Keel-free perforated plate lamplight decoration column system
The keel-less aluminum alloy decorative panel and the annular support sleeve core connection solve the problems of bulky structure and difficult maintenance of the decorative column system, achieve the combination of stability and lighting effects, and reduce maintenance costs.
Patent Information
- Application Number
- CN202422717817.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-07
AI Technical Summary
Existing architectural decorative column systems have the problems of being bulky, difficult to embed in lighting effects, poor wind and rain resistance and weather resistance, and difficult maintenance when achieving lighting effects.
The perforated plate lighting decorative column system adopts a keel-less design, uses aluminum alloy decorative panels as support, and combines annular support sleeves and groove-type embedded parts to achieve stability and easy installation of the decorative columns. The top and bottom of the decorative columns can be adjusted in three dimensions and six directions, and the floodlighting components are easy to maintain.
A simple and stable decorative column structure is achieved, which is installed with high precision, reducing the difficulty and cost of maintenance, while also having good lighting effects and weather resistance.
Smart Images

Figure CN223330136U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building lighting, in particular to a keel-free perforated plate lighting decorative column system. Background Art
[0002] The main function of the building curtain wall is to serve as an external maintenance structure, realizing functions such as waterproofing and heat preservation of the building's exterior skin, and providing a protective coat for the building.
[0003] Decorative columns in building curtain walls are typically designed with stone or aluminum cladding. Traditional decorative column panels come in a variety of styles and often double as cladding for civil structural columns. However, the built-in keel makes the system bulky and makes it difficult to achieve embedded lighting effects. While advertising light boxes can effectively achieve lighting effects, they lack reliable internal keels and panel support, resulting in poor wind and rain resistance, weather resistance, and impact resistance. Furthermore, light box fixtures are difficult to maintain and replace, requiring the disassembly of multiple panels and supporting components. This makes maintenance and replacement inconvenient, and they serve solely as decorative components, lacking the structural security and weather resistance of curtain wall decorative columns. Therefore, architectural and curtain wall design often necessitates the development of decorative column systems that can both serve as decorative curtain wall columns and accommodate embedded lighting. Utility Model Content
[0004] The utility model provides a keel-free perforated plate lighting decorative column system. The system does not require a keel, has a simple structure, is stable and firm, and the top and bottom of the decorative column can be adjusted in three dimensions and six directions. The decorative column has high installation accuracy and good straightness, is easy to install and maintain, and has low maintenance costs.
[0005] The above-mentioned purpose of the utility model is achieved through the following technical solutions:
[0006] A keelless perforated plate lighting decorative column system includes a hollow cubic decorative column, which is surrounded by four long strips of decorative panels. The decorative panels are provided with a plurality of light-transmitting holes. The joints on the inner sides of two adjacent decorative panels are fixedly connected by a corner profile. The inner cavity of the decorative column is provided with a floodlighting assembly. The top of the decorative column is fixedly connected to a groove-type embedded part embedded in the top of the civil structure. A sleeve core connector is slidably embedded in the inner bottom of the decorative column. The bottom of the sleeve core connector is fixedly connected to the groove-type embedded part embedded in the bottom of the civil structure.
[0007] The above-mentioned keelless perforated plate lighting decorative column system, wherein a plurality of supporting sleeve cores are embedded in the inner cavity of the decorative column from top to bottom at intervals, the supporting sleeve cores are annular, the side walls of the supporting sleeve cores are respectively fitted with the corresponding decorative panels and corner profiles, and the supporting sleeve cores are screwed to the corresponding corner profiles.
[0008] The above-mentioned keelless perforated plate lighting decorative column system, wherein the channel-type embedded parts include channel steel, and a number of anchor rods are vertically connected to the outer side of the channel steel along the length direction, and inward-extending clamping plates are respectively provided on both sides of the channel steel opening, and the two clamping plates extend along the length direction of the channel steel, and a slot extending along the length direction of the channel steel is provided between the two clamping plates; the tops of the two opposite decorative panels are respectively connected with aluminum angle bolts, and the channel steel is vertically arranged at the tops of the two aluminum angles, and the tops of the aluminum angles are connected to the channel steel by bolts embedded in the slots and passing through the tops of the aluminum angles.
[0009] In the above-mentioned keelless perforated plate lighting decorative column system, a waist-shaped hole extending along its length is provided on the top of the aluminum angle, and two vertical waist-shaped holes distributed at intervals are provided on the side of the aluminum angle close to the corresponding decorative panel.
[0010] The above-mentioned keelless perforated plate lighting decorative column system, wherein the inner surface of the aluminum angle close to the decorative panel is provided with multiple horizontal slots, the slots are adapted to be snapped into the aluminum alloy meson with a serrated surface, and the bolts pass through the decorative panel, the vertical waist-shaped holes of the aluminum angle, the aluminum alloy meson and the nut in sequence.
[0011] The above-mentioned keelless perforated plate lighting decorative column system, wherein the core connector includes a connecting core and a base plate, the connecting core is in the shape of a hollow cube, the outer sides of the opposite side walls of the connecting core are fitted with the inner sides of the side walls of the corresponding supporting core, the inner sides of the side walls of the connecting core are provided with nail wire grooves along the up and down directions, the base plate is located at the bottom of the connecting core, the base plate is provided with screws and is threadedly connected to the nail wire grooves of the connecting core, the base plate and the channel steel below it are connected by bolts embedded in the slots and passing through the base plate.
[0012] The above-mentioned keelless perforated plate lighting decorative column system, wherein the base plate is provided with a plurality of grooves parallel to the length direction of the channel steel below it, the grooves of the base plate are provided with waist-shaped connecting holes perpendicular to the length direction of the corresponding channel steel, and the waist-shaped connecting holes are provided with aluminum alloy mesas with serrated surfaces, and the aluminum alloy mesas are adapted to be snap-fitted into the grooves.
[0013] The above-mentioned keelless perforated plate lighting decorative column system, wherein the floodlighting assembly includes a lamp bracket, a lamp, a connecting plate and an angle bracket, the lamp is set on the lamp bracket, the upper and lower ends of the lamp bracket are respectively fixedly connected to the connecting plate, the opposite ends of the connecting plate are screwed to the angle bracket, and the other side of the angle bracket is screwed to the support sleeve core or the connecting sleeve core.
[0014] The above-mentioned keelless perforated plate lighting decorative column system, wherein the corner profile is in the shape of a hollow cube, the corner profile runs through the entire decorative column from top to bottom, the diagonal outer side of the corner profile is provided with a receiving groove along the length direction, and structural adhesive is injected into the receiving groove of the corner profile, and the structural adhesive is bonded to the inner side of the corresponding decorative column panel.
[0015] The above-mentioned keelless perforated plate lighting decorative column system, wherein the three decorative panels are fixedly connected to the weld nails corresponding to the corresponding corner profiles, the three decorative panels are connected to the corresponding corner profiles through screwed weld nails, and the other decorative panel is connected to the corresponding corner profile through screws.
[0016] In summary, the beneficial technical effects of the present invention are:
[0017] The utility model adopts perforated aluminum plate as the decorative panel, which has a strong metallic texture and good light transmittance, is convenient for achieving the diffuse reflection effect of light, and integrates curtain wall and lighting effects.
[0018] It adopts a keel-free design, with the aluminum alloy decorative panel as its own supporting force system. The top, bottom and middle are connected and reinforced with an annular support sleeve core, and the decorative column structure is stable.
[0019] The top and bottom of the decorative column are connected by groove-type embedded parts and sleeve core connectors. The top and bottom of the decorative column are three-dimensionally adjustable in six directions. The construction and installation are convenient, and the adjustment accuracy is high. It can ensure the installation accuracy of the decorative column and ensure the straightness of the decorative column.
[0020] The decorative column adopts a detachable design with one side panel, which facilitates the maintenance and replacement of floodlighting components and regular internal cleaning and maintenance, reducing the difficulty and cost of maintenance and replacement. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a cross-sectional view of the utility model;
[0022] Figure 2 It is a structural diagram of the decorative column of the utility model;
[0023] Figure 3 This is a structural diagram of the connection between the groove-type embedded part and the top of the decorative column of the utility model;
[0024] Figure 4 This is a structural diagram of the connection between the sleeve core connector and the groove type embedded part of the utility model;
[0025] Figure 5 This is a schematic diagram of the structure of the connection between the top of the floodlighting assembly and the supporting sleeve core of the utility model;
[0026] Figure 6 This is a structural diagram of the connection between the bottom of the floodlighting assembly and the sleeve core connector of the utility model;
[0027] Figure 7 yes Figure 6 Top view with base plate and channel inserts removed.
[0028] As shown in the figure, 1. Decorative column; 11. Decorative panel; 111. Light-transmitting hole; 112. Welding nail; 12. Corner profile; 121. Receiving groove; 13. Structural adhesive; 2. Floodlighting assembly; 21. Lamp bracket; 22. Lamp; 23. Connecting plate; 24. Angle code; 3. Slot-type embedded part; 31. Channel steel; 311. Card plate; 312. Slot; 32. Anchor rod; 4. Aluminum angle; 41. Card slot; 5. Core connector; 51. Connecting core; 511. Nail wire groove; 52. Bottom plate; 521. Tooth groove; 522. Waist-shaped connecting hole; 6. Waist-shaped hole; 7. Support core; 8. Aluminum alloy meson; a. Civil structure; b. Decorative layer. DETAILED DESCRIPTION
[0029] The following is combined with Figure 1-7 The utility model is described in further detail.
[0030] like Figure 1 As shown, a keelless perforated plate lighting decorative column system includes a hollow cube-shaped decorative column 1, which is surrounded by four long strips of decorative panels 11. The decorative panels 11 are made of aluminum plates (double-sided fluorocarbon spraying), and are provided with a number of light-transmitting holes 111. The joints on the inner sides of two adjacent decorative panels 11 are fixedly connected by a corner profile 12; the inner cavity of the decorative column 1 is provided with a floodlighting assembly 2, the top of the decorative column 1 is fixedly connected to a groove-type embedded part 3 embedded in the top of the civil structure a, and a core connector 5 is slidably embedded in the inner bottom of the decorative column 1, and the bottom of the core connector 5 is fixedly connected to the groove-type embedded part 3 embedded in the bottom of the civil structure a.
[0031] In order to enhance the beauty of the decorative column 1 , the groove-type embedded parts 3 at the top and bottom of the decorative column 1 are covered and hidden by the decorative layer b.
[0032] like Figure 2 As shown, a number of support sleeve cores 7 are embedded in the inner cavity of the decorative column 1 from top to bottom. The support sleeve cores 7 are made of aluminum alloy profiles and are annular. The annular support sleeve core 7 enhances the stability of the decorative column 1 structure. The side walls of the support sleeve core 7 are respectively fitted with the corresponding decorative panels 11 and corner profiles 12, and the support sleeve core 7 is screwed to the corresponding corner profiles 12.
[0033] like Figure 3 As shown, the channel-type embedded part 3 includes a channel steel 31, and a plurality of anchor rods 32 are vertically connected to the outside of the channel steel 31 along the length direction. Inwardly extending clamping plates 311 are respectively provided on both sides of the opening of the channel steel 31. The two clamping plates 311 extend along the length direction of the channel steel 31, and a slot 312 extending along the length direction of the channel steel 31 is provided between the two clamping plates 311.
[0034] The tops of the two opposite decorative panels 11 are respectively connected to the aluminum angles 4 by bolts. The channel steel 31 is vertically arranged on the tops of the two aluminum angles 4. The tops of the aluminum angles 4 and the channel steel 31 are connected by bolts embedded in the slots 312 and passing through the tops of the aluminum angles 4.
[0035] A waist-shaped hole (not shown) extending along the length direction of the aluminum angle 4 is provided on the top of the aluminum angle 4 , and two vertical waist-shaped holes 6 distributed at intervals are provided on the side of the aluminum angle 4 close to the corresponding decorative panel 11 .
[0036] like Figure 3 As shown, the inner surface of the aluminum angle 4 close to the decorative panel 11 is provided with multiple horizontal slots 41, which are adapted to be snapped into the aluminum alloy meson 8 with a serrated surface. The bolts pass through the decorative panel 11, the vertical waist-shaped hole 6 of the aluminum angle, the aluminum alloy meson 8 and the nut in sequence.
[0037] The bolts in the slots 312 of the channel steel 31 can move in the length direction of the channel steel 31, and can also move in the waist-shaped hole at the top of the aluminum angle 4 along the length direction of the aluminum angle 4; the bolts connecting the aluminum angle 4 and the decorative panel 11 can move vertically in the vertical waist-shaped hole 6, thereby realizing three-dimensional six-directional adjustment of the top of the decorative column 1.
[0038] like Figure 6 、 7 As shown, the sleeve core connector 5 of this embodiment includes a connecting sleeve core 51 and a base plate 52. The connecting sleeve core 51 is in the shape of a hollow cube. The outer sides of the opposite side walls of the connecting sleeve core 51 are fitted with the inner sides of the side walls of the corresponding supporting sleeve core 7. The connecting sleeve core 51 of the aluminum alloy profile and the supporting sleeve core 7 of the corresponding aluminum plate profile are clearance-fitted. There is no mechanical connection between the two, and the loads in all directions are offset by mutual contact; the inner side of the side wall of the connecting sleeve core 51 is provided with a nailing groove 511 in the up and down direction, and the base plate 52 is located at the bottom of the connecting sleeve core 51. Screws are passed through the base plate 52 and are screwed to the nailing groove 511 of the connecting sleeve core 51. The base plate 52 and the channel steel 31 thereunder are connected by bolts embedded in the slot 312 and passing through the base plate 52.
[0039] The connecting sleeve core 51 of this embodiment is made of an aluminum alloy profile with a height of 250 mm, and the bottom plate 52 is also made of an aluminum alloy profile.
[0040] like Figure 4 As shown, the base plate 52 is provided with a number of teeth grooves 521 parallel to the length direction of the channel steel below it, and the teeth grooves 521 of the base plate 52 are provided with waist-shaped connecting holes 522 perpendicular to the length direction of the corresponding channel steel 31, and the waist-shaped connecting holes 522 are provided with aluminum alloy mesas 8 with serrated surfaces. The aluminum alloy mesas 8 are adapted to be clamped with the teeth grooves 521, and the bolts are embedded in the slots 312 of the corresponding channel steel 31 and pass through the waist-shaped connecting holes 522, the aluminum alloy mesas 8 and the nuts for fastening.
[0041] The bolt in the slot 312 can move in the length direction of the channel steel 31, and can also move in the waist-shaped connecting hole 522 along the length direction of the vertical channel steel 31; the decorative column 1 and the connecting sleeve core 51 can move in the vertical direction; the bottom of the decorative column 1 is three-dimensional and six-directional adjustable.
[0042] like Figure 6 As shown, the floodlighting assembly 2 includes a lamp bracket 21, a lamp 22, a connecting plate 23 and an angle bracket 24. The lamp 22 is arranged on the lamp bracket 21. The lamp bracket 21 adopts a "cross-shaped" structure of an aluminum alloy profile. The lamp 22 adopts a long strip LED lamp. The upper and lower ends of the lamp bracket 21 are respectively fixedly connected to the connecting plate 23. The opposite ends of the connecting plate 23 are screwed to the angle bracket 24. The other side of the angle bracket 24 is screwed to the support sleeve core 7 or the connecting sleeve core 51, that is, the angle bracket 24 at the bottom connecting plate 23 of the lamp bracket 21 is screwed to the connecting sleeve core 51; the angle bracket 24 at the top connecting plate 23 of the lamp bracket 21 is screwed to the support sleeve core 7.
[0043] like Figure 2 、 7 As shown, the corner profile 12 is in the shape of a hollow cube. The corner profile 12 runs through the entire decorative column 1 from top to bottom. A receiving groove 121 is provided on the diagonal outer side of the corner profile 12 along the length direction. Structural adhesive 13 is injected into the receiving groove 121 of the corner profile 12. The structural adhesive 13 is fitted with the inner side of the corresponding decorative column 1 panel. By providing the structural adhesive 13, the firmness of the connection between the decorative panel 11 and the corner profile 12 is improved.
[0044] like Figure 2 As shown, three decorative panels 11 are fixedly connected to the welding nails 112 corresponding to the corresponding corner profiles 12, and the three decorative panels 11 are connected to the corresponding corner profiles 12 through the screwed welding nails 112. Another decorative panel 11 is connected to the corresponding corner profile 12 through screws. The decorative panel 11 is detachably connected to the corner profile 12, which is convenient for installing the corner profile 12 on the inner side of the decorative column 1, and is also convenient for installing and repairing and replacing the floodlighting assembly 2. Since insects, birds and small debris can easily enter the inner side of the decorative panel 11 through the light-transmitting hole 111, the use of a one-side detachable decorative panel 11 facilitates regular cleaning and maintenance of the decorative column 1.
[0045] The embodiments of this specific implementation method are all preferred embodiments of the present utility model, and are not intended to limit the scope of protection of the present utility model. Therefore, any equivalent changes made based on the structure, shape, and principle of the present utility model should be included in the scope of protection of the present utility model.
Claims
1. A keelless perforated plate lighting decorative column system, characterized in that: It includes a hollow cube-shaped decorative column, which is surrounded by four long decorative panels. The decorative panels are provided with a number of light-transmitting holes. The joints on the inner sides of two adjacent decorative panels are fixedly connected by corner profiles. The inner cavity of the decorative column is provided with a floodlighting assembly. The top of the decorative column is fixedly connected to a groove-type embedded part embedded in the top of the civil structure. A sleeve core connector is slidably embedded in the inner bottom of the decorative column. The bottom of the sleeve core connector is fixedly connected to the groove-type embedded part embedded in the bottom of the civil structure.
2. The keelless perforated plate lighting decorative column system according to claim 1 is characterized in that: A plurality of support sleeve cores are embedded in the inner cavity of the decorative column from top to bottom. The support sleeve cores are annular. The side walls of the support sleeve cores are respectively fitted with the corresponding decorative panels and corner profiles. The support sleeve cores are screwed to the corresponding corner profiles.
3. The keelless perforated plate lighting decorative column system according to claim 1, characterized in that: The channel-type embedded parts include channel steel, and several anchor rods are vertically connected to the outer side of the channel steel along the length direction. Inwardly extending clamping plates are respectively provided on both sides of the channel steel opening, and the two clamping plates extend along the length direction of the channel steel. A slot extending along the length direction of the channel steel is provided between the two clamping plates; the tops of the two opposite decorative panels are respectively connected with aluminum angle bolts, and the channel steel is vertically arranged on the tops of the two aluminum angles. The tops of the aluminum angles are connected to the channel steel by bolts embedded in the slots and passing through the tops of the aluminum angles.
4. The keelless perforated plate lighting decorative column system according to claim 3 is characterized in that: The top of the aluminum angle is provided with a waist-shaped hole extending along its length direction, and the side of the aluminum angle close to the corresponding decorative panel is provided with two vertical waist-shaped holes distributed at intervals.
5. The keelless perforated plate lighting decorative column system according to claim 4 is characterized in that: The inner surface of the aluminum angle close to the decorative panel is provided with multiple horizontal slots, which are adapted to the aluminum alloy mesons with serrated surfaces. The bolts pass through the decorative panel, the vertical waist-shaped holes of the aluminum angle, the aluminum alloy mesons and the nuts in sequence.
6. The keelless perforated plate lighting decorative column system according to claim 2, characterized in that: The core connector includes a connecting core and a base plate. The connecting core is in the shape of a hollow cube. The outer sides of the opposite side walls of the connecting core fit into the inner sides of the side walls of the corresponding supporting core. The inner sides of the side walls of the connecting core are provided with nailing grooves in the up and down directions. The base plate is located at the bottom of the connecting core. Screws are passed through the base plate and are threadedly connected to the nailing grooves of the connecting core. The base plate and the channel steel below it are connected by bolts embedded in the slots and passing through the base plate.
7. The keelless perforated plate lighting decorative column system according to claim 6, characterized in that: The bottom plate is provided with a number of teeth grooves parallel to the length direction of the channel steel below it. The teeth grooves of the bottom plate are provided with waist-shaped connecting holes perpendicular to the length direction of the corresponding channel steel. The waist-shaped connecting holes are provided with aluminum alloy mesas with serrated surfaces, and the aluminum alloy mesas are adapted to be clamped in the teeth grooves.
8. The keelless perforated plate lighting decorative column system according to claim 6, characterized in that: The floodlighting assembly includes a lamp bracket, a lamp, a connecting plate and an angle bracket. The lamp is arranged on the lamp bracket. The upper and lower ends of the lamp bracket are respectively fixedly connected to the connecting plate. The opposite ends of the connecting plate are screwed to the angle brackets, and the other side of the angle bracket is screwed to the support sleeve core or the connecting sleeve core.
9. The keelless perforated plate lighting decorative column system according to claim 1, characterized in that: The corner profile is in the shape of a hollow cube and passes through the entire decorative column from top to bottom. A receiving groove is provided on the diagonal outer side of the corner profile along the length direction. Structural adhesive is injected into the receiving groove of the corner profile, and the structural adhesive is bonded to the inner side of the corresponding decorative column panel.
10. The keelless perforated plate lighting decorative column system according to claim 1, characterized in that: The three decorative panels are fixedly connected with welding nails corresponding to the corresponding corner profiles. The three decorative panels are connected to the corresponding corner profiles through screwed welding nails, and the other decorative panel is connected to the corresponding corner profile through screws.