Foam concrete long-distance conveying pipe bracket
By designing a long-distance foamed concrete conveying pipe support bracket and utilizing angle and height adjustment mechanisms to ensure a tight fit between the pipe support and the pumping pipeline, the problem of existing supports failing to fit tightly is solved, reducing the risk of pipe blockage and bursting, and improving construction efficiency and safety.
Patent Information
- Application Number
- CN202423252258.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing foamed concrete conveying supports cannot fit tightly against the pumping pipeline, making them prone to displacement and collisions, which can lead to the risk of pipe blockage and bursting. Furthermore, they cannot be adjusted to a uniform height, making operation inconvenient.
A long-distance foam concrete conveying pipe support bracket was designed, which includes a pipe support, a base, a height adjustment mechanism, and an angle adjustment mechanism. The angle adjustment mechanism ensures that the pipe support fits tightly with the pumping pipeline, and the height adjustment mechanism adapts to different construction site conditions.
It effectively limits the lateral and longitudinal displacement of pipelines, reduces the risk of pipe blockage and bursting, improves construction efficiency and safety, adapts to different construction sites and pipeline shapes, and has a simple structure that is easy to operate and maintain.
Smart Images

Figure CN223498927U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of pipeline support technology, and more specifically, to a foamed concrete long-distance conveying pipe support. Background Technology
[0002] Foamed concrete is widely used in construction, tunnels, bridges, highways, and other fields due to its advantages such as light weight, good thermal insulation, low water absorption, and convenient construction. It is commonly used for roadbed widening, abutment backfilling, pipeline filling, roof slopes, sports fields, and athletic tracks. However, due to site constraints, foamed concrete construction often uses pump-pipe transportation to assist in pouring. When transporting foamed concrete over long distances in tunnels, pipelines, and tracks, pipe supports are often required. In locations with longitudinal or transverse slopes, existing foamed concrete transport supports cannot fit tightly with the pumping pipeline, causing pipeline displacement and collisions with the supports. This affects the pumping pressure of the foamed concrete inside the pipeline, posing a construction hazard of pipe blockage and bursting. Furthermore, existing supports cannot be adjusted to a uniform height, making operation inconvenient.
[0003] Therefore, there is an urgent need for a long-distance foamed concrete conveying support system that can fit tightly with the pipeline through a freely movable pipe support, restricting pipeline displacement, reducing vibration, and avoiding pipe blockage and bursting. The height can also be adjusted when the longitudinal and transverse slopes of the construction site are large. Utility Model Content
[0004] To overcome the above shortcomings, this application proposes a foamed concrete long-distance conveying pipe support bracket, which allows for flexible angle adjustment to better fit the pipe support with the conveying pipeline, effectively limiting the lateral and longitudinal displacement of the pipeline.
[0005] In a first aspect, this application provides a long-distance foamed concrete conveying pipe support bracket, including a pipe support, a base, and a height adjustment mechanism disposed on the base, and further including:
[0006] An angle adjustment mechanism is connected at one end to the height adjustment mechanism and at the other end to the bottom of the pipe support. The angle adjustment mechanism is used to allow the pipe support to freely rotate and fit tightly against the pumping pipeline.
[0007] This application provides a foamed concrete long-distance conveying pipe support, which effectively solves the problems of existing foamed concrete conveying supports failing to fit tightly against the pumping pipeline and being prone to displacement and collision. Furthermore, through the combined use of height and angle adjustment mechanisms, the height and angle of the support can be flexibly adjusted. In practical applications, the support can be quickly installed and adjusted, improving construction efficiency, avoiding collisions between the pipeline and the support, reducing the risk of pipe blockage and bursting, and adapting to different construction sites and pipeline shapes. The structure is simple, easy to operate and maintain, and improves the convenience and safety of construction.
[0008] Furthermore, this application also proposes that the angle adjustment mechanism includes a connecting part and a spherical body, and the angle adjustment mechanism is connected to the tube support through the connecting part.
[0009] This application provides a long-distance foamed concrete conveying pipe support bracket. The connecting part is the connection component between the angle adjustment mechanism and the pipe support, while the spherical body allows the connecting part to rotate freely in multiple directions. The design of the connecting part allows it to connect to the bottom of the pipe support, enabling quick installation and disassembly. This design also facilitates the replacement of the angle adjustment mechanism between different pipe supports, improving the versatility and maintenance convenience of the support.
[0010] Furthermore, this application also proposes that the bottom of the connecting part is a spherical shell opening, and the spherical body can freely rotate within the spherical shell opening.
[0011] This application provides a foamed concrete long-distance conveying pipe support bracket. This spherical design provides multiple degrees of freedom of rotation, allowing the pipe support to be precisely adjusted according to the actual position and angle of the pumping pipeline. The spherical body can rotate freely within the opening of the spherical shell, thereby enabling the pipe support to rotate freely in the horizontal plane. It can adapt to pipelines in different directions, such as pipelines that bend upwards, downwards, or make horizontal turns, and can ensure a tight fit between the pipe support and the pipeline, effectively limiting the displacement of the pipeline.
[0012] Furthermore, this application also proposes that the top end of the connecting part is provided with a bolt hole so that the angle adjustment mechanism is connected to the pipe support by bolts.
[0013] This application provides a long-distance foamed concrete conveying pipe support bracket, which can easily connect the angle adjustment mechanism to the pipe support, ensuring the stability and reliability of the connection, facilitating maintenance and component replacement, and adjusting the tightness of the connection by adjusting the tightness of the bolts to adapt to the needs of different construction sites.
[0014] Furthermore, this application also proposes that the spherical body includes a sphere and a screw, wherein the sphere is fitted into the opening of the spherical shell.
[0015] This application provides a foamed concrete long-distance conveying pipe support bracket. A sphere rotates freely within the opening of the spherical shell, guiding the pipe support's free rotation. This adapts to pipes in different directions, such as those bending upwards, downwards, or horizontally, preventing the sphere from detaching from the connection. The fit between the sphere and the shell opening ensures a tight fit between the pipe support and the pipe, effectively limiting pipe displacement. It also withstands significant loads and wear, improving the support's durability.
[0016] Furthermore, this application also proposes that the angle adjustment mechanism is connected to the height adjustment mechanism via the screw and nut.
[0017] This application provides a foamed concrete long-distance pipeline support bracket. Through the use of screws and nuts, it not only achieves precise height adjustment but also enhances the overall stability of the bracket, ensuring that it will not move unexpectedly during pipeline transportation. The screw and nut combination allows for precise height adjustment by the height adjustment mechanism to adapt to different construction site conditions. The screw and nut connection provides stable structural support, ensuring the stability and reliability of the bracket under various construction conditions.
[0018] Furthermore, this application also proposes that the height adjustment mechanism includes an inner sleeve and an outer sleeve, and the height of the bracket is adjusted by changing the distance between the inner sleeve and the outer sleeve.
[0019] This application provides a foamed concrete long-distance conveying pipe support bracket, which allows users to adjust the height of the support by adjusting the distance between the inner sleeve and the outer sleeve, thereby adapting to different construction sites and pipeline layouts. With the height adjustment, it ensures smooth flow of foamed concrete in the pipeline and overcomes problems such as uneven terrain at the construction site.
[0020] Furthermore, this application also proposes that the inner sleeve is connected to the screw, and the outer sleeve is fixed to the base.
[0021] Furthermore, this application also proposes that the base is provided with a stiffening plate, and the stiffening plate is welded to the outer sleeve.
[0022] By specially designing stiffening plates on the base, the structural stability and load-bearing capacity of the entire long-distance foamed concrete conveying pipe support are enhanced, increasing the rigidity and strength of the base and thus improving the overall stability of the support. The outer sleeve, as part of the height adjustment mechanism, is fixed to the base and connected to the stiffening plate by welding. This ensures that during pipeline transportation, even under heavy loads, the stiffening plate and outer sleeve maintain a stable connection, preventing relative displacement of the pipe support and guaranteeing the stability of the foamed concrete pumping pipeline.
[0023] Furthermore, this application also proposes that the top surface of the pipe support is provided with a rubber patch for cushioning vibration.
[0024] Beneficial Effects: This application provides a long-distance foamed concrete conveying pipe support bracket, including a pipe support, a base, a height adjustment mechanism, and an angle adjustment mechanism. The height adjustment mechanism is mounted on the base and is used to adjust the height of the bracket to adapt to different construction sites. One end of the angle adjustment mechanism is connected to the height adjustment mechanism, and the other end is connected to the bottom of the pipe support, allowing the pipe support to rotate freely and fit tightly against the pumping pipeline. One of the key innovations of this application is the angle adjustment mechanism, which allows the pipe support to rotate freely and fit tightly against the pumping pipeline to adapt to different construction site conditions, especially locations with longitudinal and transverse slopes. The design of the angle adjustment mechanism improves the flexibility and adaptability of the long-distance foamed concrete conveying pipe support bracket. Flexible angle adjustment allows for better fitting of the pipe support to the conveying pipeline, effectively limiting the lateral and longitudinal displacement of the pipeline, better adapting to the pipe support bracket, and, in conjunction with height adjustment, ensuring smooth flow of foamed concrete within the pipeline and preventing blockages and pipe bursts. Attached Figure Description
[0025] Figure 1 This is a structural schematic diagram of a long-distance foamed concrete conveying pipe support provided in this application.
[0026] Figure 2 This application provides a schematic diagram showing the connection between the connecting part of a long-distance foamed concrete conveying pipe support and the spherical main body.
[0027] Figure 3 A schematic diagram of the spherical main body of a long-distance foamed concrete conveying pipe support provided in this application.
[0028] In the diagram: 1. Pipe support; 2. Base; 3. Height adjustment mechanism; 4. Angle adjustment mechanism; 5. Connecting part; 6. Spherical shell opening; 7. Bolt hole; 8. Sphere; 9. Screw; 10. Nut; 11. Inner sleeve; 12. Outer sleeve; 13. Stiffening plate. Detailed Implementation
[0029] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and marked in the accompanying drawings can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely represents selected embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0030] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0031] In existing technologies, foamed concrete conveying supports cannot fit tightly against the pumping pipeline, are prone to displacement and collisions, leading to pressure imbalances in the pumping pipeline and problems such as pipe blockage and bursting. To solve this problem, [the following is a proposed solution]. Figure 1 This application proposes a long-distance foamed concrete conveying pipe support, comprising a pipe support 1, a base 2, a height adjustment mechanism 3, and an angle adjustment mechanism 4. The height adjustment mechanism 3 is mounted on the base 2 and is used to adjust the height of the support to adapt to different construction sites. One end of the angle adjustment mechanism 4 is connected to the height adjustment mechanism 3, and the other end is connected to the bottom of the pipe support 1, allowing the pipe support 1 to freely rotate and closely fit the pumping pipeline. One of the key innovations of this application is the angle adjustment mechanism 4, which allows the pipe support 1 to freely rotate and closely fit the pumping pipeline to adapt to different construction site conditions, especially locations with longitudinal and transverse slopes. The design of the angle adjustment mechanism 4 improves the flexibility and adaptability of the long-distance foamed concrete conveying pipe support, effectively preventing pipeline displacement and vibration, thereby reducing the risk of pipe blockage and bursting.
[0032] In practical applications, the height of the support is first adjusted using the height adjustment mechanism 3 to adapt to different construction site conditions. Then, the angle adjustment mechanism 4 allows the pipe support 1 to freely rotate and fit tightly against the pumping pipeline. This design greatly simplifies the installation and adjustment process of the support, improves construction efficiency, adapts to different pipeline angles and slopes, and ensures a tight fit between the pipe support 1 and the pipeline, thereby reducing pipeline displacement and vibration, and lowering the risk of pipe blockage and bursting. The support of this application also has the advantage of rapid installation and disassembly, simplifying the on-site installation and adjustment process, improving construction efficiency, and adapting to pipelines of different shapes and orientations, as well as different construction sites. The height and angle adjustment mechanisms ensure a tight fit between the pipe support 1 and the pumping pipeline, effectively limiting pipeline displacement and improving the stability of foamed concrete pumping.
[0033] Specifically, refer to Figure 2 The angle adjustment mechanism 4 includes a connecting part 5 and a spherical body. The design of the connecting part 5 allows it to connect to the bottom of the pipe support 1, which allows for quick installation and disassembly of the angle adjustment mechanism 4 and the pipe support 1. It also facilitates the replacement of the angle adjustment mechanism 4 between pipe supports 1 used in different conveying parts, thus improving the versatility and maintenance convenience of the support.
[0034] In practical applications, the connecting part 5 can be designed as a tubular structure, with both ends connected to the height adjustment mechanism 3 and the tube support 1, respectively. This design simplifies the structure and reduces costs. Alternatively, the connecting part 5 can be designed as a plate-like structure, with one end connected to the height adjustment mechanism 3 and the other end connected to the tube support 1. This design increases the strength of the connecting part 5 and improves its stability.
[0035] In a preferred embodiment, the connecting part 5 can be designed as a ball joint structure, which allows the pipe support 1 to rotate freely and adapt to pipes in different directions. Specifically, the bottom of the connecting part 5 is a spherical shell opening 6, within which the spherical body can freely rotate. The top of the connecting part 5 is provided with a bolt hole 7, allowing the angle adjustment mechanism 4 to be bolted to the pipe support 1. The function of the connecting part 5 is to connect the angle adjustment mechanism 4 and the pipe support 1 to form a whole. The material of the connecting part 5 can be selected according to actual needs. For example, metal can provide high strength and rigidity, suitable for applications with large loads. Plastic can reduce weight and cost, suitable for applications with smaller loads. The connection method of the connecting part 5 can be selected according to actual needs. For example, welding can provide high strength and rigidity, suitable for permanent connections. Bolted connections can facilitate disassembly and installation, suitable for detachable connections. Adhesive bonding can reduce weight and cost, suitable for applications with smaller loads.
[0036] The spherical body allows the pipe support 1 to rotate freely and fit tightly against the pumping pipeline. Specifically, refer to... Figure 3 The spherical body comprises a sphere 8 and a screw 9. The sphere 8 engages with the spherical shell opening 6 of the connecting part 5, allowing the spherical body to rotate freely within the opening 6. This spherical design provides multiple degrees of freedom of rotation, allowing the pipe support 1 to be precisely adjusted according to the actual position and angle of the pumping pipeline. The screw 9 connects the angle adjustment mechanism 4 and the height adjustment mechanism 3. The spherical body can also employ a spherical universal joint, providing a wider range of rotation angles suitable for more complex pipe shapes. The spherical body can be made of metal or plastic. Metal spherical bodies offer higher strength and rigidity, suitable for applications bearing larger loads. Plastic spherical bodies reduce weight and cost, suitable for applications bearing smaller loads.
[0037] The spherical opening 6 can accommodate the sphere 8. The shape and size of the spherical opening 6 match the sphere 8, allowing the sphere 8 to rotate freely within it, thereby guiding the pipe support 1 to rotate freely. This adapts to pipes in different directions, such as pipes that bend upwards, downwards, or horizontally, preventing the sphere 8 from detaching from the connection part 5. The fit between the sphere 8 and the spherical opening 6 ensures a tight fit between the pipe support 1 and the pipe, effectively limiting pipe displacement, and also allows it to withstand greater loads and wear, improving the durability of the support.
[0038] In summary, the connecting part 5 and the spherical body together constitute the angle adjustment mechanism 4, enabling the pipe support 1 to freely rotate and allowing it to fit tightly against the pumping pipeline. This effectively limits the lateral and longitudinal displacement of the pipeline, preventing blockages and bursts. It can adapt to different pipeline angles and slopes, ensuring a tight fit between the pipe support 1 and the pipeline. This tight fit reduces pipeline displacement and vibration, lowering the risk of blockages and bursts.
[0039] Furthermore, the top of the connecting part 5 is provided with a bolt hole 7. This design allows for a quick and secure connection between the angle adjustment mechanism 4 and the pipe support 1 via bolts. The connecting part 5 is typically made of a robust material to ensure it can withstand the necessary forces during pipeline transport. The bolt hole 7, a feature of the top of the connecting part 5, is used to pass a bolt through to secure the angle adjustment mechanism 4 to the pipe support 1. In practical applications, the design of the bolt hole 7 makes the connection and adjustment between the angle adjustment mechanism 4 and the pipe support 1 quick and easy. Bolting ensures the stability of the connection and the safety during pipeline transport. The bolted connection allows for multiple disassemblies and reinstallations, improving the reusability of the support and reducing maintenance costs. The design of the bolt hole 7 allows the angle adjustment mechanism 4 to be compatible with pipe supports 1 of different models and sizes, improving the adaptability of the support.
[0040] The bolt hole 7 at the top of the connecting part 5 is an important design feature of this application. It provides a fast, stable and flexible connection method for the support of the long-distance foam concrete conveying pipe, ensuring the efficiency and safety of pipeline transportation.
[0041] Furthermore, the angle adjustment mechanism 4 is connected to the height adjustment mechanism 3 via a screw 9 and a nut 10. This connection allows the angle adjustment mechanism 4 and the height adjustment mechanism 3 to be integrated as a whole, and allows the angle adjustment mechanism 4 to rotate freely on the height adjustment mechanism 3. By rotating the nut 10, the length of the screw 9 can be adjusted, thereby adjusting the relative position between the angle adjustment mechanism 4 and the height adjustment mechanism 3 to accommodate pipes of different heights. In addition, the connection of the screw 9 and the nut 10 provides high connection strength, ensuring the stability and reliability of the connection. The screw 9 and the nut 10 can withstand greater loads and wear, improving the durability of the support.
[0042] When the height of the support needs to be adjusted to adapt to different construction sites, the height adjustment mechanism 3 is first used to align the overall height of the support with the approximate height of the pumping pipeline. Then, the nut 10 is rotated, causing the screw 9 to move along its axis, thereby raising or lowering the angle adjustment mechanism 4 to ensure the pipe support 1 is fully aligned with the pumping pipeline. Once the desired height is reached, the nut 10 is tightened to lock the position of the screw 9, ensuring that the angle adjustment mechanism 4 will not shift due to external forces. After fixing, the angle adjustment mechanism 4 can flexibly adjust the angle of the pipe support 1 by freely rotating the connecting part 5 and the spherical body to adapt to different pipeline angles and slopes. The combined use of the screw 9 and nut 10 not only achieves precise height adjustment but also enhances the stability of the entire support, ensuring that the support will not move unexpectedly during pipeline transportation. The combined use of the screw 9 and nut 10 allows for precise height adjustment of the support to adapt to different construction site conditions.
[0043] The design of screw 9 and nut 10 allows for easy inspection and maintenance, reducing long-term operating costs. The connection between screw 9 and nut 10 allows the angle adjustment mechanism 4 and height adjustment mechanism 3 to be integrated, enabling the angle adjustment mechanism 4 to rotate freely on the height adjustment mechanism 3, thereby achieving height and angle adjustment of the pipe support 1. The connection between the angle adjustment mechanism 4 and the height adjustment mechanism 3 via screw 9 and nut 10 provides an efficient, stable, and flexible support adjustment solution for this application, ensuring efficient and safe pipeline transportation.
[0044] Furthermore, in some preferred embodiments, the height adjustment mechanism 3 includes an inner sleeve 11 and an outer sleeve 12, and the height of the bracket is adjusted by changing the distance between the inner sleeve 11 and the outer sleeve 12. The inner sleeve 11 is connected to the screw 9, and the outer sleeve 12 is fixed to the base 2.
[0045] The height adjustment mechanism 3 is a key component that allows the support for the long-distance foamed concrete delivery pipe to adapt to different construction site heights. The inner sleeve 11 is a vertically movable part of the height adjustment mechanism 3 and is connected to the screw 9. The outer sleeve 12 is a fixed part of the height adjustment mechanism 3, which is fixed to the base 2 and provides guidance and support for the inner sleeve 11.
[0046] The height of the support is adjusted by the relative movement of the inner sleeve 11 and the outer sleeve 12. The outer sleeve 12 is fixed to the base 2, providing stable guidance for the movement of the inner sleeve 11. This design ensures the stability and reliability of the support during height adjustment. Specifically, the extension or retraction of the support is achieved by the up-and-down movement of the inner sleeve 11. In practice, the movement of the inner sleeve 11 can be manual or achieved through hydraulic or mechanical devices such as gears or electric motors. In some preferred embodiments, a hydraulic lifting device can be installed inside the support to control the up-and-down movement of the inner sleeve 11. It can also remotely control the uniform height adjustment of all supports on the construction site. Once the inner sleeve 11 reaches the required height, it can be locked in place by a controller, thus fixing the position of the inner sleeve 11.
[0047] The design of the inner sleeve 11 and outer sleeve 12 allows for flexible height adjustment of the height adjustment mechanism 3 to adapt to different construction site conditions. The fixed design of the outer sleeve 12 provides stable support, ensuring the stability of the support during height adjustment. Precise height adjustment can be achieved through the simple cooperation of the inner sleeve 11 and outer sleeve 12, making operation simple and quick. The height of the support can be adjusted according to actual needs, adapting to different construction sites and pipeline layouts. The cooperation of the inner sleeve 11 and outer sleeve 12 ensures the stability of the support, preventing swaying during height adjustment.
[0048] Furthermore, in some preferred embodiments, the base 2 is provided with stiffening plates 13, which are welded to the outer sleeve 12 to enhance the stability of the support. This design can enhance the strength and rigidity of the base 2, increase the contact area and structural stability of the base 2, improve the strength of the base 2 so that it can withstand greater loads, improve the stability of the support, and enable the base 2 to better withstand vertical and horizontal forces from the pipe and the support. The number of stiffening plates 13 can be 2, 4, or 6, such as... Figure 1 As shown, the stiffening plate 13 can be a right-angled triangular metal plate, with its two right-angled sides welded to the base 2 and the outer sleeve 12 respectively, to provide the most stable support function.
[0049] Furthermore, welding provides higher connection strength, ensuring stability and reliability. Welded connections offer greater connection stiffness, reducing deformation at the connection point and thus improving the stability of the support. This connection method ensures that the stiffening plate 13 and the outer sleeve 12 remain stably connected and do not experience relative displacement during pipeline transportation, even under heavy loads. By welding the stiffening plate 13, the overall load-bearing capacity of the base 2 is improved, which is particularly important for supporting heavy pipelines. During pipeline transportation, the stiffening plate 13 helps reduce support displacement caused by pipeline vibration, thereby protecting the pipeline and support from damage. The durability of welded structures is superior to bolted connections or other mechanical connection methods, especially in harsh construction environments. By installing the stiffening plate 13 on the base 2 and welding it to the outer sleeve 12, the strength and stiffness of the base 2 are enhanced, improving the stability of the support.
[0050] Furthermore, in some preferred embodiments, a rubber patch is provided on the top surface of the pipe support 1 to buffer vibration. This design can reduce the vibration generated by the pumping pipeline during the transportation of foamed concrete, protect the pumping pipeline, and improve construction safety. The rubber patch can absorb the vibration generated by the pumping pipeline during the transportation of foamed concrete, reducing the impact of vibration on the pumping pipeline. The rubber patch can reduce the friction between the pumping pipeline and the pipe support 1, preventing wear or damage to the pumping pipeline. Reducing vibration can also reduce the risk of pumping pipeline breakage or leakage, improving construction safety. The material of the rubber patch can be natural rubber, which has good elasticity and wear resistance, and can effectively buffer vibration. It can also be synthetic rubber, which can be customized according to different needs, such as high temperature resistance and corrosion resistance. The shape and size of the rubber patch can be designed according to actual needs, providing uniform support, suitable for various shapes of pipe supports 1, and can be adjusted according to the shape of the pipe support 1 to provide better support effect, thereby effectively buffering vibration, protecting the pumping pipeline, and improving construction safety.
[0051] Through the above design, the foamed concrete long-distance conveying pipe support proposed in this application supports the conveying pipeline through a rotatable angle adjustment mechanism 4 and a pipe support 1, allowing the pipe support 1 to flexibly adjust its angle to fit the pipeline. It also includes a rubber patch on the pipe support 1, a support base 2, and a height adjustment mechanism 3 connecting the rotatable angle adjustment mechanism 4 and the base 2. This restricts pump pipe displacement, reduces vibration of the pumping pipeline, better adapts to the pipe support support, and, with height adjustment, ensures smooth flow of foamed concrete within the pipeline, preventing blockages and pipe bursts. This effectively solves the problems of existing foamed concrete conveying supports failing to fit tightly to the pumping pipeline and being prone to displacement and collisions. Simultaneously, the combined use of the height adjustment mechanism 3 and the angle adjustment mechanism 4 enables flexible adjustment of the support's height and angle, improving construction convenience and safety. It can effectively adapt to different construction site conditions, ensuring the safety and efficiency of pipeline conveying. Rapid adjustment of height and angle reduces construction preparation time and improves construction efficiency. The tightly fitting pipe support 1 reduces pipeline displacement and vibration, lowering construction risks such as blockages and pipe bursts. The foamed concrete long-distance conveying pipe support of this application can adapt to various complex construction site conditions, including different slopes and angles, which improves the versatility of the support, makes it easy to maintain and replace, and reduces long-term operating costs.
[0052] The above description is merely an embodiment of this application and is not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.
Claims
1. A support bracket for a long-distance conveying pipe of foamed concrete, comprising a pipe support (1), a base (2), and a height adjustment mechanism (3) disposed on the base (2), characterized in that, Also includes: An angle adjustment mechanism (4) is connected at one end to the height adjustment mechanism (3) and at the other end to the bottom of the pipe support (1). The angle adjustment mechanism (4) is used to allow the pipe support (1) to freely rotate and fit tightly with the pumping pipeline.
2. The foamed concrete long-distance conveying pipe support according to claim 1, characterized in that, The angle adjustment mechanism (4) includes a connecting part (5) and a spherical body. The angle adjustment mechanism (4) is connected to the tube support (1) through the connecting part (5).
3. The foamed concrete long-distance conveying pipe support according to claim 2, characterized in that, The bottom of the connecting part (5) is a spherical shell opening (6), and the spherical body can freely rotate within the spherical shell opening (6).
4. A support bracket for a long-distance conveying pipe of foamed concrete according to claim 2, characterized in that, The top of the connecting part (5) is provided with a bolt hole (7) so that the angle adjustment mechanism (4) and the tube support (1) are connected by bolts.
5. A support bracket for a long-distance foamed concrete conveying pipe according to claim 3, characterized in that, The spherical body includes a sphere (8) and a screw (9), and the sphere (8) is fitted into the opening (6) of the spherical shell.
6. A support bracket for a long-distance foamed concrete conveying pipe according to claim 5, characterized in that, The angle adjustment mechanism (4) is connected to the height adjustment mechanism (3) via the screw (9) and nut (10).
7. A support bracket for a long-distance foamed concrete conveying pipe according to claim 6, characterized in that, The height adjustment mechanism (3) includes an inner sleeve (11) and an outer sleeve (12), and the height of the bracket is adjusted by changing the distance between the inner sleeve (11) and the outer sleeve (12).
8. A support bracket for a long-distance foamed concrete conveying pipe according to claim 7, characterized in that, The inner sleeve (11) is connected to the screw (9), and the outer sleeve (12) is fixed to the base (2).
9. A support bracket for a long-distance conveying pipe of foamed concrete according to claim 8, characterized in that, The base (2) is provided with a stiffening plate (13), which is welded to the outer sleeve (12).
10. A support bracket for a long-distance conveying pipe of foamed concrete according to claim 1, characterized in that, The top surface of the tube support (1) is provided with a rubber patch for cushioning vibration.