Pipeline arrangement device with steering function
Through the combined design of the adjustment disk and the clamping mechanism, the shortcomings of the pipeline sorting device in terms of steering flexibility, winding efficiency and clamping adaptability are solved, and flexible steering, automatic winding and stable clamping of the pipeline are achieved, which improves the sorting efficiency and adaptability of the device and reduces maintenance costs.
Patent Information
- Application Number
- CN202511030952.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2025-09-19
AI Technical Summary
Existing pipeline sorting devices have deficiencies in steering flexibility, winding efficiency and clamping adaptability, making them difficult to adapt to complex pipeline layouts, resulting in poor sorting effects, increased maintenance costs and safety risks.
It adopts a combined design of an adjusting disk, a clamping mechanism and a driving mechanism. Through the rotational connection between the adjusting arm and the adjusting shell, combined with anti-slip rubber blocks, it realizes automatic winding and multi-angle adjustment of the pipeline. The clamping mechanism adapts to pipelines of different thicknesses through the pitch-adjusting screw and the position-adjusting slider to ensure neat arrangement.
It realizes flexible steering and automatic winding of the pipeline, improves sorting efficiency, enhances the environmental adaptability and practicality of the device, reduces labor costs, and ensures stable clamping of the pipeline and structural stability for long-term use.
Smart Images

Figure CN120664393A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of arranging devices, and in particular to a pipeline arranging device with a steerable function. Background Art
[0002] In modern industrial production, construction, data centers and other scenarios, a large number of power, communication, fluid transportation and other pipelines crisscross. The reasonable organization and layout of pipelines are not only related to the efficiency of space utilization, but also directly affect the safety and stability of system operation. Disorganized pipelines are prone to cause entanglement, wear and tear, increase maintenance costs and failure risks, and may even cause serious safety accidents such as fires due to the interlacing of lines. As various industries continue to increase their requirements for refined pipeline management, efficient, convenient and adaptable pipeline organization devices have become an urgent need in the engineering field. Although the pipeline organizing devices currently on the market can meet some basic organizing needs, they still have many limitations in actual applications. In terms of steering flexibility, most devices are fixedly installed and cannot adjust the angle according to the direction of complex pipelines. They are difficult to adapt to the winding pipeline layout, resulting in poor pipeline organizing effects; in terms of winding efficiency, traditional devices mostly rely on manual winding, which is not only time-consuming and labor-intensive, but also difficult to ensure the neatness of pipeline arrangement during the winding process, affecting the overall appearance and subsequent maintenance; in terms of clamping adaptability, the clamping structure of the existing device is relatively simple, and it is difficult to stably clamp pipelines of different thicknesses and types. When faced with complex application scenarios with multiple pipelines, accurate organizing cannot be achieved. Therefore, a pipeline organizing device with a steering function is needed to solve the problems existing in the existing technology. Summary of the Invention
[0003] The object of the present invention is to provide a pipeline tidying device with a steerable function to solve the problems raised in the above background technology.
[0004] The cam is fixedly mounted on a drive link of the driving mechanism, and the cam is mounted on a linking member which is cooperatively connected with the drive link of the driving mechanism. The cam is installed in a direction of rotation and is convenient to use and can be used for guiding the driving mechanism. The cam is installed in a direction of rotation of the driving mechanism.
[0005] Preferably, the movable clamp assembly includes a sliding clamp and a positioning slider, the sliding clamp is arranged on one side of the fixed clamp, the positioning slider is fixed to one end of the sliding clamp, the fixed clamp and the surface of the opposite side of the fixed clamp are fixed with anti-slip gaskets, and a clamping opening is provided between the fixed clamp and the sliding clamp.
[0006] Preferably, a pitch-adjusting screw is rotatably connected inside the fixed slide, the pitch-adjusting screw is threadedly connected to the position-adjusting slider, and a pitch-adjusting knob is fixed to one end of the pitch-adjusting screw extending out of the fixed slide.
[0007] Preferably, a positioning guide groove is provided on one side surface of the fixed slide, and the positioning sliding block is slidably connected in the positioning guide groove of the fixed slide.
[0008] Preferably, a driving mechanism is provided inside the adjusting disk, and the driving mechanism includes a driven gear and a driving gear. The driven gear is rotatably connected to the inside of the adjusting disk, and the driving gear is also rotatably connected to the inside of the adjusting disk. The driven gear is meshed with the driving gear, and one end of the driving shaft extends into the adjusting disk and is fixed at the center of one end face of the driven gear.
[0009] Preferably, a protection chamber is provided inside the adjusting disk, a rotation groove is provided at the center of one end surface of the adjusting disk, the rotation groove is connected to the protection chamber, and a clearance opening is provided at the upper end of the adjusting disk, the clearance opening is connected to the protection chamber.
[0010] Preferably, the driven gear is fixed to one end of the driving shaft, and the driving gear is accommodated in the clearance opening of the adjusting disk.
[0011] Preferably, a driving motor is fixed to one end surface of the adjusting disk, and an output shaft of the driving motor is fixed at the center of one end surface of the driving gear.
[0012] Preferably, a rotation groove is provided inside the steering shell, a non-slip rubber block is rotatably connected to the rotation groove of the steering shell, and one end of the fixed slide extends into the steering shell and is fixed at the center of the upper end surface of the non-slip rubber block.
[0013] Preferably, a mounting seat is fixed to one side surface of the direction-adjusting shell, and a mounting hole is formed on one end surface of the mounting seat.
[0014] The present invention provides a pipeline tidying device with a steerable function, which has the following beneficial effects compared with the prior art: Flexible steering to adapt to complex layouts: The adjustment disk is rotatably connected to the adjustment shell through the adjustment arm. Combined with the anti-slip rubber block inside the adjustment shell, the horizontal angle of the winding turntable can be accurately adjusted. It can flexibly adapt to various winding pipeline directions, effectively solve the problem of difficult regularization of complex pipeline layouts, ensure that the pipelines can be neatly arranged in different scenarios, and greatly improve the environmental adaptability of the device. Automatic winding improves sorting efficiency: The driving motor drives the active gear to rotate, and through the gear meshing transmission, the driving shaft and the winding turret are driven to rotate automatically, realizing the automatic winding operation of the pipeline. Compared with manual winding, it significantly improves the pipeline sorting efficiency and reduces labor costs. The winding process is stable and orderly, ensuring the neatness of pipeline storage. Adjustable clamping, suitable for a variety of pipelines: The clamping opening between the fixed clamp and the sliding clamp of the clamping mechanism can be adjusted by the distance adjustment knob and the distance adjustment screw, which can stably clamp pipelines of different thicknesses. At the same time, multiple groups of clamping structures can clamp multiple pipelines separately, meeting the winding needs of multiple pipelines in complex application scenarios, expanding the scope of use of the device and enhancing its practicality. Stable structure to ensure long-term use: The various components are connected by stable methods such as rotating connection and threaded connection, such as the rotating connection between the drive shaft and the adjustment disk and the winding turret, and the threaded connection between the pitch adjustment screw and the position adjustment slider, etc., combined with structures such as anti-slip rubber blocks, to ensure that the device has a stable and reliable structure during long-term use, reduce the occurrence of failures and extend the service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a three-dimensional diagram of the overall structure of the present invention; Figure 2 A three-dimensional diagram of the drive shaft structure of the present invention; Figure 3 This is a perspective view of the cross-sectional structure of the adjustment disk of the present invention; Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle; Figure 5 A perspective view of the driven gear structure of the present invention; Figure 6 A three-dimensional diagram of the structure of the yield opening of the present invention; Figure 7 A three-dimensional diagram of the clamping mechanism structure of the present invention; Figure 8 A perspective view of the sliding clamp structure of the present invention; Figure 9 A perspective view of the steering shell structure of the present invention; Figure 10 This is a three-dimensional diagram of the anti-slip rubber block structure of the present invention.
[0016] In the figure: 1. Adjusting disk; 2. Driving shaft; 3. Winding turret; 4. Driving mechanism; 5. Driven gear; 6. Driving gear; 7. Rotating seat; 8. Yield; 9. Driving motor; 10. Rotating groove; 11. Protective chamber; 12. Clamping mechanism; 13. Fixed collar; 14. Fixed slide; 15. Fixed splint; 16. Movable splint assembly; 17. Sliding clamp; 18. Pitch adjustment screw; 19. Pitch adjustment knob; 20. Adjusting slider; 21. Adjusting guide groove; 22. Anti-slip pad; 23. Adjusting shell; 24. Adjusting arm; 25. Mounting seat; 26. Mounting hole; 27. Anti-slip rubber block. DETAILED DESCRIPTION
[0017] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] Example 1 See also Figure 1-10 The present invention provides a pipeline tidying device with a steerable function, comprising an adjusting disk 1, a driving shaft 2 being rotatably connected at the center of one end surface of the adjusting disk 1, a rotating seat 7 that is rotatably matched with the driving shaft 2 being fixed at the center of one end surface of the adjusting disk 1, a winding rotary frame 3 being rotatably connected to the side surface of the driving shaft 2, a clamping mechanism 12 being sleeved on the surface of the driving shaft 2, the clamping mechanism 12 comprising a fixed collar 13, a fixed slide 14, a fixed splint 15 and a movable splint assembly 16, the fixed collar 13 being sleeved and fixed on the outside of the driving shaft 2, the fixed slide 14 being fixed on the outer ring wall of the fixed collar 13, and the fixed splint 15 being fixed on one side of the fixed slide 14 On the surface, the movable splint assembly 16 is arranged on one side of the fixed splint 15, and a fixed slide 14 is fixed at the center of one end surface of the adjusting disk 1, and the lower part of the fixed slide 14 is rotatably connected to the adjustment shell 23; start the driving motor 9, and the driving gear 6 starts to rotate in the yielding port 8 of the adjusting disk 1. Based on the meshing transmission principle of the driving gear 6 and the driven gear 5, the rotation of the driving gear 6 drives the driven gear 5 to operate synchronously, thereby causing the driving shaft 2 to rotate on one side of the adjusting disk 1, driving the winding turret 3 to rotate. Through this transmission mechanism, the winding turret 3 can automatically wind the pipeline fixed on the driving shaft 2, thereby realizing efficient and neat storage of the pipeline.
[0019] It is worth noting that the movable splint assembly 16 includes a sliding clamp 17 and a positioning slider 20. The sliding clamp 17 is arranged on one side of the fixed splint 15. The positioning slider 20 is fixed to one end of the sliding clamp 17. The fixed splint 15 and the fixed splint 15 are fixed with an anti-slip pad 22 on the surface of the opposite side. A clamping port is provided between the fixed splint 15 and the sliding clamp 17. The internal rotation of the fixed slide 14 is connected to the pitch-adjusting screw 18, and the pitch-adjusting screw 18 is threadedly connected to the positioning slider 20. The pitch-adjusting screw 18 extends out of the fixed slide 14 and is fixed with a pitch-adjusting knob 19 at one end. A positioning guide groove 21 is provided on one side surface of the fixed slide 14. The positioning slider 20 is slidably connected to the fixed slide 14. in the positioning guide groove 21; before the pipeline is wound, one end of the pipeline is placed in the clamping mouth formed by the fixed clamp 15 and the sliding clamp 17, and then the distance adjustment knob 19 is rotated to drive the distance adjustment screw 18 to rotate inside the fixed slide 14. Since the distance adjustment screw 18 and the positioning slider 20 at one end of the sliding clamp 17 are threadedly connected, the sliding clamp 17 can slide along the fixed slide 14 through the positioning slider 20 to achieve flexible adjustment of the size of the clamping mouth. This design can adapt to pipelines of different thicknesses to ensure stable clamping. At the same time, multiple groups of clamping structures can clamp and fix multiple pipeline ends respectively to meet the needs of winding multiple pipelines into coils, and effectively cope with complex and changeable application scenarios.
[0020] It is worth mentioning that a driving mechanism 4 is provided inside the adjusting disk 1. The driving mechanism 4 includes a driven gear 5 and a driving gear 6. The driven gear 5 is rotatably connected to the inside of the adjusting disk 1, and the driving gear 6 is also rotatably connected to the inside of the adjusting disk 1. The driven gear 5 is meshed with the driving gear 6, and one end of the driving shaft 2 extends into the adjusting disk 1 and is fixed at the center of one end face of the driven gear 5.
[0021] It is worth mentioning that a protective chamber 11 is provided inside the adjusting disk 1, a rotating groove 10 is provided at the center of one end surface of the adjusting disk 1, the rotating groove 10 is connected to the protective chamber 11, and a clearance opening 8 is provided at the upper end of the adjusting disk 1, the clearance opening 8 is connected to the protective chamber 11.
[0022] It is worth mentioning that the driven gear 5 is fixed to one end of the driving shaft 2 , and the driving gear 6 is accommodated in the clearance opening 8 of the adjusting disk 1 .
[0023] It is worth mentioning that a driving motor 9 is fixed to one end surface of the adjusting disk 1 , and an output shaft of the driving motor 9 is fixed to the center of one end surface of the driving gear 6 .
[0024] This solution has the following working process: when winding, the driving motor 9 is turned on to drive the driving gear 6 to rotate in the clearance opening 8 of the adjusting disk 1. Since the driving gear 6 is meshed with the driven gear 5, the rotation of the driving gear 6 drives the driven gear 5 to rotate, so that the driving shaft 2 rotates on one side of the adjusting disk 1, driving the winding turret 3 to rotate. In this way, the winding turret 3 can automatically wind up the pipeline fixed on the driving shaft 2, thereby achieving the effect of neatly storing the pipeline; Before the pipeline is wound, one end of the pipeline is placed in the clamping opening between the fixed clamp 15 and the sliding clamp 17, and then the distance adjustment knob 19 is twisted to drive the distance adjustment screw 18 to rotate inside the fixed slide 14. Since the distance adjustment screw 18 is threadedly connected to the adjustment slider 20 at one end of the sliding clamp 17, the sliding clamp 17 can slide along the fixed slide 14 through the adjustment slider 20. The clamping opening between the sliding clamp 17 and the fixed clamp 15 can be adjusted to adapt to the stable clamping of pipeline ends of different thicknesses, and the multiple groups of clamping structures set up can clamp multiple pipeline ends separately to form multiple pipelines wound into coils, thereby adapting to complex application scenarios of multiple pipelines.
[0025] Example 2 See also Figure 1-10 The present invention provides a pipeline organizing device with a steerable function, including an adjusting disk 1, a driving shaft 2 is rotatably connected to the center of one end surface of the adjusting disk 1, a winding rotary frame 3 is rotatably connected to the side surface of the driving shaft 2, a steering arm 24 is fixed at the center of one end surface of the adjusting disk 1, and a steering shell 23 is rotatably connected to the lower part of the fixed slide 14.
[0026] It is worth mentioning that a rotation groove is provided inside the adjustment shell 23, and a non-slip rubber block 27 is rotatably connected in the rotation groove of the adjustment shell 23. One end of the fixed slide 14 extending into the adjustment shell 23 is fixed at the center of the upper end surface of the non-slip rubber block 27.
[0027] It is worth mentioning that a mounting seat 25 is fixed to one side surface of the steering shell 23, and a mounting hole 26 is provided on one end face of the mounting seat 25. Before use, the steering shell 23 is firmly mounted on the rack in the area where the pipeline is located through the mounting seat 25 and the mounting hole 26 on its surface. When in use, the adjusting disk 1 forms a rotational connection with the steering shell 23 with the help of the steering arm 24. This design gives the equipment a powerful angle adjustment capability. In the face of a winding pipeline layout, it can flexibly adjust the horizontal angle of the winding rotary frame 3, and utilize the precise steering characteristics to ensure that the pipeline runs in an orderly manner, and achieve neat arrangement in a complex environment.
[0028] This solution has the following working process: before use, the direction-adjusting shell 23 is installed on the rack in the area where the pipeline is located through the mounting seat 25 and the mounting holes 26 on its surface. When in use, the adjusting disk 1 is rotated and connected to the direction-adjusting shell 23 through the direction-adjusting rotating arm 24, so that the horizontal angle on the winding rotary frame 3 can be adjusted. No matter how winding the pipeline is, it can flexibly adjust the angle to perfectly fit various complex layouts. The precise steering design can easily guide the direction of the pipeline to ensure that each pipeline is neatly arranged.
[0029] Adjustment disk 1: As the main structure of the device, it supports and connects the drive shaft, drive mechanism, adjustment arm and other components, providing a basic platform for installation and operation of the entire device.
[0030] Drive shaft 2: Connects the drive mechanism and the winding turret to transmit power. The drive mechanism drives it to rotate, which in turn drives the winding turret to wind the pipeline.
[0031] Winding turret 3: It is used to wind up the pipeline directly. It rotates under the drive shaft and winds the pipeline neatly into a coil to realize the storage and arrangement of the pipeline.
[0032] The driving mechanism 4 is composed of a movable gear 5, a driving gear 6, and a driving motor 9; the driving motor drives the driving gear to rotate, and the driving gear engages with the driven gear to transmit power to the driving shaft to realize the automatic rotation and winding of the winding turret.
[0033] Driven gear 5: meshes with the driving gear, receives the power transmitted by the driving gear, and drives the driving shaft to rotate.
[0034] Driving gear 6: It is driven to rotate by the driving motor and drives the driven gear to rotate through the meshing relationship. It is the intermediate link of power transmission.
[0035] Rotating seat 7: may be used to support the driving shaft or other rotating parts to ensure the stability of the rotation process.
[0036] The clearance opening 8 provides a space for the driving gear to be installed and rotated, so that the driving gear can be exposed from the adjustment disk and connected to the output shaft of the driving motor.
[0037] Drive motor 9: As the power source, it drives the driving gear to rotate through the output shaft, providing power for the entire winding process.
[0038] Rotation slot 10: It is opened inside the adjustment disk and communicates with the protection chamber to provide a guide and accommodation space for the rotation of the driving shaft.
[0039] Protection chamber 11: protects internal driven gears, driving gears and other transmission components to prevent dust and debris from entering and affecting the operation of the device.
[0040] Clamping mechanism 12: used to clamp the end of the pipeline to ensure that the pipeline is stable during reeling and prevent it from falling off.
[0041] Fixed collar 13: The fixed collar is arranged outside the driving shaft to provide an installation basis for the clamping mechanism and ensure that the clamping mechanism and the driving shaft rotate synchronously.
[0042] Fixed slide 14: fixed on the fixed collar, supporting the fixed splint and movable splint assembly, and provided with a pitch adjustment screw inside to provide structural support for adjusting the size of the clamping opening.
[0043] Fixed clamping plate 15: fixed on the fixed slide, cooperates with the movable clamping plate assembly to form a clamping mouth for clamping the pipeline. The anti-slip pad 22 on the surface can increase friction and prevent the pipeline from sliding.
[0044] The movable clamp assembly 16 consists of a sliding clamp 17, a positioning slider 20, a distance adjusting screw 18, and a distance adjusting knob 19; by adjusting the distance adjusting knob, the distance adjusting screw is driven to rotate, so that the sliding clamp slides in the positioning guide groove of the fixed slide through the positioning slider, thereby adjusting the size of the clamping mouth to adapt to pipelines of different thicknesses.
[0045] Sliding clamp 17: It is arranged opposite to the fixed clamp to form a clamping opening, and the tightness of the clamped pipeline can be adjusted by sliding.
[0046] The pitch-adjusting screw 18 is threadedly connected to the position-adjusting slider, and when it rotates, it drives the sliding clamp to move to adjust the size of the clamping opening.
[0047] Distance adjustment knob 19: A manually operated component that drives the distance adjustment screw to rotate by rotating the distance adjustment knob, making it convenient for the user to adjust the clamping mouth.
[0048] Positioning slider 20: fixed on the sliding clamp, threadedly connected to the pitch adjusting screw, and slides in the positioning guide groove of the fixed slide to guide the moving direction of the sliding clamp.
[0049] Positioning guide groove 21: It is provided on the fixed slide to provide a sliding track for the positioning slider to ensure the stability and accuracy of the sliding clamp when it moves.
[0050] Anti-slip pad 22: fixed on the opposite surfaces of the fixed clamp and the sliding clamp to increase friction and prevent the pipeline from slipping and falling off during the clamping process.
[0051] Adjustment housing 23: A rotation groove is provided inside, which cooperates with the adjustment arm to allow the adjustment disk to rotate, thereby adjusting the horizontal angle of the winding rotary frame to adapt to the complex layout of the pipeline.
[0052] The steering arm 24 is fixed on the adjusting disk and extends into the rotating groove of the adjusting shell. By connecting with the anti-slip rubber block, the adjusting disk can rotate in the adjusting shell to realize the steering function of the device.
[0053] Mounting base 25: fixed on the side of the adjustment shell, the device is installed on the rack in the area where the pipeline is located through the mounting hole 26 to provide fixed support.
[0054] Mounting hole 26: used to pass fasteners such as bolts to fix the mounting base on the rack to ensure that the device is firmly installed.
[0055] Anti-slip rubber block 27: It is rotatably connected in the rotation groove of the steering housing and fixedly connected to the steering arm. It allows the adjustment disk to rotate and prevents the adjustment disk from shaking at will through friction, ensuring the stable position after steering.
[0056] The above shows and describes the basic principles, main features and advantages of the present invention. Although the embodiments of the present invention have been shown and described, this does not limit the scope of the patent of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the scope of patent protection of the present invention. Regarding the contents of the embodiments of the present invention, those skilled in the art will understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A pipeline tidying device with a steerable function, comprising an adjusting disk (1), characterized in that: The center of one end face of the regulating disk (1) is rotatably connected to a driving shaft (2); a rotating seat (7) that is rotatably matched with the driving shaft (2) is fixed at the center of one end face of the regulating disk (1); a side surface of the driving shaft (2) is rotatably connected to a winding turret (3); a surface of the driving shaft (2) is provided with a clamping mechanism (12); the clamping mechanism (12) comprises a fixed collar (13), a fixed slide (14), a fixed clamping plate (15) and a movable clamping plate assembly (1 6), the fixed collar (13) is fixed on the outside of the driving shaft (2), the fixed slide (14) is fixed on the outer ring wall of the fixed collar (13), the fixed clamp (15) is fixed on the side surface of the fixed slide (14), the movable clamp assembly (16) is arranged on one side of the fixed clamp (15), and a direction adjustment arm (24) is fixed at the center of one end surface of the adjusting disk (1), and the lower part of the direction adjustment arm (24) is rotatably connected to the direction adjustment shell (23).
2. The pipeline tidying device with a steerable function according to claim 1, characterized in that: The movable clamp assembly (16) includes a sliding clamp (17) and a positioning slider (20), wherein the sliding clamp (17) is arranged on one side of the fixed clamp (15), and the positioning slider (20) is fixed to one end of the sliding clamp (17), and an anti-slip pad (22) is fixed to the surface of the fixed clamp (15) and the side opposite to the fixed clamp (15), and a clamping opening is provided between the fixed clamp (15) and the sliding clamp (17).
3. The pipeline tidying device with a steerable function according to claim 2, characterized in that: The fixed slide (14) is internally rotatably connected to a pitch-adjusting screw (18), the pitch-adjusting screw (18) is threadedly connected to the position-adjusting slider (20), and a pitch-adjusting knob (19) is fixed to one end of the pitch-adjusting screw (18) extending out of the fixed slide (14).
4. The pipeline tidying device with a steerable function according to claim 3, characterized in that: A positioning guide groove (21) is provided on one side surface of the fixed slide (14), and the positioning sliding block (20) is slidably connected in the positioning guide groove (21) of the fixed slide (14).
5. The pipeline tidying device with a steerable function according to claim 1, characterized in that: A driving mechanism (4) is provided inside the adjusting disk (1), and the driving mechanism (4) includes a driven gear (5) and a driving gear (6). The driven gear (5) is rotatably connected to the inside of the adjusting disk (1), and the driving gear (6) is also rotatably connected to the inside of the adjusting disk (1). The driven gear (5) is meshed with the driving gear (6), and one end of the driving shaft (2) extends into the adjusting disk (1) and is fixed at the center of one end face of the driven gear (5).
6. The pipeline tidying device with a steerable function according to claim 5, characterized in that: A protective chamber (11) is provided inside the adjusting disk (1), a rotation groove (10) is provided at the center of one end surface of the adjusting disk (1), the rotation groove (10) is connected to the protective chamber (11), and a clearance opening (8) is provided at the upper end of the adjusting disk (1), the clearance opening (8) is connected to the protective chamber (11).
7. The pipeline tidying device with a steerable function according to claim 6, characterized in that: The driven gear (5) is fixed to one end of the driving shaft (2), and the driving gear (6) is accommodated in the clearance opening (8) of the adjusting disk (1).
8. The pipeline tidying device with a steerable function according to claim 7, characterized in that: A driving motor (9) is fixed to one end surface of the adjusting disk (1), and an output shaft of the driving motor (9) is fixed to the center of one end surface of the driving gear (6).
9. The pipeline tidying device with a steerable function according to claim 5, characterized in that: A rotation groove is provided inside the steering shell (23), and a non-slip rubber block (27) is rotatably connected to the rotation groove of the steering shell (23). One end of the fixed slide (14) extending into the steering shell (23) is fixed at the center of the upper end surface of the non-slip rubber block (27).
10. The pipeline tidying device with a steerable function according to claim 5, characterized in that: A mounting seat (25) is fixed to one side surface of the direction-adjusting shell (23), and a mounting hole (26) is provided on one end surface of the mounting seat (25).