Carbon fiber pipeline capable of being rapidly installed
By designing a system including pipes, connecting plates, intermediate pipes and brackets, the problem of complex, time-consuming and concentrated stress connection and support methods of existing carbon fiber pipelines is solved, and the rapid installation and stable fixation of pipelines are achieved, reducing costs and time, and providing effective protective measures.
Patent Information
- Application Number
- CN202420711988.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-08
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-04-08
AI Technical Summary
The connection and support methods of existing carbon fiber pipelines are complex, time-consuming and stress-concentrated, resulting in local damage and fatigue of the pipeline. The installation requires professional tools and technicians, which increases costs and time.
A system including pipes, connecting plates, intermediate pipes and brackets is designed to achieve rapid installation and stable fixation of pipes through the connection of intermediate pipes and fixing plates. The brackets are designed with a combination of fixtures and fixing frames, allowing the pipes to be fixed without additional stress concentration.
The rapid installation and stable fixation of pipes are achieved, which reduces the risk of pipeline damage, reduces installation costs and time, and provides effective protection measures under severe temperature changes or mechanical shock.
Smart Images

Figure CN223004570U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carbon fiber pipeline equipment, in particular to a carbon fiber pipeline that can be quickly installed. Background Art
[0002] Due to its excellent strength-to-weight ratio and corrosion resistance characteristics, carbon fiber pipes are used as a preferred material in many industries. In the fields of aviation, automotive, chemical, and water treatment, carbon fiber pipes are gradually replacing traditional metal pipes and plastic pipes.
[0003] In the prior art, the connection and support of carbon fiber pipes usually adopt metal or plastic fixtures, and the connection methods between the pipes and brackets are often bolt fixation or welding. The main disadvantages of these methods are complex installation, time-consuming, and defects in stress dispersion. The fixed points of bolts and welding often become areas of stress concentration, resulting in local damage and fatigue of the pipes.
[0004] In addition, the installation and maintenance of carbon fiber pipes require professional tools and technicians, increasing the installation cost and prolonging the installation time. At the same time, carbon fiber pipes are prone to microcracks under severe temperature changes or mechanical impacts, and these installation methods fail to provide effective protection measures.
[0005] How to solve the above technical problems is the subject faced by the utility model. Summary of the Utility Model
[0006] In order to solve the deficiencies of the prior art, the utility model provides a carbon fiber pipeline that can be quickly installed, with reasonable design, simple structure, safe and reliable, capable of realizing the quick installation and stable fixation of the pipeline, and reducing the risk of pipeline damage.
[0007] The technical solution adopted by the utility model to solve its technical problems is: The utility model provides a carbon fiber pipeline that can be quickly installed, including a pipeline, a connection disk is arranged on the pipe body of the pipeline, and two adjacent pipelines are connected by an intermediate pipe;
[0008] Both ends of the intermediate pipe are inserted into the two pipelines respectively, and are connected to the connection disk of the pipeline through a fixed disk;
[0009] It includes a bracket, the bracket includes a chassis, a fixing frame is fixedly arranged on the chassis, the fixing frame is movably connected to the intermediate pipe, and the chassis is connected to the pipeline through a clamp.
[0010] The chassis is a rectangular plate body, and the chassis is fixed to the ground or wall through a locking member;
[0011] The middle part of the top surface of the chassis is fixedly connected to the fixing frame, and both sides of the fixing frame on the top surface of the chassis are fixedly connected to the two pipelines through support frames.
[0012] Both ends of the middle pipe are provided with annular grooves, and annular gaskets are arranged on both sides of the inner side of the annular groove;
[0013] The end of the pipeline is inserted into each annular groove.
[0014] The fixing bracket includes a fixing base, and a first U-shaped groove is arranged on the top surface of the fixing base;
[0015] A top seat is arranged above the fixing base. A second U-shaped groove is opened on the bottom surface of the top seat. The first U-shaped groove and the second U-shaped groove form a circular hole, and the middle pipe is movably connected in the circular hole. The outer diameter of the middle pipe matches the aperture of the circular hole.
[0016] Round holes are opened at both ends of the top seat. Vertical screw rods are fixedly connected to the top surfaces on both sides of the fixing base. The outer diameter of the screw rods is smaller than the aperture of the round holes;
[0017] The two screw rods respectively penetrate through one of the round holes and are threadedly connected with at least one nut, and the nut is located above the top seat.
[0018] Fixing discs are arranged at both ends of the middle pipe. The distance between the two fixing discs matches the width of the fixing bracket;
[0019] Each fixing disc abuts against one connecting disc. A plurality of threaded holes are opened on the fixing disc, and a plurality of through holes are correspondingly opened on the connecting disc. A locking screw penetrates through each through hole. The outer diameter of the locking screw is smaller than the aperture of the through hole, and the locking screw is threadedly connected to the threaded hole.
[0020] The fixture includes a lower fixture and an upper fixture. One end of the upper fixture is hinged to one end of the lower fixture, and the other end is movably connected through a locking member.
[0021] A cushion layer is arranged on the inner side of the fixture.
[0022] The beneficial effects of the present utility model are as follows: The present design proposes a support pipeline system that combines the characteristics of carbon fiber pipelines. It realizes the rapid installation and stable fixation of pipelines through an innovative support design with fixtures and fixing brackets and a middle pipe. The fixture design is on both sides of the fixing bracket, allowing the pipeline to be fixed without generating additional stress concentration, thereby effectively dispersing the force during loading and reducing the risk of pipeline damage.
[0023] This new type uses a seal designed with an intermediate pipe to connect two pipes while providing a robust sealing environment, reducing the likelihood of leakage and being able to withstand high-pressure environments. The designs of the fixed plate and the connection plate not only further stabilize the pipes but also provide a reliable connection method without damaging the carbon fiber pipes.
[0024] This design allows non-technical personnel to quickly install or disassemble pipes without using professional tools, significantly reducing labor and time costs. In addition, since the brackets and clamps use materials and designs compatible with carbon fiber pipes, it avoids pipe damage caused by chemical reactions and friction, extending the service life of the pipes. Brief Description of the Drawings
[0025] Figure 1 It is the front view of the present utility model.
[0026] Figure 2 It is the schematic diagram of the three-dimensional structure of the present utility model.
[0027] Figure 3 It is the schematic diagram of the three-dimensional exploded structure of the present utility model.
[0028] Figure 4 It is Figure 3 the partial enlarged schematic diagram of Area A of
[0029] Among them, the reference numerals are: 1, pipe; 101, connection plate; 102, through hole; 103, locking screw; 2, intermediate pipe; 201, fixed plate; 202, annular groove; 203, gasket; 204, threaded hole; 3, bracket; 301, chassis; 4, clamp; 401, support frame; 402, lower clamp; 403, upper clamp; 404, locking member; 5, fixing frame; 501, fixing seat; 502, first U-shaped groove; 503, top seat; 504, second U-shaped groove; 505, round hole; 506, screw; 507, nut. Detailed Description of the Preferred Embodiments
[0030] To clearly illustrate the technical features of this solution, the following elaborates on this solution through specific embodiments.
[0031] Embodiment 1
[0032] Referring to Figures 1 to 4 as shown, this embodiment is a quickly installable carbon fiber pipeline, including a pipe 1. A connection plate 101 is provided on the pipe body of the pipe 1, and two adjacent pipes 1 are connected by an intermediate pipe 2;
[0033] Both ends of the intermediate pipe 2 are inserted into the two pipes 1 respectively, and are connected to the connection plate 101 of the pipe 1 through the fixed plate 201;
[0034] It includes a bracket 3, and the bracket 3 includes a chassis 301. A fixing frame 5 is fixedly arranged on the chassis 301. The fixing frame 5 is movably connected to an intermediate pipe 2, and the chassis 301 is connected to a pipeline 1 through a clamp 4.
[0035] The chassis 301 is a rectangular plate body, and the chassis 301 is fixed to the ground or a wall through a locking member;
[0036] The middle part of the top surface of the chassis 301 is fixedly connected to the fixing frame 5, and two pipelines 1 are fixedly connected through support frames 401 on both sides of the fixing frame 5 on the top surface of the chassis 301.
[0037] Annular grooves 202 are provided at both ends of the intermediate pipe 2, and annular gaskets 203 are arranged on both sides inside the grooves of the annular grooves 202;
[0038] The end of the pipeline 1 is inserted into each annular groove 202.
[0039] The fixing frame 5 includes a fixing base 501, and a first U-shaped groove 502 is arranged on the top surface of the fixing base 501;
[0040] A top base 503 is arranged above the fixing base 501. A second U-shaped groove 504 is provided on the bottom surface of the top base 503. The first U-shaped groove 502 and the second U-shaped groove 504 form a circular hole, and the intermediate pipe 2 is movably connected inside the circular hole. The outer diameter of the intermediate pipe 2 matches the aperture of the circular hole.
[0041] Round holes 505 are provided at both ends of the top base 503. Vertical screw rods 506 are fixedly connected to the top surfaces on both sides of the fixing base 501. The outer diameter of the screw rods 506 is smaller than the aperture of the round holes 505;
[0042] The two screw rods 506 respectively penetrate through a round hole 505 and are threadedly connected with at least one nut 507, and the nut 507 is located above the top base 503.
[0043] Fixing disks 201 are arranged at both ends of the intermediate pipe 2, and the distance between the two fixing disks 201 matches the width of the fixing frame 5;
[0044] Each fixing disk 201 is abutted against a connecting disk 101, and a plurality of threaded holes 204 are provided on the fixing disk 201. A plurality of through holes 102 are correspondingly provided on the connecting disk 101. A locking screw 103 penetrates through each through hole 102. The outer diameter of the locking screw 103 is smaller than the aperture of the through hole 102, and the locking screw 103 is threadedly connected to the threaded hole 204.
[0045] When the utility model is actually used:
[0046] First, ensure that all carbon fiber pipelines 1, brackets 3, clamps 4, and intermediate pipes 2 have been manufactured according to the design requirements. Prepare the required tools, such as wrenches, screwdrivers, etc., as well as lubricants and cleaning materials that may be required during the installation process.
[0047] Inspect all components to ensure there is no damage caused during transportation or manufacturing. Clean all components to ensure there is no dust, oil stains or other impurities.
[0048] According to the pipeline layout diagram, determine the exact route of the pipeline and mark it on the ground. Use a laser level or other precise measuring tools to determine the position of bracket 3. Select an appropriate fixing method according to the ground material, which can be bolts, chemical anchors or other methods. Position bracket 3 at the marked position to ensure it is level and stable.
[0049] Then install clamp 4 on bracket 3 and adjust it to the appropriate width to prepare for the installation of pipeline 1. Then place intermediate pipe 2 between fixed seat 501 and top seat 503 to ensure that the two fixing plates 201 fit closely to both sides of fixing frame 5. At this time, the carbon fiber pipelines 1 on both sides should be placed above the lower clamps 402 of the two clamps 4 to be flush. Then insert one end of the two carbon fiber pipelines 1 into the annular groove 202 of intermediate pipe 2, and ensure that the docking surfaces of fixing plate 201 and connecting plate 101 are flat and fit. After the round holes 505 and threaded holes 204 are aligned, fix them with locking screws 103, paying attention to uniform force to avoid over-tightening. After completing the pipeline docking, check whether there is air leakage or liquid leakage at the connection, and use special detection tools to test the sealing performance of the connection part.
[0050] After checking that there are no problems, the top seat 503 can be pressed down to fix the intermediate pipe 2, and locked with screw 506 and nut 507. Finally, the pipeline 1 can be reinforced. Adjust the clamp 4 on the bracket 3 to make it close to the pipeline 1, but do not apply too much pressure to avoid damaging the carbon fiber pipeline. Check and ensure that the fixation of the clamp 4 to the pipeline 1 is uniform and stable.
[0051] Finally, conduct a visual inspection of the entire pipeline system to ensure that all parts are correctly installed and stable. Conduct a pressure test on the pipeline system to check for leaks or other problems.
[0052] Embodiment 2
[0053] See Figures 1 to 3 As shown, this embodiment is a carbon fiber pipeline that can be quickly installed, including pipeline 1. A connecting plate 101 is provided on the pipe body of pipeline 1, and two adjacent pipelines 1 are connected by an intermediate pipe 2;
[0054] Both ends of the intermediate pipe 2 are inserted into the two pipelines 1 respectively, and are connected to the connecting plate 101 of the pipeline 1 through a fixing plate 201;
[0055] It includes a bracket 3. The bracket 3 includes a chassis 301. A fixing frame 5 is fixedly provided on the chassis 301. The fixing frame 5 is movably connected to the intermediate pipe 2, and the chassis 301 is connected to the pipeline 1 through a clamp 4.
[0056] The chassis 301 is a rectangular plate body, and the chassis 301 is fixed to the ground or wall through locking members;
[0057] A fixing frame 5 is fixedly connected to the middle of the top surface of the chassis 301, and two pipes 1 are fixedly connected through support frames 401 at both sides of the fixing frame 5 on the top surface of the chassis 301.
[0058] Annular grooves 202 are formed at both ends of the middle pipe 2, and annular gaskets 203 are arranged on both sides inside the annular grooves 202;
[0059] The end portions of the pipe 1 are inserted into each annular groove 202.
[0060] The fixing frame 5 includes a fixing base 501, and a first U-shaped groove 502 is arranged on the top surface of the fixing base 501;
[0061] A top base 503 is arranged above the fixing base 501, a second U-shaped groove 504 is formed on the bottom surface of the top base 503, the first U-shaped groove 502 and the second U-shaped groove 504 form a circular hole, and the middle pipe 2 is movably connected inside the circular hole, and the outer diameter of the middle pipe 2 matches the aperture of the circular hole.
[0062] Round holes 505 are formed at both ends of the top base 503, vertical screw rods 506 are fixedly connected to the top surfaces on both sides of the fixing base 501, and the outer diameter of the screw rods 506 is smaller than the aperture of the round holes 505;
[0063] The two screw rods 506 respectively penetrate through a round hole 505 and are threadedly connected with at least one nut 507, and the nut 507 is located above the top base 503.
[0064] Fixing discs 201 are arranged at both ends of the middle pipe 2, and the distance between the two fixing discs 201 matches the width of the fixing frame 5;
[0065] Each fixing disc 201 is abutted against a connecting disc 101.
[0066] Preferably, the fixture 4 includes a lower fixture 402 and an upper fixture 403, the upper fixture 403 and one end of the lower fixture 402 are hinged, and the other end is movably connected through a locking member 404.
[0067] Preferably, a cushion layer is arranged inside the fixture 4.
[0068] When the utility model is actually used:
[0069] First, ensure that all carbon fiber pipes 1, brackets 3, fixtures 4, and middle pipes 2 have been manufactured according to the design requirements. Prepare the required tools, such as wrenches, screwdrivers, etc., as well as lubricants and cleaning materials that may be required during the installation process.
[0070] Inspect all components to ensure there is no damage caused during transportation or manufacturing. Clean all components to ensure there is no dust, oil stain or other impurities.
[0071] According to the pipeline layout diagram, determine the exact route of the pipeline and mark it on the ground. Use a laser level or other precise measuring tools to determine the position of bracket 3. Select an appropriate fixing method according to the ground material, which can be bolts, chemical anchoring or other methods. Position bracket 3 at the marked position to ensure it is horizontal and stable.
[0072] Then install clamp 4 on bracket 3 and adjust it to the appropriate width to prepare for the installation of pipeline 1. Then place intermediate pipe 2 between fixed seat 501 and top seat 503, ensuring that the two fixing plates 201 fit closely to both sides of fixing frame 5. At this time, the two carbon fiber pipelines 1 on both sides should be placed above the lower clamps 402 of the two clamps 4 to be flush, and then insert one end of the two carbon fiber pipelines 1 into the annular groove 202 of intermediate pipe 2, and ensure that the docking surfaces of fixing plate 201 and connecting plate 101 are flat and fit closely. After completing the pipeline docking, check whether there is air leakage or liquid leakage at the connection, and use special detection tools to test the sealing performance of the connection part.
[0073] After checking that there are no problems, the top seat 503 can be pressed down to fix the intermediate pipe 2, and locked by screw 506 and nut 507. Finally, the reinforcement of pipeline 1 can be carried out. Adjust the clamp 4 on bracket 3 so that it closely adheres to pipeline 1, but do not apply too much pressure to avoid damaging the carbon fiber pipeline. Check and ensure that the fixation of clamp 4 on pipeline 1 is uniform and stable.
[0074] Finally, conduct a visual inspection of the entire pipeline system to ensure that all parts are correctly installed and stable. Conduct a pressure test on the pipeline system to check for leaks or other problems.
[0075] Embodiment III
[0076] See Figures 1 to 3 As shown, this embodiment is a carbon fiber pipeline that can be quickly installed, including pipeline 1. A connecting plate 101 is provided on the pipe body of pipeline 1, and two adjacent pipelines 1 are connected by an intermediate pipe 2;
[0077] Both ends of intermediate pipe 2 are inserted into two pipelines 1 respectively, and are connected to the connecting plate 101 of pipeline 1 through fixing plate 201;
[0078] It includes bracket 3. Bracket 3 includes a chassis 301. A fixing frame 5 is fixedly provided on the chassis 301. The fixing frame 5 is movably connected to the intermediate pipe 2, and the chassis 301 is connected to the pipeline 1 through a clamp 4.
[0079] The chassis 301 is a rectangular plate body, and the chassis 301 is fixed to the ground or wall through locking parts;
[0080] In the middle of the top surface of the chassis 301, a fixing frame 5 is fixedly connected. On both sides of the fixing frame 5 on the top surface of the chassis 301, two pipes 1 are fixedly connected through support frames 401.
[0081] Both ends of the middle pipe 2 are provided with annular grooves 202, and annular gaskets 203 are arranged on both sides inside the grooves of the annular grooves 202.
[0082] The end of the pipe 1 is inserted into each annular groove 202.
[0083] The fixing frame 5 includes a fixing base 501, and a first U-shaped groove 502 is arranged on the top surface of the fixing base 501.
[0084] Above the fixing base 501, a top base 503 is arranged. A second U-shaped groove 504 is opened on the bottom surface of the top base 503. The first U-shaped groove 502 and the second U-shaped groove 504 form a circular hole, and the middle pipe 2 is movably connected inside the circular hole. The outer diameter of the middle pipe 2 matches the aperture of the circular hole.
[0085] Round holes 505 are opened at both ends of the top base 503. Vertically arranged screw rods 506 are fixedly connected to the top surfaces on both sides of the fixing base 501. The outer diameter of the screw rods 506 is smaller than the aperture of the round holes 505.
[0086] The two screw rods 506 respectively penetrate through a round hole 505 and are threadedly connected with at least one nut 507. The nut 507 is located above the top base 503.
[0087] Fixing plates 201 are arranged at both ends of the middle pipe 2. The distance between the two fixing plates 201 matches the width of the fixing frame 5.
[0088] Each fixing plate 201 is in contact with a connecting plate 101.
[0089] Preferably, a plurality of threaded holes 204 are opened on the fixing plate 201, a plurality of through holes 102 are correspondingly opened on the connecting plate 101, and a locking screw 103 penetrates through each through hole 102. The outer diameter of the locking screw 103 is smaller than the aperture of the through hole 102, and the locking screw 103 is threadedly connected with the threaded hole 204.
[0090] The fixture 4 includes a lower fixture 402 and an upper fixture 403. One end of the upper fixture 403 is hinged to the lower fixture 402, and the other end is movably connected through a locking member 404.
[0091] A cushion layer is arranged on the inner side of the fixture 4.
[0092] When the utility model is actually used:
[0093] First, ensure that all carbon fiber pipes 1, brackets 3, clamps 4, and intermediate pipes 2 have been fabricated according to the design requirements. Prepare the required tools, such as wrenches, screwdrivers, etc., as well as lubricants and cleaning materials that may be needed during the installation process.
[0094] Inspect all components to ensure there is no damage caused during transportation or manufacturing. Clean all components to ensure there is no dust, oil stains, or other impurities.
[0095] According to the pipeline layout diagram, determine the exact alignment of the pipeline and mark it on the ground. Use a laser level or other precise measuring tools to determine the position of the bracket 3. Select an appropriate fixing method according to the ground material, which can be bolts, chemical anchors, or other methods. Position the bracket 3 at the marked position to ensure it is level and stable.
[0096] Then install the clamp 4 onto the bracket 3 and adjust it to the appropriate width to prepare for the installation of the pipe 1. Then place the intermediate pipe 2 between the fixed seat 501 and the top seat 503, ensuring that the two fixing disks 201 are in contact with both sides of the fixing frame 5. The carbon fiber pipes 1 on both sides should be placed above the lower clamps 402 of the two clamps 4 and kept level at this time. Then insert one end of the two carbon fiber pipes 1 into the annular groove 202 of the intermediate pipe 2, and ensure that the docking surfaces of the fixing disk 201 and the connection disk 101 are flat and in contact. After the round hole 505 is aligned with the threaded hole 204, fix it with the locking screw 103, paying attention to applying even force to avoid over-tightening. After completing the pipe connection, check whether there is any air leakage or liquid leakage at the connection, and use special detection tools to test the sealing performance of the connection part.
[0097] After checking that there are no problems, the top seat 503 can be pressed down to fix the intermediate pipe 2, and locked with the screw 506 and the nut 507. Finally, the pipe 1 can be reinforced by adjusting the clamp 4 on the bracket 3 to make it closely fit the pipe 1, but do not apply too much pressure to avoid damaging the carbon fiber pipe. Check and ensure that the clamp 4 fixes the pipe 1 evenly and stably.
[0098] Finally, conduct a visual inspection of the entire pipeline system to ensure that all parts have been correctly installed and are stable. Conduct a pressure test on the pipeline system to check for any leaks or other problems. The technical features not described in this utility model can be achieved by or adopted from the prior art, and will not be elaborated here. Of course, the above description is not a limitation of this utility model, and this utility model is not limited to the above examples. Changes, modifications, additions, or substitutions made by those of ordinary skill in the art within the scope of the essence of this utility model should also fall within the protection scope of this utility model.
Claims
1. A carbon fiber pipeline that can be quickly installed, characterized in that: It comprises a pipeline (1), wherein a connecting plate (101) is provided on the pipe body of the pipeline (1), and two adjacent pipelines (1) are connected via an intermediate pipe (2); Both ends of the intermediate tube (2) are respectively plugged into the two pipelines (1), and are connected to the connecting disks (101) of the pipelines (1) via a fixing disk (201); It comprises a bracket (3), the bracket (3) comprising a chassis (301), a fixing frame (5) is fixedly arranged on the chassis (301), the fixing frame (5) is movably connected to the intermediate pipe (2), and the chassis (301) is connected to the pipeline (1) via a clamp (4).
2. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: The chassis (301) is a rectangular plate, and the chassis (301) is fixed to the ground or the wall via a locking piece; The middle part of the top surface of the chassis (301) is fixedly connected to the fixing frame (5), and the two sides of the fixing frame (5) on the top surface of the chassis (301) are fixedly connected to the two pipes (1) via support frames (401).
3. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: Both ends of the intermediate tube (2) are provided with annular grooves (202), and both sides of the annular groove (202) are provided with annular sealing gaskets (203); An end of the pipeline (1) is inserted into each of the annular grooves (202).
4. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: The fixing frame (5) comprises a fixing seat (501), and a first U-shaped groove (502) is provided on the top surface of the fixing seat (501); A top seat (503) is arranged above the fixing seat (501), and a second U-shaped groove (504) is provided on the bottom surface of the top seat (503). The first U-shaped groove (502) and the second U-shaped groove (504) form a circular hole, and the intermediate tube (2) is movably connected in the circular hole. The outer diameter of the intermediate tube (2) matches the diameter of the circular hole.
5. The rapidly installable carbon fiber pipeline according to claim 4, characterized in that: Circular holes (505) are provided at both ends of the top seat (503); vertical screw rods (506) are fixedly connected to the top surfaces of both sides of the fixed seat (501); and the outer diameter of the screw rods (506) is smaller than the diameter of the circular holes (505); The two screw rods (506) respectively penetrate one of the circular holes (505) and are threadedly connected with at least one nut (507), and the nut (507) is located above the top seat (503).
6. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: The fixing plates (201) are provided at both ends of the intermediate tube (2), and the distance between the two fixing plates (201) matches the width of the fixing frame (5); Each of the fixing plates (201) is in contact with a connecting plate (101), and a plurality of threaded holes (204) are provided on the fixing plates (201), and a plurality of through holes (102) are correspondingly provided on the connecting plates (101), and a locking screw (103) passes through each of the through holes (102), the outer diameter of the locking screw (103) is smaller than the hole diameter of the through hole (102), and the locking screw (103) is threadedly connected to the threaded hole (204).
7. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: The clamp (4) comprises a lower clamp (402) and an upper clamp (403); the upper clamp (403) is hinged to the lower clamp (402) at one end and movably connected to the lower clamp (402) at the other end via a locking piece (404).
8. The rapidly installable carbon fiber pipeline according to claim 1, characterized in that: A cushion layer is provided on the inner side of the clamp (4).