Steadily-connected multi-pipe support
Through the innovative design of the multi-tube support, the use of U-shaped clamps and telescopic structures to buffer vibration, combined with a quick connection and disassembly mechanism, solves the problems of pipe detachment and time-consuming disassembly, achieving stable connection and efficient maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-03-17
AI Technical Summary
Existing multi-tube supports are prone to pipe detachment and leakage after vibration and prolonged use, resulting in loss of overall stability. The disassembly process is time-consuming and labor-intensive, affecting the normal operation of equipment or systems.
The system employs a combination structure of concave blocks, channel steel, nuts, U-shaped clips, a first support ring, a second support ring, and a first spring. Vibration is buffered through the telescopic structure of the U-shaped clips and the inner rod. Combined with the design of connecting blocks, placement slots, a second spring, clip blocks, clip slot blocks, and buckles, the system achieves stable connection and quick disassembly of pipelines.
It effectively prevents pipelines from falling off or being damaged due to vibration, improves the stability and service life of the system, reduces equipment downtime and the physical exertion of staff, and improves maintenance efficiency and quality.
Smart Images

Figure CN224003296U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of multi-tube support technology, and in particular to a multi-tube support with a stable connection. Background Technology
[0002] A robust multi-pipe support is a device used to fix and support multiple pipes, ensuring that the pipes maintain a stable connection and correct position under various operating conditions.
[0003] Strong external vibrations can cause significant displacement and shaking of pipelines. Pipes may slide on supports, and their relative positions may change, leading to collisions or compression, further damaging the pipes and connecting components. This can cause pipes to detach from supports, resulting in system rupture and leaks, and the supports losing overall stability and becoming unable to support the pipelines. Furthermore, after prolonged use, some pipes may age and corrode. Disassembling the pipes may require the use of various tools and a specific sequence to loosen various fixing components, such as bolts and nuts. For multi-pipe supports with numerous pipes, this process can be very time-consuming. The extended disassembly time and high labor intensity can affect the progress of the entire maintenance work, especially in emergency repairs, potentially causing equipment or systems to be unable to return to normal operation for an extended period, resulting in greater losses. Utility Model Content
[0004] The main purpose of this utility model is to provide a stable multi-tube support that can effectively solve the problems of pipes falling off the support, pipe system rupture and leakage, loss of overall stability of the support, inability to continue supporting the pipes, and equipment or system being unable to resume normal operation for a long time, resulting in greater losses.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a stable multi-tube support, comprising a support plate, with recesses threadedly connected to both the left and right sides of the support plate, channel steel provided on the top left and right sides of the two support plates, steel buckles provided on the upper and lower sides of the inner sidewall of each channel steel, a bolt penetrating through the interior of every two steel buckles, a nut threadedly connected to the left end of every two bolts penetrating the left sidewall of the channel steel, the right sidewall of every two nuts being provided on the left sidewall of a channel steel, a first hinge fixedly connected to the bottom of every two bottom steel buckles, each first hinge threadedly connected to the upper sidewall of a recess, and a second hinge fixedly connected to the top of every two top steel buckles.
[0006] Furthermore, U-shaped clips are provided on both the left and right sides of the upper sidewall of the support plate, and a first hinge frame is fixedly connected to the top of each of the two U-shaped clips. An outer rod is provided on the top of each of the two support plates, and a first support ring is fixedly connected to the outer side of the bottom end of each of the two outer rods.
[0007] Furthermore, an inner rod is slidably connected to the bottom end of each of the two outer rods, and a second support ring is fixedly connected to the bottom outer side of each of the two inner rods. A first spring is fixedly connected to the bottom wall of each of the two first support rings and the top wall of each of the two second support rings. A second hinge frame is rotatably connected to the top of each of the two outer rods, and the bottom outer side of each of the two inner rods is connected to the inside of the first hinge frame.
[0008] Furthermore, each of the U-shaped cards is fixedly connected to a connecting block on both the left and right sides, and each connecting block is slidably connected to a button on both the front and back sides. The upper side wall of the support plate is fixedly connected to a card slot block, and the bottom wall of each connecting block is provided with a placement slot.
[0009] Furthermore, each button has a connecting block fixedly connected to its upper and lower sides, a second spring fixedly connected to the rear side wall of each connecting block, four second springs fixedly connected inside the connecting block, and a locking block fixedly connected to the rear side wall of each button.
[0010] Furthermore, each of the four card slot blocks is fixedly connected to a buckle plate, and the interior of each card slot block corresponds to the interior of the placement slot. The holes and slots of each card slot block correspond to every two card blocks.
[0011] Compared with the prior art, the present invention has the following beneficial effects:
[0012] 1. This utility model, through its recessed block, channel steel, nut, U-shaped clamp, first support ring, second support ring, and first spring, solves the problems of pipes detaching from supports, pipe system rupture and leakage, loss of overall support stability, and inability to continue supporting the pipes. The U-shaped clamp tightly embraces the pipe, and its top first hinge frame is connected to the outer side of the bottom end of the inner rod. When the pipe tends to move up and down, the U-shaped clamp transmits force to the inner rod through the first hinge frame. At this time, the telescopic structure formed by the outer rod and inner rod comes into play. The inner rod inside the bottom end of the outer rod can slide freely, and the first spring between them acts as a shock absorber. When an earthquake or other external force causes the pipe to vibrate up and down, the inner rod slides inside the outer rod, and the first spring is compressed or stretched, converting the vibration energy into elastic potential energy for storage, which is then slowly released. This effectively curbs the violent up and down displacement of the pipe, preventing the pipe from detaching from the support or being damaged due to excessive vibration. This effectively saves significant maintenance costs and time, increases the service life and reliability of the pipe system, and improves the load-bearing capacity and deformation resistance of the entire support system.
[0013] 2. By using a connecting block, placement slot, second spring, locking block, slot block, and buckle plate, the problem of prolonged equipment or system downtime and subsequent greater losses can be solved. The second spring, connected to the rear wall of the connecting block on both sides of the button, is compressed. As the button moves inward, the locking block fixed to its rear wall also moves. At this point, the placement slot at the bottom of the connecting block aligns perfectly with the slot block on the support plate. When the placement slot successfully engages with the slot block, the operator releases the button. The previously compressed second spring instantly releases its elastic potential energy, pushing the button outward. The locking block then engages with the slot in the hole of the slot block, achieving a tight and stable connection between the U-shaped clip and the support plate. This effectively reduces equipment downtime, improves the efficiency and quality of maintenance work, and significantly reduces the physical exertion of workers.
[0014] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of a multi-tube support with a stable connection proposed in this utility model;
[0016] Figure 2 This is a first spring structure diagram of a multi-tube support with a stable connection proposed in this utility model;
[0017] Figure 3 This utility model provides a structural diagram of a steel buckle pad for a stable multi-tube support.
[0018] Figure 4 This is a structural diagram of the first support ring of a multi-tube support with a stable connection proposed in this utility model;
[0019] Figure 5 This utility model presents a U-shaped clip structure for a stable multi-tube support.
[0020] Figure 6 This utility model provides a structural diagram of a connecting block for a stable multi-tube support.
[0021] Figure 7 This is a schematic diagram of a slot block for a stable multi-tube support proposed in this utility model;
[0022] Figure 8 This is a cross-sectional view of the internal structure of the connecting block of a multi-tube support with a stable connection proposed in this utility model.
[0023] Figure 9 This is a structural diagram of the connecting block of a multi-tube support that provides a stable connection, as proposed in this utility model.
[0024] Legend:
[0025] 1. Support plate; 2. Recessed block; 3. First hinge connection; 4. Steel buckle pad; 5. Channel steel; 6. Bolt; 7. Nut; 8. Second hinge connection; 9. U-shaped clip; 10. First hinge frame; 11. Outer rod; 12. First support ring; 13. Inner rod; 14. Second support ring; 15. First spring; 16. Second hinge frame; 17. Connecting block; 18. Button; 19. Placement slot; 20. Joining block; 21. Second spring; 22. Locking block; 23. Locking groove block; 24. Buckle plate. Detailed Implementation
[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0027] like Figure 1 - Figure 8 As shown: A stable multi-tube support includes a support plate 1. Both sides of the support plate 1 are threaded with recesses 2. The recesses 2 are threaded onto the left and right sides of the support plate 1 to support and fix the support plate 1 and the device on top. Two support plates 1 are provided with channel steel 5 on the top left and right sides. Each channel steel 5 has steel buckle pads 4 on the upper and lower sides of its inner sidewall. Bolts 6 are connected through the inside of every two steel buckle pads 4. Nuts 7 are threaded through the left side wall of the channel steel 5 at the left end of every two bolts 6. The right side wall of every two nuts 7 is set on the left side wall of a channel steel 5. A first hinge 3 is fixedly connected to the bottom of every two bottom steel buckle pads 4. Each first hinge 3 is threaded to the upper side wall of a recess 2. Through the fastening connection of the steel buckle pads 4 with the bolts 6 and nuts 7, the steel buckle pads 4 are firmly fixed to the upper and lower sides of the inner sidewall of the channel steel 5. The bolts 6 pass through the steel buckle pads 4 and the channel steel 5, and the nuts 7 are tightened on the outside to ensure that the support plates 1 are supported by the channel steel 5 on both sides and the first hinge 3 on the bottom steel buckle pads 4 to the recess 2.
[0028] Each pair of top steel buckle pads 4 are fixedly connected to a second hinge link 8. The channel steel 5 is fixed to the bottom of the ceiling through the second hinge link 8 on the top steel buckle pad 4, so as to support and fix the support plate 1 and the pipe.
[0029] U-shaped clips 9 are provided on both the left and right sides of the upper sidewall of the support plate 1. The top of each U-shaped clip 9 is fixedly connected to a first hinge frame 10. The top of each support plate 1 is provided with an outer rod 11. The bottom outer side of each outer rod 11 is fixedly connected to a first support ring 12. The bottom inner side of each outer rod 11 is slidably connected to an inner rod 13. The bottom outer side of each inner rod 13 is fixedly connected to a second support ring 14. The bottom wall of each first support ring 12 and the top wall of each second support ring 14 are fixedly connected to a first spring 15. The force is transmitted to the inner rod 13 through the U-shaped clip 9 and the first hinge frame 10. At this time, the telescopic structure composed of the outer rod 11 and the inner rod 13 plays a role. The inner rod 13 inside the bottom end of the outer rod 11 can slide freely. The first spring 15 between the two acts as a buffer for vibration. The inner rod 13 slides inside the outer rod 11. The first spring 15 is compressed or stretched, converting the vibration energy into elastic potential energy and storing it. Then it is slowly released, effectively curbing the violent up and down displacement of the pipeline and preventing the pipeline from falling off the support or being damaged due to excessive vibration.
[0030] The tops of the two outer rods 11 are rotatably connected to the second hinge frame 16, and the bottom outer sides of the two inner rods 13 are connected to the inside of the first hinge frame 10. The second hinge frame 16 at the top of the outer rods 11 is used to connect with the ceiling. When the U-shaped clip 9 is fixed to the upper side wall of the support plate 1, the outer rods 11 and the first spring 15 are used to fix the U-shaped clip 9 and the pipe and to buffer vibration.
[0031] Each U-shaped card 9 has a connecting block 17 fixedly connected to its left and right sides. Each connecting block 17 has a button 18 slidably connected to its front and rear sides. A slot block 23 is fixedly connected to the upper side wall of the support plate 1. Each connecting block 17 has a placement slot 19 on its bottom wall. Each button 18 has a connecting block 20 fixedly connected to its upper and lower sides. Each connecting block 20 has a second spring 21 fixedly connected to its rear side wall. Four second springs 21 are fixedly connected inside each connecting block 17. Each button 18 has a locking block 22 fixedly connected to its rear side wall. Each of the four slot blocks 23 has a snap plate 24 fixedly connected inside. Each slot block 23 corresponds to the placement slot 19. The slots of 23 are corresponding to each pair of locking blocks 22. The second spring 21 connected to the rear wall of the connecting blocks 20 on the upper and lower sides of the button 18 is compressed. As the button 18 moves inward, the locking blocks 22 fixed on its rear wall also move. At this time, the placement slot 19 at the bottom of the connecting block 17 is aligned with the locking block 23 on the support plate 1. When the placement slot 19 is successfully inserted into the locking block 23, the operator releases the button 18. The previously compressed second spring 21 instantly releases its elastic potential energy, pushing the button 18 outward. The locking block 22 then locks into the slot of the locking block 23, realizing a tight and stable connection between the U-shaped clip 9 and the support plate 1, thereby firmly fixing the pipe to the bracket.
[0032] It should be noted that this utility model is a multi-tube support with a stable connection. First, the support plate 1 serves as the foundation of the entire support. The concave blocks 2 with threaded connections on the left and right sides not only enhance the lateral connection stability of the support plate 1, but also provide specific connection points for the installation of subsequent components. The first hinge link 3 at the bottom connects the concave blocks 2 with the steel buckle pad 4, which can adaptively adjust the angle when subjected to force to buffer some of the external force impact.
[0033] In the upper part of the support where it directly contacts the pipe, the channel steel 5 is the core supporting component. A steel clamping pad 4, along with a fastening system of bolts 6 and nuts 7, firmly fixes the channel steel 5 above the support plate 1. The bolts 6 pass through the steel clamping pad 4 and the channel steel 5, while the nuts 7 are tightened on the outside, ensuring that the channel steel 5 will not shift or loosen. The upper and lower sets of steel clamping pads 4 are connected to the lower recess 2 and other components above via a first hinge link 3 and a second hinge link 8, respectively. This multi-layered hinged connection allows the channel steel 5 to rotate flexibly when facing forces from different directions, such as lateral swaying or vertical vibration of the pipe, to buffer vibration energy while maintaining stable support for the pipe.
[0034] The U-shaped clamp 9 tightly hugs the pipe, and its top first hinge frame 10 is connected to the outer side of the bottom end of the inner rod 13. When the pipe tends to jump up and down, the U-shaped clamp 9 transmits force to the inner rod 13 through the first hinge frame 10. At this time, the telescopic structure composed of the outer rod 11 and the inner rod 13 plays a role. The inner rod 13 inside the bottom end of the outer rod 11 can slide freely, and the first spring 15 between the two becomes a shock absorber. When an earthquake or other external force causes the pipe to vibrate up and down, the inner rod 13 slides inside the outer rod 11, and the first spring 15 is compressed or stretched, converting the vibration energy into elastic potential energy and storing it. Then it is slowly released, effectively curbing the violent up and down displacement of the pipe and preventing the pipe from falling off the support or being damaged due to excessive vibration.
[0035] During pipe installation, the operator first places the pipe into the U-shaped clamp 9, which initially provides initial positioning. To achieve a more secure fixation, the operator presses the buttons 18 located on both sides of the connecting block 17, causing the buttons 18 to slide inwards into the connecting block 17. During this process, the second springs 21 connected to the rear walls of the connecting blocks 20 on both sides of the buttons 18 are compressed. As the buttons 18 move inwards, the locking blocks 22 fixed to their rear walls also move. At this point, the placement groove 19 at the bottom of the connecting block 17 aligns perfectly with the locking block 23 on the support plate 1. Once the placement groove 19 is successfully inserted into the locking block 23, the operator releases the buttons 18. The previously compressed second springs 21 instantly release their elastic potential energy, pushing the buttons 18 outwards. The locking blocks 22 then engage with the slots in the locking blocks 23, achieving a tight and secure connection between the U-shaped clamp 9 and the support plate 1, thus firmly fixing the pipe to the bracket.
[0036] When disassembling and maintaining the pipeline, simply repeat the operation of pressing button 18 to easily release the lock between the U-shaped clip 9 and the support plate 1, allowing the pipeline to be easily removed and greatly improving operational efficiency.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A multi-pipe support with stable connection, comprising a support plate (1), characterized in that: The left and right sides of the supporting plate (1) are threadedly connected with recessed blocks (2), the left and right sides of the top of the two supporting plates (1) are provided with channel steels (5), the inner side walls of each channel steel (5) are provided on the top and bottom sides with profile steel buckles (4), the interiors of each two profile steel buckles (4) are penetrated and connected with bolts (6), the left ends of each two bolts (6) are penetrated through the left side walls of the channel steels (5) and are threadedly connected with nuts (7), the right side walls of each two nuts (7) are arranged on the left side walls of a channel steel (5), the bottoms of each two bottom profile steel buckles (4) are fixedly connected with first hinge links (3), each first hinge link (3) is threadedly connected with the upper side wall of a recessed block (2), and the tops of each two top profile steel buckles (4) are fixedly connected with second hinge links (8).
2. The multi-tube support of claim 1, wherein: The left and right sides of the upper side wall of the supporting plate (1) are provided with U-shaped clamps (9), the tops of the two U-shaped clamps (9) are fixedly connected with first hinge frames (10), the tops of the two supporting plates (1) are provided with outer rods (11), and the bottom outer sides of the two outer rods (11) are fixedly connected with first supporting rings (12).
3. The multi-tube support of claim 2, wherein: The bottom interiors of the two outer rods (11) are slidably connected with inner rods (13), the bottom outer sides of the two inner rods (13) are fixedly connected with second supporting rings (14), the bottom walls of the two first supporting rings (12) and the top walls of the two second supporting rings (14) are fixedly connected with first springs (15), the tops of the two outer rods (11) are rotatably connected with second hinge frames (16), and the bottom outer sides of the two inner rods (13) are connected in the interiors of the first hinge frames (10).
4. The multi-tube support of claim 2, wherein: The left and right sides of each U-shaped clamp (9) are fixedly connected with connecting blocks (17), the front and rear sides of each connecting block (17) are slidably connected with keys (18), the upper side wall of the supporting plate (1) is fixedly connected with clamping groove blocks (23), and the bottom wall of each connecting block (17) is provided with a placing groove (19).
5. A multi-tube support according to claim 4, wherein: The upper and lower sides of each key (18) are fixedly connected with engaging blocks (20), the rear side walls of each engaging block (20) are fixedly connected with second springs (21), every four second springs (21) are fixedly connected in the interiors of the connecting blocks (17), and the rear side walls of each key (18) are fixedly connected with clamping blocks (22).
6. The multi-tube support of claim 4, wherein: The interiors of the four clamping groove blocks (23) are fixedly connected with buckling plates (24), the interiors of each clamping groove block (23) and the placing groove (19) are correspondingly arranged, and the hole grooves of each clamping groove block (23) and each two clamping blocks (22) are correspondingly arranged.