A support hanger for combined pipeline installation
By combining multiple pipeline support arms and various mounting bases on the supports and hangers, the problems of poor versatility and inconvenient adjustment of existing supports and hangers in the installation of multiple pipelines of different types and specifications are solved, achieving efficient space utilization and structural stability, and improving the flexibility of pipeline layout and installation efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO QINGTIE ENVIRONMENTAL PROTECTION TECH CO LTD
- Filing Date
- 2025-09-10
- Publication Date
- 2026-07-24
AI Technical Summary
Existing pipe supports and hangers have problems such as poor versatility, inconvenient adjustment, low space utilization and insufficient structural stability in pipeline installation, especially in the installation of multiple pipelines of different types and specifications and complex layout scenarios.
The design incorporates multiple pipeline support arms and various mounting brackets, including adjustable double-clamp long pipeline mounting brackets, adjustable single-clamp pipeline mounting brackets, fixed double-clamp pipeline mounting brackets, and U-shaped clamp mounting brackets. Combined with a fastening groove design, it enables the coordinated installation of multiple pipelines of different types and specifications. Furthermore, the four-sided enclosed steel profile enhances the structural strength and resistance to deformation.
It improves the flexibility of pipeline layout and space utilization, enhances the adaptability and installation efficiency of different pipelines, solves the problems of poor versatility and inconvenient adjustment of traditional supports and hangers, and ensures the stability and load-bearing capacity of the structure.
Smart Images

Figure CN224550980U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of support and hanger technology, specifically a support and hanger for the coordinated installation of combined pipelines. Background Technology
[0002] In pipeline systems in fields such as construction, chemical engineering, and power, it is often necessary to simultaneously lay multiple pipelines of different types and specifications (such as water pipes, cable pipes, and air ducts). The coordinated installation of such combined pipelines relies on support structures to achieve stable support and orderly arrangement. In existing technologies, the supports for combined pipelines are mostly single structures or customized designs, and have significant shortcomings.
[0003] Traditional pipe support brackets have fixed types of pipe mounting seats, which can only be adapted to pipes of specific diameters or types. When the pipe specifications change, the entire pipe support bracket component needs to be replaced, which increases installation costs and has limited adaptability. The connection position between the pipe support arm and the main beam, and the fixing position of the mounting seat on the support arm are usually preset hole positions, which are difficult to adjust flexibly according to the on-site pipe layout. Especially in complex pipe intersections or densely arranged scenarios, installation interference problems are likely to occur.
[0004] Among these issues, the existing support arms are mostly extended on one side or in one direction. The connection structure between the main beam and the support arm restricts the arrangement of multi-layer and multi-directional pipelines, resulting in a large space occupation for the pipeline system, which is not conducive to compact installation in confined environments. At the same time, the connection between the mounting base and the support arm, and between the support arm and the main beam of traditional supports is mostly fixed by bolts, which requires a lot of drilling or alignment operations on the installation site. In addition, different types of pipelines need to be equipped with special fixing components, resulting in complicated construction procedures and low assembly efficiency. Some supports use open-type steel sections as main beams or support arms. When bearing the weight of multiple pipelines or subjected to vibration loads, they are prone to deformation due to insufficient structural strength, which affects the long-term stability of the pipeline system.
[0005] In the current engineering field, the demand for the installation of combined pipelines is constantly increasing. It is necessary to adapt to various pipeline types, achieve flexible adjustment of installation positions, and ensure space utilization and structural stability. Existing supports and hangers can no longer meet these core requirements. Utility Model Content
[0006] The purpose of this invention is to provide a structurally stable and multifunctional support bracket for the coordinated installation of combined pipelines, addressing the above-mentioned problems.
[0007] To achieve the above objectives, this utility model discloses a support bracket for the coordinated installation of combined pipelines, including a main beam. Its structural feature is that the main beam is provided with multiple pipeline support arms, each pipeline support arm having multiple fastening grooves arranged along its length. Each pipeline support arm is provided with at least one pipeline mounting seat, including adjustable double-clamp long pipeline mounting seats, adjustable single-clamp pipeline mounting seats, fixed double-clamp pipeline mounting seats, and U-shaped clamp-type mounting seats.
[0008] With the above structure, multiple pipeline support arms are installed on the main beam, and multiple fastening grooves are installed on the support arms along the length direction. In conjunction with various mounting seats such as adjustable double-clamp long pipeline mounting seats, adjustable single-clamp pipeline mounting seats, fixed double-clamp pipeline mounting seats, and U-shaped clamp mounting seats, multiple pipelines of different types and specifications can be installed together. The combination of various mounting seats can effectively improve the adaptability to different pipelines. The fastening groove design makes it easy to flexibly adjust the position of the mounting seat on the support arm, so as to solve the problems of poor versatility and inconvenient adjustment of traditional supports and hangers, thereby improving the flexibility of pipeline layout and space utilization.
[0009] Preferably, the main beam is a closed-section steel beam with four sides closed. Each of the four side walls of the main beam has a through-type bracket mounting groove along its length. A first connecting and fixing plate is provided at the upper end of the main beam. The main beam is vertically fixed to the side wall of the first connecting and fixing plate. The length and width of the main beam's cross-section are smaller than the length and width of the first connecting and fixing plate. The first connecting and fixing plate has multiple fixing holes. By using a closed-section steel beam with four sides closed, the structural strength and deformation resistance are significantly improved compared to open-section steel beams, enhancing the overall load-bearing capacity. The bracket mounting grooves on the four side walls allow for the installation of pipeline support brackets from multiple directions, expanding the spatial dimension of pipeline layout. The design of the first connecting and fixing plate and the fixing holes facilitates a stable connection between the main beam and the external structure, and the larger plate size disperses the stress, improving installation stability.
[0010] Preferably, the pipeline support bracket is a closed-section steel frame enclosed on four sides and vertically mounted on the main beam. The pipeline support bracket includes four sides, each with a fastening groove extending along its length. The opening width of the fastening groove is smaller than the bottom width. By using a closed-section steel frame enclosed on four sides, the structural strength of the pipeline support bracket is ensured, enabling it to stably support the weight of multiple pipelines. The fastening grooves on all four sides allow the mounting base to be installed and fixed in four directions, further increasing the versatility of pipeline layout. The design of the groove opening width being smaller than the bottom width allows for secure clamping with fasteners such as T-bolts, preventing the mounting base from falling off, and also facilitates sliding adjustment along the groove, improving installation efficiency.
[0011] Preferably, the pipeline support arm is a closed-section steel with four sides, and a fastening groove is provided on one of the opposite side walls of the pipeline support arm along the length of the pipeline support arm. The width of the groove opening is smaller than the width of the groove bottom. By using a closed-section steel with four sides, the structural strength and load-bearing capacity are ensured. The fastening grooves on the opposite side walls not only meet the adjustment requirements of the mounting base but also simplify the support arm manufacturing process, are suitable for installing small pipes, and save space. The design of the groove opening width being smaller than the groove bottom width allows for a stable connection and flexible adjustment between the mounting base and the support arm, balancing structural stability and installation convenience.
[0012] Preferably, the adjustable double-clamp long pipeline mounting base includes a first mounting base plate and two limiting slides disposed on the upper surface of the first mounting base plate. A first positioning slide plate that slides along the extension direction of the limiting slides is clamped between the two limiting slides. Two adjustable support columns are disposed on the upper surface of the first positioning slide plate at intervals along the length direction of the first positioning slide plate. A first pipe clamp is disposed at the upper end of each adjustable support column for fastening the pipe body. T-bolts that pass through the plate body from the bottom are disposed at positions near the front and rear ends of the first mounting base plate. By cooperating with the limiting slide and the first positioning slide, the position of the first positioning slide moves along the extension direction of the slide, thereby driving the two adjustable pillars above and the corresponding first pipe clamps to adjust their lateral positions simultaneously. This effectively avoids other structures in the pipeline installation area and reduces installation interference between different pipelines. The two adjustable pillars are pre-spaced along the length of the first positioning slide and are designed with adjustable height. This allows for precise adjustment of the vertical height of each first pipe clamp through the threaded structure, adapting to the installation height requirements of pipelines with different diameters. The double-clamp layout can also stably fix two pipelines at the same time, avoiding space waste when fixing a single pipeline. The T-bolts at both ends of the first mounting base plate and the fastening grooves of the pipeline support arm form a matching clamp, enabling quick positioning and fixing of the mounting base on the support arm without on-site drilling.
[0013] Preferably, the sliding direction of the first positioning slide plate is perpendicular to the length extension direction of the pipeline support arm. The bottom of the first mounting base plate is provided with a first locking groove along its length. The width of the first locking groove is adapted to the width of the pipeline support arm. The adjustable support column includes a first threaded cylinder vertically connected to the first positioning slide plate. A threaded post is provided inside the first threaded cylinder in a vertical direction. The other end of the threaded post is provided with a second threaded cylinder connected to the first pipe clamp. The sliding direction of the first positioning slide plate, perpendicular to the length direction of the support arm, allows the pipeline fixing position to be adjusted in a direction perpendicular to the support arm, facilitating avoidance of other pipelines and reducing installation interference. The matching width of the first locking groove to the support arm increases the connection stability between the mounting base and the support arm. The adjustable support column achieves height adjustment through the cooperation of the threaded cylinder and the threaded post, with high adjustment accuracy and reliable fixation, further improving installation flexibility.
[0014] Preferably, the adjustable single-clamp pipeline mounting base includes a second mounting base plate and two limiting slides disposed on the upper surface of the second mounting base plate. A sliding base that slides along the extension direction of the limiting slides is clamped between the two limiting slides. A second pipe clamp is provided at the upper end of the sliding base for fastening the pipe body. T-bolts passing through the bottom of the plate are provided at the front and rear ends of the second mounting base plate. The sliding base includes a sliding base plate disposed between the two limiting slides. Two spaced vertical plates and a horizontal plate connected between the two vertical plates are vertically connected to the upper surface of the sliding base plate. The two vertical plates are spaced apart along the width direction of the sliding base plate. Through the cooperation of the limiting slides and the sliding base, the position adjustment of a single pipe clamp is realized to adapt to different installation position requirements of a single pipeline. The strip-shaped stop design of the sliding base ensures that it slides stably in the slides without falling off. The T-bolts cooperate with the fastening groove of the support arm to facilitate quick fixing and adjustment of the mounting base. The structure is simple and highly adaptable.
[0015] Preferably, the sliding direction of the second mounting base is perpendicular to the length extension direction of the pipeline support arm. The bottom of the second mounting base is provided with a second locking groove extending along its length, and the width of the second locking groove is adapted to the width of the pipeline support arm. By sliding the base perpendicular to the length of the support arm, the fixed position of a single pipeline can be flexibly adjusted in a direction perpendicular to the support arm, facilitating optimized pipeline layout. The matching width of the second locking groove to the support arm enhances the connection stability between the mounting base and the support arm, preventing loosening of the mounting base due to pipeline vibration.
[0016] Preferably, the fixed double-clamp pipeline mounting base includes two spaced-apart vertical connecting plates and a horizontal connecting plate connected between the two vertical connecting plates. Each of the two vertical connecting plates has a fixed connecting plate perpendicular to the vertical connecting plates on its outer side wall. Each fixed connecting plate has a T-bolt passing through the plate body from its bottom. Two third pipe clamps are connected to the upper end between the two vertical connecting plates, spaced apart along the length direction of the vertical connecting plates. The length direction of the vertical connecting plates is perpendicular to the length direction of the pipeline support arm. The double pipe clamp design of the fixed double-clamp pipeline mounting base can stably fix thicker pipelines; the T-bolts cooperate with the fastening grooves of the support arm to achieve rapid fixing of the mounting base; the overall structure forms a stable support through the vertical connecting plates, horizontal connecting plates, and fixed connecting plates, providing strong load-bearing capacity and convenient installation.
[0017] Preferably, the U-shaped clamp-type mounting base includes two L-shaped fasteners and a U-shaped clamp body connecting the two L-shaped fasteners of the connecting beam. The U-shaped clamp body has a U-shaped structure, and the two vertical rods of the U-shaped clamp body pass through the horizontal plates of the two L-shaped fasteners from top to bottom. Fastening nuts are provided on the two vertical rods of the U-shaped clamp body, and T-bolts passing through the vertical plates of the two L-shaped fasteners are provided. Through the cooperation of the U-shaped clamp body and the fastening nuts, a ring-shaped fixation can be formed for the pipeline, providing a reliable fixing effect, especially suitable for pipelines with circular cross-sections. The T-bolts on the L-shaped fasteners cooperate with the fastening grooves of the support arm, facilitating the adjustment and fixation of the mounting base on the support arm. The overall structure is simple, easy to install and disassemble, and highly adaptable to pipelines of different diameters.
[0018] In summary, the beneficial effects of this utility model are as follows: This utility model has a stable structure and diverse functions. By setting multiple pipeline support arms on the main beam and setting multiple fastening grooves along the length direction on the support arms, and in conjunction with various mounting seats such as adjustable double-clamp long pipeline mounting seats, adjustable single-clamp pipeline mounting seats, fixed double-clamp pipeline mounting seats, and U-shaped clamp mounting seats, it is possible to achieve the coordinated installation of multiple pipelines of different types and specifications. The combined use of various mounting seats can effectively improve the adaptability to different pipelines, and the fastening groove design makes it easy to flexibly adjust the position of the mounting seats on the support arms, so as to solve the problems of poor versatility and inconvenient adjustment of traditional supports and hangers, thereby improving the flexibility of pipeline layout and space utilization. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the adjustable double-clamp long pipeline mounting base and the U-shaped clamp mounting base of this utility model installed in the fastening groove; Figure 3This is a schematic diagram of the adjustable single-clamp pipeline mounting base and the fixed double-clamp pipeline mounting base of this utility model installed in the fastening groove. Figure 4 This is a schematic diagram of the main structure of the adjustable double-clamp long pipeline mounting base of this utility model; Figure 5 This is a side view of the adjustable double-clamp long pipeline mounting base of this utility model. Figure 6 This is a schematic diagram of the main structure of the adjustable single-clamp pipeline mounting base of this utility model; Figure 7 This is a side view of the adjustable single-clamp pipeline mounting base of this utility model. Figure 8 This is a schematic diagram of the main structure of the fixed double-clamp pipeline mounting base of this utility model; Figure 9 This is a side view of the fixed double-clamp pipeline mounting base of this utility model. Figure 10 This is a schematic diagram of the main structure of the U-shaped clamp mounting base of this utility model; Figure 11 This is a side view of the U-shaped clamp mounting base of this utility model. Figure 12 This is a top view of the structure of the pipeline support arm with two fastening grooves of this utility model.
[0020] In the diagram: 1. Main beam; 2. Pipeline support bracket; 3. Fastening groove; 4. Adjustable double-clamp long pipeline mounting base; 5. Adjustable single-clamp pipeline mounting base; 6. Fixed double-clamp pipeline mounting base; 7. U-shaped clamp mounting base; 8. Support arm mounting groove; 9. First connecting fixing plate; 11. First mounting base plate; 12. Limiting slide; 13. First positioning slide plate; 14. Adjustable support column; 15. First pipe clamp; 16. T-bolt; 17. First clamping groove; 18. First threaded cylinder; 19. Threaded column; 20. Second threaded cylinder; 21. Second mounting base plate; 22. Sliding base; 23. Second pipe clamp; 24. Second clamping groove; 25. Vertical connecting plate; 26. Horizontal connecting plate; 27. Fixed connecting plate; 28. Third pipe clamp; 29. L-shaped fastener; 30. U-shaped clamp body; 31. Fastening nut. Detailed Implementation
[0021] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0022] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0023] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly, for example, they can refer to a fixed connection, a detachable connection, or an integral connection. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0024] The following is a description of preferred embodiments of the present invention in conjunction with the accompanying drawings.
[0025] like Figure 1 and Figure 2 As shown, this utility model includes a main beam 1, on which multiple pipeline support arms 2 are provided. The main beam 1 is designed as a closed-section steel beam with four sides closed. Each of the four side walls of the main beam 1 has a through-type support arm mounting groove 8 along its length. A first connecting and fixing plate 9 is provided at the upper end of the main beam 1. The main beam 1 is vertically fixed to the side wall of the first connecting and fixing plate 9. The length and width of the cross-section of the main beam 1 are smaller than the length and width of the first connecting and fixing plate 9. Multiple fixing holes are provided on the first connecting and fixing plate 9. By using a closed-section steel beam with four sides closed, the structural strength and deformation resistance are significantly improved compared to open-section steel beams, enhancing the overall load-bearing capacity. The support arm mounting grooves 8 on the four side walls allow the pipeline support arms 2 to be installed from multiple directions, expanding the spatial dimension of pipeline arrangement. The design of the first connecting and fixing plate 9 and the fixing holes facilitates a stable connection between the main beam 1 and the external structure, and the larger plate size disperses the stress, improving installation stability.
[0026] like Figure 1 - Figure 3 as well as Figure 12As shown, the pipeline support bracket 2 is provided with multiple fastening grooves 3 arranged along the length of the pipeline support bracket 2. The pipeline support bracket 2 is a closed-section steel with four closed sides and is vertically installed on the main beam 1. Usually, one end of the pipeline support bracket 2 is vertically connected to a plate with the same structure as the first connecting fixing plate 9. The pipeline support bracket 2 is fixed to the bracket mounting groove 8 by T-bolts 16. The pipeline support bracket 2 includes four sides, and each side is provided with a fastening groove 3 arranged along the length of the pipeline support bracket 2. The groove opening width of the fastening groove 3 is smaller than the groove bottom width. In this way, the pipeline support bracket 2 adopts a four-sided... The closed-end steel structure ensures its structural strength and can stably support the weight of multiple pipelines. The fastening grooves 3 on all four sides allow the mounting base to be installed and fixed in four directions of the support arm, further increasing the diversity of pipeline layout. The design of the groove opening width being smaller than the groove bottom width allows for secure clamping with fasteners such as T-bolts 16. During manufacturing, the pipeline support support arm 2 can also be a closed-end steel structure with four sides, and fastening grooves 3 are provided on one of the opposite side walls of the pipeline support support arm 2 along the length of the pipeline support support arm 2. The groove opening width of the fastening groove 3 is smaller than the groove bottom width. The pipeline support bracket 2 is made of closed-section steel with four sides closed, which ensures structural strength and load-bearing capacity. The fastening grooves 3 on the opposite side walls not only meet the adjustment requirements of the mounting base, but also simplify the processing technology of the support bracket and are suitable for installing small pipes, while saving space. Of course, in order to prevent the pipeline support bracket 2 installed on the main beam 1 and the pipeline mounting base on the pipeline support bracket 2 from moving, multiple positioning through holes are set at intervals along the length of the groove on the bottom of the bracket mounting groove 8 and the fastening groove 3. Bolts can be inserted into the positioning through holes to further position the pipeline support bracket 2 and the pipeline mounting base.
[0027] like Figure 1 - Figure 3 As shown, at least one pipeline mounting seat is provided on each pipeline support arm 2. The pipeline mounting seats include adjustable double-clamp long pipeline mounting seat 4, adjustable single-clamp pipeline mounting seat 5, fixed double-clamp pipeline mounting seat 6, and U-shaped clamp mounting seat 7. In this way, multiple mounting seats can be used to achieve the coordinated installation of multiple pipelines of different types and specifications. The combination of multiple mounting seats can effectively improve the adaptability to different pipelines. The design of the fastening groove 3 makes it easy for the mounting seat to be flexibly adjusted on the support arm, so as to solve the problems of poor universality and inconvenient adjustment of traditional supports and hangers, thereby improving the flexibility of pipeline layout and space utilization.
[0028] like Figure 1 , Figure 2 , Figure 4 as well as Figure 5As shown, the adjustable double-clamp long pipeline mounting base 4 includes a first mounting base plate 11 and two limiting slides 12 provided on the upper surface of the first mounting base plate 11. A first positioning slide plate 13 that slides along the extension direction of the limiting slides 12 is clamped between the two limiting slides 12. Two adjustable support columns 14 that are spaced apart along the length direction of the first positioning slide plate 13 are provided on the upper surface of the first positioning slide plate 13. A first pipe clamp 15 for fastening the pipe body is provided at the upper end of each adjustable support column 14. T-bolts 16 that pass through the plate body from the bottom are provided at the positions near the front and rear ends of the first mounting base plate 11. In this way, the limiting slide 12 and the first positioning slide 13 cooperate to move the position of the first positioning slide 13 along the extension direction of the slide, thereby driving the two adjustable support columns 14 above and the corresponding first pipe clamps 15 to adjust their lateral positions simultaneously, effectively avoiding other structures in the pipeline installation area and reducing installation interference between different pipelines; the two adjustable support columns 14 are pre-spaced along the length of the first positioning slide 13 and are designed with adjustable height, which can not only accurately adjust the vertical height of each first pipe clamp 15 through the threaded structure to adapt to the installation height requirements of pipelines with different diameters, but also stabilize two pipelines at the same time with the double clamp layout, avoiding the waste of space when fixing a single pipeline; the T-bolts 16 at both ends of the first mounting base plate 11 and the fastening grooves 3 of the pipeline support arm 2 form a matching snap-fit, which can realize the quick positioning and fixing of the mounting seat on the support arm without drilling on site. During manufacturing, the sliding direction of the first positioning slide plate 13 is perpendicular to the length extension direction of the pipeline support arm 2. The bottom of the first mounting base plate 11 is provided with a first mounting groove 17 extending along its length. The width of the first mounting groove 17 is adapted to the width of the pipeline support arm 2. The adjustable support column 14 includes a first threaded cylinder 18 vertically connected to the first positioning slide plate 13. The first threaded cylinder 18 contains a vertically threaded post 19, and at the other end of the threaded post 19 is a second threaded cylinder 20 connected to the first pipe clamp 15. The sliding direction of the first positioning slide plate 13, perpendicular to the length direction of the support arm, allows the pipeline fixing position to be adjusted in a direction perpendicular to the support arm, facilitating avoidance of other pipelines and reducing installation interference. The first mounting groove 17 is adapted to the width of the support arm, increasing the connection stability between the mounting base and the support arm. The adjustable support column 14 achieves height adjustment through the cooperation of the threaded cylinder and the threaded post 19, providing high adjustment accuracy and reliable fixation, further enhancing installation flexibility.
[0029] like Figure 1 , Figure 3 , Figure 6 as well as Figure 7As shown, the adjustable single-clamp pipeline mounting base 5 includes a second mounting base plate 21 and two limiting slides 12 disposed on the upper surface of the second mounting base plate 21. A sliding base 22 that slides along the extension direction of the limiting slides 12 is clamped between the two limiting slides 12. A second pipe clamp 23 for fastening the pipe body is provided at the upper end of the sliding base 22. T-bolts 16 that pass through the bottom of the plate are provided at the positions near the front and rear ends of the second mounting base plate 21. In the design, the sliding base 22 includes a sliding base plate disposed between the two limiting slides 12. Two vertical plates and a horizontal plate connected between the two vertical plates are vertically connected to the upper surface of the sliding base plate. The two vertical plates are spaced apart along the width direction of the sliding base plate. By cooperating with the limiting slide 12 and the sliding base 22, the position of a single pipe clamp can be adjusted to adapt to different installation positions of a single pipeline. The strip-shaped stop design of the sliding base 22 ensures stable sliding within the slide without falling off. The T-bolt 16 cooperates with the support arm fastening groove 3, facilitating quick fixing and adjustment of the mounting base. The structure is simple and highly adaptable. During manufacturing, the sliding direction of the second mounting base 21 is perpendicular to the length extension direction of the pipeline support arm 2. A second clamping groove 24 is provided at the bottom of the second mounting base 21 along its length direction. The width of the groove 24 is adapted to the width of the pipeline support arm 2. By sliding the sliding base 22 perpendicular to the length direction of the support arm, the fixed position of a single pipeline can be flexibly adjusted in a direction perpendicular to the support arm, which facilitates optimization of pipeline layout. The second clamping groove 24 is adapted to the width of the support arm, enhancing the connection stability between the mounting base and the support arm and preventing the mounting base from loosening due to pipeline vibration.
[0030] like Figure 1 , Figure 3 , Figure 8 as well as Figure 9 As shown, the aforementioned fixed double-clamp pipeline mounting base 6 includes two spaced-apart vertical connecting plates 25 and a horizontal connecting plate 26 connecting the two vertical connecting plates 25. Each of the outer walls of the two vertical connecting plates 25 has a fixed connecting plate 27 perpendicular to the vertical connecting plates 25. Each of the two fixed connecting plates 27 has a T-bolt 16 passing through the bottom of the plate. Two third pipe clamps 28 are connected to the upper end between the two vertical connecting plates 25. The two third pipe clamps 28 are spaced apart along the length of the vertical connecting plates 25, and the length of the vertical connecting plates 25 is perpendicular to the length of the pipeline support arm 2. The double pipe clamp design of the fixed double-clamp pipeline mounting base 6 can stably fix thicker pipelines; the T-bolts 16 cooperate with the fastening grooves 3 of the support arm to achieve rapid fixing of the mounting base; the overall structure forms a stable support through the vertical connecting plates 25, the horizontal connecting plates 26, and the fixed connecting plates 27, providing strong load-bearing capacity and convenient installation.
[0031] like Figure 1 , Figure 2 , Figure 10 as well as Figure 11 As shown, the aforementioned U-shaped clamp mounting base 7 includes two L-shaped fasteners 29 and a U-shaped clamp body 30 connecting the two L-shaped fasteners 29. The U-shaped clamp body 30 has a U-shaped structure, with two vertical rods passing through the horizontal plates of the two L-shaped fasteners 29 from top to bottom. Fastening nuts 31 are installed on the two vertical rods of the U-shaped clamp body, and T-bolts 16 passing through the vertical plates of the two L-shaped fasteners 29 are also provided. Through the cooperation of the U-shaped clamp body and the fastening nuts 31, a ring-shaped fixation can be formed for the pipeline, providing a reliable fixing effect, especially suitable for pipelines with circular cross-sections. The T-bolts 16 on the L-shaped fasteners 29 cooperate with the fastening grooves 3 on the support arm, facilitating the adjustment and fixation of the mounting base on the support arm. The overall structure is simple, easy to install and disassemble, and highly adaptable to pipelines of different diameters. By setting multiple pipeline support arms 2 on the main beam 1 and multiple fastening grooves 3 along the length of the pipeline support arms 2, and cooperating with various mounting seats such as adjustable double-clamp long pipeline mounting seat 4, adjustable single-clamp pipeline mounting seat 5, fixed double-clamp pipeline mounting seat 6, and U-shaped clamp mounting seat 7, multiple pipelines of different types and specifications can be installed together. The combination of various mounting seats can effectively improve the adaptability to different pipelines. The design of the fastening grooves 3 makes it easy to flexibly adjust the position of the mounting seat on the support arm, so as to solve the problems of poor universality and inconvenient adjustment of traditional supports and hangers, thereby improving the flexibility of pipeline layout and space utilization. Of course, the above-mentioned pipe clamps and T-bolts 16 are fixed to the support arm fastening grooves 3 by nuts, which is a known structure and will not be described in detail here.
[0032] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. A support bracket for the coordinated installation of combined pipelines, comprising a main beam (1), characterized in that: The main beam (1) is provided with multiple pipeline support arms (2), and the pipeline support arms (2) are provided with multiple fastening grooves (3) arranged along the length direction of the pipeline support arms (2). Each pipeline support arm (2) is provided with at least one pipeline mounting seat. The pipeline mounting seat includes an adjustable double-clamp long pipeline mounting seat (4), an adjustable single-clamp pipeline mounting seat (5), a fixed double-clamp pipeline mounting seat (6), and a U-shaped clamp mounting seat (7).
2. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The main beam (1) is a closed steel section with four closed sides. The four side walls of the main beam (1) are provided with through bracket mounting grooves (8) along the length direction. The upper end of the main beam (1) is provided with a first connecting fixing plate (9). The main beam (1) is vertically fixed on the side wall of the first connecting fixing plate (9). The length and width of the cross section of the main beam (1) are smaller than the length and width of the first connecting fixing plate (9). The first connecting fixing plate (9) is provided with multiple fixing mounting holes.
3. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The pipeline support bracket (2) is a closed steel section that is closed on all four sides and is vertically installed on the main beam (1). The pipeline support bracket (2) includes four sides and each side is provided with a fastening groove (3) arranged along the length direction of the pipeline support bracket (2). The groove width of the fastening groove (3) is smaller than the groove bottom width.
4. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The pipeline support bracket (2) is a closed steel section with four sides. A fastening groove (3) is provided on one of the opposite side walls of the pipeline support bracket (2) along the length direction of the pipeline support bracket (2). The width of the groove opening of the fastening groove (3) is smaller than the width of the groove bottom.
5. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The adjustable double-clamp long pipeline mounting base (4) includes a first mounting base plate (11) and two limiting slides (12) set on the upper surface of the first mounting base plate (11). A first positioning slide plate (13) that slides along the extension direction of the limiting slides (12) is clamped between the two limiting slides (12). Two adjustable pillars (14) that are spaced apart along the length direction of the first positioning slide plate (13) are set on the upper surface of the first positioning slide plate (13). A first pipe clamp (15) for fastening the pipe body is set at the upper end of each adjustable pillar (14). T-bolts (16) that pass through the plate body from the bottom are provided at the positions of the front and rear ends of the first mounting base plate (11).
6. The support and hanger for coordinated installation of combined pipelines as described in claim 5, characterized in that: The sliding direction of the first positioning slide plate (13) is perpendicular to the length extension direction of the pipeline support arm (2). The bottom of the first mounting base plate (11) is provided with a first clamping groove (17) arranged along the length direction of the first mounting base plate (11). The width of the groove of the first clamping groove (17) is adapted to the width of the pipeline support arm (2). The adjustable support column (14) includes a first threaded cylinder (18) vertically connected to the first positioning slide plate (13). A threaded column (19) is provided in the first threaded cylinder (18) along the vertical direction. The other end of the threaded column (19) is provided with a second threaded cylinder (20) connected to the first pipe clamp (15).
7. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The adjustable single-clamp pipeline mounting base (5) includes a second mounting base plate (21) and two limiting slides (12) set on the upper surface of the second mounting base plate (21). A sliding base (22) that slides along the extension direction of the limiting slides (12) is clamped between the two limiting slides (12). A second pipe clamp (23) for fastening the pipe body is provided at the upper end of the sliding base (22). T-bolts (16) that pass through the plate body from the bottom are provided at the positions of the front and rear ends of the second mounting base plate (21). The sliding base (22) includes a sliding base plate set between the two limiting slides (12). Two vertical plates and a horizontal plate connected between the two vertical plates are vertically connected to the upper surface of the sliding base plate. The two vertical plates are spaced apart along the width direction of the sliding base plate.
8. The support and hanger for coordinated installation of combined pipelines as described in claim 7, characterized in that: The sliding direction of the second mounting base plate (21) is perpendicular to the length extension direction of the pipeline support arm (2). The bottom of the second mounting base plate (21) is provided with a second mounting groove (24) arranged along the length direction of the second mounting base plate (21). The width of the groove of the second mounting groove (24) is adapted to the width of the pipeline support arm (2).
9. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The fixed double-clamp pipeline mounting base (6) includes two vertical connecting plates (25) spaced apart and a horizontal connecting plate (26) connected between the two vertical connecting plates (25). The outer walls of the two vertical connecting plates (25) are provided with fixed connecting plates (27) perpendicular to the vertical connecting plates (25). The two fixed connecting plates (27) are provided with T-bolts (16) passing through the plate body from the bottom. The upper ends of the two vertical connecting plates (25) are connected with two third pipe clamps (28). The two third pipe clamps (28) are spaced apart along the length direction of the vertical connecting plates (25). The length direction of the vertical connecting plates (25) is perpendicular to the length direction of the pipeline support arm (2).
10. The support and hanger for coordinated installation of combined pipelines as described in claim 1, characterized in that: The U-shaped clamp mounting base (7) includes two L-shaped fasteners (29) and a U-shaped clamp body (30) connecting the two L-shaped fasteners (29) of the beam. The U-shaped clamp body (30) has a U-shaped structure. The two vertical rods of the U-shaped clamp body pass through the horizontal plates of the two L-shaped fasteners (29) from top to bottom. Fastening nuts (31) are provided on the two vertical rods of the U-shaped clamp body. T-shaped bolts (16) passing through the vertical plates are provided on the vertical plates of the two L-shaped fasteners (29).