Light installation structure of overhanging glass railing

CN224814865UActive Publication Date: 2026-09-29SUZHOU GOLD MANTIS CURTAIN WALL CO LTD
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Patent Information

Application Number
CN202522168282.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-29
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

[0003]现有玻璃栏板的灯光都布置在扶手内,造成扶手型材过大,造成材料与成本浪费,同时,过大的扶手型材破坏了玻璃栏板系统的轻盈通透感,严重影响整体装饰效果;还因内部结构复杂,线路封闭难以完全到位,长期使用易出现线路老化、短路等安全隐患

Benefits of technology

[0013]本实用新型方案的一种外挑式玻璃栏杆的灯光安装结构,通过将灯具设置在玻璃板下部的空腔结构中,并采用铝合金承托板将该空腔结构完全封闭,形成隐藏式灯光结构,灯具可通过穿线与建筑主体内的供电线路连接,无需像现有技术那样将灯光布置在扶手内,避免了扶手型材过大导致的材料浪费,同时保持玻璃栏杆的通透感,不会破坏整体装饰效果。

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Abstract

The utility model discloses a light installation structure of overhanging type glass railing relates to curtain wall glass railing technical field, contains steel stand, glass board, aluminium alloy support plate, aluminium alloy angle code connecting piece, steel angle code connecting piece, aluminium alloy lamp slot and lamps and lanterns, the middle part of glass board is connected and is fixed on steel stand, and steel stand is installed and is fixed on building main body, and the lower part of glass board forms cavity structure with building main body, and aluminium alloy support plate is located at the bottom of glass board, and the outer end of aluminium alloy support plate cooperates with the bottom end of glass board, and this scheme sets up lamps and lanterns in the cavity structure of glass board lower part, and adopts aluminium alloy support plate and closes the cavity structure completely, forms hidden light structure, and lamps and lanterns can be connected with the power supply circuit in building main body through threading, need not like the prior art and arrange light in handrail, avoid the material waste caused by the oversized handrail section, keep the glass railing's permeability simultaneously, will not destroy the whole decorative effect.
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Description

Technical Field

[0001] This utility model relates to a lighting installation structure for an outward-projecting glass railing, belonging to the technical field of curtain wall glass railings. Background Technology

[0002] Glass balustrades infuse architecture with deeper meaning and transform spatial design concepts. In contemporary architectural design, the idea of ​​openness to the outside has gradually become an important spatial design characteristic, widely used in residential buildings, commercial centers, and industrial facilities due to their transparency, aesthetic appeal, and ability to provide unobstructed views. Beyond their beauty, glass balustrades effectively divide architectural spaces, guide pedestrian flow, and provide safety protection.

[0003] The existing glass balustrade lighting is all arranged inside the handrail, resulting in excessively large handrail profiles, which leads to waste of materials and costs. At the same time, the excessively large handrail profiles destroy the light and transparent feel of the glass balustrade system and seriously affect the overall decorative effect. Furthermore, due to the complex internal structure, it is difficult to completely seal the wiring, which can easily lead to safety hazards such as wiring aging and short circuits after long-term use. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a lighting installation structure for an outward-projecting glass railing.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a lighting installation structure for an outward-projecting glass railing, comprising a steel column, a glass panel, an aluminum alloy support plate, aluminum alloy angle bracket connectors, steel angle bracket connectors, an aluminum alloy light trough, and a lighting fixture; the middle part of the glass panel is connected and fixed to the steel column, the steel column is installed and fixed to the main building structure, and a cavity structure is formed between the lower part of the glass panel and the main building structure; the aluminum alloy support plate is located at the bottom of the glass panel, the outer end of the aluminum alloy support plate mates with the bottom end of the glass panel, and the inner end of the aluminum alloy support plate is fixed to the main building structure through aluminum alloy angle bracket connectors and steel angle bracket connectors to close the cavity structure; the aluminum alloy support plate has a mounting base on one side within the cavity structure, the aluminum alloy light trough is fixed on the mounting base, and the lighting fixture is installed on the aluminum alloy light trough.

[0006] Preferably, one end of the aluminum alloy corner bracket connector is connected and fixed to the mounting base of the aluminum alloy support plate, and the other end of the aluminum alloy corner bracket connector is connected and fixed to the steel corner bracket connector. An anti-slip pad is provided between the aluminum alloy corner bracket connector and the steel corner bracket connector, and the steel corner bracket connector is fixed to the bottom of the building structure.

[0007] Preferably, the inner side of the steel column is provided with a column connecting angle bracket, and the steel column is connected and fixed to the building body through the column connecting angle bracket.

[0008] Preferably, a calcium silicate board is provided along the vertical length of the outer side of the main building.

[0009] Preferably, the outer end of the aluminum alloy support plate has a fitting groove, the bottom end of the glass plate is inserted into the fitting groove, and a rigid gasket is provided at the bottom and inside of the fitting groove, and sealant is applied to the outside of the fitting groove.

[0010] Preferably, the bottom of the aluminum alloy support plate is fitted with an aluminum alloy buckle cover.

[0011] Preferably, the steel angle bracket connector is welded and fixed with triangular stiffening ribs.

[0012] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art:

[0013] This utility model discloses a lighting installation structure for an outward-projecting glass railing. By placing the lighting fixtures in a cavity structure under the glass panel and completely enclosing the cavity structure with an aluminum alloy support plate, a concealed lighting structure is formed. The lighting fixtures can be connected to the power supply line inside the building through wiring, eliminating the need to arrange the lighting inside the handrail as in existing technologies. This avoids material waste caused by excessively large handrail profiles, while maintaining the transparency of the glass railing and not compromising the overall decorative effect. Attached Figure Description

[0014] The technical solution of this utility model will be further described below with reference to the accompanying drawings:

[0015] Appendix Figure 1 This is a vertical section view of the lighting installation structure of an outward-projecting glass railing according to the present invention.

[0016] Appendix Figure 2 For the appendix Figure 1 Enlarged view of point A in the middle;

[0017] Appendix Figure 3 For the appendix Figure 1 Enlarged view of point B in the middle.

[0018] In the diagram: 1. Steel column; 11. Column connecting bracket; 2. Glass plate; 3. Aluminum alloy support plate; 31. Mounting base; 32. Rigid gasket; 33. Sealant; 34. Aluminum alloy cover; 4. Aluminum alloy bracket connector; 41. Anti-slip pad; 5. Steel bracket connector; 51. Stiffening rib; 6. Aluminum alloy light trough; 7. Lighting fixture; 8. Main building structure; 81. Calcium silicate board; 9. Cavity structure. Detailed Implementation

[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0020] As attached Figure 1-3As shown, the lighting installation structure of the cantilevered glass railing of this utility model includes a steel column 1, a glass plate 2, an aluminum alloy support plate 3, an aluminum alloy corner bracket connector 4, a steel corner bracket connector 5, an aluminum alloy light trough 6, and a light fixture 7.

[0021] The glass panel 2 is fixed to the steel column 1 at the middle. The steel column 1 is installed and fixed to the main building 8. In this embodiment, the glass panel 2 can be attached to the steel column 1 by means of a frame structure commonly used in the art or by directly using structural adhesive. The inner side of the steel column 1 is provided with a column connecting bracket 11. The steel column 1 is connected and fixed to the main building 8 by the column connecting bracket 11, ensuring that the load of the glass panel 2 is transferred to the main building 8.

[0022] A cavity structure 9 is formed between the lower part of the glass plate 2 and the main building 8. The aluminum alloy support plate 3 is located at the bottom of the glass plate 2. The outer end of the aluminum alloy support plate 3 matches the bottom end of the glass plate 2. The inner end of the aluminum alloy support plate 3 is fixed to the main building 8 through aluminum alloy angle bracket connector 4 and steel angle bracket connector 5 to close the cavity structure 9.

[0023] Specifically, the outer end of the aluminum alloy support plate 3 has a fitting groove, and the bottom end of the glass plate 2 is inserted into the fitting groove. Rigid gaskets 32 are provided at the bottom and inside of the fitting groove. The rigid gaskets 32 can prevent the glass plate 2 from being squeezed and broken during installation, and at the same time prevent rainwater from seeping into the cavity structure 9 from the gap between the glass plate 2 and the aluminum alloy support plate 3. The outside of the fitting groove is covered with sealant 33 to further block rainwater intrusion and ensure waterproof effect.

[0024] One end of the aluminum alloy angle bracket connector 4 is fixed to the mounting base 31 of the aluminum alloy support plate 3 by bolts, and the other end of the aluminum alloy angle bracket connector 4 is fixed to the steel angle bracket connector 5 by bolts. An anti-slip pad 41 is provided between the aluminum alloy angle bracket connector 4 and the steel angle bracket connector 5, which can effectively prevent the metal from sliding due to thermal expansion and contraction caused by temperature changes, avoid the aluminum alloy support plate 3 from loosening, and ensure the long-term reliability of cavity sealing. The steel angle bracket connector 5 is fixed to the bottom of the building body 8 by welding.

[0025] Furthermore, to further enhance the load-bearing capacity of the steel angle bracket connector 5, triangular stiffening ribs 51 are welded and fixed on the steel angle bracket connector 5 to prevent the steel angle bracket connector 5 from bending and deforming due to excessive stress at a single point.

[0026] As attached Figure 1-2As shown, the aluminum alloy support plate 3 has a mounting base 31 on one side inside the cavity structure 9. The aluminum alloy light trough 6 is fixed on the mounting base 31, and the light fixture 7 is installed on the aluminum alloy light trough 6 to completely hide the light fixture 7. It is connected to the power supply line in the main building 8 through wiring. Unlike existing technologies, it does not need to arrange the light inside the handrail, which avoids the waste of materials caused by the excessive size of the handrail profile. At the same time, it maintains the transparency of the glass railing and does not destroy the overall decorative effect.

[0027] Furthermore, an aluminum alloy cover 34 is snapped onto the bottom of the aluminum alloy support plate 3. In this embodiment, the aluminum alloy cover 34 is snapped and fixed using a staggered hook commonly used in the art to hide the internal structure, making the appearance of the aluminum alloy support plate 3 neat and uniform. It can also be used as a maintenance position for the lamps 7 or the wiring in the future to reduce maintenance costs.

[0028] Furthermore, a calcium silicate board 81 is installed along the vertical length of the outer side of the main building 8. The calcium silicate board 81 can be fixed to the main building 8 with self-tapping screws. This serves two purposes: first, to protect the main building 8 and prevent rainwater and moisture from eroding the wall; and second, to improve the appearance and create a unified vertical visual line with the glass panel 2.

[0029] The above are merely specific application examples of this utility model and do not constitute any limitation on the scope of protection of this utility model; all technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of protection of this utility model.

Claims

1. A lighting installation structure for an outward-projecting glass railing, characterized in that: It includes a steel column (1), a glass plate (2), an aluminum alloy support plate (3), an aluminum alloy corner bracket connector (4), a steel corner bracket connector (5), an aluminum alloy light trough (6), and a light fixture (7); the middle part of the glass plate (2) is connected and fixed to the steel column (1), the steel column (1) is installed and fixed to the main building (8), the lower part of the glass plate (2) and the main building (8) form a cavity structure (9), the aluminum alloy support plate (3) is located at the bottom of the glass plate (2), and the aluminum alloy... The outer end of the support plate (3) is fitted with the bottom end of the glass plate (2), and the inner end of the aluminum alloy support plate (3) is fixed to the main body of the building (8) through aluminum alloy angle bracket connector (4) and steel angle bracket connector (5) to enclose the cavity structure (9); the aluminum alloy support plate (3) has a mounting base (31) on one side inside the cavity structure (9), the aluminum alloy light trough (6) is fixed on the mounting base (31), and the lamp (7) is installed on the aluminum alloy light trough (6).

2. The lighting installation structure for an outward-projecting glass railing according to claim 1, characterized in that: One end of the aluminum alloy corner bracket connector (4) is connected and fixed to the mounting base (31) of the aluminum alloy support plate (3), and the other end of the aluminum alloy corner bracket connector (4) is connected and fixed to the steel corner bracket connector (5). An anti-slip pad (41) is provided between the aluminum alloy corner bracket connector (4) and the steel corner bracket connector (5). The steel corner bracket connector (5) is fixed to the bottom of the building body (8).

3. The lighting installation structure for an outward-projecting glass railing according to claim 1, characterized in that: The steel column (1) is provided with a column connecting bracket (11) on its inner side, and the steel column (1) is connected and fixed to the building body (8) through the column connecting bracket (11).

4. The lighting installation structure for an outward-projecting glass railing according to claim 3, characterized in that: The outer side of the main building (8) is provided with a calcium silicate board (81) along its vertical length.

5. The lighting installation structure for an outward-projecting glass railing according to claim 1, characterized in that: The outer end of the aluminum alloy support plate (3) has a fitting groove, the bottom end of the glass plate (2) is inserted into the fitting groove, and a hard gasket (32) is provided at the bottom and inside of the fitting groove, and sealant (33) is applied to the outside of the fitting groove.

6. The lighting installation structure for an outward-projecting glass railing according to claim 1, characterized in that: The bottom of the aluminum alloy support plate (3) is fitted with an aluminum alloy buckle cover (34).

7. The lighting installation structure for an outward-projecting glass railing according to claim 1, characterized in that: The steel angle bracket connector (5) is welded and fixed with triangular stiffening ribs (51).