Novel assembly type I-shaped steel beam hoisting support with channel steel auxiliary beam
Through the combination of channel steel auxiliary beams and connecting fixtures and I-shaped steel beams, the prefabricated installation of pipeline brackets is realized, which solves the high-strength and harmful smoke problems caused by welding, reduces labor intensity and environmental impact, and is suitable for installation of a variety of mechanical and electrical pipelines.
Patent Information
- Application Number
- CN202422546141.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-22
AI Technical Summary
In the prior art, the installation of pipeline brackets requires welding, resulting in high labor intensity, complex installation process and harmful smoke and dust, affecting the environment and physical health.
The channel steel auxiliary beam and connecting fixtures are combined with the I-shaped steel beam to achieve prefabricated installation of the pipeline bracket through disassembly and connection, avoid welding, reduce labor intensity and harmful smoke and dust.
It simplifies the construction process, reduces labor costs, improves installation efficiency, is suitable for a variety of mechanical and electrical pipes, reducing the danger of high-altitude operations and environmental pollution.
Smart Images

Figure CN223137191U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of pipe supports, and more specifically, to a new type of assembled I-beam lifting support with channel steel auxiliary beams. Background Art
[0002] The mechanical and electrical pipe support is a structural member used for supporting mechanical and electrical pipes laid overhead on the ground. Pipe supports are used wherever pipes are laid and are also known as pipe supports, pipe parts, etc. Traditional supports generally use welded angle steels and are installed after precise on-site measurement.
[0003] In some hollow spanning areas of a building, where a concrete structural beam cannot be used, and an I-beam is used as the building structural beam, which is called an I-beam. An I-beam is a long steel bar with an I-shaped cross-section. When installing the mechanical and electrical pipe support in these hollow areas, since there is no stress point at the support base, the traditional method mostly uses welding a steel auxiliary beam under the I-beam and welding the support on the steel auxiliary beam. This method requires workers to complete construction operations such as support welding and anti-corrosion of the welding area at high altitude. When laying and installing pipes using such an installation method, it increases the labor intensity of the installation workers, and they also need to carry welding equipment for support installation. The installation process of the pipe support is complex, and harmful smoke and dust are also generated during welding, which not only affects the environment but also has a certain impact on the health of the installation workers. Summary of the Invention
[0004] In order to overcome the existing deficiencies, the embodiments of this application provide a new type of assembled I-beam lifting support with channel steel auxiliary beams, which can solve the problems that when welding the pipe support and then laying and installing the pipes, it increases the labor intensity of the installation workers, and they also need to carry welding equipment for support installation. The installation process of the pipe support is complex, and harmful smoke and dust are also generated during welding, which not only affects the environment but also has a certain impact on the health of the installation workers.
[0005] The technical solution adopted by the embodiments of this application to solve its technical problems is: a new type of assembled I-beam lifting support with channel steel auxiliary beams, including a channel steel support and an I-beam.
[0006] The pipe body is carried inside the channel steel support. The two top ends of the channel steel support are detachably connected with channel steel auxiliary beams. Connection and fixing parts are arranged on the channel steel auxiliary beams, and the connection and fixing parts are detachably connected to the transverse plates on both sides of the bottom end of the I-beam.
[0007] In a specific implementation scheme, the connection and fixing parts include a U-shaped support clamp and a fixing plate. The fixing plate is arranged at the transverse plates on both sides of the bottom end of the I-beam, and both ends of the U-shaped support clamp sequentially penetrate through the transverse plates and the fixing plate on both sides of the bottom end of the I-beam and are screwed with fastening nuts.
[0008] In a specific embodiment, the fixing plate is a steel plate with a zigzag structure.
[0009] In a specific embodiment, external threads matching with the fastening nuts are provided at both top ends of the U-shaped supporting clip.
[0010] In a specific embodiment, the channel steel bracket includes a channel steel column, a channel steel cross beam and a bracket base. The pipe body is placed on the channel steel cross beam. The bottom end of each channel steel column is respectively connected to the channel steel cross beams on both sides of the pipe body, and the bracket bases are respectively connected to the top end of the channel steel column and the channel steel auxiliary beam.
[0011] In a specific embodiment, the bracket base is connected to the channel steel auxiliary beam through a wing nut and a bolt.
[0012] In a specific embodiment, the channel steel column and the channel steel cross beam are jointly connected by a connecting bolt.
[0013] In a specific embodiment, through holes matching with the U-shaped supporting clip are provided on the bottom transverse plate of the I-shaped steel beam and the fixing plate.
[0014] The advantages of the embodiments of the present application are as follows:
[0015] The bracket assembled in the present application is made of channel steel. The channel steel bracket, the channel steel auxiliary beam and the connecting and fixing parts are all uniformly produced by the factory according to high-standard processes. The construction workers cut and assemble according to the on-site installation requirements. It is a bracket form that does not require welding. The operators do not need to perform high-altitude operations such as welding and anti-corrosion, reducing the labor intensity of the operators, not generating harmful fumes, and being applicable to the installation of multiple organic electric pipelines, with strong applicability. And the present application adopts assembled installation, simplifies the construction process and reduces the labor cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic structural diagram of the overall installation of the novel assembled I-shaped steel beam hoisting bracket with a channel steel auxiliary beam provided by the embodiment of the present application;
[0017] Figure 2 It is a schematic side view structural diagram of the novel assembled I-shaped steel beam hoisting bracket with a channel steel auxiliary beam provided by the embodiment of the present application;
[0018] Figure 3 It is a schematic structural diagram of the connection relationship between the channel steel auxiliary beam, the I-shaped steel beam and the connecting and fixing parts provided by the embodiment of the present application;
[0019] Figure 4 It is a schematic structural diagram of the connecting and fixing part provided by the embodiment of the present application;
[0020] Figure 5 Schematic diagram of the channel steel support structure provided by the embodiment of the present application.
[0021] In the figure: 1 - pipeline body; 2 - channel steel support; 21 - channel steel column; 22 - channel steel crossbar; 23 - support base; 3 - I-beam; 4 - channel steel auxiliary beam; 5 - connection and fixing parts; 51 - U-shaped supporting clip; 52 - fixing plate; 53 - fastening nut. Specific implementation manners
[0022] The technical solution in the embodiment of the present application is to solve the problems that when welding the pipeline support and then laying and installing the pipeline, it increases the labor intensity of the installation workers, and it is also necessary to carry welding equipment for the installation of the support. The installation process of the pipeline support is complex, and harmful fumes are also generated during welding, which not only affects the environment but also has a certain impact on the health of the installation workers. The general idea is as follows:
[0023] Please refer to Figures 1 - 5 , a new type of assembled I-beam hoisting support with a channel steel auxiliary beam, including a channel steel support 2 and an I-beam 3.
[0024] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5, a pipe body 1 is supported inside a channel steel support 2. Channel steel auxiliary beams 4 are detachably connected to both top ends of the channel steel support 2. Specifically, the channel steel auxiliary beams 4 are made of channel steel, and their models are selected according to the weight of the pipe body 1, and their lengths are driven according to the installation length of the pipe body 1. The notch of the channel steel auxiliary beam 4 faces downward. Connection and fixing members 5 are arranged on the channel steel auxiliary beams 4. Specifically, the models of the connection and fixing members 5 are determined according to the sizes of the I-shaped steel beams 3 and the models of the channel steel auxiliary beams 4, and their quantities are determined according to the quantities of the I-shaped steel beams 3. The connection and fixing members 5 are detachably connected to the cross plates on both sides of the bottom end of the I-shaped steel beam 3. Among them, first arrange the pipe body 1, then determine the model of the pipe body 1, then determine the weight of the pipe body 1 according to the model of the pipe body 1, and then select appropriate I-shaped steel beams 3, channel steel supports 2 and channel steel auxiliary beams 4 according to the weights of the respective pipe bodies 1. Then install the channel steel auxiliary beams 4 under the I-shaped steel beams 3 through the connection and fixing members 5, and then install the channel steel supports 2 on the channel steel auxiliary beams 4 to complete the assembly of the supports for the pipe body 1. The support assembled in this application is made of channel steel. The channel steel support 2, the channel steel auxiliary beam 4 and the connection and fixing members 5 are all uniformly produced by the factory according to high-standard processes. Construction workers cut and assemble according to the on-site installation requirements. It is a support form that does not require welding. The operating workers do not need to perform welding, anti-corrosion and other high-altitude operations, reducing the labor intensity of the operating workers, not generating harmful soot, and being applicable to the installation of multiple organic electrical pipelines, with strong applicability. And this application adopts assembled installation, simplifies the construction process, and reduces the labor cost.
[0025] The connection and fixing member 5 includes a U-shaped supporting clip 51 and a fixing plate 52. The fixing plate 52 is arranged at the cross plates on both sides of the bottom end of the I-shaped steel beam 3. The channel steel auxiliary beam 4 is located inside the U-shaped supporting clip 51, and both ends of the U-shaped supporting clip 51 sequentially penetrate through the cross plates on both sides of the bottom end of the I-shaped steel beam 3 and the fixing plate 52 and are screwed with fastening nuts 53. The fixing plate 52 is a steel plate with a zigzag structure. Specifically, the degree of zigzag of the fixing plate 52 is determined according to the size of the I-shaped steel beam 3. Due to the zigzag setting, a part of the fixing plate 52 is located on the I-shaped steel beam 3 and a part is located on the channel steel auxiliary beam 4. External threads matching the fastening nuts 53 are provided at both top ends of the U-shaped supporting clip 51. Through holes matching the U-shaped supporting clip 51 are provided on the bottom cross plate of the I-shaped steel beam 3 and the fixing plate 52. Among them, during installation, first place the fixing plate 52 on the I-shaped steel beam 3, then hold the channel steel auxiliary beam 4 with the U-shaped supporting clip 51, then sequentially pass the top end of the U-shaped supporting clip 51 through the through holes and expose it, and then screw the fastening nut 53 onto the top end of the U-shaped supporting clip 51 to achieve fixation.
[0026] The channel steel support 2 includes a channel steel column 21, a channel steel cross beam 22 and a support base 23. The pipeline body 1 is supported on the channel steel cross beam 22. Specifically, the model of the channel steel support 2 is selected according to the weight and model of the pipeline body 1. The length of the channel steel column 21 is determined according to the distance between the bottom of the pipeline body 1 and the channel steel auxiliary beam 4, and the length of the channel steel cross beam 22 is determined according to the width of the pipeline body 1. The bottom end of each channel steel column 21 is respectively connected to the channel steel cross beams 22 on both sides of the pipeline body 1, and the support bases 23 are respectively connected to the top end of the channel steel column 21 and the channel steel auxiliary beam 4. The support base 23 is connected to the channel steel auxiliary beam 4 through a wing nut and a bolt. The channel steel column 21 and the channel steel cross beam 22 are jointly connected by a connecting bolt. Among them, through the cooperation of the wing nut and the bolt, the connection between the channel steel auxiliary beam 4 and the channel steel column 21 is realized, and the connection between the channel steel column 21 and the channel steel cross beam 22 is realized through the connecting bolt.
[0027] When this application is in use:
[0028] First, arrange the pipeline body 1, then determine the model of the pipeline body 1, then determine the weight of the pipeline body 1 according to the model of the pipeline body 1, and then select appropriate I-shaped steel beams 3, channel steel supports 2 and channel steel auxiliary beams 4 according to the weights of the respective pipeline bodies 1. Then install the channel steel auxiliary beam 4 under the I-shaped steel beam 3 through the connecting and fixing parts 5, and then install the channel steel support 2 on the channel steel auxiliary beam 4, and the assembly of the support for the pipeline body 1 can be completed. The support assembled in this application is made of channel steel. The channel steel support 2, the channel steel auxiliary beam 4 and the connecting and fixing parts 5 are all uniformly produced by the factory according to high-standard processes. Construction workers cut and assemble according to the on-site installation requirements. It is a support form that does not require welding. The operating workers do not need to perform high-altitude operations such as welding and anti-corrosion, reducing the labor intensity of the operating workers, not generating harmful smoke and dust, and being applicable to the installation of multiple organic and electrical pipelines, with strong applicability. And this application adopts assembled installation, simplifies the construction process, and reduces the labor cost.
[0029] In summary, the support assembled in this application is made of channel steel. The channel steel support 2, the channel steel auxiliary beam 4 and the connecting and fixing parts 5 are all uniformly produced by the factory according to high-standard processes. Construction workers cut and assemble according to the on-site installation requirements. It is a support form that does not require welding. The operating workers do not need to perform high-altitude operations such as welding and anti-corrosion, reducing the labor intensity of the operating workers, not generating harmful smoke and dust, and being applicable to the installation of multiple organic and electrical pipelines, with strong applicability. And this application adopts assembled installation, simplifies the construction process, and reduces the labor cost.
[0030] Finally, it should be noted that: Obviously, the above embodiments are merely examples given to clearly illustrate the present invention, rather than limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to enumerate all implementation manners here. And the obvious changes or modifications derived therefrom still fall within the protection scope of the present invention.
Claims
1. A novel hoisting bracket for an assembled I-beam with channel steel secondary beams, characterized in that, Including Channel steel brackets (2) and I-beams (3), a pipeline body (1) is supported inside the channel steel brackets (2), channel steel auxiliary beams (4) are detachably connected to both top ends of the channel steel brackets (2), connection and fixing parts (5) are arranged on the channel steel auxiliary beams (4), and the connection and fixing parts (5) are detachably connected to the transverse plates on both sides of the bottom end of the I-beam (3).
2. The novel hoisting support for fabricated I-shaped steel beams with channel steel secondary beams as claimed in claim 1, wherein The connection and fixing parts (5) include U-shaped supporting clips (51) and fixing plates (52), the fixing plates (52) are arranged at the transverse plates on both sides of the bottom end of the I-beam (3), the channel steel auxiliary beams (4) are located inside the U-shaped supporting clips (51), and both ends of the U-shaped supporting clips (51) sequentially penetrate through the transverse plates on both sides of the bottom end of the I-beam (3) and the fixing plates (52) and are screwed with fastening nuts (53).
3. The novel hoisting support for the fabricated I-shaped steel beam with channel steel secondary beams as claimed in claim 2, wherein, The fixing plates (52) are steel plates with a zigzag structure.
4. The novel hoisting support for the fabricated I-shaped steel beam with channel steel secondary beams according to claim 2, characterized in that, External threads matching with the fastening nuts (53) are provided at both top ends of the U-shaped supporting clips (51).
5. The novel hoisting support for an assembled I-shaped steel beam with channel steel secondary beams as claimed in claim 1, wherein, The channel steel brackets (2) include channel steel columns (21), channel steel crossbeams (22) and bracket bases (23), the pipeline body (1) is supported on the channel steel crossbeams (22), the bottom ends of each channel steel column (21) are respectively connected to the channel steel crossbeams (22) on both sides of the pipeline body (1), and the bracket bases (23) are respectively connected to the top ends of the channel steel columns (21) and the channel steel auxiliary beams (4).
6. The novel hoisting support for fabricated I-shaped steel beams with channel steel secondary beams as claimed in claim 5, wherein, The bracket bases (23) are connected to the channel steel auxiliary beams (4) through wing nuts and bolts.
7. The novel hoisting bracket for fabricated I-shaped steel beams with channel steel secondary beams as claimed in claim 5, characterized in that, The channel steel columns (21) and the channel steel crossbeams (22) are jointly connected with connection bolts.
8. The novel hoisting bracket for an assembled I-beam with channel steel secondary beams as claimed in claim 2, wherein Penetration ports matching with the U-shaped supporting clips (51) are provided on the bottom transverse plates of the I-beam (3) and the fixing plates (52).