Convenient-to-disassemble atrium glass handrail mounting structure

Through the innovation of modular design and detachable glass slots, the problem of difficult disassembly of glass railings in atriums of high-end commercial buildings has been solved, achieving the effect of both convenient disassembly and stability.

CN223330133UActive Publication Date: 2025-09-12SHANGHAI KANGYE BUILDING DECORATION ENG
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Patent Information

Application Number
CN202422751221.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-12
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The glass railings in the atria of existing high-end commercial buildings are complex in structure and difficult to disassemble, which affects the stability of the system.

Method used

It adopts a modular design, including stone handrails, stainless steel handrails, glass slots, etc. The detachable glass slot A and bolt connection change the support method of the glass, making it tilted for easy disassembly. Combined with hot-dip galvanized steel plates and stainless steel exterior finishes, it ensures stability.

Benefits of technology

The glass railings can be easily disassembled and repaired while maintaining system stability and avoiding any impact on the atrium glass railing system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an atrium glass handrail installation structure convenient to disassemble, which comprises a handrail stand column support, glass, a stainless steel handrail A, a stainless steel handrail B, a handrail support and a stone handrail, the handrail stand column support is fixed with the ground through a handrail stand column embedded part, and vertical plastic glass protection grooves are sleeved on two sides of the glass. The bottom end of the glass is arranged in a glass clamping groove, the glass clamping groove is fixed to the railing stand column embedded part, a stainless steel handrail A and a stainless steel handrail B are arranged on the two sides of the top end of the glass respectively, and a handrail support is installed at an upper opening of the top end of the glass. The stainless steel handrail A and the stainless steel handrail B are installed on the handrail support through countersunk screws respectively, the stone handrail is fixed to the handrail support, and the handrail stand column stainless steel exterior facing is glued to the surface of the handrail stand column support. Compared with the prior art, the utility model is convenient to maintain and disassemble, and avoids the influence on the stability of the atrium glass railing system.
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Description

[Technical field]

[0001] The utility model relates to the technical field of building decoration, in particular to an atrium glass railing installation structure which is convenient to disassemble. [Background Technology]

[0002] Currently, glass railings in atria of high-end commercial buildings are commonly constructed using a combination of natural stone, metal, and glass. These complex multi-material glass railings are difficult to disassemble, and conventional methods often make both the handrails and glass difficult to remove. Even some easily disassembled structures can affect the stability of the glass railing system. Therefore, providing an easily disassembled atrium glass railing installation structure to address these issues would be extremely important. [Utility Model Content]

[0003] The purpose of the utility model is to solve the shortcomings of conventional glass railing structures and provide an atrium glass railing installation structure that is easy to disassemble, which is convenient for maintenance and disassembly while avoiding affecting the stability of the atrium glass railing system.

[0004] In order to achieve the above-mentioned purpose, an atrium glass railing installation structure that is easy to disassemble is designed, including a railing column bracket 7, glass 6, stainless steel handrail A301, stainless steel handrail B302, handrail support 2 and stone handrail 1. The railing column bracket 7 is fixed to the ground through a railing column embedded part 9. Vertical plastic glass protection grooves 14 are provided on both sides of the glass 6 and are connected to the railing column bracket 7 through the vertical plastic glass protection grooves 14. The bottom end of the glass 6 is placed in the glass card slot, and the glass card slot is fixed on the railing column embedded part 9. Stainless steel handrails A301 and stainless steel handrails B302 are respectively provided on both sides of the top of the glass 6. A handrail support 2 is installed at the upper mouth of the top of the glass 6. The stainless steel handrail A301 and stainless steel handrail B302 are respectively installed on the handrail support 2 by countersunk screws 4. The stone handrail 1 is fixed on the handrail support 2. The surface of the railing column bracket 7 is glued with the railing column stainless steel outer finishing 8.

[0005] Furthermore, the glass card slot is composed of a glass card slot A10 and a glass card slot B11. A placement slot for inserting the bottom end of the glass 6 is formed between the glass card slot A10 and the glass card slot B11. The glass card slot A10 and the glass card slot B11 are both made of aluminum profiles and are detachably connected as a whole by bolts. Therefore, by disassembling the glass card slot A, the support method of the glass can be changed, and the glass can be tilted inward, making it easier to take out.

[0006] Furthermore, a U-shaped accommodating cavity is provided in the glass slot B11, and the two inner side surfaces of the U-shaped accommodating cavity are respectively a vertical plane 15 and an inclined surface 16. The glass slot A10 is placed in the glass slot B11, and the inclined surface 17 at the bottom of one side of the glass slot A10 is cooperated and connected with the inclined surface 16 of the U-shaped accommodating cavity. A placement groove is formed between the vertical plane 18 on the other side of the glass slot A10 and the vertical plane 15 of the U-shaped accommodating cavity. The glass slot B11 is fixed on the railing column embedded part 9. The glass slot with this structural design further improves the overall stability of the atrium glass railing system.

[0007] Furthermore, the railing column embedded part 9 is composed of flat plate 1, flat plate 2 and a vertical plate. The vertical plate is in a vertical state. The flat plate 1 and flat plate 2 are both in a flat state and are respectively arranged on the left and right sides of the vertical plate. The glass card slot B11 is fixed on flat plate 2, further ensuring the stability of the glass card slot in supporting the glass.

[0008] Furthermore, rubber pads 12 are provided at the bottom and both sides of the glass slot, and a lower stainless steel edge 13 is provided above the glass slot.

[0009] Furthermore, the upper edge of the glass 6 and the stainless steel handrails A301 and B302 are sealed with silicone 5, and the stone handrail 1 is fixed to the handrail support 2 by stone adhesive.

[0010] Furthermore, the railing column bracket 7 is made of hot-dip galvanized Q355 steel plate, and the railing column stainless steel outer surface 8 is made of 304 stainless steel.

[0011] Compared with the prior art, the utility model has the following advantages:

[0012] (1) The handrail of the glass railing of the utility model is changed from the conventional one-piece type to a combined type consisting of a stone handrail, a handrail support, a stainless steel handrail, etc., which is convenient for maintenance and disassembly;

[0013] (2) When replacing the glass in the utility model, the handrail only needs to remove the stainless steel handrail A, and the glass can be tilted out without removing the stone handrail and the stainless steel handrail B. This makes disassembly convenient and avoids affecting the stability of the system.

[0014] (3) The glass slot of the utility model can be deepened to 75mm, thereby further ensuring the stability and anti-overturning performance of the glass;

[0015] (4) The glass slot of the utility model is composed of a glass slot A and a glass slot B, which are made by opening a mold from an aluminum profile. The two are connected by bolts. By disassembling the glass slot A, the support method of the glass can be changed, so that the glass is tilted inward, which is convenient for removal;

[0016] (5) The stainless steel outer surface of the railing post of the utility model is glued to the surface of the railing post bracket, which is easy to disassemble, hides the railing post bracket and screws, and plays a role in aesthetics;

[0017] In summary: The utility model provides an atrium glass railing installation structure that is easy to disassemble. By removing the handrail and the glass slot assembly step by step, the glass can be tilted for removal and replacement. While facilitating maintenance and disassembly, it avoids affecting the stability of the atrium glass railing system. It is worthy of promotion and application in high-end commercial atriums. [Brief Description of the Drawings]

[0018] Figure 1 It is a structural diagram of the utility model;

[0019] Figure 2 It is a partial enlarged view of the top of the utility model;

[0020] Figure 3 It is a partial enlarged view of the bottom of the utility model;

[0021] Figure 4 This is a structural diagram of the utility model railing column embedded parts;

[0022] Figure 5a This is a front structural diagram of the utility model railing column bracket;

[0023] Figure 5b This is a schematic diagram of the top view of the structure of the railing column bracket of the utility model;

[0024] Figure 5c yes Figure 5a Schematic diagram of the cross-section structure of middle Ⅰ-Ⅰ;

[0025] Figure 6 This is a schematic diagram of the cross-sectional structure of the utility model railing column;

[0026] Figure 7 This is a structural diagram of the glass card slot A of the present invention;

[0027] Figure 8 This is a structural diagram of the glass card slot B of the present invention;

[0028] Figure 9 This is a schematic diagram of the glass disassembly steps of the utility model;

[0029] In the figure: 1. Stone handrail 2. Handrail support 301, Stainless steel handrail A 302, Stainless steel handrail B 4. Countersunk screw 5. Silicone 6. Glass 7. Railing post bracket 8. Stainless steel exterior finish of railing post 9. Railing post embedded part 10. Glass slot A 11, Glass slot B 12, rubber pad 13, bottom stainless steel trim 14, vertical plastic glass protection groove 15, vertical plane 1 16, inclined plane 1 17, inclined plane 2 18, vertical plane 2. [Specific implementation method]

[0030] As shown in the accompanying drawings, the present invention relates to the field of high-end commercial atrium glass railing systems, specifically, an atrium glass railing installation structure that is easy to disassemble, including a railing column bracket 7, glass 6, stainless steel handrail A301, stainless steel handrail B302, a handrail support 2 and a stone handrail 1. The railing column bracket 7 is fixed to the ground through a railing column embedded part 9. Vertical plastic glass protection grooves 14 are provided on both sides of the glass 6 and are connected to the railing column bracket 7 through the vertical plastic glass protection grooves 14. The bottom end of the glass 6 is placed in the glass card slot, and the glass card slot is fixed on the railing column embedded part 9. Stainless steel handrails A301 and stainless steel handrails B302 are respectively provided on both sides of the top of the glass 6. A handrail support 2 is installed at the upper mouth of the top of the glass 6. The stainless steel handrails A301 and stainless steel handrails B302 are respectively installed on the handrail support 2 by countersunk screws 4. The stone handrail 1 is fixed on the handrail support 2. The surface of the railing column bracket 7 is glued with the railing column stainless steel outer finishing surface 8.

[0031] The glass card slot is composed of a glass card slot A10 and a glass card slot B11. A placement slot is formed between the glass card slot A10 and the glass card slot B11 for inserting the bottom end of the glass 6. The glass card slot A10 and the glass card slot B11 are both made of aluminum profiles and are detachably connected as a whole by bolts. Therefore, by disassembling the glass card slot A, the support mode of the glass can be changed, and the glass can be tilted inward, thereby facilitating removal. A U-shaped accommodating cavity is provided in the glass card slot B11. The U-shaped accommodating cavity The two inner sides are respectively a vertical plane 15 and an inclined plane 16. The glass slot A10 is placed in the glass slot B11. The inclined plane 17 at the bottom of one side of the glass slot A10 is matched with the inclined plane 16 of the U-shaped accommodating cavity. The vertical plane 18 on the other side of the glass slot A10 and the vertical plane 15 of the U-shaped accommodating cavity form a placement groove. The glass slot B11 is fixed on the railing column embedded part 9. The glass slot with this structural design further improves the overall stability of the atrium glass railing system.

[0032] The bottom and both sides of the glass slot are provided with rubber pads 12, and the top of the glass slot is provided with a lower stainless steel edge 13; the railing column embedded part 9 is composed of a flat plate, a flat plate and a vertical plate, as shown in the attached Figure 4As shown, the vertical plate is vertical, while flat plates 1 and 2 are both flat and located on either side of the vertical plate. Glass retaining slots B11 are fixed to flat plate 2, further ensuring the stability of the glass support. The railing post brackets 7 are made of hot-dip galvanized Q355 steel, and the stainless steel exterior finish 8 of the railing post is made of 304 stainless steel. Silicone gel 5 is used to seal the top of the glass 6 against the stainless steel handrails A301 and B302. The stone handrail 1 is fixed to the handrail support 2 using stone adhesive.

[0033] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0034] As attached Figure 1 To the attached Figure 3 As shown in FIG. 1 , the conveniently disassembled atrium glass railing installation structure of the present invention comprises a stone handrail 1, a handrail support 2, a stainless steel handrail A 301, a stainless steel handrail B 302, countersunk screws 4, silicone 5, glass 6, a railing post bracket 7, a stainless steel exterior finish for the railing post 8, a railing post embedded part 9, a glass slot A 10, a glass slot B 11, a rubber pad 12, a lower stainless steel trim 13, and a vertical plastic glass protection groove 14. The railing post bracket is fixed to the concrete floor via the railing post embedded part, as shown in FIG. Figure 5a , Attachment Figure 5b and attached Figure 5c The figure shows the processing diagram of the railing column bracket; the glass slot is composed of glass slot A and glass slot B. Figure 7 and attached Figure 8 As shown, it is made of aluminum profiles and fixed with bolts; when installing the glass, vertical plastic glass protection grooves are placed on both sides of the glass, as shown in the attached Figure 6 As shown, put it into the glass slot, put rubber pads at the bottom and both sides of the slot, and install the stainless steel edge at the bottom; install the handrail support and stainless steel handrail at the upper edge of the glass, tighten them with countersunk screws, and close the edge with silicone, and fix the stone handrail on the handrail support with stone adhesive; finally, glue the stainless steel exterior finish of the railing column to the surface of the railing column bracket.

[0035] The handrail of the glass railing has been changed from a conventional one-piece type to a combination type consisting of a stone handrail, a handrail support, a stainless steel handrail A, a stainless steel handrail B, countersunk screws, and silicone, which is convenient for maintenance and disassembly. When replacing the glass, the handrail part only needs to remove the stainless steel handrail A, and the glass can be tilted out without removing the stone handrail and the stainless steel handrail B.

[0036] The glass slot can be deepened to 75mm to ensure the firmness of the glass installation; the glass slot is composed of glass slot A and glass slot B, and is made of aluminum profile mold. Glass slot B is permanently fixed, and glass slot A is detachable. The two are connected by bolts. The purpose is that if the glass needs to be replaced during use, the bolts between the two can be unscrewed and glass slot A can be removed, so that the glass tilts inward for easy removal.

[0037] The railing column bracket is made of 12mm thick hot-dip galvanized Q355 steel plate and is fixed to the concrete floor through the column embedded parts; the stainless steel exterior surface of the railing column is 2mm thick 304 stainless steel, which is glued to the surface of the railing column bracket, which not only hides the railing column bracket and screws, but also plays an aesthetic role.

[0038] This utility model is an atrium glass railing installation structure that is easy to disassemble. The installation scheme is as follows:

[0039] 1. Positioning and laying out: Since all components are assembled on site, the elevation is mainly used to control the elevation of embedded parts. To determine the elevation of embedded parts, each embedded part must be determined by a level and checked multiple times for accuracy.

[0040] 2. Installation of embedded parts:

[0041] (1) The embedded parts of the railing columns are processed in the factory, and the outer surface is treated with galvanizing for rust prevention. After processing, they are transported to the corresponding site for installation.

[0042] (2) According to the final measured elevation point, measure the embedded parts. After determining the horizontal position, perform rough leveling, measure its elevation, calculate the difference from the predetermined elevation, and add shims in a targeted manner until it meets the design requirements.

[0043] 3. Column bracket installation: According to the size distribution in the drawing, determine the horizontal position of the railing column bracket, and control the spacing difference between them within the error range of ±1.5mm. Assemble the railing column bracket on the embedded parts; the installation allowable deviation of the connecting parts of the skeleton and structure in three directions is ±1m.

[0044] 4. Glass slot installation: Fix glass slot B to the embedded part with expansion bolts, and then connect and fix glass slot A and glass slot B.

[0045] 5. Glass ordering: Tempered glass must be ordered according to the dimensions of the on-site trough and railings. Since tempered glass cannot be processed a second time, the ordered dimensions must be accurate and reasonable dimensions must be reserved.

[0046] 6. Glass installation: Place a rubber pad in the glass groove, and put customized vertical plastic glass protection grooves on both sides of the glass. After placing it in the groove, adjust the flatness and verticality, and at the same time embed the rubber pads on both sides of the groove to make the glass and the groove join smoothly and tightly, and then apply glue; when injecting glue, start from the end of the gap and inject evenly. After it is filled, use a plastic sheet to scrape it flat on both sides of the glass; before applying glue, stick a protective film on both sides of the gap to protect the glass.

[0047] 7. Install the trim strip: Use 2mm thick 304 stainless steel trim strips at the bottom of the glass.

[0048] 8. Handrail installation: Install the handrail support and stainless steel handrail at the top of the glass, tighten them with countersunk screws, and seal them with silicone. Fix the stone handrail on the handrail support with stone adhesive.

[0049] 9. Column finishing installation: The stainless steel exterior finish of the railing column is processed and bent in the factory and then glued to the surface of the railing column bracket, which not only hides the railing column bracket and screws, but also serves to create an aesthetic effect.

[0050] If you need to replace the glass during the use of this utility model, you can follow the following removal plan, as shown in the attached Figure 9 As shown:

[0051] Step 1: First remove the stainless steel exterior finish of the railing post;

[0052] Step 2: Remove the silicone and remove the stainless steel trim at the bottom;

[0053] Step 3: Unscrew the fixing bolts between the glass slots and remove the glass slot A;

[0054] Step 4: Remove the silicone from the top of the glass;

[0055] Step 5: Unscrew the countersunk screws on the inside;

[0056] Step 6: Remove the stainless steel handrail A;

[0057] Step 7: Tilt the glass toward the inside of the atrium and remove it.

[0058] The contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field. The standard parts used can be purchased from the market, and special-shaped parts can be customized according to the description in the specification and drawings. The specific connection methods of each part adopt mature conventional means such as bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connections adopt conventional connection methods in the existing technology, which will not be described in detail here.

[0059] The present invention is not limited to the above-mentioned embodiments. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principles of the present invention should be considered as equivalent replacement methods and are included in the scope of protection of the present invention.

Claims

1. A conveniently disassembled atrium glass railing installation structure, comprising a railing column bracket (7), glass (6), a stainless steel handrail A (301), a stainless steel handrail B (302), a handrail support (2) and a stone handrail (1), characterized in that: The railing column bracket (7) is fixed to the ground through the railing column embedded part (9), and vertical plastic glass protection grooves (14) are provided on both sides of the glass (6) and connected to the railing column bracket (7) through the vertical plastic glass protection grooves (14). The bottom end of the glass (6) is placed in the glass card slot, and the glass card slot is fixed on the railing column embedded part (9). Stainless steel handrails A (301) and stainless steel handrails B (302) are respectively provided on both sides of the top of the glass (6). A handrail support (2) is installed at the upper mouth of the top of the glass (6). The stainless steel handrails A (301) and stainless steel handrails B (302) are respectively installed on the handrail support (2) through countersunk screws (4). A stone handrail (1) is fixed on the handrail support (2). The surface of the railing column bracket (7) is glued with a railing column stainless steel outer surface (8).

2. The easily disassembled atrium glass railing installation structure according to claim 1, characterized in that: The glass card slot is composed of a glass card slot A (10) and a glass card slot B (11). A placement slot for inserting the bottom end of the glass (6) is formed between the glass card slot A (10) and the glass card slot B (11). The glass card slot A (10) and the glass card slot B (11) are both made of aluminum profiles and are detachably connected to form a whole by bolts.

3. The easily disassembled atrium glass railing installation structure according to claim 2, characterized in that: A U-shaped accommodating cavity is provided in the glass card slot B (11), and the two inner side surfaces of the U-shaped accommodating cavity are respectively a vertical plane 1 (15) and an inclined plane 1 (16). The glass card slot A (10) is placed in the glass card slot B (11), and the inclined plane 2 (17) at the bottom of one side of the glass card slot A (10) is matched and connected with the inclined plane 1 (16) of the U-shaped accommodating cavity. A placement groove is formed between the vertical plane 2 (18) on the other side of the glass card slot A (10) and the vertical plane 1 (15) of the U-shaped accommodating cavity. The glass card slot B (11) is fixed on the railing column embedded component (9).

4. The easily disassembled atrium glass railing installation structure according to claim 3, characterized in that: The railing column embedded part (9) is composed of a flat plate 1, a flat plate 2 and a vertical plate. The vertical plate is in a vertical state. The flat plate 1 and the flat plate 2 are both in a flat state and are respectively arranged on the left and right sides of the vertical plate. The glass card slot B (11) is fixed on the flat plate 2.

5. The easily disassembled atrium glass railing installation structure according to any one of claims 1 to 4, characterized in that: The bottom and both sides of the glass slot are provided with rubber pads (12), and a lower stainless steel edge (13) is provided above the glass slot.

6. The easily disassembled atrium glass railing installation structure according to any one of claims 1 to 4, characterized in that: The upper edge of the glass (6) and the stainless steel handrail A (301) and the stainless steel handrail B (302) are sealed with silica gel (5), and the stone handrail (1) is fixed to the handrail support (2) by stone adhesive.

7. The easily disassembled atrium glass railing installation structure according to any one of claims 1 to 4, characterized in that: The railing column bracket (7) is made of hot-dip galvanized Q355 steel plate, and the railing column stainless steel outer surface (8) is made of 304 stainless steel.