Glass guardrail

By introducing adjustment and quick-fixing mechanisms into the glass railing, the problem of height difference of the support columns caused by the positioning deviation of the embedded parts is solved, realizing the flush installation of the support columns and convenient fixing of the railing glass.

CN223497462UActive Publication Date: 2025-10-31GUANGDONG KAIHONG CONSTR ENG CO LTD
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Patent Information

Application Number
CN202422876257.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-23
Publication Date
2025-10-31
Estimated Expiration
2034-11-23

AI Technical Summary

Technical Problem

When installing glass railings, the positioning and fixing method of the embedded parts may cause height deviations, affecting the installation accuracy and convenience of the support structure and glass.

Method used

The height of the support column is adjusted using an adjustment mechanism, and the support column is kept level using lifting and fixing components. The guardrail glass is then easily installed using a quick fixing mechanism.

Benefits of technology

It effectively reduces the height difference of the support columns caused by the fixing deviation of the embedded parts, simplifies the installation process, and improves the installation accuracy and replacement convenience of the glass railing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass guardrail, and relates to the field of guardrails, the glass guardrail comprises a plurality of supporting stand columns, embedded parts are arranged on the supporting stand columns, adjusting mechanisms are arranged between the embedded parts and the supporting stand columns, two symmetrical lower fixing parts are fixed on the supporting stand columns, two symmetrical upper fixing parts are arranged on the supporting stand columns, and the upper fixing parts are fixed on the supporting stand columns. A quick fixing mechanism is arranged between the upper fixing piece and the supporting stand columns, handrails are fixed between the adjacent supporting stand columns, guardrail glass is arranged between the adjacent supporting stand columns, and the guardrail glass corresponds to the upper fixing piece and the lower fixing piece. The height of the supporting stand columns is adjusted through the adjusting mechanisms, the multiple supporting stand columns are flush, and therefore the possibility that the follow-up installation steps are affected by the height difference of the supporting stand columns due to fixing deviation of the embedded parts can be reduced.
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Description

Technical Field

[0001] This application relates to the field of guardrails, and more particularly to a glass guardrail. Background Technology

[0002] Glass railings are a common element in modern architectural design. They are favored for their simplicity, style and beauty. Glass railings look clean and refreshing, have a high-end decorative effect, good self-cleaning properties, good safety and aesthetic experience, and are commonly used in various modern buildings.

[0003] The structural design of glass railings is key to ensuring their safety and functionality. The structure of glass railings can be roughly divided into the following types: frame-supported glass railings, point-supported glass railings, and glass structure railings. When installing and fixing these railings, a base and supporting columns are required for support.

[0004] When installing glass railings, the embedded parts are usually fixed in the building, and then the support structure for supporting the glass is fixed to the embedded parts. Finally, the glass is fixed to the support structure. When fixing the embedded parts in the building, the positioning and fixing method of the embedded parts may affect the height of the embedded parts. After the embedded parts are completely fixed, there may be height differences between the embedded parts, which may lead to deviations or inconveniences in the subsequent installation of the support structure and glass. Utility Model Content

[0005] The purpose of this application is to address the problem mentioned in the background art that when fixing embedded parts in a building, the positioning and fixing method of the embedded parts may affect the height of the embedded parts, and after the embedded parts are completely fixed, there may be height differences between the embedded parts, which may lead to deviations or inconveniences in the subsequent support structure and glass installation. This application provides a glass railing.

[0006] To achieve the above objectives, this application specifically adopts the following technical solution:

[0007] A glass railing includes several supporting posts, each of which has an embedded part. An adjustment mechanism is provided between the embedded part and the supporting post. Two symmetrical lower fixing parts are fixed on each supporting post, and two symmetrical upper fixing parts are provided on each supporting post. A quick-fixing mechanism is provided between the upper fixing parts and the supporting post. Handrails are fixed between adjacent supporting posts, and glass railings are provided between adjacent supporting posts. The glass railings correspond to the upper and lower fixing parts.

[0008] By adopting the above technical solution, the height of the support columns can be adjusted using an adjustment mechanism to make several support columns level, thereby reducing the possibility of height differences in the support columns caused by deviations in the fixing of embedded parts, which could affect subsequent installation steps.

[0009] Furthermore, the adjustment mechanism includes a support seat mounted on the embedded part, and four symmetrically arranged limiting slide rods are fixed on the support seat. The limiting slide rods pass through the embedded part and are slidably connected to the embedded part. A lifting assembly is provided between the support seat and the embedded part, and a fixing assembly is provided between the limiting slide rods and the embedded part.

[0010] By adopting the above technical solution, the lifting component drives the support base to rise and fall, and then the fixing component fixes the limit slide rod that has completed the lifting, so that the height of the support base can be easily adjusted, so that several support bases are horizontal, and the support column installed on the support base is horizontal.

[0011] Furthermore, the lifting assembly includes a rotating ring rotatably connected to the embedded part, and a lifting threaded rod is threadedly connected to the rotating ring, with one end of the lifting threaded rod fixedly connected to the support base.

[0012] By adopting the above technical solution, the rotating ring rotates, which drives the lifting threaded rod to rise and fall. The lifting threaded rod then drives the support seat to rise and fall, thereby making it easy to adjust the height of the support seat.

[0013] Furthermore, a support block is fixed on the embedded part, a worm is rotatably connected to the support block, and circumferentially distributed worm gear teeth are provided on the rotating ring, with the worm meshing with the worm gear teeth on the rotating ring.

[0014] By adopting the above technical solution, the worm gear supported by the rotating support block is rotated, which drives the rotating ring to rotate, thus making it easy for the rotating ring to rotate on the embedded part.

[0015] Furthermore, the fixing component includes four fixing blocks that are symmetrically fixed in pairs on the embedded parts. The limiting slide rod passes through the fixing block, and a fixing threaded rod is threadedly connected to the fixing block. The fixing threaded rod passes through the fixing block, and one end of the fixing rod abuts against the limiting slide rod.

[0016] By adopting the above technical solution, the limiting slide bar moves up and down with the support base, and then the fixing threaded rod is turned so that the fixing threaded rod abuts against the limiting slide bar, thereby fixing the limiting slide bar and the fixing block together, and further supporting the support base.

[0017] Furthermore, a snap-fit ​​block is fixed on the support base, and a snap-fit ​​groove corresponding to the snap-fit ​​block is opened on the support column. A fixing bolt is threadedly connected to the support column, and the fixing bolt passes through the support column and is threadedly connected to the snap-fit ​​block.

[0018] By adopting the above technical solution, the snap-fit ​​groove on the support column is inserted into the snap-fit ​​block on the support base, and then fixed by the fixing thread, so that the support column can be aligned with the support base, making the fixing between the support column and the support base more convenient.

[0019] Furthermore, the quick-fixing mechanism includes a sliding block fixed on the upper fixing member, and a sliding groove corresponding to the sliding block is provided on the supporting column. The sliding block is located in the sliding groove and is slidably connected to the supporting column. An adjusting threaded rod is provided in the sliding groove. The adjusting threaded rod is rotatably connected to the supporting column. The adjusting threaded rod passes through the sliding block and is threadedly connected to the sliding block.

[0020] By adopting the above technical solution, the guardrail glass is placed on the lower fixing parts on the two supporting columns, and then the sliding block drives the upper fixing part to snap onto the guardrail glass from top to bottom, so that the guardrail glass can be fixed in a convenient and quick manner, and it is also convenient to replace the broken guardrail glass.

[0021] Furthermore, rubber gaskets are fixed in the grooves of both the upper and lower fixing members.

[0022] By adopting the above technical solution, the grooves on the upper and lower fixing parts support the guardrail glass, while the rubber pads in the upper and lower fixing parts protect the guardrail glass, thereby reducing the possibility of damage caused by the upper and lower fixing parts squeezing the guardrail glass.

[0023] In summary, this application includes at least one of the following beneficial effects;

[0024] 1. This application, after fixing the embedded parts in the building, allows construction workers to use a level laser to detect the height of the support seats on the embedded parts. When several support seats have different heights, the fixing threaded rod on the fixing block is loosened, allowing the limiting slide rod to disengage from the fixing threaded rod. Then, the worm gear supported by the support block is rotated, causing the worm gear to drive the rotating ring to rotate. The lifting threaded rod in the rotating ring is adjusted, causing the support seats to be adjusted so that several support seats are on the same horizontal line. Then, the fixing threaded rod on the fixing block is tightened, causing the fixing threaded rod to engage with the limiting slide rod, further fixing the support seats. This achieves the purpose of easily adjusting the height of the support seats, making several support seats horizontal, facilitating the horizontal installation of the support columns on the support seats, and facilitating the subsequent installation and fixing of the guardrail glass.

[0025] 2. In this application, after the support columns are fixed, when installing the guardrail glass, the guardrail glass is first placed on the lower fixing parts on the two support columns. The grooves on the lower fixing parts support the guardrail glass, and the rubber pads in the lower fixing parts protect the guardrail glass. Then, the adjusting threaded rod is rotated, which drives the sliding block, which in turn drives the sliding groove to move. The sliding block drives the upper fixing part, which then snaps onto the guardrail glass from top to bottom, thus completing the installation and fixing of the guardrail glass. This achieves the purpose of conveniently and quickly fixing the guardrail glass and facilitating the replacement of damaged guardrail glass. Attached Figure Description

[0026] Figure 1 This is a first three-dimensional structural schematic diagram of the glass railing in this application;

[0027] Figure 2 This is a three-dimensional structural diagram of the disassembled glass railing in this application;

[0028] Figure 3 This application Figure 2 Enlarged view of point A in the middle;

[0029] Figure 4 This application Figure 2 Enlarged diagram of point B in the middle.

[0030] Explanation of reference numerals in the attached figures:

[0031] 1. Support column; 2. Embedded part; 3. Guardrail glass; 4. Lower fixing part; 5. Adjustment mechanism; 51. Support base; 52. Limiting slide rod; 53. Lifting assembly; 531. Rotating ring; 532. Lifting threaded rod; 533. Support block; 534. Worm gear; 54. Fixing assembly; 541. Fixing block; 542. Fixing threaded rod; 55. Snap-fit ​​block; 56. Snap-fit ​​groove; 57. Fixing bolt; 6. Quick fixing mechanism; 61. Adjusting threaded rod; 62. Sliding groove; 63. Sliding block; 64. Rubber pad; 7. Upper fixing part; 8. Handrail. Detailed Implementation

[0032] The following is in conjunction with the appendix Figure 1 —4 provides further detailed description of this application.

[0033] This application discloses a glass railing.

[0034] Reference Figure 1 , Figure 2 and Figure 3A glass railing includes several support posts 1, each support post 1 having a pre-embedded part 2, an adjustment mechanism 5 between the pre-embedded part 2 and the support post 1, two symmetrical lower fixing parts 4 fixed on the support post 1, two symmetrical upper fixing parts 7 fixed on the support post 1, a quick fixing mechanism 6 between the upper fixing parts 7 and the support post 1, handrails 8 fixed between adjacent support posts 1, and railing glass 3 between adjacent support posts 1, with the railing glass 3 corresponding to the upper fixing parts 7 and the lower fixing parts 4.

[0035] When installing the glass railing, firstly, according to the required installation location, embed the pre-embedded part 2 into the edge of the building. Then, use the adjustment mechanism 5 to install the support column 1 into the pre-embedded part 2. Use the adjustment mechanism 5 to adjust the height of the support column 1 so that several support columns 1 are level. Then, place the railing glass 3 onto the lower fixing part 4 on the adjacent support column 1. The lower fixing part 4 restricts the corners of the railing glass 3. Then, use the quick fixing mechanism 6 to drive the upper fixing part 7, so that the upper fixing part 7 is locked onto the railing glass 3 from above. Finally, between adjacent support columns 1, fix the two ends of the handrail 8 to the corresponding support column 1 to complete the installation of the glass railing. By fixing the pre-embedded part 2 into the building and fixing the support column 1 onto the pre-embedded part 2, and then using the adjustment mechanism 5 to adjust the height of the support column 1, the possibility of height difference of the support column 1 due to deviation in the fixing of the pre-embedded part 2 can be reduced, which may affect the subsequent installation steps.

[0036] Reference Figure 1 , Figure 2 and Figure 3 The adjustment mechanism 5 includes a support base 51 set on the embedded part 2. Four symmetrical limit slide rods 52 are fixed on the support base 51. The limit slide rods 52 pass through the embedded part 2 and are slidably connected to the embedded part 2. A lifting component 53 is set between the support base 51 and the embedded part 2. A fixing component 54 is set between the limit slide rods 52 and the embedded part 2.

[0037] In addition, the lifting assembly 53 includes a rotating ring 531 rotatably connected to the embedded part 2, and a lifting threaded rod 532 is threadedly connected to the rotating ring 531. One end of the lifting threaded rod 532 is fixedly connected to the support base 51.

[0038] Furthermore, a support block 533 is fixed on the embedded part 2, and a worm 534 is rotatably connected to the support block 533. A circumferentially distributed worm gear tooth is provided on the rotating ring 531, and the worm 534 meshes with the worm gear tooth on the rotating ring 531.

[0039] Furthermore, the fixing component 54 includes four fixing blocks 541 that are symmetrically fixed in pairs on the embedded part 2. The limiting slide rod 52 passes through the fixing block 541. The fixing block 541 is threaded with a fixing thread rod 542, which passes through the fixing block 541 and abuts against the limiting slide rod 52 at one end.

[0040] After the embedded part 2 is fixed in the building, the construction workers use a horizontal laser instrument to check the height of the support seat 51 on the embedded part 2. When there is a height difference between several support seats 51, the fixing threaded rod 542 on the fixing block 541 is loosened directly, so that the limit slide rod 52 is disengaged from the fixing threaded rod 542. Then, the worm gear 534 supported by the support block 533 is rotated, so that the worm gear 534 drives the rotating ring 531 to rotate. The lifting threaded rod 532 in the rotating ring 531 is adjusted to rise and fall. The lifting threaded rod 532 drives the support seat 51 to move forward. Adjust the height of the support seats 51 to be on the same horizontal line. Then, turn the fixing threaded rod 542 on the fixing block 541 so that the fixing threaded rod 542 abuts against the limiting slide rod 52 to further fix the support seats 51. By letting the worm gear 534 drive the rotating ring 531, the lifting threaded rod 532 drives the support seats 51 to rise and fall under the restriction of the limiting slide rod 52. This makes it easy to adjust the height of the support seats 51 so that the support seats 51 are horizontal and the support column 1 installed on the support seats 51 is horizontal.

[0041] Reference Figure 2 and Figure 3 A snap-fit ​​block 55 is fixed on the support base 51, and a snap-fit ​​groove 56 corresponding to the snap-fit ​​block 55 is opened on the support column 1. A fixing bolt 57 is threadedly connected to the support column 1, passing through the support column 1 and threadedly connected to the snap-fit ​​block 55. When fixing the support column 1 to the support base 51, the snap-fit ​​groove 56 on the support column 1 is aligned with the snap-fit ​​block 55 on the support base 51, and then the snap-fit ​​groove 56 on the support column 1 is fitted onto the snap-fit ​​block 55 on the support base 51. Then, the fixing bolt 57 passes through the support column 1 and is threadedly connected to the snap-fit ​​block 55, thus completing the fixing between the support column 1 and the support base 51. By inserting the snap-fit ​​groove 56 on the support column 1 into the snap-fit ​​block 55 on the support base 51 and then fixing it with the fixing thread, the support column 1 can be aligned with the support base 51, making the fixing between the support column 1 and the support base 51 more convenient.

[0042] Reference Figure 2 and Figure 4The quick-fixing mechanism 6 includes a sliding block 63 fixed on the upper fixing member 7. The support column 1 has a sliding groove 62 corresponding to the sliding block 63. The sliding block 63 is located in the sliding groove 62 and is slidably connected to the support column 1. An adjusting threaded rod 61 is provided in the sliding groove 62. The adjusting threaded rod 61 is rotatably connected to the support column 1. The adjusting threaded rod 61 passes through the sliding block 63 and is threadedly connected to the sliding block 63.

[0043] In addition, rubber gaskets 64 are fixed in the grooves of both the upper fixing member 7 and the lower fixing member 4.

[0044] After the support posts 1 are fixed, when installing the guardrail glass 3, first place the guardrail glass 3 on the lower fixing parts 4 on the two support posts 1. The grooves on the lower fixing parts 4 support the guardrail glass 3, and the rubber pads 64 in the lower fixing parts 4 protect the guardrail glass 3. Then, rotate the adjusting threaded rod 61, so that the adjusting threaded rod 61 drives the sliding block 63, so that the sliding block 63 drives the sliding groove 62 to move. The sliding block 63 drives the upper fixing part 7, so that the upper fixing part 7 is fastened on the guardrail glass 3 from top to bottom, thus completing the installation and fixing of the guardrail glass 3. By placing the guardrail glass 3 on the lower fixing parts 4 on the two support posts 1, and then letting the sliding block 63 drive the upper fixing part 7 to fasten on the guardrail glass 3 from top to bottom, the guardrail glass 3 can be fixed conveniently and quickly, and it is also convenient to replace the damaged guardrail glass 3.

[0045] Working principle: When installing the glass railing, firstly, according to the required installation location, the embedded part 2 is embedded into the edge of the building. Construction workers use a horizontal laser gauge to check the height of the support seat 51 on the embedded part 2. Then, the fixing threaded rod 542 on the fixing block 541 is loosened, allowing the limiting slide rod 52 to disengage from the fixing threaded rod 542. Next, the worm gear 534 supported by the support block 533 is rotated, causing the worm gear 534 to drive the rotating ring 531 to rotate. The lifting threaded rod 532 in the rotating ring 531 is adjusted, causing the supporting seats 51 to be adjusted, ensuring that several supporting seats 51 are on the same horizontal line. Then, the fixing threaded rod 542 on the fixing block 541 is tightened, causing the fixing threaded rod 542 to engage with the limiting slide rod 52, further fixing the supporting seats 51, and aligning the snap-fit ​​groove 56 on the support column 1 with the... The snap-fit ​​block 55 on the support base 51 is then fitted onto the snap-fit ​​slot 56 on the support column 1. The fixing bolt 57 is then passed through the support column 1 and threadedly connected to the snap-fit ​​block 55, completing the fixation between the support column 1 and the support base 51. The guardrail glass 3 is then placed on the lower fixing parts 4 on the two support columns 1. The grooves on the lower fixing parts 4 support the guardrail glass 3, while the rubber gaskets 64 in the lower fixing parts 4 protect the guardrail glass 3. The adjusting threaded rod 61 is then rotated, causing the adjusting threaded rod 61 to drive the sliding block 63, which in turn moves the sliding groove 62. The sliding block 63 then drives the upper fixing part 7, which snaps onto the guardrail glass 3 from top to bottom, completing the installation and fixation of the guardrail glass 3. Finally, the handrail 8 is fixed to the adjacent support column 1, completing the installation of the glass guardrail.

Claims

1. A glass railing, comprising a plurality of supporting posts (1), characterized in that: Each of the supporting columns (1) is provided with a pre-embedded part (2), and an adjustment mechanism (5) is provided between the pre-embedded part (2) and the supporting column (1). Two symmetrical lower fixing parts (4) are fixed on the supporting column (1), and two symmetrical upper fixing parts (7) are provided on the supporting column (1). A quick fixing mechanism (6) is provided between the upper fixing parts (7) and the supporting column (1). A handrail (8) is fixed between adjacent supporting columns (1), and a guardrail glass (3) is provided between adjacent supporting columns (1). The guardrail glass (3) corresponds to the upper fixing parts (7) and the lower fixing parts (4).

2. A glass railing according to claim 1, characterized in that: The adjustment mechanism (5) includes a support base (51) set on the embedded part (2), and four symmetrical limit slide rods (52) are fixed on the support base (51). The limit slide rods (52) pass through the embedded part (2) and are slidably connected to the embedded part (2). A lifting component (53) is provided between the support base (51) and the embedded part (2), and a fixing component (54) is provided between the limit slide rods (52) and the embedded part (2).

3. A glass railing according to claim 2, characterized in that: The lifting assembly (53) includes a rotating ring (531) rotatably connected to the embedded part (2), and a lifting threaded rod (532) is threadedly connected to the rotating ring (531). One end of the lifting threaded rod (532) is fixedly connected to the support base (51).

4. A glass railing according to claim 3, characterized in that: A support block (533) is fixed on the embedded part (2), and a worm (534) is rotatably connected to the support block (533). The rotating ring (531) has circumferentially distributed worm gear teeth, and the worm (534) meshes with the worm gear teeth on the rotating ring (531).

5. A glass railing according to claim 2, characterized in that: The fixing component (54) includes four fixing blocks (541) that are symmetrically fixed in pairs on the embedded part (2). The limiting slide rod (52) passes through the fixing block (541). A fixing threaded rod (542) is threadedly connected to the fixing block (541). The fixing threaded rod (542) passes through the fixing block (541) and one end abuts against the limiting slide rod (52).

6. A glass railing according to claim 2, characterized in that: A snap-fit ​​block (55) is fixed on the support base (51), and a snap-fit ​​groove (56) corresponding to the snap-fit ​​block (55) is opened on the support column (1). A fixing bolt (57) is threaded on the support column (1), and the fixing bolt (57) passes through the support column (1) and is threadedly connected to the snap-fit ​​block (55).

7. A glass railing according to claim 1, characterized in that: The quick-fixing mechanism (6) includes a sliding block (63) fixed on the upper fixing member (7). The supporting column (1) has a sliding groove (62) corresponding to the sliding block (63). The sliding block (63) is located in the sliding groove (62) and is slidably connected to the supporting column (1). An adjusting threaded rod (61) is provided in the sliding groove (62). The adjusting threaded rod (61) is rotatably connected to the supporting column (1). The adjusting threaded rod (61) passes through the sliding block (63) and is threadedly connected to the sliding block (63).

8. A glass railing according to claim 7, characterized in that: Rubber pads (64) are fixed in the grooves of the upper fixing member (7) and the lower fixing member (4).