A cable cooling and winding device and its cooling and winding method

By using cooling pool and adjustment rack structure in cable production and combined with air-cooled drying parts, the problem of equipment occupying large sites is solved, and efficient cooling and drying of cables is achieved.

CN119217610BActive Publication Date: 2025-07-04ANHUI QIANYI SPECIAL CABLE CO LTD
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Patent Information

Application Number
CN202411509390.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-07-04
Estimated Expiration
2044-10-28

AI Technical Summary

Technical Problem

In the production of existing cables, the use of longer cooling tanks for cooling causes the equipment to occupy a large site and is inconvenient for use.

Method used

The cooling pool and adjustment rack structure are adopted, combined with air-cooled drying parts, and the length of the cable in the pool body is extended by rotating and unfolding the adjustment rack to achieve effective cooling, and drying is carried out using air-cooled sleeves and drying pipes.

Benefits of technology

It realizes effective cooling and drying of cables on a smaller site, reducing the equipment space and making it easier to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention application belongs to the technical field of cable production, and relates to a cable cooling and winding device and its cooling and winding method. The cable cooling and winding device includes a winding roller, a cooling pool, an adjusting frame, a placement wheel and an air-cooling drying member. The cooling pool is arranged on the frame body on one side of the winding roller. The adjusting frame is rotatably arranged in the cooling pool. A wheel shaft for rotatably connecting the placement wheel is arranged on the cross bar of the adjusting frame. The driving wheels arranged at both ends of the cross bar are cooperatively arranged with the guide wheels at the corresponding positions on the cooling pool. The driving cylinder rotatably connected at the middle part of the cross bar is rotatably connected to the cooling pool through a connecting frame. In this invention application, the cooling tank for water-cooled cables is replaced with a cooling pool, and the frame body can be unfolded during rotation, thereby extending the length of the cable staying in the pool body, enabling the cable to be effectively cooled in the pool body, reducing the site occupied by the entire device, and facilitating use.
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Description

Technical Field

[0001] The present invention application relates to the technical field of cable production, and specifically relates to a cable cooling and winding device and a cooling and winding method thereof. Background Art

[0002] After the cable is manufactured, it needs to be wound and packaged. Winding the cable can reduce the storage volume of the cable and facilitate packaging. Since the cable needs to be coated with glue on the outer layer during production, the surface temperature of the cable will increase. When the cable is not completely cooled, the cable temperature will be higher than the normal temperature. When the high-temperature cable is directly wound on the winding wheel, due to the certain thermal expansion and contraction deformation of the rubber, it will be difficult for the high-temperature cable to be neatly wound on the winding wheel, which will affect the normal winding step of the cable.

[0003] Therefore, it is necessary to cool the cable before winding. Usually, a water cooling tank is used to cool the cable. In order to ensure effective cooling of the cable, it is necessary to ensure that the cable can effectively contact the cooling water pool in the tank. In order to ensure the cooling effect, a longer tank is required to ensure effective cooling, which will cause the entire device to occupy a large area and is not convenient to use. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention application provides a cable cooling and winding device and a cooling and winding method thereof, which solves the problem that a longer cooling tank is required to ensure the cooling effect, which will cause the entire device to occupy a large area and is not convenient to use. The present invention application specifically adopts the following technical solutions to achieve the above objectives:

[0005] In a first aspect, a cable cooling and winding device includes a winding roller, a cooling pool, an adjusting frame, a placement wheel and an air-cooling drying member. The cooling pool is arranged on the frame body on one side of the winding roller, and the adjusting frame is rotatably arranged in the cooling pool. A wheel shaft for rotatably connecting the placement wheel is arranged on the cross bar of the adjusting frame. The driving wheels arranged at both ends of the cross bar are matched with the guide wheels at corresponding positions on the cooling pool. The driving cylinder rotatably connected at the middle part of the cross bar is rotatably connected to the cooling pool through a connecting frame. And an air-cooling drying member is arranged between the cooling pool and the winding roller. The air-cooling sleeve and the drying pipe of the air-cooling drying member are fixedly connected to the outer wall of the cooling pool through a support frame.

[0006] Furthermore, the connecting plate fixedly connected to the cross bar and the connecting ear integrally arranged on the shaft seat are rotatably connected through the connecting shaft at the upper end of the second folding rod. The shaft seat is fixedly connected to the inner wall of the box body of the cooling pool. And the connecting seat integrally arranged at the middle position of the cross bar is rotatably connected to the connecting ring sleeve at the telescopic end of the driving cylinder through a rotating shaft. The clamp fixedly sleeved on the driving cylinder is rotatably connected to the matching connecting frame. The connecting frame is fixedly connected to the box body;

[0007] Further, the cross bar is rotatably connected to the upper end of the first folding rod through a pin shaft, a rotating joint is provided at the middle position of the first folding rod, and the lower end of the first folding rod is rotatably connected to the pin shaft arranged on the movable frame, the shaft rod fixedly connected to the other side of the movable frame is rotatably connected to the placement wheel, and the connecting ear formed by bending one end of the movable frame is rotatably connected to the lower end of the second folding rod through the pin shaft;

[0008] Furthermore, a rotating joint is provided at the middle position of the second folding rod, one end of the connecting shaft is fixedly connected to the upper end of the second folding rod, and the connecting shaft is rotatably connected to a connecting ear integrally provided on the shaft seat, and the connecting shaft is inserted through the shaft hole at the corresponding position of the connecting plate and fixedly connected by a latch;

[0009] Furthermore, a motor bracket is provided at the upper end of the support rod integrally arranged at both ends of the cross bar, and the driving motor is fixedly connected to the motor bracket by bolts. The output shaft of the driving motor passes through the motor bracket and is fixedly connected to the driving shaft on the driving wheel, and a placement wheel is rotatably mounted on the fixedly connected wheel axle fixedly connected to one side of the cross bar, and the placement wheel is provided with inner grooves distributed at equal intervals.

[0010] Furthermore, the cooling pool consists of a box body and a transparent box, the transparent box is fixedly connected to one side of the box body, and the guide wheel is rotatably connected to the wheel frame, the wheel frame is fixedly connected to the inner wall of the box body, and a water inlet pipe and a water outlet pipe are arranged on the transparent box.

[0011] Furthermore, one end of the support frame is fixedly connected to the outer wall of the cooling pool, and the air cooling sleeve is arranged at the other end of the support frame, both ends of the air cooling sleeve are integrally provided with bell mouths, and a placement cylinder is integrally provided on the outer wall of the middle part of the air cooling sleeve, a high-speed fan is arranged in the placement cylinder, and evenly distributed perforations are opened on the air cooling sleeves on both sides of the placement cylinder;

[0012] Furthermore, a notch for accommodating a rod is provided on the bell mouth at one end of the air-cooling sleeve, one end of the rod passes through the notch sleeve pin and is rotatably connected to the connecting ear plate, the connecting ear plate is fixedly connected between the bell mouth and the outer wall of the air-cooling sleeve, and the other end of the rod is fixedly connected to the resistance arc plate, and balls are arranged at equal intervals on the inner side of the resistance arc plate.

[0013] In a second aspect, a cable winding and cooling method is provided, using the cable cooling and winding device described in any one of the first aspects, comprising the following steps:

[0014] S1. First, wind the cables to be cooled around the placement wheels on the adjustment frame in the order of the pulling direction. When winding, wind the cable from the first placement wheel at one end of the adjustment frame to the placement wheel on the first first folding rod close to it. Then, wind the cable again to the second placement wheel on the adjustment frame in sequence. Subsequently, pull the cable and wind it in sequence to the placement wheel on the next first folding rod. Finally, pull the cable and wind it to the placement wheel at the other end of the adjustment frame, and straighten the cable into the corresponding cable placement grooves on the corresponding placement wheels. At the same time, place the cables at both ends of the adjustment frame on the guide wheels on the cooling pool. At this time, the adjustment frame is located at the upper pool opening part of the cooling pool;

[0015] S2. After the cable is wound around the placement wheel, the driving cylinder operates to push the cross bar to rotate on the shaft seat. During the rotation of the cross bar, the connecting shaft rotates together with the connecting plate on it. During the rotation of the connecting shaft, the second folding rod rotates together, and during the rotation of the second folding rod, it unfolds. When unfolding, the second folding rod pushes the movable frame to move, and during the movement of the movable frame, the first folding rod unfolds;

[0016] S3. During the process of the adjustment frame rotating to adjust the position, the first folding rod and the second folding rod unfold to move the movable frame and the placement wheels on it to the bottom of the cooling pool together. During this process, the cable slides on the placement wheel along with the adjustment of the frame body, extending the length of the cable in the cooling pool. At the same time, the driving wheels at both ends of the cross bar move together and contact the cable placed on the upper part of the guide wheel, clamping and fixing the cable. Then, pass the end of the cable through the drying pipe and the air-cooling sleeve and fix it on the winding roller for winding the cable;

[0017] S4. After the cable is placed, the water for cooling the cable is injected into the cooling pool from the water inlet pipe and discharged when the liquid level reaches the water outlet pipe. The cold water is used to cool the cable. At the same time, the driving motor operates to drive the driving wheel to rotate and drive the cable during the rotation, ensuring that the cable smoothly enters the water cooling in the cooling pool, is conveyed out of the cooling pool after cooling, and then enters the drying pipe in sequence to electrothermally dry the residual water marks on the cable. Then, when passing through the air-cooling sleeve, the high-speed fan operates to blow high-speed flowing air onto the cable to dissipate the heat during the drying process of the cable. Finally, it is wound on the roller body with the rotation of the winding roller until all the cables are wound up.

[0018] Compared with the prior art, the present invention application provides a cable cooling and winding device and its cooling and winding method, which have the following beneficial effects: By replacing the cooling tank of the water-cooled cable with a cooling pool and winding the cable on a frame that can be rotated and adjusted in position, the cable can be immersed in the water of the pool under the action of the frame, achieving effective cooling. At the same time, the frame can be unfolded during rotation, thereby extending the length of the cable staying in the pool, enabling the cable to be effectively cooled in the pool, reducing the site occupied by the entire device, and facilitating use. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic structural diagram of the present invention application;

[0020] Figure 2 is a schematic structural diagram of the cooling pool in the present invention application;

[0021] Figure 3 is a schematic structural diagram of the adjusting frame, placement wheel and driving wheel in the present invention application;

[0022] Figure 4 is an exploded view of the adjusting frame in the present invention application;

[0023] Figure 5 is a schematic structural diagram of the air-cooling drying part in the present invention application;

[0024] Figure 6 is a schematic structural diagram of the air-cooling sleeve in the present invention application.

[0025] In the figure: 1. Frame; 2. Winding roller; 3. Cooling pool; 301. Box body; 302. Transparent box; 303. Water inlet pipe; 304. Water outlet pipe; 305. Guide wheel; 306. Wheel frame; 4. Adjusting frame; 401. Cross bar; 4011. Wheel shaft; 4012. Connecting plate; 4013. Connecting seat; 4014. Support rod; 402. Axle seat; 403. First folding rod; 404. Movable frame; 405. Second folding rod; 4051. Connecting shaft; 406. Driving cylinder; 5. Placement wheel; 6. Driving wheel; 601. Driving motor; 7. Air-cooling drying part; 701. Air-cooling sleeve; 7011. Flared mouth; 7012. Perforation; 7013. Placement cylinder; 7014. High-speed fan; 7015. Connecting ear plate; 7016. Rod member; 7017. Contact arc plate; 702. Drying pipe; 703. Support frame. DETAILED DESCRIPTION OF THE INVENTION

[0026] Next, in combination with the accompanying drawings in the embodiments of the present invention application, the technical solutions in the embodiments of the present invention application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention application, rather than all the embodiments. Based on the embodiments in the present invention application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention application.

[0027] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 shown, in a first aspect, a cable cooling and winding device includes a winding roller 2, a cooling pool 3, an adjusting frame 4, a placement wheel 5 and an air-cooling and drying member 7. The cooling pool 3 is arranged on the frame body 1 on one side of the winding roller 2, facilitating effective water cooling of the cable when it passes through the cooling pool 3 and winding it up after cooling. The winding roller 2 is installed on the driving shaft provided on the frame body 1 and is driven by a supporting motor, enabling the winding roller 2 to rotate smoothly on the frame body 1 to effectively wind the cable. Moreover, the adjusting frame 4 is rotatably arranged in the cooling pool 3, facilitating debugging the position of the frame body in the pool body, and then soaking the cable wound on the frame body in the cold water in the pool body to ensure effective cooling of the cable. A wheel shaft 4011 for rotatably connecting the placement wheel 5 is provided on the cross bar 401 of the adjusting frame 4, ensuring that the placement wheel 5 can be stably installed on the cross bar 401 and can rotate smoothly on the cross bar 401 during use, reducing the frictional resistance during the sliding of the cable, enabling the cable to slide smoothly on the frame body and being effectively cooled by water during the sliding. The driving wheels 6 arranged at both ends of the cross bar 401 are cooperatively arranged with the guide wheels 305 at the corresponding positions on the cooling pool 3 for laying the cable, so that the cable does not contact the edge part of the pool body, avoiding wear of the cable during sliding and ensuring the quality of the cable. The driving cylinder 406 rotatably connected at the middle part of the cross bar 401 is rotatably connected to the cooling pool 3 through a connecting frame, ensuring stable installation of the driving cylinder 406, enabling the driving cylinder 406 to drive the entire frame body to rotate in the pool body during operation to complete the position debugging operation of the frame body. And an air-cooling and drying member 7 is arranged between the cooling pool 3 and the winding roller 2. The air-cooling sleeve 701 and the drying pipe 702 of the air-cooling and drying member 7 are fixedly connected to the outer wall of the cooling pool 3 through a support frame 703, facilitating stable and effective drying of the water-cooled cable, removing the remaining water marks on the cable to ensure the cable is dry. At the same time, after drying, high-speed air flow is blown towards the cable to dissipate the heat generated during the drying process, so that the cable can be wound up subsequently.

[0028] As Figure 1 , Figure 3 and Figure 4As shown, in some embodiments, the connecting plate 4012 fixedly connected to the cross bar 401 is rotatably connected to the connecting ear integrally provided on the shaft seat 402 through the connecting shaft 4051 at the upper end of the second folding rod 405. The shaft seat 402 is fixedly connected to the inner wall of the box body 301 of the cooling pool 3. The entire adjusting frame 4 is stably installed in the cooling pool 3 by using the shaft seat 402 to ensure stable use. And the connecting seat 4013 integrally provided at the middle position of the cross bar 401 is rotatably connected to the connecting ring sleeve at the telescopic end of the driving cylinder 406 through a rotating shaft, which is convenient for smoothly driving the entire adjusting frame 4 to rotate in the cooling pool 3 during the operation of the driving cylinder 406. When installing the cable, the adjusting frame 4 is driven to the position of the upper opening of the pool body, and the cable can be smoothly wound around the placement wheel 5. After the cable installation is completed, the adjusting frame 4 is pushed to rotate and unfold in the pool body. The clamp fixedly sleeved on the driving cylinder 406 is rotatably connected to the matching connecting frame, and the connecting frame is fixedly connected to the box body 301, which is convenient for the driving cylinder 406 to generate appropriate deflection during operation and retraction, avoiding movement interference and ensuring that the driving cylinder 406 can push the adjusting frame 4 to rotate smoothly in the pool body;

[0029] The upper end of the cross bar 401 is rotatably connected to the upper end of the first folding rod 403 through a pin shaft. A rotating joint is provided at the middle position of the first folding rod 403, and the lower end of the first folding rod 403 is rotatably connected to the pin shaft arranged on the movable frame 404, which is convenient for stably installing the first folding rod 403 between the cross bar 401 and the movable frame 404. When the frame rotates to adjust the position, it can be smoothly rotated and folded together or unfolded, and then the movable frame 404 and the placement wheel 5 thereon are brought closer to or farther away from the cross bar 401 to perform the position debugging operation of the movable frame 404. The shaft rod fixedly connected to the other side of the movable frame 404 is rotatably connected to the placement wheel 5, which is convenient for stably installing the placement wheel 5 on the movable frame 404 and smoothly rotating on the movable frame 404 during use, so that the cable can smoothly slide on the frame. And the connecting ear formed by bending one end of the movable frame 404 is rotatably connected to the lower end of the second folding rod 405 through a pin shaft, which is convenient for stably connecting the second folding rod 405 to the movable frame 404, so that the second folding rod 405 can effectively drive the movable frame 404 during the unfolding or folding process, and the movable frame 404 can smoothly move to complete the position debugging operation;

[0030] A rotating joint is provided at the middle position of the second folding rod 405 to ensure that the second folding rod 405 can be smoothly unfolded or folded. One end of the connecting shaft 4051 is fixedly connected to the upper end of the second folding rod 405, and the connecting shaft 4051 is rotatably connected to the connecting ear integrally provided on the shaft seat 402. The connecting shaft 4051 is inserted through the shaft hole at the corresponding position on the connecting plate 4012 and fixedly connected by a pin, which facilitates the stable connection of the connecting shaft 4051 to the second folding rod 405 and the connecting plate 4012, ensuring that the connecting shaft 4051 can rotate together with the connecting plate 4012 during the rotation of the cross bar 401, and at the same time, the second folding rod 405 is deflected by the connecting shaft 4051, so as to achieve the unfolding or folding of the second folding rod 405.

[0031] Motor brackets are provided at the upper ends of the support rods 4014 integrally provided at both ends of the cross bar 401. The driving motor 601 is fixedly connected to the motor brackets by bolts. The output shaft of the driving motor 601 passes through the motor brackets and is fixedly connected to the driving shaft on the driving wheel 6, which facilitates the stable installation of the driving motor 601 and the driving wheel 6 on the support rods 4014 together, ensuring that the driving motor 601 stably drives the driving wheel 6 to rotate on the support rods 4014. At the same time, it is used in cooperation with the guide wheel 305 to enable the driving cable to slide smoothly in the pool body, so that the cable can smoothly pass through the pool body, realizing effective cooling of the cable. In addition, a placement wheel 5 is rotatably mounted on the wheel shaft 4011 fixedly connected to one side of the cross bar 401, ensuring the stable installation of the placement wheel 5 on the cross bar 401 and enabling it to rotate smoothly during use, so that the cable can smoothly slide on the frame. The placement wheel 5 is provided with equally spaced inner grooves, which facilitates the stable winding of the cable onto the placement wheel 5, ensuring that the cable does not slide off the wheel body during the sliding process and enabling long-term stable use.

[0032] As Figure 1 and Figure 2 shown, in some embodiments, the cooling pool 3 is composed of a box body 301 and a transparent box 302, which facilitates the real-time observation of the situation inside the pool body, and can timely detect when the cable detaches from the placement wheel 5, and then make appropriate adjustments. The transparent box 302 is fixedly connected to one side of the box body 301, and the guide wheel 305 is rotatably connected to the wheel frame 306, and the wheel frame 306 is fixedly connected to the inner wall of the box body 301, which facilitates the stable installation of the guide wheel 305 on the box body 301 so that it can cooperate with the driving wheel 6 to enable the driving cable to smoothly pass through the cooling pool 3, realizing effective cooling of the cable. In addition, a water inlet pipe 303 and a water outlet pipe 304 are arranged on the transparent box 302, and both pipes are connected to the external pipes, smoothly injecting the water for cooling the cable into the pool body and smoothly discharging the heat-absorbed water, so that the water in the pool body can cool the cable for a long time, stably and effectively.

[0033] AsFigure 1 , Figure 5 and Figure 6 As shown, in some embodiments, one end of the support frame 703 is fixedly connected to the outer wall of the cooling pool 3 to ensure that the air-cooling sleeve 701 and the drying tube 702 are stably installed and stably used, and the air-cooling sleeve 701 is placed at the other end of the support frame 703, and both ends of the air-cooling sleeve 701 are integrally provided with a bell mouth 7011, which is convenient for the cable to pass smoothly through the air-cooling sleeve 701, thereby improving the convenience of use, and an installation cylinder 7013 is integrally provided on the outer wall of the middle part of the air-cooling sleeve 701, and a high-speed fan 7014 is arranged in the installation cylinder 7013, so that the high-speed fan 7014 can be stably installed on the air-cooling sleeve 701, and a high-speed airflow is output during operation to blow the cable, so as to quickly cool the heat generated by drying on the cable, and evenly distributed perforations 7012 are provided on the air-cooling sleeve 701 on both sides of the installation cylinder 7013, so that the high-speed airflow blown by the high-speed fan 7014 can be quickly discharged from the air-cooling sleeve 701, thereby improving the efficiency of air cooling;

[0034] A notch for accommodating a rod 7016 is provided on the bell mouth 7011 at one end of the air-cooling sleeve 701. One end of the rod 7016 passes through the notch sleeve pin and is rotatably connected to the connecting ear plate 7015. The connecting ear plate 7015 is fixedly connected between the bell mouth 7011 and the outer wall of the air-cooling sleeve 701. The connecting ear plate 7015 is used to stably install the rod 7016 on the bell mouth 7011, and the adjustment position can be rotated during use. The other end of the rod 7016 is fixedly connected to the contact arc plate 7017. Ball bearings are arranged at equal intervals on the inner side of the contact arc plate 7017. The contact arc plate 7017 is used to support and fix the cable so that the cable does not contact the inner wall of the air-cooling sleeve 701, thereby improving the efficiency of air cooling. At the same time, the arranged balls facilitate reducing the friction resistance between the cable and the contact arc plate 7017, so that the cable can pass smoothly during the winding process.

[0035] In the application of the present invention, when it is necessary to cool multiple cables at the same time, the multiple cables can be simultaneously wound around the placement wheel 5 on the adjusting frame 4. During winding, the first cable is wound around the first mounting groove of the placement wheel 5 on the adjusting frame 4, and the second cable is wound around the second mounting groove of the placement wheel 5 on the adjusting frame 4. The winding of the subsequent cables is performed in this order. The number of cables that can be cooled simultaneously is determined according to the number of mounting grooves on the placement wheel 5. When cooling multiple cables at the same time, a corresponding number of winding rollers 2 are set at corresponding positions on the frame 1, and a corresponding number of air-cooled drying parts 7 are also installed on the cooling pool 3 to ensure smooth cooling and winding of each cable.

[0036] In the application of the present invention, by replacing the cooling groove of the water-cooled cable with a cooling pool and winding the cable on a frame that can be rotated to adjust the position, the cable can be immersed in the water of the pool under the action of the frame, achieving effective cooling. At the same time, the frame can be unfolded during the rotation process, thereby extending the length of the cable staying in the pool, enabling the cable to be effectively cooled in the pool, reducing the site occupied by the entire equipment, and facilitating use.

[0037] In a second aspect, a cable cooling and winding method uses the cable cooling and winding equipment described in any one of the above first aspects, and includes the following steps:

[0038] S1. First, wind the cable to be cooled onto the placement wheels 5 on the adjustment frame 4 in sequence according to the pulling direction. When winding, wind the cable from the first placement wheel 5 at one end of the adjustment frame 4 onto the placement wheel 5 on the first first folding rod 403 close to it, then wind the cable onto the second placement wheel 5 on the adjustment frame 4 in sequence, then pull the cable and wind it onto the placement wheel 5 on the next first folding rod 403 in sequence, and finally pull the cable and wind it onto the placement wheel 5 at the other end of the adjustment frame 4, and straighten the cable into the corresponding cable laying grooves on the corresponding placement wheels 5. At the same time, place the cables at both ends of the adjustment frame 4 on the guide wheels 305 on the cooling pool 3. At this time, the adjustment frame 4 is located at the upper pool opening part of the cooling pool 3;

[0039] In the application of the present invention, when it is necessary to extend the length of the cable wound on the adjustment frame 4, according to actual needs, multiple turns of winding can be carried out on the first placement wheel 5 at one end of the adjustment frame 4 and the placement wheel 5 on the first first folding rod 403 close to it, and subsequent placement wheels 5 are also wound in sequence to achieve the purpose of extending the length of the cable wound on the adjustment frame 4;

[0040] S2. After the cable is wound onto the placement wheels 5, drive the cylinder 406 to operate to push the cross bar 401 to rotate on the shaft seat 402. During the rotation of the cross bar 401, the connecting plate 4012 on it drives the connecting shaft 4051 to rotate together. During the rotation of the connecting shaft 4051, it will drive the second folding rod 405 to rotate together, and during the rotation of the second folding rod 405, it will unfold. When unfolding, the second folding rod 405 will push the movable frame 404 to move, and during the movement of the movable frame 404, it will drive the first folding rod 403 to unfold;

[0041] S3. During the process of the adjusting frame 4 rotating to adjust the position, the first folding rod 403 and the second folding rod 405 unfold, moving the movable frame 404 and the placement wheels 5 thereon to the bottom of the cooling pool 3. During this process, the cable will slide on the placement wheels 5 as the frame is adjusted, extending the length of the cable inside the cooling pool 3. At the same time, the driving wheels 6 at both ends of the cross bar 401 will move along with it and come into contact with the cable placed on the upper part of the guide wheel 305, clamping and fixing the cable. Then, the end of the cable is passed through the drying pipe 702 and the air-cooling sleeve 701 and fixed on the winding roller 2 for winding the cable.

[0042] S4. After the cable is placed, the water for cooling the cable is injected into the cooling pool 3 from the water inlet pipe 303 and discharged when the liquid level reaches the water outlet pipe 304. The cable is cooled by the cold water. At the same time, the driving motor 601 operates to drive the driving wheels 6 to rotate, and the cable is driven during the rotation process to ensure that the cable smoothly enters the water-cooling in the cooling pool 3 and is conveyed out of the cooling pool 3 after cooling, and then enters the drying pipe 702 in sequence to electrothermally dry the residual water marks on the cable. Then, when passing through the air-cooling sleeve 701, the high-speed blower 7014 operates to blow high-speed flowing air onto the cable to dissipate the heat during the drying process of the cable. Finally, it is wound on the roller body as the winding roller 2 rotates until all the cables are wound.

[0043] In the cable cooling and winding method of this invention application, when actually multiple cables need to be cooled simultaneously, multiple cables can be wound around the placement wheels 5 on the adjusting frame 4 at the same time. When winding, the first cable is wound in the first placement groove of the placement wheel 5 on the adjusting frame 4, the second cable is wound in the second placement groove of the placement wheel 5 on the adjusting frame 4, and so on for the subsequent cables. The number of cables that can be cooled simultaneously is determined according to the number of placement grooves on the placement wheel 5. When cooling multiple cables simultaneously, the corresponding number of winding rollers 2 is set at the corresponding positions on the frame 1, and the corresponding number of air-cooling and drying parts 7 is also installed on the cooling pool 3 to ensure smooth cooling and winding of each cable.

[0044] Finally, it should be noted that the above are only the preferred embodiments of this invention application and are not used to limit this invention application. Although the technical solutions described in the foregoing embodiments have been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of this invention application shall be included in the protection scope of this invention application.

Claims

1. A cable cooling and winding device, comprising a winding roller (2), a cooling pool (3), an adjusting frame (4), a placement wheel (5) and an air-cooling drying member (7), characterized in that: The cooling pool (3) is arranged on the frame body (1) on one side of the winding roller (2), and the adjusting frame (4) is rotatably arranged in the cooling pool (3). A wheel shaft (4011) for rotatably connecting the placement wheel (5) is arranged on the cross bar (401) of the adjusting frame (4). The driving wheels (6) arranged at both ends of the cross bar (401) are cooperatively arranged with the guide wheels (305) at corresponding positions on the cooling pool (3). The driving cylinder (406) rotatably connected at the middle part of the cross bar (401) is rotatably connected to the cooling pool (3) through a connecting frame. And an air-cooling drying part (7) is arranged between the cooling pool (3) and the winding roller (2). The air-cooling sleeve (701) and the drying pipe (702) of the air-cooling drying part (7) are fixedly connected to the outer wall of the cooling pool (3) through a support frame (703); The connecting plate (4012) fixedly connected to the cross bar (401) is rotatably connected to the connecting ear integrally arranged on the shaft seat (402) through the connecting shaft (4051) at the upper end of the second folding rod (405). The shaft seat (402) is fixedly connected to the inner wall of the box body (301) of the cooling pool (3). And the connecting seat (4013) integrally arranged at the middle position of the cross bar (401) is rotatably connected to the connecting ring sleeve at the telescopic end of the driving cylinder (406) through a rotating shaft. The clamp fixedly sleeved on the driving cylinder (406) is rotatably connected to the matching connecting frame. The connecting frame is fixedly connected to the box body (301); The upper end of the cross bar (401) is rotatably connected to the upper end of the first folding rod (403) through a pin shaft. A rotating joint is arranged at the middle position of the first folding rod (403). And the lower end of the first folding rod (403) is rotatably connected to the pin shaft arranged on the movable frame (404). The shaft rod fixedly connected to the other side of the movable frame (404) is rotatably connected to the placement wheel (5). And the connecting ear formed by bending one end of the movable frame (404) is rotatably connected to the lower end of the second folding rod (405) through a pin shaft; A rotating joint is arranged at the middle position of the second folding rod (405). One end of the connecting shaft (4051) is fixedly connected to the upper end of the second folding rod (405). And the connecting shaft (4051) is rotatably connected to the connecting ear integrally arranged on the shaft seat (402). The connecting shaft (4051) is inserted through the shaft hole at the corresponding position on the connecting plate (4012) and fixedly connected through a pin; 2. The cable cooling and winding device according to claim 1, characterized in that: Motor brackets are arranged at the upper ends of the support rods (4014) integrally arranged at both ends of the cross bar (401). The driving motor (601) is fixedly connected to the motor bracket through bolts. The output shaft of the driving motor (601) passes through the motor bracket and is fixedly connected to the driving shaft on the driving wheel (6). And a placement wheel (5) is rotatably arranged on the wheel shaft (4011) fixedly connected to one side of the cross bar (401). The placement wheel (5) is provided with equally spaced inner grooves.

3. The cable cooling and winding device according to claim 2, wherein: The cooling pool (3) is composed of a box body (301) and a transparent box (302), wherein the transparent box (302) is fixedly connected to one side of the box body (301), and the guide wheel (305) is rotatably connected to a wheel frame (306), the wheel frame (306) is fixedly connected to the inner wall of the box body (301), and a water inlet pipe (303) and a water outlet pipe (304) are arranged on the transparent box (302).

4. The cable cooling and winding device according to claim 3, characterized in that: One end of the support frame (703) is fixedly connected to the outer wall of the cooling pool (3), and the air-cooling sleeve (701) is arranged on the other end of the support frame (703), both ends of the air-cooling sleeve (701) are integrally provided with a bell mouth (7011), a placement tube (7013) is integrally provided on the outer wall of the middle part of the air-cooling sleeve (701), a high-speed fan (7014) is arranged in the placement tube (7013), and evenly distributed perforations (7012) are opened on the air-cooling sleeve (701) on both sides of the placement tube (7013).

5. The cable cooling and winding device according to claim 4, characterized in that: A notch for accommodating a rod (7016) is provided on the bell mouth (7011) at one end of the air-cooling sleeve (701), one end of the rod (7016) passes through the notch sleeve pin and is rotatably connected to a connecting ear plate (7015), the connecting ear plate (7015) is fixedly connected between the bell mouth (7011) and the outer wall of the air-cooling sleeve (701), and the other end of the rod (7016) is fixedly connected to a contact arc plate (7017), and balls are evenly spaced on the inner side of the contact arc plate (7017).

6. A cable cooling and winding method, using the cable cooling and winding equipment described in claim 5 above, characterized in that, The steps are as follows: S1. First, wind the cable to be cooled onto the placement wheels (5) on the adjustment frame (4) in sequence according to the pulling direction. When winding, wind the cable from the first placement wheel (5) at one end of the adjustment frame (4) onto the placement wheel (5) on the first first-fold rod (403) close to it. Then, wind the cable onto the second placement wheel (5) on the adjustment frame in sequence again. Subsequently, pull the cable and wind it onto the placement wheel (5) on the next first-fold rod (403) in sequence. Finally, pull the cable and wind it onto the placement wheel (5) at the other end of the adjustment frame, and straighten the cable into the corresponding cable placement grooves on the corresponding placement wheels (5). At the same time, place the cables at both ends of the adjustment frame (4) on the guide wheels (305) on the cooling pool (3). At this time, the adjustment frame (4) is located at the upper pool opening part of the cooling pool (3); S2. After the cable is wound onto the placement wheel (5), the driving cylinder (406) operates to push the cross bar (401) to rotate on the shaft seat (402). During the rotation of the cross bar (401), the connecting shaft (4051) is driven to rotate together through the connecting plate (4012) on it. During the rotation of the connecting shaft (4051), the second fold rod (405) is driven to rotate together and unfold during the rotation of the second fold rod (405). When unfolding, the second fold rod (405) pushes the movable frame (404) to move, and the first fold rod (403) is driven to unfold during the movement of the movable frame (404); S3. During the process of the adjustment frame (4) rotating to adjust the position, the first fold rod (403) and the second fold rod (405) unfold to move the movable frame (404) and the placement wheels (5) on it to the bottom of the cooling pool (3) together. During this process, the cable slides on the placement wheel (5) as the frame is adjusted, extending the length of the cable in the cooling pool (3). At the same time, the driving wheels (6) at both ends of the cross bar (401) move together and contact the cable placed on the upper part of the guide wheel (305) to clamp and fix the cable. Then, pass the end of the cable through the drying pipe (702) and the air-cooling sleeve (701) and fix it on the winding roller (2) for winding the cable; S4. After the cable is placed, the water for cooling the cable is injected into the cooling pool (3) from the water inlet pipe (303) and discharged when the liquid level reaches the water outlet pipe (304). Use cold water to cool the cable. At the same time, the driving motor (601) operates to drive the driving wheel (6) to rotate and drive the cable during the rotation to ensure that the cable smoothly enters the cooling pool (3) for water cooling, and is conveyed out of the cooling pool (3) after cooling and enters the drying pipe (702) in sequence to electrothermally dry the residual water marks on the cable. Then, when passing through the air-cooling sleeve (701), the high-speed blower (7014) operates to blow high-speed flowing air onto the cable to dissipate the heat during the drying process of the cable. Finally, it is wound on the roller body as the winding roller (2) rotates until all the cables are wound up.

Citation Information

Patent Citations

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