Cooling equipment for forging processing

By introducing air-cooling and spray-type water-cooling structures and assembly line designs into the forging cooling equipment, the problem of manual loading and unloading of existing equipment has been solved, realizing automated cooling and efficient conveying of forged parts, improving cooling efficiency and preventing chip splashing.

CN223571947UActive Publication Date: 2025-11-21GONGYI HONGSHUN MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422640083.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-11-21
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing water-cooling equipment for forging parts requires manual loading and unloading, making it difficult to achieve efficient cooling, especially when processing small-volume metal parts.

Method used

The system adopts a combination of air-cooled and spray-type water-cooled structures in an assembly line design. Water is sprayed onto metal parts to cool them down, and cooling fans are used to assist in heat dissipation. At the same time, a dustproof structure is set up to prevent metal debris from splashing, thus achieving automated conveying and cooling.

Benefits of technology

It enables automated conveying and cooling of forged parts, improves cooling efficiency, and prevents metal shavings from affecting the normal operation of the equipment.

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Abstract

The utility model relates to the field of cooling equipment, in particular to forging cooling equipment, and adopts the technical scheme that the forging cooling equipment comprises a cooling fan, a water sprinkler, a water tank main body, a cooling box and a conveying table, fan frames are fixedly connected to the inner walls of the front end and the rear end of the cooling box, and the cooling fan is mounted on the inner walls of the fan frames; mounting grooves distributed at equal intervals are formed in the upper end of the cooling box in a penetrating mode, water sprinklers are fixedly connected into the mounting grooves, connecting pipes are installed on the water sprinklers, a water tank body is installed at the upper ends of the connecting pipes, a conveying table is fixedly connected to the inner wall of the lower end of the cooling box, and conveying roller shafts distributed at equal intervals are rotatably installed on the inner wall of the conveying table; the water sprinkler can be used for sprinkling water to cool forged metal parts conveyed by the conveying roller shafts, the cooling fan is used for performing auxiliary heat dissipation on the forged metal parts, and water vapor on the surfaces of the metal parts can be blown away, so that the forged metal parts can be automatically conveyed and cooled.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of cooling equipment, more particularly to forging processing cooling equipment. BACKGROUND

[0002] The forging cooling equipment is an important facility for controlling the temperature of forgings in the forging process to ensure its physical properties and structural quality. Common cooling methods include air cooling and water cooling.

[0003] Most existing forging processing cooling equipment cools and cools down the forged metal parts by water cooling. However, the general water cooling method usually requires manual or mechanical placement of the forged metal parts into a cooling pool, and then taking them out. This cooling method is time-consuming and labor-intensive when used to cool small-volume metal parts, thereby greatly affecting the cooling efficiency of small-volume metal parts.

[0004] Therefore, in view of the above-mentioned problem that the existing forging part water cooling equipment often needs to be matched with artificial feeding and discharging and is difficult to efficiently cool the forged parts, a forging processing cooling equipment is developed. By adding an air cooling structure, a spraying water cooling structure, and an assembly line structure to the cooling equipment, the existing cooling equipment can efficiently and automatically cool and transport the forged metal parts. SUMMARY

[0005] To overcome the problem that the existing forging part water cooling equipment often needs to be matched with artificial feeding and discharging and is difficult to efficiently cool the forged parts.

[0006] The technical solution of the utility model is as follows: a forging processing cooling equipment includes a cooling fan and a sprinkler, a water tank main body, a cooling box, and a conveying table. The front and rear ends of the cooling box are fixedly connected with fan frames, the inner walls of the fan frames are installed with cooling fans, the upper end of the cooling box is provided with equidistantly distributed installation grooves, the installation grooves are fixedly connected with sprinklers, the sprinklers are installed with connecting pipes, the upper end of the connecting pipes is installed with the water tank main body, the lower end of the cooling box is fixedly connected with the conveying table, and the inner walls of the conveying table are rotatably installed with equidistantly distributed conveying rollers.

[0007] Preferably, the sprinkler can spray water on the forged metal parts transported by the conveying rollers to cool them down, and the cooling fan can assist in cooling the forged metal parts. In addition, the water vapor on the surface of the metal parts can be blown away to realize automatic conveying and cooling of the forged metal parts.

[0008] As a preferred embodiment, the connecting pipe is a multi-way pipe, and the outer wall of the conveying roller has anti-slip patterns. In use, the connecting pipe can deliver cooling water in the water tank main body to multiple sprinklers, and the anti-slip patterns can increase the stability of the conveying roller in transporting metal parts.

[0009] As preferred, air outlet grooves are evenly distributed through the upper end edges of the cooling box, and dustproof grooves are evenly distributed through the front and rear ends of the fan frame, so that the water vapor generated during the cooling of the metal parts can be discharged outward through the air outlet grooves.

[0010] As preferred, dustproof net plates are installed on the ends of the cooling fans, the slots on the dustproof net plates are horizontally distributed, and the slots on the dustproof grooves are vertically distributed, so that a bidirectional dustproof structure can be formed by the vertically distributed dustproof grooves and the horizontally distributed slots on the dustproof net plates, to prevent the metal scraps on the surface of the metal parts from splashing around during water cooling, affecting the normal use of the cooling fans.

[0011] As preferred, support legs are fixed to the upper end edges of the cooling box, and a water tank frame is fixed to the upper end of the support legs, so that the water tank body can be lifted by the water tank frame, and the cooling water in the water tank body can flow into the sprinkler by gravity.

[0012] As preferred, left-right symmetrical corbel frames are fixed to the lower end of the cooling box, and front-rear symmetrical bases are fixed to the lower end of the corbel frames, so that the cooling box can be stably supported by the corbel frames and the bases, to improve the stability of the cooling device during use.

[0013] As preferred, the water tank body is installed in the water tank frame, and the front and rear ends of the conveying table are attached to the ends of the fan frame, so that a flow line type cooling structure can be formed by the conveying table and the conveying rollers during use.

[0014] The beneficial effects of the present application are as follows:

[0015] 1. The sprinkler can be used to spray water on the forged metal parts transported by the conveying rollers to cool them down, and the cooling fans can be used to assist in heat dissipation of the forged metal parts, and the water vapor on the surface of the metal parts can be blown away, so that the forged metal parts can be automatically transported and cooled down.

[0016] 2. The vertically distributed dustproof grooves and the horizontally distributed slots on the dustproof net plates can form a bidirectional dustproof structure, which can prevent the metal scraps on the surface of the metal parts from splashing around during water cooling, affecting the normal use of the cooling fans. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 The three-dimensional structure schematic diagram of the forging machining cooling equipment is shown.

[0018] Figure 2 The three-dimensional structure schematic diagram of the forging machining cooling equipment is shown.

[0019] Figure 3 The utility model discloses a three-dimensional structure schematic diagram of cooling box of forging processing cooling equipment is shown.

[0020] Figure 4 The utility model discloses a three-dimensional structure split schematic diagram of conveying table and conveying roller shaft of forging processing cooling equipment is shown.

[0021] Figure 5 The utility model discloses a three-dimensional structure split schematic diagram of water tank, cooling fan and sprinkler of forging processing cooling equipment is shown.

[0022] Figure 6 The utility model discloses a three-dimensional structure split schematic diagram of cooling fan and dust screen board of forging processing cooling equipment is shown.

[0023] The utility model discloses a three-dimensional structure split schematic diagram of cooling fan and dust screen board of forging processing cooling equipment is shown. DETAILED DESCRIPTION

[0024] The utility model discloses a three-dimensional structure split schematic diagram of cooling fan and dust screen board of forging processing cooling equipment is shown.

[0025] Please refer to Figures 1-6 The utility model provides a kind of embodiment: forging processing cooling equipment, including cooling fan 4 and sprinkler 6, further including water tank body 3, cooling box 1 and conveying table 2, the inner wall of the front and rear ends of cooling box 1 is fixedly connected with fan frame 10, the inner wall of fan frame 10 is installed with cooling fan 4, the upper end of cooling box 1 is provided with equidistant distribution installation slot 9, installation slot 9 is fixedly connected with sprinkler 6, sprinkler 6 is installed with connecting pipe 15, the upper end of connecting pipe 15 is installed with water tank body 3, the inner wall of the lower end of cooling box 1 is fixedly connected with conveying table 2, the inner wall of conveying table 2 is rotatably installed with equidistant distribution conveying roller shaft 14, by conveying roller shaft 14 transportation can be carried out to the water cooling of the metal parts after forging by sprinkler 6, and by cooling fan 4 to the metal parts after forging is assisted heat dissipation, water vapor on the surface of metal parts can also be blown away, to realize the automatic conveying and cooling of the metal parts after forging.

[0026] Please refer to Figures 3-6In the embodiment, the connecting pipe 15 is a multi-way pipe, the outer wall of the conveying roller shaft 14 is provided with anti-skid lines 13, in use, the cooling water in the water tank body 3 can be delivered to the plurality of water sprayers 6 through the connecting pipe 15, and the anti-skid lines 13 can increase the stability of the conveying roller shaft 14 in conveying the metal parts, the upper end edges of the cooling tank 1 are provided with equidistantly distributed air outlet grooves 8, the front and rear ends of the fan frame 10 are provided with equidistantly distributed dustproof grooves 7, in use, the water vapor generated when the metal parts are cooled can be discharged outward through the air outlet grooves 8, and the dustproof net plates 17 are installed on the ends of the cooling fans 4 close to each other, the holes in the dustproof net plates 17 are horizontally distributed, and the holes in the dustproof grooves 7 are vertically distributed, in use, the holes in the vertically distributed dustproof grooves 7 and the horizontally distributed dustproof net plates 17 can form a bidirectional dustproof structure to prevent the metal scraps on the surface of the metal parts from splashing everywhere when the metal parts are water-cooled, thereby affecting the normal use of the cooling fans 4.

[0027] Please refer to Figures 4-6 In the embodiment, the upper end corners of the cooling tank 1 are fixedly connected with support legs 16, the upper ends of the support legs 16 are fixedly connected with a water tank frame 5, in use, the water tank body 3 can be lifted by the water tank frame 5, so that the cooling water in the water tank body 3 flows into the water sprayers 6 by gravity, the lower end of the cooling tank 1 is fixedly connected with left-right symmetrical corbel frames 11, and the lower ends of the corbel frames 11 are fixedly connected with front-rear symmetrical bases 12, in use, the cooling tank 1 can be stably supported by the corbel frames 11 and the bases 12, thereby improving the stability of the cooling device in use, the water tank body 3 is installed in the water tank frame 5, and the front and rear ends of the conveying table 2 are attached to the ends of the fan frame 10 close to each other, in use, the conveying table 2 cooperates with the conveying roller shaft 14 to form a flow line type cooling structure.

[0028] In use, first, the cooling water source is continuously delivered into the water tank body 3 by a water pipe, and then the forged metal parts are placed on the rightmost end of the conveying roller shaft 14 in the conveying table 2, and the forged metal parts are slowly conveyed into the cooling tank 1 by the rotation of the conveying roller shaft 14;

[0029] Then, a plurality of water sprayers 6 are started, the cooling water in the water tank body 3 is uniformly sprayed onto the surface of the metal parts by the water sprayers 6 to perform water cooling, and then the metal parts are efficiently cooled by the two groups of cooling fans 4 in cooperation with the cooling water, the water vapor generated when the metal parts are cooled is discharged outward through the air outlet grooves 8, and the cooled metal parts are slowly conveyed from the cooling tank 1 to the storage device by the rotating conveying roller shaft 14.

[0030] Through the above steps, the water sprayer 6 can spray water to cool the forged metal parts transported by the conveyor roller 14, and the cooling fan 4 can assist in heat dissipation of the forged metal parts. It can also blow away the water vapor on the surface of the metal parts. Compared with existing water cooling equipment, it can realize the automated conveying and cooling of forged metal parts, solving the problem that existing water cooling equipment for forging parts often requires manual loading and unloading, making it difficult to efficiently cool the forged parts.

[0031] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A forging process cooling apparatus comprising a cooling fan (4) and a water sprinkler (6), characterized in that: It also includes the water tank body (3), cooling tank (1) and conveying table (2), the front and rear ends of the inner wall of cooling tank (1) is fixed with fan frame (10), the inner wall of fan frame (10) is installed with cooling fan (4), the upper end of cooling tank (1) is provided with equidistantly distributed installation slot (9), the installation slot (9) is fixed with sprinkler (6), the sprinkler (6) is installed with connecting pipe (15), the upper end of connecting pipe (15) is installed with water tank body (3), the lower end of the inner wall of cooling tank (1) is fixed with conveying table (2), the inner wall of conveying table (2) is rotatably installed with equidistantly distributed conveying roller shaft (14).

2. The forging process cooling apparatus according to claim 1, characterized by: Connecting pipe (15) is a multi-way pipe, the outer wall of conveying roller shaft (14) has anti-skid line (13).

3. The forging process cooling apparatus according to claim 2, characterized by: The upper end edge of cooling tank (1) is provided with equidistantly distributed air outlet slot (8), the front and rear ends of fan frame (10) are provided with equidistantly distributed dustproof slot (7).

4. The forging process cooling apparatus according to claim 3, characterized by: Cooling fan (4) is installed with dustproof net plate (17) on the end close to each other, the slot holes on dustproof net plate (17) are horizontally distributed, the slot holes on dustproof slot (7) are vertically distributed.

5. The forging process cooling apparatus according to claim 4, characterized by: The upper end of the four corner edges of cooling tank (1) is fixed with support leg (16), the upper end of support leg (16) is fixed with water tank frame (5).

6. The forging process cooling apparatus according to claim 5, characterized by: The lower end of cooling tank (1) is fixed with left-right symmetrical corbel frame (11), the lower end of corbel frame (11) is fixed with front-rear symmetrical base (12).

7. The forging process cooling apparatus according to claim 6, characterized by: Water tank body (3) is installed in water tank frame (5), the front and rear ends of conveying table (2) are close to the end close to each other of fan frame (10).