Cooling device for cable manufacturing

By introducing a cooling assembly consisting of a partition plate and a cooling box into the cooling device for cable manufacturing, air cooling is used to accelerate the heat dissipation of water, solving the problem of the difficulty in reducing the temperature of cooling water under high temperature conditions, and achieving efficient cooling water recycling and cooling effect.

CN224203884UActive Publication Date: 2026-05-05GUANGDONG NANFAN ELECTRIC APPLIANCE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG NANFAN ELECTRIC APPLIANCE CO LTD
Filing Date
2025-06-06
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing cooling devices for cable manufacturing cannot quickly reduce the temperature of cooling water in high-temperature environments, affecting the cooling effect, and the heat dissipation efficiency of circulating cooling water is low.

Method used

The cooling assembly consists of a partition plate and a cooling box. The partition plate has a cavity structure that forms a long channel. Combined with a cooler and a fan, it cools the air and accelerates the heat dissipation of the water. The filter component is used to filter dust to ensure the cooling effect.

Benefits of technology

In high-temperature environments, it improves the efficiency of cooling water circulation, ensures cooling effect, and avoids problems such as water waste and poor cooling effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cable manufacturing, in particular to a cooling device for cable manufacturing, which comprises a working table, a material conveying groove, a water storage box, a water pump and a cooling assembly, the cooling assembly comprises a water collecting tank, a partition plate, a cooling tank and a filtering component, the water collecting tank is positioned below the working table, and the partition plate is fixedly connected with the water collecting tank; the partition plate is of a cavity structure, the cooling box is communicated with the interior of the partition plate, the filtering component is connected with the cooling box, and the water pump is communicated with the water collecting tank and the water storage box. The refrigerator and the fan are arranged in the cooling tank, external air is pumped into the cooling tank for refrigeration, then conveyed to the partition plate through the pipeline for circulation and finally discharged outwards from the through hole communicated between the partition plate and the water collecting tank, cooling of water in the water collecting tank is accelerated, the water is rapidly cooled, and the cooling effect is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of cable manufacturing technology, and in particular to a cooling device for cable manufacturing. Background Technology

[0002] During the manufacturing process of cables, it is usually necessary to cool them down. When cooling is carried out, most of the devices that use spray nozzles for cooling do not have a circulation device, so the cooling water after spraying cannot be recycled, thus wasting a lot of water resources.

[0003] The existing publication number CN220584981U discloses a cooling device for cable manufacturing, including a workbench. A water-draining trough is formed in the center of the top of the workbench. A material conveying frame is fixedly mounted on the outer side of the top of the workbench near the water-draining trough. A material conveying channel is formed in the center of the top of the material conveying frame. Multiple drainage holes are formed at the bottom of the material conveying channel. Support legs are fixed on both sides of the bottom of the workbench, and a water collection tank is provided at the top of the inner wall of each of the two support legs. This cooling device for cable manufacturing includes a water collection tank, a water pump, connecting hoses, a water storage box, nozzles, drainage holes, and a water-draining trough. The water pump draws water from the water collection tank and sprays it downwards through the nozzles for cooling. The sprayed cooling water passes through the drainage holes and the water-draining trough before falling into the water collection tank. This method allows for the recycling of the sprayed cooling water, avoiding water waste and making the entire cooling process more energy-efficient and environmentally friendly.

[0004] However, although the device conserves resources by recycling cooling water, the temperature of the cooling water will gradually rise during prolonged use. If the cooling water temperature is too high, it may lead to poor cooling performance and fail to meet the stringent temperature requirements during cable manufacturing. While the baffles in the water tank can extend the flow path of the cooling water, thus aiding heat dissipation to some extent, this method may be less efficient. In practical use, especially in high-temperature environments, the cooling water temperature may not be able to drop to the ideal level quickly enough, affecting the cooling effect. Utility Model Content

[0005] The purpose of this invention is to provide a cooling device for cable manufacturing, which solves the problem that although the partition plate of the existing cooling device for cable manufacturing can extend the flow path of cooling water and thus help heat dissipation to a certain extent, this heat dissipation method is inefficient and affects the cooling effect in high-temperature environments.

[0006] To achieve the above objectives, this utility model provides a cooling device for cable manufacturing, including a workbench, a feeding trough, a water storage box, and a water pump. The feeding trough is located on top of the workbench, the water storage box is located on top of the feeding trough, and the device also includes a cooling assembly.

[0007] The cooling assembly includes a water collection tank, a partition plate, a cooling box, and a filter component. The water collection tank is located below the workbench. The partition plate is fixedly connected to the water collection tank and located inside the water collection tank. The partition plate has a hollow structure. The cooling box is connected to the interior of the partition plate. The filter component is connected to the cooling box. The water pump is connected to both the water collection tank and the water storage box.

[0008] The filter component includes a sliding plate and a dustproof net. The sliding plate is detachably connected to the cooling box, and the dustproof net is detachably connected to the sliding plate and located at the air inlet of the cooling box.

[0009] The partition plate has multiple extending protrusions, which are distributed along the length of the partition plate and are respectively connected to the cooling box.

[0010] The cooling device for cable manufacturing also includes a water-drawing plate located between the material conveying trough and the workbench.

[0011] The cooling device for cable manufacturing also includes a filter plate, which is detachably connected to the workbench and located on the side of the workbench near the water inlet plate.

[0012] This utility model discloses a cooling device for cable manufacturing. The workbench provides support, and the feed trough, which has through holes for preliminary filtration of spray water, is used. A water pump draws water from a collection tank below the workbench into a storage box. Water is then sprayed onto the cable in the feed trough through nozzles in the storage box for cooling. The collection tank contains multiple partitions, which are staggered inside to form a long channel. Before the sprayed cooling water is re-drawn by the water pump, it is cooled through this long channel, thus improving the cooling effect of the recycled cooling water. Simultaneously, the partitions are hollow structures. A cooler and a fan are installed in the cooling box to draw in outside air for cooling. The air is then transported through pipes to the partitions and finally discharged outwards through the through holes connecting the partitions and the collection tank, accelerating the cooling of the water in the collection tank and ensuring a rapid temperature drop. A filter element filters the air before it enters the cooling box. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0014] Figure 1 This is a schematic diagram of the overall structure of a cooling device for cable manufacturing according to the first embodiment of this utility model.

[0015] Figure 2 This is a cross-sectional structural schematic diagram of a cooling device for cable manufacturing according to the first embodiment of this utility model.

[0016] Figure 3 This is a schematic diagram of the inner structure of the water collection tank according to the first embodiment of this utility model.

[0017] In the diagram: 101-Workbench, 102-Feeding trough, 103-Water storage box, 104-Water pump, 105-Water collection tank, 106-Divider plate, 107-Cooling box, 108-Sliding plate, 109-Dustproof net, 110-Extended protrusion, 111-Water guide plate, 112-Filter plate. Detailed Implementation

[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0019] The first embodiment of this application is as follows:

[0020] Please see Figures 1 to 3 ,in, Figure 1 This is a schematic diagram of the overall structure of a cooling device for cable manufacturing according to the first embodiment of this utility model. Figure 2 This is a cross-sectional structural schematic diagram of a cooling device for cable manufacturing according to the first embodiment of this utility model. Figure 3 This is a schematic diagram of the inner structure of the water collection tank 105 according to the first embodiment of this utility model.

[0021] This utility model provides a cooling device for cable manufacturing, comprising a workbench 101, a feed trough 102, a water storage box 103, a water pump 104, a cooling assembly, a water inlet plate 111, and a filter plate 112. The cooling assembly includes a water collection tank 105, a partition plate 106, a cooling box 107, and a filter component. The filter component includes a sliding plate 108 and a dustproof net 109. The partition plate 106 has multiple extending protrusions 110. The aforementioned solution solves the problem that although the partition plate 106 of the existing cable manufacturing cooling device can extend the flow path of the cooling water, thereby helping to dissipate heat to a certain extent, this heat dissipation method is inefficient and affects the cooling effect in high-temperature environments. It is understood that the aforementioned solution can also be used to solve water filtration problems.

[0022] In this specific embodiment, the material conveying trough 102 is located at the top of the workbench 101, the water storage box 103 is located at the top of the material conveying trough 102, the water collection tank 105 is located below the workbench 101, the partition plate 106 is fixedly connected to the water collection tank 105 and located inside the water collection tank 105, the partition plate 106 has a cavity structure, the cooling box 107 communicates with the interior of the partition plate 106, the filter component is connected to the cooling box 107, and the water pump 104 is connected to the water collection tank 105 and the water storage box 103 respectively. The workbench 101, the material conveying trough 102, the water storage box 103, and the water pump 104 are all disclosed in publication number CN220584981U, and will not be described in detail here. The water collection tank 105 is located below the workbench 101 and carries the water source after spraying. There are multiple partition plates 106, which are respectively located on one side of the water collection tank 105 and are staggered to form a long channel. Before the cooling water after spraying is re-drawn by the water pump 104, it is cooled through this long channel, thereby improving the cooling effect of the recycled cooling water. The partition plates 106 are hollow structures and interconnected. The cooling box 107... The cooling box 107 is connected to the cooling box via a pipeline. A cooler and a fan are installed in the cooling box 107. A filter component is installed at the air inlet of the cooling box 107 to prevent dust from entering. The fan draws outside air into the cooling box 107, where it is cooled by the cooler and then flows into the partition plate 106. The partition plate 106 is made of a thermally conductive material, which cools the water source rapidly upon contact. The air then exits the water collection tank 105 through the opening connecting the partition plate 106 and the water collection tank 105. The cooled water is pumped into the water storage box 103 by the water pump 104 and sprayed out by the nozzles installed in the water storage box 103, thus realizing water recycling.

[0023] The sliding plate 108 is detachably connected to the cooling box 107, and the dustproof net 109 is detachably connected to the sliding plate 108 and located at the air inlet of the cooling box 107. The sliding plate 108 is slidably disposed at the air inlet of the partition plate 106, and the dustproof net 109 is installed on its inner side by bolts, thereby facilitating the removal and cleaning of the dustproof net 109. The dustproof net 109 is used to isolate dust and prevent dust from entering and affecting the cooling effect.

[0024] Secondly, the partition plate 106 has a plurality of extending protrusions 110, which are distributed along the length of the partition plate 106 and are respectively connected to the cooling box 107. The plurality of extending protrusions 110 are made of thermally conductive material, communicate with the interior of the partition plate 106, receive cooling air, and increase the contact area between the partition plate 106 and water, which is beneficial to accelerate the cooling water.

[0025] Meanwhile, the water guide plate 111 is located between the material conveying trough 102 and the workbench 101. The water guide plate 111 is placed below the material conveying trough 102 to guide the falling spray water and prevent water from splashing.

[0026] In addition, the filter plate 112 is detachably connected to the workbench 101 and is located on the side of the workbench 101 near the water inlet plate 111. The filter plate 112 is made of activated carbon or other filter material to perform secondary filtration of the spray water, preventing impurities from entering the water collection tank 105 and causing blockage of the water pump 104, thus promoting better water circulation.

[0027] Using a cooling device for cable manufacturing according to this embodiment, the cable enters the conveying trough 102. The water pump 104 draws water from the water collection tank 105 into the water storage box 103, and then sprays the cable in the conveying trough 102 with nozzles to cool it down. The sprayed water undergoes preliminary filtration through the through holes of the conveying trough 102, and then enters the water collection tank 105 below the workbench 101 under the guidance of the water guide plate 111. Multiple partition plates 106 are staggered inside the water collection tank 105 to form a long channel. The cooling water after spraying is then re-pumped by the water pump 104. Before being drawn in, the water is cooled through this long channel, thereby improving the cooling effect of the recycled cooling water. Meanwhile, the partition plate 106 has a cavity structure, and the cooling box 107 is equipped with a refrigerator and a fan to draw in outside air and cool it. Then, the air is transported through pipelines to the partition plate 106 and finally discharged outwards through the through hole connecting the partition plate 106 and the water collection tank 105, accelerating the cooling of the water in the water collection tank 105 and making it cool down quickly. Even in high-temperature environments, the cooling effect can be guaranteed. The filter component filters the air before it enters the cooling box 107.

[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A cooling device for cable manufacturing, comprising a workbench, a conveying trough, a water storage box, and a water pump, wherein the conveying trough is located on top of the workbench, and the water storage box is located on top of the conveying trough, characterized in that, It also includes cooling components; The cooling assembly includes a water collection tank, a partition plate, a cooling box, and a filter component. The water collection tank is located below the workbench. The partition plate is fixedly connected to the water collection tank and located inside the water collection tank. The partition plate has a hollow structure. The cooling box is connected to the interior of the partition plate. The filter component is connected to the cooling box. The water pump is connected to both the water collection tank and the water storage box.

2. The cooling device for cable manufacturing as described in claim 1, characterized in that, The filter component includes a sliding plate and a dustproof net. The sliding plate is detachably connected to the cooling box, and the dustproof net is detachably connected to the sliding plate and is located at the air inlet of the cooling box.

3. The cooling device for cable manufacturing as described in claim 1, characterized in that, The partition plate has multiple extending protrusions distributed along the length of the partition plate and communicating with the cooling box.

4. The cooling device for cable manufacturing as described in claim 1, characterized in that, The cooling device for cable manufacturing also includes a water-drawing plate located between the material conveying trough and the workbench.

5. The cooling device for cable manufacturing as described in claim 4, characterized in that, The cooling device for cable manufacturing also includes a filter plate, which is detachably connected to the workbench and located on the side of the workbench near the water inlet plate.

Citation Information

Patent Citations

  • Cooling device for cable manufacturing

    CN220584981U