Cable double-layer water tank cooling device

By designing a double-layer water tank cooling device for cables arranged vertically, combined with the design of guide wheel assembly and water inlet pipe, the problems of large footprint and low cooling efficiency of cable cooling devices are solved, achieving efficient and stable cable cooling effect and avoiding the temperature gradient problem of insulation layer.

CN223590062UActive Publication Date: 2025-11-25YINGTAN CHAOLONG INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423281479.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing cable cooling devices occupy a large area, have low cooling efficiency, and cannot effectively reduce the temperature gradient of the cable surface insulation layer, which may lead to potential microcracks or delamination.

Method used

The system employs a first and second cooling water tank arranged vertically, combined with a cable guiding device and a guide wheel assembly. The water inlet and outlet are designed to be opposite to the direction of cable movement to enhance the cooling effect. The overflow speed of the coolant is controlled by a baffle plate, and the temperature gradient is adjusted by a return water inlet and a water storage tank.

Benefits of technology

This achieves sufficient cooling of the cable, reduces the footprint of the device, improves cooling efficiency, avoids temperature gradient problems on the cable surface insulation layer, and ensures the stability and uniform cooling of the cable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cable cooling, in particular to a cable double-layer water tank cooling device, which comprises a first cooling water tank, a second cooling water tank and a water inlet pipe, the first cable guiding device and the second cable guiding device are arranged at the two ends of the first cooling water tank and the second cooling water tank, a first threading hole is formed in the first cable guiding device, a second threading hole is formed in the second cable guiding device, and cable guiding wheel sets are arranged in the first cable guiding device and the second cable guiding device; and the guide cable penetrates in from the first threading hole, passes through the first cooling water tank and the second cooling water tank and penetrates out from the second threading hole. By arranging the first cooling water tank and the second cooling water tank up and down and arranging the cable guide wheel sets in the first cable guide device and the second cable guide device respectively, cables can be fully cooled in the first cooling water tank and the second cooling water tank, meanwhile, the occupied area of the device is reduced, and space is saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable cooling technical field, concretely relates to a cable double -deck sink cooling device. BACKGROUND

[0002] Cable is the general term of optical cable, cable and other articles. Cable is mainly used for control installation, connected equipment and power transmission. Cable is usually composed of internal metal wire core and insulating layer wrapped outside the wire core, and the insulating layer is generally extruded to the surface of the metal wire core by the extruder, and then cooled and formed.

[0003] Cable is generally cooled and formed by cooling sink, cooling liquid is filled in the cooling sink, and the cable passes through the cooling liquid and is immersed in the cooling liquid, so that the cooling of the cable is completed. In the prior art, in order to ensure the effect of cable cooling and forming, the length of the cooling sink is generally ensured, and then the land area is large. UTILITY MODEL CONTENT

[0004] In view of the above technical problems existing in the prior art, the utility model provides a cable double -deck sink cooling device.

[0005] In order to achieve the above purpose, the utility model provides the following technical scheme:

[0006] A kind of cable double -deck sink cooling device, including first cooling sink and second cooling sink arranged up and down, and water inlet pipe for injecting cooling liquid into first cooling sink and second cooling sink;It also includes first cable guide device and second cable guide device, first cable guide device and second cable guide device are arranged at both ends of first cooling sink and second cooling sink, first cable guide device is equipped with first threading hole, second cable guide device is equipped with second threading hole, cable guide wheel group is respectively arranged in first cable guide device and second cable guide device, for guiding cable to pass through first threading hole, pass through first cooling sink, then pass through cable guide wheel group in second cable guide device and reverse to second cooling sink, again pass through cable guide wheel group in first cable guide device and pass through first cooling sink from second threading hole.

[0007] Preferably, the first cooling sink includes at least one group of left cooling sink and right cooling sink, and the number of the second cooling sink is one less than the total number of the left cooling sink and the right cooling sink in each group of the first cooling sink.

[0008] Preferably, the cable guide wheel group includes a first guide wheel group and a second guide wheel, the second guide wheel is parallel below the first guide wheel group, the first guide wheel group includes at least one group of symmetrically arranged left guide wheel and right guide wheel, the left guide wheel corresponds to the left cooling sink, the right guide wheel corresponds to the right cooling sink, and the second guide wheel corresponds to the second cooling sink.

[0009] Preferably, the first threading hole corresponds to one of the left guide wheel and the right guide wheel, and the second threading hole corresponds to the other one of the left guide wheel and the right guide wheel.

[0010] Preferably, the first cooling water tank is arranged in the first shell, and the second cooling water tank is arranged in the second shell.

[0011] Preferably, the first cooling water tank is provided with multiple sections, the multiple sections of the first cooling water tank are arranged at intervals along the length direction of the first shell, and each section of the first cooling water tank is arranged at an interval from the bottom of the first shell; the second cooling water tank is provided with multiple sections, the multiple sections of the second cooling water tank are arranged at intervals along the length direction of the second shell, and each section of the second cooling water tank is arranged at an interval from the bottom of the second shell.

[0012] Preferably, multiple water inlet pipes are arranged in the first shell and the second shell, the water outlet direction of each water inlet pipe is opposite to the moving direction of the cable, the number of the water inlet pipes in the first shell matches the total number of the left cooling water tank and the right cooling water tank in the multiple sections of the first cooling water tank, and the number of the water inlet pipes in the second shell matches the number of the multiple sections of the second cooling water tank.

[0013] Preferably, the first shell further movably has a first wire wheel set, the first wire wheel set is located between two adjacent sections of the first cooling water tank, the first wire wheel set comprises at least one set of left wire wheels and right wire wheels, the left wire wheels are used for guiding the cable from the left cooling water tank, and the right wire wheels are used for guiding the cable from the right cooling water tank; the second cooling water tank movably has a second wire wheel, the second wire wheel is located between two adjacent sections of the second cooling water tank, and the second wire wheel is used for guiding the cable from the second cooling water tank.

[0014] Preferably, the two ends of the first shell are provided with first water return openings, the two ends of the second shell are provided with second water return openings, and the two ends of each section of the first cooling water tank and the second cooling water tank are respectively provided with water baffle plates, the water baffle plates are used for delaying the overflow speed of the cooling liquid from the first cooling water tank and the second cooling water tank.

[0015] The utility model discloses the beneficial effects of:

[0016] The utility model discloses a kind of cable double-layer sink cooling devices, including first cooling sink and second cooling sink arranged up and down, and water inlet pipe for injecting coolant into first cooling sink and second cooling sink;It further includes first cable guide device and second cable guide device, first cable guide device and second cable guide device are arranged at both ends of first cooling sink and second cooling sink, first cable guide device is equipped with first threading hole, second cable guide device is equipped with second threading hole, cable guide wheel group is respectively arranged in first cable guide device and second cable guide device, for guiding cable from first threading hole and passing through first cooling sink and second cooling sink again from second threading hole and passing out. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a kind of cable double-layer sink cooling device perspective view in example.

[0018] Figure 2 It is the enlarged view of A in Figure 1 .

[0019] Figure 3 It is another perspective view of a kind of cable double-layer sink cooling device in example.

[0020] Figure 4 It is the enlarged view of B in Figure 3 .

[0021] Figure 5 It is first shell perspective view in example.

[0022] Figure 6 It is the enlarged view of C in Figure 5 .

[0023] Figure 7 It is the enlarged view of D in Figure 5 .

[0024] Figure 8 It is second shell perspective view in example.

[0025] Figure 9 It is the enlarged view of E in Figure 8 .

[0026] Figure 10 It is first cable guide device and cable guide wheel group perspective view in example.

[0027] Reference numerals: 1. First housing; 101. First cooling water tank; 102. Left cooling water tank; 103. Right cooling water tank; 104. First guide wheel assembly; 105. Left guide wheel; 106. Right guide wheel; 107. First return water inlet;

[0028] 2. Second housing; 201. Second cooling water tank; 202. Second guide wheel; 203. Second return water inlet;

[0029] 3. Water inlet pipe;

[0030] 4. Water baffle;

[0031] 5. First cable guide device; 501. First cable threading hole;

[0032] 6. Second cable guide device; 601. Second cable threading hole;

[0033] 7. Cable guide wheel assembly; 701. First guide wheel assembly; 702. Left guide wheel; 703. Right guide wheel; 704. Second guide wheel. Detailed Implementation

[0034] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Unless otherwise specified, the following embodiments and features can be combined with each other.

[0035] This embodiment provides a cable double-layer water tank cooling device, such as... Figures 1 to 10 As shown, the system includes a first housing 1 and a second housing 2 that are parallel to each other. The first housing 1 is located above the second housing 2. A first cooling water tank 101 for cooling cables is provided inside the first housing 1, and a second cooling water tank 201 for cooling cables is provided inside the second housing 2. The first cooling water tank 101 includes at least one set of left cooling water tanks 102 and right cooling water tanks 103. The number of second cooling water tanks 201 is one less than the sum of the number of left cooling water tanks 102 and right cooling water tanks 103 in each set of the first cooling water tank 101.

[0036] The first cooling water tank 101 and the second cooling water tank 201 are respectively provided with multiple sections, the multiple sections of the first cooling water tank 101 are arranged in series along the length direction of the first shell 1, and the multiple sections of the second cooling water tank 201 are arranged in series along the length direction of the second shell 2. When the cable is cooled, the cable first passes through the right cooling water tank 103 of the first cooling water tank 101, then passes through the second cooling water tank 201, and finally returns to the left cooling water tank 102 in the first cooling water tank 101. By arranging multiple first cooling water tanks 101 and second cooling water tanks 201, the time of the cable in the first cooling water tank 101 and the second cooling water tank 201 can be increased, so that the cooling efficiency is improved, and the cable can be uniformly cooled to the required temperature. The adjacent first cooling water tanks 101 and the adjacent second cooling water tanks 201 are arranged in series, which is beneficial to maintenance and cleaning work.

[0037] Further, the first shell 1 is further provided with a first wire wheel set 104, and the second shell 2 is provided with a second wire wheel 202. The first wire wheel set 104 is arranged between adjacent first cooling water tanks 101 and movably arranged in the first shell 1. The second wire wheel 202 is arranged between adjacent second cooling water tanks 201 and movably arranged in the second shell 2. Specifically, the first wire wheel set 104 and the second wire wheel 202 can be adjusted in position up and down according to the expansion or contraction of the cable in the cooling process, so that the cable is always in the best position in the cooling water tank, thereby improving the cooling effect and stability of the cable.

[0038] The first wire wheel set 104 includes at least one left wire wheel 105 and one right wire wheel 106. The number of the second wire wheel 202 is one less than the total number of the left wire wheel 105 and the right wire wheel 106 in the first wire wheel set 104. The left wire wheel 105 is used to guide the cable from the left cooling water tank 102, the right wire wheel 106 is used to guide the cable from the right cooling water tank 103, and the second wire wheel 202 is used to guide the cable from the second cooling water tank 201.

[0039] Further, a plurality of water inlet pipes 3 are arranged in the first shell 1 and the second shell 2 respectively. The water inlet pipes 3 are preferably universal water pipes, which are convenient for adjusting the direction and angle of the water outlet of the water inlet pipe 3. The number of the water inlet pipes 3 in the first shell 1 matches the total number of the left cooling water tank 102 and the right cooling water tank 103 in the multiple first cooling water tanks 101, so that each left cooling water tank 102 and right cooling water tank 103 is provided with a corresponding water inlet pipe 3. The number of the water inlet pipes 3 in the second shell 2 matches the number of the multiple second cooling water tanks 201, so that each second cooling water tank 201 is provided with a corresponding water inlet pipe 3.

[0040] Further, the water outlet direction of the water inlet pipe 3 in the first shell 1 and the second shell 2 is opposite to the cable moving direction. Since the water outlet direction of the water inlet pipe 3 is opposite to the cable moving direction, the impact force of the water flow on the cable can be increased, which helps to improve the cooling efficiency and ensure that the cable is quickly cooled to the required temperature.

[0041] Further, the first cooling water tank 101 is spaced apart from the bottom of the first shell 1, that is, the first cooling water tank 101 does not directly contact the bottom of the first shell 1, but a certain space is left, so that the excess cooling liquid in the first cooling water tank 101 can flow into the first shell 1. Similarly, the second cooling water tank 201 is also spaced apart from the bottom of the second shell 2. First water return ports 107 are also provided at both ends of the first shell 1, and second water return ports 203 are also provided at both ends of the second shell 2. The first water return ports 107 are used to collect the cooling liquid overflowing from the first cooling water tank 101, and the second water return ports 203 are used to collect the cooling liquid overflowing from the second cooling water tank 201. In actual use, the first water return ports 107 and the second water return ports 203 are respectively connected to a water storage tank for collecting the cooling liquid overflowing from the first cooling water tank 101 and the second cooling water tank 201. The water storage tank is provided with a water outlet pipe connected to the water inlet pipe 3 in the first shell 1 and the second shell 2. The water storage tank is also provided with a heating block for heating the cooling liquid, so that the cable can be slowly cooled, avoiding the generation of temperature gradient inside the cable due to sudden temperature drop of the cooling liquid, avoiding the generation of thermal stress, and further avoiding the generation of micro-cracks or delamination of the insulation layer covering the outer surface of the cable.

[0042] Further, water baffle plates 4 are also provided at both ends of the first cooling water tank 101 and the second cooling water tank 201. By providing the water baffle plates 4, the overflow speed of the cooling liquid from the first cooling water tank 101 and the second cooling water tank 201 can be slowed down, so that the cable can be in contact with the cooling liquid for a longer time, which helps to improve the cooling efficiency.

[0043] Further, the cable double-layer water tank cooling device also includes a first cable guide device 5 and a second cable guide device 6. The first cable guide device 5 is provided at one end of the first shell 1 and the second shell 2 for connecting one end of the first shell 1 and the second shell 2. The second cable guide device 6 is provided at the other end of the first shell 1 and the second shell 2 for connecting the other end of the first shell 1 and the second shell 2.

[0044] The first cable guiding device 5 and the second cable guiding device 6 are further provided with a cable guiding wheel set 7, which comprises at least one first guiding wheel set 701 and one second guiding wheel 704 parallel to the first guiding wheel set 701 and below the first guiding wheel set 701, the first guiding wheel set 701 comprising a left guiding wheel 702 and a right guiding wheel 703, wherein the number of the second guiding wheel 704 is one less than the total number of the left guiding wheel 702 and the right guiding wheel 703 in the first guiding wheel set 701, the left guiding wheel 702 corresponding to the left cooling water tank 102, the right guiding wheel 703 corresponding to the right cooling water tank 103, and the second guiding wheel 704 corresponding to the second cooling water tank 201.

[0045] The first cable guiding device 5 is further provided with a first threading hole 501, and the second cable guiding device 6 is further provided with a second threading hole 601, the first threading hole 501 corresponding to one of the left guiding wheel 702 and the right guiding wheel 703, and the second threading hole corresponding to the other one of the left guiding wheel 702 and the right guiding wheel 703, preferably, the first threading hole 501 corresponding to the right guiding wheel 703, and the second threading hole 601 corresponding to the left guiding wheel 702.

[0046] In use, the cable enters from the first threading hole 501, passes through the right guiding wheel 703 to enter the right cooling water tank 103 for cooling, then passes through the right guiding wheel 703 and the second guiding wheel 704 in the second cable guiding device 6 to enter the second cooling water tank 201 for cooling, then passes through the second guiding wheel 704 and the left guiding wheel 702 in the first cable guiding device 5 to enter the left cooling water tank 102 for cooling, and finally passes through the left guiding wheel 702 in the second cable guiding device 6 from the second threading hole 601.

[0047] In the description of the present application, obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the accompanying drawings can be arranged and designed in various different configurations.

Claims

1. A cable dual-layered water channel cooling device, characterized by, The application relates to a cable cooling device, which comprises a first cooling water tank (101) and a second cooling water tank (201) arranged in a vertical direction, a water inlet pipe (3) for injecting cooling liquid into the first cooling water tank (101) and the second cooling water tank (201), a first cable guide device (5) and a second cable guide device (6), the first cable guide device (5) and the second cable guide device (6) are arranged at two ends of the first cooling water tank (101) and the second cooling water tank (201), the first cable guide device (5) is provided with a first threading hole (501), the second cable guide device (6) is provided with a second threading hole (601), and a cable guide wheel set (7) is arranged in the first cable guide device (5) and the second cable guide device (6) respectively, so as to guide the cable to pass through the first threading hole (501), pass through the first cooling water tank (101), pass through the second cable guide device (6) again, pass through the second cooling water tank (201) in a reverse direction, pass through the first cable guide device (5) again, pass through the first cooling water tank (101) again, and then pass out of the second threading hole (601).

2. A cable dual-layered water channel cooling device according to claim 1, wherein, The first cooling water tank (101) comprises at least one group of left cooling water tanks (102) and right cooling water tanks (103), and the number of the second cooling water tank (201) is one less than the total number of the left cooling water tanks (102) and the right cooling water tanks (103) in each group of the first cooling water tank (101).

3. A cable dual-layered water channel cooling device according to claim 2, wherein, The cable guide wheel set (7) comprises a first guide wheel set (701) and a second guide wheel (704), the second guide wheel (704) is arranged in parallel below the first guide wheel set (701), the first guide wheel set (701) comprises at least one group of symmetrically arranged left guide wheels (702) and right guide wheels (703), the left guide wheels (702) correspond to the left cooling water tanks (102), the right guide wheels (703) correspond to the right cooling water tanks (103), and the second guide wheel (704) corresponds to the second cooling water tank (201).

4. A cable dual-layered water channel cooling device according to claim 3, wherein, The first threading hole (501) corresponds to one of the left guide wheels (702) and the right guide wheels (703), and the second threading hole (601) corresponds to the other one of the left guide wheels (702) and the right guide wheels (703).

5. The cable dual-layered water channel cooling device according to claim 1, wherein, The cable cooling device further comprises a first shell (1) and a second shell (2), the first cooling water tank (101) is arranged in the first shell (1), the second cooling water tank (201) is arranged in the second shell (2), one end of the first shell (1) and the second shell (2) is connected with the first cable guide device (5), and the other end of the first shell (1) and the second shell (2) is connected with the second cable guide device (6).

6. A cable dual-layered water channel cooling device according to claim 5, wherein, The first cooling water tank (101) is in multiple sections, the multiple sections of the first cooling water tank (101) are arranged at intervals along the length direction of the first shell (1), and each section of the first cooling water tank (101) is arranged at an interval from the bottom of the first shell (1); the second cooling water tank (201) is in multiple sections, the multiple sections of the second cooling water tank (201) are arranged at intervals along the length direction of the second shell (2), and each section of the second cooling water tank (201) is arranged at an interval from the bottom of the second shell (2).

7. A cable dual layer sink cooling device according to claim 6, wherein, A plurality of water inlet pipes (3) are arranged in the first shell (1) and the second shell (2), the water outlet direction of each water inlet pipe (3) is opposite to the moving direction of the cable, the number of the water inlet pipes (3) in the first shell (1) matches the total number of the left cooling water tank (102) and the right cooling water tank (103) in the multiple sections of the first cooling water tank (101), and the number of the water inlet pipes (3) in the second shell (2) matches the number of the multiple sections of the second cooling water tank (201).

8. A cable dual-layered water channel cooling device according to claim 7, wherein, The first shell (1) is further movably provided with a first wire guide wheel set (104), the first wire guide wheel set (104) is located between two adjacent sections of the first cooling water tank (101), the first wire guide wheel set (104) comprises at least one set of left wire guide wheels (105) and right wire guide wheels (106), the left wire guide wheels (105) are used for guiding the cable from the left cooling water tank (102), and the right wire guide wheels (106) are used for guiding the cable from the right cooling water tank (103); the second cooling water tank (201) is movably provided with a second wire guide wheel (202), the second wire guide wheel (202) is located between two adjacent sections of the second cooling water tank (201), and the second wire guide wheel (202) is used for guiding the cable from the second cooling water tank (201).

9. A cable dual layer sink cooling device according to claim 8, wherein, The first shell (1) is provided with a first water return port (107) at two ends, the second shell (2) is provided with a second water return port (203) at two ends, each section of the first cooling water tank (101) and the second cooling water tank (201) is provided with a water baffle (4) at two ends, and the water baffle (4) is used for delaying the overflow speed of the cooling liquid from the first cooling water tank (101) and the second cooling water tank (201).