described above are only used to describe the preferred embodiments of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present invention shall fall within the protection scope determined by the claims of the present invention.

Claims

1. An assembled concave-convex modeling ceiling installation design structure, characterized in that: It comprises a steel frame transfer layer (1), a ceiling assembly (2), an adapter plate (3), a connecting plate (4), and a decorative layer installed on a structural column (8); The steel frame transfer layer (1) is connected to the bottom surface of the structure via a square tube (13); The ceiling assembly (2) comprises a plurality of ceiling panels (21) of different surfaces, wherein the plurality of ceiling panels (21) are combined to form a convex or concave shape, wherein a gap exists at the joint of the ceiling panels (21), and a light box (22) is provided at the gap, wherein the light box (22) and the ceiling panels (21) are both connected to the steel frame transfer layer (1) via a suspension rod (25); the joint edge of the ceiling panels (21) is folded upward to form an L-shaped flange (26), and the bottom edge of the light box (22) abuts against the flange (26); There is a gap between adjacent ceiling components (2), and the adapter plate (3) is arranged at the gap and connected to the steel frame transfer layer (1) via a suspension rod (25); The connecting plate (4) is arranged at the intersection of the adapter plate (3) and is connected to the adapter plate (3); the adapter plate (3) and the connecting plate (4) are located in the same plane; The decorative layer comprises a keel frame (5) mounted on a structural column (8), decorative panels (6) arranged at intervals on the circumference of the structural column (8) and mounted on the keel frame (5), and a spacing strip (7) mounted between adjacent decorative panels (6) and connected to the keel frame (5); The decorative plate (6) comprises a lower section of equal cross section (61) and an upper section of variable cross section (62); the middle parts of the equal cross section (61) and the variable cross section (62) are concave to form a convex-shaped lamp trough (63); the cross-sectional width of the variable cross section (62) gradually increases from bottom to top and a notch is formed at its end for splicing with the ceiling plate (21); a lamp box (22) is installed between the ceiling plate (21) and the variable cross section (62); The spacer bar (7) has a U-shaped cross section, and its upper end is connected to the connecting plate (4).

2. The installation design structure of an assembled concave-convex modeling ceiling according to claim 1, characterized in that: The ceiling assembly (2) comprises three suspended ceiling panels (21) forming an equilateral triangle, and the spliced ​​edges of the three suspended ceiling panels (21) are inclined downward or upward to form a triangular pyramid shape.

3. The installation design structure of an assembled concave-convex modeling ceiling according to claim 1, characterized in that: The steel frame transfer layer (1) comprises a plurality of transverse keels (11) and longitudinal keels (12), and the transverse keels (11) and longitudinal keels (12) are connected to the bottom surface of the structure via square tubes (13).

4. The installation design structure of an assembled concave-convex modeling ceiling according to claim 2, characterized in that: The ceiling board (21) is in the shape of an isosceles triangle, and a plurality of reinforcing ribs (27) perpendicular to the bottom edge are arranged on the back of the board.

5. The installation design structure of an assembled concave-convex shaped ceiling according to claim 1, characterized in that: The adapter plate (3) has a U-shaped cross section, with folded edges (31) at both ends connected to the connection plate (4), an outwardly folded extension edge (32) at the open end, and a gap between the adapter plate (3) and the ceiling plate (21).

6. The installation design structure of an assembled concave-convex modeling ceiling according to claim 1, characterized in that: The keel frame (5) comprises a horizontal keel (51) installed on a structural column (8), a plurality of annular keels (52) fixed to the horizontal keel (51), and vertical keels (53) connected between the annular keels (52).

7. The installation design structure of an assembled concave-convex modeling ceiling according to claim 6, characterized in that: The edge of the decorative panel (6) is folded inward to form an inwardly folded edge (64). The inwardly folded edge (64) and the spacer (7) are connected to a U-shaped buckle (65) by rivets, and the U-shaped buckle (65) is connected to the vertical keel (53).

8. The installation design structure of an assembled concave-convex shaped ceiling according to claim 7, characterized in that: A U-shaped cover (66) is installed between the inwardly folded edge (64) and the spacer (7).

9. The installation design structure of an assembled concave-convex modeling ceiling according to claim 1, characterized in that: A triangular pyramid shape is formed at the splicing position of the variable cross-section section (62) and the ceiling panel (21).

Citation Information

Patent Citations

  • Assembly type three-dimensional grid modeling ceiling

    CN217027701U

  • Fold-line-shaped suspended ceiling for elevator hall

    CN217400059U