A positioning mechanism for thermal insulation tube winding processing
By combining servo motors and cylinder drives, the problem of inconvenient insulation pipe restriction in the positioning mechanism for insulation pipe winding is solved, realizing convenient insulation pipe winding and improving processing quality and performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGFENG PIPELINE GRP
- Filing Date
- 2025-07-17
- Publication Date
- 2026-07-07
AI Technical Summary
The existing insulation pipe winding and positioning mechanism is inconvenient to use due to the difficulty in restricting the insulation pipe, which affects the processing quality.
By combining components such as servo motors, slides, sliders, lead screws, moving plates, cylinders, and limiting rings, and through motor drive and cylinder control, the insulation pipe can be conveniently restricted and wound.
This improves the convenience and quality of the insulation pipe winding process, ensuring that the insulation layer is uniformly and tightly bonded, meeting the project's requirements for insulation performance, structural strength, and waterproofing.
Smart Images

Figure CN224465269U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of thermal insulation pipe processing, specifically relating to a positioning mechanism for thermal insulation pipe winding processing. Background Technology
[0002] The insulation pipe winding and positioning mechanism is a key tooling equipment used in the production of insulated pipes. Its core function is to precisely wind insulation materials (such as polyurethane foam, polyethylene sheath, glass fiber, etc.) onto the pipe surface according to a preset trajectory through mechanical positioning, driving, and control devices, ensuring that the insulation layer is uniform and tightly adhered, meeting the requirements of the project for insulation performance, structural strength, and waterproofing. This utility model insulation pipe winding and positioning mechanism is mainly composed of a base, support pad, support column, control button, LCD display, motor body, fixing plate, clamping column, insertion column, limiting ring, limiting plate, connecting plate, first cylinder body, first telescopic column, second cylinder body, second telescopic column, servo motor, slide groove, slider, lead screw, moving plate, and other components. Existing insulation pipe winding and positioning mechanisms are inconvenient for restricting the insulation pipe during use, which affects the quality of insulation pipe processing. Therefore, an insulation pipe winding and positioning mechanism is essential. Utility Model Content
[0003] The purpose of this utility model is to provide a positioning mechanism for insulation pipe winding processing, so as to solve the problem mentioned in the background art that the existing positioning mechanism for insulation pipe winding processing is inconvenient to restrict the insulation pipe and will affect the quality of insulation pipe processing.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a positioning mechanism for the winding process of thermal insulation pipes, comprising...
[0005] The base and the fixing plate located on the upper left side of the base;
[0006] A motor body is installed on the left wall of the fixing plate, a locking pin is connected to the right side of the motor body and the right side of the fixing plate, and an insert pin is connected to the right side of the locking pin.
[0007] A servo motor is installed at the front right side of the base. A slide groove is provided at the inside right side of the base. A lead screw is connected to the inside of the slide groove and at the rear side of the servo motor. A slider is installed inside the slide groove and at the outside of the lead screw. A moving plate is connected to the upper end of the slider.
[0008] A second cylinder body is installed at the upper end of the movable plate. A second telescopic column is connected to the upper end of the second cylinder body. A connecting plate is installed at the upper end of the second telescopic column. A first cylinder body is installed on the right wall of the connecting plate. A first telescopic column is connected to the left side of the first cylinder body and to the left side of the connecting plate. A limiting plate is connected to the left side of the first telescopic column. A limiting ring is provided on the left side of the limiting plate.
[0009] The motor body and servo motor are electrically connected to an external power source, and the first cylinder body and the second cylinder body are connected to an external pneumatic device.
[0010] The convenient use of the servo motor, slide rail, slider, lead screw, moving plate, first servo motor, first telescopic column, connecting plate, second servo motor, second telescopic column, limiting plate and limiting ring enhances the convenience of limiting the insulation pipe.
[0011] Preferably, an LCD screen is provided on the left wall of the fixing plate and below the motor body, and a control button is provided on the left wall of the fixing plate and to the right of the LCD screen.
[0012] Preferably, a mounting plate is connected to the left wall of the fixing plate and located on the right side of the motor body. Mounting holes are provided inside the mounting plate and around its perimeter, and the mounting holes penetrate the mounting plate.
[0013] Preferably, a connecting hole is provided inside the left wall of the fixing plate at a position corresponding to the mounting hole, and internal threads are provided on the inner walls of the mounting hole and the connecting hole.
[0014] Preferably, a fastening nut is installed inside the mounting hole and the connecting hole and at a position on the outer side of the mounting plate, and the outer wall of the fastening nut is provided with an external thread.
[0015] Preferably, the fastening nut is connected to the mounting hole and the internal thread of the connecting hole via the external thread on the outer wall, thereby fixing the mounting plate to the left wall of the fixing plate, and thus fixing the motor body to the left wall of the fixing plate. The installation and disassembly of the motor body are enhanced by the mounting plate, mounting hole, connecting hole, fastening nut and threaded connection.
[0016] Preferably, a support column is provided at the lower end of the base, and a total of four support columns are provided, which are welded to the four corners at the lower end of the base.
[0017] Preferably, a support pad is welded to the lower end of the support column. The support column, support pad, and base are all made of stainless steel. The support column and support pad enhance the stability of the base.
[0018] Compared with the prior art, the present invention provides a positioning mechanism for the winding process of thermal insulation pipes, which has the following advantages:
[0019] This utility model improves a positioning mechanism for insulation pipe winding processing. When using this mechanism, first connect the motor body and servo motor to an external power source, and connect the first and second servo motors to an external pneumatic actuator. Then, place the insulation pipe over the clamping post. Next, start the servo motor, the first cylinder body, and the second cylinder body via a control button. The servo motor's operation will drive the slider to move rearward within the groove via a lead screw, causing the moving plate to position the second cylinder body to the right of the insertion post. Then, start the second cylinder body, which will move the connecting plate upward via the second telescopic column. The movement aligns the limiting ring on the left side of the connecting plate with the insert post. Then, the first cylinder body is activated, which moves the limiting plate to the left via the first telescopic column, thus installing the limiting ring on the outside of the insert post and restricting the insulation tube outside the insert post. At this point, the motor body is activated, which rotates the insulation tube via the insert post, allowing for the winding of the insulation tube. The coordinated use of the servo motor, slide, slider, lead screw, moving plate, first servo motor, first telescopic column, connecting plate, second servo motor, second telescopic column, limiting plate, and limiting ring enhances the convenience of restricting the insulation tube. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of the insulation pipe winding and positioning mechanism of this utility model.
[0021] Figure 2 This is a front view of the structure of the positioning machine for the insulation pipe winding process of this utility model.
[0022] Figure 3 This is an enlarged structural schematic diagram of the limiting ring of the positioning mechanism for the insulation pipe winding process of this utility model.
[0023] In the diagram: 1. Base; 2. Support pad; 3. Control button; 4. LCD screen; 5. Support column; 6. Motor body; 7. Fixing plate; 8. Clamping post; 9. Inserting post; 10. Restricting ring; 11. Connecting plate; 12. First cylinder body; 13. Restricting plate; 14. Second telescopic column; 15. Second cylinder body; 16. Servo motor; 17. Slide groove; 18. Lead screw; 19. Slider; 20. Moving plate; 21. First telescopic column. 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] This utility model provides, for example Figure 1-3 The positioning mechanism for insulation pipe winding processing shown includes a base 1 and a fixing plate 7 located on the upper left side of the base 1. A motor body 6 is installed on the left wall of the fixing plate 7. A locking post 8 is connected to the right side of the motor body 6 and the right side of the fixing plate 7. An insert post 9 is connected to the right side of the locking post 8. A servo motor 16 is installed on the front right side of the base 1. A slide groove 17 is provided on the inner right side of the base 1. A lead screw 18 is connected to the inner side of the slide groove 17 and the rear side of the servo motor 16. A slider 19 is installed inside the slide groove 17 and outside the lead screw 18. A moving plate 20 is connected to the upper end of the slider 19. A second cylinder body 15 is installed on the upper end of the moving plate 20. A second cylinder body 15 is connected to the upper end of the second cylinder body 15. Two telescopic columns 14 are connected to a connecting plate 11 at their upper ends. A first cylinder body 12 is installed on the right wall of the connecting plate 11. A first telescopic column 21 is connected to the left side of the first cylinder body 12 and to the left side of the connecting plate 11. A limiting plate 13 is connected to the left side of the first telescopic column 21. A limiting ring 10 is provided on the left side of the limiting plate 13. The motor body 6 and the servo motor 16 are electrically connected to an external power source. The first cylinder body 12 and the second cylinder body 15 are connected to an external pneumatic device. Through the coordinated use of the servo motor 16, the slide 17, the slider 19, the lead screw 18, the moving plate 20, the first servo motor 16, the first telescopic column 21, the connecting plate 11, the second servo motor 16, the second telescopic column 14, the limiting plate 13, and the limiting ring 10, the convenience of limiting the insulation pipe is enhanced.
[0026] like Figure 1 , Figure 2 and Figure 3As shown, to enhance the convenience of restricting the insulation pipe, when using the insulation pipe winding and positioning mechanism, first connect the motor body 6 and servo motor 16 to the external power supply, and connect the first servo motor 16 and second servo motor 16 to the external pneumatic device. Then, put the insulation pipe on the outside of the clamping post 8. Next, start the servo motor 16, the first cylinder body 12 and the second cylinder body 15 through the control button 3. The operation of the servo motor 16 will drive the slider 19 to move backward in the slide groove 17 through the lead screw 18, so that the moving plate 20 drives the second cylinder body 15 to the right side of the insertion post 9. Then start the second cylinder body 15. The operation of the second cylinder body 15 will drive the connecting plate 11 to move upward through the second telescopic post 14, so that the connecting plate 11 moves upward. The limiting ring 10 on the left side of plate 11 is aligned with the insertion post 9. Then, the first cylinder body 12 is started. The operation of the first cylinder body 12 will drive the limiting plate 13 to move to the left through the first telescopic post 21, so that the limiting ring 10 is installed on the outside of the insertion post 9, thereby restricting the insulation tube outside the clamping post 8. Then, the motor body 6 is started. The operation of the motor body 6 will drive the insulation tube to rotate through the clamping post 8, so that the insulation tube can be wound. Through the coordinated use of servo motor 16, slide 17, slider 19, lead screw 18, moving plate 20, first servo motor 16, first telescopic post 21, connecting plate 11, second servo motor 16, second telescopic post 14, limiting plate 13 and limiting ring 10, the convenience of restricting the insulation tube is enhanced.
[0027] An LCD screen 4 is located on the left wall of the fixing plate 7, below the motor body 6. A control button 3 is located on the right side of the LCD screen 4 on the left wall of the fixing plate 7. A mounting plate is connected to the left wall of the fixing plate 7, on the right side of the motor body 6. Mounting holes are provided inside the mounting plate and around its perimeter, penetrating the mounting plate. A connecting hole is provided inside the left wall of the fixing plate 7, corresponding to the mounting hole. Internal threads are provided on the inner walls of the mounting hole and the connecting hole. A fastening nut is installed inside the mounting hole and the connecting hole, on the outer side of the mounting plate. External threads are provided on the outer wall of the fastening nut. The fastening nut connects with the internal threads on the inner walls of the mounting hole and the connecting hole through the external threads on its outer wall, thereby fixing the mounting plate to the left wall of the fixing plate 7, and thus fixing the motor body 6 to the left wall of the fixing plate 7. The mounting plate, mounting holes, connecting holes, fastening nuts, and threaded connections enhance the ease of installation and disassembly of the motor body 6.
[0028] like Figure 1 and Figure 2As shown, to enhance the ease of installation and disassembly of the motor body 6, when using the insulation tube winding and positioning mechanism, the motor body 6 is first connected to the mounting plate, and then the mounting plate is placed on the left wall of the fixing plate 7, so that the mounting hole inside the mounting plate is aligned with the connecting hole inside the left wall of the fixing plate 7. Then, the fastening nut is inserted into the mounting hole and the connecting hole. The fastening nut is connected to the internal thread of the mounting hole and the connecting hole through the external thread of the outer wall, thereby fixing the mounting plate to the left wall of the fixing plate 7, and thus fixing the motor body 6 to the left wall of the fixing plate 7. The installation and disassembly of the motor body 6 are enhanced by the mounting plate, mounting hole, connecting hole, fastening nut and threaded connection.
[0029] A support column 5 is provided at the lower end of the base 1. There are four support columns 5 in total. The four support columns 5 are welded to the four corners at the lower end of the base 1. A support pad 2 is welded at the lower end of the support column 5. The support columns 5, support pad 2 and base 1 are all made of stainless steel. The support columns 5 and support pad 2 enhance the stability of the base 1.
[0030] like Figure 1 and Figure 2 As shown, in order to enhance the stability of the base 1, when using the insulation pipe winding and positioning mechanism, the support column 5 is first connected to the support pad 2, and then the support column 5 is welded to the four corners at the bottom of the base 1. Then, the base 1 is placed in contact with the ground through the support pad 2, so that the base 2 is placed on the ground through the support column 5. The stability of the base 1 is enhanced by the setting of the support column 5 and the support pad 2.
[0031] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A positioning mechanism for the winding process of thermal insulation pipes, characterized in that: include The base (1) and the fixing plate (7) located on the upper left side of the base (1); The motor body (6) is installed on the left wall of the fixing plate (7), and a locking post (8) is connected to the right side of the motor body (6) and the right side of the fixing plate (7). A plug post (9) is connected to the right side of the locking post (8). A servo motor (16) is installed at the front right side of the base (1). A slide groove (17) is provided at the inside right side of the base (1). A lead screw (18) is connected to the inside of the slide groove (17) and at the rear side of the servo motor (16). A slider (19) is installed inside the slide groove (17) and at the outside of the lead screw (18). A moving plate (20) is connected to the upper end of the slider (19). A second cylinder body (15) is installed at the upper end of the movable plate (20). A second telescopic column (14) is connected to the upper end of the second cylinder body (15). A connecting plate (11) is installed at the upper end of the second telescopic column (14). A first cylinder body (12) is installed on the right wall of the connecting plate (11). A first telescopic column (21) is connected to the left side of the first cylinder body (12) and to the left side of the connecting plate (11). A limiting plate (13) is connected to the left side of the first telescopic column (21). A limiting ring (10) is provided on the left side of the limiting plate (13). The motor body (6) and servo motor (16) are electrically connected to an external power source, and the first cylinder body (12) and second cylinder body (15) are connected to an external pneumatic device. The convenience of restricting the insulation pipe is enhanced by the combined use of the servo motor (16), slide (17), slider (19), lead screw (18), moving plate (20), first servo motor (16), first telescopic column (21), connecting plate (11), second servo motor (16), second telescopic column (14), limiting plate (13) and limiting ring (10).
2. The positioning mechanism for heat insulation pipe winding processing according to claim 1, characterized in that: A liquid crystal display screen (4) is provided on the left wall of the fixing plate (7) and below the motor body (6), and a control button (3) is provided on the left wall of the fixing plate (7) and to the right of the liquid crystal display screen (4).
3. The positioning mechanism for heat-insulating pipe winding processing according to claim 2, characterized in that: A mounting plate is connected to the left wall of the fixing plate (7) and located on the right side of the motor body (6). Mounting holes are provided inside the mounting plate and around its perimeter, and the mounting holes penetrate the mounting plate.
4. The positioning mechanism for heat insulation pipe winding processing according to claim 3, characterized in that: A connecting hole is provided inside the left wall of the fixing plate (7) at a position corresponding to the mounting hole, and an internal thread is provided on the inner wall of the mounting hole and the connecting hole.
5. The positioning mechanism for heat insulation pipe winding processing according to claim 4, characterized in that: A fastening nut is installed inside the mounting hole and the connecting hole, located on the outer side of the mounting plate, and the outer wall of the fastening nut is provided with an external thread.
6. The positioning mechanism for heat insulation pipe winding processing according to claim 5, characterized in that: The fastening nut is connected to the mounting hole and the inner thread of the connecting hole through the external thread of the outer wall, thereby fixing the mounting plate to the left wall of the fixing plate (7), and thus fixing the motor body (6) to the left wall of the fixing plate (7). The installation and disassembly of the motor body (6) are enhanced by the mounting plate, mounting hole, connecting hole, fastening nut and threaded connection.
7. The positioning mechanism for heat insulation pipe winding processing according to claim 1, characterized in that: A support column (5) is provided at the lower end of the base (1). There are four support columns (5) in total, and the four support columns (5) are welded to the four corners at the lower end of the base (1).
8. The positioning mechanism for heat insulation pipe winding processing according to claim 7, characterized in that: A support pad (2) is welded to the lower end of the support column (5). The support column (5), support pad (2) and base (1) are all made of stainless steel. The stability of the base (1) is enhanced by the setting of the support column (5) and support pad (2).