Adjustable unit beam system

By setting adjustable curved surfaces on the unit beams and glass sub-frames, the multi-mold design problem caused by fixed installation methods in the prior art is solved, achieving flexible installation and cost reduction.

CN224200106UActive Publication Date: 2026-05-05WUXI HENGSHANG DECORATION ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUXI HENGSHANG DECORATION ENG CO LTD
Filing Date
2025-05-30
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

The existing unit beam installation method is fixed, which requires the design of various structures and molds for different installation angles, increasing design and installation costs.

Method used

The design incorporates an adjustable unit beam system. By setting matching arc surfaces on the unit beam and the glass sub-frame, the first arc surface can be moved relative to the second arc surface, thereby adjusting the installation angle, reducing the number of molds and lowering mold opening costs.

Benefits of technology

This allows for installation from various angles without requiring multiple installation structures, reducing the number of molds, lowering mold-making costs, and improving installation flexibility and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an adjustable unit cross beam system, which is mounted on a glass panel and comprises a unit cross beam, a first arc-shaped surface and a second arc-shaped surface, the glass auxiliary frame comprises a fixed surface fixed on the glass panel and a second arc-shaped surface, and the radian of the second arc-shaped surface is attached to the first arc-shaped surface; the first fixing device sequentially penetrates through the second arc-shaped surface and the first arc-shaped surface to fix the unit cross beam on the glass auxiliary frame; when the top points of the first arc-shaped surface and the second arc-shaped surface coincide, a gap exists between the edge of the first arc-shaped surface and the surface of the glass panel. The utility model can effectively reduce the number of molds, improve the use frequency of the molds and reduce the mold opening cost.
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Description

Technical Field

[0001] This utility model relates to building structures, specifically to a type of debugging unit beam system. Background Technology

[0002] Depending on the requirements, the angle of the unit beam relative to the glass panel may vary when it is installed. In existing technologies, the installation method of the unit beam is relatively fixed, and it can only be installed at a fixed angle relative to the glass panel. On the one hand, to meet the needs of different installation angles, the installation structure of the unit beam must be designed for different installation angles, resulting in high design, manufacturing, and mold-making costs and long cycles. On the other hand, the variety of beam molds with different structures and installation methods also increases the learning and operational costs during actual installation. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model discloses an adjustable unit beam system.

[0004] The technical solution adopted in this utility model is as follows:

[0005] An adjustable unit beam system, installed on a glass panel, includes: a unit beam including a first arc-shaped surface; a glass sub-frame including: a fixing surface fixed to the glass panel, and a second arc-shaped surface whose curvature conforms to the first arc-shaped surface; a first fixing device passing through the second arc-shaped surface and the first arc-shaped surface in sequence to fix the unit beam to the glass sub-frame; wherein, when the vertices of the first arc-shaped surface and the second arc-shaped surface coincide, there is a gap between the edge of the first arc-shaped surface and the surface of the glass panel.

[0006] A further technical solution is that the area of ​​the first arc-shaped surface is larger than that of the second arc-shaped surface, so that the second arc-shaped surface covers the first arc-shaped surface.

[0007] A further technical solution is that the edge of the first arc-shaped surface extends with a supporting foot; the supporting foot has a gap from the surface of the glass panel.

[0008] A further technical solution is that the support foot is equipped with a rubber strip.

[0009] A further technical solution is that the fixing surface of the glass sub-frame is fixed to the glass panel by an adhesive structure.

[0010] A further technical solution is that the glass panel is installed on the wall structure; mounting holes are provided on the wall structure; the fixing surface includes a first plane and a second plane located on both sides of the mounting holes; both the first plane and the second plane are fixed to the glass panel by an adhesive structure; a first snap-fit ​​structure is provided between the first plane and the second plane; the unit beam system also includes an insert structure; one end of the insert structure is snapped into the first snap-fit ​​structure by a clip; the other end of the insert structure is fixed in the mounting hole of the wall structure.

[0011] A further technical solution is that a sealing element is provided between the outer side of the insert structure and the inner side of the mounting hole.

[0012] A further technical solution is that a second snap-fit ​​structure is provided between the first plane and the second plane; the unit beam system also includes a support plate; one end of the support plate is hook-shaped and hooks into the second snap-fit ​​structure; a pad is provided between the side of the support plate and the mounting hole of the wall structure.

[0013] A further technical solution is that the unit beam system further includes a second fixing device; the second fixing device passes sequentially through the strip structure and the glass sub-frame from the side of the wall structure away from the glass panel, and fixes the glass sub-frame to the strip structure.

[0014] A further technical solution is to install an adhesive strip in the mounting hole of the wall structure from the side of the wall structure away from the glass panel, thereby sealing the second fixing device in the mounting hole.

[0015] The beneficial effects of this utility model are as follows:

[0016] This invention features matching arc-shaped surfaces on both the unit beam and the glass sub-frame. Since the second arc-shaped surface is fixed relative to the glass sub-frame, when the position of the first arc-shaped surface changes relative to the second arc-shaped surface, the unit beam creates a certain angle relative to the plane of the glass panel. This design eliminates the need for multiple installation structures when various installation angles of the unit beam and glass panel are required, and also avoids the need for multiple sets of beam molds due to angle requirements. This effectively reduces the number of molds, increases mold usage frequency, and lowers mold-making costs. Attached Figure Description

[0017] Figure 1 This is a structural schematic diagram of the adjustable unit beam system according to an embodiment of the present invention.

[0018] Figure 2 This is a schematic diagram of the structure of the unit beam in an embodiment of the present utility model.

[0019] Figure 3 This is a schematic diagram of the structure of the glass subframe in an embodiment of the present invention.

[0020] Figure 4 for Figure 1 An enlarged schematic diagram of part A in the middle.

[0021] Figure 5 This is a schematic diagram showing the unit beam at a 90° angle to the glass panel in an embodiment of this utility model.

[0022] Figure 6 This is a schematic diagram showing the unit beam at an 83° angle relative to the glass panel in an embodiment of this utility model.

[0023] Figure 7 This is a schematic diagram showing the unit beam at a 94° angle to the glass panel in an embodiment of this utility model.

[0024] In the diagram: 1. Glass panel; 2. Unit beam; 201. First curved surface; 202. Support leg; 3. Glass sub-frame; 301. Fixing surface; 3011. First plane; 3012. Second plane; 3013. First snap-fit ​​structure; 3014. Second snap-fit ​​structure; 302. Second curved surface; 4. First fixing device; 5. Buffer; 6. Adhesive structure; 7. Inlay strip structure; 8. Wall structure; 9. Support plate; 10. Pad; 11. Second fixing device; 12. Sealing element; 13. Covering element. Detailed Implementation

[0025] The specific embodiments of this utility model are described below with reference to the accompanying drawings.

[0026] Figure 1 This is a structural schematic diagram of the adjustable unit beam system according to an embodiment of the present invention. Figure 1 As shown, the unit beam system is installed on the glass panel 1, which is fixed to the wall structure 8. The unit beam system includes unit beams 2 and glass sub-frames 3.

[0027] Figure 2 This is a schematic diagram of the structure of the unit beam according to an embodiment of this utility model. Figure 2 As shown, the unit beam 2 has a first arc-shaped surface 201. Figure 3 This is a schematic diagram of the glass sub-frame according to an embodiment of the present invention. Figure 3 As shown, the glass sub-frame 3 includes a fixing surface 301 and a second arc-shaped surface 302. The fixing surface 301 is used to fix the glass sub-frame 3 to the glass panel 1. The curvature of the second arc-shaped surface 302 is the same as that of the first arc-shaped surface 201, so that the second arc-shaped surface 302 can fit against the first arc-shaped surface 201.

[0028] The first fixing device 4 passes through the second arc-shaped surface 302 and the first arc-shaped surface 201 in sequence to fix the unit beam 2 to the glass sub-frame 3.

[0029] When the vertices of the first arc-shaped surface 201 and the second arc-shaped surface 302 coincide, there is a gap between the edge of the first arc-shaped surface 201 and the surface of the glass panel 1. That is, the first arc-shaped surface 201 can move relative to the second arc-shaped surface 302, so that the angle of the unit beam 2 relative to the plane of the glass panel 1 changes without affecting the installation relationship of the unit beam 2 relative to the glass panel 1.

[0030] When the vertices of the first arc-shaped surface 201 and the second arc-shaped surface 302 coincide, the unit beam 2 is perpendicular to the plane of the glass panel 1. Since the second arc-shaped surface 302 is fixed relative to the glass sub-frame 3, when the position of the first arc-shaped surface 201 relative to the second arc-shaped surface 302 changes, the unit beam 2 forms a certain angle relative to the plane of the glass panel 1. This design structure eliminates the need for multiple installation structures when multiple installation angles are required for the unit beam 2 and the glass panel 1, and also eliminates the need for multiple sets of beam molds due to angle issues. This effectively reduces the number of molds, increases mold usage frequency, and lowers mold opening costs.

[0031] Furthermore, the area of ​​the first arc-shaped surface 201 is larger than that of the second arc-shaped surface 302, so that the second arc-shaped surface 302 covers the first arc-shaped surface 201. Therefore, when the angle between the unit beam 2 and the glass panel 1 is changed, the internal glass sub-frame 3 will not be exposed, reducing its probability of damage and increasing the aesthetics of the unit beam system.

[0032] Furthermore, a support foot 202 extends from the edge of the first arc-shaped surface 201. There is a gap between the support foot 202 and the surface of the glass panel 1, which limits the adjustable angle of the unit beam 2 relative to the plane of the glass panel 1 as needed. Preferably, the angle of the unit beam 2 relative to the plane of the glass panel 1 is 83°~94°.

[0033] Figure 4 for Figure 1 An enlarged diagram of part A in the diagram. (See attached image.) Figure 4 As shown, furthermore, a buffer element 5 is installed on the support leg 202. The buffer element 5 can be a rubber strip, such as... Figure 4 As shown, the buffer 5 is fixed to the support foot 202. The other end of the buffer 5 has multiple slender strip structures. When adjusting the angle of the unit beam 2 relative to the plane of the glass panel 1, if the support foot 202 touches the glass panel 1, a certain buffering effect is generated between the support foot 202 and the glass panel 1 to protect the structure of the support foot 202 and the glass panel 1.

[0034] Specifically, the fixing surface 301 of the glass sub-frame 3 can be fixed to the glass panel 1 by means of an adhesive structure 6. The adhesive structure 6 can be structural adhesive.

[0035] Furthermore, the glass panel 1 is installed on the wall structure 8. Mounting holes are provided on the wall structure 8. These mounting holes are used to further reinforce and secure the unit beam system.

[0036] Combination Figure 3 The fixing surface 301 includes a first plane 3011 and a second plane 3012 located on both sides of the mounting hole. Both the first plane 3011 and the second plane 3012 are fixed to the glass panel 1 via an adhesive structure 6. A first snap-fit ​​structure 3013 is provided between the first plane 3011 and the second plane 3012. The unit beam system also includes a strip structure 7. The strip structure 7 includes two relatively fixed aluminum alloy strips. One end of the strip structure 7 is snapped into the first snap-fit ​​structure 3013 via a clip. The other end of the strip structure 7 is fixed in the mounting hole of the wall structure 8. The unit beam system also includes a second fixing device 11. The second fixing device 11 passes sequentially through the strip structure 7 and the glass sub-frame 3 from the side of the wall structure 8 away from the glass panel 1, fixing the glass sub-frame 3 to the strip structure 7.

[0037] A second snap-fit ​​structure 3014 is also provided between the first plane 3011 and the second plane 3012. The unit beam system also includes a support plate 9. One end of the support plate 9 is hook-shaped and hooks into the second snap-fit ​​structure 3014. A pad 10 is provided between the side of the support plate 9 and the mounting hole of the wall structure 8. The pad 10 secures the support plate 9 reliably between the insert structure 7 and the mounting hole through friction with the side of the support plate 9.

[0038] The first snap-fit ​​structure 3013, together with the insert strip structure 7, and the second snap-fit ​​structure 3014, together with the support plate 9 and the pad 10, both enhance the fixing strength of the glass sub-frame 3.

[0039] A cover 13 is provided in the mounting hole of the wall structure 8, away from the glass panel 1, to seal the second fixing device 11 in the mounting hole. The cover 13 is preferably an EPDM rubber strip. A seal 12 is provided between the outer surface of the insert structure 7 and the inner surface of the mounting hole at the port of the mounting hole on the side of the wall structure 8 away from the glass panel 1. The seal 12 is preferably a weather-resistant sealant. The cover 13 and the seal 12 cover and seal the mounting structure of the glass sub-frame 3, protecting it from damage, such as moisture and air, and enhancing the reliability of the structural fixation.

[0040] Figure 5 This is a schematic diagram showing the unit beam at a 90° angle to the glass panel in an embodiment of this utility model. (As shown in the image...) Figure 1 , Figure 5 As shown, when the vertices of the first arc surface 201 and the second arc surface 302 coincide, the unit beam 2 is at a 90° angle to the glass panel 1.

[0041] Figure 6 This is a schematic diagram showing the unit beam at an 83° angle relative to the glass panel in an embodiment of this utility model. Figure 7 This is a schematic diagram showing the unit beam at a 94° angle to the glass panel in an embodiment of this utility model. Figure 6 , Figure 7 As shown, there is a gap between the edge of the first arc-shaped surface 201 and the surface of the glass panel 1. That is to say, the first arc-shaped surface 201 can move relative to the second arc-shaped surface 302, so that the angle of the unit beam 2 relative to the plane of the glass panel 1 changes without affecting the installation relationship of the unit beam 2 relative to the glass panel 1. Based on this, the installation angle of the unit beam 2 can be adjusted.

[0042] The above description is an explanation of the present utility model and not a limitation thereof. The scope of the present utility model is defined by the claims. The present utility model can be modified in any form without departing from its basic structure.

Claims

1. An adjustable unit beam system, characterized in that, Mounted on glass panels, including: The unit beam includes the first arc-shaped surface; The glass subframe includes: The fixing surface is fixed to the glass panel. The second arc-shaped surface has an arc that fits the first arc-shaped surface. The first fixing device passes through the second arc-shaped surface and the first arc-shaped surface in sequence to fix the unit beam to the glass sub-frame; Wherein, when the vertices of the first arc-shaped surface and the second arc-shaped surface coincide, there is a gap between the edge of the first arc-shaped surface and the surface of the glass panel.

2. The adjustable unit beam system according to claim 1, characterized in that, The area of ​​the first arc-shaped surface is larger than that of the second arc-shaped surface, such that the second arc-shaped surface covers the first arc-shaped surface.

3. The adjustable unit beam system according to claim 1, characterized in that, The first arc-shaped surface has a supporting foot extending from its edge; there is a gap between the supporting foot and the surface of the glass panel.

4. The adjustable unit beam system according to claim 3, characterized in that, The support legs are fitted with rubber strips.

5. The adjustable unit beam system according to claim 1, characterized in that, The fixing surface of the glass sub-frame is fixed to the glass panel by an adhesive structure.

6. The adjustable unit beam system according to claim 5, characterized in that, The glass panel is installed on the wall structure; mounting holes are provided on the wall structure; the fixing surface includes a first plane and a second plane located on both sides of the mounting holes; both the first plane and the second plane are fixed to the glass panel by an adhesive structure; a first snap-fit ​​structure is provided between the first plane and the second plane; the unit beam system also includes an insert structure; one end of the insert structure is snapped into the first snap-fit ​​structure by a clip; the other end of the insert structure is fixed in the mounting holes of the wall structure.

7. The adjustable unit beam system according to claim 6, characterized in that, A sealing element is provided between the outer side of the insert structure and the inner side of the mounting hole.

8. The adjustable unit beam system according to claim 6, characterized in that, A second snap-fit ​​structure is also provided between the first plane and the second plane; the unit beam system also includes a support plate; one end of the support plate is hook-shaped and hooks into the second snap-fit ​​structure; a pad is provided between the side of the support plate and the mounting hole of the wall structure.

9. The adjustable unit beam system according to claim 6, characterized in that, The unit beam system also includes a second fixing device; the second fixing device passes sequentially through the strip structure and the glass sub-frame from the side of the wall structure away from the glass panel, and fixes the glass sub-frame to the strip structure.

10. The adjustable unit beam system according to claim 9, characterized in that, An adhesive strip is installed in the mounting hole of the wall structure from the side of the wall structure away from the glass panel to seal the second fixing device in the mounting hole.