Wire rod processing finished product discharging mechanism capable of efficiently cooling

By using an air and liquid circulation system driven by a cooling fan and a delivery pump, combined with a semiconductor refrigeration chip, the problem of high temperature and small heat dissipation surface when the finished wire is discharged is solved, achieving efficient cooling and rapid temperature reduction.

CN223875804UActive Publication Date: 2026-02-06SHAOGUAN ZHONGDING WIRE TECH CO LTD
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Patent Information

Application Number
CN202422844803.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2026-02-06
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

When finished wire products are discharged, the temperature is high and the heat dissipation surface is small, resulting in low cooling efficiency.

Method used

It employs a cooling fan to drive air circulation and a delivery pump to drive coolant circulation, combined with a semiconductor refrigeration chip and cooling coils to achieve efficient cooling.

Benefits of technology

It improves the cooling efficiency of finished wire products, prevents heat accumulation, and ensures rapid cooling.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223875804U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of wire rod processing finished product discharging, in particular to a wire rod processing finished product discharging mechanism capable of efficiently cooling, which comprises a base and a wire rod body, a discharging box is fixedly mounted at the upper end of the base, a discharging port is arranged at the front end of the discharging box, and one end of the wire rod body extends to the outer side of the discharging box through the discharging port. A mounting seat is arranged at the upper end of the cold water tank, and a semiconductor chilling plate is arranged in the mounting seat; the cooling fans are used for driving air in the discharging box to circulate, one cooling fan is used for exhausting air, the other cooling fan is used for feeding air, heat of wires can be conveniently taken away and prevented from being accumulated in the finished product box, meanwhile, the conveying pump is used for driving cooling water in the cold water tank to circularly flow in the cooling coil, and therefore the interior of the discharging box is cooled, and the cooling effect is good. And meanwhile, the cooling coil and the wire exchange heat, and the heat is synchronously taken away by the flowing of the cooling liquid, so that a cooling fan is adapted, efficient cooling is realized, and the cooling efficiency of the wire is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to wire rod processing finished product discharge field especially wire rod processing finished product discharge mechanism of high -efficient cooling. BACKGROUND

[0002] In wire rod processing, according to design demand, when wire rod is directly processed into smaller size, generally need to heat rolling, and the wire rod of finished product discharge is more adopted winding mode for the convenience of packing and winding, and the winding is convenient.

[0003] In wire rod processing finished product discharge, wire rod temperature is higher, and natural cooling speed is slower, and the finished product discharge is more spiral, and mutual adhesion leads to smaller heat dissipation surface, and influences cooling efficiency.

[0004] Therefore, aiming at the above problem, wire rod processing finished product discharge mechanism of high -efficient cooling can be designed to conveniently cool finished wire rod quickly, and practicality is improved. INNOVATION CONTENT

[0005] In order to overcome the problem of wire rod processing finished product discharge in the prior art, wire rod temperature is higher, and the heat dissipation surface is smaller, and the cooling efficiency is influenced.

[0006] The technical scheme of the utility model is as follows: wire rod processing finished product discharge mechanism of high -efficient cooling, including base, still including wire rod body, the upper end fixed mounting of base has the discharge box, the front end of discharge box is provided with discharge port, and one end of wire rod body extends to the outside of discharge box through discharge port, and the upper end fixed mounting of discharge box has cold water tank, and the upper end of cold water tank is provided with mounting seat, and the semiconductor refrigeration piece is arranged in mounting seat, and the upper end surface of semiconductor refrigeration piece is provided with radiating fin, and the upper end of radiating fin is provided with radiating fan, and the left and right two ends of cold water tank are fixedly installed with the conveying pump, and the inside of discharge box is provided with cooling coil, and the left and right two ends of discharge box are installed with cooling fan.

[0007] As preferred, the wire rod body is designed in spiral structure, and the wire rod body is matched with the discharge port.

[0008] As preferred, the inside of cold water tank is provided with cooling fin, the cooling fin is distributed at equal intervals, and the upper end of cooling fin is connected with the cold end of semiconductor refrigeration piece.

[0009] As preferred, the radiating fin is distributed at equal intervals, the radiating fan and mounting seat are detachably connected through bolts, and the width of radiating fin is matched with the semiconductor refrigeration piece.

[0010] As preferred, the two conveying pumps are distributed in staggered mode, one end of the two conveying pumps is connected with the two ends of cold water tank respectively, and the other end of the two conveying pumps is connected with the two ends of cooling coil through pipeline.

[0011] As preferred, the cooling coil is designed in a spiral structure, and the cooling coil and the wire body are sleeved.

[0012] As preferred, two cooling fans are respectively matched with the left and right ends of the cooling coil.

[0013] The utility model discloses the beneficial effects of:

[0014] The wire processing finished product discharge mechanism can efficiently cool, the air in the discharge box is circulated by the cooling fan, one cooling fan exhausts, and one cooling fan inhales, conveniently taking away the heat of the wire, preventing the heat from accumulating in the finished product box, and the cooling water in the cooling water tank is circulated in the cooling coil by the conveying pump, thereby cooling the inside of the discharge box, and the cooling coil and the wire are heat exchanged, the flow of the cooling liquid synchronously takes away the heat, thereby adapting the cooling fan, realizing efficient cooling, and guaranteeing the cooling efficiency of the wire. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 The utility model discloses a wire processing finished product discharge mechanism that can efficiently cool the whole structure schematic Figure 1 ;

[0016] Figure 2 The utility model discloses a wire processing finished product discharge mechanism that can efficiently cool the whole structure schematic Figure 2 ;

[0017] Figure 3 The utility model discloses a wire processing finished product discharge mechanism that can efficiently cool the whole structure schematic

[0018] Figure 4 The utility model discloses a wire processing finished product discharge mechanism that can efficiently cool the whole structure schematic

[0019] The utility model discloses a wire processing finished product discharge mechanism that can efficiently cool the whole structure schematic DETAILED DESCRIPTION

[0020] The utility model will be further explained in connection with the drawings and examples.

[0021] Please refer to Figures 1-4The utility model provides a kind of embodiment: the wire rod processing finished product discharge mechanism of efficient cooling, including base 1, still including wire rod body 3, the upper end of base 1 is fixedly installed with discharge box 2, the front end of discharge box 2 is provided with discharge port, one end of wire rod body 3 extends to the outside of discharge box 2 by discharge port, wire rod body 3 is helical structure design, wire rod body 3 and discharge port are adapted, the upper end of discharge box 2 is fixedly installed with cold water tank 4, the upper end of cold water tank 4 is provided with mounting seat 5, semiconductor refrigerating fin 6 is provided in mounting seat 5, the upper end of semiconductor refrigerating fin 6 is provided with radiating fin 7, the upper end of radiating fin 7 is provided with cooling fan 8, the left and right ends of cold water tank 4 are fixedly installed with conveying pump 9, the inside of discharge box 2 is provided with cooling coil 10, the left and right ends of discharge box 2 are installed with cooling fan 11, wire rod product is discharged through discharge port, and cooling fan 11 drives air flow, so that air enters discharge box 2 from another side, and is discharged from another side, conveniently take away heat, and realize heat exchange cooling by the circulation of cooling liquid in cooling coil 10, improve cooling efficiency, simultaneously cooling while product discharges, prevent wire rod from stacking after winding, guarantee cooling effect.

[0022] Please refer to 1、 Figure 2 And Figure 3 In the embodiment, the inside of cold water tank 4 is provided with cooling fin 41, cooling fin 41 is equidistant distribution, the upper end of cooling fin 41 and the cold end of semiconductor refrigerating fin 6 are connected, radiating fin 7 is equidistant distribution, cooling fan 8 and mounting seat 5 are detachably connected by bolt, the width of radiating fin 7 and semiconductor refrigerating fin 6 are adapted, the cold end of semiconductor refrigerating fin 6 generates cold air, and is conducted into cold water tank 4 by cooling fin 41, conveniently cool cooling liquid in cold water tank 4, so that cooling liquid keeps lower temperature and rotates in cooling coil 10, conveniently cool overall discharge box 2, prevent temperature in discharge box 2 from being too high, influence radiating effect.

[0023] Please refer to Figure 1 、 Figure 2 And Figure 4 In the embodiment, two conveying pumps 9 are staggered distribution, one end of two conveying pumps 9 is connected with the two ends of cold water tank 4 respectively, the other end of two conveying pumps 9 and the two ends of cooling coil 10 are connected by pipeline, cooling coil 10 is helical structure design, cooling coil 10 and wire rod body 3 are sleeved, two cooling fans 11 are adapted with the left and right ends of cooling coil 10 respectively, two conveying pumps 9 drive cooling liquid to circulate in cooling coil 10, cooling liquid enters cooling coil 10 from cold water tank 4, and returns to cold water tank 4 from the other end of cooling coil 10, conveniently take away heat, while heated cooling liquid is cooled in cold water tank 4 again.

[0024] During operation, after the wire is processed, it is discharged through the discharge box 2 and moves outward from the discharge port. The cooling fan 11 drives the airflow, so that the air enters the discharge box 2 from one side and exits from the other side, which facilitates the removal of heat. At the same time, the cold end of the semiconductor cooling chip 6 generates cold air, which is conducted into the cold water tank 4 by the cooling plate 41, which facilitates the cooling of the coolant in the cold water tank 4. The coolant is kept at a low temperature and rotates in the cooling coil 10, which facilitates the cooling of the entire discharge box 2 and prevents the temperature in the discharge box 2 from being too high, which would affect the heat dissipation effect. After the coolant absorbs heat, it carries away the heat at the same time. The delivery pump 9 drives the coolant to circulate and carry away the heat at the same time, thus adapting to the cooling fan 11 to achieve efficient cooling.

[0025] Through the above steps, the cooling fan 11 drives the airflow, so that the air enters the discharge box 2 from one side and is discharged from the other side, which facilitates the removal of heat. The cooling liquid circulates in the cooling coil 10 to achieve heat exchange and cooling, thereby improving the cooling efficiency. At the same time, the finished product is cooled down while being discharged, preventing the wire from stacking after winding, thus ensuring the cooling effect. This solves the problem that the wire temperature is high and the heat dissipation surface is small in the current wire processing finished product discharge, which affects the cooling efficiency.

Claims

1. A wire product discharge mechanism capable of efficient cooling, comprising a base (1), characterized in that: Also include wire body (3), the upper end of the base (1) is fixedly installed with discharge box (2), the front end of the discharge box (2) is provided with discharge port, one end of the wire body (3) extends to the outside of the discharge box (2) through the discharge port, the upper end of the discharge box (2) is fixedly installed with cold water tank (4), the upper end of the cold water tank (4) is provided with mounting seat (5), the mounting seat (5) is provided with semiconductor refrigerating fin (6), the upper end surface of the semiconductor refrigerating fin (6) is provided with radiating fin (7), the upper end of the radiating fin (7) is provided with radiating fan (8), the left and right ends of the cold water tank (4) are both fixedly installed with conveying pump (9), the inside of the discharge box (2) is provided with cooling coil (10), the left and right ends of the discharge box (2) are both installed with cooling fan (11).

2. The high-efficiency coolable wire mill finish product outfeed mechanism of claim 1, wherein: The wire body (3) is designed in a spiral structure, and the wire body (3) is matched with the discharge port.

3. The high-efficiency coolable wire finished product outfeed mechanism of claim 1, wherein: The inside of the cold water tank (4) is provided with cooling fin (41), the cooling fin (41) is distributed at equal intervals, and the upper end of the cooling fin (41) is connected with the cold end of the semiconductor refrigerating fin (6).

4. The high-efficiency coolable wire finished product outfeed mechanism of claim 1, wherein: The radiating fin (7) is distributed at equal intervals, the radiating fan (8) and the mounting seat (5) are detachably connected through bolts, and the width of the radiating fin (7) is matched with the semiconductor refrigerating fin (6).

5. The high-efficiency coolable wire finished product outfeed mechanism of claim 1, wherein: The two conveying pumps (9) are distributed in a staggered manner, one end of the two conveying pumps (9) is respectively connected with the two ends of the cold water tank (4), and the other end of the two conveying pumps (9) is connected with the two ends of the cooling coil (10) through pipelines.

6. The high-efficiency coolable wire finished product outfeed mechanism of claim 1, wherein: The cooling coil (10) is designed in a spiral structure, and the cooling coil (10) is sleeved with the wire body (3).

7. The high-efficiency coolable wire finished product outfeed mechanism of claim 1, wherein: The two cooling fans (11) are respectively matched with the left and right ends of the cooling coil (10).