Energy-saving drying equipment for production of environment-friendly flame-retardant insulated cable material
By designing energy-saving drying equipment with anti-deviation wheel limiters, rubber dehydration ring scrapers and blowing devices, the problems of cable deviation and moisture removal during transmission are solved, and the cable can be quickly shaped and dried.
Patent Information
- Application Number
- CN202511258310.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2025-10-03
AI Technical Summary
Traditional drying devices use fans to dry the cable surface, which is ineffective. The cable is easily deflected during the drying process and it is difficult to effectively remove moisture from the surface.
An energy-saving drying equipment including an anti-deviation mechanism, a dehydration mechanism and a drying mechanism was designed. The deviation and moisture removal problems of the cable during transmission were solved respectively by limiting the anti-deviation wheel, scraping the rubber dehydration ring and drying with a blowing device.
It effectively prevents the cable from shifting during transmission, and quickly and efficiently removes moisture from the cable surface through the rubber dehydration ring and blowing device, achieving rapid shaping and drying of the cable.
Smart Images

Figure CN120748867A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy-saving drying equipment for producing cable materials, and in particular to energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials. Background Art
[0002] In modern industry, the application scope of cables is becoming more and more extensive, especially in many fields that cannot do without the application of cables. Therefore, the market demand for environmentally friendly flame-retardant insulated cables is increasing, and the requirements for their production and processing are also increasing. The demand for output is also increasing. Therefore, this energy-saving drying equipment used in the production of environmentally friendly flame-retardant insulated cable materials has great prospects in market application.
[0003] After cable production is completed, it is usually cooled in a water tank. During the cable production process, the temperature of the cable just coated with the sheath layer can reach over 100 degrees Celsius, so it needs to be cooled in a water tank filled with cooling water. In order to quickly shape the cable, the cooled cable needs to be dried. Traditional drying equipment uses fans to dry the cable surface. Since the drying is only done by fans, the drying effect is poor. Summary of the Invention
[0004] The object of the present invention is to provide an energy-saving drying device for the production of environmentally friendly flame-retardant insulating cable materials, so as to solve the problems raised in the above-mentioned background technology.
[0005] To solve the above technical problems, the present invention is achieved through the following technical solutions: The present invention is an energy-saving drying device for the production of environmentally friendly flame-retardant insulating cable materials, comprising a base plate, U-shaped frames fixedly connected to both sides of the base plate, a motor fixedly connected to the top of the U-shaped frame, a threaded rod fixedly connected to the output end of the motor, a transmission plate fixedly connected to the surface of the base plate, a transmission device fixedly connected to the surface of the transmission plate, and a drying hood fixedly connected to the end of the base plate, characterized in that it also includes; The anti-deflection mechanism includes an extending elastic rod, the end of which is fixedly connected to an anti-deflection telescopic ring, and the inner wall of the anti-deflection telescopic ring is fixedly connected to an anti-deflection wheel. The anti-deflection wheel can limit the position of the cable during transmission to prevent the cable from deflecting during transmission; The dehydration mechanism includes an elastic telescopic rod, the end of which is fixedly connected to a positioning ring, and the interior of the positioning ring is fixedly connected to a rubber dehydration ring. The rubber dehydration ring can be used to scrape off moisture on the surface of the cable. Since the rubber dehydration ring is made of rubber, it will not damage the cable during the process of scraping water off the cable. The drying mechanism includes a guide cylinder, the inner wall of the guide cylinder is fixedly connected to a cleaning brush, and the end of the guide cylinder is fixedly connected to a gear ring.
[0006] Furthermore, a transmission hole is opened on the surface of the transmission plate, and the end of the threaded rod away from the motor is rotatably connected to the top of the U-shaped frame. There are four transmission devices, and the four transmission devices are symmetrically arranged with the transmission hole as the center.
[0007] Furthermore, the anti-deflection mechanism includes a threaded ring, the surface of the threaded ring is fixedly connected to a right-angle frame, the end of the right-angle frame away from the threaded ring is fixedly connected to a slide, the surface of the slide is rotatably connected to a push plate, the inner wall of the U-shaped frame is fixedly connected to a slide plate, the surface of the anti-deflection telescopic ring is fixedly connected to a driven right-angle rod, and the end of the driven right-angle rod away from the anti-deflection telescopic ring is rotatably connected to a push inclined plate.
[0008] Furthermore, the top and lower surfaces of the transmission plate are fixedly connected to the ends of the driven right-angle rod, the surface of the slide plate is slidably connected to the inner wall of the slide plate, the end of the extended elastic rod away from the anti-deflection telescopic ring is fixedly connected to the surface of the slide plate, the number of the anti-deflection wheels is four, and the four anti-deflection wheels are symmetrically arranged with the transmission hole as the center, the surface of the anti-deflection wheel is provided with an anti-deflection groove, and the push inclined plate is rotatably connected to the surface of the anti-deflection telescopic ring at one end away from the driven right-angle rod.
[0009] Furthermore, the dehydration mechanism includes a driven extension rod, the end of the driven extension rod is fixedly connected to a support frame, the surface of the support frame is fixedly connected to a curved plate, the bottom of the support frame is fixedly connected to a water receiving box, and the surface of the water receiving box is fixedly connected to a drain pipe.
[0010] Furthermore, one end of the elastic telescopic rod away from the positioning ring is fixedly connected to the inner wall of the support frame, and the positioning ring and the inner wall of the support frame are both provided with diversion holes. The end of the drain pipe and the inner wall of the water receiving box are interconnected, and the end of the curved plate away from the support frame is fixedly connected to the end of the extended elastic rod, and the end of the driven extension rod away from the support frame is fixedly connected to the inner wall of the drying hood.
[0011] Furthermore, the drying mechanism includes a support frame, the inner wall of the support frame is fixedly connected to a supporting telescopic rod, the surface of the supporting telescopic rod is fixedly connected to a connecting plate, the end of the supporting telescopic rod is fixedly connected to a driven ring, the surface of the driven ring is fixedly connected to a ventilation pipe, the end of the ventilation pipe away from the driven ring is fixedly connected to a central cover, the surface of the support frame is fixedly connected to a blowing device, the top of the inner wall of the drying cover is fixedly connected to a hanging ring, the inner wall of the hanging ring is slidably connected to a guide cylinder, the inner wall of the support frame is fixedly connected to a power device, and the output end of the power device is fixedly connected to a gear.
[0012] Furthermore, the two ends of the support frame are fixedly connected to the inner wall of the drying hood, the end of the connecting plate away from the supporting telescopic rod is fixedly connected to the surface of the support frame, the end of the central cover is fixedly connected to the inner wall of the support frame, the gear ring and the gear are engaged with each other, the surface of the guide cylinder is provided with ventilation holes, the surface of the driven ring is provided with air inlet holes, both ends of the ventilation pipe are interconnected with the air inlet holes and the central cover, and the inner wall of the hanging ring is slidably connected to the surface of the guide cylinder.
[0013] The present invention has the following beneficial effects: The present invention provides an anti-deflection mechanism to transmit the cooled cable to the inside of the transmission hole on the surface of the transmission plate, and pass through the transmission hole, and then start the transmission device to transport the cable, and at the same time start the motor to drive the threaded rod to rotate, when the threaded rod rotates, the threaded ring moves downward, and when the threaded ring moves, it drives the right-angle frame to move downward, and when the right-angle frame moves, it pushes the slide plate to slide downward on the inner wall of the slide plate, and when the slide plate slides, it pushes the extended elastic rod to extend in the direction of approaching each other, and when the extended elastic rod extends, it pushes the anti-deflection telescopic ring to move in the direction of approaching each other. Since there are four anti-deflection telescopic rings, when the extended elastic rod moves, it pushes the anti-deflection telescopic rings on both sides to move. When the anti-deflection telescopic rings on both sides move, they will drive the driven right-angle rod to move toward each other. When the driven right-angle rod moves, it will push the inclined plate to move toward each other. When pushing the inclined plate to move, it will push the upper and lower anti-deflection telescopic rings to move toward each other. When the anti-deflection telescopic rings move, they will drive the anti-deflection wheels to move toward each other, so that the anti-deflection grooves on the surface of the anti-deflection wheel contact the surface of the cable. At this time, the surface of the cable will enter the inner wall of the anti-deflection groove, so that the cable cannot deviate. When the cable is conveyed, it will drive the anti-deflection wheel to rotate, effectively limiting the cable through the anti-deflection groove, thereby preventing the cable from deviating during transportation.
[0014] When the cam is moved, the water on the surface of the cable is removed, and the water on the surface of the cable is discharged through the drain pipe, thereby effectively removing the water from the cable and discharging it to the drain pipe.
[0015] The present invention sets a drying mechanism, when the support frame moves, it drives the connecting plate to move in the direction of approaching each other, and when the connecting plate moves, it drives the supporting telescopic rod to extend in the direction of approaching each other, and when the supporting telescopic rod extends, it pushes the driven ring to move in the direction of approaching each other, and wraps the guide cylinder without contacting the guide cylinder. Since the length of the guide cylinder is longer than that of the driven ring, and the hanging ring is set at both ends of the guide cylinder, when the driven ring wraps the guide cylinder, the driven ring does not come into contact with the hanging ring. At this time, the cable passes through the interior of the guide cylinder and comes into contact with the cleaning brush. The blowing device is started first to blow air, and the wind blown out of the blowing device is concentrated by the concentrating cover, and then passes through the The ventilation duct sends air into the inner wall of the driven ring and finally into the inside of the guide cylinder to dry the cable. At the same time, the power device is started to drive the gear to rotate. When the gear rotates, it will drive the gear ring to rotate. When the gear ring rotates, it will drive the guide cylinder to rotate on the inner wall of the hanging ring. When the guide cylinder rotates, it will drive the cleaning brush to rotate. When the cleaning brush rotates, it will clean the surface of the cable and clean the water on the surface of the cable. The wind blown out by the blowing device can effectively dry the cable and dry the water adhered to the cleaning brush. The setting of the cleaning brush can also clean the water on the cable surface and clean the impurities adhered to the cable surface.
[0016] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the overall cross-sectional structure of the present invention; Figure 3 Schematic diagram of the overall structure of the anti-deflection mechanism of the present invention; Figure 4 This is a schematic diagram of the structure of the driven right-angle rod of the present invention; Figure 5 Schematic diagram of the overall structure of the dehydration mechanism of the present invention; Figure 6 This is a schematic diagram of the structure of the elastic telescopic rod of the present invention; Figure 7 This is a schematic diagram of the overall structure of the drying mechanism of the present invention; Figure 8 This is a schematic diagram of the structure of the centralized cover of the present invention; Figure 9 This is a structural schematic diagram of the blowing device of the present invention; Figure 10 For the present invention Figure 9 Schematic diagram of the enlarged structure of part A in .
[0019] In the accompanying drawings, the components represented by the reference numerals are as follows: Figure: 1, bottom plate; 2, U-shaped frame; 3, motor; 4, threaded rod; 5, transmission plate; 6, transmission device; 7, drying cover; 10, anti-deflection mechanism; 11, threaded ring; 12, right-angle frame; 13, slide plate; 15, push plate; 16, chute plate; 17, extension elastic rod; 18, anti-deflection telescopic ring; 19, anti-deflection wheel; 20, driven right-angle rod; 21, push inclined plate; 30, dehydration mechanism; 31, driven extension rod; 32, support Support frame; 33. Curved plate; 34. Elastic telescopic rod; 35. Positioning ring; 36. Rubber dehydration ring; 37. Water collecting box; 38. Drain pipe; 50. Drying mechanism; 51. Support frame; 52. Support telescopic rod; 53. Connecting plate; 54. Driven ring; 55. Ventilation pipe; 56. Central cover; 57. Blowing device; 58. Hanging ring; 59. Guide cylinder; 60. Cleaning brush; 61. Gear ring; 62. Power unit; 63. Gear. DETAILED DESCRIPTION
[0020] 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.
[0021] See also Figures 1-10 As shown, the present invention is an energy-saving drying equipment for the production of environmentally friendly flame-retardant insulating cable materials, comprising a base plate 1, U-shaped frames 2 are fixedly connected to both sides of the base plate 1, a motor 3 is fixedly connected to the top of the U-shaped frame 2, a threaded rod 4 is fixedly connected to the output end of the motor 3, a transmission plate 5 is fixedly connected to the surface of the base plate 1, a transmission device 6 is fixedly connected to the surface of the transmission plate 5, and a drying cover 7 is fixedly connected to the end of the base plate 1, characterized in that it also includes; The anti-deflection mechanism 10 includes an extending elastic rod 17. When the slide plate 13 slides, the extending elastic rod 17 is pushed to extend in a direction close to each other. The end of the extending elastic rod 17 is fixedly connected to an anti-deflection telescopic ring 18. When the extending elastic rod 17 is extended, the anti-deflection telescopic ring 18 is pushed to move in a direction close to each other. The inner wall of the anti-deflection telescopic ring 18 is fixedly connected to an anti-deflection wheel 19. When the anti-deflection telescopic ring 18 moves, it drives the anti-deflection wheel 19 to move in a direction close to each other. The dehydration mechanism 30 includes an elastic telescopic rod 34. When the support frame 32 moves, the elastic telescopic rod 34 is pushed toward each other. The end of the elastic telescopic rod 34 is fixedly connected to a positioning ring 35. When the elastic telescopic rod 34 moves, the positioning ring 35 is pushed toward each other. A rubber dehydration ring 36 is fixedly connected to the interior of the positioning ring 35. When the positioning ring 35 moves, the rubber dehydration ring 36 is pushed toward each other, thereby contacting the cable surface. The drying mechanism 50 includes a guide cylinder 59. When the gear ring 61 rotates, the guide cylinder 59 is driven to rotate on the inner wall of the hanging ring 58. The inner wall of the guide cylinder 59 is fixedly connected with a cleaning brush 60. When the guide cylinder 59 rotates, the cleaning brush 60 is driven to rotate. When the cleaning brush 60 rotates, the surface of the cable is cleaned and the water on the surface of the cable is cleaned. The end of the guide cylinder 59 is fixedly connected with a gear ring 61. When the gear 63 rotates, the gear ring 61 is driven to rotate.
[0022] A transmission hole is opened on the surface of the transmission plate 5, and the end of the threaded rod 4 away from the motor 3 is rotatably connected to the top of the U-shaped frame 2. There are four transmission devices 6, and the four transmission devices 6 are symmetrically arranged with the transmission hole as the center.
[0023] The anti-deflection mechanism 10 includes a threaded ring 11, which passes the cable to be dried into the interior of the transmission hole, starts the transmission device 6 to transport the cable, and at the same time starts the motor 3 to drive the threaded rod 4 to rotate. When the threaded rod 4 rotates, the threaded ring 11 will move downward, and the surface of the threaded ring 11 is fixedly connected to a right-angle frame 12. When the threaded ring 11 moves, it will drive the right-angle frame 12 to move downward. The end of the right-angle frame 12 away from the threaded ring 11 is fixedly connected to a slide plate 13, and the surface of the slide plate 13 is rotatably connected to a push plate 15. The inner wall of the U-shaped frame 2 is fixedly connected to a slide plate 16, and the surface of the anti-deflection telescopic ring 18 is fixedly connected to a driven right-angle rod 20. The end of the driven right-angle rod 20 away from the anti-deflection telescopic ring 18 is rotatably connected to a push inclined plate 21, which effectively limits the cable, thereby preventing the cable from deviating during transportation.
[0024] The top and lower surfaces of the transmission plate 5 are fixedly connected to the ends of the driven right-angle rods 20, the surface of the slide plate 13 is slidably connected to the inner wall of the slide plate 16, and the end of the extending elastic rod 17 away from the anti-deflection telescopic ring 18 is fixedly connected to the surface of the slide plate 16. When the right-angle frame 12 moves, it pushes the slide plate 13 to slide downward on the inner wall of the slide plate 16. There are four anti-deflection wheels 19, and the four anti-deflection wheels 19 are symmetrically arranged with the transmission hole as the center. The surface of the anti-deflection wheel 19 is provided with an anti-deflection groove. Surface rotation connection, since there are four anti-deflection telescopic rings 18, when the extended elastic rod 17 moves, the anti-deflection telescopic rings 18 on both sides will be pushed to move, and when the anti-deflection telescopic rings 18 on both sides move, the driven right-angle rods 20 will be driven to move toward each other, and when the driven right-angle rods 20 move, the inclined plates 21 will be pushed to move toward each other, and when the inclined plates 21 are pushed to move, the upper and lower anti-deflection telescopic rings 18 will be pushed toward each other, so that the anti-deflection wheel 19 contacts the surface of the cable, and the anti-deflection wheel 19 will be driven to rotate during the transportation process.
[0025] The dehydration mechanism 30 includes a driven extension rod 31, the end of the driven extension rod 31 is fixedly connected to a support frame 32, and the surface of the support frame 32 is fixedly connected to a curved plate 33. When the extension elastic rod 17 is extended, the curved plate 33 is driven to move toward each other. The bottom of the support frame 32 is fixedly connected to a water receiving box 37, and the surface of the water receiving box 37 is fixedly connected to a drain pipe 38. When the cable is transmitted, the rubber dehydration ring 36 will remain stationary, thereby scraping off the moisture on the surface of the cable through the rubber dehydration ring 36. When the support frame 32 moves, the water receiving box 37 and the drain pipe 38 are driven to move toward each other, effectively scraping off the water on the surface of the cable through the rubber dehydration ring 36, thereby achieving a dehydration effect, and the water can also be discharged through the drain pipe 38.
[0026] The end of the elastic telescopic rod 34 away from the positioning ring 35 is fixedly connected to the inner wall of the support frame 32. When the curved plate 33 moves, it will drive the support frame 32 to move in the direction of approaching each other, and at the same time drive the driven extension rod 31 to extend in the direction of approaching each other. The inner walls of the positioning ring 35 and the support frame 32 are both provided with diversion holes, and the end of the drain pipe 38 is connected to the inner wall of the water receiving box 37. The water scraped off by the rubber dehydration ring 36 will flow into the interior of the water receiving box 37 through the diversion holes, and then the water will be discharged through the drain pipe 38. The end of the curved plate 33 away from the support frame 32 is fixedly connected to the end of the extended elastic rod 17, and the end of the driven extension rod 31 away from the support frame 32 is fixedly connected to the inner wall of the drying cover 7.
[0027] The drying mechanism 50 includes a support frame 51, the inner wall of the support frame 51 is fixedly connected to a supporting telescopic rod 52, and the surface of the supporting telescopic rod 52 is fixedly connected to a connecting plate 53. When the support frame 32 moves, the connecting plate 53 will be driven to move in a direction close to each other. When the connecting plate 53 moves, the supporting telescopic rod 52 will be driven to extend in a direction close to each other. The end of the supporting telescopic rod 52 is fixedly connected to a driven ring 54, and the surface of the driven ring 54 is fixedly connected to a ventilation pipe 55. The end of the ventilation pipe 55 away from the driven ring 54 is fixedly connected to a centralized cover 56. The surface of the support frame 51 is fixedly connected to a blowing device 57. The top of the inner wall of the drying cover 7 is fixedly connected to a hanging ring 58. The inner wall of the hanging ring 58 is slidably connected to a guide cylinder 59. The inner wall of the support frame 51 The wall is fixedly connected with a power device 62, and the output end of the power device 62 is fixedly connected with a gear 63. At the same time, when the power device 62 is started, the gear 63 is driven to rotate. When the gear 63 rotates, the gear ring 61 is driven to rotate. When the gear ring 61 rotates, the guide cylinder 59 is driven to rotate on the inner wall of the hanging ring 58. When the guide cylinder 59 rotates, the cleaning brush 60 is driven to rotate. When the cleaning brush 60 rotates, the surface of the cable is cleaned and the water on the surface of the cable can be cleaned. The wind blown out by the blowing device 57 can effectively dry the cable, and the water adhered to the cleaning brush 60 can be dried. The setting of the cleaning brush 60 can also clean the water on the surface of the cable and clean the impurities adhered to the surface of the cable.
[0028] The two ends of the support frame 51 are fixedly connected to the inner wall of the drying cover 7, the end of the connecting plate 53 away from the supporting telescopic rod 52 is fixedly connected to the surface of the supporting frame 32, the end of the central cover 56 is fixedly connected to the inner wall of the support frame 51, the gear ring 61 and the gear 63 are meshed with each other, the surface of the guide cylinder 59 is provided with ventilation holes, and the surface of the driven ring 54 is provided with air inlet holes. When the supporting telescopic rod 52 extends, it will push the driven ring 54 to move in the direction of approaching each other and wrap the guide cylinder 59 without contacting the guide cylinder 59. Since the length of the guide cylinder 59 is longer than the length of the driven ring 54, and the hanging ring 5 8 is arranged at both ends of the guide cylinder 59. When the driven ring 54 wraps around the guide cylinder 59, the driven ring 54 does not come into contact with the hanging ring 58. Both ends of the ventilation pipe 55 are interconnected with the air inlet and the focusing cover 56. The inner wall of the hanging ring 58 is slidably connected with the surface of the guide cylinder 59. At this time, the cable passes through the interior of the guide cylinder 59 and comes into contact with the cleaning brush 60. The blowing device 57 is started first to blow air. At this time, the wind blown out of the blowing device 57 is concentrated through the focusing cover 56, and then the wind is sent to the inner wall of the driven ring 54 through the ventilation pipe 55, and finally enters the interior of the guide cylinder 59 to dry the cable.
[0029] When in use, the cooled cable is transmitted to the inside of the transmission hole on the surface of the transmission plate, and passes through the transmission hole, and then the transmission device 6 is started to transport the cable, and the motor 3 is started again to drive the threaded rod 4 to rotate. When the threaded rod 4 rotates, the threaded ring 11 will move downward, and when the threaded ring 11 moves, it will drive the right-angle frame 12 to move downward. When the right-angle frame 12 moves, it will push the slide plate 13 to slide downward on the inner wall of the slide plate 16. When the slide plate 13 slides, it will push the extension elastic rod 17 to extend in the direction of approaching each other. When the extension elastic rod 17 extends, it will push the anti-deflection telescopic ring 18 to move in the direction of approaching each other. Since the number of driven right-angle rods of the anti-deflection telescopic ring 18 is four, when the extension elastic rod 17 moves, it will push the anti-deflection extension on both sides. The shrink ring driven right-angle rod 18 moves, and when the anti-deflection telescopic ring driven right-angle rod 18 on both sides moves, it will drive the driven right-angle rod 20 to move in the direction of approaching each other. When the driven right-angle rod 20 moves, it will push the inclined plate driven right-angle rod 21 to move in the direction of approaching each other. When pushing the inclined plate driven right-angle rod 21 to move, it will push the upper and lower anti-deflection telescopic ring driven right-angle rods 18 to move in the direction of approaching each other. When the anti-deflection telescopic ring 18 moves, it will drive the anti-deflection wheel 19 to move in the direction of approaching each other, so that the anti-deflection groove on the surface of the anti-deflection wheel 19 contacts the surface of the cable. At this time, the surface of the cable will enter the inner wall of the anti-deflection groove, This prevents the cable from deviating. When the cable is transported, it will drive the anti-deflection wheel 19 to rotate. When the extending elastic rod 17 is extended, it will drive the curved plate 33 to move in the direction of approaching each other. When the curved plate 33 moves, it will drive the support frame 32 to move in the direction of approaching each other, and at the same time, it will drive the driven extension rod 31 to extend in the direction of approaching each other. When the support frame 32 moves, it will push the elastic telescopic rod 34 to move in the direction of approaching each other. When the elastic telescopic rod 34 moves, it will push the positioning ring 35 to move in the direction of approaching each other. When the positioning ring 35 moves, it will push the rubber dehydration ring 36 to move in the direction of approaching each other, thereby contacting the cable surface. During the cable transmission process, the rubber dehydration ring 36 will remain stationary, thereby The ring 36 scrapes off the moisture on the surface of the cable, and when the support frame 32 moves, it drives the water box 37 and the drain pipe 38 to move in a direction close to each other. The water scraped off by the rubber dehydration ring 36 will flow into the interior of the water box 37 through the diversion hole, and then the water will be discharged through the drain pipe 38. When the support frame 32 moves, it drives the connecting plate 53 to move in a direction close to each other. When the connecting plate 53 moves, it drives the supporting telescopic rod 52 to extend in a direction close to each other. When the supporting telescopic rod 52 extends, it pushes the driven ring 54 to move in a direction close to each other and wraps the guide cylinder 59 without contacting the guide cylinder 59. Since the length of the guide cylinder 59 is longer than that of the driven ring 54, and the hanging ring 58 is arranged at both ends of the guide cylinder 59,When the driven ring 54 wraps around the guide cylinder 59, the driven ring 54 does not come into contact with the hanging ring 58. At this time, the cable passes through the interior of the guide cylinder 59 and comes into contact with the cleaning brush 60. The blowing device 57 is first started to blow air. At this time, the wind blown out of the blowing device 57 is concentrated by the concentration cover 56, and then sent to the inner wall of the driven ring 54 through the ventilation pipe 55, and finally enters the interior of the guide cylinder 59 to dry the cable. At the same time, the power device 62 is started to drive the gear 63 to rotate. When the gear 63 rotates, it drives the gear ring 61 to rotate. When the gear ring 61 rotates, it drives the guide cylinder 59 to rotate on the inner wall of the hanging ring 58. When the guide cylinder 59 rotates, it drives the cleaning brush 60 to rotate. When the cleaning brush 60 rotates, it cleans the surface of the cable and removes water from the cable surface. The air blown by the blowing device 57 effectively dries the cable and dries the water adhered to the cleaning brush 60. The setting of the cleaning brush 60 can clean the water on the cable surface and remove impurities adhered to the cable surface.
[0030] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.
Claims
1. An energy-saving drying device for producing environmentally friendly flame-retardant insulating cable materials, comprising a base plate (1), U-shaped frames (2) fixedly connected to both sides of the base plate (1), a motor (3) fixedly connected to the top of the U-shaped frame (2), a threaded rod (4) fixedly connected to the output end of the motor (3), a transmission plate (5) fixedly connected to the surface of the base plate (1), a transmission device (6) fixedly connected to the surface of the transmission plate (5), and a drying hood (7) fixedly connected to the end of the base plate (1), characterized in that: Also includes; An anti-deflection mechanism (10), the anti-deflection mechanism (10) comprising an extending elastic rod (17), an end portion of the extending elastic rod (17) being fixedly connected to an anti-deflection telescopic ring (18), and an inner wall of the anti-deflection telescopic ring (18) being fixedly connected to an anti-deflection wheel (19); A dehydration mechanism (30), the dehydration mechanism (30) comprising an elastic telescopic rod (34), an end of the elastic telescopic rod (34) being fixedly connected to a positioning ring (35), and an interior of the positioning ring (35) being fixedly connected to a rubber dehydration ring (36); A drying mechanism (50) includes a guide cylinder (59), a cleaning brush (60) is fixedly connected to the inner wall of the guide cylinder (59), and a gear ring (61) is fixedly connected to the end of the guide cylinder (59).
2. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 1, characterized in that: A transmission hole is provided on the surface of the transmission plate (5); one end of the threaded rod (4) away from the motor (3) is rotatably connected to the top of the U-shaped frame (2); and there are four transmission devices (6), which are symmetrically arranged with the transmission hole as the center.
3. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 2, characterized in that: The anti-deflection mechanism (10) comprises a threaded ring (11), a right-angle frame (12) is fixedly connected to the surface of the threaded ring (11), a slide plate (13) is fixedly connected to one end of the right-angle frame (12) away from the threaded ring (11), a push plate (15) is rotatably connected to the surface of the slide plate (13), a slide plate (16) is fixedly connected to the inner wall of the U-shaped frame (2), a driven right-angle rod (20) is fixedly connected to the surface of the anti-deflection telescopic ring (18), and a push inclined plate (21) is rotatably connected to one end of the driven right-angle rod (20) away from the anti-deflection telescopic ring (18).
4. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 3, characterized in that: The top and lower surfaces of the transmission plate (5) are fixedly connected to the end of the driven right-angle rod (20), the surface of the slide plate (13) is slidably connected to the inner wall of the slide plate (16), the end of the extending elastic rod (17) away from the anti-deflection telescopic ring (18) is fixedly connected to the surface of the slide plate (16), the number of the anti-deflection wheels (19) is four, the four anti-deflection wheels (19) are symmetrically arranged with the transmission hole as the center, the surface of the anti-deflection wheel (19) is provided with an anti-deflection groove, and the end of the pushing inclined plate (21) away from the driven right-angle rod (20) is rotatably connected to the surface of the anti-deflection telescopic ring (18).
5. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 4, characterized in that: The dehydration mechanism (30) comprises a driven extension rod (31), the end of the driven extension rod (31) is fixedly connected to a support frame (32), the surface of the support frame (32) is fixedly connected to a curved plate (33), the bottom of the support frame (32) is fixedly connected to a water receiving box (37), and the surface of the water receiving box (37) is fixedly connected to a drainage pipe (38).
6. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 5, characterized in that: One end of the elastic telescopic rod (34) away from the positioning ring (35) is fixedly connected to the inner wall of the support frame (32); the inner wall of the positioning ring (35) and the support frame (32) are both provided with a diversion hole; the end of the drain pipe (38) and the inner wall of the water receiving box (37) are mutually connected; one end of the curved plate (33) away from the support frame (32) is fixedly connected to the end of the extension elastic rod (17); and one end of the driven extension rod (31) away from the support frame (32) is fixedly connected to the inner wall of the drying cover (7).
7. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 6, characterized in that: The drying mechanism (50) comprises a support frame (51), the inner wall of the support frame (51) is fixedly connected to a supporting telescopic rod (52), the surface of the supporting telescopic rod (52) is fixedly connected to a connecting plate (53), the end of the supporting telescopic rod (52) is fixedly connected to a driven ring (54), the surface of the driven ring (54) is fixedly connected to a ventilation pipe (55), the end of the ventilation pipe (55) away from the driven ring (54) is fixedly connected to a central cover (56), the surface of the support frame (51) is fixedly connected to a blowing device (57), the top of the inner wall of the drying cover (7) is fixedly connected to a hanging ring (58), the inner wall of the hanging ring (58) is slidably connected to a guide cylinder (59), the inner wall of the support frame (51) is fixedly connected to a power device (62), and the output end of the power device (62) is fixedly connected to a gear (63).
8. The energy-saving drying equipment for producing environmentally friendly flame-retardant insulating cable materials according to claim 7, characterized in that: The two ends of the support frame (51) are fixedly connected to the inner wall of the drying cover (7), the end of the connecting plate (53) away from the supporting telescopic rod (52) is fixedly connected to the surface of the support frame (32), the end of the central cover (56) is fixedly connected to the inner wall of the support frame (51), the gear ring (61) and the gear (63) are engaged with each other, the surface of the guide cylinder (59) is provided with a ventilation hole, the surface of the driven ring (54) is provided with an air inlet hole, both ends of the ventilation pipe (55) are mutually connected with the air inlet hole and the central cover (56), and the inner wall of the hanging ring (58) is slidably connected to the surface of the guide cylinder (59).