Single-layer glass partition with multidirectional light source
The integrated production of special-shaped steel pipe guide rails and column structures with built-in LED light sources solves the problems of complex installation and insufficient lighting of traditional single-layer glass partitions, and realizes stable and efficient multi-directional light source glass partitions.
Patent Information
- Application Number
- CN202422989762.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-04
AI Technical Summary
The installation structure of traditional single-layer glass partitions is complex, with poor stability and low construction efficiency. In addition, they cannot fully introduce light sources for lighting, resulting in a single decorative effect.
The guide rails and columns are made of square and round special-shaped steel tubes of uniform specifications, with built-in grooves for LED light sources. The glass partition frame is formed through integrated production, and LED light strips are pasted in multiple narrow grooves preset on the guide rails and columns to achieve multi-directional lighting.
It simplifies the installation process, improves the stability and construction efficiency of the partition, enhances the lighting range and decorative effect, and forms a multi-level screen shape.
Smart Images

Figure CN223458978U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of building decoration, and particularly to a single-layer glass partition with multidirectional light source which can be used as interior partition wall or screen. BACKGROUND
[0002] At present, along with the diversification of decoration materials and the improvement of people's aesthetic level, many engineers choose single-layer glass partition to decorate and space separate civil buildings, which has the characteristics of small floor area, strong light transmission and good sound insulation. When installing traditional single-layer glass partition, workers usually first use expansion screws to nail the steel frame to the building main body, then use angle steel and self-tapping screws to connect the upper and lower ends of the corner column to the surface of the frame, then insert rubber pads into the frame and column slots, insert a layer of tempered glass plate into the slot, and finally fill the rubber pressure strip and silicone sealant layer by layer on both sides of the glass plate in the slot, and fill glass glue at the joint of adjacent glass plates.
[0003] However, the installation structure of the traditional single-layer glass partition still has the following disadvantages:
[0004] 1. The steel frame used for installing the partition is generally composed of base rail, horizontal adjusting part, keel sealing strip, lower groove aluminum keel and other components nested and connected with each other. Each component is a special-shaped steel material with a buckle structure for mutual locking. The production and processing are complicated, the installation structure is complex, and the steel frame is prone to overturning and disintegration when clamping and fixing the heavy glass plate, so the overall stability of the partition is poor.
[0005] 2. When installing the partition, due to the poor flatness of the original ground, gaps are easily formed at the connection between the single-layer glass partition and the building main body, which cannot be directly installed. In addition, the partition frame and the corner column are assembled by connecting a plurality of prefabricated components, so the materials need to be cut and processed multiple times and the gaps need to be filled on site to ensure stable and solid installation of the components. The construction efficiency of the partition is low, and the construction period is easily delayed.
[0006] 3. The existing single-layer glass partition only has a space isolation function, cannot fully introduce light source into the partition system, and cannot illuminate the indoor space. The common method is to paste an LED light strip on the inner wall of the steel frame of the partition to illuminate the glass plate. However, this method has limited illumination range and insufficient light intensity, and the decoration effect is single. INVENTION CONTENTS
[0007] The utility model aims at the deficiencies of the above-mentioned situation and provides a single-layer glass partition with multidirectional light source which has simple structure, efficient installation and sufficient illumination function.
[0008] In order to achieve the above object, the technical scheme of the utility model is as follows: single layer glass partition with multi-direction light source, comprising: top guide rail fixed on building main body through steel structure connecting piece one; bottom guide rail fixed on structural ground through steel structure connecting piece two; end column and middle column vertically welded between top guide rail and bottom guide rail; and tempered glass plate clamped between top guide rail, bottom guide rail, end column and middle column; top guide rail, bottom guide rail and end column are all square shaped special steel pipes of unified specification, which are composed of internal square channel and square aluminum alloy section material coated on the outside of internal square channel, wherein, front and rear sides of square aluminum alloy section material are respectively concaved with front side concave lamp groove and rear side concave lamp groove of built-in LED light source, and any side of upper and lower sides of square aluminum alloy section material is concaved with mounting recess and vertical concave lamp groove of built-in LED light source.
[0009] The middle column is a circular shaped special steel pipe, which is composed of internal square channel and circular aluminum alloy section material coated on the outside of internal square channel, wherein, left and right sides of circular aluminum alloy section material are respectively concaved with mounting recesses of adjacent two tempered glass plates, and front and rear sides of circular aluminum alloy section material are respectively concaved with front lamp groove and rear lamp groove of built-in LED light source.
[0010] The steel structure connecting piece one is angle steel, expansion bolt and square channel, and the steel structure connecting piece one fixes the top guide rail on the building wall.
[0011] The middle column and the top guide rail, bottom guide rail and end column are all square shaped special steel pipes of unified specification, and the tempered glass plate is three independent units, wherein, the middle column corresponding to the middle tempered glass plate is stacked outside the middle columns corresponding to the left tempered glass plate and the right tempered glass plate, and the splicing keel is inserted in the lamp groove of the two abutted sides, the splicing keel is strip-shaped aluminum alloy keel, which is composed of capsule-shaped tube in the middle and connecting sheet on both sides, and after assembly, the capsule-shaped tube is clamped in the front lamp groove and rear lamp groove of mutual abutted sides and fixedly connected.
[0012] The steel structure connecting piece one is angle steel, expansion bolt and square channel, and the steel structure connecting piece one fixes the top guide rail on the building roof.
[0013] The top guide rail is provided with a ceiling above, and the top guide rail is attached below the ceiling panel of the ceiling.
[0014] The tempered glass plate is clamped in the mounting recess corresponding to the top guide rail, bottom guide rail, end column and middle column, and then sealed by foam rod and silicone sealant.
[0015] The steel structure connecting piece two comprises a vertical square tube, an angle code and an expansion bolt, the angle code and the expansion bolt fix the vertical square tube on the structural ground, and the top end of the vertical square tube is welded with the internal square tube in the bottom rail as a whole.
[0016] The tempered glass plate is a straight tempered glass plate, and the corresponding top rail part and bottom rail part are straight rails.
[0017] The tempered glass plate is an arc-shaped tempered glass plate, and the corresponding top rail part and bottom rail part are arc-shaped rails.
[0018] After the above structure is adopted, the utility model has the following characteristics:
[0019] 1. The utility model discloses an integrated forming rail and stand, wherein the top rail, the bottom rail and the end stand and the middle stand adopt the special-shaped steel pipe of unified specification and mutual matching, the hollow part in the special-shaped steel pipe is penetrated and connected with the square tube, the square tubes in each row are mutually welded and communicated, the rail and the stand can be integrally produced and formed, the frame of the glass partition is formed, secondary assembly is not needed on the spot, the glass partition is connected as a whole when clamping the glass plate, and better lateral rigidity and stability are obtained.
[0020] 2. The utility model discloses a glass partition structure that can be illuminated on three sides, the top rail, the bottom rail and the end stand are customized and produced, the three sides are all equipped with the lamp groove, the front and back two sides of the middle stand are equipped with the lamp groove, the LED lamp strip is pasted in each lamp groove as the light source, when the tempered glass plate is clamped in the mounting groove of the top rail, the bottom rail and the end stand, the LED lamp strip can project the light source to the tempered glass plate and the space on the two sides of the partition, three-side illumination is realized, the light and shadow effect is gorgeous, and the modeling is beautiful.
[0021] 3. The utility model discloses a glass screen structure that can be arranged in a laminated mode, the three sides of the wall stand are all equipped with the lamp groove, the capsule-shaped pipe is clamped in the front lamp groove and the rear lamp groove and is fixedly connected, seamless splicing of the three-dimensional laminated structure is realized, then the multiple glass partition structures are assembled together in a laminated mode, the screen modeling of multiple levels of steps is shaped, the appearance is atmospheric and beautiful, and the indoor space can be diversified and separated. ACCURACY OF DRAWINGS
[0022] Figure 1 It is the vertical section structure schematic view of the utility model inner partition wall embodiment;
[0023] Figure 2 It is the constant direction section structure schematic view of the utility model inner partition wall embodiment;
[0024] Figure 3 It is Figure 2A part of the middle part of the local enlarged structure schematic view;
[0025] Figure 4 Is the facade structure schematic view of the interior partition wall embodiment of the utility model;
[0026] Figure 5 Is the vertical cross section structure schematic view of the screen embodiment of the utility model;
[0027] Figure 6 It is the constant cross section structure schematic view of the screen embodiment of the utility model;
[0028] Figure 7 Is Figure 6 A part of the middle part of the local enlarged structure schematic view;
[0029] Figure 8 Is the facade structure schematic view of the screen embodiment of the utility model;
[0030] Figure 9 It is the square special-shaped steel pipe three-dimensional structure schematic view in the utility model;
[0031] Figure 10 It is the circular special-shaped steel pipe three-dimensional structure schematic view in the utility model;
[0032] Figure 11 It is the spliced keel three-dimensional structure schematic view in the utility model. Specific implementation
[0033] The following will be combined with the drawings Figures 1-11 The specific implementation of the utility model is further explained in detail.
[0034] The technical scheme of the utility model is as follows: a single-layer glass partition with multidirectional light source, comprising: a top guide rail 20 fixed on a building main body 300 through a steel structure connecting piece one 10; a bottom guide rail 50 fixed on a structural floor 40 through a steel structure connecting piece two 30; an end column 60 and a middle column 70 vertically welded between the top guide rail 10 and the bottom guide rail 50; and a tempered glass plate 80 clamped between the top guide rail 20, the bottom guide rail 50, the end column 60 and the middle column 70; the top guide rail 20, the bottom guide rail 50 and the end column 60 are all made of square special-shaped steel pipes 100 of uniform specifications, the square special-shaped steel pipe 100 is composed of an internal square tube 101 and a square aluminum alloy profile 102 wrapped outside the internal square tube, wherein the front and rear sides of the square aluminum alloy profile 100 are respectively concave with a front side concave lamp groove 103 and a rear side concave lamp groove 104 of the built-in LED light source 200, and any side of the upper and lower sides of the square aluminum alloy profile 100 is concave with a mounting recess 105 accommodating the tempered glass plate 80 and a vertical concave lamp groove 106 of the built-in LED light source 200.
[0035] As Figures 1-4 shown in the partition wall embodiment, the intermediate column 70 is a circular shaped steel pipe 400, which is composed of an inner square tube 401 and a circular aluminum alloy profile 402 wrapped outside the inner square tube 401, wherein the left and right sides of the circular aluminum alloy profile 402 are respectively concave with mounting grooves 403 adapted to the adjacent two tempered glass plates 80, and the front and back sides of the circular aluminum alloy profile 402 are respectively concave with front light grooves 404 and rear light grooves 405 for accommodating the built-in LED light source 200.
[0036] The steel structure connector one 10 is an angle steel, an expansion bolt and a square tube, which fixes the top rail 10 on the building wall.
[0037] As Figures 5-8 shown in the screen embodiment, the intermediate column 70 and the top rail 20, the bottom rail 50 and the end column 60 are all square shaped steel pipes 100 of uniform specifications, and the tempered glass plate 80 is a three-piece independent unit, wherein the middle tempered glass plate 80 corresponds to the intermediate column layer 70, which is stacked outside the left tempered glass plate 80 and the right tempered glass plate corresponding to the intermediate column, and a splicing keel 500 is inserted in the light grooves of the two abutting parts, which is an aluminum alloy keel in strip shape, composed of a capsule-shaped tube 501 in the middle and two connecting plates 501 on the sides, and after assembly, the capsule-shaped tube 501 is fixedly connected by being clamped in the abutting front light grooves 103 and rear light grooves 104.
[0038] The steel structure connector one 10 is an angle steel, an expansion bolt and a square tube, which fixes the top rail 20 on the building roof.
[0039] The top rail 20 is provided above the ceiling 90, and is attached below the ceiling panel 91 of the ceiling 90.
[0040] The tempered glass plate 80 is clamped in the mounting grooves corresponding to the top rail 20, the bottom rail 50, the end column 60 and the middle column 70, and is sealed by foam rods and silicone sealant.
[0041] The steel structure connector two 30 includes a vertical square tube, an angle code and an expansion bolt, and the angle code and the expansion bolt fix the vertical square tube on the structural floor 40, and the top end of the vertical square tube is welded with the inner square tube in the bottom rail 50.
[0042] The tempered glass plate 80 is a straight tempered glass plate, and the corresponding top rail part and bottom rail part are straight rails.
[0043] Or as Figure 2 As shown in the embodiments, the tempered glass plate 80 is an arc-shaped tempered glass plate, and the corresponding top rail 20 part and bottom rail 50 part are arc-shaped rails.
[0044] As Figures 9-11 The main profile three-dimensional structure diagram connected with the tempered glass plate 80 of the utility model is shown.
[0045] The following are the construction steps of each embodiment:
[0046] When installing the interior wall embodiment, as the glass interior partition wall in the business club suite, when the light-emitting single-layer glass partition structure is used as an interior partition wall, the specific construction steps are as follows: Figures 1-4
[0047] 1) Base cleaning and positioning wire drawing: use a spatula to clean the joint part of the glass partition and the building main body 300, and use a level and a inkpot to accurately mark the partition position line, the rail / stand column position line, the height line, etc. on the building floor and the wall surface.
[0048] 2) Install the rail and the stand column: first, according to the actual size on site, the top rail 20, the bottom rail 50, the end stand column 60, and the middle stand column 70 are produced and customized in the factory, and are integrally welded and assembled into a frame to form an interior partition wall; second, the bottom rail 50 is fixed on the building floor 40 using angle steel, expansion bolts, and square tubes, and the top rail 20 is fixed on the side building wall, during which the flatness of the rail should be adjusted while being fixed, and when the end stand column 60 is close to the wall surface, the side wall of the end stand column 60 needs to be firmly pasted on the wall surface using structural glue.
[0049] 3) Install the tempered glass plate 80: first, clean the installation groove of the rail and the stand column, insert a foam stick into the middle wide notch, and fix it using a nail gun; second, use a vacuum chuck to lift the tempered glass plate, insert the upper end of the glass plate into the installation groove of the top rail, and insert the lower end of the glass plate into the installation groove of the bottom rail; finally, move the tempered glass plate 80 horizontally to ensure that the tempered glass plate 80 is firmly clamped in the installation groove of the end stand column 60 and the middle stand column 70.
[0050] 4) Embedding and gluing: after all the tempered glass plates 80 are installed, correct the flatness and perpendicularity, and fill silicone sealant in the gap between the tempered glass plate 80 and the rail / stand column groove, which should be started from the end of the gap, and the glass glue on both sides of the tempered glass plate 80 should be scraped flat after filling.
[0051] 5) Install the built-in LED light source 200, i.e. LED light strip: use structural adhesive to paste the LED light strip in the remaining light slots of the top / bottom guide rail and end / middle stand, and connect the light strip to the power supply.
[0052] 6) Cleaning: use cotton yarn and cleaning agent to remove the traces of glue and dirt on the surface of the tempered glass plate 80.
[0053] Install as Figures 5-8 The glass screen in the reception hall of the business club. When the light-emitting single-layer glass partition structure is used as a screen, the specific construction steps are as follows:
[0054] 1) Base cleaning and positioning: use a spatula to clean the joint between the glass partition and the main building 300, and use a level and a inkpot to accurately mark the partition position line, guide rail / stand position line, etc. on the building floor 40 and the top surface.
[0055] 2) Install the guide rail and stand: first, according to the actual size on site, customize and produce the top guide rail 20, bottom guide rail 50 and end stand 60, middle stand 70 in the factory, and integrally weld and assemble them into a frame to form a screen; second, use angle steel, expansion bolts and square tubes to fix the bottom guide rail 50 on the building floor 40 and the top guide rail 20 on the building top plate, and adjust the flatness of the guide rail during the fixing process.
[0056] 3) Stand splicing treatment: when a stacked glass screen is needed, first, based on the positioned and installed partition frame, the middle stand layer 70 corresponding to the middle tempered glass plate 80 is stacked outside the middle stand 70 corresponding to the left tempered glass plate 80 and the middle stand corresponding to the right tempered glass plate; second, a splicing keel 500 is inserted into the light slots at both ends, and the capsule-shaped tube 501 is fixedly connected by being inserted into the front and rear light slots 103 and 104; finally, use angle steel, expansion bolts and square tubes to fix the welded and connected top guide rail 20 and bottom guide rail 50 on the building top plate and building floor 40, respectively.
[0057] 4) Install the tempered glass plate 80: first, clean the installation grooves of the guide rail and stand of each partition frame, insert foam rods into the middle installation grooves, and fix them using a nail gun; second, use a vacuum suction cup to lift the tempered glass plate 80, insert the upper end of the tempered glass plate 80 into the installation groove of the top guide rail 20, and insert the lower end of the tempered glass plate 80 into the installation groove of the bottom guide rail 50; finally, level the tempered glass plate 80 to ensure that the tempered glass plate 80 is firmly inserted into the installation groove of the end stand 60 on both sides.
[0058] 5) Caulking glue: after installing all the tempered glass plates 80, correct the flatness and perpendicularity, and fill the gap between the tempered glass plate 80 and the installation groove with silicone sealant. When injecting the glue, start from the end of the gap, and after filling, use a plastic sheet to scrape the glass glue on both sides of the tempered glass plate 80.
[0059] 6) Install the built-in LED light source 200, i.e. the LED light strip: use structural glue to paste the LED light strip in the remaining light slots of the top rail 20 and the bottom rail 50 and the end column 60, and connect the light strip to the power supply.
[0060] 7) Cleaning: use cotton yarn and cleaning agent to remove the glue marks and stains on the surface of the tempered glass plate.
[0061] Therefore, compared with the prior art, the utility model has the following characteristics:
[0062] 1. The method of processing a large number of special-shaped parts in the factory and then assembling the partition frame by clamping on site is omitted, and instead, top / bottom rails and end / middle columns of uniform specifications and mutual matching are customized in the factory, and the square tubes in the rails and columns are welded in communication to integrally form the partition frame, so that the structure is simple, secondary assembly is not required, the tempered glass plate is more stable and firm when clamped and fixed, and the partition frame is not prone to overturning and disintegration.
[0063] 2. The method of repeatedly cutting and processing the partition frame on site and filling the gap between the frame and the building main body is omitted, and instead, the top / bottom rails are rigidly connected to the building main body through angle steels, expansion bolts and square tubes, which not only reduces the flatness error of the civil foundation and ensures the overall stability of the partition system, but also improves the construction efficiency of the partition and effectively shortens the construction period.
[0064] 3. The method of pasting LED light strips only on the inner wall of the partition frame to improve the lighting effect of the glass partition is omitted, and instead, rails and columns with multiple narrow grooves are used, and LED light strips are pasted in the grooves to supplement the light source for the glass partition. The groove light strips are directed towards the inner side of the glass plate and the space on both sides of the partition, which significantly improves the lighting range and decoration effect of the partition.
[0065] Therefore, the utility model has the characteristics of simple structure, efficient installation and sufficient lighting function.
[0066] Of course, the utility model can also have other various embodiments, and those skilled in the art can make various corresponding changes and modifications according to the utility model without departing from the spirit and essence of the utility model, but these corresponding changes and modifications should belong to the protection scope of the claims attached to the utility model.
Claims
1. A single-layer glass partition with multi-directional light source, comprising: a top rail fixed on a building main body through a steel structure connector I; a bottom rail fixed on a structural floor through a steel structure connector II; end columns and middle columns vertically welded between the top rail and the bottom rail; and tempered glass plates clamped between the top rail, the bottom rail, the end columns and the middle columns; characterized in that: The top rail, the bottom rail and the end column are all square-shaped special steel pipes of uniform specifications, which are composed of an inner square tube and a square aluminum alloy profile wrapped outside the inner square tube, wherein the front and rear sides of the square aluminum alloy profile are respectively concavely provided with a front-side concave lamp groove and a rear-side concave lamp groove with built-in LED light sources, and any one of the upper and lower sides of the square aluminum alloy profile is concavely provided with a mounting recess for accommodating the tempered glass plate and a vertical concave lamp groove with built-in LED light sources. 2. The single layer glass partition with multi-directional light source according to claim 1, wherein: The middle column is a circular-shaped special steel pipe, which is composed of an inner square tube and a circular aluminum alloy profile wrapped outside the inner square tube, wherein the left and right sides of the circular aluminum alloy profile are respectively concavely provided with mounting recesses for accommodating two adjacent tempered glass plates, and the front and rear sides of the circular aluminum alloy profile are respectively concavely provided with a front lamp groove and a rear lamp groove with built-in LED light sources.
3. The single layer glass partition with multi-directional light source according to claim 2, wherein: The steel structure connecting piece one is an angle steel, an expansion bolt and a square tube, which fixes the top rail on the building wall.
4. The single layer glass partition with multi-directional light source of claim 1, wherein: The middle column and the top rail, the bottom rail and the end column are all square-shaped special steel pipes of uniform specifications, and the tempered glass plate is a three-piece independent unit, wherein the middle tempered glass plate is stacked outside the left and right middle columns corresponding to the left and right tempered glass plates, and a splicing keel is inserted into the lamp grooves at the joint, which is an aluminum alloy keel in strip shape and is composed of a capsule-shaped tube in the middle and connecting pieces on both sides, and after assembly, the capsule-shaped tube is clamped and fixedly connected in the mutually abutting front and rear lamp grooves.
5. The single layer glass partition with multi-directional light source according to claim 4, wherein: The steel structure connecting piece one is an angle steel, an expansion bolt and a square tube, which fixes the top rail on the building roof.
6. A single-glazed partition with a multi-directional light source according to any one of claims 1 to 5, characterised in that: The top rail is provided above a ceiling, and is attached below the ceiling panel of the ceiling.
7. The single layer glass partition with multi-directional light source according to claim 6, wherein: The tempered glass plate is clamped in the corresponding mounting recesses of the top rail, the bottom rail, the end column and the middle column, and is sealed by a foam rod and silicone sealant.
8. The single layer glass partition with multi-directional light source according to claim 7, wherein: The steel structure connecting piece two includes a vertical square tube, an angle code and an expansion bolt, the angle code and the expansion bolt fix the vertical square tube on the structural floor, and the top end of the vertical square tube is welded with the inner square tube in the bottom rail.
9. The single layer glass partition with multi-directional light source of claim 8, wherein: The tempered glass plate is a straight tempered glass plate, and the corresponding top rail part and bottom rail part are straight rails.
10. The single layer glass partition with multi-directional light source of claim 8, wherein: The tempered glass plate is an arc-shaped tempered glass plate, and the corresponding top rail part and bottom rail part are arc-shaped rails.