Fluid pipeline conveying structure

By combining positioning and stabilizing components with static eliminators, the problem of loose mounting blocks was solved, enabling rapid and stable installation of fluid pipelines and elimination of static electricity, thus improving the stability and safety of the system.

CN224201341UActive Publication Date: 2026-05-05HERENCE NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HERENCE NEW MATERIAL TECH CO LTD
Filing Date
2025-02-27
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In existing fluid pipeline transportation structures, the stability and reliability of mounting blocks are affected by factors such as loose bolts, resulting in cumbersome and unstable operation.

Method used

The system employs positioning and stabilizing components, including positioning blocks, fastening lugs, fastening posts, and threaded rods, to achieve rapid and stable installation of the mounting block via threaded connections. It also incorporates an electrostatic eliminator and a discharge needle to eliminate static electricity.

Benefits of technology

It improves the stability and durability of the mounting block, ensures the safe and efficient operation of the pipeline transportation system, and reduces electrostatic interference.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fluid pipeline conveying structure which comprises a pipeline body, an electrostatic body is installed on the top of the pipeline body, a containing cavity is formed in the electrostatic body, and an electrostatic eliminator is installed in the containing cavity. The mounting block is detachably arranged on the pipeline body; the positioning and stabilizing part comprises a positioning block arranged at the bottom of the mounting block, a positioning groove formed in the top of the pipeline body and used for allowing the positioning block to be inserted, a fastening lug arranged on the outer side face of the mounting block, a threaded groove formed in the side surface of the fastening lug, and a fastening column mounted on the pipeline body; the mounting block has the beneficial effects that through the designed positioning and stabilizing component, the positioning of the mounting block during mounting is increased, and the fastening lug can be quickly fixed, so that the quick and stable mounting of the mounting block is facilitated, the stability and durability of the mounting block can be improved, and the safe and efficient operation of a whole pipeline conveying system is ensured.
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Description

Technical Field

[0001] This utility model belongs to the field of fluid pipeline transportation technology, and specifically relates to a fluid pipeline transportation structure. Background Technology

[0002] Pipeline transportation can continuously and stably transport fluids, ensuring the continuity of production and supply; through pipelines, fluids can be delivered to their destination quickly and accurately, improving transportation efficiency; compared with other transportation methods, pipeline transportation has relatively less energy loss, especially when transporting over long distances, its energy-saving effect is more significant.

[0003] A low-temperature fluid transport pipeline for coating processing is disclosed in patent publication number CN222351763U. This patent includes a pipeline body, an anti-static device, and an anti-static eliminator. The anti-static device is movably mounted on the surface of the pipeline body. The anti-static device consists of an anti-static eliminator, a discharge needle, a mounting block, and bolts. The anti-static eliminator is installed inside the anti-static device. A second connector is mounted on the surface of the anti-static device. A connecting wire is mounted on the top of the connector. A first connector is mounted on the end of the connecting wire away from the second connector. A discharge needle is fixedly mounted on the bottom of the first connector. The mounting block is movably mounted on the top of the pipeline body by bolts. The top of the discharge needle is movably mounted inside the pipeline body.

[0004] During the installation of mounting blocks, existing designs often rely on fasteners such as bolts for fixation; however, bolt fastening is not only cumbersome and time-consuming, but also may loosen due to factors such as vibration and corrosion during long-term use, thus affecting the stability and reliability of the mounting blocks. Utility Model Content

[0005] The purpose of this invention is to provide a fluid pipeline conveying structure that improves the stability and efficiency of the mounting block.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a fluid pipeline transportation structure, comprising...

[0007] The pipe body has an electrostatic body installed on its top, and the electrostatic body has a receiving cavity inside, and an electrostatic eliminator is installed inside the receiving cavity.

[0008] Mounting block, which is detachably mounted on the pipe body;

[0009] The positioning and stabilizing component includes a positioning block disposed at the bottom of the mounting block, a positioning groove opened at the top of the pipe body for the positioning block to be inserted, a fastening lug disposed on the outer side of the mounting block, a threaded groove opened on the side surface of the fastening lug, a fastening post mounted on the pipe body, a fixing seat disposed at the top of the fastening post, a threaded hole opened inside the fixing seat, and a threaded rod passing through the threaded hole, one end of which is screwed into the inside of the threaded groove.

[0010] Preferably, it also includes a discharge needle disposed on the mounting block, with one end of the discharge needle inserted into the interior of the pipe body.

[0011] Preferably, it also includes a connector one disposed on the top of the discharge needle and a connector two installed on the top of the electrostatic body, and the connector two and connector one are connected by a wire.

[0012] Preferably, it also includes a high-temperature medium inlet pipe connected to the inside of the pipeline body, and a high-temperature medium outlet pipe connected to the inside of the pipeline body.

[0013] Preferably, it also includes a paint delivery pipe, which is connected to the pipe body via a flange.

[0014] Preferably, it also includes a slider disposed at the bottom of the static eliminator and a groove formed on the static body for the slider to be inserted.

[0015] Preferably, it also includes an electric push rod installed in the accommodating cavity, a pressure plate disposed on the piston rod of the electric push rod, a pad disposed on the bottom of the pressure plate, and a connecting lug disposed on the side surface of the pad and fixed to the pressure plate.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] By designing positioning and stabilizing components, the positioning of the mounting block during installation is enhanced, and the fastening lugs can be quickly fixed, thereby facilitating the rapid and stable installation of the mounting block. This improves the stability and durability of the mounting block, ensuring the safe and efficient operation of the entire pipeline transportation system. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 For the present utility model Figure 1 A schematic diagram of the enlarged R region structure in the diagram;

[0020] Figure 3 This is a schematic diagram of the splicing structure of the mounting block and the pipe body of this utility model;

[0021] Figure 4 This is a schematic diagram of the electrostatic eliminator and electrostatic body splicing structure of this utility model;

[0022] Figure 5 For the present utility model Figure 4 A schematic diagram of the enlarged structure of region H in the diagram;

[0023] In the diagram: 1. Pipe body; 11. High-temperature medium inlet pipe; 12. High-temperature medium outlet pipe; 13. Fastening column; 14. Positioning groove; 140. Baffle plate; 2. Paint conveying pipe; 3. Static eliminator body; 31. Connector II; 32. Slide groove; 4. Static eliminator; 41. Slide bar; 5. Mounting block; 51. Fastening ear; 510. Threaded groove; 52. Positioning block; 6. Discharge needle; 61. Connector I; 7. Fixing seat; 71. Threaded rod; 8. Electric push rod; 81. Pressure plate; 9. Pad; 91. Connecting ear. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example 1

[0026] Please see Figures 1-3 This is the first embodiment of the present invention, which provides a fluid pipeline transportation structure, including...

[0027] The pipe body 1 has an electrostatic body 3 installed on its top, which realizes the addition of the electrostatic body 3. The electrostatic body 3 has a receiving cavity inside, which realizes the opening of the receiving cavity. An electrostatic eliminator 4 is installed inside the receiving cavity. The electrostatic eliminator 4 can be used with a discharge needle 6 to eliminate the static electricity generated by friction during the transportation of the coating.

[0028] Installation block 5 is detachably installed on pipe body 1;

[0029] The positioning and stabilizing components include a positioning block 52 located at the bottom of the mounting block 5, which adds the positioning block 52; a positioning groove 14 formed at the top of the pipe body 1 for the positioning block 52 to be inserted into, which enhances the positioning of the mounting block 5 during installation by utilizing the cooperation between the positioning block 52 and the positioning groove 14; a fastening ear 51 located on the outer side of the mounting block 5, which adds the fastening ear 51; and a threaded groove 510 formed on the side surface of the fastening ear 51, which is installed on the pipe body 1. The fastening post 13 on the top is added to the fastening post 13. The fixing seat 7 is set on the top of the fastening post 13, and the fastening post 13 increases the support for the fixing seat 7. The threaded hole is opened in the fixing seat 7, and the threaded rod 71 passes through the threaded hole. One end of the threaded rod 71 is screwed into the inside of the threaded groove 510. When the threaded rod 71 is screwed into the inside of the threaded groove 510, the fastening ear 51 can be fixed, which helps to achieve the quick and stable installation of the mounting block 5.

[0030] In this embodiment, preferably, a discharge needle 6 is also provided on the mounting block 5, which realizes the addition of the discharge needle 6. One end of the discharge needle 6 is inserted into the interior of the pipe body 1. The static eliminator 4 performs high-voltage corona discharge through the tip of the discharge needle 6. This process ionizes the surrounding air and forms a large number of positive and negative ions. Next, the static eliminator 4 uses wind power to blow the generated positive and negative ions to the surface of the object that needs to neutralize static electricity. These ions form a certain concentration in the air, so that their charge density becomes the opposite polarity of the static electricity on the object surface. When ions with opposite charges meet the static charge on the object surface, they will combine with each other, thereby achieving the neutralization of static electricity. This process effectively reduces the static charge on the object surface, or even completely eliminates static electricity.

[0031] In this embodiment, preferably, it also includes a connector 61 disposed on the top of the discharge needle 6, thereby adding a connector 61, and a connector 31 installed on the top of the electrostatic body 3, thereby adding a connector 31, and the connector 31 and the connector 61 are connected by a wire.

[0032] Example 2

[0033] Please see Figures 1-5 This is the second embodiment of the present invention, which provides a fluid pipeline transportation structure, including...

[0034] The pipe body 1 has an electrostatic body 3 installed on its top, which realizes the addition of the electrostatic body 3. The electrostatic body 3 has a receiving cavity inside, which realizes the opening of the receiving cavity. An electrostatic eliminator 4 is installed inside the receiving cavity. The electrostatic eliminator 4 can eliminate the static electricity generated by friction during the transportation of the coating.

[0035] Installation block 5 is detachably installed on pipe body 1;

[0036] The positioning and stabilizing components include a positioning block 52 located at the bottom of the mounting block 5, which adds the positioning block 52; a positioning groove 14 formed at the top of the pipe body 1 for the positioning block 52 to be inserted into, which enhances the positioning of the mounting block 5 during installation by utilizing the cooperation between the positioning block 52 and the positioning groove 14; a fastening ear 51 located on the outer side of the mounting block 5, which adds the fastening ear 51; and a threaded groove 510 formed on the side surface of the fastening ear 51, which is installed on the pipe body 1. The fastening post 13 on the top is added to the fastening post 13. The fixing seat 7 is set on the top of the fastening post 13, and the fastening post 13 increases the support for the fixing seat 7. The threaded hole is opened in the fixing seat 7, and the threaded rod 71 passes through the threaded hole. One end of the threaded rod 71 is screwed into the inside of the threaded groove 510. When the threaded rod 71 is screwed into the inside of the threaded groove 510, the fastening ear 51 can be fixed, which helps to achieve the quick and stable installation of the mounting block 5.

[0037] In this embodiment, preferably, it also includes baffles 140 symmetrically arranged on the inner side of the positioning groove 14, thereby adding baffles 140. When the positioning block 52 is inserted into the positioning groove 14, the positioning block 52 abuts against the baffles 140. The baffles 140 are used to reinforce the positioning block 52 inserted into the positioning groove 14.

[0038] In this embodiment, preferably, a discharge needle 6 is also provided on the mounting block 5, which realizes the addition of the discharge needle 6. One end of the discharge needle 6 is inserted into the interior of the pipe body 1. The static eliminator 4 performs high-voltage corona discharge through the tip of the discharge needle 6. This process ionizes the surrounding air and forms a large number of positive and negative ions. Next, the static eliminator 4 uses wind power to blow the generated positive and negative ions to the surface of the object that needs to neutralize static electricity. These ions form a certain concentration in the air, so that their charge density becomes the opposite polarity of the static electricity on the object surface. When ions with opposite charges meet the static charge on the object surface, they will combine with each other, thereby achieving the neutralization of static electricity. This process effectively reduces the static charge on the object surface, or even completely eliminates static electricity.

[0039] In this embodiment, preferably, it also includes a connector 61 disposed on the top of the discharge needle 6, thereby adding a connector 61, and a connector 31 installed on the top of the electrostatic body 3, thereby adding a connector 31, and the connector 31 and the connector 61 are connected by a wire.

[0040] In this embodiment, preferably, it also includes a high-temperature medium inlet pipe 11 that communicates with the inside of the pipe body 1, a high-temperature medium outlet pipe 12 that communicates with the inside of the pipe body 1, and a paint conveying pipe 2. The paint conveying pipe 2 and the pipe body 1 are connected by a flange, which helps to realize the conveying of paint.

[0041] In this embodiment, preferably, a slider 41 is also provided at the bottom of the static eliminator 4, which realizes the addition of slider 41. A groove 32 is opened on the static body 3 for the slider 41 to be inserted. By using the cooperation of slider 41 and groove 32, the limitations during the installation of static eliminator 4 are increased.

[0042] In this embodiment, preferably, it also includes an electric push rod 8 installed in the accommodating cavity, realizing the addition of the electric push rod 8; a pressure plate 81 is set on the piston rod of the electric push rod 8, which can drive the pressure plate 81 to rise and fall when the electric push rod 8 is working; a pad 9 is installed at the bottom of the pressure plate 81, which drives the pad 9 to rise and fall when the pressure plate 81 rises and falls; when the pad 9 falls, it abuts against the static eliminator 4 to reinforce the static eliminator 4; and a connecting ear 91 is set on the side surface of the pad 9 and fixed to the pressure plate 81, which increases the splicing performance of the pad 9 and the pressure plate 81.

[0043] The working principle and usage process of this utility model are as follows: The positioning block 52 is inserted into the positioning groove 14. The positioning block 52 inserted into the positioning groove 14 is reinforced by the cooperation of the baffle 140. The threaded rod 71 is rotated. When the threaded rod 71 is screwed into the threaded groove 510, the fastening ear 51 can be fixed, which helps to achieve the quick and stable installation of the mounting block 5. The static electricity generated by friction during the transportation of the coating is eliminated by the cooperation of the static eliminator 4 and the discharge needle 6.

[0044] Although embodiments of the present invention have been shown and described in detail above, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A fluid pipeline transport structure, characterized in that: include The pipe body (1) has an electrostatic body (3) installed on its top, and the electrostatic body (3) has a receiving cavity inside, and an electrostatic eliminator (4) is installed inside the receiving cavity. Mounting block (5), which is detachably mounted on the pipe body (1); The positioning and stabilizing component includes a positioning block (52) disposed at the bottom of the mounting block (5), a positioning groove (14) opened at the top of the pipe body (1) for the positioning block (52) to be inserted, a fastening ear (51) disposed on the outer side of the mounting block (5), a threaded groove (510) opened on the side surface of the fastening ear (51), a fastening post (13) mounted on the pipe body (1), a fixing seat (7) disposed at the top of the fastening post (13), a threaded hole opened inside the fixing seat (7), and a threaded rod (71) passing through the threaded hole, one end of which is screwed into the inside of the threaded groove (510).

2. The fluid pipeline conveying structure according to claim 1, characterized in that: It also includes baffles (140) symmetrically arranged on the inner side of the positioning groove (14). When the positioning block (52) is inserted into the positioning groove (14), the positioning block (52) abuts against the baffles (140).

3. The fluid pipeline conveying structure according to claim 1, characterized in that: It also includes a discharge needle (6) disposed on the mounting block (5), and one end of the discharge needle (6) is inserted into the interior of the pipe body (1).

4. The fluid pipeline conveying structure according to claim 3, characterized in that: It also includes a connector 1 (61) set on the top of the discharge needle (6) and a connector 2 (31) installed on the top of the electrostatic body (3), and the connector 2 (31) and connector 1 (61) are connected by a wire.

5. A fluid pipeline conveying structure according to claim 1, characterized in that: It also includes a high-temperature medium inlet pipe (11) connected to the inside of the pipe body (1) and a high-temperature medium outlet pipe (12) connected to the inside of the pipe body (1).

6. The fluid pipeline conveying structure according to claim 1, characterized in that: It also includes a paint delivery pipe (2), which is connected to the pipe body (1) by a flange.

7. A fluid pipeline conveying structure according to claim 1, characterized in that: It also includes a slider (41) located at the bottom of the static eliminator (4) and a groove (32) on the static body (3) for the slider (41) to be inserted.

8. A fluid pipeline conveying structure according to claim 1, characterized in that: It also includes an electric push rod (8) installed in the accommodating cavity, a pressure plate (81) set on the piston rod of the electric push rod (8), a pad (9) installed at the bottom of the pressure plate (81), and a connecting lug (91) set on the side surface of the pad (9) and fixed to the pressure plate (81).

Citation Information

Patent Citations

  • Low-temperature fluid conveying pipeline for coating processing

    CN222351763U