Cable production stranding device
The cable production stranding device with integrated lubricating oil quality detector and automatic cleaning, drying and adding system solves the production interruption problem caused by complex bearing maintenance in the existing technology and realizes efficient and reliable bearing maintenance.
Patent Information
- Application Number
- CN202511133676.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-13
- Publication Date
- 2025-10-03
AI Technical Summary
Existing cable twisting devices require regular disassembly and maintenance of bearings, which is complicated and causes long interruptions to the production line, affecting production efficiency and equipment accuracy.
A cable production stranding device was designed, which integrates a lubricant quality detector, a detergent delivery system, a drying component, and a lubricant addition system. This device enables automatic cleaning and lubrication of bearings without disassembly. The controller automatically controls the coordinated operation of various components, reducing manual intervention.
It realizes disassembly-free maintenance of bearings, reduces downtime, improves production efficiency and equipment reliability, and avoids errors introduced by disassembly and assembly.
Smart Images

Figure CN120748856A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable twisting devices, and in particular to a cable production twisting device. Background Art
[0002] The twisting process is a key step in the manufacturing of wires and cables. Its primary function is to integrate multiple thin metal conductors into a composite conductor with excellent electrical conductivity and mechanical flexibility through rotational twisting. Currently, widely used cable twisting devices typically utilize a rotating spindle structure. This structure drives the payoff reel or stranding cage through high-speed rotation, thereby achieving uniform twisting of multiple metal conductors. The spindle is typically mounted on a fixed support using bearings to ensure stability and coaxiality at high speeds.
[0003] However, during long-term continuous operation, the main shaft is subjected to large radial and axial loads, causing the supporting bearings to be continuously subjected to pressure and friction. This long-term mechanical stress can easily cause wear of the bearing's internal raceways, balls, cages and other components, thereby affecting the rotation accuracy of the main shaft, and even causing vibration, noise or equipment failure, ultimately reducing the quality stability of the cable products. To ensure the normal operation of the equipment and extend its service life, the bearings must be regularly maintained, including disassembly, cleaning, inspection and re-lubrication. However, in existing structural designs, the bearings are usually located at the connection between the main shaft and the support, with a compact structure and complex assembly and disassembly, resulting in a time-consuming and labor-intensive maintenance process. During the entire maintenance period, the stranding device must be shut down and normal production cannot be carried out, resulting in a long-term interruption of the production line, seriously affecting the overall operating efficiency and production output. In addition, frequent disassembly and assembly may also introduce assembly errors, further affecting the operating accuracy of the equipment. Summary of the Invention
[0004] In view of this, the present invention provides a cable production twisting device, which can overcome the shortcomings of existing cable twisting devices that require regular disassembly and maintenance of bearings, are complicated to operate, and may cause long-term interruption of the production line.
[0005] The technical solution of the present invention is: a cable production twisting device, comprising: a cable twisting device body, the cable twisting device body comprising a base plate, a support seat, a cover frame and a bearing; a controller, installed on the top of the base plate; a liquid storage frame, connected to the side of the support seat; a heater, installed on the liquid storage frame; a drain pipe, connected to the side of the liquid storage frame and kept connected; a liquid suction pump, installed on the inner bottom of the liquid storage frame; an infusion pipe, connected to the liquid outlet of the liquid suction pump and kept connected; an electric control valve, installed on the infusion pipe; an annular pipe, connected to the side of the cover frame and kept connected; a connecting pipe, the two ends of which are respectively connected to the annular pipe and the electric control valve and kept connected; a lubricating oil quality detector, installed on the side of the cover frame; a reflux component, arranged on the side of the support seat, for transporting the detergent in the bearing back to the liquid storage frame; a drying component, arranged on the side of the support seat, for drying the bearing; and an adding component, arranged on the side of the support seat, for adding lubricating oil to the bearing.
[0006] In one embodiment, the reflux assembly includes: an arc-shaped tube connected to the side of the support seat and maintained in communication; a reflux pipe connected to the liquid storage frame, and the end of the reflux pipe is connected to the arc-shaped tube and maintained in communication.
[0007] In one embodiment, the drying component includes: a hot air blower installed on the side of the support base; and an air supply pipe, both ends of which are respectively connected to the electric control valve and the air outlet of the hot air blower and remain connected.
[0008] In one embodiment, the additional components include: an oil storage tank, symmetrically connected to both sides of the support base; an inclined pipe, connected to the side of the oil storage tank and maintained in communication; a sealing cover, threadedly connected to the end of the inclined pipe; an oil supply pipe, connected between the support base and the side of the cover frame and maintained in communication; a hose, the two ends of which are respectively connected to the sealing cover and the oil supply pipe and maintained in communication; a lifting plate, slidably connected to the inside of the oil storage tank; a first air pump, installed on the side of the oil storage tank; and an air supply pipe, connected between the first air pump and the oil storage tank and maintained in communication.
[0009] In one embodiment, the invention further comprises: a limiting frame connected to the inside of the oil storage tank, wherein the top of the limiting frame contacts the bottom of the lifting plate.
[0010] In one embodiment, it also includes: a retaining ring, which is symmetrically connected between the support base and the interior of the cover frame, and the retaining ring is circumferentially spaced with a first circular hole, a second circular hole and a gear hole, and the retaining ring is also provided with a square hole; a dual-axis motor, which is installed on the top of the cover frame; a full gear, which is connected to the output shaft of the dual-axis motor, and the full gear is engaged with the gear hole.
[0011] In one embodiment, the invention further comprises: a protective shell symmetrically connected to the top of the cover frame, and the entire gear is located inside the protective shell.
[0012] In one embodiment, it also includes: an arc-shaped airbag, which is symmetrically connected to the inside of the support seat and the cover frame respectively; a fixed tube, which is connected to the arc-shaped airbag and remains connected; a second air pump, which is symmetrically installed on the top of the base plate; a diverter pipe, which is connected to the air outlet of the second air pump and remains connected; a connector, which is installed at the end of the diverter pipe and remains connected, and the end of the fixed tube is connected to the connector and remains connected.
[0013] Beneficial effects: 1. The present invention monitors the lubrication status of the bearing in real time through a lubricating oil quality detector. When insufficient lubricating oil quality is detected, the cleaning program is automatically triggered. The liquid pump can transport the cleaning agent preheated by the heater to the inside of the bearing through the infusion tube, connecting tube and annular tube. After dissolving grease and dirt, the arc tube and return pipe guide the waste liquid back to the liquid storage frame, realizing disassembly-free cleaning of the bearing. Subsequently, the drying component can automatically dry the bearing, and finally the adding component can automatically inject new lubricating oil into the bearing. No manual intervention is required throughout the process, which saves time and effort, can greatly reduce downtime, and improve overall work efficiency.
[0014] 2. The present invention can control the connectivity between the first circular hole, the second circular hole and the annular tube, the arc tube and the oil delivery pipe through the cooperation of the retaining ring, the dual-axis motor and the full gear, ensuring that the detergent and lubricating oil are accurately injected into the bearing in stages to avoid cross contamination. At the same time, the arc-shaped airbag expands and seals the gap between the bearing and the support seat and the cover frame under the drive of the second air pump, which can prevent the leakage of detergent or lubricating oil during maintenance and improve maintenance reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0016] Figure 2 It is a schematic diagram of the separation structure of the support base and the cover frame of the present invention.
[0017] Figure 3 This is a schematic diagram of the installation of the reflux component and the drying component of the present invention.
[0018] Figure 4 For the present invention Figure 3 Schematic diagram of the specific structure from another perspective.
[0019] Figure 5 This is a schematic diagram of the installation of the oil storage tank, oil delivery pipe, hose, lifting plate and first air pump of the present invention.
[0020] Figure 6 It is a schematic diagram of the separation structure of the lifting plate and the limiting frame of the present invention.
[0021] Figure 7 This is a schematic diagram of the installation of the retaining ring, dual-axis motor, full gear and protective shell of the present invention.
[0022] Figure 8This is a schematic diagram of the installation of the arc-shaped airbag, fixed tube, second air pump, diverter tube and connector of the present invention.
[0023] The markings in the figure are: 101-base plate, 102-support seat, 103-cover frame, 104-bearing, 2-controller, 3-liquid storage frame, 4-heater, 5-drain pipe, 6-liquid pump, 7-infusion pipe, 8-electric control valve, 9-annular pipe, 10-connecting pipe, 11-lubricating oil quality detector, 12-arc pipe, 13-return pipe, 14-hot air blower, 15-air supply pipe, 16-oil storage tank, 17-oblique pipe, 18-sealed Sealing cover, 19-oil supply pipe, 20-hose, 21-lifting plate, 22-first air pump, 2201-air supply pipe, 23-limiting frame, 24-blocking ring, 2401-first circular hole, 2402-second circular hole, 2403-square hole, 2404-tooth hole, 25-dual-axis motor, 26-full gear, 27-protective shell, 28-arc-shaped airbag, 29-fixing tube, 30-second air pump, 31-diverter pipe, 32-connector. DETAILED DESCRIPTION
[0024] Embodiment: A cable production stranding device, such as Figures 1-6 As shown, it includes a cable twisting device body, a controller 2, a liquid storage frame 3, a heater 4, a drain pipe 5, a liquid pump 6, an infusion pipe 7, an electric control valve 8, a ring pipe 9, a connecting pipe 10, a lubricating oil quality detector 11, a reflux component, a drying component and an adding component. The cable twisting device body includes a base plate 101, a support seat 102, a cover frame 103 and a bearing 104. The left and right sides of the top of the base plate 101 are connected to the support seats 102, and the tops of the two support seats 102 are both installed with cover frames 103 by bolts. Bearings 104 are installed between the support seats 102 and the inside of the cover frame 103. The cable twisting device body is a prior art, which has the function of twisting multiple thin metal wires into a composite conductor. No more details are given here. The controller 2 is installed on the left front side of the top of the base plate 101, and the front lower parts of the two support seats 102 are connected to the storage Liquid frame 3, a heater 4 is installed at the lower part of the liquid storage frame 3, the front lower part of the liquid storage frame 3 is connected to a drain pipe 5 and kept in communication, and a valve is installed on the drain pipe 5, the inner bottom of the liquid storage frame 3 is installed with a liquid pump 6, the liquid outlet of the liquid pump 6 is connected to an infusion pipe 7 and kept in communication, and an electric control valve 8 is installed on the upper end of the infusion pipe 7, the two cover frames 103 are connected to the opposite sides with an annular pipe 9 and kept in communication, a connecting pipe 10 is connected between the annular pipe 9 and the electric control valve 8 and kept in communication, and the two cover frames 103 are installed on the opposite sides with a lubricating oil quality detector 11, a reflux component for transporting the detergent in the bearing 104 back to the liquid storage frame 3 is provided on the support seat 102, a drying component for drying the bearing 104 is provided on the support seat 102, and the support seat 102 is also provided with an adding component for adding lubricating oil to the bearing 104.
[0025] like Figure 3 and Figure 4 As shown, the reflux assembly includes an arc tube 12 and a reflux pipe 13. The upper parts of the two supporting seats 102 facing each other are connected to the arc tube 12 and remain connected. The upper parts of the two liquid storage frames 3 are connected to the reflux pipe 13, and the upper ends of the reflux pipes 13 are connected to the arc tube 12 and remain connected.
[0026] like Figure 3 and Figure 4 As shown, the drying assembly includes a hot air blower 14 and an air supply pipe 15. The hot air blower 14 is installed on the lower rear side of the two support seats 102. The air supply pipe 15 is connected between the air outlet of the hot air blower 14 and the electric control valve 8 and keeps them connected.
[0027] like Figure 5 and Figure 6 As shown, the additional components include an oil storage tank 16, an inclined tube 17, a sealing cover 18, an oil delivery pipe 19, a hose 20, a lifting plate 21, a first air pump 22, an air delivery pipe 2201 and a limit frame 23. The lower parts of the left and right sides of the two support seats 102 are connected to the oil storage tank 16, and the upper part of the side of the oil storage tank 16 away from the support seat 102 is connected to the inclined tube 17 and remains in communication. The upper end of the inclined tube 17 is threadedly connected to the sealing cover 18. The left side of the support seat 102 and the cover frame 103 are detachably connected with the oil delivery pipe 19 and remain in communication. The right side of the support seat 102 and the cover frame 103 are also detachably connected with the oil delivery pipe 19 and remain in communication. The oil delivery pipe 19 corresponds one to one with the inclined tube 17. A hose 20 is connected between the sealing cover 18 and the oil delivery pipe 19 and they remain connected. A lifting plate 21 is slidably connected to the interior of each oil storage tank 16. A first air pump 22 is installed on the side of each oil storage tank 16 away from the support seat 102. An air delivery pipe 2201 is connected between the air outlet and the air inlet of the first air pump 22, and a control valve is installed on the air delivery pipe 2201. The control valve can switch the connection state between the air outlet and the air inlet of the first air pump 22 and the air delivery pipe 2201, and the lower end of the air delivery pipe 2201 is connected to the side of the oil storage tank 16 and remains connected. A limiting frame 23 is connected to the interior of each oil storage tank 16, and the top of the limiting frame 23 contacts the bottom of the lifting plate 21.
[0028] In the initial state, the liquid storage frame 3 is filled with an appropriate amount of cleaning agent specifically for the bearing 104; the oil storage tank 16 is filled with an appropriate amount of lubricating oil; the liquid infusion tube 7 is connected to the connecting tube 10 through the electric control valve 8; the air supply pipe 15 is not connected to the connecting tube 10 through the electric control valve 8; the air outlet of the first air pump 22 is connected to the air supply pipe 2201 through the control valve; the air inlet of the first air pump 22 is connected to the outside world through the control valve. When it is necessary to twist the metal wires, it is only necessary to place the wire reels of multiple metal wires on the placement rod of the cable twisting device body, and install the metal wires in place, and then control the cable twisting device body to start working through the controller 2. The cable twisting device body can twist multiple metal wires into a composite conductor. At this time, the lubricating oil quality detector 11 can monitor the quality of the lubricating oil in the bearing 104 in real time; when the lubricating oil quality detector 11 detects that the quality of the lubricating oil in the bearing 104 is too low, it means that the bearing 104 needs to be maintained. At this time, the lubricating oil quality detector 11 A signal will be sent out, and the controller 2 will control the cable twisting device body to stop working after receiving the signal. At the same time, the controller 2 will control the heater 4 and the liquid pump 6 to work for a specified time. The heater 4 can first heat the detergent in the liquid storage frame 3, and then the liquid pump 6 will extract the heated detergent and transport the detergent to the inside of the bearing 104 through the infusion tube 7, the connecting tube 10 and the annular tube 9. The detergent can dissolve the grease and dirt inside the bearing 104. With the continuous supply of detergent, the detergent, dissolved grease and dirt inside the bearing 104 can be squeezed out by pressure. The cleaning agent, dissolved grease and dirt will flow into the arc tube 12, and then the cleaning agent, dissolved grease and dirt will flow into the liquid storage frame 3 through the return pipe 13. Since the connection position between the annular tube 9 and the cover frame 103 is located at the upper half of the bearing 104, and the connection position between the arc tube 12 and the support seat 102 is located at the lower half of the bearing 104, the cleaning agent, dissolved grease and dirt inside the bearing 104 can be discharged from top to bottom, ensuring the cleaning effect inside the bearing 104. After the cleaning is completed, the controller 2 will control the heater 4 and the liquid pump 6 to stop working. At this time, the infusion tube 7, the connecting tube 10 and the annular tube 9 are The residual detergent will flow back to the inside of the liquid storage frame 3 by gravity; then the controller 2 will control the electric control valve 8 to switch the pipeline, so that the infusion tube 7 and the connecting tube 10 are in a disconnected state, and the air supply pipe 15 and the connecting tube 10 are in a connected state, and then the controller 2 will control the hot air blower 14 to work for a specified time, and the hot air blower 14 can deliver hot air to the inside of the bearing 104 through the air supply pipe 15, the connecting tube 10 and the annular tube 9, thereby drying the inside of the bearing 104 to remove the residual detergent inside the bearing 104. After the drying is completed, the controller 2 will control the hot air blower 14 to stop working;Then the controller 2 will control the first air pump 22 to work for a specified time. The first air pump 22 can inject air into the lower side of the oil storage tank 16 through the air supply pipe 2201, so that the air pressure on the lower side of the oil storage tank 16 increases, thereby pushing the lifting plate 21 to move upward. The lifting plate 21 can push the lubricating oil in the oil storage tank 16 to move upward, so that the lubricating oil can enter the bearing 104 through the inclined tube 17, the hose 20 and the oil supply pipe 19, so as to automatically complete the lubricating oil adding work. When the bearing 104 is added with a proper amount of lubricating oil, the controller 2 will control the first air pump 22 to stop working, and then the cable twisting device body can be controlled by the controller 2 to continue working. The entire maintenance process does not require the disassembly of the bearing 104, which saves time and effort and can greatly reduce the downtime of the cable twisting device body; finally, open the valve on the drain pipe 5, and the waste liquid in the liquid storage frame 3 can be completely discharged through the drain pipe 5, and then After that, the valve on the drain pipe 5 is closed. When the lubricating oil in the oil storage tank 16 is about to be used up, the sealing cover 18 can be rotated and unscrewed to separate the sealing cover 18 from the inclined tube 17. Then, the communication state between the first air pump 22 and the air supply pipe 2201 can be switched by the control valve, so that the air inlet of the first air pump 22 is connected to the air supply pipe 2201 through the control valve, and the air outlet of the first air pump 22 is connected to the outside through the control valve. Then, the first air pump 22 is controlled by the controller 2 to start working. The first air pump 22 can extract the air from the lower side of the oil storage tank 16 through the air supply pipe 2201, thereby reducing the air pressure in the lower side of the oil storage tank 16, thereby enabling the lifting plate 21 to move downward and reset. The limit frame 23 can limit the lifting plate 21. Then, the first air pump 22 is controlled by the controller 2 to stop working. At this time, lubricating oil can be added to the oil storage tank 16 through the inclined tube 17. Finally, the sealing cover 18 is rotated and installed back on the inclined tube 17.
[0029] like Figure 7As shown, it also includes a retaining ring 24, a dual-axis motor 25, a full gear 26 and a protective shell 27. The retaining ring 24 is symmetrically connected to the inside of the support seat 102 and the cover frame 103 for left-right rotation. The retaining ring 24 is respectively located on the left and right sides of the bearing 104. The retaining ring 24 is circumferentially spaced with a first circular hole 2401, a second circular hole 2402 and a tooth hole 2404. The first circular hole 2401 on the retaining ring 24 on the right side of the bearing 104 is used to communicate with the annular tube 9, and the first circular hole 2401 on the retaining ring 24 on the left side of the bearing 104 is used to communicate with the arc tube 12, and the second circular hole 2402 is used to communicate with the arc tube 12. It is connected to the oil delivery pipe 19, and a square hole 2403 is opened on the retaining ring 24 located on the right side of the bearing 104. The lubricating oil quality detector 11 passes through the square hole 2403. A dual-axis motor 25 is installed in the middle of the top of the two cover frames 103. The output shafts on the left and right sides of the dual-axis motor 25 are connected with full gears 26, and the full gears 26 are engaged with the gear holes 2404. The left and right sides of the top of the two cover frames 103 are connected with protective shells 27. The output shaft of the dual-axis motor 25 rotates and passes through the side of the protective shell 27, and the full gear 26 is located inside the protective shell 27. The protective shell 27 is used to protect the full gear 26.
[0030] In the initial state, the retaining ring 24 can block the annular tube 9, the arc tube 12 and the oil delivery pipe 19, and can prevent impurities and lubricating oil in the bearing 104 from entering the annular tube 9, the arc tube 12 and the oil delivery pipe 19; when the bearing 104 needs to be cleaned, the controller 2 can first control the dual-axis motor 25 to drive the full gear 26 to rotate a specified number of circles, and the full gear 26 can drive the retaining ring 24 to rotate a specified angle through the tooth hole 2404, so that the first circular holes 2401 on the left and right sides are respectively connected to the annular tube 9 and the arc tube 12 , and then the bearing 104 can be cleaned. At this time, the retaining ring 24 still blocks the oil delivery pipe 19, thereby preventing the detergent from entering the oil delivery pipe 19; when new lubricating oil needs to be injected into the bearing 104, the retaining ring 24 needs to be controlled to rotate the specified angle again so that the second circular hole 2402 can remain connected with the oil delivery pipe 19, and then new lubricating oil can be injected into the bearing 104. At this time, the retaining ring 24 can block the annular tube 9 and the arc tube 12 again, thereby preventing the lubricating oil from entering the annular tube 9 and the arc tube 12.
[0031] Since there is usually a gap between the bearing 104 and the support seat 102 and the cover frame 103, which is not completely sealed, the cleaning agent and new lubricating oil may leak through the gap due to pressure during maintenance of the bearing 104, so a sealing component is designed; Figure 8As shown, the sealing assembly includes an arc-shaped airbag 28, a fixed tube 29, a second air pump 30, a diverter tube 31 and a connector 32. The left and right sides of the support seat 102 and the cover frame 103 are connected with the arc-shaped airbag 28. The arc-shaped airbag 28 is respectively located on the left and right sides of the bearing 104. The side of the arc-shaped airbag 28 away from the bearing 104 is connected with the fixed tube 29 and remains connected. The second air pump 30 is symmetrically installed on the left and right sides of the top front side of the base plate 101. The air outlet and the air inlet of the second air pump 30 are connected with the diverter tube 31 and remain connected. A control valve is also installed on the diverter tube 31. Similarly, the connection state of the second air pump 30 and the diverter tube 31 can be controlled by the control valve. Two connectors 32 are installed on the upper end of the diverter tube 31, and the end of the fixed tube 29 away from the arc-shaped airbag 28 is detachably connected to the connector 32 and remains connected.
[0032] In the initial state, the air outlet of the second air pump 30 is connected to the shunt pipe 31 through the control valve; the air inlet of the second air pump 30 is connected to the outside through the control valve; when the bearing 104 needs to be maintained, the second air pump 30 can be controlled by the controller 2 to start working, so that the second air pump 30 can inject air into the arc-shaped airbag 28 through the shunt pipe 31, the joint 32 and the fixing pipe 29, so that the arc-shaped airbag 28 expands to block the gap between the bearing 104 and the support seat 102 and the cover frame 103, thereby preventing the cleaning agent from and new lubricating oil leaks; when the maintenance of the bearing 104 is completed, the connection state of the second air pump 30 and the shunt pipe 31 can be switched through the control valve, so that the air inlet of the second air pump 30 is connected to the shunt pipe 31 through the control valve, and the air outlet of the second air pump 30 is connected to the outside through the control valve. At this time, the second air pump 30 can extract the air in the arc-shaped airbag 28 through the shunt pipe 31, the joint 32 and the fixed pipe 29, so that the arc-shaped airbag 28 shrinks and recovers, and finally the second air pump 30 is controlled to stop working through the controller 2.
Claims
1. A cable production stranding device, comprising: a cable stranding device body, the cable stranding device body comprising a bottom plate (101), a support seat (102), a cover frame (103) and a bearing (104); characterized in that, The apparatus further comprises: a controller (2) mounted on the top of the bottom plate (101); a liquid storage frame (3) connected to the side of the support base (102); a heater (4) mounted on the liquid storage frame (3); a liquid discharge pipe (5) connected to the side of the liquid storage frame (3) and maintained in communication; a liquid extraction pump (6) mounted on the inner bottom of the liquid storage frame (3); a liquid infusion pipe (7) connected to the liquid outlet of the liquid extraction pump (6) and maintained in communication; an electric control valve (8) mounted on the liquid infusion pipe (7); and a ring pipe (9) connected to the side of the cover frame (103) and maintained in communication. a connecting pipe (10), the two ends of which are respectively connected to the annular pipe (9) and the electric control valve (8) and maintained in communication; a lubricating oil quality detector (11), which is installed on the side of the cover frame (103); a reflux component, which is arranged on the side of the support seat (102) and is used to transport the cleaning agent in the bearing (104) back to the liquid storage frame (3); a drying component, which is arranged on the side of the support seat (102) and is used to dry the bearing (104); and an adding component, which is arranged on the side of the support seat (102) and is used to add lubricating oil to the bearing (104).
2. A cable production stranding device according to claim 1, characterized in that: The reflux assembly comprises: an arc-shaped tube (12) connected to the side of the support seat (102) and maintained in communication; a reflux tube (13) connected to the liquid storage frame (3), and the end of the reflux tube (13) is connected to the arc-shaped tube (12) and maintained in communication.
3. A cable production stranding device according to claim 1, characterized in that: The drying component includes: a hot air blower (14) installed on the side of the support base (102); and an air supply pipe (15), both ends of which are respectively connected to the electric control valve (8) and the air outlet of the hot air blower (14) and maintained in communication.
4. A cable production stranding device according to claim 1, characterized in that: The additional components include: an oil storage tank (16), symmetrically connected to both sides of the support base (102); an inclined tube (17), connected to the side of the oil storage tank (16) and maintained in communication; a sealing cover (18), threadedly connected to the end of the inclined tube (17); an oil delivery pipe (19), connected between the side of the support base (102) and the cover frame (103) and maintained in communication; a hose (20), the two ends of which are respectively connected to the sealing cover (18) and the oil delivery pipe (19) and maintained in communication; a lifting plate (21), slidably connected to the inside of the oil storage tank (16); a first air pump (22), installed on the side of the oil storage tank (16); and an air delivery pipe (2201), connected between the first air pump (22) and the oil storage tank (16) and maintained in communication.
5. A cable production stranding device according to claim 4, characterized in that: It also includes a limit frame (23) connected to the inside of the oil storage tank (16), and the top of the limit frame (23) contacts the bottom of the lifting plate (21).
6. A cable production stranding device according to claim 1, characterized in that: The invention also includes: a retaining ring (24), which is symmetrically connected to the support base (102) and the interior of the cover frame (103), and the retaining ring (24) is circumferentially spaced with a first circular hole (2401), a second circular hole (2402) and a tooth hole (2404), and the retaining ring (24) is also provided with a square hole (2403); a dual-axis motor (25), which is installed on the top of the cover frame (103); and a full gear (26), which is connected to the output shaft of the dual-axis motor (25), and the full gear (26) is meshed with the tooth hole (2404).
7. A cable production stranding device according to claim 6, characterized in that: It also includes a protective shell (27) symmetrically connected to the top of the cover frame (103), and the full gear (26) is located inside the protective shell (27).
8. A cable production stranding device according to claim 1, characterized in that: The invention also includes: an arc-shaped air bag (28), symmetrically connected to the inside of the support base (102) and the cover frame (103), respectively; a fixed tube (29), connected to the arc-shaped air bag (28) and maintained in communication; a second air pump (30), symmetrically installed on the top of the base plate (101); a shunt tube (31), connected to the second air pump (30) and maintained in communication; a joint (32), installed at the end of the shunt tube (31) and maintained in communication, and the end of the fixed tube (29) is connected to the joint (32) and maintained in communication.