Glass roof frame beam structure

By connecting the main beams and secondary beams with assembly connectors and fixing them with multiple rows of screws, the safety hazards and complex installation problems of traditional glass house roof frames are solved, improving structural stability, safety and aesthetics, while simplifying the construction process.

CN223562416UActive Publication Date: 2025-11-18GUANGHAN ZUNHUANGJU DOORS & WINDOWS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423176172.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-18
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Traditional methods of welding or screwing the roof frame of glass houses pose safety hazards and are complex to install, making it difficult to guarantee structural strength and simplify the construction process.

Method used

The main beam and secondary beam are connected by assembly connectors. The first and second connecting plates are staggered with the vertical plate and fixed with multiple rows of screws. The bottom of the main beam is equipped with an overlapping platform, and there is an installation gap between the horizontal plate and the main beam. The screws are hidden.

Benefits of technology

It improves structural stability and safety, simplifies the installation process, extends service life and enhances aesthetics, and reduces the risk of metal fatigue damage and installation costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223562416U_ABST
    Figure CN223562416U_ABST
Patent Text Reader

Abstract

The utility model discloses a glass roof beam erecting structure, and relates to the technical field of glass house buildings, in particular to a glass roof beam erecting structure which comprises a main beam and a secondary beam, and the main beam and the secondary beam are connected through an assembly connecting piece. The assembly connecting piece comprises a first connecting plate, a second connecting plate and a vertical plate, the first connecting plate and the second connecting plate are kept parallel and are arranged on the two opposite faces of the vertical plate respectively, and the first connecting plate and the second connecting plate are arranged on the vertical plate in a staggered mode; one end of the secondary beam is arranged in the middle of the main beam, the first connecting plate is connected to the outer wall of the main beam, and the second connecting plate is connected to the inner wall of the secondary beam to achieve fixed connection of the main beam and the secondary beam. The glass house has the advantages that the main beams and the secondary beams are fixedly connected through the assembly connecting pieces, the contact area is increased, stress points are dispersed, the problem of metal fatigue damage caused by long-term stress of screws is solved, and the stability of the whole glass house is improved. The design of the assembly connecting piece can quickly and accurately complete the installation work, the construction process is simplified, and the installation cost is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to glass room building technical field, concretely relates to a glass room roof beam structure. BACKGROUND

[0002] Glass room is also called sunlight room, which is a kind of full clear non-traditional building built by glass and metal frame, aiming at providing sufficient natural light and good view. With the improvement of people's living standard and the increase of life quality pursuit, more and more families begin to pay attention to the comfort and aesthetic degree of living environment. Glass room as a kind of space form that can make full use of natural light, increase indoor lighting amount and create good visual experience is widely welcomed. However, in the traditional construction method, the roof frame of glass room is usually built by directly welding profile or using straight iron components through screw fixing. Although this method can realize basic functional requirements, due to its many shortcomings (as described above), it is easy to cause safety hazards in actual application. Therefore, it is particularly important to develop a new sunlight room roof beam structure that can guarantee structural strength and simplify installation steps. SUMMARY

[0003] The utility model aims at overcoming the above-mentioned prior art's shortcomings, providing a glass room roof beam structure.

[0004] The technical scheme adopted by the utility model is as follows:

[0005] A glass room roof beam structure comprises a main beam and a secondary beam, and the main beam and the secondary beam are connected through an assembly connecting piece.

[0006] The assembly connecting piece comprises a first connecting plate, a second connecting plate and a vertical plate, the first connecting plate and the second connecting plate are kept parallel, are arranged on two opposite surfaces of the vertical plate respectively, and the first connecting plate and the second connecting plate are arranged in a staggered manner on the vertical plate.

[0007] One end of the secondary beam is arranged at the middle of the main beam, the first connecting plate is connected to the outer wall of the main beam, the second connecting plate is connected to the inner wall of the secondary beam, and the fixed connection of the main beam and the secondary beam is realized.

[0008] Further, the first connecting plate and the second connecting plate are arranged perpendicular to the vertical plate.

[0009] Further, the secondary beam comprises a side plate and a horizontal plate, the horizontal plate is provided with a side plate at both ends, and the side plate abuts against the main beam during installation.

[0010] Further, after the secondary beam is installed on the main beam, an installation gap through which the vertical plate can pass is arranged between the horizontal plate and the main beam.

[0011] Further, the joint surface of the assembly connecting piece and the main beam and the secondary beam is arranged in a shape matched therewith.

[0012] Further, the first connecting plate is connected with the main beam by screws.

[0013] Further, the second connecting plate is connected with the secondary beam by screws.

[0014] Further, the screws are arranged in multiple rows.

[0015] Further, the main beam is provided with a lap platform at the bottom, and the bottom of the secondary beam is arranged on the lap platform after installation.

[0016] Further, the main beam comprises a bottom plate, and the lap platform is integrally formed with the bottom plate.

[0017] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present utility model are:

[0018] 1. Improved structural stability

[0019] The assembly connector is used to fixedly connect the main beam and the secondary beam, increases the contact area, disperses the stress points, thereby reducing the metal fatigue damage problem caused by long-term stress of the screws, and improving the stability of the entire sunroom.

[0020] 2. Enhanced safety

[0021] The use of multiple rows of screws further enhances the connection strength, ensures the safety and durability of the sunroom during use, and reduces the risk of accidents caused by unstable connection.

[0022] 3. Simplified installation process

[0023] The design of the assembly connector allows quick and accurate installation without the need for additional auxiliary positioning, greatly simplifying the construction process and reducing installation costs.

[0024] 4. Improved aesthetics

[0025] The hidden screw design avoids the rust problem of exposed screws, and makes the appearance of the sunroom more neat and beautiful, improving the overall visual effect.

[0026] 5. Prolonged service life

[0027] By optimizing the structure and connection method, the wear and aging speed of the material is reduced, thereby prolonging the service life of the sunroom and reducing the frequency of maintenance and replacement. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is a structural schematic diagram of the present utility model;

[0029] Figure 2 is a structural schematic diagram of the assembly connector of the present utility model;

[0030] Figure 3 is the secondary beam structure schematic diagram of the utility model;

[0031] Figure 4 is the side view schematic diagram of the utility model.

[0032] Markings in the figure:

[0033] 1 - main beam, 2 - secondary beam, 3 - assembly connector, 4 - first connecting plate, 5 - second connecting plate, 6 - vertical plate, 7 - side plate, 8 - cross plate, 9 - installation gap, 10 - lap platform, 11 - bottom plate.

[0034] Specific examples

[0035] The utility model will be explained in detail below in combination with the drawings.

[0036] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model will be explained in further detail below in combination with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model and not to limit the utility model.

[0037] In the embodiment, as shown in Figure 1 , 2 A glass roof beam structure, comprising: main beam 1 and secondary beam 2, main beam 1 and secondary beam 2 are connected through assembly connector 3.

[0038] Assembly connector 3 includes first connecting plate 4, second connecting plate 5 and vertical plate 6, first connecting plate 4 and second connecting plate 5 are kept parallel, respectively arranged on two opposite surfaces of vertical plate 6, and first connecting plate 4 and second connecting plate 5 are arranged in staggered mode on vertical plate 6.

[0039] Secondary beam 2 is arranged at the middle part of main beam 1, first connecting plate 4 is connected to the outer wall of main beam 1, second connecting plate 5 is connected to the inner wall of secondary beam 2, and the fixed connection of main beam 1 and secondary beam 2 is realized.

[0040] Main beam 1 and secondary beam 2: main beam 1 and secondary beam 2 are connected through assembly connector 3. This design increases the contact area, disperses the stress point and improves the structural stability.

[0041] Assembly connector 3: including first connecting plate 4, second connecting plate 5 and vertical plate 6. First connecting plate 4 and second connecting plate 5 are kept parallel, respectively arranged on two opposite surfaces of vertical plate 6, and arranged in staggered mode, arranged as "Z" shape. Such design can ensure the firm connection between main beam 1 and secondary beam 2, and place the stress point on main beam 1.

[0042] Further, first connecting plate 4 and second connecting plate 5 are arranged perpendicular to vertical plate 6.

[0043] This design makes the connection more stable, reduces the problem of metal fatigue damage caused by long-term stress of screws, and improves the safety of the whole sunroom.

[0044] Further, the secondary beam 2 comprises side plates 7 and cross plates 8, the cross plates 8 are provided with side plates 7 at both ends, and the side plates 7 abut against the main beam 1 during installation.

[0045] The design of the secondary beam 2 enables it to better adapt to different installation environments, while increasing the rigidity of the structure and improving the overall stability.

[0046] Further, after the secondary beam 2 is installed on the main beam 1, an installation gap 9 through which the vertical plate 6 can pass is provided between the cross plate 8 and the main beam 1.

[0047] The installation gap 9 through which the vertical plate 6 can pass is provided between the cross plate 8 and the main beam 1, which not only simplifies the installation process, but also ensures the tightness and safety of the structure.

[0048] Further, the connecting surface of the assembly connector 3 at the joint with the main beam 1 and the secondary beam 2 is set to match the shape.

[0049] This design enables the components to fit closely, reduces gaps, improves overall sealing and aesthetics, and the matching connecting surface of the assembly connector 3 can also increase the force point, reduce the stress on the bolts, and make the structure more solid and reliable; Specifically, the main beam 1 and the secondary beam 2 are provided with horizontal protruding cross bars at the joint with the assembly connector 3, and the corresponding surface of the assembly connector 3 is provided with a groove to increase the horizontal stress during use and reduce the stress on the bolts.

[0050] Further, the first connecting plate 4 is connected to the main beam 1 by screws.

[0051] The use of screws enhances the connection strength and ensures the safety and durability of the sunroom during use.

[0052] Further, the second connecting plate 5 is connected to the secondary beam 2 by screws.

[0053] Similarly, the use of screw fixation further enhances the stability and reliability of the connection.

[0054] Further, the screws are arranged in multiple rows.

[0055] The use of multiple rows of screws further improves the connection strength and ensures that the sunroom remains stable under various weather conditions.

[0056] Further, the main beam 1 is provided with a lap platform 10 at the bottom, and the secondary beam 2 is installed on the lap platform 10 after installation.

[0057] The design of the lap platform 10 enables the secondary beam 2 to be stably placed on the bottom after installation, increasing the overall stability of the structure. Specifically, the lap platform 10 protrudes 10mm from the main beam 15. This interval width can provide good support for the secondary beam 2 without excessively increasing the installation difficulty. At the same time, the lap platform 10 also serves as a positioning function. When installing the secondary beam 2 on the main beam 1, the upper end of the secondary beam 2 is placed on the lap platform 10, which simplifies the installation steps.

[0058] Further, the main beam 1 includes a bottom plate 11, and the lap platform 10 is integrally formed with the bottom plate 11.

[0059] The integrally formed design simplifies the manufacturing process, reduces costs, and also improves the strength and durability of the structure.

[0060] Specific installation steps are as follows:

[0061] 1. Preparation stage

[0062] Check materials and tools: Ensure that all necessary components (main beam 1, secondary beam 2, assembly connector 3, etc.) and tools (such as screws, wrenches, electric drills, etc.) are ready.

[0063] Measurement and marking: According to the design drawings, accurately measure and mark the installation position to ensure that each component is correctly positioned.

[0064] 2. Install the main beam 1

[0065] Position the main beam 1: Place the main beam 1 in the predetermined position and use a level to ensure it is level.

[0066] Fix the main beam 1: Use expansion bolts or other appropriate fixing methods to firmly fix the main beam 1 to the column.

[0067] 3. Install the secondary beam 2

[0068] Before placing the secondary beam 2, place the vertical plate 6 of the assembly connector 3 at the installation gap position, and connect the second connecting plate 5 to the inner wall of the secondary beam 2.

[0069] Position the secondary beam 2: Place one end of the secondary beam 2 on the lap platform 10 of the main beam 1, ensuring that the side plate 7 is in close contact with the main beam 1.

[0070] Adjust the position: Move the secondary beam 2 so that the installation gap 9 between the horizontal plate 8 and the main beam 1 is aligned.

[0071] Fix the secondary beam 2: Use the assembly connector 3 to fix the secondary beam 2 to the main beam 1. First, connect the first connecting plate 4 to the outer wall of the main beam 1 with screws, then connect the second connecting plate 5 to the inner wall of the secondary beam 2 with screws. Ensure that all screws are tightened in place.

[0072] 5. Inspection and adjustment

[0073] Inspect connections: Carefully inspect all connection points to ensure no missing or loose screws.

[0074] Adjust level: Check the level of the entire structure again using a level and make adjustments if necessary.

[0075] Clean up the site: Clean up the construction site to ensure no tools or materials are left behind.

[0076] The above description is only a preferred embodiment of the utility model, and is not used to limit the utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model should be included in the protection scope of the utility model.

Claims

1. A glass roof beam structure, characterized by: The utility model relates to a kind of assembly connection of beam, which includes: Main beam (1) and secondary beam (2), the main beam (1) and secondary beam (2) are connected by assembly connector (3); The assembly connector (3) includes first connecting plate (4), second connecting (5) plate and vertical plate (6), the first connecting plate (4) and second connecting (5) plate keep parallel, respectively set in two opposite surfaces of vertical plate (6), and the first connecting plate (4) and second connecting (5) are set in vertical plate (6) with dislocation; The secondary beam (2) is set in the middle of main beam (1) one end, the first connecting plate (4) is connected to the outer wall of main beam (1), and the second connecting (5) plate is connected to the inner wall of secondary beam (2), to realize the fixed connection of main beam (1) and secondary beam (2).

2. A glass roof beam structure as claimed in claim 1, characterized in that: The first connecting plate (4) and second connecting (5) plate are perpendicular to vertical plate (6) setting.

3. A glass roof truss structure as defined in claim 1, wherein: The secondary beam (2) includes side plate (7) and cross plate (8), the cross plate (8) is provided with side plate (7) at both ends, and the side plate (7) is abutted with main beam (1) when installation.

4. A glass roof truss structure as claimed in claim 3, wherein: After the secondary beam (2) is installed in main beam (1), installation gap (9) that vertical plate (6) can pass through is arranged between the cross plate (8) and main beam (1).

5. A glass roof truss structure as defined in claim 1, wherein: The assembly connector (3) is provided with the shape matched with the interface of main beam (1) and secondary beam (2).

6. A glass roof truss structure as defined in claim 1, wherein: The first connecting plate (4) is connected with main beam (1) by screw.

7. A glass roof truss structure as defined in claim 1, wherein: The second connecting (5) plate is connected with secondary beam (2) by screw.

8. A glass roof beam structure according to claim 6 or 7, characterised in that: The screw is arranged as multiple rows.

9. A glass roof truss structure as defined in claim 1, wherein: The main beam (1) bottom is provided with lap platform (10), and the bottom of the secondary beam (2) is arranged on the lap platform (10) after installation.

10. A glass roof beam structure as claimed in claim 9, characterized in that: The main beam (1) includes bottom plate (11), and the lap platform (10) is integrally formed with the bottom plate (11).