Cyclonic flow pipeline cleaning device

The cyclone flow pipeline cleaning device, which combines a high-pressure air compressor and a cyclone accelerator, along with a track and wheel system, solves the problems of high water consumption and inconvenient nozzle movement in existing devices, achieving efficient and flexible pipeline cleaning.

CN224208737UActive Publication Date: 2026-05-08DONGYING HUIJUFENG PETROLEUM TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGYING HUIJUFENG PETROLEUM TECH CO LTD
Filing Date
2025-05-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing cyclone pipeline cleaning devices consume a large amount of water during the cleaning process, and the wastewater treatment after cleaning is cumbersome. In addition, the nozzles are difficult to move inside the pipeline, which affects the cleaning effect.

Method used

It employs a combination of a high-pressure air compressor and a cyclone accelerator, using air accelerated by the cyclone for cleaning, and utilizes a track and wheel system in the moving structure to allow the nozzles to move flexibly within the pipeline.

Benefits of technology

It reduces water consumption, simplifies wastewater treatment, improves the practicality and flexibility of cleaning equipment, and ensures the smooth progress of cleaning work.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cyclone pipeline cleaning. The cyclone pipeline cleaning device comprises an air treatment structure, one end of the air treatment structure communicates with a communicating pipe, one end of the communicating pipe is fixedly connected with a nozzle, the nozzle is spiral, and a moving structure is arranged on the outer surface of one end of the communicating pipe. One end of the communicating pipe is positioned on the outer surface of the upper end of the mounting bin through the positioning belt, the two sets of action motors are started at the same time to control the multiple rotating shafts on the two sides of the mounting bin respectively, the multiple sets of rotating wheels and the crawler belts can be driven to rotate through transmission of the transmission belt, and then the two sets of crawler belts can be flexibly controlled; and therefore, the communicating pipe can be driven to flexibly move in a complex scene in the pipeline, the situation that the cleaning work is affected due to the fact that the nozzle is inconvenient to move in the pipeline can be avoided, and the practicability of the equipment is improved to a certain degree.
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Description

Technical Field

[0001] This utility model relates to the field of cyclone pipeline cleaning technology; more specifically, it relates to a cyclone pipeline cleaning device. Background Technology

[0002] Pipeline cleaning is a technical process for removing silt, scale, and impurities from inside transport pipelines. It aims to ensure the safety and efficiency of media transportation. Industrial pipelines need to be inspected using endoscopes or ultrasonic sensors to locate blockages and conduct corrosion assessments simultaneously. Regular maintenance can reduce energy consumption and prevent media contamination. It is crucial for leak prevention, life extension, and safe production in long-distance transportation systems such as oil, natural gas, and chemicals.

[0003] Currently, existing cyclone pipeline cleaning devices have several drawbacks. They consume large amounts of water during cleaning, and the process of removing wastewater and sediment is cumbersome, reducing the device's practicality. Furthermore, sediment buildup within the pipeline can hinder the movement of the cleaning nozzles, potentially impacting the cleaning process and further compromising the device's usability. Therefore, a cyclone pipeline cleaning device is urgently needed to address these issues. Utility Model Content

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a cyclone flow pipeline cleaning device to solve the problems existing in the background art.

[0005] This utility model provides the following technical solution: a cyclone pipeline cleaning device, comprising:

[0006] An air handling structure is provided, with a connecting pipe at one end and a nozzle fixedly connected to the other end of the connecting pipe. The nozzle is spiral-shaped, and a movable structure is provided on the outer surface of the connecting pipe at one end.

[0007] The air handling structure includes a high-pressure air compressor;

[0008] The movable structure includes an installation compartment, which is attached to the outer surface of the lower end of one end of the connecting pipe.

[0009] Preferably, the air handling structure further includes an air compressor motor, which is installed on the outer surface of one end of the high-pressure air compressor. One side of the upper end of the high-pressure air compressor is connected to a cyclone accelerator, and the outer surface of one end of the upper end of the cyclone accelerator is equipped with a cyclone motor. A connecting pipe is also connected to one side of the upper end of the cyclone accelerator. This design allows air to be compressed by the high-pressure air compressor and discharged into the cyclone accelerator for cyclone acceleration.

[0010] Preferably, a pipe connects the high-pressure air compressor and the cyclone accelerator, and both the pipe and the connecting pipe are made of polyurethane. This design can improve the service life of the equipment in high-pressure working environments by utilizing the wear resistance and plasticity of the pipe and the connecting pipe themselves.

[0011] Preferably, the moving structure further includes positioning belts, and there are two sets of positioning belts. Both sets of positioning belts are sleeved on the outer surface of one end of the connecting pipe. The outer surfaces of both sides of the positioning belts are threaded to the inside of the upper outer surface of the mounting compartment. Motion motors are installed on both sides inside the mounting compartment. Rotary shafts are inserted into the inside of both sides of the mounting compartment. There are six sets of rotating shafts. The outer surfaces of the three sets of rotating shafts located on the same side inside the mounting compartment are all sleeved with transmission belts. The outer surface of the outer side of each rotating shaft is fixedly connected to a wheel, and the outer surface of the wheel is sleeved with a track. This design allows the rotating shafts to rotate, thereby driving the rotating wheels to rotate.

[0012] Preferably, the output ends of the two sets of motors are fixedly connected to the outer surface of the inner side of one set of rotating shafts at corresponding positions on both sides inside the mounting compartment. This design allows the rotating shafts to rotate by starting the motors.

[0013] Preferably, the outer surface of the rotating shaft is in contact with the inner surface of the transmission belt, and the outer surface of the rotating wheel is in contact with the inner surface of the track. This design allows multiple rotating shafts to rotate through the transmission belt when a set of rotating shafts rotates.

[0014] The technical effects and advantages of this utility model are as follows: By starting the air compressor motor and the cyclone motor, the high-pressure air compressor can compress the air, and then the compressed air is discharged into the cyclone accelerator to accelerate the cyclone. Then the air at the treatment port can be discharged through the connecting pipe and sprayed out through the nozzle to clean the pipeline. This method can avoid consuming a lot of water resources and also reduce the burden on sewage treatment after cleaning, thus improving the practicality of the equipment to a certain extent.

[0015] The connecting pipe is positioned on the outer surface of the upper part of the installation chamber by a positioning belt. At the same time, two sets of motors are started to control the various rotating shafts on both sides of the installation chamber. The transmission belt drives multiple sets of wheels and tracks to rotate, which allows for flexible control of the two sets of tracks. This enables the connecting pipe to move flexibly in complex pipeline environments, thus avoiding the situation where the nozzle is unable to move freely within the pipeline, which would affect the cleaning work. This improves the practicality of the equipment to a certain extent. Moreover, its overall structure is simple and reasonable in design, highly practical, and easy to promote and apply. Attached Figure Description

[0016] Figure 1This is a three-dimensional structural diagram of the present invention.

[0017] Figure 2 This is a three-dimensional exploded view of the air handling structure of this utility model.

[0018] Figure 3 This is an exploded three-dimensional structural diagram of the nozzle of this utility model.

[0019] Figure 4 This is a three-dimensional exploded view of the movable structure of this utility model.

[0020] The attached figures are labeled as follows: 1. Air handling structure; 11. High-pressure air compressor; 12. Air compressor motor; 13. Cyclone accelerator; 14. Cyclone motor; 2. Connecting pipe; 3. Nozzle; 4. Moving structure; 41. Mounting chamber; 42. Positioning belt; 43. Moving motor; 44. Shaft; 45. Drive belt; 46. Wheel; 47. Track. Detailed Implementation

[0021] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. In addition, the forms of the various structures described in the following embodiments are merely illustrative. The cyclone flow pipeline cleaning device involved in this utility model is not limited to the structures described in the following embodiments. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0022] Example 1

[0023] like Figure 1 and Figure 2 As shown, this embodiment proposes a cyclone flow pipeline cleaning device, including:

[0024] An air handling structure 1 is provided with a connecting pipe 2 at one end, and a nozzle 3 is fixedly connected to one end of the connecting pipe 2. The nozzle 3 is spiral in shape, and a movable structure 4 is provided on the outer surface of one end of the connecting pipe 2.

[0025] The air handling structure 1 includes a high-pressure air compressor 11 and an air compressor motor 12. The air compressor motor 12 is installed on the outer surface of one upper end of the high-pressure air compressor 11. A cyclone accelerator 13 is connected to one side of the upper end of the high-pressure air compressor 11. A cyclone motor 14 is installed on the outer surface of one upper end of the cyclone accelerator 13. A connecting pipe 2 is connected to one side of the upper end of the cyclone accelerator 13. A pipe connects the high-pressure air compressor 11 and the cyclone accelerator 13. Both the pipe and the connecting pipe 2 are made of polyurethane.

[0026] In this embodiment, by starting the air compressor motor 12, the high-pressure air compressor 11 can compress the air, and the compressed air flows into the interior of the cyclone accelerator 13 through the pipeline. By starting the cyclone motor 14, the cyclone accelerator 13 can accelerate the compressed air into a cyclone, and then the air flows through the connecting pipe 2 to the nozzle 3 for spraying. At the same time, the wear resistance and plasticity of the materials of the pipeline and the connecting pipe 2 can improve the service life of the equipment. The connecting pipe 2 can be more flexible when cleaning the bends of the pipeline. The spiral design of the nozzle 3 can increase the cleaning range when spraying air for cleaning.

[0027] Example 2

[0028] like Figure 3 and Figure 4 As shown, based on the same concept as the above embodiments, this embodiment also proposes:

[0029] The movable structure 4 includes an installation chamber 41, which is attached to the outer surface of the lower end of one end of the connecting pipe 2. The movable structure 4 also includes a positioning belt 42, and there are two sets of positioning belts 42. Both sets of positioning belts 42 are sleeved on the outer surface of one end of the connecting pipe 2. The outer surfaces of both sides of the positioning belts 42 are threaded to the inside of the upper outer surface of the installation chamber 41. Motion motors 43 are installed on both sides inside the installation chamber 41. Rotating shafts 44 are inserted into the inside of both sides of the installation chamber 41. There are six sets of rotating shafts 44. The output ends of the two sets of motion motors 43 are respectively fixedly connected to the outer surface of the inner side of one set of rotating shafts 44 at corresponding positions on both sides inside the installation chamber 41. This design can drive the rotating shafts 44 to rotate by starting the motion motors 43.

[0030] Furthermore, the outer surfaces of the three sets of rotating shafts 44 located on the same side inside the installation compartment 41 are all fitted with transmission belts 45. The outer surface of each rotating shaft 44 is fixedly connected with a wheel 46, and the outer surface of the wheel 46 is fitted with a track 47. The outer surface of the rotating shaft 44 is in contact with the inner surface of the transmission belt 45, and the outer surface of the wheel 46 is in contact with the inner surface of the track 47. This design, through the transmission of the transmission belt 45, can drive multiple sets of rotating shafts 44 to rotate synchronously when one set of rotating shafts 44 rotates, and the transmission is more stable. At the same time, when the wheel 46 rotates, it can drive the track 47 to rotate, and the track 47 can rotate more stably.

[0031] Working principle: When using the equipment, first start the air compressor motor 12 and the cyclone motor 14. The air is compressed by the high-pressure air compressor 11, and then the compressed air is discharged into the cyclone accelerator 13. Next, start the cyclone motor 14 to accelerate the compressed air into a cyclone. Then, the processed gas is discharged into the connecting pipe 2, and can be sprayed through the nozzle 3 to clean the pipeline that needs to be cleaned. At the same time, two sets of motion motors 43 can be started. Through the transmission belt 45, multiple sets of rotating shafts 44 can be driven to rotate synchronously, which can drive the rotating wheel 46 and the track 47 to rotate. This can drive the installation chamber 41 to move flexibly inside the pipeline, thereby driving the connecting pipe 2 and the nozzle 3 to move inside the pipeline. Thus, the pipeline can be gradually cleaned through the nozzle 3. The above is the complete working principle of this utility model.

[0032] In conclusion, the above are merely preferred embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A cyclone flow pipeline cleaning device, characterized in that, include: An air handling structure (1) is provided with a connecting pipe (2) at one end, and a nozzle (3) is fixedly connected to one end of the connecting pipe (2), and the nozzle (3) is spiral in shape. A movable structure (4) is provided on the outer surface of one end of the connecting pipe (2). The air handling structure (1) includes a high-pressure air compressor (11); The movable structure (4) includes an installation compartment (41), and the installation compartment (41) is attached to the outer surface of the lower end of one end of the connecting pipe (2).

2. The cyclone flow pipeline cleaning device according to claim 1, characterized in that: The air handling structure (1) also includes an air compressor motor (12), and the air compressor motor (12) is installed on the outer surface of one end of the high-pressure air compressor (11). One side of the upper end of the high-pressure air compressor (11) is connected to a cyclone accelerator (13), and a cyclone motor (14) is installed on the outer surface of one end of the upper end of the cyclone accelerator (13). One side of the upper end of the cyclone accelerator (13) is connected to a connecting pipe (2).

3. The cyclone flow pipeline cleaning device according to claim 2, characterized in that: The high-pressure air compressor (11) and the cyclone accelerator (13) are connected by a pipe, and the pipe and the connecting pipe (2) are both made of polyurethane.

4. The cyclone flow pipeline cleaning device according to claim 1, characterized in that: The moving structure (4) also includes a positioning belt (42), and there are two sets of positioning belts (42). Both sets of positioning belts (42) are sleeved on the outer surface of one end of the connecting pipe (2). The outer surfaces of both sides of the positioning belts (42) are threaded to the inside of the upper outer surface of the mounting chamber (41). The two sides inside the mounting chamber (41) are equipped with a moving motor (43). The two sides of the mounting chamber (41) are each inserted with a rotating shaft (44). There are six sets of rotating shafts (44). The outer surfaces of the three sets of rotating shafts (44) located on the same side inside the mounting chamber (41) are all sleeved with a transmission belt (45). The outer surface of the rotating shaft (44) on the outer side is fixedly connected with a wheel (46), and the outer surface of the wheel (46) is sleeved with a track (47).

5. The cyclone flow pipeline cleaning device according to claim 4, characterized in that: The output ends of the two sets of motors (43) are respectively fixedly connected to the outer surface of the inner side of a set of rotating shafts (44) at corresponding positions on both sides inside the mounting compartment (41).

6. The cyclone flow pipeline cleaning device according to claim 4, characterized in that: The outer surface of the shaft (44) is in contact with the inner surface of the transmission belt (45), and the outer surface of the wheel (46) is in contact with the inner surface of the track (47).