Cable wrapping machine and cable
By using a rotating pressure roller and a limiting slide in the wrapping machine, the wrapping tape is squeezed, smoothed and tightened twice, which solves the problem of insufficient tension of the wrapping tape, achieves a close fit between the wrapping tape and the cable core, and improves the wrapping effect and safety.
Patent Information
- Application Number
- CN202510920758.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-03-13
- Filing Date
- 2025-07-04
- Publication Date
- 2025-09-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the wrapping process of existing wrapping machines, the wrapping tape may have insufficient tension, resulting in wrinkles or folds between the wrapping tape and the cable core, posing a safety hazard.
The contact point between the wrapping tape and the cable core is squeezed and smoothed by a rotating pressure roller, and the secondary smoothing and tightening of the wrapping tape is achieved through the cooperation of the limiting slide and the movable slide rod. At the same time, the knocking piece is used to generate vibration to expel bubbles and improve the tightness of the wrapping.
It effectively avoids wrinkles or kinks caused by insufficient tension of the wrapping tape during rotation, improves the safety and tightness of the cable core after wrapping, and reduces safety hazards.
Smart Images

Figure CN120690512A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable wrapping machines, in particular to a cable wrapping machine and a cable. Background Art
[0002] A taping machine is a device used to wrap insulated wires such as electrical wires, cables, and optical cables. It uses a rotating turntable to wrap tape (such as mica tape, cotton paper tape, aluminum foil, polyester film, etc.) around the wire core, improving production efficiency and product quality.
[0003] The wrapping machine in the prior art generally directly wraps the wrapping tape around the cable core when wrapping the wrapping tape, and then completes the corresponding wrapping effect by rotating the turntable. Although this method can achieve the corresponding wrapping effect to a certain extent, due to the lack of corresponding positioning and compacting components, when the wrapping machine wraps the cable core, the wrapping tape may have insufficient tension during the rotation process, resulting in corresponding wrinkles or folds between the wrapping tape and the cable core. If the wrapping continues, the cable core after wrapping is likely to have corresponding safety hazards during subsequent use.
[0004] Therefore, existing demand is not met, and we propose a cable wrapping machine and cable. Summary of the Invention
[0005] The present invention provides a cable wrapping machine and a cable, which allows a rotating pressure roller to squeeze and smooth the contact points between the wrapping tape and the cable core, so that the wrapping tape can always maintain corresponding tension during the rotation and wrapping process, thereby solving the problem mentioned in the above background technology that the wrapping tape may have insufficient tension during the rotation process, thereby causing corresponding wrinkles or folds between the wrapping tape and the cable core. If the wrapping continues, the cable core after wrapping is likely to have corresponding safety hazards during subsequent use.
[0006] The present invention provides the following technical solution: a cable wrapping machine, comprising a wrapping table, a front end surface of the wrapping table being provided with a gear plate and a first rotating gear, the gear plate and the first rotating gear being meshed with each other, a storage box for storing wrapping tape being fixedly mounted on the gear plate, a first movable chute being provided on the gear plate, a compacting assembly for positioning and tightening a cable core being slidably provided inside the first movable chute; The compaction assembly is composed of a rotating pressure roller and a positioning slide rod. There is a rotating connection between the rotating pressure roller and the positioning slide rod. A accommodating cavity is provided inside the rotating pressure roller and the positioning slide rod. A plurality of connecting rotating rods are provided inside the accommodating cavity, and each connecting rotating rod is provided with a plurality of knocking parts.
[0007] As an optional solution of the cable wrapping machine described in the present invention, wherein: a limiting slide is provided on the wrapping table, the limiting slide is composed of a first movable station and a second movable station, one end of a movable slide rod is slidably arranged inside the limiting slide, a first liquid storage cavity is also provided inside the gear plate, and the other end of the movable slide rod is slidably arranged inside the first liquid storage cavity.
[0008] As an optional solution of the cable wrapping machine described in the present invention, an extrusion piece is slidably arranged inside the first liquid storage chamber, a first spring is further arranged between the extrusion piece and the first liquid storage chamber, and a second liquid storage chamber is further opened on the gear plate.
[0009] As an optional solution of the cable wrapping machine described in the present invention, a movable push piece is slidably arranged inside the second liquid storage chamber, a second spring is arranged between one end of the movable push piece and the second liquid storage chamber, and the other end of the movable push piece is arranged inside the first movable slide groove.
[0010] As an optional solution of the cable wrapping machine described in the present invention, a rotating slide groove is provided at the other end of the movable push member, and the rotating pressure roller is arranged inside the rotating slide groove by ball sliding.
[0011] As an optional solution of the cable wrapping machine described in the present invention, a second movable slot is provided on the inner wall of the first movable slot, and one end of a rotating connecting rod is rotatably connected to the positioning slide rod through a torsion spring.
[0012] As an optional solution of the cable wrapping machine described in the present invention, a limiting ratchet is also installed on the rotating pressure roller, and a limiting ratchet is fixedly provided on the other end of the rotating connecting rod, and the limiting ratchet and the limiting ratchet are externally meshed.
[0013] As an optional solution of the cable wrapping machine described in the present invention, there are several groups of rotating teeth in a circumferential array on the inner wall of the accommodating cavity opened by the rotating pressure roller, and one end of several connecting rods is rotatably set inside the positioning slide rod.
[0014] As an optional solution of the cable wrapping machine described in the present invention, each of the connecting rotating rods is equipped with a second rotating gear, and the second rotating gear is engaged with the corresponding rotating tooth opening.
[0015] The present invention has the following beneficial effects:
[0016] The cable wrapping machine is equipped with a compacting component. When the gear disc rotates counterclockwise, the rotating pressure roller will also rotate synchronously with the gear disc, thereby performing a preliminary smoothing and tightening of the wrapping tape that has been adhered to the cable core. This setting not only allows the rotating pressure roller to complete the corresponding extrusion and smoothing of the contact points between the wrapping tape and the cable core, but also allows the wrapping tape to always maintain the corresponding tension during the rotating wrapping process, thereby avoiding the problem that when the tension of the wrapping tape is insufficient, the wrapping tape will not be able to fit closely to the cable core, thereby forming corners or wrinkles during the wrapping process, and then causing corresponding safety hazards to the cable core.
[0017] The cable wrapping machine is provided with a limiting slide groove. When the gear disc rotates counterclockwise, the movable slide rod provided inside the gear disc will slide inside the limiting slide groove. When the movable slide rod slides from the first movable station into the second movable station, the rotating pressure roller will move and rotate clockwise, so that the rotating pressure roller can perform a secondary smoothing and tightening of the wrapping tape that has been initially smoothed in a rotating manner during the movement process, thereby further improving the wrapping degree of the wrapping tape on the cable core, and thus effectively improving the safety of the cable after wrapping.
[0018] The cable wrapping machine is provided with several groups of connecting rotating rods inside the rotating pressure roller, and several knocking members are installed on each connecting rotating rod. As a result, when the rotating pressure roller rotates and moves, the knocking members will intermittently knock on the inner wall of the rotating pressure roller. The vibration generated by the knocking can also effectively discharge the bubbles generated by the wrapping tape during the winding process, thereby further improving the tightness between the wrapping tape and the cable core. In other words, the safety of the cable core after being wrapped with the wrapping tape is also further improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0020] Figure 2 This is a schematic diagram of the cross-sectional structure of a partial gear plate of the present invention.
[0021] Figure 3 For the present invention Figure 2 Enlarged structural diagram at point A in the middle.
[0022] Figure 4 For the present invention Figure 2 Enlarged structural diagram at point B in the middle.
[0023] Figure 5 It is a schematic diagram of the front view structure of the wrapping station of the present invention.
[0024] Figure 6 This is a front view structural diagram of the gear plate of the present invention.
[0025] Figure 7 It is a schematic structural diagram of the compaction assembly of the present invention.
[0026] Figure 8 It is a schematic structural diagram of the first section of the partially rotating pressure roller of the present invention.
[0027] Figure 9 This is a schematic diagram of the second section structure of the partially rotating pressure roller of the present invention.
[0028] Figure 10 It is a schematic structural diagram of the third section of the partially rotating pressure roller of the present invention.
[0029] Figure 11 It is a schematic diagram of the cross-sectional structure of the local compaction component of the present invention.
[0030] In the figure: 1. Wrapping table; 2. Compacting components; 101. Gear plate; 102. First rotating gear; 103. Cable core; 104. Storage box; 105. Wrapping tape; 106. First liquid storage chamber; 107. Second liquid storage chamber; 108. First movable slide; 109. First spring; 110. Second spring; 111. Moving push piece; 112. Rotating connecting rod; 113. Limiting ratchet; 114. Limiting slide; 1141. First moving station; 1142. Second moving station; 115. Moving slide; 116. Extrusion piece; 117. Second moving slide; 119. Rotating slide; 201. Rotating pressure roller; 202. Connecting rotating rod; 203. Limiting ratchet; 204. Positioning slide; 205. Knocking piece; 206. Accommodating chamber; 207. Second rotating gear; 208. Rotating tooth mouth. DETAILED DESCRIPTION
[0031] 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.
[0032] For example 1, please refer to Figures 1-10, a cable wrapping machine includes a wrapping table 1, and a gear disk 101 and a first rotating gear 102 are provided on the front end surface of the wrapping table 1, and the gear disk 101 and the first rotating gear 102 are meshed with each other. It should be noted that a fixed connection is formed between the first rotating gear 102 and the output end of the external motor. Therefore, when the user transports the cable core 103 to be wrapped to the through groove opened in the gear disk 101, the user can start the external motor. At this time, the first rotating gear 102 will rotate, thereby driving the gear disk 101 to rotate counterclockwise accordingly. Since a first movable slide groove 108 is also provided on the gear disk 101, a compacting component 2 for positioning and tightening the cable core 103 is slidingly provided inside the first movable slide groove 108, and the compacting component 2 is composed of a rotating pressure roller 201 and a positioning slide rod 204.
[0033] See Figure 1 It can be seen that a storage box 104 for storing the wrapping tape 105 is fixedly installed on the gear disc 101, and it should be noted that after the cable core 103 is transported to the side of the gear disc 101 where the wrapping tape 105 is set, the user can adhere the wrapping tape 105 set inside the storage box 104 to the cable core 103, that is, when the gear disc 101 rotates counterclockwise, the wrapping tape 105 adhered to the cable core 103 will also gradually complete the wrapping effect on the cable core 103 under the rotation of the gear disc 101. At the same time, since a rotating pressure roller 201 is also provided on the gear disc 101, and the rotating pressure roller 201 is in contact with the cable core 103, when the gear disc 101 rotates counterclockwise, the wrapping tape 105 adhered to the cable core 103 will gradually complete the wrapping effect on the cable core 103. At the same time, since a rotating pressure roller 201 is also provided on the gear disc 101, and the rotating pressure roller 201 is in contact with the cable core 103, when the gear disc After 101 rotates counterclockwise, the rotating pressure roller 201 will also rotate synchronously with the gear disk 101, thereby performing preliminary smoothing and tightening of the wrapping tape 105 that has been adhered to the cable core 103. This setting not only allows the rotating pressure roller 201 to complete the corresponding extrusion and smoothing of the contact points between the wrapping tape 105 and the cable core 103, but also allows the wrapping tape 105 to always maintain the corresponding tension during the rotating wrapping process, so as to avoid the problem that when the tension of the wrapping tape 105 is insufficient, the wrapping tape 105 will not be able to fit tightly against the cable core 103, thereby forming corners or wrinkles during the wrapping process, and then causing corresponding safety hazards to the cable core 103.
[0034] On the one hand, see Figure 5 It can be seen that a limited chute 114 is provided on the wrapping table 1, and one end of a movable slide rod 115 is slidably provided inside the limited chute 114. Figure 4It can be seen that a first liquid storage chamber 106 is also opened inside the gear disk 101, and the other end of the movable slide 115 is slidably arranged inside the first liquid storage chamber 106. It should be noted that the limiting slide groove 114 is composed of a first movable station 1141 and a second movable station 1142. The first movable station 1141 and the second movable station 1142 are both provided with several groups, and the opening position of the first movable station 1141 is farther away from the center position of the wrapping table 1 than the opening position of the second movable station 1142, and the adjacent first movable station 1141 and the second movable station 1142 are connected to each other. Therefore, when the gear disk 101 rotates counterclockwise, the movable slide 115 with one end arranged inside the gear disk 101 will slide synchronously inside the limiting slide groove 114, and when the movable slide 115 slides from the first movable station 1141 into the second movable station 1142, the movable slide 115 will move closer to the center position of the wrapping table 1.
[0035] On the other hand, see Figure 4 It can be seen that an extrusion piece 116 is slidingly arranged inside the first liquid storage chamber 106, and a first spring 109 is also arranged between the extrusion piece 116 and the first liquid storage chamber 106. It should be noted that a certain amount of hydraulic oil is also contained inside the space where the first spring 109 is arranged in the first liquid storage chamber 106, and the first liquid storage chamber 106 is connected to the second liquid storage chamber 107. Therefore, when the movable slide 115 moves close to the center position of the wrapping table 1, the movable slide 115 will squeeze the movement of the extrusion piece 116, and then drive the extrusion piece 116 to move synchronously in the first liquid storage chamber 106. When the extrusion piece 116 moves, the hydraulic oil also arranged in the first liquid storage chamber 106 will be squeezed by the extrusion piece 116, so that it gradually enters the second liquid storage chamber 107.
[0036] See Figure 3 It can be seen that a movable pusher 111 is slidably provided inside the second liquid storage chamber 107, and a second spring 110 is provided between one end of the movable pusher 111 and the second liquid storage chamber 107. Therefore, when the hydraulic oil enters the second liquid storage chamber 107 from the first liquid storage chamber 106, the movable pusher 111 provided inside the second liquid storage chamber 107 will be squeezed by the hydraulic oil, so that the movable pusher 111 moves. Figure 4 At the same time, since the other end of the moving push piece 111 is arranged inside the first moving chute 108, and the other end of the moving push piece 111 is rotatably connected with the rotating pressure roller 201 which is also arranged inside the first moving chute 108, and it should be noted that the other end of the moving push piece 111 is provided with a rotating chute 119, and the rotating pressure roller 201 is arranged inside the rotating chute 119 by a ball sliding, this arrangement can not only allow the moving push piece 111 to drive the rotating pressure roller 201 to do Figure 3The rotating pressure roller 201 moves clockwise, and when the rotating pressure roller 201 moves, the rotating pressure roller 201 will have a certain friction with the cable core 103, which will cause the rotating pressure roller 201 to rotate accordingly. This connection method will not affect the rotation effect of the rotating pressure roller 201.
[0037] When the rotating pressure roller 201 moves clockwise under the push of the moving push piece 111, since the counterclockwise rotation of the gear plate 101 is still in progress at this time, the wrapping tape 105 around the cable core 103 will also continue to be wrapped. At this time, through the clockwise rotation of the rotating pressure roller 201, the wrapping tape 105 that has been adhered to the cable core 103 and preliminarily smoothed by the rotating pressure roller 201 can be in close contact with the clockwise rotating pressure roller 201. In the process of movement, due to the friction force, the rotating pressure roller 201 will also rotate clockwise to a certain extent, so that the rotating pressure roller 201 can further smooth and tighten the wrapping tape 105 that has been preliminarily smoothed in a rotating manner during the movement, so as to further improve the wrapping degree of the wrapping tape 105 around the cable core 103, thereby effectively improving the safety of the cable after wrapping.
[0038] Embodiment 2: This embodiment aims to solve the problem that even if the pressure roller 201 is rotated to smooth the wrapping tape 105, bubbles will be generated inside the wrapping tape 105 due to the loose winding, which will affect the winding effect between the wrapping tape 105 and the cable core 103. This embodiment is an improvement made on the basis of embodiment 1. For details, please refer to Figures 1-10 When the pressing roller 201 rotates clockwise, on the one hand, Figure 9 It can be seen that the inner wall of the accommodating cavity 206 opened by the rotating pressing roller 201 is also provided with a plurality of groups of rotating teeth 208 in a circumferential array. Figure 11 It can be seen that a plurality of connecting rods 202 are rotatably arranged inside the accommodating cavity 206 opened by the positioning slide 204, and the other ends of the plurality of connecting rods 202 are slidably arranged on the inner wall of the accommodating cavity 206 opened by the rotating pressure roller 201, and the rotating pressure roller 201 and the positioning slide 204 are in a rotatable connection. It should be noted that the positioning slide 204 is slidably arranged inside the second movable slide groove 117 by the slider, so the positioning slide 204 can only make axial movement and cannot rotate. Therefore, when the rotating pressure roller 201 rotates, the plurality of connecting rods 202 can only slide in the annular groove opened on the inner wall of the rotating pressure roller 201. At the same time, refer to Figure 10-11It can be seen that each connecting rotating rod 202 is sleeved with a second rotating gear 207, and the second rotating gear 207 is engaged with the corresponding rotating tooth mouth 208. Therefore, when the rotating pressure roller 201 rotates clockwise, the several groups of rotating tooth mouths 208 set on the rotating pressure roller 201 will drive the corresponding second rotating gear 207 to rotate, and then drive the connecting rotating rod 202 to rotate accordingly.
[0039] See Figure 9 It can be seen that each connecting rod 202 is provided with a plurality of knocking members 205. It should be noted that a torsion spring is further provided between the connecting rod 202 and the positioning slide 204 when the connecting rod 202 is rotated. When the connecting rod 202 rotates, the knocking members 205 provided on the connecting rod 202 will also rotate synchronously. Figure 10 It can be seen that the rotating tooth mouth 208 is set at equal intervals. Therefore, after the rotating tooth mouth 208 completes the engagement with the corresponding second rotating gear 207, the second rotating gear 207 will have a certain window period. That is to say, at this time, the connecting rod 202 connected to the second rotating gear 207 will be reset accordingly through the reset elastic force of the torsion spring, and due to inertia, the connecting rod 202 will rotate a certain distance more. Therefore, the knocking piece 205 set on the connecting rod 202 will knock on the inner wall of the rotating pressure roller 201, so that the rotating pressure roller 201 produces a corresponding vibration effect.
[0040] At the same time, since the rotation of the rotating tooth mouth 208 is based on the rotation of the rotating pressure roller 201, as long as the rotating pressure roller 201 does not stop rotating, the rotating tooth mouth 208 will always maintain a rotating state. That is to say, during the rotation of the rotating pressure roller 201, several groups of rotating tooth mouths 208 will drive the same connecting rod 202 to rotate multiple times, and then the knocking piece 205 set on the connecting rod 202 can perform the above-mentioned movement multiple times, thereby knocking the rotating pressure roller 201 multiple times, so as to effectively improve the vibration effect generated by the rotating pressure roller 201.
[0041] It should be noted that the knocking of the rotating pressure roller 201 by the knocking member 205 is based on the clockwise rotation of the rotating pressure roller 201, that is, the knocking of the rotating pressure roller 201 by the knocking member 205 is also generated during the rotation of the rotating pressure roller 201. Therefore, through this knocking, not only can the rotating pressure roller 201 complete the secondary smoothing and extrusion of the wrapping tape 105 that has been wound on the cable core 103, but also during the smoothing and extrusion process, the vibration generated by the knocking member 205 knocking on the rotating pressure roller 201 can also effectively discharge the bubbles generated by the wrapping tape 105 during the winding process, thereby further improving the tightness between the wrapping tape 105 and the cable core 103, that is, the safety of the cable core 103 after being wrapped with the wrapping tape 105 is also further improved.
[0042] Since there are several first moving stations 1141 and second moving stations 1142 opened inside the limiting slide groove 114, when the moving slide 115 slides from the second moving station 1142 into the next first moving station 1141, the moving slide 115 will move away from the center position of the wrapping table 1. At this time, the squeezing of the extrusion member 116 by the moving slide 115 will be released, and the extrusion member 116 will also be quickly reset by the reset elastic force of the first spring 109, so that the hydraulic oil discharged from the first liquid storage chamber 106 returns to the first liquid storage chamber 106. After the hydraulic oil is reset to the first liquid storage chamber 106, the moving push member 111 squeezed by the hydraulic oil will also be quickly reset by the second spring 110, and the reset of the moving push member 111 will also drive the rotating pressure roller 201 to reset.
[0043] See Figure 7 It can be seen that the limiting ratchet 203 is fixedly sleeved on the rotating pressure roller 201, and the positioning slide bar 204 is rotatably connected to the rotating link 112 through a torsion spring, and the other end of the rotating link 112 is fixedly connected to the limiting ratchet 113, and the limiting ratchet 113 and the limiting ratchet 203 are externally meshed. It should be noted that the positioning slide bar 204 is set inside the second movable slide groove 117 through the limiting sliding of the slider, so the positioning slide bar 204 will only make axial movement and will not rotate. That is to say, through the above connection method, the limiting ratchet 113 and the limiting ratchet 203 can maintain a relatively static state, so when the limiting ratchet 203 follows the rotating pressure roller 201 to rotate Figure 3 When the position-limiting ratchet 113 rotates clockwise, it will swing relative to the position-limiting ratchet 203 under the contact of the position-limiting ratchet 203. When the position-limiting ratchet 203 follows the rotation pressure roller 201 to reset, the rotation pressure roller 201 will still contact the cable core 103 during the reset process, thereby Figure 3The pressing roller 201 is then moved counterclockwise, and the pressing roller 201 is also able to stop rotating by the limiting engagement between the limiting ratchet 203 and the limiting ratchet teeth 113, that is, the resetting of the pressing roller 201 can only move axially and will not rotate. On the one hand, since the pressing roller 201 is rotating clockwise, the gear plate 101 is still wrapping the cable core 103 with the wrapping tape 105, but due to the movement of the pressing roller 201, the wrapping tape 105 of this part may not be so tight with the cable core 103. Therefore, by resetting the pressing roller 201 in a relatively stationary state, the pressing roller 201 can also effectively smooth and press the wrapping tape 105 of this part that may be adhered not tightly, thereby avoiding the situation that the wrapping tape 105 and the cable core 103 are not so tight. On the other hand, by resetting the rotating pressure roller 201 in a relatively stationary state, it is also to avoid the rotating pressure roller 201 from rotating counterclockwise during the resetting process, so that the rotating pressure roller 201 will drive the wrapping tape 105 that may not adhere tightly to move during the resetting process, thereby causing the wrapping tape 105 wrapped around the cable core 103 to form wrinkles, thereby causing corresponding safety hazards to the cable core 103.
[0044] At the same time, since the rotation of the gear disk 101 is based on the rotation of the first rotating gear 102, as long as the first rotating gear 102 does not stop rotating, the gear disk 101 will continue to rotate, that is, the movable slide bar 115 arranged inside the gear disk 101 will move back and forth inside the limiting slide groove 114 to move closer to or away from the center of the wrapping table 1, thereby allowing the rotating pressure roller 201 and the parts connected to the rotating pressure roller 201 to reciprocate and perform the above-mentioned movement effect. In this way, the tightness of the winding between the wrapping tape 105 and the cable core 103 is further improved to a certain extent, thereby effectively reducing the possibility of safety hazards in the cable core 103.
[0045] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0046] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A cable wrapping machine, comprising a wrapping station, characterized in that: A gear disc and a first rotating gear are provided on the front end surface of the wrapping table, and the gear disc and the first rotating gear are meshed with each other. A storage box for storing the wrapping tape is fixedly mounted on the gear disc, and a first movable slide is provided on the gear disc. A compacting component for positioning and tightening the cable core is slidably provided inside the first movable slide; The compaction assembly is composed of a rotating pressure roller and a positioning slide rod. There is a rotating connection between the rotating pressure roller and the positioning slide rod. A accommodating cavity is provided inside the rotating pressure roller and the positioning slide rod. A plurality of connecting rotating rods are provided inside the accommodating cavity, and each connecting rotating rod is provided with a plurality of knocking parts.
2. The cable wrapping machine according to claim 1, characterized in that: A limiting slide is provided on the wrapping table, and the limiting slide is composed of a plurality of first movable stations and a plurality of second movable stations. One end of a movable slide rod is slidably provided inside the limiting slide, and a first liquid storage cavity is also provided inside the gear plate, and the other end of the movable slide rod is slidably provided inside the first liquid storage cavity.
3. The cable wrapping machine according to claim 2, characterized in that: An extrusion piece is slidably provided inside the first liquid storage cavity, a first spring is provided between the extrusion piece and the first liquid storage cavity, a second liquid storage cavity is provided on the gear plate, and the second liquid storage cavity is communicated with the first liquid storage cavity.
4. The cable wrapping machine according to claim 3, characterized in that: A movable push piece is slidably provided inside the second liquid storage cavity, a second spring is provided between one end of the movable push piece and the second liquid storage cavity, and the other end of the movable push piece is provided inside the first movable sliding groove.
5. The cable wrapping machine according to claim 4, characterized in that: The other end of the movable push piece is provided with a rotation slide groove, and the rotation pressure roller is slidably arranged inside the rotation slide groove through a ball bearing.
6. The cable wrapping machine according to claim 5, characterized in that: A second movable slot is provided on the inner wall of the first movable slot, and one end of a rotating connecting rod is rotatably connected to the positioning slide rod through a torsion spring.
7. The cable wrapping machine according to claim 6, characterized in that: A limiting ratchet is also installed on the rotating pressure roller, and a limiting ratchet is fixedly provided on the other end of the rotating connecting rod. The limiting ratchet and the limiting ratchet are in an external meshing connection.
8. The cable wrapping machine according to claim 7, characterized in that: The inner wall of the accommodating cavity opened by the rotating pressure roller is also provided with several groups of rotating teeth in a circumferential array. One end of several connecting rods is rotatably set inside the positioning slide rod, and the other end of several connecting rods is slidably set on the inner wall of the rotating pressure roller.
9. The cable wrapping machine according to claim 8, characterized in that: A second rotating gear is mounted on each of the connecting rotating rods, and the second rotating gear is meshed with the corresponding rotating tooth opening.
10. A cable, characterized in that: A cable produced by a cable wrapping machine according to any one of claims 1 to 9.