Pipeline type deodorization device

By introducing a crawling module and a cell-wall breaking mechanism into the deodorization device, the problem of the deodorizer being unable to be inserted due to blockage of the exhaust duct was solved, achieving a deodorization effect throughout the entire area.

CN224056356UActive Publication Date: 2026-03-31DONGGUAN ZIKE ENVIRONMENTAL PROTECTION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The existing deodorization pipes cannot be inserted into the exhaust pipe when they encounter blockages, resulting in poor deodorization performance.

Method used

A pipeline deodorization device was designed, which adopts a crawling module and a cell-wall breaking mechanism. The crawling module includes a crawling seat and a crawling mechanism, and the cell-wall breaking mechanism consists of a cell-wall breaking disc and a cell-wall breaking block. It can rotate and remove dirt when blocked, ensuring that the pipeline assembly can continue to move forward and achieve all-round deodorization.

Benefits of technology

It effectively removes blockages in the exhaust duct, ensuring that the deodorizer can continue to work and achieve full-area purification and deodorization of the exhaust duct.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pipeline deodorization, in particular to a pipeline type deodorization device which comprises a deodorization machine body, a pipeline assembly is installed at the output end of the deodorization machine body, a plurality of atomization nozzles are arranged on the pipeline assembly in the length direction, the pipeline assembly is provided with a crawling module, and the crawling module comprises a crawling seat arranged on the pipeline assembly in a sleeving mode. A crawling mechanism in rolling fit with the outer wall of the pipeline assembly is arranged in the crawling base. A wall breaking mechanism is arranged at the outer end of the crawling seat and comprises a wall breaking disc, and a plurality of wall breaking blocks are mounted on the surface of the wall breaking disc; when the pipeline assembly is inserted into a deodorizing exhaust pipe, the deodorizing machine body sprays atomized chemicals through an atomizing nozzle of the pipeline assembly, when the exhaust pipe is blocked, a wall breaking mechanism of the crawling module works, a wall breaking disc rotates, a wall breaking block makes contact with dirt on the inner wall of the exhaust pipe, the dirt is removed, the pipeline assembly can continue to advance, and the deodorizing effect is achieved. And the atomization nozzle of the pipeline assembly can deodorize and purify more areas of the exhaust pipeline.
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Description

Technical Field

[0001] This utility model relates to the field of pipeline deodorization technology, and in particular to a pipeline deodorization device. Background Technology

[0002] A deodorizer is an indispensable device in a deodorization system. A deodorizer is a machine that can deodorize by spraying out fragrance liquids, disinfectant gases, etc. In large spaces such as garbage rooms and public toilets, a pipeline deodorization system is generally used. This type of deodorization system mainly consists of a spray deodorizer and pipelines, and the pipelines increase the area to which it can deodorize.

[0003] Some exhaust ducts produce a lot of odors, requiring the use of deodorizing machines to deodorize them. This involves inserting the deodorizing machine's pipe into the duct to remove the odors and achieve purification. However, existing deodorizing pipes cannot be inserted further into the exhaust duct when they encounter blockages, resulting in ineffective deodorization. Utility Model Content

[0004] The purpose of this invention is to provide a pipeline deodorization device to address the shortcomings of existing technologies.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows:

[0006] A pipeline deodorization device includes a deodorizing machine body, an output end of which is equipped with a pipeline assembly, and multiple atomizing nozzles arranged along the length of the pipeline assembly. The device is characterized in that: the pipeline assembly is provided with a crawling module, which includes a crawling seat fitted onto the pipeline assembly, and a crawling mechanism that rolls and engages with the outer wall of the pipeline assembly within the crawling seat; a cell-breaking mechanism is provided at the outer end of the crawling seat, comprising a rotatable cell-breaking disc, and multiple cell-breaking blocks are mounted on the surface of the cell-breaking disc in a ring arrangement.

[0007] Furthermore: the crawler includes a top plate and a bottom plate arranged at intervals. The top plate and the bottom plate are respectively coaxially formed with guide holes for the pipe assembly to pass through. A support column is connected between the top plate and the bottom plate. A track seat is provided on the inner side wall of the support column. The track seat is fitted with a movable transmission track. The inner long side of the transmission track is in frictional contact with the pipe assembly.

[0008] Furthermore: the track support includes a first drive plate and a second drive plate arranged at intervals, a drive gear and a driven gear are installed between the first drive plate and the second drive plate, and the transmission track is sleeved between the drive gear and the driven gear; the track support is also equipped with a motor mount, and the motor mount is provided with a drive motor that is connected to the drive gear.

[0009] Furthermore, multiple guide rollers are provided between the driving gear and the driven gear to push the transmission track outward.

[0010] Furthermore: the track seat and the support column are parallel to each other, and two connecting rods are provided between the support column and the track seat. The two connecting rods are arranged in parallel and spaced apart, and the connecting rods are rotatably connected to the support column and the track seat respectively.

[0011] Furthermore: the support column is formed with an adjusting sliding groove along its length, an adjusting sliding seat is slidably installed in the adjusting sliding groove, the adjusting sliding seat is rotatably connected to a drive rod, and the other end of the drive rod is rotatably connected to the track seat; the support column is equipped with a telescopic cylinder that drives the adjusting sliding seat to slide along the length of the adjusting sliding groove.

[0012] Furthermore, the cell-wall breaking mechanism also includes a cell-wall breaking drive component disposed on the top plate, the cell-wall breaking drive component including a top drive shaft rotatably mounted on the top plate, the top drive shaft being connected to the cell-wall breaking plate.

[0013] Furthermore: a drive cavity is formed inside the top plate, a top motor is installed inside the drive cavity, a first drive gear is installed on the drive end of the top motor, and a second drive gear that meshes with the first drive gear is sleeved on the top drive shaft.

[0014] Furthermore: A coaxial annular seat is installed on the top of the top plate, located around the top drive shaft. The annular seat is formed with a concave annular groove, and a sliding block is slidably installed in the annular groove. A portion of the top of the sliding block is exposed outward, and the exposed portion of the top of the sliding block is connected to the bottom of the blending plate.

[0015] The beneficial effects of this utility model are as follows: When the pipe assembly is inserted into the deodorizing exhaust pipe, the deodorizing machine body sprays atomized chemicals through the atomizing nozzle of the pipe assembly. When the exhaust pipe is blocked, the wall-breaking mechanism of the crawling module works, the wall-breaking disc rotates, and the wall-breaking blocks come into contact with the dirt on the inner wall of the exhaust pipe, removing the dirt and allowing the pipe assembly to continue to move forward. This makes it easier for the atomizing nozzle of the pipe assembly to deodorize and purify more areas of the exhaust pipe. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the deodorization device.

[0017] Figure 2 This is a schematic diagram of the deodorization device from another perspective.

[0018] Figure 3 This is a schematic diagram of the cell wall breaking mechanism.

[0019] Figure 4 This is a partial structural diagram of the crawling module.

[0020] Figure 5 for Figure 4A magnified view of a portion of the image.

[0021] The reference numerals in the figures include:

[0022] 1-Deodorizer body,

[0023] 11-Pipe assembly, 12-Atomizing nozzle, 13-Crawling module, 14-Crawling seat, 15-Top plate,

[0024] 16-Bottom plate, 17-Support column, 18-Guide hole

[0025] 2-Breaking mechanism

[0026] 21-Blending disc, 22-Blending block, 23-Top drive shaft, 24-Drive chamber, 25-Top motor

[0027] 26-First drive gear, 27-Second drive gear, 28-Annular seat, 29-Annular groove

[0028] 291-Slider Block

[0029] 3-track seat,

[0030] 31-First drive plate, 32-Second drive plate, 33-Driving gear, 34-Driven gear

[0031] 35-Drive track, 36-Guide roller, 37-Motor mount, 38-Drive motor,

[0032] 4-Connecting rod,

[0033] 41-Adjusting sliding groove, 42-Adjusting sliding seat, 43-Drive rod, 44-Telescopic cylinder, 45-Telescopic rod

[0034] 46 - Compression spring. Detailed Implementation

[0035] The present invention will now be described in detail with reference to the accompanying drawings.

[0036] like Figure 1-5As shown, the pipeline deodorization device includes a deodorizing machine body 1. A pipeline assembly 11 is installed at the output end of the deodorizing machine body 1. Multiple atomizing nozzles 12 are arranged along the length of the pipeline assembly 11. The pipeline assembly 11 is provided with a crawling module 13. The crawling module 13 includes a crawling seat 14 sleeved on the pipeline assembly 11. The crawling seat 14 includes a top plate 15 and a bottom plate 16 arranged at intervals. The top plate 15 and the bottom plate 16 are respectively coaxially formed with guide holes 18 for the pipeline assembly 11 to pass through. A support column 17 is connected between the top plate 15 and the bottom plate 16. A crawling mechanism that rolls with the outer wall of the pipeline assembly 11 is provided inside the crawling seat 14. A wall-breaking mechanism 2 is provided at the outer end of the crawling seat 14. The wall-breaking mechanism 2 includes a rotatable wall-breaking plate 21. Multiple wall-breaking blocks 22 are installed on the surface of the wall-breaking plate 21. The multiple wall-breaking blocks 22 are arranged in a ring on the surface of the wall-breaking plate 21.

[0037] The pipe assembly 11 is inserted into the deodorizing exhaust pipe. The deodorizing machine body 1 sprays atomized chemicals through the atomizing nozzle 12 of the pipe assembly 11. When the exhaust pipe is blocked, the wall-breaking mechanism 2 of the crawling module 13 works, the wall-breaking disc 21 rotates, and the wall-breaking block 22 comes into contact with the dirt on the inner wall of the exhaust pipe, removing the dirt and allowing the pipe assembly 11 to continue to move forward, so that the atomizing nozzle 12 of the pipe assembly 11 can deodorize and purify more areas of the exhaust pipe.

[0038] Specifically, the cell-wall breaking mechanism 2 also includes a cell-wall breaking drive component disposed on the top plate 15. The cell-wall breaking drive component includes a top drive shaft 23 rotatably mounted on the top plate 15, and the top drive shaft 23 is connected to the cell-wall breaking plate 21. The top drive shaft rotatably drives the cell-wall breaking plate 21 to rotate, and the cell-wall breaking blocks 22 located on the top of the cell-wall breaking plate 21 can be removed and dropped from the exhaust pipe to prevent the exhaust pipe from being blocked. It can also allow the pipe assembly 11 to continue to advance, realizing atomization deodorization.

[0039] Furthermore, a drive cavity 24 is formed within the top plate 15, and a top motor 25 is disposed within the drive cavity 24. A first drive gear 26 is mounted on the drive end of the top motor 25, and a second drive gear 27, which meshes with the first drive gear 26, is sleeved on the top drive shaft 23. When the top motor 25 located within the drive cavity 24 operates, the rotation of the top drive shaft 23 is achieved through the meshing of the first drive gear 26 and the second drive gear 27, allowing the wall-breaking disc 21 to rotate, thereby removing dirt from the pipe wall and achieving deodorization.

[0040] Furthermore, an annular seat 28, coaxially located around the top drive shaft 23, is mounted on the top of the top plate 15. The annular seat 28 has a concave annular groove 29, on which a sliding block 291 is slidably mounted. A portion of the top of the sliding block 291 is exposed outwards, and this exposed portion connects to the bottom of the blending plate 21. With the annular groove 29 of the annular seat 28 limiting its movement, the sliding block 291 will not detach from the annular groove 29, thus preventing the blending plate 21 from falling off the top plate 15 and ensuring rotational stability.

[0041] Preferably, a track seat 3 is provided on the inner wall of the support column 17, and a movable transmission track 35 is fitted on the track seat 3. The inner long side of the transmission track 35 is in frictional contact with the pipe assembly 11. This allows the crawler seat 14 to move along the length of the pipe assembly 11, and the wall-breaking mechanism 2 to move forward and backward according to the inner wall condition of the exhaust pipe.

[0042] Furthermore, three track seats 3 are provided, with adjacent track seats 3 arranged in a ring at equal intervals within the crawler seat 14 to increase the frictional contact area, making the crawler seat 14 more stable when moving along the pipe assembly 11. The track seat 3 includes a first drive plate 31 and a second drive plate 32 arranged at intervals. A drive gear 33 and a driven gear 34 are installed between the first drive plate 31 and the second drive plate 32, and a transmission track 35 is sleeved between the drive gear 33 and the driven gear 34. The track seat 3 is also equipped with a motor seat 37, which is provided with a drive motor 38 that is connected to the drive gear 33. The drive motor 38 drives the drive gear 33 to rotate, which in turn drives the transmission track 35 to move through meshing transmission. Subsequently, through the meshing transmission of the transmission track 35 and the driven gear 34, the driven gear 34 can rotate, realizing the movement of the transmission track 35, and enabling the crawler seat 14 to crawl.

[0043] Because there is a gap between the driving gear 33 and the driven gear 34, the transmission track 35 is prone to denting. To address this, multiple guide rollers 36 are provided between the driving gear 33 and the driven gear 34 to push the transmission track 35 outward. Two adjacent guide rollers 36 are aligned laterally. With the rolling support of the guide rollers 36, the transmission track 35 will not dent and can make frictional contact with the outer wall of the pipe assembly 11. During movement, it can move forward or backward, ensuring the stability of the movement.

[0044] Furthermore, the track seat 3 and the support column 17 are parallel to each other, and two connecting rods 4 are provided between the support column 17 and the track seat 3. The two connecting rods 4 are arranged in parallel and spaced apart, and are rotatably connected to the support column 17 and the track seat 3 respectively. In this embodiment, the two connecting rods 4, together with the track seat 3 and the support column 17, form a parallelogram structure. Under the rotatable connection of the two connecting rods 4, the track seat 3 can move closer to or further away from the support column 17, so that the radial position of the track seat 3 can change, and it can make frictional contact with pipe assemblies 11 of different outer diameters to maintain crawling motion.

[0045] Specifically, the support column 17 has an adjusting sliding groove 41 formed along its length. An adjusting sliding seat 42 is slidably mounted on the adjusting sliding groove 41. A drive rod 43 is rotatably connected to the adjusting sliding seat, and the other end of the drive rod 43 is rotatably connected to the track seat 3. The support column 17 is equipped with a telescopic cylinder 44 that drives the adjusting sliding seat 42 to slide along the length of the adjusting sliding groove 41. Driven by the telescopic cylinder 44, the adjusting sliding seat 42 slides along the length of the adjusting sliding groove 41, and the inclination of the drive rod 43 changes, thereby changing the radial position of the track seat 3. This allows the track seat 3 to make frictional contact with pipe assemblies 11 of different outer diameters, maintaining crawling motion.

[0046] Preferably, the drive rod 43 has a drive hole formed in the middle frame, into which a telescopic rod 45 is inserted. The telescopic rod 45 can extend and retract within the drive hole. The outer end of the telescopic rod 45 is rotatably connected to the track seat 3. A compression spring 46 is sleeved on the telescopic rod 45. Under the elastic drive of the drive rod 43, the telescopic rod 45, and the compression spring 46, the transmission track 35 of the track seat 3 can elastically contact the outer wall of the pipe assembly 11, providing a buffering effect and making the transmission track 35 fit more stably against the outer wall of the pipe assembly 11.

[0047] It should be noted that the crawling seat 14 is equipped with a power supply battery module, which can supply power to the top motor 25 of the wall-breaking mechanism 2 and the drive motor 38 of the crawling mechanism.

[0048] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.

[0049] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A pipeline deodorization device, comprising a deodorizer body, a pipeline assembly is installed at the output end of the deodorizer body, and a plurality of atomizing nozzles are arranged along the length direction of the pipeline assembly, characterized in that: The pipeline assembly is provided with a crawling module, the crawling module comprises a crawling seat sleeved on the pipeline assembly, and a crawling mechanism in rolling contact with the outer wall of the pipeline assembly is arranged in the crawling seat; a wall breaking mechanism is arranged at the outer end of the crawling seat, the wall breaking mechanism comprises a wall breaking disc capable of rotating, a plurality of wall breaking blocks are arranged on the surface of the wall breaking disc in a ring shape.

2. The ducted deodorizing device according to claim 1, characterized in that: The crawling seat comprises a top disc and a bottom disc arranged at intervals, the top disc and the bottom disc are coaxially formed with guide holes for the pipeline assembly to pass through respectively, a support column is connected between the top disc and the bottom disc, a track seat is arranged on the inner side wall of the support column, and a movable transmission track is sleeved on the track seat, and the inner side long edges of the transmission track are in frictional contact with the pipeline assembly.

3. The ducted deodorizing device according to claim 2, characterized in that: The track seat comprises a first driving plate and a second driving plate arranged at intervals, a driving gear and a driven gear are arranged between the first driving plate and the second driving plate, and the transmission track is sleeved between the driving gear and the driven gear; the track seat is also provided with a motor seat, and the motor seat is provided with a driving motor in transmission connection with the driving gear.

4. The ducted deodorizing device according to claim 3, characterized in that: A plurality of guide rollers are arranged between the driving gear and the driven gear to outwardly support the transmission track.

5. The duct deodorizing device according to claim 4, characterized by: The track seat and the support column are parallel to each other, two connecting rod members are arranged between the support column and the track seat, the two connecting rod members are arranged in parallel at intervals, and the connecting rod members are rotationally connected with the support column and the track seat respectively.

6. The ducted deodorizing device according to claim 5, characterized in that: The support column is formed with an adjusting sliding groove in the length direction, an adjusting sliding seat is slidingly installed in the adjusting sliding groove, the adjusting sliding seat is rotationally connected with a driving rod, the other end of the driving rod is rotationally connected with the track seat, and the support column is provided with a telescopic air cylinder for driving the adjusting sliding seat to slide along the length direction of the adjusting sliding groove.

7. The ducted deodorizing device according to claim 6, characterized in that: The wall breaking mechanism further comprises a wall breaking driving member arranged on the top disc, the wall breaking driving member comprises a top driving shaft rotationally installed on the top disc, and the top driving shaft is connected with the wall breaking disc.

8. The ducted deodorizing device according to claim 7, characterized in that: The top disc is formed with a driving cavity, a top motor is arranged in the driving cavity, a first driving gear is installed on the driving end of the top motor, and the top driving shaft is sleeved with a second driving gear in meshing transmission with the first driving gear.

9. The duct deodorizing device according to claim 8, characterized by: The top disc is provided with an annular seat coaxially located at the periphery of the top driving shaft at the top, the annular seat is formed with an annular groove recessed inward, a sliding block is slidingly installed in the annular groove, and a part of the top of the sliding block is exposed outward, and the exposed part of the top of the sliding block is connected with the bottom of the wall breaking disc.