Novel horizontal wire drawing machine for processing tinned copper wire
By introducing a cooling mechanism and a toggle assembly into the horizontal wire drawing machine, the problem of poor heat dissipation of the mold is solved, efficient cooling and stability of the mold are achieved, coolant consumption is reduced, and production efficiency is improved.
Patent Information
- Application Number
- CN202410795108.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-19
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-06-19
AI Technical Summary
The horizontal wire drawing machine generates a lot of heat during the die drawing process, and the cooling efficiency of the coolant is not ideal, which affects the durability of the die and the working effect.
A new type of horizontal wire drawing machine was designed, which included a cooling movable mechanism and a toggle assembly. It used components such as a heat sink, a coolant spraying system and a cooling fan to improve the heat dissipation efficiency and cooling effect of the mold.
By improving the heat dissipation efficiency of the mold, the stability and service life of the mold during the wire drawing process are ensured, the coolant consumption is reduced, and the production efficiency is improved.
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Figure CN118788779B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to copper wire processing horizontal drawing machine technical field, especially to a new type of tinned copper wire processing horizontal drawing machine. BACKGROUND
[0002] With the rapid development of modern electronic, communication and energy transmission technology, the market demand of conductive wire, especially tinned copper wire, is on the rise. Tinned copper wire has been widely adopted as the main material for electrical and electronic equipment due to its excellent conductivity, corrosion resistance and weldability. As the core of copper wire production, common drawing techniques include vertical and horizontal drawing machines. Compared to the structural constraints and lower production efficiency of vertical machines, horizontal drawing machines can improve production efficiency. However, in practical applications, the horizontal drawing machine generates a large amount of heat during the die drawing process. Although cooling liquid is used to cool the die, the heat dissipation efficiency is not ideal, which may affect the durability and working effect of the die. SUMMARY
[0003] The present application aims to solve the above problems by providing a new type of tinned copper wire processing horizontal drawing machine, which improves the heat generation during the die drawing process of the horizontal drawing machine in practical applications. Although cooling liquid is used to cool the die, the heat dissipation efficiency is not ideal, which may affect the durability and working effect of the die.
[0004] The present application achieves the above-mentioned purpose through the following technical solutions: a new type of tinned copper wire processing horizontal drawing machine, comprising: a machine base, a drawing table fixedly installed on one side of the machine base, a placing rack and a winding machine fixedly connected to both sides of the machine base, a fixed box fixedly installed on the surface of the drawing table, a cooling mechanism for accelerating the cooling of the die, the cooling mechanism is arranged on one side of the machine base, wherein the cooling mechanism comprises a cooling assembly arranged on one side of the machine base, the cooling assembly comprises a fixed seat fixedly installed on the surface of the fixed box, a positioning plate is arranged on one side of the fixed seat, and heat dissipation plates are arranged on both sides of the fixed seat. The surface of the drawing table is provided with a shifting assembly. The cooling mechanism can improve the heat dissipation efficiency of the die, and can also improve the cooling effect of the cooling liquid during drawing. When cooling the cooling liquid falling into the drawing table, the die can also be cooled, which further improves the heat dissipation efficiency of the die, and the die can be quickly cooled to avoid the influence of high temperature on the use and service life of the die during drawing.
[0005] Preferably, the cooling assembly further comprises a connecting hole opened on one side of the fixing seat, one side of the connecting hole is threadedly connected with a mounting rod, the surface of the mounting rod is sleeved with a positioning plate, the bottom of the fixing seat is fixedly connected with a fixed block, the surface of the fixed block is fixedly installed with two supporting rods, one side of the two heat dissipation plates is sleeved on the surface of the two supporting rods, a plurality of first springs are fixedly connected between the fixed block and the two heat dissipation plates, by synchronously moving away from each other, the two heat dissipation plates are synchronously slid on the two supporting rods to deform the corresponding first springs, the mold can be placed on the fixing seat, then the two heat dissipation plates are loosened, the two heat dissipation plates are tightly pressed against the mold by the reset of the first springs, by rotating the mounting rod, the mounting rod is threadedly connected with the connecting hole, the mounting rod can move in the connecting hole to drive the positioning plate to move relative to the mold, the mold can be fixed on the surface of the fixing seat, the mold is more stable during wire drawing, and when the mold is used, the mold can be cooled by spraying the cooling liquid, and the heat dissipation plates on the two sides of the mold are both arranged in a comb shape, so that the contact area of the heat dissipation plates with the outside is increased, the heat dissipation efficiency is improved, and the mold can be cooled more quickly through the heat dissipation plates.
[0006] Preferably, the inside of the fixed box is fixedly installed with two motors, the output ends of the two motors extend out of the fixed box, the output end surfaces of the two motors are fixedly connected with a plurality of guide wheels, the diameters of the guide wheels on the same side gradually decrease, the two motors are located on the two sides of the fixed seat, and the surface of the base is fixedly installed with a control seat.
[0007] Preferably, the inside of the fixed box is provided with a placing box, the surface of the fixed box is fixedly installed with two first pump bodies, the water inlet ends of the two first pump bodies extend into the inside of the placing box, the output ends of the two first pump bodies are fixedly connected with spray pipes, and one side of the spray pipe is fixedly connected with a plurality of atomizing nozzles. The first pump body can suck the cooling liquid in the placing box into the spray pipe, and then the cooling liquid can be uniformly sprayed out through the plurality of atomizing nozzles, so that the cooling liquid can be more uniformly contacted with the mold, thereby improving the cooling effect of the mold.
[0008] Preferably, one side of the fixed box is fixedly connected with a second pump body, one side of the base is fixedly installed with a storage box, the water inlet end of the second pump body is connected with the storage box, the water outlet end of the second pump body extends into the inside of the placing box, one side of the base is fixedly connected with a filter box, the top of the filter box is fixedly connected with a return pipe, the other end of the return pipe is connected with the inside of the drawing bench, one side of the filter box is connected with the inside of the storage box, the inside of the filter box is provided with a filter core, the sprayed cooling liquid falls into the inside of the drawing bench and can be returned to the inside of the filter box through the return pipe for filtration. The filtered cooling liquid is input into the inside of the storage box, the cooling liquid in the storage box can be conveyed to the placing box by the second pump body for recycling, the consumption of the cooling liquid can be reduced, thereby reducing the cost.
[0009] Preferably, the pulling assembly comprises a support plate fixedly installed on one side of the drawing bench, the surface of the support plate is fixedly installed with a guide rod, the guide rod comprises two moving plates slidably installed on the surface of the guide rod, both of the moving plates are slidably connected with the surface of the support plate, one side of each of the moving plates is fixedly connected with a second spring, both of the second springs are sleeved on the outside of the guide rod, the other end of each of the second springs is fixedly connected with the guide rod, one end of each of the motor output ends is fixedly connected with a driving disc, both of the driving discs are located on one side of each of the moving plates, the surface of each of the driving discs is fixedly connected with a pulling piece, one side of each of the moving plates is in contact with the adjacent pulling piece, one side of each of the moving plates is fixedly connected with a traction rod, the other end of each of the traction rods is fixedly connected with a fanning plate, both of the fanning plates are located on the bottom of the fixed seat, a plurality of grooves are formed in the bottom of the fixed seat to increase the contact area with the outside, when both of the motors are started, the two driving discs are synchronously driven to rotate, the two driving discs synchronously drive a plurality of corresponding pulling pieces to move, the plurality of pulling pieces on both sides can constantly pull the adjacent moving plates when rotating, the second springs adjacent to the moving plates can constantly deform and reset when the moving plates are pulled, so that the moving plates can always reset after being pulled, when the moving plates are constantly pulled, the corresponding fanning plates can be constantly fanned in the bottom of the fixed seat through the traction rods, thereby accelerating the heat dissipation efficiency of the fixed seat and accelerating the heat dissipation of the side of the fixed seat in contact with the mold.
[0010] Preferably, the pulling assembly further comprises a third spring fixedly installed on the side away from each of the moving plates, both of the third springs are sleeved on the outside of the guide rod, the other end of each of the third springs is fixedly connected with a shaking plate, both of the shaking plates are slidably sleeved on the outside of the guide rod, when both of the moving plates move, the corresponding shaking plates are synchronously driven to move through the adjacent third springs, so that the shaking plates can shake the cooling liquid accumulated in the inside of the drawing bench to accelerate the heat dissipation efficiency of the cooling liquid.
[0011] Preferably, both of the shaking plates are arranged in a wave shape, and a plurality of openings are formed in the bottom of each of the two shaking plates.
[0012] Preferably, a plurality of heat dissipation pipes are fixedly installed inside the drawing bench, a plurality of heat dissipation fins are fixedly connected to the outer side of each of the heat dissipation pipes, and the bottom of each of the heat dissipation fins is fixedly connected to the support plate.
[0013] Preferably, the water inlet end of the return pipe is located at the top of the support plate, two shielding blocks are fixedly installed on the surface of the support plate, the shielding blocks are located on the two sides of the fixed box, and a plurality of heat dissipation holes are formed in the surface of the drawing bench.
[0014] The beneficial effects of the present application are:
[0015] The two heat dissipation plates are simultaneously moved away from each other, and are slid on the support rod to trigger the deformation of the first spring.
[0016] The bottom of the fixed seat is provided with a plurality of grooves to increase the external contact area. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The schematic diagram of the body structure of the present application is shown in the figure.
[0018] Figure 2Structure schematic view of storage box and filter box of the present application;
[0019] Figure 3 Structure schematic view of wire drawing table surface of the present application;
[0020] Figure 4 Structure schematic view of fixed box internal structure of the present application;
[0021] Figure 5 Structure schematic view of fixed seat of the present application;
[0022] Figure 6 Structure schematic view of fixed seat bottom of the present application;
[0023] Figure 7 Structure schematic view of fixed seat section of the present application;
[0024] Figure 8 Structure schematic view of driving disc of the present application;
[0025] Figure 9 Structure schematic view of support plate and cooling fan of the present application;
[0026] Figure 10 Structure schematic view of support plate surface of the present application.
[0027] In the figure: 1, machine base; 101, wire drawing table; 102, placing rack; 103, winding machine; 104, fixed box; 105, first pump body; 106, spraying pipe; 107, atomizing nozzle; 108, control seat; 109, shielding block; 110, motor; 111, guide wheel; 112, second pump body; 113, placing box; 114, backflow pipe; 115, filter box; 116, storage box; 2, cooling movable mechanism; 21, cooling assembly; 211, fixed seat; 212, connecting hole; 213, mounting rod; 214, positioning plate; 215, heat dissipation plate; 216, fixed block; 217, support rod; 218, first spring; 219, driving disc; 2110, actuating piece; 22, actuating assembly; 221, support plate; 222, guide rod; 223, moving plate; 224, second spring; 225, wobble plate; 226, third spring; 227, fanning plate; 228, heat dissipation pipe; 229, heat dissipation fin; 2210, cooling fan; 2211, traction rod; 2212, heat dissipation hole. DETAILED DESCRIPTION
[0028] With reference to the accompanying drawings: the technical solutions in the embodiments of the present application will be described clearly and completely, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor belong to the scope of protection of the present application.
[0029] In specific implementation: as Figures 1-10 shown, a new type of tinned copper wire processing horizontal drawing machine, comprising: base 1, one side of base 1 is fixedly installed with drawing table 101, both sides of base 1 are fixedly connected with placing rack 102 and winding machine 103, the surface of drawing table 101 is fixedly installed with fixed box 104, cooling movable mechanism 2, cooling movable mechanism 2 for accelerating cooling of the mold is arranged on one side of base 1, wherein the cooling movable mechanism 2 comprises a cooling assembly 21 arranged on one side of the base 1, the cooling assembly 21 comprises a fixed seat 211 fixedly installed on the surface of the fixed box 104, one side of the fixed seat 211 is provided with a positioning plate 214, both sides of the fixed seat 211 are provided with heat dissipation plates 215, the surface of the drawing table 101 is provided with a poking assembly 22, the drawing table 101 is set to a square concave disc shape, the heat dissipation efficiency of the mold can be improved by the cooling movable mechanism 2, the cooling effect of the cooling liquid can also be improved during the drawing process, the mold can also be cooled when cooling the cooling liquid falling into the drawing table 101, so that the heat dissipation efficiency of the mold is further improved.
[0030] As Figures 2-7As shown, the cooling assembly 21 further comprises a connecting hole 212 opened on one side of the fixed seat 211, one side of the connecting hole 212 is threadedly connected with a mounting rod 213, the surface of the mounting rod 213 is sleeved with a positioning plate 214, the bottom of the fixed seat 211 is fixedly connected with a fixed block 216, the surface of the fixed block 216 is fixedly installed with two supporting rods 217, one side of the two heat dissipation plates 215 is sleeved on the surface of the two supporting rods 217, a plurality of first springs 218 are fixedly connected between the fixed block 216 and the two heat dissipation plates 215, by synchronously moving away from each other, the two heat dissipation plates 215 are synchronously slid on the two supporting rods 217 to deform the corresponding first springs 218, the mold can be placed on the fixed seat 211, then the two heat dissipation plates 215 are loosened, the two heat dissipation plates 215 are tightly pressed against the mold by the reset of the first springs 218, the mounting rod 213 is threadedly connected with the connecting hole 212 by rotating the mounting rod 213, the mounting rod 213 can move inside the connecting hole 212 to drive the positioning plate 214 to move relative to the mold, the mold can be fixed on the surface of the fixed seat 211, and when the mold is used, the mold can be cooled by spraying cooling liquid, and the heat dissipation plates 215 on both sides of the mold are arranged in a comb shape, which can increase the contact area of the heat dissipation plates 215 with the outside to accelerate the heat dissipation efficiency, two motors 110 are fixedly installed inside the fixed box 104, the output ends of the two motors 110 extend out of the fixed box 104, and the output end surfaces of the two motors 110 are fixedly connected with a plurality of guide wheels 111, the diameters of the guide wheels 111 on the same side gradually decrease, the two motors 110 are located on both sides of the fixed seat 211, and the surface of the base 1 is fixedly installed with a control seat 108, the copper wire can be uniformly stretched in the entire drawing process by the gradually decreasing guide wheels 111, if the guide wheels 111 decrease unevenly, the copper wire can be excessively stretched in some paragraphs and less stretched in other paragraphs, which will cause unevenness of the copper wire drawing, and the equipment body can be controlled by the control seat 108;
[0031] The inside of the fixing box 104 is provided with a placing box 113, the surface of the fixing box 104 is fixedly provided with two first pump bodies 105, the water inlet ends of the two first pump bodies 105 extend into the inside of the placing box 113, the output ends of the two first pump bodies 105 are fixedly connected with spray pipes 106, one side of the spray pipe 106 is fixedly connected with a plurality of atomizing nozzles 107, the cooling liquid in the placing box 113 can be sucked into the spray pipe 106 by the first pump body 105, and then the cooling liquid can be uniformly sprayed out through the plurality of atomizing nozzles 107, so that the cooling liquid can be more uniformly contacted with the mold, one side of the fixing box 104 is fixedly connected with a second pump body 112, one side of the base 1 is fixedly provided with a storage box 116, the water inlet end of the second pump body 112 is connected with the storage box 116, the water outlet end of the second pump body 112 extends into the inside of the placing box 113, one side of the base 1 is fixedly connected with a filtering box 115, the top of the filtering box 115 is fixedly connected with a backflow pipe 114, the other end of the backflow pipe 114 is connected with the inside of the drawing bench 101 in communication, one side of the filtering box 115 is connected with the inside of the storage box 116 in communication, the inside of the filtering box 115 is provided with a filter element, the sprayed cooling liquid falls into the inside of the drawing bench 101, and can be backflowed to the inside of the filtering box 115 for filtration through the backflow pipe 114. The filtered cooling liquid is input into the inside of the storage box 116, the cooling liquid in the storage box 116 can be conveyed to the inside of the placing box 113 for recycling by the second pump body 112, and the consumption of the cooling liquid can be reduced.
[0032] As Figures 3-10As shown, the dialing assembly 22 comprises a support plate 221 fixedly installed on one side of the wire drawing table 101, the surface of the support plate 221 is fixedly installed with a guide rod 222, the guide rod 222 comprises two moving plates 223 slidingly installed on the surface of the guide rod 222, both of the two moving plates 223 are slidingly connected with the surface of the support plate 221, the side adjacent to the moving plate 223 is fixedly connected with a second spring 224, both of the two second springs 224 are sleeved on the outer side of the guide rod 222, the other end of both of the two second springs 224 is fixedly connected with the guide rod 222, one end of both of the two motor 110 output ends is fixedly connected with a driving disc 219, both of the two driving discs 219 are located on one side of the two moving plates 223, the surface of both of the two driving discs 219 is fixedly connected with a dialing piece 2110, one side of both of the two moving plates 223 is in contact with the adjacent dialing piece 2110, the side adjacent to the moving plate 223 is fixedly connected with a traction rod 2211, the other end of both of the two traction rods 2211 is fixedly connected with a fanning plate 227, both of the two fanning plates 227 are located on the bottom of the fixed seat 211, a plurality of grooves are formed on the bottom of the fixed seat 211 to increase the contact area with the outside, when the two motors 110 are started, the two driving discs 219 are synchronously driven to rotate, the two driving discs 219 synchronously drive the corresponding plurality of dialing pieces 2110 to move, the plurality of dialing pieces 2110 on both sides can constantly dial the adjacent moving plate 223 when rotating, the second spring 224 adjacent to the moving plate 223 can constantly deform and reset when the moving plate 223 is dials, so that the moving plate 223 can always reset after being dials, when the moving plate 223 is constantly dials, the corresponding fanning plate 227 can be constantly fanned to dissipate heat on the bottom of the fixed seat 211 through the traction rod 2211, so that the fixed seat 211 can also accelerate the heat dissipation of the side in contact with the mold;
[0033] The dialing assembly 22 further comprises a third spring 226 fixedly installed on the side away from the two moving plates 223, both of the two third springs 226 are sleeved on the outer side of the guide rod 222, the other end of both of the two third springs 226 is fixedly connected with a shaking plate 225, both of the two shaking plates 225 are slidingly sleeved on the outer side of the guide rod 222, when the two moving plates 223 move, the corresponding shaking plate 225 is synchronously driven to move through the adjacent third spring 226, so that the shaking plate 225 can shake the cooling liquid accumulated in the wire drawing table 101 to accelerate the heat dissipation efficiency of the cooling liquid, both of the two shaking plates 225 are provided in a wave shape, a plurality of openings are formed on the bottom of both of the two shaking plates 225, the contact area of the shaking plate 225 with the cooling liquid can be increased when moving through the wave-shaped shaking plate 225.
[0034] As Figures 8-10As shown, the inside of the drawing bench 101 is fixedly provided with a plurality of heat dissipation pipes 228, the outer side of the plurality of heat dissipation pipes 228 is fixedly connected with a plurality of heat dissipation fins 229, one side of the plurality of heat dissipation fins 229 is fixedly connected with the bottom of the support plate 221, the top of the machine base 1 is fixedly provided with a plurality of heat dissipation fans 2210, one side of the heat dissipation fan 2210 is communicated with the plurality of heat dissipation fins 229, the plurality of heat dissipation pipes 228 are used in cooperation with the heat dissipation fins 229, so that the support plate 221 can quickly dissipate heat, thereby accelerating the cooling effect of the surface cooling liquid, and through the cooperation of the heat dissipation fan 2210, the heat dissipation effect of the support plate 221 can be further improved, the water inlet end of the return pipe 114 is located at the top of the support plate 221, the surface of the support plate 221 is fixedly provided with two shielding blocks 109, the shielding blocks 109 are located on both sides of the fixed box 104, a plurality of heat dissipation holes 2212 are formed in the surface of the drawing bench 101, the air circulation inside and outside the drawing bench 101 can be accelerated through the heat dissipation holes 2212, and through the shielding blocks 109, after the cooling liquid falling into the inside of the drawing bench 101 is accumulated on the top of the shielding blocks 109, the cooling liquid can flow to the other side of the shielding blocks 109 and return through the return pipe 114, the contact time of the cooling liquid with the support plate 221 is increased, and the cooling effect of the support plate 221 on the cooling liquid is improved.
[0035] In use, the two heat dissipation plates 215 are first slid on the support rod 217, adjusted in cooperation with the first spring 218, the mold is placed in the fixed seat 211, the two heat dissipation plates 215 are loosened to tightly contact the mold, the heat dissipation plate 215 is designed as a comb shape, the contact area with the outside is enhanced, and the heat dissipation efficiency is improved, when the mold is installed, the mounting rod 213 is combined with the connecting hole 212, the positioning plate 214 is used to ensure that the mold is fixed, the cooling liquid is sucked by the first pump body 105 and uniformly sprayed through the atomizing nozzle 107, so that the mold is cooled, the cooling liquid used is filtered in the filter box 115 and recycled, consumption is reduced, the bottom of the fixed seat 211 has a groove, the contact area is increased, when the motor 110 is started, the driving disc 219 rotates to drive the actuating plate 2110, the moving plate 223 is continuously actuated, the moving plate 223 is continuously reset by the second spring 224, the moving plate 223 can be synchronously driven to drive the oscillating plate 227 to dissipate heat at the bottom of the fixed seat 211, the heat dissipation of the fixed seat 211 is enhanced, the moving plate 223 moves synchronously to drive the shaking plate 225 to assist the cooling liquid to dissipate heat, in cooperation with the heat dissipation pipe 228 and the heat dissipation fin 229, the cooling efficiency of the surface cooling liquid of the support plate 221 is strengthened, the heat dissipation fan 2210 further improves the heat dissipation effect, the heat dissipation hole 2212 can promote the air circulation inside the drawing bench, the shielding block 109 temporarily blocks the flow of the cooling liquid, prolongs the contact time of the cooling liquid with the support plate 221, and prolongs the cooling time of the cooling liquid.
[0036] It should be noted that the motor, the first pump body, the second pump body and the like in the above description are devices which are relatively mature in application of prior art, and specific models can be selected according to actual needs. Meanwhile, the motor, the first pump body and the second pump body can be powered by a built-in power supply or a commercial power supply, and the specific power supply mode is selected as appropriate, which will not be described herein.
[0037] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A new horizontal wire drawing machine for processing tinned copper wire, characterized in that: include: A machine base (1), a wire drawing table (101) is fixedly mounted on one side of the machine base (1), a placement rack (102) and a winding machine (103) are fixedly connected to both sides of the machine base (1), and a fixed box (104) is fixedly mounted on the surface of the wire drawing table (101); A cooling movable mechanism (2) for accelerating cooling of the mold, the cooling movable mechanism (2) being arranged on one side of the machine base (1); The cooling movable mechanism (2) includes a cooling assembly (21) arranged on one side of the machine base (1), the cooling assembly (21) includes a fixed seat (211) fixedly mounted on the surface of the fixed box (104), a positioning plate (214) is provided on one side of the fixed seat (211), and heat dissipation plates (215) are provided on both sides of the fixed seat (211), and a toggle assembly (22) is provided on the surface of the drawing table (101), and the two heat dissipation plates (215) are pressed against the mold; Two motors (110) are fixedly installed inside the fixed box (104), the output ends of the two motors (110) extend out of the fixed box (104), and the output end surfaces of the two motors (110) are fixedly connected to a plurality of guide wheels (111), the diameters of the plurality of guide wheels (111) located on the same side gradually decrease, the two motors (110) are respectively located on both sides of the fixed seat (211), a control seat (108) is fixedly installed on the surface of the machine base (1), and the mold is placed on the fixed seat (211); The toggle assembly (22) includes a support plate (221) fixedly mounted on one side of the wire drawing table (101), a guide rod (222) fixedly mounted on the surface of the support plate (221), and the guide rod (222) includes two movable plates (223) slidably mounted on the surface of the guide rod (222), the two movable plates (223) are slidably connected to the surface of the support plate (221), and the adjacent side of the movable plate (223) is fixedly connected to a second spring (224), the two second springs (224) are both sleeved on the outside of the guide rod (222), and the other ends of the two second springs (224) are fixedly connected to the guide rod (222). One end of the output end of each of the two motors (110) is fixedly connected to a driving disk (219), the two driving disks (219) are respectively located on one side of the two movable plates (223), the surfaces of the two driving disks (219) are fixedly connected to a paddle plate (2110), one side of each of the two movable plates (223) is in contact with an adjacent paddle plate (2110), the adjacent sides of the two movable plates (223) are fixedly connected to a traction rod (2211), the other ends of the two traction rods (2211) are fixedly connected to a fan plate (227), and the two fan plates (227) are located at the bottom of the fixed seat (211).
2. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 1, characterized in that: The cooling assembly (21) further includes a connecting hole (212) provided on one side of the fixing seat (211), a mounting rod (213) being threadedly connected to one side of the connecting hole (212), a positioning plate (214) being sleeved on the surface of the mounting rod (213), a fixing block (216) being fixedly connected to the bottom of the fixing seat (211), two support rods (217) being fixedly mounted on the surface of the fixing block (216), one side of the two heat dissipation plates (215) being slidably sleeved on the surface of the two support rods (217), and a plurality of first springs (218) being fixedly connected between the fixing block (216) and the two heat dissipation plates (215).
3. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 1, characterized in that: A placement box (113) is provided inside the fixed box (104), and two first pump bodies (105) are fixedly installed on the surface of the fixed box (104). The water inlet ends of the two first pump bodies (105) extend into the placement box (113), and the output ends of the two first pump bodies (105) are fixedly connected to a spray pipe (106), and one side of the spray pipe (106) is fixedly connected to a plurality of atomizing nozzles (107).
4. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 3, characterized in that: A second pump body (112) is fixedly connected to one side of the fixed box (104), a storage box (116) is fixedly installed on one side of the machine base (1), a water inlet end of the second pump body (112) is connected to the storage box (116), and a water outlet end of the second pump body (112) extends into the interior of the placement box (113), a filter box (115) is fixedly connected to one side of the machine base (1), a return pipe (114) is fixedly connected to the top of the filter box (115), and the other end of the return pipe (114) is connected to the interior of the wire drawing table (101); one side of the filter box (115) is connected to the interior of the storage box (116).
5. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 1, characterized in that: The toggle assembly (22) further includes a third spring (226) fixedly mounted on a side away from the two movable plates (223), the two third springs (226) being sleeved on the outside of the guide rod (222), the other ends of the two third springs (226) being fixedly connected to a shaking plate (225), and the two shaking plates (225) being slidably sleeved on the outside of the guide rod (222).
6. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 5, characterized in that: The two shaking plates (225) are both arranged in a wave shape, and a plurality of openings are provided at the bottom of the two shaking plates (225).
7. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 1, characterized in that: A plurality of heat dissipation tubes (228) are fixedly installed inside the wire drawing table (101), a plurality of heat dissipation fins (229) are fixedly connected to the outside of the plurality of heat dissipation tubes (228), one side of the plurality of heat dissipation fins (229) is fixedly connected to the bottom of the support plate (221), and a plurality of heat dissipation fans (2210) are fixedly installed on the top of the machine base (1), and one side of the heat dissipation fans (2210) is connected to the plurality of heat dissipation fins (229).
8. The novel horizontal wire drawing machine for processing tinned copper wire according to claim 4, characterized in that: The water inlet end of the return pipe (114) is located on the top of the support plate (221), two shielding blocks (109) are fixedly installed on the surface of the support plate (221), and the shielding blocks (109) are located on both sides of the fixed box (104). The surface of the wire drawing table (101) is provided with a plurality of heat dissipation holes (2212).
Citation Information
Patent Citations
Wire drawing device for copper product production and processing
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Heat dissipation structure of concentric hollow shaft fork extrusion forming die
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