Multi-pipeline integrated threading tool
The design of the multi-pipeline integrated wiring fixture solves the problems of low efficiency, easy tangling, and inconvenient shielding when integrating multiple pipelines for wiring, achieving efficient and convenient pipeline construction and improving wiring quality and construction efficiency.
Patent Information
- Application Number
- CN202520493603.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Existing wiring methods have problems such as low wiring efficiency, easy tangling of pipelines, and inconvenience in shielding and protection when dealing with the integrated wiring of multiple pipelines. This results in high construction difficulty, long construction period, and difficulty in guaranteeing wiring quality.
A multi-pipeline integrated wiring fixture is adopted, which includes a combination design of components such as aluminum profile, fixed base, sliding base, wire sleeve, fixed column, seamless steel pipe, and union nut. Through the cooperation of these components, the first pipeline and the shielding mesh pipe are arranged in an orderly manner for wiring, and the pipeline is fixed and protected by binding rope, shackle, and insulating tape.
It improves the efficiency and quality of threading multiple pipelines, simplifies the construction process, and reduces construction difficulty and time.
Smart Images

Figure CN223927988U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a multi-pipeline threading tool, and more particularly to a multi-pipeline integrated threading tool applied in the field of pipeline installation auxiliary equipment technology. Background Technology
[0002] Electrical cable pulling is an important part of building construction, and its efficiency affects the progress of subsequent work and the construction period. In the traditional process of electrical cable pulling, a rigid steel wire rope is first continuously agitated to make it pass through the pre-buried conduit, and then the cable is pulled out using a steel wire rope.
[0003] Chinese patent CN216489460U discloses a wiring device for underground pipelines. The cleaning device is installed at the inlet end of the vehicle body. The line first passes through a spray assembly, where water is sprayed to preliminarily clean the impurities on the line surface. Then, the line passes through a blower assembly, which further cleans the impurities on the line surface and dries the moisture on the line surface, making the line surface smooth, reducing friction between the line and the pipeline, removing corrosive impurities from the line surface, and increasing the line life.
[0004] Existing wiring methods have problems such as low wiring efficiency, easy tangling of pipelines, and inconvenience in shielding and protection when dealing with the integrated wiring of multiple pipelines. This results in high construction difficulty, long construction period, and difficulty in guaranteeing wiring quality. Utility Model Content
[0005] The technical problem that this utility model aims to solve in response to the above-mentioned prior art is that existing wiring methods have problems such as low wiring efficiency, easy tangling of pipelines, and inconvenience in shielding and protection when dealing with the integrated wiring of multiple pipelines, resulting in high construction difficulty, long construction period, and difficulty in guaranteeing wiring quality.
[0006] To address the aforementioned problems, this utility model provides a multi-pipeline integrated wiring fixture, comprising an aluminum profile. A fixed base, multiple sliding bases, and a complete wire sleeve are connected to the aluminum profile via screws. A U-shaped groove is formed at the top of each sliding base, and each of the multiple sliding bases has a circular hole located below the U-shaped groove. A fixed post and a seamless steel pipe are installed on the fixed base near the end of the complete wire sleeve, with the fixed post passing through the circular holes on the multiple sliding bases. The seamless steel pipe is held in the U-shaped groove. A lead wire head is detachably connected to the end of the seamless steel pipe near the complete wire sleeve. A union nut is threaded to the end of the fixed post away from the sliding base. A first pipeline passes through the end of the seamless steel pipe away from the complete wire sleeve, and the first pipeline extends to the end of the seamless steel pipe near the complete wire sleeve and is inserted into the lead wire head. A shielding mesh tube is fitted over the rear end of the seamless steel pipe through the lead wire head. An umbilical flexible tube is fitted onto the surface of the fixed post, and a second pipeline is detachably connected to the union nut.
[0007] In the aforementioned multi-pipeline threading fixture, the orderly combination and threading of the first pipeline and the shielding mesh tube are achieved through the cooperation between the various components, thereby improving threading efficiency and quality.
[0008] As a further improvement of this application, the positioning and locking of the fixed column and the rear end of the fixed seat are achieved by using a positioning pin and a locking nut, and the screw connection between the union nut and the fixed column is made of rust-proof screws.
[0009] As a further improvement of this application, a threaded shaft is detachably connected inside the union nut, and a retaining ring is fixedly connected to the end of the threaded shaft away from the union nut, and the retaining ring is detachably connected to the first pipeline.
[0010] As a further improvement of this application, the surfaces of the first pipeline, the shielding mesh, and the second pipeline are bound with multiple ropes, and the ropes are made of elastic rubber.
[0011] As another improvement of this application, insulating tape is wrapped around the side ends of the first pipeline, the shielding mesh tube, and the second pipeline, and multiple connecting ropes are clamped between the insulating tape and the first pipeline, the shielding mesh tube, and the second pipeline.
[0012] As a further improvement to this application, multiple connecting ropes are fixedly connected to hooks at the ends away from the insulating tape, and the hooks engage with the retaining rings.
[0013] In summary, the working principle is as follows: First, insert the first and second conduits from the rear end of the seamless steel pipe to the front end, ensuring the first conduit is not exposed. Then, insert the lead wire head into the front end. Next, completely slide the shielding mesh tube through the lead wire head to the rear end of the first conduit, exposing the lead wire head, and then remove it. Then, pull the first conduit and the shielding mesh tube together towards the front end, pinching the shielding mesh tube and slowly pulling it out until the first conduit and the shielding mesh tube are completely detached from the entire cable sleeve. Finally, insert the umbilical cord tubing into the fixing post, and tie the first conduit, the second conduit, and the shielding mesh tube together at both ends. Cut a wire, fold it in half, and insert it into the tied position, fixing one end of the wire to the union nut. Pull the umbilical cord tubing while simultaneously smoothing the first and second conduits until the two ends of the umbilical cord tubing are roughly the same size. Attached Figure Description
[0014] Figure 1 This is an isometric drawing of the threading fixture according to the first embodiment of this application;
[0015] Figure 2 This is a schematic diagram of the first pipeline in the first embodiment of this application;
[0016] Figure 3 This is the first embodiment of the present application. Figure 2 A schematic diagram of a local structure in the image;
[0017] Figure 4This is a schematic diagram of the movement state of the shielded network management system according to the first embodiment of this application;
[0018] Figure 5 This is a schematic diagram of the installation of the umbilical cord tubing according to the first embodiment of this application;
[0019] Figure 6 This is a schematic diagram of the multi-pipe dust collection wiring according to the first embodiment of this application;
[0020] Figure 7 This is a schematic diagram of the pipeline and fixed column connection according to the second embodiment of this application;
[0021] Figure 8 This is a schematic diagram of multiple pipelines bundled according to the second embodiment of this application.
[0022] Explanation of the labels in the diagram:
[0023] 1. Aluminum profile; 2. Sliding seat; 3. Lead wire end; 4. Complete wire sleeve; 5. Fixing post; 6. Union nut; 7. Fixing seat; 8. Seamless steel pipe; 9. First pipeline; 10. Shielding mesh pipe; 11. Umbilical hose; 12. Second pipeline; 13. Insulating tape; 14. Hook; 15. Connecting rope; 16. Threaded shaft; 17. Snap ring; 18. U-groove; 19. Round hole; 20. Bundling rope. Detailed Implementation
[0024] The two embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0025] First implementation method:
[0026] Figures 1-6 This invention illustrates a multi-pipe integrated wiring fixture, comprising an aluminum profile 1. A fixed base 7, multiple sliding bases 2, and a wire sleeve 4 are connected to the aluminum profile 1 by screws. The top of each sliding base 2 has a U-shaped groove 18, and each of the multiple sliding bases 2 has a circular hole 19 located below the U-shaped groove 18. A fixed post 5 and a seamless steel pipe 8 are mounted on the fixed base 7 near the wire sleeve 4, with the fixed post 5 passing through the circular holes 19 on the multiple sliding bases 2. The seamless steel pipe 8 is engaged within the U-shaped groove 18. A lead wire head 3 is detachably connected to one end of the steel pipe 8 near the end of the cable sleeve 4. A union 6 is threaded to one end of the fixed post 5 away from the sliding seat 2. A first pipeline 9 is threaded through one end of the seamless steel pipe 8 away from the cable sleeve 4, and the first pipeline 9 extends to one end of the seamless steel pipe 8 near the end of the cable sleeve 4 and is inserted into the lead wire head 3. A shielding mesh tube 10 is sleeved on the rear end of the seamless steel pipe 8 through the lead wire head 3. An umbilical hose 11 is sleeved on the surface of the fixed post 5. A second pipeline 12 is detachably connected to the union 6.
[0027] The fixed post 5 and the fixed base 7 are locked together by a positioning pin and a locking nut. The screw connection between the union 6 and the fixed post 5 is made of rust-proof screw.
[0028] Working principle: First, insert the first pipeline 9 and the second pipeline 12 from the rear end of the seamless steel pipe 8 to the front end, so that the first pipeline 9 does not protrude from the front end. Then, insert the front end into the lead wire head 3. Next, completely wrap the shielding mesh tube 10 through the lead wire head 3 to the rear end of the first pipeline 9. After the lead wire head 3 is exposed, remove it. Then, pull the first pipeline 9 and the shielding mesh tube 10 together towards the front end. Pinch the position of the shielding mesh tube 10 with your hand and slowly pull it out until the first pipeline 9 and the shielding mesh tube 10 are completely separated from the whole wire sleeve 4. Finally, put the umbilical cord tubing 11 into the fixing post 5. Tie the first pipeline 9, the second pipeline 12 and the shielding mesh tube 10 together at both ends. Cut the wire, fold it in half and insert it into the binding position. Fix one end of the wire to the position of the union 6. Pull the umbilical cord tubing 11 while straightening the first pipeline 9 and the second pipeline 12 until the two ends of the umbilical cord tubing 11 are basically the same size.
[0029] Through the cooperation between the various components, the orderly combination and threading of the first pipeline 9 and the shielding mesh 10 were achieved, improving the threading efficiency and quality.
[0030] Second implementation method:
[0031] Figure 7 The diagram shows a threaded shaft 16 detachably connected inside the union 6. A retaining ring 17 is fixedly connected to the end of the threaded shaft 16 away from the union 6, and the retaining ring 17 is detachably connected to the first pipeline 9. Multiple binding ropes 20 are tied to the surface of the first pipeline 9, the shielding mesh tube 10, and the second pipeline 12. The binding ropes 20 are made of elastic rubber. Insulating tape 13 is wrapped around the side ends of the first pipeline 9, the shielding mesh tube 10, and the second pipeline 12. Multiple connecting ropes 15 are clamped between the insulating tape 13 and the first pipeline 9, the shielding mesh tube 10, and the second pipeline 12. A hook 14 is fixedly connected to the end of the multiple connecting ropes 15 away from the insulating tape 13, and the hook 14 engages with the retaining ring 17.
[0032] Working principle: First, the first pipeline 9, the second pipeline 12, and the shielding mesh tube 10 are tied together at both ends with binding rope 20. The binding rope 20 is made of elastic material for easy and quick binding. Then, multiple connecting ropes 15 are attached to the first pipeline 9, the second pipeline 12, and the shielding mesh tube 10, and then they are wrapped together with insulating tape 13 to fix them. At this time, the connecting ropes 15 are fixed by engaging the hooks 14 with the rings 17. Then, the threaded shaft 16 is threaded to the union 6. At this time, the first pipeline 9, the second pipeline 12, and the shielding mesh tube 10 are tied together and connected to the fixing post 5, which facilitates the subsequent integration and wiring.
[0033] After bundling multiple pipelines, they are connected to the fixed column 5 quickly and conveniently by binding them to the connecting rope 15 and then engaging them with the clip 14 and the clip 17.
[0034] In light of current practical needs, the above-described embodiments adopted in this application are not limited to these. Any changes made within the scope of knowledge possessed by those skilled in the art without departing from the concept of this application still fall within the protection scope of this utility model.
Claims
1. A multi-pipeline integrated threading tooling including an aluminum material type (1), characterized by: The aluminum material type (1) is connected with the fixed seat (7), a plurality of sliding seats (2) and the whole line cover (4) through screws, the top end of the sliding seat (2) is provided with a U-shaped groove (18), a plurality of the sliding seat (2) are provided with a circular hole (19) below the U-shaped groove (18), the fixed seat (7) is provided with a fixed column (5) and a seamless steel pipe (8) near one end of the whole line cover (4), and the fixed column (5) penetrates the circular hole (19) on the plurality of sliding seats (2), the seamless steel pipe (8) is clamped in the U-shaped groove (18), the seamless steel pipe (8) is detachably connected with a lead head (3) near one end of the whole line cover (4), the fixed column (5) is detachably connected with a female joint (6) away from one end of the sliding seat (2), the seamless steel pipe (8) is provided with a first pipeline (9) away from one end of the whole line cover (4), and the first pipeline (9) extends to one end of the seamless steel pipe (8) near the whole line cover (4) and is inserted into the lead head (3), the rear end of the seamless steel pipe (8) is sleeved with a shielding mesh pipe (10) through the lead head (3), the surface of the fixed column (5) is sleeved with an umbilical cord hose (11), and the female joint (6) is detachably connected with a second pipeline (12).
2. The multi-tube integrated threading tooling apparatus of claim 1, wherein: The fixed column (5) and the rear end of the fixed seat (7) are positioned and locked by the cooperation of the positioning pin and the locking nut, and the screw connection between the female joint (6) and the fixed column (5) adopts rust-proof screws.
3. The multi-tube integrated threading tooling of claim 1, wherein: The female joint (6) is detachably connected with a threaded shaft (16), one end of the threaded shaft (16) away from the female joint (6) is fixedly connected with a clamping ring (17), and the clamping ring (17) is detachably connected with the first pipeline (9).
4. The multi-tube integrated threading tooling of claim 1, wherein: The first pipeline (9), the shielding mesh pipe (10) and the second pipeline (12) are bound with a plurality of ropes (20), and the ropes (20) are made of elastic rubber material.
5. The multi-tube integrated threading tooling of claim 1, wherein: The first pipeline (9), the shielding mesh pipe (10) and the second pipeline (12) are wrapped with an insulating tape (13) at the side end, and a plurality of connecting ropes (15) are clamped between the insulating tape (13) and the first pipeline (9), the shielding mesh pipe (10) and the second pipeline (12).
6. The multi-tube integrated threading tooling apparatus of claim 5, wherein: One end of the plurality of connecting ropes (15) away from the insulating tape (13) is fixedly connected with a clamping hook (14), and the clamping hook (14) is clamped with the clamping ring (17).
Citation Information
Patent Citations
Threading device for pipeline under road
CN216489460U