A processing equipment for railway communication cable heating tape
By designing a cable tracing equipment for rail transit communication cables, and utilizing the synergistic effect of the drive unit and the filler unit, the equipment enables the processing of cable tracing tapes of different thicknesses and specifications. This solves the problem that existing technologies cannot adapt to different specifications and achieves flexible cable tracing tape processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-16
- Publication Date
- 2026-04-07
AI Technical Summary
Existing technology cannot process communication cable tracing tapes of different thicknesses.
A processing device for cable tracing heat tracing of rail transit communication cables was designed, including a support group, a processing group, a filler group, and a drive group. The drive group outputs power to drive the inner threaded rotating rod to rotate. Resin raw materials and polytetrafluoroethylene raw materials are added to the processing sleeve through the filler group. The raw materials are dissolved and mixed by heating equipment, and the cable tracing heat ...
It enables the processing of cable tracing tapes of different thicknesses and specifications, and can adjust the thickness and specifications of the cable tracing tapes as needed to meet different requirements.
Smart Images

Figure CN117325423B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of traffic communication cables, and particularly relates to a rail transit communication cable heating band processing device. BACKGROUND
[0002] For example, patent application No. CN202320348386.X discloses a hot water heating special self-limiting temperature electric heating band processing device, which comprises a device main body, the device main body comprises a first guide rail, a second guide rail, a first inclined rod, a lifting block and a guide frame, a first motor is installed at one end of the top of the device main body, a first gear is sleeved outside the first motor, the first gear is engaged with a second gear, and the second gear is welded to one end of a connecting shaft on one side. However, the technical solution has the disadvantage that it cannot process communication cable heating bands of different thickness specifications. SUMMARY
[0003] The application aims to provide a rail transit communication cable heating band processing device to solve the technical problem that it cannot process communication cable heating bands of different thickness specifications.
[0004] To achieve the above-mentioned purpose, the specific technical solution of the rail transit communication cable heating band processing device is as follows:
[0005] The rail transit communication cable heating band processing device comprises a support group, a processing group, a filler group and a driving group, the processing group is connected with the filler group, the processing group is connected with the driving group, and the processing group and the driving group are simultaneously connected with the support group.
[0006] Further, the processing group comprises a processing sleeve, a rotation limiting sleeve, a rotating disc, an extrusion plate, a driving gear, a rotating column, a rotating sleeve, a positioning clamping groove, an inner end threaded rotating rod, a positioning clamping rod, a positioning clamping rod push spring, a sliding installation blind hole and a fixed installation disc, the fixed installation disc is fixedly installed on the processing sleeve, the rotating disc is rotatably installed on the rotation limiting sleeve, the extrusion plate is slidingly and cooperatively installed between the rotating disc and the fixed installation disc, the rotating column is rotatably installed on the rotation limiting sleeve, the driving gear is fixedly installed at one end of the rotating column, the driving gear is in meshing transmission with the rotating disc, the rotating sleeve is fixedly installed at the other end of the rotating column, the positioning clamping groove is formed in the rotating sleeve, a plurality of positioning clamping grooves are arranged in the rotating sleeve, the sliding installation blind hole is formed in the rotation limiting sleeve, the positioning clamping rod is slidingly installed in the sliding installation blind hole, the positioning clamping rod push spring is arranged between the positioning clamping rod and the sliding installation blind hole, and the positioning clamping rod is in positioning and cooperative connection with the positioning clamping groove under the action of the positioning clamping rod push spring.
[0007] Further, the processing sleeve is simultaneously provided with an injection hole one and an injection hole two.
[0008] Further, a plurality of positioning slots are arranged along the central axis of the rotating sleeve.
[0009] Further, the extrusion plate is fixedly installed with an extrusion plate slide column and an extrusion plate slide block at two ends.
[0010] Further, the rotating disc is provided with rotating disc slots, and the extrusion plate slide column is in sliding fit with the rotating disc slots.
[0011] Further, a plurality of rotating disc slots are arranged along the central axis of the rotating disc.
[0012] Further, the fixed installation disc is provided with installation disc sliding grooves, and the extrusion plate slide block is in sliding fit with the installation disc sliding grooves.
[0013] Further, the filler group comprises a seasoning sleeve, an execution motor, a motor mounting rack, an end cover, a material collecting conical sleeve, a material injection fan blade, a fan blade rotating column, a bevel gear one, a bevel gear two, and a bevel gear rotating shaft, the motor mounting rack is fixedly installed on the seasoning sleeve, the execution motor is installed on the motor mounting rack, the output shaft of the execution motor is installed with the bevel gear rotating shaft, the bevel gear rotating shaft is rotatably installed on the seasoning sleeve, the bevel gear rotating shaft is fixedly installed with the bevel gear two, the bevel gear two is in meshing transmission with the bevel gear one, the bevel gear one is fixedly installed on the fan blade rotating column, the fan blade rotating column is rotatably installed on the seasoning sleeve, the fan blade rotating column is fixedly installed with the material injection fan blade, the seasoning sleeve is fixedly installed on the processing sleeve, and the filler group is provided with two, and the two filler groups are respectively communicated with the material injection hole one and the material injection hole two.
[0014] Further, the driving group comprises a mounting plate, a mounting support one, an executing motor two, a driving turntable one, a driving turntable two, a driving turntable three, a matched rotating plate, a matched sliding column, a matched sliding sleeve, a clutch spring, a clutch plate one, a clutch plate two, a rotating output column, a driving frame, a mounting support two, a sliding waist groove, a hinged connecting rod, a rotating connecting rod, a rotating mounting column two, a rotating sleeve two, a spring A and a clamping rod A, the mounting plate is fixedly installed with the mounting support one, the mounting support one is installed with the executing motor two, the output shaft of the executing motor two is installed with the driving turntable one, the driving turntable one is in transmission with the driving turntable two, the driving turntable two is rotatably installed on the mounting plate, the driving turntable two is in transmission with the driving turntable three, the driving turntable three is in sliding transmission connection with the matched rotating plate, the matched rotating plate is rotatably installed on the mounting plate, the matched rotating plate is fixedly installed with the matched sliding column, the matched sliding column is slidably installed with the matched sliding sleeve, the matched sliding sleeve is fixedly installed on the clutch plate one, the spring A is arranged between the clutch plate one and the matched rotating plate, the clutch plate one is in transmission with the clutch plate two, the clutch plate two is rotatably installed on the mounting plate, the clutch plate two is fixedly installed with the rotating output column, the rotating output column is fixedly connected with the inner end threaded rotating rod, the rotating output column is in rotary transmission connection with the machining sleeve, the mounting plate is fixedly installed with the mounting support two, the mounting support two is provided with the sliding waist groove, the sliding waist groove is slidably installed with the driving frame, the driving frame is in connection with the driving turntable three, one end of the hinged connecting rod is hingedly installed on the driving frame, the other end of the hinged connecting rod is hingedly installed on the rotating connecting rod, the rotating connecting rod is fixedly installed on the rotating mounting column two, the rotating mounting column two is rotatably installed on the mounting plate, the rotating mounting column two is fixedly installed with the rotating sleeve two, the rotating sleeve two is in connection with the clamping rod A, and the spring A is arranged between the clamping rod A and the mounting plate.
[0015] Further, the spring A is sleeved on the matched sliding column and the matched sliding sleeve.
[0016] Further, the sliding transmission section of the driving turntable three and the matched rotating plate is a non-circular structure.
[0017] Further, the support group comprises a support one, a support two and a support three, the support two and the support three are fixedly installed on the support one, the support two is fixedly connected with the machining sleeve, and the support three is fixedly connected with the mounting plate.
[0018] The application has the advantages that:
[0019] 1. Through the drive group output power and drive the inner end screw rod rotation, at the same time, through the filler group to the processing sleeve adds resin raw materials and polytetrafluoroethylene raw materials, and start the heating equipment in the processing sleeve, and then complete the dissolution of the resin raw materials and polytetrafluoroethylene raw materials, at the same time, with the rotation of the inner end screw rod, and then realize the mixing of the resin raw materials and polytetrafluoroethylene raw materials and discharge under the action of the extrusion plate, form the cable heating band; at the same time, manually rotate the rotating sleeve one, and then drive the rotating column one to rotate through the rotating sleeve one, and then drive the drive gear to move through the rotating column one, and then drive the extrusion plate slide column through the meshing transmission between the drive gear and the rotating disc, and then drive the extrusion plate to move through the slotting of the rotating disc, at the same time, make the extrusion plate slide block slide in the inner end of the installation disc sliding groove, and then make the exposed area between the extrusion plate change, and then make the cable heating band formed by the extrusion plate change in thickness specification, realize the processing of cable heating band with different thickness specifications;
[0020] 2. Put the resin raw materials and polytetrafluoroethylene raw materials in the aggregate conical sleeve, at the same time, start the execution motor one, and then drive the bevel gear shaft to move through the execution motor one, and then drive the fan blade rotating column to rotate through the meshing transmission between the bevel gear two and the bevel gear one, and then drive the injection fan blade to rotate through the fan blade rotating column, make the resin raw materials and polytetrafluoroethylene raw materials enter the processing sleeve through the injection hole one and the injection hole two to realize mixing processing;
[0021] 3. Start the execution motor two, and then drive the drive disc two to move through the drive disc one, and then drive the drive disc three to move through the drive disc two, and then drive the matching rotating plate to move through the drive disc three, and then drive the clutch plate one to move through the matching slide column and the matching slide sleeve, and then drive the clutch plate two to move through the clutch plate one, and then drive the rotating output column to move through the clutch plate two, and then drive the inner end screw rod to rotate through the rotating output column, and then facilitate power output; at the same time, manually rotate the rotating sleeve two, and then drive the rotating connecting rod to move through the rotating installation column two, and then drive the drive frame to move through the hinged connecting rod, and then drive the drive disc three to slide along the matching rotating plate through the drive frame, make the transmission position of the drive disc three and the drive disc two change, and then make the speed output by the inner end screw rod change, and then realize the adjustment of the cable heating band processing speed. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the overall structure schematic diagram of the present application;
[0023] Figure 2 It is the position schematic diagram of the section line of Figure 1 ;
[0024] Figure 3 It is the position schematic diagram of the section line of Figure 2A sectional view along section AA;
[0025] Figure 4 This is a schematic diagram of the processing assembly structure of the present invention;
[0026] Figure 5 for Figure 4 A schematic diagram showing the location of the cutting line;
[0027] Figure 6 for Figure 5 A sectional view along section BB;
[0028] Figure 7 for Figure 6 A magnified view of a portion of the image;
[0029] Figure 8 This is a schematic diagram of the fixed mounting plate structure of the present invention;
[0030] Figure 9 This is a schematic diagram of the extrusion plate structure of the present invention. Figure 1 ;
[0031] Figure 10 This is a schematic diagram of the extrusion plate structure of the present invention. Figure 2 ;
[0032] Figure 11 This is a schematic diagram of the packing assembly structure of the present invention;
[0033] Figure 12 for Figure 11 A schematic diagram showing the location of the cutting line;
[0034] Figure 13 for Figure 12 A sectional view along section CC;
[0035] Figure 14 This is a schematic diagram of the drive group structure of the present invention;
[0036] Figure 15 for Figure 14 A schematic diagram showing the location of the cutting line;
[0037] Figure 16 for Figure 15 A sectional view along section DD;
[0038] Figure 17 for Figure 15 A sectional view along section EE;
[0039] Figure 18 This is a schematic diagram of the support assembly structure of the present invention;
[0040] Explanation of markings in the diagram:
[0041] Processing Group 1; Processing Sleeve 1-1; Rotating Limit Sleeve 1-2; Rotating Disc 1-3; Rotating Disc Grooving 1-4; Extrusion Plate 1-5; Extrusion Plate Sliding Pillar 1-6; Drive Gear 1-7; Rotating Pillar 1-8; Rotating Sleeve 1-9; Positioning Slot 1-10; Injection Hole 1-11; Injection Hole 2-12; Inner Thread Rotating Rod 1-13; Positioning Rod 1-14; Positioning Rod Push Spring 1-15; Sliding Mounting Blind Hole 1-16; Fixed Mounting Disc 1-17; Mounting Disc Sliding Groove 1-18; Extrusion Plate Slider 1-19; Filler Group 2; Adjusting Sleeve 2-1; Actuating Motor 1-2-2; Motor Mounting Bracket 1-2-3; End Cover 2-4; Collecting Conical Sleeve 2-5; Injection Fan Blade 2-6; Fan Blade Rotating Pillar 2-7; Conical Gear 1 2-8; Bevel gear II; 2-9; Bevel gear shaft; 2-10; Drive group 3; Mounting plate 3-1; Mounting bracket I 3-2; Actuating motor II 3-3; Drive turntable I 3-4; Drive turntable II 3-5; Drive turntable III 3-6; Matching rotating plate 3-7; Matching sliding column 3-8; Matching sliding sleeve 3-9; Clutch push spring 3-10; Clutch plate I 3-11; Clutch plate II 3-12; Rotating output column 3-13; Drive frame 3-14; Mounting bracket II 3-15; Sliding waist groove 3-16; Hinge connecting rod 3-17; Rotating connecting rod 3-18; Rotating mounting column II 3-19; Rotating sleeve II 3-20; Spring A 3-21; Clamping rod A 3-22; Bracket group 4; Bracket I 4-1; Bracket II 4-2; Bracket III 4-3. Detailed Implementation
[0042] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0043] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0044] Example 1
[0045] like Figures 1-3As shown, a processing equipment for railway communication cable heat tracing includes a support group 4, a processing group 1, a filler group 2, and a drive group 3. The processing group 1 is connected to the filler group 2, the processing group 1 is connected to the drive group 3, and the processing group 1 and the drive group 3 are simultaneously connected to the support group 4.
[0046] Example 2
[0047] like Figures 4-10As shown, the processing group 1 includes a processing sleeve 1-1, a rotation limiting sleeve 1-2, a rotating disk 1-3, an extrusion plate 1-5, a drive gear 1-7, a rotating column 1-8, a rotating sleeve 1-9, a positioning slot 1-10, an inner threaded rotating rod 1-13, a positioning rod 1-14, a positioning rod push spring 1-15, a sliding blind hole 1-16, and a fixed mounting plate 1-17. A fixed mounting plate 1-17 is fixedly mounted on the processing sleeve 1-1. A rotation limiting sleeve 1-2 is fixedly mounted on the fixed mounting plate 1-17. A rotating disk 1-3 is rotatably limited and mounted on the rotation limiting sleeve 1-2. The rotating disk 1-3 and the fixed mounting plate 1-17... An extrusion plate 1-5 is slidably fitted onto a rotating limit sleeve 1-2. A rotating column 1-8 is rotatably mounted on the rotating limit sleeve 1-2. A drive gear 1-7 is fixedly mounted on one end of the rotating column 1-8, and the drive gear 1-7 meshes with the rotating disk 1-3 for transmission. A rotating sleeve 1-9 is fixedly mounted on the other end of the rotating column 1-8. A positioning slot 1-10 is provided on the rotating sleeve 1-9, and multiple positioning slots 1-10 are provided. A sliding blind hole 1-16 is provided on the rotating limit sleeve 1-2. A positioning rod 1-14 is slidably installed in the sliding blind hole 1-16. A positioning rod pusher is provided between the positioning rod 1-14 and the sliding blind hole 1-16. Spring 1-15 and positioning rod 1-14 are positioned and connected to positioning slot 1-10 under the action of positioning rod push spring 1-15. This configuration allows the drive group 3 to output power and drive the inner threaded rotating rod 1-13 to rotate. Simultaneously, resin and polytetrafluoroethylene (PTFE) raw materials are added to the processing sleeve 1-1 through the packing group 2, and the heating equipment in the processing sleeve 1-1 is activated, thereby dissolving the resin and PTFE raw materials. Simultaneously, with the rotation of the inner threaded rotating rod 1-13, the resin and PTFE raw materials are mixed and discharged under the action of extrusion plate 1-5, forming the cable tracing tape. Meanwhile, manual rotation... The rotating sleeve 1-9 drives the rotating column 1-8 to rotate, which in turn drives the drive gear 1-7 to move. The drive gear 1-7 meshes with the rotating disk 1-3, which in turn drives the extrusion plate slide column 1-6 through the groove 1-4 of the rotating disk, thus driving the extrusion plate 1-5 to move. At the same time, the extrusion plate slider 1-19 slides at the inner end of the mounting plate groove 1-18, which changes the exposed area between the extrusion plates 1-5, thereby changing the thickness of the cable tracing tape formed by the extrusion plates 1-5, and realizing the processing of cable tracing tapes of different thicknesses.
[0048] The processing sleeve 1-1 has both a first injection hole 1-11 and a second injection hole 1-12.
[0049] The multiple positioning slots 1-10 are arranged in a circumferential array along the central axis of the rotating sleeve 1-9.
[0050] The two ends of the extrusion plate 1-5 are respectively fixedly installed with extrusion plate slide column 1-6 and extrusion plate slider 1-19.
[0051] The rotating disk 1-3 has a rotating disk slot 1-4, and multiple rotating disk slots 1-4 are provided. The extrusion plate slide column 1-6 is slidably connected to the rotating disk slot 1-4.
[0052] The multiple rotating disk slots 1-4 are arranged in a circumferential array along the central axis of the rotating disk 1-3.
[0053] The fixed mounting plate 1-17 has a mounting plate groove 1-18, and the extrusion plate slider 1-19 is slidably connected to the mounting plate groove 1-18.
[0054] Example 3
[0055] like Figures 11-13 As shown, the packing assembly 2 includes a mixing sleeve 2-1, an actuator motor 2-2, a motor mounting bracket 2-3, an end cover 2-4, a collecting conical sleeve 2-5, a feeding fan blade 2-6, a fan blade rotating column 2-7, a first bevel gear 2-8, a second bevel gear 2-9, and a bevel gear rotating shaft 2-10. The motor mounting bracket 2-3 is fixedly mounted on the mixing sleeve 2-1. The actuator motor 2-2 is mounted on the motor mounting bracket 2-3. The output shaft of the actuator motor 2-2 is fitted with the bevel gear rotating shaft 2-10, which is rotatably mounted on the mixing sleeve 2-1. The second bevel gear 2-9 is fixedly mounted on the bevel gear rotating shaft 2-10, and the second bevel gear 2-9 meshes with the first bevel gear 2-8. The first bevel gear 2-8 is fixedly mounted on the fan blade rotating column 2-7, which is rotatably mounted on the mixing sleeve 2-1. A material injection fan blade 2-6 is fixedly installed on the fan blade rotating column 2-7. A material mixing sleeve 2-1 is fixedly installed on the processing sleeve 1-1. Two packing groups 2 are provided, which are respectively connected to the first injection hole 1-11 and the second injection hole 1-12. With this configuration, the resin raw material and polytetrafluoroethylene raw material are placed in the collecting conical sleeve 2-5. At the same time, the first actuator motor 2-2 is started, which drives the bevel gear rotating shaft 2-10 to move. Then, the second bevel gear 2-9 meshes with the first bevel gear 2-8, which drives the fan blade rotating column 2-7 to rotate. In turn, the fan blade rotating column 2-7 drives the injection fan blade 2-6 to rotate, so that the resin raw material and polytetrafluoroethylene raw material enter the processing sleeve 1-1 through the first injection hole 1-11 and the second injection hole 1-12 to achieve mixing processing.
[0056] Example 4
[0057] like Figures 14-17As shown, the drive assembly 3 includes a mounting plate 3-1, a mounting bracket 3-2, an actuator motor 3-3, a drive turntable 3-4, a drive turntable 3-5, a drive turntable 3-6, a cooperating rotating plate 3-7, a cooperating sliding column 3-8, a cooperating sliding sleeve 3-9, a clutch push spring 3-10, a clutch plate 3-11, a clutch plate 3-12, a rotating output column 3-13, a drive frame 3-14, a mounting bracket 3-15, a sliding groove 3-16, a hinged connecting rod 3-17, a rotating connecting rod 3-18, a rotating mounting column 3-19, a rotating sleeve 3-20, a spring A3-21, and a locking rod A3-22. The mounting bracket 3-2 is fixedly mounted on the mounting plate 3-1, and the mounting bracket 3-2 is equipped with... Actuating motor 2 3-3 has a drive turntable 1 3-4 mounted on its output shaft. Drive turntable 1 3-4 engages with drive turntable 2 3-5 for transmission. Drive turntable 2 3-5 is rotatably mounted on mounting plate 3-1. Drive turntable 2 3-5 also engages with drive turntable 3-6 for transmission. Drive turntable 3-6 is slidably connected to a mating rotating plate 3-7, which is rotatably mounted on mounting plate 3-1. A mating sliding column 3-8 is fixedly mounted on the mating rotating plate 3-7, and a mating sliding sleeve 3-9 is slidably mounted on the sliding column 3-8. The mating sliding sleeve 3-9 is fixedly mounted on clutch plate 1 3-11. A spring A3-21 is provided between clutch plate 1 3-11 and mating rotating plate 3-7. 3-11 engages with clutch plate 3-12 for transmission. Clutch plate 3-12 is rotatably mounted on mounting plate 3-1. A rotating output post 3-13 is fixedly mounted on clutch plate 3-12. The rotating output post 3-13 is fixedly connected to the inner threaded rotating rod 1-13. The rotating output post 3-13 is rotatably connected to the machining sleeve 1-1. Mounting plate 3-1 is fixedly connected to machining sleeve 1-1. Mounting bracket 3-15 is fixedly mounted on mounting plate 3-1. A sliding groove 3-16 is opened on mounting bracket 3-15. A drive frame 3-14 is slidably mounted in the sliding groove 3-16. The drive frame 3-14 is connected to drive turntable 3-6. One end of the hinged connecting rod 3-17 is hinged to the drive frame 3-14. The other end of connecting rod 3-17 is hinged to rotating connecting rod 3-18. Rotating connecting rod 3-18 is fixedly mounted on rotating mounting post 3-19. Rotating mounting post 3-19 is rotatably mounted on mounting plate 3-1. Rotating sleeve 3-20 is fixedly mounted on rotating mounting post 3-19. Rotating sleeve 3-20 is connected to locking rod A3-22. Spring A3-21 is provided between locking rod A3-22 and mounting plate 3-1. With this configuration, starting actuator motor 3-3 will drive rotating disk 3-5 through driving turntable 3-4, which in turn drives rotating disk 3-6 through driving turntable 3-5, which in turn drives rotating plate 3-7 through driving turntable 3-6.Then, through the cooperation of sliding column 3-8 and sliding sleeve 3-9, the clutch plate 3-11 moves, which in turn drives the clutch plate 3-12, which in turn drives the output column 3-13, which in turn drives the inner threaded rod 1-13 to rotate, thus facilitating power output. Simultaneously, manually rotating the rotating sleeve 3-20 drives the rotating connecting rod 3-18 through the rotating mounting column 3-19, which in turn drives the drive frame 3-14 through the hinged connecting rod 3-17, which in turn drives the drive turntable 3-6 to slide along the cooperation rotating plate 3-7. This changes the transmission position between drive turntable 3-6 and drive turntable 3-5, thus changing the speed output through the inner threaded rod 1-13, thereby adjusting the processing speed of the cable tracing tape.
[0058] The spring A3-21 is fitted onto the sliding pin 3-8 and the sliding sleeve 3-9.
[0059] The sliding cross section of the drive turntable 3-6 and the cooperating rotating plate 3-7 is a non-circular structure.
[0060] Example 5
[0061] like Figure 18 As shown, the bracket group 4 includes bracket 1 4-1, bracket 2 4-2, and bracket 3 4-3. Bracket 2 4-2 and bracket 3 4-3 are fixedly installed on bracket 1 4-1. Bracket 2 4-2 is fixedly connected to the processing sleeve 1-1, and bracket 3 4-3 is fixedly connected to the mounting plate 3-1.
[0062] It is understood that the present invention has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of the invention. Furthermore, under the teachings of the present invention, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the invention. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of the present invention.
Claims
1. A processing equipment for railway transit communication cable heating tape, comprising a support assembly (4), characterized in that, It also includes a processing group (1), a packing group (2), and a drive group (3). The processing group (1) is connected to the packing group (2), the processing group (1) is connected to the drive group (3), and the processing group (1) and the drive group (3) are simultaneously connected to the support group (4). The processing assembly (1) includes a processing sleeve (1-1), a rotation limiting sleeve (1-2), a rotating disk (1-3), an extrusion plate (1-5), a drive gear (1-7), a rotating column (1-8), a rotating sleeve (1-9), a positioning slot (1-10), an inner threaded rotating rod (1-13), a positioning rod (1-14), a positioning rod push spring (1-15), a sliding mounting blind hole (1-16), and a fixed mounting plate (1-17). A fixed mounting plate (1-17) is fixedly mounted on the processing sleeve (1-1). A rotation limiting sleeve (1-2) is fixedly mounted on the fixed mounting plate (1-17). A rotating disk (1-3) is rotatably limited and mounted on the rotation limiting sleeve (1-2). An extrusion plate (1-5) is slidably mounted between the rotating disk (1-3) and the fixed mounting plate (1-17). The rotation limiting sleeve (1-2)... A rotating column (1-8) is rotatably mounted on the rotating disk (1-3). A drive gear (1-7) is fixedly mounted on one end of the rotating column (1-8). The drive gear (1-7) meshes with the rotating disk (1-3) for transmission. A rotating sleeve (1-9) is fixedly mounted on the other end of the rotating column (1-8). A positioning slot (1-10) is opened on the rotating sleeve (1-9), and multiple positioning slots (1-10) are provided. A sliding blind hole (1-16) is opened on the rotating limit sleeve (1-2). A positioning rod (1-14) is slidably mounted in the sliding blind hole (1-16). A positioning rod push spring (1-15) is provided between the positioning rod (1-14) and the sliding blind hole (1-16). The positioning rod (1-14) is positioned and connected with the positioning slot (1-10) under the action of the positioning rod push spring (1-15).
2. The equipment for processing heating tape for rail transit communication cables according to claim 1, characterized in that, The processing sleeve (1-1) has two injection holes: one (1-11) and the other (1-12).
3. The equipment for processing heating tape for rail transit communication cables according to claim 1, characterized in that, Multiple positioning slots (1-10) are arranged in a circumferential array along the central axis of the rotating sleeve (1-9).
4. The equipment for processing heating tape for rail transit communication cables according to claim 1, characterized in that, The two ends of the extrusion plate (1-5) are respectively fixedly installed with extrusion plate slide column (1-6) and extrusion plate slider (1-19).
5. The equipment for processing heating tape for rail transit communication cables according to claim 4, characterized in that, The rotating disk (1-3) has a rotating disk slot (1-4), and multiple rotating disk slots (1-4) are provided. The extrusion plate slide column (1-6) is slidably connected to the rotating disk slot (1-4).
6. The equipment for processing heating tape for rail transit communication cables according to claim 5, characterized in that, Multiple rotating disk slots (1-4) are arranged in a circumferential array along the central axis of the rotating disk (1-3).
7. The equipment for processing heating tape for rail transit communication cables according to claim 4, characterized in that, The fixed mounting plate (1-17) has a mounting plate groove (1-18), and the extrusion plate slider (1-19) is slidably connected to the mounting plate groove (1-18).
8. The equipment for processing heating tape for rail transit communication cables according to claim 1, characterized in that, The packing assembly (2) includes a mixing sleeve (2-1), an actuator motor (2-2), a motor mounting bracket (2-3), an end cap (2-4), a collecting conical sleeve (2-5), a feeding fan blade (2-6), a fan blade rotor (2-7), a first bevel gear (2-8), a second bevel gear (2-9), and a bevel gear shaft (2-10). The actuator motor (2-2) is fixedly mounted on the mixing sleeve (2-1), and the actuator motor (2-2) is mounted on the first motor mounting bracket (2-3). The output shaft of the actuator motor (2-2) is fitted with a bevel gear shaft (2-10), which is rotatably mounted. On the seasoning sleeve (2-1), a second bevel gear (2-9) is fixedly installed on the bevel gear shaft (2-10). The second bevel gear (2-9) meshes with the first bevel gear (2-8) for transmission. The first bevel gear (2-8) is fixedly installed on the fan blade rotating column (2-7). The fan blade rotating column (2-7) is rotatably installed on the seasoning sleeve (2-1). A filling fan blade (2-6) is fixedly installed on the fan blade rotating column (2-7). The seasoning sleeve (2-1) is fixedly installed on the processing sleeve (1-1). There are two packing groups (2). The two packing groups (2) are respectively connected to the first filling hole (1-11) and the second filling hole (1-12).
9. A processing equipment for railway transit communication cable heating tape according to claim 1, characterized in that, The drive assembly (3) includes a mounting plate (3-1), a mounting bracket one (3-2), an actuator motor two (3-3), a drive turntable one (3-4), a drive turntable two (3-5), a drive turntable three (3-6), a mating rotating plate (3-7), a mating sliding column (3-8), a mating sliding sleeve (3-9), a clutch push spring (3-10), a clutch plate one (3-11), a clutch plate two (3-12), a rotating output column (3-13), a drive frame (3-14), a mounting bracket two (3-15), a sliding waist groove (3-16), a hinged connecting rod (3-17), a rotating connecting rod (3-18), a rotating mounting column two (3-19), a rotating sleeve two (3-20), a spring A (3-21), and a locking rod A (3-25). -22), a mounting bracket one (3-2) is fixedly mounted on the mounting plate (3-1), an actuator motor two (3-3) is mounted on the mounting bracket one (3-2), a drive turntable one (3-4) is mounted on the output shaft of the actuator motor two (3-3), the drive turntable one (3-4) and the drive turntable two (3-5) cooperate for transmission, the drive turntable two (3-5) is rotatably mounted on the mounting plate (3-1), the drive turntable two (3-5) and the drive turntable three (3-6) cooperate for transmission, the drive turntable three (3-6) and the cooperating rotating plate (3-7) are slidably connected, the cooperating rotating plate (3-7) is rotatably mounted on the mounting plate (3-1), and a cooperating sliding column (3-8) is fixedly mounted on the cooperating rotating plate (3-7). A sliding sleeve (3-9) is slidably mounted on the column (3-8). The sliding sleeve (3-9) is fixedly mounted on the clutch plate one (3-11). A spring A (3-21) is provided between the clutch plate one (3-11) and the rotating plate (3-7). The clutch plate one (3-11) meshes with the clutch plate two (3-12). The clutch plate two (3-12) is rotatably mounted on the mounting plate (3-1). A rotating output column (3-13) is fixedly mounted on the clutch plate two (3-12). The rotating output column (3-13) is fixedly connected to the inner threaded rotating rod (1-13). The rotating output column (3-13) is rotatably connected to the processing sleeve (1-1). The mounting plate (3-1) is fixedly connected to the processing sleeve (1-1). Mounting bracket two (3-15) is fixedly installed on plate (3-1). Mounting bracket two (3-15) has a sliding groove (3-16). A drive frame (3-14) is slidably installed in the sliding groove (3-16). The drive frame (3-14) is connected to the drive turntable three (3-6). One end of the hinged connecting rod (3-17) is hinged to the drive frame (3-14), and the other end of the hinged connecting rod (3-17) is hinged to the rotating connecting rod (3-18). The rotating connecting rod (3-18) is fixedly installed on the rotating mounting column two (3-19). The rotating mounting column two (3-19) is rotatably installed on the mounting plate (3-1). A rotating sleeve two (3-20) is fixedly installed on the rotating mounting column two (3-19).Rotating sleeve two (3-20) is connected to clamping rod A (3-22), and spring A (3-21) is provided between clamping rod A (3-22) and mounting plate (3-1).
Citation Information
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