A roof waterproofing portal frame

CN224801138UActive Publication Date: 2026-09-25中建五局安装工程有限公司
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Patent Information

Application Number
CN202522102167.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-09-25
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于:提供一种屋面防水龙门支架,旨在解决上述技术问题中因传统支架依赖螺栓或焊接连接,后期拆装维护不便且无法适配不同角度屋顶,导致操作复杂、耗费时间长,还易破坏防水垫层,影响屋面防水效果的问题

Benefits of technology

[0013]与已有技术相比,本实用新型的有益效果体现在:支架底座与纵向支架支柱、纵向支架支柱与横向横梁、横向横梁与机电管道间设磁块,能为部件对接提供精准定位、避免装配偏差,为后续固定奠定稳定基础。上述连接处同步装弹性卡扣,可强化部件连接紧固性、防松动脱落,保障整体结构稳定可靠。支架底座与防水垫层间装调节伸缩支脚,能灵活调整支架高度与倾斜角度、适配不同坡度屋顶,解决复杂屋面安装适配难题,其连接处的锁紧卡扣可锁定支脚位置、防非预期位移。纵向支架支柱外侧装斜向支撑杆,能分散纵向受力、增强抗倾倒能力。连接处装接缝防水盖板,可阻隔雨水、防部件锈蚀。横向横梁上侧 U 型卡槽搭配管道卡箍,能稳固夹持机电管道,卡箍内侧橡胶缓冲层可缓解振动、保护管道外壁。

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Abstract

The utility model relates to the field of building engineering electromechanical installation especially a roof waterproof gantry support, include: support base is provided with the positioning hole, adjust telescopic support foot, install in the downside of support base, base waterproof cushion layer, install in the downside of adjust telescopic support foot, longitudinal support column, install in the upside of support base, transverse crossbeam, install in the upside of longitudinal support column. Through adjust telescopic support foot adaptation different gradient roof, base waterproof cushion layer blocks roof water seepage, longitudinal support column and transverse crossbeam construct stable support frame, help support base positioning hole guarantee installation accuracy simultaneously to realize the stable installation of support on the building roof, the safe load bearing of electromechanical pipeline and the effective protection function to roof waterproof structure.
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Description

Technical Field

[0001] This utility model relates to the field of electromechanical installation in building engineering, and in particular to a roof waterproof gantry bracket. Background Technology

[0002] In the installation of electromechanical systems on building roofs, waterproof gantry brackets are key components supporting electromechanical pipes and ensuring the integrity of the roof's waterproof structure. Traditional brackets generally use rigid connections secured by bolts or welding, requiring precise measurement and positioning before installation, and necessitating the use of specialized tools. When dealing with roofs of varying slopes, adjustments must be made on-site by cutting the bracket base and adding shims, which is not only cumbersome and time-consuming but also prone to scratching and damaging the roof's waterproofing layer during operation, making it difficult to simultaneously achieve both installation efficiency and roof waterproofing integrity.

[0003] The core defects of existing technologies are: traditional brackets rely on bolts or welding connections, which are inconvenient to disassemble and maintain later and cannot be adapted to roofs of different angles, resulting in complicated operation, long time consumption, and easy damage to the waterproof layer, affecting the waterproof effect of the roof. Utility Model Content

[0004] The purpose of this utility model is to provide a roof waterproof gantry bracket, which aims to solve the problems mentioned above, such as the inconvenience of disassembly and maintenance due to the reliance on bolts or welding for traditional brackets, the inability to adapt to roofs of different angles, the complexity of operation, the long time consumption, and the easy damage to the waterproof layer, thus affecting the waterproof effect of the roof.

[0005] The technical solution adopted in this utility model is as follows: A roof waterproofing gantry bracket, comprising: The stand base is equipped with positioning holes; Adjust the telescopic support legs and install them on the lower side of the bracket base; A waterproof padding layer is installed on the underside of the adjustable telescopic support legs; A longitudinal support column is mounted on the upper side of the support base; A transverse beam is installed on the upper side of the longitudinal support column.

[0006] This utility model also has the following technical features: In one embodiment of this utility model, a locking buckle is installed at the connection between the adjustable telescopic support leg and the waterproof padding of the base.

[0007] In one embodiment of this utility model, an oblique support rod is installed on the outer side of the longitudinal support column.

[0008] In one embodiment of this utility model, a waterproof cover plate is installed at the connection between the longitudinal support column and the transverse beam.

[0009] In one embodiment of this utility model, a U-shaped groove is provided on the upper side of the transverse beam, and an electromechanical conduit is installed on the upper side of the U-shaped groove.

[0010] In one embodiment of this utility model, a pipe clamp is installed at the connection between the transverse beam and the U-shaped groove, and a rubber buffer layer is installed on the inner side of the pipe clamp.

[0011] In one embodiment of this utility model, magnetic blocks are installed at the connection points between the support base and the longitudinal support column, the longitudinal support column and the transverse beam, and the transverse beam and the electromechanical pipeline.

[0012] In one embodiment of this utility model, elastic buckles are installed at the connection points between the bracket base and the longitudinal support column, the longitudinal support column and the transverse beam, and the transverse beam and the electromechanical pipeline.

[0013] Compared with existing technologies, the beneficial effects of this utility model are reflected in the following: Magnetic blocks are installed between the support base and the longitudinal support column, the longitudinal support column and the transverse beam, and the transverse beam and the electromechanical pipes, which can provide precise positioning for component docking, avoid assembly deviations, and lay a stable foundation for subsequent fixing. Elastic buckles are installed at the above connections to strengthen the tightness of component connections, prevent loosening and falling off, and ensure the overall structural stability and reliability. Adjustable telescopic feet are installed between the support base and the waterproof padding layer, which can flexibly adjust the support height and tilt angle to adapt to roofs with different slopes, solving the installation adaptation problem on complex roofs. The locking buckles at the connection can lock the position of the feet and prevent unexpected displacement. An inclined support rod is installed on the outside of the longitudinal support column to distribute longitudinal forces and enhance anti-tipping ability. Waterproof cover plates are installed at the joints to block rainwater and prevent component corrosion. The U-shaped groove on the upper side of the transverse beam, combined with pipe clamps, can firmly clamp the electromechanical pipes, and the rubber buffer layer inside the clamps can alleviate vibration and protect the outer wall of the pipes. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a roof waterproof gantry bracket in one embodiment of the present invention; Figure 2 This is a frontal perspective three-dimensional structural diagram of a roof waterproof gantry bracket according to one embodiment of the present invention. Figure 3 This is a side-view perspective view of a roof waterproof gantry bracket according to one embodiment of the present invention.

[0015] Explanation of icon numbers: 10. Stand base; 11. Magnetic block; 12. Elastic buckle; 20. Adjust the telescopic outriggers; 21. Tighten the latches; 30. Waterproof padding layer on the base; 40. Longitudinal support column; 41. Diagonal support rod; 42. Joint waterproof cover plate; 50. Horizontal beam; 51. U-shaped groove; 52. Mechanical and electrical pipes; 53. Pipe clamps; 54. Rubber buffer layer. Detailed Implementation

[0016] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.

[0017] The illustrations provided in this embodiment are only schematic representations of the basic concept of this utility model. Therefore, the drawings only show the components related to this utility model and are not drawn according to the actual number, shape and size of the components. In actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0018] It should be noted that the core defect of an existing roof waterproofing gantry bracket is that the easy-to-assemble building structure reinforcement device relies on bolts or welding connections, making subsequent disassembly and maintenance inconvenient and unable to adapt to roofs of different angles. This results in complex operation, long time consumption, and easy damage to the waterproofing layer, affecting the roof waterproofing effect. To address this, a roof waterproofing gantry bracket is proposed, comprising a bracket base 10 with positioning holes; adjustable telescopic legs 20 installed on the lower side of the bracket base 10; a base waterproofing layer 30 installed on the lower side of the adjustable telescopic legs 20; a longitudinal support column 40 installed on the upper side of the bracket base 10; and a transverse beam 50 installed on the upper side of the longitudinal support column 40.

[0019] In one embodiment, a locking buckle 21 is installed at the connection between the adjustable telescopic support leg 20 and the waterproof padding layer 30 of the base.

[0020] In one embodiment, an inclined support rod 41 is installed on the outer side of the longitudinal support column 40. One end of the inclined support rod 41 is connected to the longitudinal support column 40, and the other end can be adapted to the support base 10 or the roof structure. The triangular support structure disperses the vertical pressure and lateral force borne by the longitudinal support column 40, preventing the longitudinal support column 40 from tilting or bending due to uneven force, and enhancing the support strength of the longitudinal support column 40.

[0021] In one embodiment, a waterproof cover plate 42 is installed at the connection between the longitudinal support column 40 and the transverse beam 50. The waterproof cover plate 42 can completely cover the connection gap between the longitudinal support column 40 and the transverse beam 50, preventing rainwater, dust and other impurities from entering the interior of the connection, preventing the components from rusting due to water accumulation in the gap, and protecting the magnetic block 11 and the elastic buckle 12 at the connection to avoid moisture failure and extend the service life of the connection structure.

[0022] In one embodiment, a U-shaped slot 51 is provided on the upper side of the transverse beam 50, and an electromechanical conduit 52 is installed on the upper side of the U-shaped slot 51. The U-shaped slot 51 can be designed to fit the outer diameter of the electromechanical conduit 52, providing a stable placement slot for the electromechanical conduit 52, preventing the electromechanical conduit 52 from rolling or shifting on the transverse beam 50, ensuring that the electromechanical conduit 52 is always in the preset installation position, and providing a precise reference for subsequent fixing.

[0023] In one embodiment, a pipe clamp 53 is installed at the connection between the transverse beam 50 and the U-shaped slot 51. A rubber buffer layer 54 is installed on the inner side of the pipe clamp 53. The pipe clamp 53 can further clamp and fix the electromechanical pipe 52 in the U-shaped slot 51 to prevent the electromechanical pipe 52 from loosening due to vibration or external force. The inner rubber buffer layer 54 can form a buffer between the pipe clamp 53 and the electromechanical pipe 52, which can not only prevent the metal clamp from directly squeezing and damaging the outer wall of the pipe, but also absorb the vibration generated by the electromechanical pipe 52 during operation and reduce noise transmission.

[0024] In one embodiment, magnetic blocks 11 are installed at the connection points between the support base 10 and the longitudinal support column 40, the longitudinal support column 40 and the transverse beam 50, and the transverse beam 50 and the electromechanical pipeline 52.

[0025] In one embodiment, elastic buckles 12 are installed at the connection points between the support base 10 and the longitudinal support column 40, the longitudinal support column 40 and the transverse beam 50, and the transverse beam 50 and the electromechanical pipeline 52.

[0026] In one embodiment, see Figure 1 and Figure 2 The coordination between the adjustable telescopic support leg 20, the locking buckle 21, and the waterproof padding layer 30 of the base: When adapting to roofs with different angles, the length of the telescopic support leg 20 is first adjusted so that the support base 10 reaches the angle suitable for the roof slope. After the angle is adjusted, the waterproof padding layer 30 of the base first adheres to the roof to provide waterproof buffering. At this time, the locking buckle 21 installed at the connection between the adjustable telescopic support leg 20 and the waterproof padding layer 30 of the base is engaged, locking the position of the adjustable telescopic support leg 20 to prevent it from shifting under force. This ensures that the waterproof padding layer 30 of the base is always tightly attached to the roof and maintains the overall angular stability of the support, thus completing the roof angle adaptation and structural fixation.

[0027] In one embodiment, the magnetic block 11 cooperates with the support base 10, the longitudinal support column 40, the transverse beam 50, and the electromechanical conduit 52 as follows: During the assembly stage of each component, the magnetic block 11 is respectively installed at the connection points between the support base 10 and the longitudinal support column 40, the longitudinal support column 40 and the transverse beam 50, and the transverse beam 50 and the electromechanical conduit 52. Utilizing the magnetic attraction properties of the magnetic block 11, adjacent components can be quickly aligned without repeated manual calibration, directly providing precise initial positioning for each connection point, laying the foundation for the subsequent installation of the elastic buckle 12, significantly shortening assembly time and improving assembly efficiency.

[0028] In another embodiment, see Figure 3 The elastic buckle 12 works in conjunction with the magnetic block 11 and other connecting components: After the magnetic block 11 completes the precise positioning of each connection point, the elastic buckle 12 is installed at the corresponding connection points between the bracket base 10 and the longitudinal support column 40, the longitudinal support column 40 and the transverse beam 50, and the transverse beam 50 and the electromechanical pipe 52. The elastic buckle 12 engages with the gaps between the components through its own elastic deformation, firmly fixing the positioned components. This compensates for the deficiency of the magnetic block 11, which relies solely on magnetic attraction and is prone to loosening under long-term stress. Ultimately, this ensures a firm connection between the bracket base 10, the longitudinal support column 40, the transverse beam 50, and the electromechanical pipe 52, avoiding the risk of detachment during use.

[0029] In summary, the roof waterproof gantry bracket of this utility model, through the coordinated action of the telescopic support legs 20, locking buckles 21, magnetic blocks 11 and elastic buckles 12, can respectively achieve flexible adaptation to the roof angle, stable locking of the support leg position and precise positioning and firm connection of each component, ultimately achieving reliable installation of the bracket on roofs with different slopes and safe support function for electromechanical pipelines.

[0030] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0031] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A roof waterproof gantry bracket, characterized in that, include: The bracket base (10) is provided with positioning holes; Adjust the telescopic support leg (20) and install it on the lower side of the bracket base (10); A waterproof base pad (30) is installed on the underside of the adjustable telescopic support (20); A longitudinal support column (40) is mounted on the upper side of the support base (10); A transverse beam (50) is installed on the upper side of the longitudinal support column (40).

2. The roof waterproofing gantry bracket according to claim 1, characterized in that, A locking buckle (21) is installed at the connection between the adjustable telescopic support leg (20) and the waterproof padding layer (30) of the base.

3. A roof waterproofing gantry bracket according to claim 1, characterized in that, An oblique support rod (41) is installed on the outside of the longitudinal support column (40).

4. A roof waterproofing gantry bracket according to claim 1, characterized in that, A waterproof cover plate (42) is installed at the connection between the longitudinal support column (40) and the transverse beam (50).

5. A roof waterproofing gantry bracket according to claim 1, characterized in that, A U-shaped slot (51) is provided on the upper side of the transverse beam (50), and an electromechanical conduit (52) is installed on the upper side of the U-shaped slot (51).

6. A roof waterproofing gantry bracket according to claim 5, characterized in that, A pipe clamp (53) is installed at the connection between the transverse beam (50) and the U-shaped groove (51), and a rubber buffer layer (54) is installed on the inner side of the pipe clamp (53).

7. A roof waterproofing gantry bracket according to claim 5, characterized in that, Magnetic blocks (11) are installed at the connection points between the support base (10) and the longitudinal support column (40), the longitudinal support column (40) and the transverse beam (50), and the transverse beam (50) and the electromechanical pipeline (52).

8. A roof waterproofing gantry bracket according to claim 5, characterized in that, The connection points between the support base (10) and the longitudinal support column (40), the longitudinal support column (40) and the transverse beam (50), and the transverse beam (50) and the electromechanical pipeline (52) are equipped with elastic buckles (12).