Cable processing and drying device

By designing a cable processing drying device, utilizing a shaking mechanism and a sponge plate wiping assembly, the problem of low water droplet removal efficiency after cable water cooling and shaping was solved, achieving efficient and uniform cable drying, adapting to cables of different diameters, and meeting the needs of modern production.

CN120854085AInactive Publication Date: 2025-10-28JIANGXI LINKTREND CABLE TECH CO LTD
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Patent Information

Application Number
CN202510984511.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2025-10-28
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

After water cooling and shaping, a large number of water droplets adhere to the surface of the cable and cannot be effectively removed, resulting in low drying efficiency, high energy consumption, and affecting the uniformity of drying, which in turn affects the quality of the cable. Traditional drying methods are inefficient and cannot meet the needs of modern production.

Method used

A cable processing and drying device was designed, comprising a drying device body, a shaking mechanism, and a clamping mechanism. The shaking mechanism causes the cable to shake continuously up and down, combined with a sponge plate wiping component, to achieve efficient and uniform drying, adapting to cables of different diameters.

Benefits of technology

It improves cable drying efficiency and uniformity, reduces energy consumption, ensures cable quality, and enhances the versatility and practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cable processing, in particular to a cable processing and drying device which comprises a drying device body, a shaking mechanism is fixedly connected to the inner wall of the drying device body, clamping mechanisms are fixedly connected to multiple sides of the top of the shaking mechanism, and the shaking mechanism comprises a bottom plate. The drying device comprises a bottom plate, a plurality of clamping mechanisms are fixedly connected to the bottom plate, inverted-T-shaped side vertical plates are fixedly connected to the left sides and the right sides of the multiple sides of the top of the bottom plate correspondingly, the multiple clamping mechanisms comprise wiping assemblies correspondingly, and clamping assemblies are fixedly connected to the outer walls of the multiple wiping assemblies correspondingly. According to the cable drying device, efficient and uniform drying treatment on a cable is achieved, through the designed shaking mechanism, the cable can be continuously shaken up and down in the drying process, water stains on the surface of the cable are effectively shaken off, the drying uniformity of the cable is improved, and the problem that due to long-time standing of the cable, local drying is uneven is solved.
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Description

Technical Field

[0001] This invention relates to the field of cable processing technology, and more specifically, to a cable processing drying apparatus. Background Technology

[0002] Cables are widely used components in power transmission and communication systems. They typically consist of multiple parts, including conductors, insulation layers, and sheaths. The conductor's main function is to transmit current, while the insulation layer isolates the conductor to prevent current leakage or short circuits. The sheath protects the entire cable from external environmental damage, such as mechanical damage and chemical corrosion. Drying is a crucial step in cable processing because cables undergo extrusion, water cooling, and other steps during production. After water cooling, a large amount of moisture adheres to the cable's surface. To ensure cable quality and performance, the water droplets must be thoroughly removed from the cable surface before subsequent printing, EDM, or other related operations. The cable processing drying device of this invention is designed to address this need, aiming to provide an efficient and reliable cable drying solution. Through specific design and process flow, this device can effectively remove moisture from the cable surface, ensuring the quality and performance of the cable in subsequent processing. The application of this drying device can significantly improve the efficiency and reliability of cable production, thereby meeting the high performance requirements of modern power transmission and communication systems.

[0003] According to patent document CN115171986A, a drying device for cable processing is disclosed, including a first limiting ring and a second limiting ring coaxially sleeved on the outside of the cable, and a dewatering soft strip connected between the first limiting ring and the second limiting ring. The first limiting ring and the second limiting ring can rotate relative to each other around the central axis of the cable, and through this relative rotation, the dewatering soft strip can be spirally wrapped around the surface of the cable or confined to one side of the cable. In summary, when spirally wrapped, the relative movement between the cable and the dewatering soft strip can effectively scrape off the water attached to the surface of the cable. When parallel, it facilitates the assembly and disassembly of the whole device and the cable. Furthermore, the different relative rotation angles of the two limiting rings also allow the dewatering soft strip to effectively wrap around cables of different diameters. In addition, when spirally wrapped, the wrapping angle of the dewatering soft strip around the cable is not less than 360°, thereby achieving comprehensive circumferential dewatering and drying of the cable.

[0004] After cable processing, it needs to be dried in time to remove surface moisture. However, before the cable enters the dryer for drying, a large number of water droplets will adhere to the surface of the cable after water cooling and shaping. If these water droplets are not effectively removed, the drying efficiency of the cable in the drying equipment will be low. In addition, the evaporation of water droplets during the drying process will consume more energy. At the same time, the water droplet residue may also affect the drying uniformity of the cable, resulting in uneven drying on the cable surface, which in turn affects the overall quality of the cable. Traditional cable drying methods often use simple blowing or heating methods, which are not only inefficient, but also cannot guarantee that the water droplets on the cable surface are completely removed. Traditional methods often use wiping or natural air drying, but the former is labor-intensive and inefficient, while the latter is time-consuming and cannot meet the fast-paced requirements of modern production. Summary of the Invention

[0005] To overcome the aforementioned deficiencies of the prior art, the present invention provides a cable processing drying device. The technical problem to be solved by the present invention is that after water cooling and shaping, a large number of water droplets adhere to the surface of the cable. If these water droplets are not effectively removed, the drying efficiency of the cable in the drying equipment will be low. Moreover, the evaporation of water droplets during the drying process will consume more energy. At the same time, the water droplet residue may also affect the drying uniformity of the cable, resulting in uneven drying on the cable surface, which in turn affects the overall quality of the cable. Traditional cable drying methods often use simple blowing or heating methods, which are not only inefficient, but also difficult to ensure that the water droplets on the cable surface are completely removed. Traditional methods often use wiping or natural air drying, but the former is labor-intensive and inefficient, while the latter is time-consuming and cannot meet the fast-paced requirements of modern production.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is as follows:

[0007] A cable processing drying device includes a drying device body, a shaking mechanism fixedly connected to the inner wall of the drying device body, and clamping mechanisms fixedly connected to multiple sides of the top of the shaking mechanism.

[0008] The shaking mechanism includes a base plate, and inverted T-shaped side plates are fixedly connected to the left and right sides of the top of the base plate.

[0009] Each of the multiple clamping mechanisms includes a wiping component, and the outer wall of each of the multiple wiping components is fixedly connected to a clamping component.

[0010] As a further embodiment of the present invention: a motor connecting plate is fixedly connected to the bottom front side of the foremost set of inverted T-shaped side plates, a motor is fixedly connected to the top of the motor connecting plate, a transmission disc is fixedly connected to the output end of the motor, a track is fitted on the outer wall of the transmission disc, and a second transmission disc is fitted on the inner wall of the track on the side away from the transmission disc.

[0011] As a further aspect of the present invention: a columnar rotating rod is rotatably connected to the middle of the inner wall of the multiple sets of inverted T-shaped side uprights, and the left and right ends of the multiple columnar rotating rods extend to the outer side of the multiple sets of inverted T-shaped side uprights. The inner wall of the second transmission disk is fixedly connected to the outer wall of the foremost columnar rotating rod, and a third transmission disk is fixedly connected to the middle of the outer wall of the multiple columnar rotating rods. The outer wall of the multiple third transmission disks is fitted with a second track.

[0012] As a further aspect of the present invention: a convex connecting plate is fixedly connected to the top of each of the multiple sets of inverted T-shaped side panels; a guide short tube is fixedly connected to the outer side of each of the multiple sets of convex connecting plates; a columnar guide rod connecting block is fixedly connected to the bottom of the front side of the outer wall of each of the multiple sets of guide short tubes; an abutting turntable is fixedly connected to the left and right ends of each of the multiple sets of columnar guide rod connecting blocks; a columnar guide rod is fixedly connected to the bottom of each of the multiple sets of columnar guide rod connecting blocks; and the bottom ends of each of the multiple sets of columnar guide rods are fixedly connected to the top of the base plate.

[0013] As a further aspect of the present invention: the inner walls of the multiple sets of guide tubes are slidably connected to columnar lifting rods, the outer walls of the multiple sets of columnar lifting rods are fitted with springs on one side of the bottom of the multiple sets of guide tubes, the bottom ends of the multiple sets of columnar lifting rods are fixedly connected to columnar lifting rod base blocks, the front bottom of the multiple sets of columnar lifting rod base blocks are fixedly connected to sliding blocks, the outer walls of the multiple sets of sliding blocks are slidably connected to the inner walls of the multiple sets of columnar guide rods, the inner sides of the multiple sets of columnar lifting rod base blocks are rotatably connected to wheels, and the outer walls of the multiple sets of wheels are slidably connected to the bottom of the inner walls of the multiple sets of abutment turntables.

[0014] As a further aspect of the present invention: each of the multiple wiping components includes a rectangular horizontal plate, both sides of the bottom of the multiple rectangular horizontal plates are fixedly connected to the top of multiple sets of columnar lifting uprights, L-shaped connecting blocks are fixedly connected to the left and right sides of the front and rear sides of the multiple rectangular horizontal plates, inverted L-shaped uprights are fixedly connected to the top of the multiple sets of L-shaped connecting blocks, and columnar retracting rods are slidably connected to the left and right sides of the inner walls of the multiple sets of inverted L-shaped uprights.

[0015] As a further aspect of the present invention: the outer ends of the multiple sets of columnar expansion rods are all fixedly connected to columnar expansion rod push plates, the left and right sides of the multiple sets of columnar expansion rod push plates are all fixedly connected to push plate connecting blocks, and the inner ends of the multiple sets of columnar expansion rods extend to the inner side of the multiple sets of inverted L-shaped upright plates and are all fixedly connected to sponge plates.

[0016] As a further aspect of the present invention: each of the plurality of clamping components includes two triangular side plates, the inner sides of the plurality of sets of triangular side plates are fixedly connected to the left and right sides of the plurality of rectangular horizontal plates, the front and rear sides of the outer sides of the plurality of sets of triangular side plates are fixedly connected to connecting side plates, the inner bottom of the plurality of sets of connecting side plates is fixedly connected to an inner connecting rod, the bottom of the plurality of sets of inner connecting rods is fixedly connected to a hydraulic push rod connecting block on the side where they are close to each other, the bottom of the plurality of sets of hydraulic push rod connecting blocks on the right side is fixedly connected to a bidirectional hydraulic push rod, the outer top of the plurality of sets of connecting side plates is fixedly connected to a connecting crossbar, and the outer tops of the plurality of sets of connecting side plates on the left and the plurality of sets on the right are connected by the plurality of connecting crossbars.

[0017] As a further aspect of the present invention: circular push blocks are fixed at both ends of the plurality of hydraulic push rod connecting blocks; columnar expansion and contraction crossbars are fixedly connected to the inner sides of the plurality of circular push blocks on the left and right sides; oblique L-shaped rotating rods are rotatably connected to the left and right sides of the outer walls of the plurality of columnar expansion and contraction crossbars; the middle of the plurality of oblique L-shaped rotating rods is rotatably connected; arc-shaped clamping plates are fixedly connected to the top inner sides of the plurality of oblique L-shaped rotating rods; and the side of the plurality of oblique L-shaped rotating rods closest to the triangular side plates is rotatably connected to the middle outer side of the plurality of triangular side plates.

[0018] As a further aspect of the present invention: the side of each set of push plate connecting blocks away from the columnar expansion rod push plate is fixedly connected to the outer top of the outer side of each set of inclined L-shaped rotating rods.

[0019] The beneficial effects of this invention are as follows:

[0020] This invention achieves efficient and uniform drying of cables by incorporating a drying device body, a shaking mechanism, and a clamping mechanism. The designed shaking mechanism continuously vibrates the cable during the drying process, effectively removing water stains from the cable surface and enhancing the uniformity of drying. This avoids uneven drying caused by prolonged static placement of the cable. Furthermore, the wiping component further improves the drying effect; the sponge plate wipes the cable surface, removing residual moisture and stains and ensuring the quality of cable drying. In addition, the flexible adjustment of the clamping component allows the device to adapt to cables of different diameters, enhancing its versatility and practicality. In summary, the cable processing and drying device of this invention demonstrates significant advantages in improving drying efficiency, ensuring drying quality, and enhancing device versatility. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the main three-dimensional structure of the present invention;

[0022] Figure 2 This is a schematic diagram of the three-dimensional cross-sectional structure of the main body of the present invention;

[0023] Figure 3 This is a three-dimensional schematic diagram of the shaking mechanism and clamping mechanism of the present invention;

[0024] Figure 4 This is a schematic diagram of the three-dimensional separation structure of the shaking mechanism and the clamping mechanism of the present invention;

[0025] Figure 5 This is a three-dimensional structural diagram of the shaking mechanism of the present invention;

[0026] Figure 6 This is a schematic diagram of the three-dimensional separation structure of the vibration mechanism of the present invention;

[0027] Figure 7 This is a three-dimensional structural diagram of the clamping mechanism of the present invention;

[0028] Figure 8 This is a schematic diagram of the three-dimensional separation structure of the clamping mechanism of the present invention;

[0029] Figure 9 This is a three-dimensional structural diagram of the wiping assembly of the present invention;

[0030] Figure 10 This is a three-dimensional structural diagram of the clamping component of the present invention.

[0031] In the diagram: 1. Main body of the drying device; 2. Vibration mechanism; 21. Base plate; 22. Inverted T-shaped side plate; 23. Motor connecting plate; 24. Motor; 25. Transmission disc; 26. Track; 27. Second transmission disc; 28. Columnar rotating rod; 29. ​​Third transmission disc; 210. Second track; 211. Convex connecting plate; 212. Abutting turntable; 213. Guide short tube; 214. Columnar guide rod connecting block; 215. Columnar guide rod; 216. Columnar lifting rod; 217. Spring; 218. Columnar lifting rod base block; 219. Sliding block; 2110. 3. Rotary wheel; 3. Clamping mechanism; 31. Wiping assembly; 311. Rectangular horizontal plate; 312. L-shaped connecting block; 313. Inverted L-shaped vertical plate; 314. Columnar expansion rod; 315. Sponge board; 316. Columnar expansion rod push plate; 317. Push plate connecting block; 32. Clamping assembly; 321. Triangular side plate; 322. Connecting side plate; 323. Inner connecting rod; 324. Hydraulic push rod connecting block; 325. Bidirectional hydraulic push rod; 326. Circular push block; 327. Columnar expansion horizontal bar; 328. Inclined L-shaped rotating rod; 329. Arc-shaped clamping plate; 3210. Connecting horizontal bar. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] like Figure 1-2 As shown, the present invention provides a cable processing drying device, including a drying device body 1, a shaking mechanism 2 fixedly connected to the inner wall of the drying device body 1, and a clamping mechanism 3 fixedly connected to multiple sides of the top of the shaking mechanism 2.

[0034] like Figure 3-10As shown, the vibration mechanism 2 includes a base plate 21. Inverted T-shaped side plates 22 are fixedly connected to the left and right sides of the top of the base plate 21. A motor connecting plate 23 is fixedly connected to the bottom front side of the foremost set of inverted T-shaped side plates 22. A motor 24 is fixedly connected to the top of the motor connecting plate 23. A transmission disc 25 is fixedly connected to the output end of the motor 24. A track 26 is fitted onto the outer wall of the transmission disc 25. A second transmission disc 27 is fitted onto the inner wall of the track 26 on the side away from the transmission disc 25. A columnar rotating rod 28 is rotatably connected to the middle of the inner wall of each of the multiple sets of inverted T-shaped side plates 22. The left and right ends of the multiple columnar rotating rods 28 extend to the outer side of the multiple sets of inverted T-shaped side plates 22. The inner wall of the second transmission disc 27 is fixedly connected to the outer wall of the foremost columnar rotating rod 28. A third transmission disc 29 is fixedly connected to the middle of the outer wall of each rod 28. Second tracks 210 are fitted onto the outer walls of multiple third transmission discs 29. A convex connecting plate 211 is fixedly connected to the top of each set of inverted T-shaped side uprights 22. Guide tubes 213 are fixedly connected to the outer sides of each set of convex connecting plates 211. Columnar guide rod connecting blocks 214 are fixedly connected to the bottom of the front side of the outer walls of each set of guide tubes 213. Abutting turntables 212 are fixedly connected to both ends of multiple columnar rotating rods 28. Columnar guide rods 215 are fixedly connected to the bottom of each set of columnar guide rod connecting blocks 214. The bottom ends of each set of columnar guide rods 215 are fixedly connected to the top of the base plate 21. Columnar lifting rods are slidably connected to the inner walls of each set of guide tubes 213. 216, multiple sets of columnar lifting poles 216 have springs 217 fitted on one side of the bottom of multiple sets of guide tubes 213 on their outer walls. Each set of columnar lifting poles 216 has a columnar lifting pole base block 218 fixedly connected to its bottom end. Each set of columnar lifting pole base blocks 218 has a sliding block 219 fixedly connected to its front bottom. The outer walls of the sliding blocks 219 are slidably connected to the inner walls of multiple sets of columnar guide poles 215. Each set of columnar lifting pole base blocks 218 has a rotating wheel 2110 rotatably connected to its inner side. The outer walls of the rotating wheels 2110 are slidably connected to the bottom of the inner walls of multiple sets of abutting turntables 212. Multiple clamping mechanisms 3 each include a wiping assembly 31. The outer walls of the multiple wiping assemblies 31 are fixedly connected to clamping assemblies 32. Multiple wiping assemblies 3... Each of the components includes rectangular horizontal plates 311. The bottom sides of multiple rectangular horizontal plates 311 are fixedly connected to the tops of multiple sets of columnar lifting uprights 216. L-shaped connecting blocks 312 are fixedly connected to the left and right sides of the front and rear sides of the multiple rectangular horizontal plates 311. Inverted L-shaped uprights 313 are fixedly connected to the tops of the multiple sets of L-shaped connecting blocks 312. Columnar expanding and contracting rods 314 are slidably connected to the left and right sides of the inner walls of the multiple sets of inverted L-shaped uprights 313. Columnar expanding and contracting rod push plates 316 are fixedly connected to the outer ends of the multiple sets of columnar expanding and contracting rod push plates 316. Push plate connecting blocks 317 are fixedly connected to the left and right sides of the multiple sets of columnar expanding and contracting rod push plates 316. The inner ends of the multiple sets of columnar expanding and contracting rods 314 extend to the inner sides of the multiple sets of inverted L-shaped uprights 313 and are all fixedly connected to sponge plates 315.Each of the multiple clamping components 32 includes two triangular side plates 321. The inner sides of the multiple sets of triangular side plates 321 are fixedly connected to the left and right sides of multiple rectangular horizontal plates 311. The front and rear sides of the outer sides of the multiple sets of triangular side plates 321 are fixedly connected to connecting side plates 322. The inner bottom of the multiple sets of connecting side plates 322 is fixedly connected to an inner connecting rod 323. The bottom sides of the multiple sets of inner connecting rods 323 that are close to each other are fixedly connected to a hydraulic push rod connecting block 324. The bottom of the multiple sets of hydraulic push rod connecting blocks 324 on the right side is fixedly connected to a bidirectional hydraulic push rod 325. The outer top of the multiple sets of connecting side plates 322 is fixedly connected to a connecting horizontal bar 3210. The outer top of the multiple sets of connecting side plates 322 on the left and right sides are connected by multiple sets of connecting horizontal bars 321. The system is connected in series. Circular push blocks 326 are fixed to both ends of multiple hydraulic push rod connecting blocks 324. Columnar expanding and contracting crossbars 327 are fixedly connected to the inner sides of multiple sets of circular push blocks 326 on the left and right sides. Slanted L-shaped rotating rods 328 are rotatably connected to the left and right sides of the outer walls of multiple sets of columnar expanding and contracting crossbars 327. The middle parts of multiple sets of slanted L-shaped rotating rods 328 are rotatably connected. Arc-shaped clamping plates 329 are fixedly connected to the top inner sides of multiple sets of slanted L-shaped rotating rods 328. The side of multiple sets of slanted L-shaped rotating rods 328 closest to the triangular side plate 321 is rotatably connected to the middle outer side of multiple sets of triangular side plates 321. The side of multiple sets of push plate connecting blocks 317 furthest from the columnar expanding and contracting rod push plates 316 is fixedly connected to the top outer side of multiple sets of slanted L-shaped rotating rods 328.

[0035] When the cables need to be dried, the workers insert multiple cables through the right side of the drying device body 1 into the inner wall of the drying device body 1 and through to the other side of the drying device body 1. At this time, the multiple cables are inside the multiple sets of arc-shaped clamping plates 329 and multiple sets of sponge plates 315. Then, the bidirectional hydraulic push rods 325 of multiple clamping components 32 are activated. The two ends of the multiple bidirectional hydraulic push rods 325 push the outer side of the multiple sets of circular push blocks 326 on the right side. Then, through the two columnar expansion and contraction crossbars 327 set by the multiple clamping components 32, the multiple sets of columnar expansion and contraction crossbars 327 drive the bottom of the multiple sets of inclined L-shaped rotating rods 328 to rotate outward, thereby causing the inner top of the multiple sets of inclined L-shaped rotating rods 328 to move inward, thereby causing the multiple sets of arc-shaped clamping plates 329 to adhere to the outer wall of the multiple cables.

[0036] At the same time, as multiple sets of inclined L-shaped rotating rods 328 move inward, the outer top of multiple sets of inclined L-shaped rotating rods 328 pushes multiple sets of columnar expansion rod push plates 316 inward through push plate connecting block 317. Multiple sets of columnar expansion rod push plates 316 push multiple sets of columnar expansion rods 314 inward, thereby causing multiple sets of sponge plates 315 to adhere to the outer wall of multiple cables.

[0037] At this time, the motor 24 is started. The output end of the motor 24 drives the transmission disc 25 to rotate, the transmission disc 25 drives the track 26 to rotate, the track 26 drives the second transmission disc 27 to rotate, and the second transmission disc 27 drives the foremost columnar rotating rod 28 to rotate. Multiple columnar rotating rods 28 rotate synchronously through the third transmission disc 29 and the second track 210. During the rotation, the multiple columnar rotating rods 28 abut against the turntable 212, causing multiple sets of rotating wheels 2110 to slide up and down on the inner wall of multiple sets of columnar guide rods 215. The rotating wheels 2110 drive... Multiple sets of columnar lifting pole base blocks 218 move up and down reciprocally. The columnar lifting pole base blocks 218 drive multiple sets of columnar lifting poles 216 to slide up and down reciprocally on the inner wall of the guide short tube 213. At the same time, the columnar lifting poles 216 are buffered and damped by the action of springs 217, which causes multiple sets of sponge plates 315 and arc-shaped clamps 329 to shake multiple cables up and down, shake off water stains on the cable surface, and improve the uniformity of cable drying. Meanwhile, multiple wiping components 31 wipe the cable surface through the sponge plates 315.

[0038] When the water droplets shaken off are removed from the outside of the drying device body 1, the cable begins to be dried with hot air inside the drying device body 1. During the hot air drying process, the continuous operation of the shaking mechanism 2 can not only promote the even loss of moisture on the surface of the cable, but also avoid uneven drying caused by the cable being left to stand for a long time.

[0039] Working principle of the invention: During cable drying, the operator inserts multiple cables from the right side of the drying device body 1 and through the body to the other side. The cables are then located inside multiple sets of arc-shaped clamping plates 329 and multiple sets of sponge plates 315. Subsequently, the bidirectional hydraulic push rods 325 in multiple clamping assemblies 32 are activated. The two ends of these push rods push the outer sides of multiple sets of circular push blocks 326 on the right side. Through the two columnar expansion and contraction crossbars 327 equipped in the multiple clamping assemblies 32, the multiple sets of columnar expansion and contraction crossbars... Rod 327 causes the bottom of multiple sets of inclined L-shaped rotating rods 328 to rotate outward, causing the top of the inner side of the inclined L-shaped rotating rods 328 to move inward, thereby making multiple sets of arc-shaped clamps 329 tightly fit against the outer wall of the cable. At the same time, when the inclined L-shaped rotating rods 328 move inward, their outer tops push multiple sets of columnar expansion rod push plates 316 inward through push plate connecting blocks 317, which in turn pushes multiple sets of columnar expansion rods 314 inward, making multiple sets of sponge plates 315 tightly fit against the outer wall of the cable. At this time, the power is started. The output of motor 24 drives transmission disc 25 to rotate, transmission disc 25 drives track 26 to rotate, track 26 drives second transmission disc 27 to rotate, and second transmission disc 27 drives the foremost columnar rotating rod 28 to rotate. Multiple columnar rotating rods 28 rotate synchronously through third transmission disc 29 and second track 210. During rotation, they abut against turntable 212, driving multiple sets of rotating wheels 2110 to slide up and down on the inner wall of multiple sets of columnar guide rods 215. The rotating wheels 2110 drive multiple sets of... The columnar lifting pole base block 218 moves up and down reciprocally. The columnar lifting pole base block 218 drives multiple sets of columnar lifting poles 216 to slide up and down reciprocally on the inner wall of the guide short tube 213. At the same time, the columnar lifting poles 216 are buffered and damped by the spring 217. In this way, multiple sets of sponge plates 315 and arc-shaped clamps 329 shake the cable up and down to remove moisture from the cable surface. Meanwhile, multiple wiping components 31 wipe the cable surface through the sponge plates 315.

[0040] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A cable processing drying device, comprising a drying device body (1), characterized in that: The inner wall of the main body (1) of the drying device is fixedly connected to a shaking mechanism (2), and the top of the shaking mechanism (2) is fixedly connected to multiple sides of a clamping mechanism (3). The shaking mechanism (2) includes a base plate (21), and inverted T-shaped side plates (22) are fixedly connected to the left and right sides of the top of the base plate (21); Each of the clamping mechanisms (3) includes a wiping assembly (31), and the outer wall of each of the wiping assemblies (31) is fixedly connected to a clamping assembly (32).

2. The cable processing and drying device according to claim 1, characterized in that: A motor connecting plate (23) is fixedly connected to the bottom front side of the inverted T-shaped side plate (22) of the foremost group. A motor (24) is fixedly connected to the top of the motor connecting plate (23). A transmission disc (25) is fixedly connected to the output end of the motor (24). A track (26) is fitted on the outer wall of the transmission disc (25). A second transmission disc (27) is fitted on the inner wall of the track (26) away from the transmission disc (25).

3. The cable processing and drying device according to claim 2, characterized in that: A columnar rotating rod (28) is rotatably connected to the middle of the inner wall of the multiple sets of inverted T-shaped side plates (22). The left and right ends of the multiple columnar rotating rods (28) extend to the outer side of the multiple sets of inverted T-shaped side plates (22). The inner wall of the second transmission disc (27) is fixedly connected to the outer wall of the foremost columnar rotating rod (28). A third transmission disc (29) is fixedly connected to the middle of the outer wall of the multiple columnar rotating rods (28). The outer wall of the multiple third transmission discs (29) is fitted with a second track (210).

4. The cable processing and drying device according to claim 3, characterized in that: The top of each of the multiple sets of inverted T-shaped side panels (22) is fixedly connected to a convex connecting plate (211), the outer side of each of the multiple sets of convex connecting plates (211) is fixedly connected to a guide tube (213), the bottom of the front side of the outer wall of each of the multiple sets of guide tubes (213) is fixedly connected to a columnar guide rod connecting block (214), the left and right ends of each of the multiple columnar rotating rods (28) are fixedly connected to abutting turntables (212), the bottom of each of the multiple sets of columnar guide rod connecting blocks (214) is fixedly connected to a columnar guide rod (215), and the bottom end of each of the multiple sets of columnar guide rods (215) is fixedly connected to the top of the base plate (21).

5. The cable processing and drying apparatus according to claim 4, characterized in that: The inner walls of the multiple sets of guide tubes (213) are slidably connected to columnar lifting poles (216). The outer walls of the multiple sets of columnar lifting poles (216) are fitted with springs (217) on one side of the bottom of the multiple sets of guide tubes (213). The bottom ends of the multiple sets of columnar lifting poles (216) are fixedly connected to columnar lifting pole base blocks (218). The front bottom of the multiple sets of columnar lifting pole base blocks (218) are fixedly connected to sliding blocks (219). The outer walls of the multiple sets of sliding blocks (219) are slidably connected to the inner walls of the multiple sets of columnar guide poles (215). The inner sides of the multiple sets of columnar lifting pole base blocks (218) are rotatably connected to rotating wheels (2110). The outer walls of the multiple sets of rotating wheels (2110) are slidably connected to the bottom of the inner walls of the multiple sets of abutting turntables (212).

6. The cable processing and drying apparatus according to claim 1, characterized in that: Each of the multiple wiping components (31) includes a rectangular horizontal plate (311). The bottom sides of the multiple rectangular horizontal plates (311) are fixedly connected to the top of multiple sets of columnar lifting poles (216). The left and right sides of the front and rear sides of the multiple rectangular horizontal plates (311) are fixedly connected to L-shaped connecting blocks (312). The top of the multiple sets of L-shaped connecting blocks (312) is fixedly connected to an inverted L-shaped vertical plate (313). The left and right sides of the inner wall of the multiple sets of inverted L-shaped vertical plates (313) are slidably connected to columnar expansion rods (314).

7. The cable processing and drying apparatus according to claim 6, characterized in that: The outer ends of the multiple sets of columnar expansion rods (314) are all fixedly connected to columnar expansion rod push plates (316), and the left and right sides of the multiple sets of columnar expansion rod push plates (316) are all fixedly connected to push plate connecting blocks (317). The inner ends of the multiple sets of columnar expansion rods (314) extend to the inner side of the multiple sets of inverted L-shaped upright plates (313) and are all fixedly connected to sponge plates (315).

8. The cable processing and drying apparatus according to claim 1, characterized in that: Each of the clamping components (32) includes two triangular side plates (321). The inner sides of the multiple sets of triangular side plates (321) are fixedly connected to the left and right sides of multiple rectangular horizontal plates (311). The front and rear sides of the outer sides of the multiple sets of triangular side plates (321) are fixedly connected to connecting side plates (322). The bottom inner sides of the multiple sets of connecting side plates (322) are fixedly connected to inner connecting rods (323). The bottom sides of the multiple sets of inner connecting rods (323) that are close to each other are fixedly connected to hydraulic push rod connecting blocks (324). The bottom of the multiple sets of hydraulic push rod connecting blocks (324) on the right side is fixedly connected to bidirectional hydraulic push rods (325). The top outer sides of the multiple sets of connecting side plates (322) are fixedly connected to connecting horizontal bars (3210). The top outer sides of the multiple sets of connecting side plates (322) on the left and the multiple sets on the right are connected by multiple sets of connecting horizontal bars (3210).

9. A cable processing and drying apparatus according to claim 8, characterized in that: The front and rear ends of the multiple hydraulic push rod connecting blocks (324) are fixed with circular push blocks (326). The inner sides of the multiple sets of circular push blocks (326) on the left and right sides are fixedly connected with columnar expansion and contraction crossbars (327). The left and right sides of the outer walls of the multiple sets of columnar expansion and contraction crossbars (327) are rotatably connected with inclined L-shaped rotating rods (328). The middle of the multiple sets of inclined L-shaped rotating rods (328) is rotatably connected. The top of the inner side of the multiple sets of inclined L-shaped rotating rods (328) is fixedly connected with arc-shaped clamping plates (329). The side of the multiple sets of inclined L-shaped rotating rods (328) near the triangular side plate (321) is rotatably connected to the middle of the outer side of the multiple sets of triangular side plates (321).

10. A cable processing and drying apparatus according to claim 7, characterized in that: The sides of the multiple sets of push plate connecting blocks (317) away from the columnar expansion rod push plate (316) are all fixedly connected to the outer top of the multiple sets of inclined L-shaped rotating rods (328).

Citation Information

Patent Citations

  • Drying device for cable processing

    CN115171986A