Quick drying device for cable production
By introducing a water removal component and a drying fan into the cable drying device, along with the combined use of heating wires, the problem of water droplets not being completely removed from the cable surface when the sponge pad is wet is solved, thus achieving rapid drying of the cable.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO YUCHENG CABLE CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-05-12
AI Technical Summary
In existing cable drying devices, the sponge pad absorbs moisture from the cable surface and becomes wet itself, which cannot effectively remove water droplets from the cable surface, resulting in a slow drying speed.
A rapid drying device for cable production was designed, comprising a water removal component. The device utilizes a combination of a lower scraper, an upper scraper, a scraper block, a support rod, an electric push rod, and a U-shaped frame to scrape off water droplets from the surface of the cable, and then air-dries the cable using a drying fan and heating wire.
It effectively removes water droplets from the cable surface, improves the cable drying speed, and solves the problem that the sponge pad cannot completely remove water droplets when it is wet.
Smart Images

Figure CN224232409U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cable drying technology, specifically a rapid drying device for cable production. Background Technology
[0002] Cables are generally made of one or more mutually insulated conductors covered with insulation and protective layers. Their function is to transmit information from one place to another. Cables are indispensable equipment in the field of electronic power in modern society. After the cable is processed, it needs to be cooled. Currently, water cooling is used for cooling. Therefore, a drying device is needed to dry the cooled cable.
[0003] Regarding the rapid drying device for cable production, a search revealed a public disclosure (publication) number: CN217955560U. This device includes a base plate and vertical plates. Multiple vertical plates are fixedly connected to the top of the base plate, and each vertical plate has an opening in the middle. A first housing is installed in the middle of the top of the base plate, and a drain pipe is fixedly connected to the lower right side of the first housing. A first drying device is installed on the top of the base plate. The lower surface of the cable is in contact with a first sponge pad. Then, a vertical rod extends, causing a second sponge pad to move downwards via a first horizontal plate. This causes the second sponge pad to continuously compress the cable, thus absorbing most of the moisture from the cable through the first and second sponge pads. However, the cable drying device still has shortcomings in actual use. After the first and second sponge pads are pressed and squeezed against the cable, they can absorb the moisture on the surface of the cable. However, after absorbing the moisture, the first and second sponge pads are in a wet state themselves, and the cable needs to be continuously dehydrated. When the first and second sponge pads come into contact with the cable again, they cannot effectively remove the water droplets from the surface of the cable, resulting in a slow drying speed for the cable. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a rapid drying device for cable production, which can scrape off the water droplets adhering to the cable surface through the water removal component, effectively remove water droplets from the cable surface, improve the drying speed of cable air drying, and solve the problem that the sponge pad absorbs the moisture on the cable surface and remains wet itself, and cannot completely remove the water droplets from the cable surface.
[0005] The technical problem to be solved by this utility model is achieved by the following technical solution:
[0006] A rapid drying device for cable production includes: a dewatering tank, a drying chamber disposed on one side of the dewatering tank, through holes on both sides of the outer ends of the dewatering tank and the drying chamber, a support platform installed at the bottom of the dewatering tank and the drying chamber, and a dewatering assembly disposed inside the dewatering tank for removing water droplets from the surface of the cable. The dewatering assembly includes: a lower scraper sleeve, an upper scraper sleeve, a scraper block, a support rod, an electric push rod, and a U-shaped frame.
[0007] Preferably, the dewatering tank is provided with two lower scraper sleeves, and an upper scraper sleeve is provided on the top of the two lower scraper sleeves. Scraper blocks are installed inside both the lower scraper sleeves and the upper scraper sleeves. Support rods are installed at the bottom of both lower scraper sleeves. An electric push rod is installed at the top of the dewatering tank. A U-shaped frame is installed at the bottom of the electric push rod. The bottom of the U-shaped frame is connected to the upper scraper sleeve.
[0008] Preferably, both the dewatering tank and the drying chamber are equipped with multiple upper rollers, and each of the upper rollers has a lower roller at its bottom. Both the dewatering tank and the drying chamber have a fixed frame installed at their top, and the fixed frame is rotatably connected to the upper rollers via a rotating shaft. Both the dewatering tank and the drying chamber have a support frame at their bottom, and the support frame is rotatably connected to the lower rollers via a rotating shaft.
[0009] Preferably, the lower scraper sleeve and the upper scraper sleeve have an arc-shaped structure, and the scraper block is made of rubber material.
[0010] Preferably, a housing is installed on the top of the drying chamber, a drying fan is installed inside the housing, a heating wire is installed at the bottom of the drying fan, an air inlet is opened on the top of the housing, a dustproof net is installed on the top of the air inlet, and an air vent communicating with the housing is opened on the top of the drying chamber.
[0011] Preferably, a grid strip is installed inside the support platform, and the bottom of the support frame and the support rod are connected to the grid strip.
[0012] Preferably, a water guide channel communicating with the grid strip is installed at the bottom of the support platform, and a collection box is provided on one side of the bottom of the water guide channel.
[0013] Compared with the technical content disclosed in prior art document (CN217955560U) "A rapid drying device for cable production", the beneficial effects of this utility model are:
[0014] (1) A water removal component is added to this application. The water droplets adhering to the cable surface can be scraped off by the lower scraper, upper scraper, scraper block, support rod, electric push rod and U-shaped frame. This can effectively remove water droplets from the cable surface, improve the drying speed of the cable, and solve the problem that the sponge pad absorbs the moisture on the cable surface and is in a wet state itself, and cannot remove the water droplets from the cable surface. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a schematic cross-sectional view of the present invention.
[0017] Figure 3 This is a schematic diagram showing the connection between the upper roller, lower roller, and cable of this utility model.
[0018] Figure 4 This is a schematic diagram of the upper roller structure of this utility model.
[0019] Figure 5 This is a schematic diagram of the lower and upper scraper sleeves of this utility model.
[0020] Figure 6 This is a schematic diagram of the internal structure of the support platform of this utility model.
[0021] Figure 7 This is a schematic diagram of the water removal tank structure of this utility model.
[0022] Figures 1-7 Components: 1. Water tank; 101. Drying oven; 102. Through hole; 103. Upper roller; 104. Lower roller; 105. Fixing frame; 106. Support frame; 2. Support platform; 3. Lower scraper sleeve; 301. Upper scraper sleeve; 302. Scraper block; 303. Support rod; 304. Electric push rod; 305. U-shaped frame; 4. Chassis; 401. Drying fan; 402. Heating wire; 403. Air inlet; 404. Air inlet; 5. Grid strip; 6. Water guide trough; 601. Collection box. Detailed Implementation
[0023] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0024] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.
[0025] Example
[0026] like Figures 1-7As shown, a rapid drying device for cable production includes: a dewatering tank 1, a drying chamber 101 disposed on one side of the dewatering tank 1, through holes 102 opened on both sides of the outer ends of the dewatering tank 1 and the drying chamber 101, a support platform 2 installed at the bottom of the dewatering tank 1 and the drying chamber 101, and a dewatering assembly disposed inside the dewatering tank 1 for removing water droplets from the surface of the cable. The dewatering assembly includes: a lower scraper sleeve 3, an upper scraper sleeve 301, a scraper block 302, a support rod 303, an electric push rod 304, and a U-shaped frame 305.
[0027] The water tank 1 and the drying chamber 101 are equipped with multiple upper rollers 103 inside, and each upper roller 103 is equipped with a lower roller 104 at its bottom. The top of the water tank 1 and the drying chamber 101 are equipped with a fixing frame 105, which is rotatably connected to the upper rollers 103 via a rotating shaft. The bottom of the water tank 1 and the drying chamber 101 are equipped with a support frame 106, which is rotatably connected to the lower rollers 104 via a rotating shaft.
[0028] After the cable is cooled with cold water, it is removed from the cooling device and pulled to the outside of the dewatering tank 1. The cable is then inserted into the dewatering tank 1 through the through hole 102. Since the through hole 102 is on the same horizontal line as the upper roller 103 and the lower roller 104, the cable passes through the through hole 102 and is inserted between the upper roller 103 and the lower roller 104. The rolling of the upper roller 103 and the lower roller 104 can transfer the cable inside the dewatering tank 1 and the drying chamber 101 to remove moisture and perform drying treatment. When the cable is introduced into the dewatering tank 1 and the drying chamber 101, both the dewatering tank 1 and the drying chamber 101 are equipped with doors on the outside. The doors can be opened to facilitate the operator to insert the cable between the upper roller 103 and the lower roller 104 and pull the cable out from the through hole 102 on the other side of the outer end of the drying chamber 101.
[0029] In this implementation scheme: According to CN217955560U, a rapid drying device for cable production is disclosed. After the first and second sponge pads are pressed and adhered to the cable, they can absorb the moisture on the surface of the cable. However, after absorbing the moisture, the first and second sponge pads are themselves in a wet state, and the cable needs to be continuously dehydrated. When the first and second sponge pads come into contact with the cable again, they cannot effectively remove the water droplets from the surface of the cable, resulting in a slow drying speed for the cable. Therefore, a dehydration component is added. This application addresses the shortcomings of using the first and second sponge pads and designs a new structure to solve the problem.
[0030] The water tank 1 is equipped with two lower scraper sleeves 3 inside, and an upper scraper sleeve 301 is provided on the top of the two lower scraper sleeves 3. Scraper blocks 302 are installed inside both the lower scraper sleeves 3 and the upper scraper sleeve 301. Support rods 303 are installed at the bottom of both lower scraper sleeves 3. An electric push rod 304 is installed at the top inside the water tank 1. A U-shaped frame 305 is installed at the bottom of the electric push rod 304. The bottom of the U-shaped frame 305 is connected to the upper scraper sleeve 301.
[0031] When the lower scraper sleeve 3 and the upper scraper sleeve 301 are in use, they are located between the upper roller 103 and the lower roller 104, and are at the same horizontal level as the upper roller 103 and the lower roller 104. When the cable is inserted between the upper roller 103 and the lower roller 104 for transmission, the cable will also pass between the lower scraper sleeve 3 and the upper scraper sleeve 301. That is, the lower scraper sleeve 3 supports the bottom of the cable and activates the electric push rod 304 to push the U-shaped frame 305 downward, so that the U-shaped frame 305 carries... The upper scraper sleeve 301 moves downward until it fits tightly against the top of the cable, so that the scraper block 302 inside the lower scraper sleeve 301 and the upper scraper sleeve 301 can fit against the surface of the cable. When the cable is pulled and transmitted, the scraper block 302 can scrape off the water droplets adhering to the surface of the cable, effectively removing water droplets from the surface of the cable, improving the drying speed of the cable, and solving the problem that the sponge pad absorbs the moisture on the surface of the cable and remains wet itself, and cannot remove the water droplets from the surface of the cable.
[0032] The water tank 1 has an observation window on its door, which is fitted with transparent tempered glass. When the electric push rod 304 pushes the U-shaped frame 305 and the upper scraper sleeve 301 downwards and closes to the lower scraper sleeve 3, the downward position of the upper scraper sleeve 301 can be observed through the observation window. When the scraper block 302 inside the upper scraper sleeve 301 contacts the cable, the electric push rod 304 can be stopped.
[0033] The lower scraper sleeve 3 and the upper scraper sleeve 301 are arc-shaped, and the scraper block 302 is made of rubber. When the lower scraper sleeve 3 and the upper scraper sleeve 301 are in use, the lower scraper sleeve 3 and the upper scraper sleeve 301 are set in an arc-shaped structure, that is, the scraper block 302 is also set in an arc-shaped structure, so that the scraper block 302 inside the lower scraper sleeve 3 and the upper scraper sleeve 301 can cover and adhere to the cable, thereby scraping away the water droplets on the surface of the cable. During the use of the scraper block 302, the scraper block 302 is made of rubber material, which can avoid scratching and damaging the cable when it comes into contact with the cable surface.
[0034] The support platform 2 is equipped with grid strips 5. The bottom of the support frame 106 and the support rod 303 are connected to the grid strips 5. When the cable is scraped to remove water droplets inside the water removal tank 1, the scraped water droplets will fall into the support platform 2. Through the grid strips 5, the fallen water droplets can be discharged into the water removal tank 1.
[0035] The support platform 2 has a water guide channel 6 that communicates with the grid strip 5 at its bottom. A collection box 601 is provided on one side of the bottom of the water guide channel 6. After the scraped water droplets fall into the support platform 2, the water droplets can be discharged from the support platform 2 and fall into the water guide channel 6 because the grid strip 5 is connected to the water guide channel 6. The water guide channel 6 is set with an inclined structure, that is, the water droplets inside the water guide channel 6 will slide out and flow into the collection box 601 for temporary storage, which facilitates the collection of the cleaned water and avoids wetting the work area.
[0036] The drying chamber 101 has a housing 4 installed on top, a drying fan 401 installed inside the housing 4, a heating wire 402 installed at the bottom of the drying fan 401, an air inlet 403 on the top of the housing 4, a dustproof net installed on the top of the air inlet 403, and an air inlet 404 on the top of the drying chamber 101 that communicates with the housing 4.
[0037] After the water droplets on the surface of the cable are scraped off inside the water tank 1, the cable will pass through the drying box 101. The drying fan 401 and the heating wire 402 will be started. The drying fan 401 blows air towards the heating wire 402 and the air inlet 404. When the air blows through the heating wire 402, it will form hot air and blow it into the drying box 101 from the air inlet 404. During the transmission of the cable, the hot air blows towards the cable, which can dry the cable. After the cable is dried, it is pulled out from the through hole 102 on the other side of the drying box 101. The cable is then wound up and stored by the drum of the winding mechanism.
[0038] A control panel is provided on the outside of the door of the drying oven 101. The control panel is connected to the drying fan 401, heating wire 402, and electric push rod 304 via wires. A power cord connected to the control panel is installed at the bottom of the drying oven 101. The other end of the power cord is provided with a power plug. The power plug is inserted into the socket to connect the control panel, drying fan 401, heating wire 402, and electric push rod 304 to the power supply. The control panel is equipped with an electronic display screen and control buttons, which can control the start and stop of the drying fan 401, heating wire 402, and electric push rod 304, as well as adjust the heating temperature of the heating wire 402 to avoid damage to the cable due to excessive heating temperature. The control program involved in this utility model can be implemented by those skilled in the art based on the same or similar principles in the prior art. This part is not the innovation of this utility model, but belongs to the mature means commonly used in the field.
[0039] Working principle:
[0040] After the cable is cooled with cold water, it is removed from the cooling device and pulled to the outside of the dewatering tank 1. The cable is then inserted into the dewatering tank 1 through the through hole 102. Since the through hole 102 is on the same horizontal line as the upper roller 103 and the lower roller 104, the cable passes through the through hole 102 and is inserted between the upper roller 103 and the lower roller 104. The rolling of the upper roller 103 and the lower roller 104 can transfer the cable inside the dewatering tank 1 and the drying chamber 101 to remove moisture and perform drying treatment. When the cable is introduced into the dewatering tank 1 and the drying chamber 101, both the dewatering tank 1 and the drying chamber 101 are equipped with doors on the outside. The doors can be opened to facilitate the operator's insertion of the cable between the upper roller 103 and the lower roller 104.
[0041] When the lower scraper sleeve 3 and the upper scraper sleeve 301 are in use, they are located between the upper roller 103 and the lower roller 104, and are at the same horizontal level as the upper roller 103 and the lower roller 104. When the cable is inserted between the upper roller 103 and the lower roller 104 for transmission, the cable will also pass between the lower scraper sleeve 3 and the upper scraper sleeve 301. That is, the lower scraper sleeve 3 supports the bottom of the cable and activates the electric push rod 304 to push the U-shaped frame 305 downward, so that the U-shaped frame 305 carries... The upper scraper sleeve 301 moves downward until it fits tightly against the top of the cable, so that the scraper block 302 inside the lower scraper sleeve 301 and the upper scraper sleeve 301 can fit against the surface of the cable. When the cable is pulled and transmitted, the scraper block 302 can scrape off the water droplets adhering to the surface of the cable, effectively removing water droplets from the surface of the cable, improving the drying speed of the cable, and solving the problem that the sponge pad absorbs the moisture on the surface of the cable and remains wet itself, and cannot remove the water droplets from the surface of the cable.
[0042] After the water droplets on the surface of the cable are scraped off inside the water tank 1, the cable will pass through the drying box 101. The drying fan 401 and the heating wire 402 will be started. The drying fan 401 blows air towards the heating wire 402 and the air inlet 404. When the air blows through the heating wire 402, it will form hot air and blow it into the drying box 101 from the air inlet 404. During the transmission of the cable, the hot air blows towards the cable, which can dry the cable. After the cable is dried, it is pulled out from the through hole 102 on the other side of the drying box 101. The cable is then wound up and stored by the drum of the winding mechanism.
[0043] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.
[0044] The above provides a detailed description of a rapid drying device for cable production provided in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand the technical solutions and core ideas of this application. Those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A rapid drying device for cable production, characterized in that, include: Except for water tank (1); A drying box (101) is installed on one side of the dewatering tank (1); Through holes (102) are opened on both sides of the outer end of the water tank (1) and the drying box (101); Support platform (2) installed at the bottom of the dewatering tank (1) and the drying box (101); The water removal assembly installed inside the water removal tank (1) is used to remove water droplets from the surface of the cable. The water removal assembly includes: a lower scraper sleeve (3), an upper scraper sleeve (301), a scraper block (302), a support rod (303), an electric push rod (304), and a U-shaped frame (305).
2. The rapid drying device for cable production according to claim 1, characterized in that, The water removal tank (1) is equipped with two lower scraper sleeves (3), and the top of the two lower scraper sleeves (3) is equipped with an upper scraper sleeve (301). Scraper blocks (302) are installed inside both the lower scraper sleeves (3) and the upper scraper sleeves (301). Support rods (303) are installed at the bottom of both lower scraper sleeves (3). An electric push rod (304) is installed at the top inside the water removal tank (1). A U-shaped frame (305) is installed at the bottom of the electric push rod (304). The bottom of the U-shaped frame (305) is connected to the upper scraper sleeve (301).
3. The rapid drying device for cable production according to claim 2, characterized in that, Both the dewatering tank (1) and the drying chamber (101) are equipped with multiple upper rollers (103), and each of the upper rollers (103) is equipped with a lower roller (104) at its bottom. Both the dewatering tank (1) and the drying chamber (101) are equipped with a fixing frame (105) at their top. The fixing frame (105) is rotatably connected to the upper rollers (103) via a rotating shaft. Both the dewatering tank (1) and the drying chamber (101) are equipped with a support frame (106) at their bottom. The support frame (106) is rotatably connected to the lower rollers (104) via a rotating shaft.
4. The rapid drying apparatus for cable production according to claim 2, characterized in that, The lower scraper sleeve (3) and the upper scraper sleeve (301) have an arc-shaped structure, and the scraper block (302) is made of rubber material.
5. The rapid drying apparatus for cable production according to claim 1, characterized in that, The drying chamber (101) has a housing (4) installed on top. A drying fan (401) is installed inside the housing (4). A heating wire (402) is installed at the bottom of the drying fan (401). An air inlet (403) is opened on the top of the housing (4). A dustproof net is installed on the top of the air inlet (403). An air inlet (404) communicating with the housing (4) is opened on the top of the drying chamber (101).
6. The rapid drying apparatus for cable production according to claim 3, characterized in that, The support platform (2) is equipped with a grid strip (5), and the bottom of the support frame (106) and the support rod (303) are connected to the grid strip (5).
7. The rapid drying apparatus for cable production according to claim 6, characterized in that, The bottom of the support platform (2) is equipped with a water guide channel (6) that communicates with the grid strip (5), and a collection box (601) is provided on one side of the bottom of the water guide channel (6).