Rail fixing structure facilitating glass recycling

CN224605904UActive Publication Date: 2026-08-07南京玥美精诚工程顾问有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
南京玥美精诚工程顾问有限公司
Filing Date
2025-09-15
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于克服现有技术的不足,适应现实需要,提供一种便于玻璃复用的栏杆固定结构,以解决当前栏杆固定结构易对玻璃造成损伤,影响拆卸后复用的技术问题

Benefits of technology

1、本实用新型通过设计底扣组件,安装时,将玻璃件下端置入固定块的凹口内,然后将玻璃件后侧面挤压贴合适应组件的胶片,然后偏转压扣件,压扣件的卡口卡接定位玻璃件的上端,连接处设有橡胶垫,然后通过锁紧螺母固定压扣件的转轴部,通过扳手旋转螺套,螺套螺纹驱动螺杆同步带动滑压条位移,滑压条挤压固定玻璃件下侧,通过上述的结构设计,使本装置完成玻璃件的装配固定,连接部均采用卡接的压紧的方式进行固定,且均设有摩擦防护结构,避免对玻璃件造成损伤,便于玻璃件拆卸后的复用。

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Abstract

The utility model discloses a kind of railing fixed structures convenient for glass reuse, it is related to railing equipment technical field, to solve the technical problem of current railing fixed structure easy to cause damage to glass, affect reuse after disassembly, including handle, glass piece and bottom buckle component, the handle both ends downside are fixed with vertical rod, and vertical rod is equipped with first assembly opening, inlay entrance and second assembly opening respectively, first assembly opening is equipped with pressure buckle component in, inlay entrance is equipped with adaptive component in, bottom buckle component is fixedly installed in second assembly opening by bolt, bottom buckle component is composed of fixed block and slide pressure strip, and slide pressure strip is slidably installed in the notch of fixed block upside, glass piece is installed between pressure buckle component and bottom buckle component, and glass piece is attached adaptive component. The utility model has the advantages of fixed structure reducing glass damage, facilitating glass reuse after disassembly.
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Description

Technical Field

[0001] This utility model relates to the field of railing equipment technology, and more specifically, to a railing fixing structure that facilitates glass reuse. Background Technology

[0002] Glass railings are a type of protective facility that combines aesthetics and practicality, primarily composed of glass panels, handrails, posts, and a base. The glass panels are the core component, serving mainly for protection and visual appeal. Common glass materials include tempered glass and laminated glass. Tempered glass has high strength and good impact resistance; laminated glass is less prone to breakage upon impact, and even if it does break, the interlayer adhesive holds the glass together, preventing shattered pieces from scattering, thus offering even greater safety.

[0003] Existing railing glass fixing structures use bolts and other locking mechanisms for fixation. Over long-term use, the joints are prone to wear, and subsequent disassembly can easily damage the glass surface, affecting its reusability. Therefore, we propose a railing fixing structure that facilitates glass reuse. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a railing fixing structure that facilitates glass reuse, so as to solve the technical problem that the current railing fixing structure is prone to damaging the glass and affecting the reuse after disassembly.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a railing fixing structure that facilitates glass reuse, including a handle, a glass component, and a bottom buckle assembly. Uprights are fixed to the lower sides of both ends of the handle, and the uprights are respectively provided with a first mounting opening, an insert opening, and a second mounting opening. A snap fastener assembly is installed in the first mounting opening, and an adaptation assembly is installed in the insert opening. The bottom buckle assembly is fixedly installed in the second mounting opening by bolts. The bottom buckle assembly consists of a fixing block and a sliding strip, and the sliding strip is slidably installed in a recess on the upper side of the fixing block. The glass component is installed between the snap fastener assembly and the bottom buckle assembly, and the glass component fits snugly against the adaptation assembly.

[0006] During installation, the lower end of the glass component is placed into the recess of the fixing block. Then, the rear side of the glass component is pressed against the adhesive sheet of the fitting assembly. Next, the pressure fastener is deflected, and its locking mechanism engages with the upper end of the glass component. A rubber pad is provided at the connection point. The rotating shaft of the pressure fastener is then secured by tightening the lock nut. Rotating the threaded sleeve with a wrench causes the threaded sleeve to drive the screw, which in turn moves the sliding pressure strip. The sliding pressure strip presses against and fixes the lower side of the glass component. Through this structural design, the device completes the assembly and fixation of the glass component. All connections are secured using a snap-fit ​​clamping method. The glass components are fixed and equipped with friction protection structures to prevent damage to the glass parts and facilitate their reuse after disassembly. The glass parts are integral structures, and the commonly used glass parts during installation are generally fixed at four points. When the glass parts are subjected to impact forces, the stress on the glass parts is concentrated and dispersed to the four fixed points. At this time, the joints of the glass parts are prone to friction damage. By adapting the synchronization rod and spring of the component, the film part disperses the stress on the glass parts, reduces the damage to the joints of the glass parts, ensures the service life of the glass parts, and prevents them from being unusable after damage.

[0007] Preferably, the snap fastener assembly consists of a locking nut and a snap fastener. The snap fastener is rotatably installed in the first assembly port via a rotating shaft, and the front end recess of the snap fastener is engaged with the upper side of the glass component. The outer end of the rotating shaft of the snap fastener is threaded with a locking nut.

[0008] Preferably, the adaptation component consists of an insert cylinder and a synchronizing rod, with the synchronizing rod slidably inserted into the insert cylinder, the insert cylinder fixed in the insert opening, and a film fixed to the outer end of the synchronizing rod. The front side of the film is attached to the glass piece, and the rear side of the film is elastically connected to the upright by a spring.

[0009] Preferably, pads are fixed on both sides of the bottom front end of the fixing block, a screw sleeve is rotatably installed on the outer end of the fixing block, and a screw is slidably installed on the inner side of the fixing block, with the screw thread installed on the inner side of the screw sleeve.

[0010] Preferably, the bottom of the recess of the fixing block has a synchronization port, and the lower side of the sliding strip passes through the synchronization port and is fixed on the screw. A gasket is provided on one side of the inner end of the recess of the fixing block, and the gasket corresponds to the sliding strip.

[0011] Compared with the prior art, the beneficial effects of this utility model are: 1. This utility model, through the design of a bottom fastener assembly, allows for the installation of the glass component. During installation, the lower end of the glass component is placed into the recess of the fixing block, and then the rear side of the glass component is pressed against the adhesive sheet of the assembly. The fastener is then deflected, and its snap-fit ​​engages with the upper end of the glass component. A rubber pad is provided at the connection point. The rotating shaft of the fastener is then fixed by tightening the nut. By rotating the threaded sleeve with a wrench, the threaded sleeve drives the screw to simultaneously move the sliding pressure strip. The sliding pressure strip presses and fixes the lower side of the glass component. Through the above structural design, the device completes the assembly and fixation of the glass component. All connections are fixed by snap-fit ​​clamping and are equipped with friction protection structures to avoid damage to the glass component and facilitate the reuse of the glass component after disassembly.

[0012] 2. This utility model also adapts the component by designing an integral structure for the glass component. During installation, the glass component is usually fixed at four points. When the glass component is subjected to an impact force, the stress on the glass component is concentrated and dispersed to the four fixed points. At this time, the connection of the glass component is prone to friction damage. By using the synchronization rod and spring of the adaptable component, the film part disperses the stress on the glass component, reduces the damage at the connection of the glass component, ensures the service life of the glass component, and prevents it from being unusable after damage. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the main structure of this utility model; Figure 2 This is a schematic diagram of the rear view structure of this utility model; Figure 3 This is a schematic diagram of the connection structure of this utility model; Figure 4 This is an enlarged structural schematic diagram of the present invention; Figure 5 This is a schematic diagram of the upright structure of this utility model; Figure 6 This is a schematic diagram of the adaptive components of this utility model; Figure 7 This is a schematic diagram of the bottom buckle assembly of this utility model; Figure 8 This is a cross-sectional view of the fixing block of this utility model.

[0014] The following are the labels in the diagram: 1. Handlebar; 2. Buckle assembly; 201. Locking nut; 202. Buckle piece; 3. Glass component; 4. Bottom buckle assembly; 401. Fixing block; 402. Sliding strip; 403. Foot pad; 404. Screw; 405. Screw sleeve; 406. Synchronization port; 407. Washer; 5. Upright; 501. First assembly port; 502. Embedded port; 503. Second assembly port; 6. Adaptive assembly; 601. Embedded cylinder; 602. Synchronization rod; 603. Spring; 604. Film. Detailed Implementation

[0015] like Figures 1 to 5 As shown, this utility model relates to a railing fixing structure that facilitates glass reuse, including a handle 1, a glass component 3, and a bottom buckle assembly 4. Uprights 5 are fixed to the lower sides of both ends of the handle 1, and each upright 5 has a first mounting opening 501, an insert opening 502, and a second mounting opening 503. A snap fastener assembly 2 is installed in the first mounting opening 501, and an adaptation assembly 6 is installed in the insert opening 502. The snap fastener assembly 2 consists of a locking nut 201 and a snap fastener 202. The snap fastener 202 is rotatably installed in the first mounting opening 501 via a rotating shaft, and its front end recess engages with the upper side of the glass component 3. A locking nut 201 is threaded onto the outer end of the rotating shaft of the snap fastener 202. The adaptation assembly 6 consists of an insert cylinder 601 and a synchronizing rod 602. 2. The slidable insertion is made into the embedded cylinder 601, which is fixed in the embedded opening 502. The outer end of the synchronizing rod 602 is fixed with a film 604. The front side of the film 604 is attached to the glass component 3, and the rear side of the film 604 is elastically connected to the upright rod 5 through the spring 603. The glass component 3 is an integral structure. During installation, the glass component 3 is usually fixed at four points. When the glass component 3 is subjected to an impact force, the stress on the glass component 3 is concentrated and dispersed to the four fixed points. At this time, the connection of the glass component 3 is prone to friction damage. By using the synchronizing rod 602 and the spring 603 of the adapting component 6, the film 604 disperses the stress on the glass component 3, reduces the damage to the connection of the glass component 3, ensures the service life of the glass component 3, and prevents it from being unusable after damage.

[0016] like Figures 3 to 8As shown, this utility model relates to a railing fixing structure that facilitates glass reuse, including a handle 1, a glass component 3, and a bottom buckle assembly 4. The bottom buckle assembly 4 is fixedly installed in the second assembly port 503 by bolts. The bottom buckle assembly 4 consists of a fixing block 401 and a sliding strip 402, with the sliding strip 402 slidably installed in the upper recess of the fixing block 401. The glass component 3 is installed between the buckle assembly 2 and the bottom buckle assembly 4, and the glass component 3 fits into the fitting assembly 6. Pads 403 are fixed on both sides of the bottom front end of the fixing block 401. A threaded sleeve 405 is rotatably installed on the outer end of the fixing block 401. A screw 404 is slidably installed on the inner side of the fixing block 401, and the screw 404 is threaded into the inner side of the threaded sleeve 405. A synchronization port 406 is opened at the bottom of the recess of the fixing block 401, and the lower side of the sliding strip 402 passes through the synchronization port 406 and is fixed to the screw 404. A gasket 407 is provided on one side of the inner end of the recess 01, and the gasket 407 corresponds to the sliding strip 402. During installation, the lower end of the glass piece 3 is placed into the recess of the fixing block 401, and then the rear side of the glass piece 3 is pressed to fit the film 604 of the component 6. Then, the buckle 202 is deflected, and the snap-fit ​​of the buckle 202 engages with the upper end of the positioning glass piece 3. A rubber pad is provided at the connection. Then, the rotating shaft of the buckle 202 is fixed by the locking nut 201. The screw sleeve 405 is rotated by the wrench, and the thread of the screw sleeve 405 drives the screw rod 404 to move the sliding strip 402 synchronously. The sliding strip 402 presses and fixes the lower side of the glass piece 3. Through the above structural design, the device completes the assembly and fixation of the glass piece 3. All the connecting parts are fixed by snap-fit ​​clamping and are provided with friction protection structure to avoid damage to the glass piece 3 and facilitate the reuse of the glass piece 3 after disassembly.

[0017] Working principle: This embodiment provides a railing fixing structure that facilitates glass reuse. During use and installation, the lower end of the glass component 3 is placed into the recess of the fixing block 401. Then, the rear side of the glass component 3 is pressed against the adhesive sheet 604 of the fitting component 6. Next, the pressure fastener 202 is deflected, and the snap-fit ​​of the pressure fastener 202 engages with the upper end of the positioning glass component 3. A rubber pad is provided at the connection point. The rotating shaft of the pressure fastener 202 is then fixed by the locking nut 201. The threaded sleeve 405 is rotated using a wrench. The threaded drive screw 404 synchronously drives the sliding strip 402 to move. The sliding strip 402 presses and fixes the lower side of the glass component 3. The glass component 3 is an integral structure. During installation, the glass component 3 is usually fixed at four points. When the glass component 3 is subjected to an impact force, the stress on the glass component 3 is concentrated and dispersed to the four fixed points. At this time, the connection of the glass component 3 is prone to friction damage. Through the synchronous rod 602 and spring 603 of the adaptation component 6, the film 604 disperses the stress on the glass component 3.

[0018] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A railing fixing structure for easy glass reuse, comprising a handle (1), a glass component (3), and a bottom buckle assembly (4), characterized in that: The handle (1) has a vertical pole (5) fixed on the lower side of both ends, and the vertical pole (5) is provided with a first assembly port (501), an insertion port (502) and a second assembly port (503). A snap fastener assembly (2) is installed in the first assembly port (501), and an adaptation assembly (6) is installed in the insertion port (502). The bottom buckle assembly (4) is fixedly installed in the second assembly port (503) by bolts. The bottom buckle assembly (4) consists of a fixing block (401) and a sliding strip (402). The sliding strip (402) is slidably installed in the upper recess of the fixing block (401). The glass piece (3) is installed between the buckle assembly (2) and the bottom buckle assembly (4), and the glass piece (3) fits the fitting assembly (6).

2. The railing fixing structure for easy glass reuse according to claim 1, characterized in that: The snap fastener assembly (2) consists of a locking nut (201) and a snap fastener (202). The snap fastener (202) is rotatably installed in the first assembly port (501) via a rotating shaft, and the front end notch of the snap fastener (202) is engaged with the upper side of the glass piece (3). The outer end of the rotating shaft of the snap fastener (202) is threaded with a locking nut (201).

3. The railing fixing structure for easy glass reuse according to claim 2, characterized in that: The adaptation component (6) consists of an insert (601) and a synchronizing rod (602), with the synchronizing rod (602) slidably inserted into the insert (601). The insert (601) is fixed in the insert opening (502), and a film (604) is fixed to the outer end of the synchronizing rod (602). The front side of the film (604) is attached to the glass piece (3), and the rear side of the film (604) is elastically connected to the upright (5) by a spring (603).

4. The railing fixing structure for easy glass reuse according to claim 3, characterized in that: Both sides of the bottom front end of the fixing block (401) are fixed with pads (403), the outer end of the fixing block (401) is rotatably installed with a screw sleeve (405), the inner side of the fixing block (401) is slidably installed with a screw (404), and the screw (404) is threadedly installed inside the screw sleeve (405).

5. A railing fixing structure for easy glass reuse according to claim 4, characterized in that: The bottom of the recess of the fixing block (401) has a synchronization port (406), and the lower side of the sliding strip (402) passes through the synchronization port (406) and is fixed on the screw (404). A gasket (407) is provided on one side of the inner end of the recess of the fixing block (401), and the gasket (407) corresponds to the sliding strip (402).