Glass outer wall mounting structure

By combining a support frame, positioning blocks, and adjustment components, the problems of unsafe installation and installation deviations in glass exterior walls are solved, achieving rapid installation and long-term stability, thus improving safety and installation efficiency.

CN223952023UActive Publication Date: 2026-02-27高唐县恒诚建筑工程有限公司
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Patent Information

Application Number
CN202520593930.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-27
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing glass exterior wall installation structures are not safe to fix during high-altitude operations, and the adhesives are prone to aging and failure, resulting in poor safety, difficulty in quick installation, and difficulty in correcting installation deviations.

Method used

It adopts a combination structure of support frame, positioning block, limit block and adjustment component. The support frame forms the mounting hole, the glass frame is embedded in the hole, the positioning block and limit block cooperate to achieve bidirectional constraint, the adjustment component is used for precise adjustment, and the anti-detachment component is combined to improve the fixation stability and safety.

Benefits of technology

It enables rapid installation, precise positioning, and long-term stability of glass exterior walls, reduces the risk of detachment, improves safety and installation efficiency, and enhances the structure's resistance to wind loads and adaptability to thermal expansion and contraction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of building construction, in particular to a glass outer wall mounting structure which comprises a supporting frame, a plurality of mounting holes, a plurality of connecting pieces and a plurality of glass outer walls. The glass frame is positioned in the mounting hole and is used for fixing glass; the two positioning blocks are arranged on the two parallel side walls of the glass frame respectively; the number of the limiting blocks is two, the limiting blocks are arranged in the mounting holes in the supporting frame, and the limiting blocks abut against the positioning blocks and are used for limiting the positioning blocks to be away from the supporting frame; the adjusting assembly is arranged on the supporting frame, abuts against the glass frame and is used for adjusting the position of the glass frame in the mounting hole. The glass outer wall has the effect of improving the safety of the glass outer wall.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building construction, in particular to a glass outer wall mounting structure. BACKGROUND

[0002] The outer wall generally needs to bear certain load, block wind and rain, keep warm and heat, prevent noise, and ensure fire safety. At present, the building outer wall usually adopts sun-shielding glass to block sunlight, prevent summer sunlight from shining into the house and causing high temperature. The existing traditional glass outer wall mounting usually adopts direct fixing or adhesive method. When high-altitude operation is performed, long-time fixing or bolt pre-fixing is required, which is more troublesome and unsafe. Moreover, the adhesive fixing method is affected by wind load and temperature difference stress for a long time, the adhesive easily ages and fails, needs to be replaced, and the safety is poor. SUMMARY

[0003] In order to improve the safety of the glass outer wall, the present application provides a glass outer wall mounting structure.

[0004] The glass outer wall mounting structure provided by the present application adopts the following technical scheme:

[0005] A glass outer wall mounting structure comprises:

[0006] A support frame is assembled by a plurality of transverse beams and longitudinal beams through connecting pieces, and a plurality of mounting holes are formed.

[0007] A glass frame is located in the mounting hole and is used for fixing the glass.

[0008] Two positioning blocks are arranged on two mutually parallel side walls of the glass frame.

[0009] Two limiting blocks are arranged in the mounting hole on the support frame, and the limiting blocks abut against the positioning blocks and are used for limiting the positioning blocks from moving away from the support frame.

[0010] An adjusting assembly is arranged on the support frame, abuts against the glass frame, and is used for adjusting the position of the glass frame in the mounting hole.

[0011] By adopting the above technical scheme, when the outer wall glass is mounted, the glass frame is first taken out, the single-side positioning block is moved close to the single-side limiting block, so that the positioning block moves to the inner side of the limiting block, and the positioning block on the side is moved close to the edge of the mounting hole, then the other positioning block is pushed to move close to the other limiting block, when the positioning block moves beyond the limiting block, the glass frame is moved by the adjusting assembly, so that the two positioning blocks abut against the two limiting blocks.

[0012] The support frame is assembled into a grid structure by transverse beams and longitudinal beams through connecting pieces to form a plurality of mounting holes; the glass frame is embedded into the mounting holes to fix the glass, and the parallel side walls on both sides are provided with positioning blocks; the limiting blocks are fixed in the mounting holes of the support frame and abut against the positioning blocks to prevent the glass frame from separating outward; the adjusting assembly adjusts the position of the glass frame by abutting against the glass frame to ensure alignment and sealing. The support frame can be flexibly assembled to adapt to different building size requirements; the double limiting: the positioning blocks and the limiting blocks cooperate to realize two-way constraint to prevent displacement or falling of the glass frame; the adjusting assembly allows accurate adjustment after installation to solve the problem that the traditional fixed structure is difficult to correct installation deviation; at the same time, the adjusting assembly cooperates with the positioning blocks and the limiting blocks to realize rapid installation and fix the glass frame to reduce the risk of falling and improve safety.

[0013] Optionally, the two positioning blocks are respectively located on the transverse beams of the support frame.

[0014] By adopting the above technical scheme, the positioning blocks are arranged at positions that enable the glass frame to quickly contact the adjusting assembly under its own gravity during installation, facilitating rapid installation and improving installation efficiency, and the glass frame can be quickly fixed to further improve safety.

[0015] Optionally, a positioning groove is formed on one side of the positioning block close to the limiting block, and a stop block is arranged on the limiting block, which can be clamped in the positioning groove.

[0016] By adopting the above technical scheme, the positioning groove is arranged to facilitate the positioning of the vertical positions of the positioning block and the limiting block, thereby improving the stability of the glass frame and safety.

[0017] Optionally, two positioning grooves are formed, two stop blocks are arranged, and an elastic buffer layer is arranged between the two stop blocks, which abuts against the positioning block.

[0018] By adopting the above technical scheme, the two positioning grooves and the stop blocks are arranged to further improve the stability of the glass frame, and the elastic buffer layer arranged at the same time can have a heat insulation effect, reduce collision, and the elastic layer can absorb stress caused by wind load or thermal expansion and contraction to reduce the risk of glass breakage; the double stop blocks enhance the reliability of limiting, and the structure can remain stable even if one side fails, further improving safety.

[0019] Optionally, the limiting block slides on the support frame, and a moving assembly is arranged on the support frame.

[0020] By adopting the above technical scheme, the moving assembly is arranged to facilitate the adjustment of the position of the limiting block, the installation of the positioning block, and the adjustment of the relative position of the glass frame and the support frame, thereby improving the fixation of the glass frame and further improving safety.

[0021] Optionally, the moving assembly comprises a guide rod and a connecting bolt, the guide rod is arranged on the limiting block and is in sliding connection with the support frame, and the connecting bolt is in threaded connection with the support frame and is in rotational connection with the limiting block.

[0022] By adopting the above technical scheme, the guide rod guides the limiting block to slide, the connecting bolt rotates to push the limiting block to move and lock the position, the bolt adjustment achieves millimeter-level precision, which is better than the traditional welding or drilling fixation, the bolt connection is convenient for disassembly and maintenance, avoids structural damage, and has high stability.

[0023] Optionally, the adjusting assembly comprises a rotating shaft and a rotating head, the rotating shaft is arranged on the limiting block, a clearance slot is formed in the rotating shaft, the limiting block is located in the clearance slot, and the limiting block is lifted up after the rotating shaft is rotated; the rotating head is arranged on the support frame and is connected with the rotating shaft.

[0024] By adopting the above technical scheme, the rotating shaft accommodates the limiting block in the clearance slot at the initial position, and the limiting block is lifted up after the rotating shaft is rotated; the rotating head drives the rotating shaft to rotate and drives the glass frame to adjust the position; the remote adjustment is realized by rotation, which avoids direct contact with the glass to cause damage; the problem that the traditional structure needs to be disassembled and adjusted as a whole is solved, and the installation precision is improved.

[0025] Optionally, the adjusting assembly further comprises an abutting block, the abutting block is arranged on the rotating shaft; the abutting block is located on one side of the rotating shaft and abuts against one side of the limiting block away from the limiting block after the rotating shaft is rotated.

[0026] By adopting the above technical scheme, the abutting block gradually presses the one side of the limiting block away from the limiting block when the rotating shaft is rotated; the abutting block and the limiting block form a clamping force to prevent the glass frame from shaking; the glass frame is automatically locked after adjustment without the need for an additional fixing step.

[0027] Optionally, the support frame is further provided with an anti-disengagement assembly, the anti-disengagement assembly comprises an anti-disengagement plate and an anti-disengagement bolt, the anti-disengagement bolt is in threaded connection with the support frame, and the anti-disengagement plate is detachably connected to the support frame through the anti-disengagement bolt; the connecting bolt is sunk into a connecting hole in which the anti-disengagement bolt is in threaded connection with the support frame.

[0028] By adopting the above technical scheme, the anti-falling plate covers the counterbore of the connecting bolt through the anti-falling bolt, prevents the connecting bolt from loosening, can shield the connecting bolt, improves the aesthetic effect, the double-bolt structure (connecting bolt + anti-falling bolt) avoids loosening caused by long-term vibration, the counterbore design protects the bolt head from impact of external force, and prolongs the service life.

[0029] In summary, the present application includes at least one of the following beneficial technical effects:

[0030] 1. The adjusting assembly allows accurate adjustment after installation, solves the problem that the traditional fixed structure is difficult to correct installation deviation; at the same time, the adjusting assembly cooperates with the positioning block and the limiting block, can realize quick installation, can fix the glass frame, reduces the risk of falling off, and improves safety;

[0031] 2. The rotating shaft accommodates the positioning block in the initial position through the accommodation groove, and after rotation, the positioning block is separated from the groove body and moves upward; the rotating head drives the rotating shaft to rotate, and drives the glass frame position adjustment; the remote adjustment is realized by rotating, avoiding direct contact with the glass to cause damage; solve the problem that the traditional structure needs to be disassembled and adjusted as a whole, improve the installation precision;

[0032] 3. The anti-falling plate covers the counterbore of the connecting bolt through the anti-falling bolt, prevents the connecting bolt from loosening, can shield the connecting bolt, improves the aesthetic effect, the double-bolt structure (connecting bolt + anti-falling bolt) avoids loosening caused by long-term vibration, the counterbore design protects the bolt head from impact of external force, and prolongs the service life. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 is the overall schematic view of the glass outer wall mounting structure in the embodiment of the present application;

[0034] Figure 2 is the cross-sectional view of the glass outer wall mounting structure in the embodiment of the present application;

[0035] Figure 3 is the adjusting assembly display view in the embodiment of the present application;

[0036] Figure 4 is Figure 3 the local enlarged view of region A in

[0037] 100, support frame; 110, transverse beam; 120, longitudinal beam; 130, mounting hole; 200, glass frame; 300, positioning block; 310, positioning groove; 400, limiting block; 500, adjusting assembly; 510, rotating shaft; 511, accommodation groove; 520, rotating head; 530, abutting block; 610, stop block; 620, elastic buffer layer; 700, moving assembly; 710, guide rod; 720, connecting bolt; 800, anti-dropping assembly; 810, anti-dropping plate; 820, anti-dropping bolt. DETAILED DESCRIPTION

[0038] The following Figures 1 to 4 The application is further described in detail.

[0039] The embodiment discloses a glass outer wall mounting structure.

[0040] Referring to Figure 1 and Figure 2 , the glass outer wall mounting structure comprises a support frame 100, a glass frame 200, a positioning block 300, a limiting block 400, an adjusting assembly 500, an anti-dropping assembly 800 and a moving assembly 700, the positioning block 300 is arranged on the glass frame 200, the limiting block 400 is arranged on the support frame 100, the moving assembly 700 is arranged on the support frame 100 and used for adjusting the position of the limiting block 400, and the positioning block 300 and the limiting block 400 abut against each other; the glass frame 200 is mounted on the support frame 100 and is fixed by limiting through the positioning block 300 and the limiting block 400; the anti-dropping assembly 800 is arranged on the support frame 100 and abuts against the glass frame 200 and is used for pressing the glass frame 200. The structure realizes quick mounting, accurate positioning and long-term stability of the glass frame 200 through modular support frame 100, mechanical interlocking of the positioning block 300 and the limiting block 400, dynamic fine adjustment of the adjusting assembly 500 and double locking of the anti-dropping assembly 800.

[0041] The support frame 100 is assembled into a grid structure through bolts or buckle type connecting pieces from a plurality of transverse beams 110 and longitudinal beams 120, and a plurality of rectangular mounting holes 130 are formed in the grid. The cross section of the transverse beam 110 and the longitudinal beam 120 is a U-shaped groove structure, and the groove opening faces the center of the mounting hole 130, so that the limiting block 400 and the adjusting assembly 500 can be embedded. The spacing between adjacent mounting holes 130 can be adjusted according to the size of the glass, so as to adapt to different building requirements.

[0042] Referring to Figure 3 and Figure 4The glass frame 200 is a rectangular metal frame body, which is slightly smaller than the mounting hole 130, and the glass is fixed by sealing glue. Two positioning blocks 300 are welded or bolted on two mutually parallel lateral side walls of the glass frame 200, that is, the side walls corresponding to the transverse beam 110. The positioning block 300 is a cuboid structure, and two vertical positioning grooves 310 are formed on one side of the positioning block 300 close to the limiting block 400. The groove depth is 1 / 3 of the height of the positioning block 300. The limiting block 400 is fixedly connected with a stop block 610, and the width of the stop block 610 matches the width of the positioning groove 310. The stop block 610 is an L-shaped metal protrusion, and the height of the stop block 610 matches the height of the positioning groove 310. An elastic buffer layer 620 (such as a rubber pad) is filled between the two stop blocks 610, and the elastic buffer layer 620 abuts against the side surface of the positioning block 300, which is used to absorb vibration and thermal expansion and contraction stress.

[0043] Two limiting blocks 400 are symmetrically arranged in each mounting hole 130, and a moving assembly 700 is arranged on the limiting block 400 and connected with the transverse beam 110 of the support frame 100 through the moving assembly 700. The moving assembly 700 includes a guide rod 710 and a connecting bolt 720. The guide rod 710 is welded to the bottom of the limiting block 400, and a sliding groove is formed in the transverse beam 110, and the guide rod 710 is embedded in the sliding groove to realize transverse sliding. The connecting bolt 720 penetrates the threaded hole of the transverse beam 110 and is rotationally connected with the limiting block 400. Rotating the connecting bolt 720 can push the limiting block 400 to move along the guide rod 710 to adjust the distance between the limiting block 400 and the positioning block 300. In order to hide the connecting bolt 720, a sunken groove coaxial with and communicating with the threaded hole is formed in the transverse beam 110, and the connecting bolt 720 is sunken in the sunken groove.

[0044] The adjusting assembly 500 is arranged on the longitudinal beam 120 of the support frame 100 and includes a rotating shaft 510, a rotating head 520 and an abutting block 530. The rotating shaft 510 is horizontally mounted on the limiting block 400 through a bearing, and a relief groove 511 is formed on the surface of the rotating shaft 510. In the initial state, the positioning block 300 is embedded in the relief groove 511. One end of the rotating shaft 510 is connected with the rotating head 520, and the rotating head 520 is connected with an external operating tool through a gear or a shaft coupling. In this embodiment, the rotating head 520 is a hexagonal head, which can be rotated by a wrench or an internal hex socket wrench. The rotating shaft 510 is closely matched with the limiting block 400 to reduce the rotation probability.

[0045] The abutting block 530 is a wedge-shaped metal block welded to the end of the rotating shaft 510 away from the rotating head 520. When the rotating shaft 510 rotates, the relief groove 511 gradually separates from the positioning block 300, and at the same time, the abutting block 530 moves away from the limiting block 400 to one side of the positioning block 300, and finally abuts against the positioning block 300 to form clamping and fixing. A guide inclined surface is formed on the side surface of the abutting block 530 in contact with the positioning block 300, which facilitates the relative displacement between the abutting block 530 and the positioning block 300.

[0046] The anti-loosening assembly 800 includes an anti-loosening plate 810 and an anti-loosening bolt 820. The anti-loosening plate 810 is an L-shaped steel plate covering the counterbore of the connecting bolt 720. The anti-loosening bolt 820 is connected with the threaded hole of the transverse beam 110 through the anti-loosening plate 810, and presses the anti-loosening plate 810 against the surface of the transverse beam 110 to prevent the connecting bolt 720 from loosening. The counterbore design makes the bolt head not exposed, avoiding external force impact. The anti-loosening assembly 800 further includes wing plates. Four wing plates are arranged around the outer edge of the glass frame 200 and located between the anti-loosening plate 810 and the support frame 100. The support frame 100 is provided with an embedded groove, and the wing plates are located in the embedded groove and abut against the support frame. The embedded groove is provided with a sealing groove, and a sealing strip is bonded in the sealing groove. The wing plates abut against the sealing strip.

[0047] The installation process is as follows: splice the transverse beam 110 and the longitudinal beam 120 according to the building size to form a grid structure; pre-adjust the limiting block 400: rotate the connecting bolt 720, push the limiting block 400 to the edge of the mounting hole 130, and reserve the space for embedding the glass frame 200. Embed the glass frame 200: push the one-side positioning block 300 of the glass frame 200 into the inner side of the limiting block 400, and then push the other-side positioning block 300 over the limiting block 400, so that the two-side positioning grooves 310 preliminarily correspond to the stop blocks 610; fine-tune the positioning: rotate the rotating head 520 to drive the rotating shaft 510 to press the abutting block 530 against the positioning block 300, and at the same time make the clearance groove 511 disengage from the positioning block 300, complete the vertical locking of the glass frame 200, make the positioning grooves 310 and the stop blocks 610 clamped and matched, and at the same time make the positioning block 300 abut against the elastic buffer layer 620; anti-loosening fixation: install the anti-loosening plate 810, press the connecting bolt 720 counterbore through the anti-loosening bolt 820, make the wing plate abut against the sealing strip, and complete the final fixation.

[0048] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application. Therefore, equivalent changes made on the basis of the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A glass exterior wall mounting structure, characterized by: The utility model relates to a glass frame fixing device, including: Support frame (100) is formed by the assembly of a plurality of cross beams (110) and longitudinal beams (120) through connecting pieces, and a plurality of mounting holes (130) are formed; Glass frame (200) is located in the mounting hole (130), and is used for fixing glass; Positioning block (300) is provided with two, and is arranged on two mutually parallel side walls of the glass frame (200) respectively; Limiting block (400) is provided with two, and is arranged in the mounting hole (130) on the support frame (100), the limiting block (400) is abutted with the positioning block (300), and is used for limiting the positioning block (300) away from the support frame (100); Adjusting assembly (500) is arranged on the support frame (100) and is abutted with the glass frame (200), and is used for adjusting the position of the glass frame (200) in the mounting hole (130).

2. The glass exterior wall mounting structure according to claim 1, characterized by: Two positioning blocks (300) are located on the cross beam (110) of the support frame (100) respectively.

3. The glass exterior wall mounting structure according to claim 2, characterized by: The side of the positioning block (300) close to the limiting block (400) is provided with a positioning groove (310), the limiting block (400) is provided with a stop block (610), and the stop block (610) can be clamped in the positioning groove (310).

4. The glass exterior wall mounting structure according to claim 3, characterized by: The positioning groove (310) is provided with two, the stop block (610) is provided with two, and an elastic buffer layer (620) is arranged between the two stop blocks (610).

5. The glass exterior wall mounting structure according to claim 1, characterized by: The limiting block (400) slides on the support frame (100), and the support frame (100) is provided with a moving assembly (700).

6. The glass exterior wall mounting structure according to claim 5, characterized by: The moving assembly (700) includes a guide rod (710) and a connecting bolt (720), the guide rod (710) is arranged on the limiting block (400), and the guide rod (710) is slidably connected with the support frame (100); the connecting bolt (720) is threadedly connected on the support frame (100), and is rotatably connected with the limiting block (400).

7. The glass exterior wall mounting structure according to claim 1, wherein: The adjusting assembly (500) includes a rotating shaft (510) and a rotating head (520), the rotating shaft (510) rotates on the limiting block (400), the rotating shaft (510) is provided with a gap slot (511), the positioning block (300) can be located in the gap slot (511), and with the rotation of the rotating shaft (510), the positioning block (300) is separated from the gap slot (511) and drives the positioning block (300) to move upward; the rotating head (520) rotates on the support frame (100), and is connected with the rotating shaft (510).

8. The glass exterior wall mounting structure according to claim 7, characterized by: The adjusting assembly (500) further comprises an abutting block (530) arranged on the rotating shaft (510); the abutting block (530) is located on one side of the rotating shaft (510) and abuts against one side of the positioning block (300) away from the limiting block (400) with the rotation of the rotating shaft (510).

9. The glass exterior wall mounting structure according to claim 6, wherein: The support frame (100) is further provided with an anti-disengagement assembly (800), the anti-disengagement assembly (800) comprises an anti-disengagement plate (810) and an anti-disengagement bolt (820), the anti-disengagement bolt (820) is threadedly connected with the support frame (100), and the anti-disengagement plate (810) is detachably connected to the support frame (100) through the anti-disengagement bolt (820); the connecting bolt (720) is sunk into a connecting hole in which the anti-disengagement bolt (820) is threadedly connected with the support frame (100).