Cooling device of rubber protective sleeve for inhaul cable
By designing the combination of the immersion tank, circulation mechanism and blowing mechanism, the problem of long cooling time of the rubber protective cover is solved, and rapid cooling and efficient processing are achieved.
Patent Information
- Application Number
- CN202422181710.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The existing cables are cooled for too long after high-temperature mixing with rubber protective sleeves, which affects processing efficiency.
A cooling device including a water immersion tank, a circulation mechanism, a water absorption sponge and a blowing mechanism is designed to achieve rapid cooling through the immersion, water absorption and blowing steps, and the filtration and reuse of water is achieved by using the circulation mechanism, and the protective sleeve is thoroughly dried in combination with the blowing mechanism.
It realizes rapid cooling of rubber protective sleeves, simplifies processing processes, and improves production efficiency.
Smart Images

Figure CN223071783U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cable processing, and more specifically relates to a cooling device for a rubber protection sleeve of a cable. Background Technique
[0002] A cable is a commonly used workpiece in automobiles and motorcycles; generally, a layer of rubber protection sleeve needs to be arranged outside the cable. When processing the rubber, after high-temperature mixing, the temperature of the rubber when it comes out of the furnace is relatively high, and it needs to wait for a long time to cool down before proceeding to the next process, which affects the processing efficiency.
[0003] Therefore, there is an urgent need for a cooling device for a rubber protection sleeve of a cable. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a cooling device for a rubber protection sleeve of a cable to solve the problems in the background technique.
[0005] To solve the above technical problems, the technical solutions adopted by the utility model are as follows.
[0006] A cooling device for a rubber protection sleeve of a cable includes a tank-shaped immersion water tank; horizontal cross bars are arranged at both ends of the immersion water tank, and a first pressing roller and a second pressing roller for pressing the protection sleeve into the immersion water tank are respectively arranged in the middle of the two cross bars; a water inlet pipe is arranged above the immersion water tank, the bottom of the right end of the immersion water tank is communicated with a circulation pipe, the circulation pipe is communicated with a circulation mechanism, and the water outlet end of the circulation mechanism is connected to the water inlet pipe; a water outlet table is arranged at the wire outlet end of the immersion water tank, a pair of water absorption sponges arranged up and down for drying the water droplets on the surface of the protection sleeve are arranged on the water outlet table, and a positioning sleeve is arranged outside the water absorption sponges; a blowing mechanism for drying the remaining water of the protection sleeve is arranged on the right side of the water outlet table, and a pair of traction rollers for providing traction force are arranged on the right side of the blowing mechanism.
[0007] Further optimizing the technical solution, the circulation mechanism includes a filter box arranged below the immersion water tank, and a horizontal filter screen is arranged in the filter box; the circulation pipe is connected to the side wall of the filter box below the filter screen, a water outlet pipe is communicated with the side wall of the filter box above the filter screen, and a water pump is arranged on the water outlet pipe.
[0008] Further optimizing the technical solution, the length of the filter box is greater than the sum of the lengths of the immersion water tank and the water outlet table, a water replenishing pipe is arranged on the filter box, and a sewage discharge pipe is arranged at the bottom of the filter box.
[0009] Further optimize the technical solution. The blowing mechanism is composed of a first blowing pipe and a second blowing pipe. The first blowing pipe is located on the right side of the water outlet table, and the direction of the first blowing pipe is the same as the extending direction of the protective sleeve. A plurality of air outlets are arranged on the part of the first blowing pipe opposite to the protective sleeve. A first air inlet is arranged on the first blowing pipe, and the first air inlet is connected to a blower.
[0010] Further optimize the technical solution. The second blowing pipe has the same structure as the first blowing pipe, except that the second blowing pipe is located below the protective sleeve and is arranged in the opposite direction to the first blowing pipe.
[0011] Due to the adoption of the above technical solutions, the technical progress achieved by the present utility model is as follows.
[0012] A cooling device for a rubber protective sleeve of a cable provided by the present utility model first wets and cools the rubber protective sleeve by arranging a soaking tank. The soaking tank is connected to a filtering tank through a circulating pipe to realize the filtration and recycling of water flow. The water droplets on the surface of the rubber protective sleeve are wiped off by arranging a water-absorbing sponge, and then air-dried and cooled by a blowing mechanism. The present utility model has the advantages of good cooling effect, simple structure and convenient use. Description of the Drawings
[0013] Figure 1 is a schematic structural diagram of the present utility model;
[0014] Among them: 1. Soaking tank, 2. First pressing roller, 3. Second pressing roller, 4. Water inlet pipe, 5. Filtering tank, 6. Filter screen, 7. Circulating pipe, 8. Water outlet pipe, 9. Water outlet table, 10. Water-absorbing sponge, 11. Blowing mechanism, 12. First blowing pipe, 13. First air inlet, 14. Second blowing pipe, 15. Traction roller. Detailed Embodiment
[0015] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.
[0016] A cooling device for a rubber protective sleeve of a cable, in combination with Figure 1 as shown, includes a soaking tank 1, a first pressing roller 2, a second pressing roller 3, a water inlet pipe 4, a filtering tank 5, a filter screen 6, a circulating pipe 7, a water outlet pipe 8, a water outlet table 9, a water-absorbing sponge 10, a blowing mechanism 11, a first blowing pipe 12, a first air inlet 13, a second blowing pipe 14, and a traction roller 15.
[0017] The soaking tank 1 is in a trough shape. A horizontal cross bar is arranged at each of the two ends of the soaking tank 1. A first pressing roller 2 and a second pressing roller 3 are respectively arranged in the middle of the two cross bars for pressing the protective sleeve into the water in the soaking tank 1.
[0018] Above the immersion water tank 1, a water inlet pipe 4 is provided. The bottom of the right end of the immersion water tank 1 is connected to a circulation pipe 7, and the circulation pipe 7 is connected to a circulation mechanism. The circulation mechanism includes a filter tank 5 arranged below the immersion water tank 1. A horizontally arranged filter screen 6 is arranged in the filter tank 5 for filtering the circulated water. The other end of the circulation pipe 7 is connected to the side wall of the filter tank 5 below the filter screen 6. A water outlet pipe 8 is connected to the side wall of the filter tank 5 above the filter screen 6, and a water pump is arranged on the water outlet pipe 8.
[0019] The length of the filter tank 5 is greater than the sum of the lengths of the immersion water tank 1 and the water outlet platform 9. The filter tank 5 can collect the water squeezed out from the water absorption sponge 10 for recycling, while ensuring environmental hygiene. A water replenishing pipe is arranged on the filter tank 5, and a sewage pipe is arranged at the bottom of the filter tank 5.
[0020] The water outlet end of the circulation mechanism is connected to the water inlet pipe 4 to send the filtered water back to the immersion water tank again.
[0021] A water outlet platform 9 is arranged at the wire outlet end of the immersion water tank 1. A pair of vertically arranged water absorption sponges 10 are arranged on the water outlet platform 9. The water absorption sponges 10 are used to dry the water droplets on the surface of the protective sleeve. A positioning sleeve is arranged outside the water absorption sponge to prevent the water absorption sponge from falling off or deforming.
[0022] A blowing mechanism 11 for drying the remaining water on the protective sleeve is arranged on the right side of the water outlet platform 9. The blowing mechanism 11 is composed of a first blowing pipe and a second blowing pipe 14. The first blowing pipe 12 is located on the right side of the water outlet platform 9, and the direction of the first blowing pipe 12 is the same as the extending direction of the protective sleeve. A plurality of air outlets are arranged on the part of the first blowing pipe 12 opposite to the protective sleeve. A first air inlet 13 is arranged on the first blowing pipe 12, and the first air inlet 13 is connected to a fan.
[0023] The second blowing pipe 14 has the same structure as the first blowing pipe 12, except that the second blowing pipe 14 is located below the protective sleeve and is arranged in the opposite direction to the first blowing pipe 12.
[0024] A pair of traction rollers 15 are arranged on the right side of the blowing mechanism 11. The traction rollers 15 are used to provide traction for the protective sleeve, and the traction rollers are connected to a driving motor.
[0025] When the present utility model is actually used, the rubber protective sleeve moves under the action of the traction rollers and successively passes through the steps of immersion, water absorption and drying. Specifically, the rubber protective sleeve is immersed in water under the pressure of the first pressing roller and the second pressing roller in the immersion water tank. When the rubber protective sleeve after water outlet passes through the water absorption sponge, the water droplets on the surface are absorbed by the water absorption sponge, leaving only a thin layer of moist water marks on the surface. Then the rubber protective sleeve successively passes through the first blowing pipe and the second blowing pipe, and the water on the surface of the rubber protective sleeve is completely dried.
[0026] The water in the immersion water tank enters the filtration tank through the circulation pipe. The filtration tank filters and cools the water. When necessary, make up water through the make-up water pipe.
Claims
1. A temperature reduction device for a rubber protective sleeve of a cable, characterized in that: It includes a soaking tank (1) in a trough shape; horizontal crossbars are arranged at both ends of the soaking tank (1), and a first pressing roller (2) and a second pressing roller (3) for pressing the protective sleeve into the soaking tank (1) are respectively arranged in the middle of the two crossbars; a water inlet pipe (4) is arranged above the soaking tank (1), a circulation pipe (7) is communicated with the bottom of the right end of the soaking tank (1), the circulation pipe (7) is communicated with a circulation mechanism, and the water outlet end of the circulation mechanism is connected to the water inlet pipe (4); a water outlet table (9) is arranged at the wire outlet end of the soaking tank (1), a pair of water-absorbing sponges (10) arranged up and down for drying the water droplets on the surface of the protective sleeve are arranged on the water outlet table (9), and a positioning sleeve is arranged outside the water-absorbing sponge; a blowing mechanism (11) for blowing dry the remaining water of the protective sleeve is arranged on the right side of the water outlet table (9), and a pair of traction rollers (15) for providing traction are arranged on the right side of the blowing mechanism (11).
2. The cooling device for the rubber protective sleeve of a cable-stayed cable according to claim 1, characterized in that: The circulation mechanism includes a filter tank (5) arranged below the soaking tank (1), and a horizontally arranged filter screen (6) is arranged in the filter tank (5); the circulation pipe (7) is connected to the side wall of the filter tank (5) below the filter screen (6), a water outlet pipe (8) is communicated with the side wall of the filter tank (5) above the filter screen (6), and a water pump is arranged on the water outlet pipe (8).
3. The cooling device for the rubber protective sleeve of the cable-stayed cable according to claim 2, characterized in that: The length of the filter tank (5) is greater than the sum of the lengths of the soaking tank (1) and the water outlet table (9), a water replenishing pipe is arranged on the filter tank (5), and a sewage discharge pipe is arranged at the bottom of the filter tank (5).
4. The cooling device for the rubber protective sleeve of a cable-stayed cable according to claim 1, characterized in that: The blowing mechanism (11) is composed of a first blowing pipe and a second blowing pipe (14); the first blowing pipe (12) is located on the right side of the water outlet table (9), and the direction of the first blowing pipe (12) is the same as the extending direction of the protective sleeve, and a plurality of air outlets are arranged on the part of the first blowing pipe (12) opposite to the protective sleeve; a first air inlet (13) is arranged on the first blowing pipe (12), and the first air inlet (13) is connected to a blower.
5. The cooling device for the rubber protective sleeve of a cable-stayed cable according to claim 4, characterized in that: The second blowing pipe (14) has the same structure as the first blowing pipe (12), the difference is that the second blowing pipe (14) is located below the protective sleeve, and the setting direction is opposite to that of the first blowing pipe (12).