Bare copper wire cooling device
By designing a bare copper wire cooling device, using a rotating disc and sponge to apply antioxidant coolant, combined with air-cooling heat dissipation, the high-temperature oxidation and scalding of copper wire is solved, achieving a safe and efficient cooling effect.
Patent Information
- Application Number
- CN202422533845.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The copper wires processed with variable diameters are prone to oxidation at high temperatures and require cooling treatment to avoid scalding the worker. There is a lack of effective cooling devices in the prior art.
A bare copper wire cooling device is designed, and the coolant mixed with antioxidant is evenly applied to the surface of the copper wire using a rotating disc and a sponge, and air-cooled and heat-dissipated through a heat dissipation fan to avoid bending and deforming the copper wire.
It realizes effective cooling and anti-oxidation of copper wire, avoids deformation of copper wire and pollution of the working environment, and ensures production safety.
Smart Images

Figure CN223222215U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bare copper wire cooling, in particular to a bare copper wire cooling device. Background Art
[0002] Copper wire is a common industrial raw material. During production, it needs to be drawn to reduce the diameter of the copper wire to the appropriate specifications. However, when the metal material is deformed, it will generate heat, and the high temperature will accelerate the oxidation of the metal surface, resulting in poor appearance of the copper wire.
[0003] In the existing technology, the copper wire that has been reduced in diameter needs to be cooled to avoid scalding the workers in the subsequent process. At the same time, lowering the temperature can also prevent excessive oxidation of the copper wire surface. Therefore, a bare copper wire cooling device is needed to meet people's needs. Utility Model Content
[0004] The purpose of the present utility model is to provide a bare copper wire cooling device to solve the problem that the copper wire with reduced diameter processing needs to be cooled in the above-mentioned background technology, thereby avoiding burns to the workers in the subsequent process. At the same time, lowering the temperature can also avoid excessive oxidation of the copper wire surface.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solution: a bare copper wire cooling device, comprising a workbench, a supporting foot is installed on the bottom side of the workbench, a fixed sleeve is installed on the workbench, a flip sleeve is rotatably installed on the fixed sleeve, a water pool is installed on the workbench, two fixed seats are installed on the water pool, a positioning seat is installed on each of the two fixed seats, a rotating shaft is installed between the fixed seat and the positioning seat, a disc is installed at one end of the two rotating shafts close to each other, a sponge is installed on the disc, and a bare copper wire is arranged between the two sponges.
[0006] Preferably, a positioning bolt is threadedly installed between the fixing seat and the positioning seat, and a rotation groove is provided on both the fixing seat and the positioning seat. A rotating sleeve is rotatably installed in the rotating groove, and the rotating sleeve is fixedly installed on the rotating shaft.
[0007] Preferably, a motor base is installed on the workbench, a motor is installed on the motor base, and an output end of the motor is connected to the rotating shaft.
[0008] Preferably, a mounting rod is fixedly mounted on the bottom side of the workbench, a fan seat is mounted on the mounting rod, a heat dissipation fan is mounted on the fan seat, heat dissipation fins are mounted on the bottom side of the pool, and the air outlet of the heat dissipation fan is adapted to the heat dissipation fins.
[0009] Preferably, a driving seat is installed on the workbench, a driving roller is rotatably installed on the driving seat, the driving roller is in contact with the bare copper wire, and an electrochemical sensor is installed on the inner wall of the water pool.
[0010] Preferably, an observation window is arranged on the top side of the workbench, and through holes are opened on the fixed sleeve and the flip sleeve, and bare copper wire passes through the through holes.
[0011] Preferably, a connecting hinge is installed between the fixed sleeve and the flip sleeve, and a handle is installed on the flip sleeve.
[0012] The beneficial effects of the utility model are:
[0013] 1. The utility model utilizes two rotating discs to wrap the sponge on the bare copper wire, so that the coolant mixed with the antioxidant is evenly applied to the surface of the bare copper wire during the rotation process, achieving the dual functions of cooling and anti-oxidation. Moreover, the cooling process does not require bending the copper wire so that it is immersed in water, thereby avoiding deformation of the copper wire and damage to its structure.
[0014] 2. The utility model utilizes a flip sleeve to seal the processing position to prevent the irritating smell of the antioxidant from spreading and affecting the production and processing environment. At the same time, heat dissipation measures are taken at the bottom of the pool to prevent the coolant in the pool from accumulating heat.
[0015] 3. The utility model utilizes a cooling fan to continuously deliver air to flush the cooling fins, and the anti-oxidation mixed coolant contained in the pool is cooled and the temperature is lowered by the cooling fins through air cooling. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the three-dimensional structure of a bare copper wire cooling device of the present invention;
[0017] Figure 2 This is a rear structural schematic diagram of a bare copper wire cooling device of the present invention;
[0018] Figure 3 This is a schematic diagram of the internal structure of a bare copper wire cooling device of the present invention;
[0019] Figure 4 This is a bottom view structural diagram of a bare copper wire cooling device of the present invention;
[0020] Figure 5 The utility model is a schematic cross-sectional structural diagram of a bare copper wire cooling device.
[0021] In the figure: 100, workbench; 101, supporting foot; 102, fixing sleeve; 103, flip sleeve; 104, through hole; 105, observation window; 106, handle; 107, connecting hinge; 200, water tank; 201, fixing seat; 202, positioning seat; 203, rotating shaft; 204, disc; 205, sponge; 206, bare copper wire; 207, positioning bolt; 208, rotating groove; 209, rotating sleeve; 210, motor base; 211, motor; 300, driving seat; 301, driving roller; 302, electrochemical sensor; 400, mounting rod; 401, fan base; 402, cooling fan; 403, cooling fins. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0023] Reference Figure 1-5 , a bare copper wire cooling device includes a workbench 100, a supporting foot 101 is installed on the bottom side of the workbench 100, a fixed sleeve 102 is installed on the workbench 100, and a flip sleeve 103 is rotatably installed on the fixed sleeve 102, and a water pool 200 is installed on the workbench 100, and two fixed seats 201 are installed on the water pool 200, and positioning seats 202 are installed on the two fixed seats 201, and a rotating shaft 203 is installed between the fixed seat 201 and the positioning seat 202, and a disc 204 is installed at one end of the two rotating shafts 203 close to each other, and a sponge 205 is installed on the disc 204, and a bare copper wire 206 is arranged between the two sponges 205. The sponge is wrapped around the bare copper wire by using two rotating discs, so that the coolant mixed with antioxidant is evenly applied to the surface of the bare copper wire during the rotation process, achieving the dual functions of cooling and anti-oxidation, and the cooling process does not require the copper wire to be bent and immersed in water, thereby avoiding deformation of the copper wire and damage to its structure.
[0024] A positioning bolt 207 is threadedly installed between the fixed seat 201 and the positioning seat 202. A rotation groove 208 is formed on each of the fixed seat 201 and the positioning seat 202. A rotating sleeve 209 is rotatably installed in the rotating groove 208. The rotating sleeve 209 is fixedly mounted on the rotating shaft 203. The rotating shaft 203 is restricted by the rotating groove 208 and the rotating sleeve 209 and can only rotate between the fixed seat 201 and the positioning seat 202, maintaining stable rotation.
[0025] The workbench 100 is provided with a motor base 210, and a motor 211 is provided on the motor base 210. The output end of the motor 211 is connected to the rotating shaft 203. The output end of the motor 211 drives the rotating shaft 203 to rotate.
[0026] A mounting rod 400 is fixedly mounted on the bottom side of the workbench 100. A fan base 401 is mounted on the mounting rod 400. A cooling fan 402 is mounted on the fan base 401. Heat sink fins 403 are mounted on the bottom side of the pool 200. The air outlet of the cooling fan 402 is adapted to fit within the cooling fins 403. The cooling fan 402 continuously delivers air to flush the cooling fins 403, which in turn cools the anti-oxidation mixed coolant contained in the pool 200 through the cooling fins 403.
[0027] The workbench 100 is mounted with a drive base 300, on which a drive roller 301 is rotatably mounted. The drive roller 301 contacts the bare copper wire 206. An electrochemical sensor 302 is mounted on the inner wall of the water tank 200. The two sets of drive rollers 301 on the workbench 100 can achieve the effect of conveying the bare copper wire 206, while the electrochemical sensor 302 can detect the concentration of the solution.
[0028] The top side of the workbench 100 is provided with an observation window 105. Both the fixed sleeve 102 and the flip sleeve 103 are provided with through-holes 104, through which bare copper wire 206 is inserted. A connecting hinge 107 is installed between the fixed sleeve 102 and the flip sleeve 103, and a handle 106 is installed on the flip sleeve 103. Using the flip sleeve 103 to seal the fixed sleeve 102 prevents the pungent odor of the anti-oxidation mixed coolant contained in the tank 200 from contaminating the work environment. The connecting hinge 107 connects the fixed sleeve 102 and the flip sleeve 103, allowing the flip sleeve 103 to flip. The observation window 105 on the top side of the flip sleeve 103 allows workers to observe the internal working conditions.
[0029] Working principle:
[0030] When using the device, first, it is necessary to introduce the bare copper wire 206 into the interior of the device so that the bare copper wire 206 passes through the driving roller 301 and the sponge 205. The two sets of driving rollers 301 on the workbench 100 can realize the effect of transporting the bare copper wire 206. The fixed sleeve 102 is closed with the flip sleeve 103 to avoid the irritating odor generated by the anti-oxidation mixed coolant contained in the pool 200 from polluting the working environment. The connecting hinge 107 can connect the fixed sleeve 102 and the flip sleeve 103 and realize the flipping effect of the flip sleeve 103. The observation window 105 on the top side of the flip sleeve 103 can help the staff observe the internal working conditions. Start the motor 211, and the electric The output end of the machine 211 drives the rotating shaft 203 to rotate. The rotating rotating shaft 203 is restricted by the rotating groove 208 and the rotating sleeve 209 and can only rotate between the fixed seat 201 and the positioning seat 202 to maintain stable rotation. During the rotation of the discs 204 on both sides, the sponge 205 can continuously and evenly apply the anti-oxidation mixed coolant to the surface of the bare copper wire 206 to achieve the purpose of cooling and anti-oxidation. At the same time, at the bottom of the pool 200, a cooling fan 402 is used to continuously deliver air to flush the cooling fins 403, and the anti-oxidation mixed coolant contained in the pool 200 is dissipated and the temperature is reduced by the air cooling of the cooling fins 403.
[0031] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A bare copper wire cooling device, comprising a workbench (100), characterized in that: A supporting foot (101) is installed on the bottom side of the workbench (100), a fixing sleeve (102) is installed on the workbench (100), a flip sleeve (103) is rotatably installed on the fixing sleeve (102), a water pool (200) is installed on the workbench (100), two fixing seats (201) are installed on the water pool (200), a positioning seat (202) is installed on each of the two fixing seats (201), a rotating shaft (203) is installed between the fixing seat (201) and the positioning seat (202), a disc (204) is installed at one end of the two rotating shafts (203) close to each other, a sponge (205) is installed on the disc (204), and a bare copper wire (206) is arranged between the two sponges (205).
2. The bare copper wire cooling device according to claim 1, characterized in that: A positioning bolt (207) is threadedly installed between the fixing seat (201) and the positioning seat (202). A rotation groove (208) is provided on the fixing seat (201) and the positioning seat (202). A rotating sleeve (209) is rotatably installed in the rotating groove (208). The rotating sleeve (209) is fixedly installed on the rotating shaft (203).
3. The bare copper wire cooling device according to claim 1, characterized in that: A motor base (210) is installed on the workbench (100), a motor (211) is installed on the motor base (210), and an output end of the motor (211) is connected to the rotating shaft (203).
4. The bare copper wire cooling device according to claim 1, characterized in that: A mounting rod (400) is fixedly mounted on the bottom side of the workbench (100), a fan base (401) is mounted on the mounting rod (400), a heat dissipation fan (402) is mounted on the fan base (401), heat dissipation fins (403) are mounted on the bottom side of the pool (200), and an air outlet end of the heat dissipation fan (402) is adapted to the heat dissipation fins (403).
5. The bare copper wire cooling device according to claim 1, characterized in that: A driving seat (300) is installed on the workbench (100), a driving roller (301) is rotatably installed on the driving seat (300), the driving roller (301) is in contact with the bare copper wire (206), and an electrochemical sensor (302) is installed on the inner wall of the water pool (200).
6. The bare copper wire cooling device according to claim 1, characterized in that: An observation window (105) is arranged on the top side of the workbench (100), and a through hole (104) is opened on the fixed sleeve (102) and the flip sleeve (103), and a bare copper wire (206) passes through the through hole (104).
7. The bare copper wire cooling device according to claim 1, characterized in that: A connecting hinge (107) is installed between the fixed sleeve (102) and the flip sleeve (103), and a handle (106) is installed on the flip sleeve (103).