Cooling device for flange forging production

Through the conveying roller column and water spray system made of high-temperature resistant materials, combined with the transmission worm gear and worm structure, the problem of the inability to cool simultaneously in the existing flange forging production is solved, and the efficient cooling and production speed of multiple flanges are achieved.

CN223222403UActive Publication Date: 2025-08-15LIAONING CHANGSHENG FLANGE FITTINGS FORGING CO LTD
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Patent Information

Application Number
CN202422084382.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-08-15
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The existing cooling devices for flange forging production cannot cool multiple flanges at the same time, resulting in a reduced production speed.

Method used

The conveying roller column and water spray system are used made of high-temperature resistant materials. The multiple conveying roller columns are rotated by a driving mechanism, and the flange is sprayed with a water pump and a water spray tank to cool down. At the same time, the transmission worm gear and worm system and water barrier structure are designed to achieve effective separation and circulation of water and liquid.

Benefits of technology

The simultaneous cooling of multiple flanges is achieved, which improves production efficiency, reduces the risk of debris blockage, and improves the overall production speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooling devices, and discloses a cooling device for flange forging production, which comprises a cooling box body, the cooling box body is a concave body, a cavity is arranged in the cooling box body, a conveying roller column capable of conveying is rotatably arranged in a groove of the cooling box body, and the conveying roller column is made of a high-temperature-resistant material. The multiple conveying roller columns are distributed at equal intervals, and connecting rotating shafts capable of conducting transmission are fixedly installed on the front side wall faces of the conveying roller columns. In the using process of the flange cooling device, the driving mechanism enables the connecting rotating shafts to rotate, the conveying roller columns start to rotate, then flanges to be cooled are placed on the outer walls of the conveying roller columns one by one, the conveying roller columns can drive the flanges to move towards the water spraying tank, water is supplied to the water spraying tank through the water suction pump and the water conveying hose, and cooling is achieved. And the cooling spray head sprays water liquid to cool the flange.
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Description

Technical Field

[0001] The utility model relates to the technical field of cooling devices, in particular to a cooling device for flange forging production. Background Art

[0002] A search of the publication (announcement) number CN218532700U discloses a cooling device for flange forging production, which relates to the field of flange processing equipment. The cooling device for flange forging production includes a workbench and a rotating rod arranged above the workbench. The upper surface of the workbench is fixedly connected to a support rod, the top of the support rod is fixedly connected to a functional rod, a motor is installed in the middle of the functional rod, the rotating rod is fixedly connected to the outer surface of the output end of the motor, a water leakage part is fixedly connected to the outer surface of the rotating rod, the lower surface of the functional rod is fixedly connected to an adjustment block, the water leakage part is slidably connected to the outer surface of the adjustment block, the upper surface of the workbench is fixedly connected to a water storage part, the outer surface of the water storage part is fixedly connected to a support plate, and the position of the support plate corresponds to the position of the water leakage part.

[0003] In the above-mentioned known technology, when using the cooling device for flange forging production during work, the flange is first placed on top of the support plate by a tool, and then water is poured into the leaking part through the water inlet pipe. At this time, the motor is turned on, and the output end of the motor rotates while the rotating rod rotates. The rotating rod rotates while the leaking part is driven to rotate, and water flows out of the leaking part through the leakage hole opened on the lower surface of the leaking part, thereby realizing the cooling operation of the flange. However, in actual operation, this technology can only wait until the cooling of one group of flanges is completed before the cooling of the next group of flanges can be carried out. It cannot cool multiple flanges, which will undoubtedly reduce the overall production speed.

[0004] Therefore, we propose a cooling device for flange forging production. Utility Model Content

[0005] The utility model mainly solves the technical problems existing in the above-mentioned prior art and provides a cooling device for flange forging production.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a cooling device for flange forging production, comprising a cooling box, the cooling box is concave, a cavity is opened inside the cooling box, a conveying roller for transportation is rotatably installed inside the groove of the cooling box, the conveying roller is made of high-temperature resistant material, a plurality of conveying rollers are provided, and the plurality of conveying rollers are equidistantly distributed, the front side walls of the conveying rollers are fixedly installed with a connecting shaft for transmission, the plurality of connecting shafts are rotatably installed on the front side wall of the cooling box through bearings, and the plurality of connecting shafts are provided with a driving mechanism for rotating them, a water spray box is fixedly installed on the upper side wall of the cooling box, the water spray box is hollow concave, the bottom wall of the horizontal end of the water spray box is sealed and connected to the evenly distributed cooling nozzles, a water pump is fixedly installed on the top wall of the water spray box, the input end of the water pump is sealed and connected to the top wall of the water spray box, the input end of the water pump is sealed and connected to a water hose, and the front side wall of the cooling box is sealed and connected to a drainage pipe.

[0007] Preferably, the driving mechanism includes multiple transmission worm gears that can transmit power, and the multiple transmission worm gears are respectively fixedly mounted on the outer walls of multiple connecting shafts. A protective shell is fixedly mounted on the front side wall of the cooling box, and the multiple transmission worm gears are all located inside the protective shell.

[0008] Preferably, a transmission worm is rotatably installed inside the protective shell, and the transmission worm is arranged in a horizontal state. The transmission worm is meshed and connected with multiple transmission worm wheels.

[0009] Preferably, a blocking baffle and a water baffle are fixedly installed in the cooling box cavity, the left end of the water baffle is fixedly installed on the upper side wall of the blocking baffle, and the water baffle is arranged in an inclined state.

[0010] Preferably, a chip storage box is provided between the left side wall of the blocking partition and the adjacent wall in the cooling box cavity, and the chip storage box and the blocking partition are connected together in a detachable manner.

[0011] Preferably, the right side wall of the chip storage box is provided with screening holes that are evenly distributed, and the screening holes penetrate the left and right walls of the blocking partition.

[0012] Preferably, a drive motor capable of transmitting power is fixedly mounted on the right side wall of the protective shell, and an output end of the drive motor is connected to a transmission worm gear.

[0013] Beneficial effects

[0014] The utility model provides a cooling device for flange forging production. It has the following beneficial effects:

[0015] (1) A cooling device for flange forging production. During use, the utility model rotates multiple connecting shafts through a driving mechanism, and multiple conveying rollers start to rotate. Then, the flanges to be cooled are placed one by one on the outer wall of the conveying roller. The conveying roller will move the flanges toward the water spray box. The water spray box is supplied with water through a water pump and a water hose. The cooling nozzle will spray water to cool the flanges. This method of continuously cooling multiple flanges improves the cooling efficiency and increases the overall production speed.

[0016] (2) A cooling device for flange forging production. During use, the drive motor is turned on, the transmission worm starts to rotate, and multiple transmission worm wheels rotate synchronously in the same direction to realize the rotation of multiple connecting shafts. The cooling nozzle flushes the flange and the cooled water flows into the interior of the chip storage box through the inclined surface of the water baffle. The debris in the water will remain in the chip storage box, and the clean water will flow back to the position on the right side of the blocking partition inside the cooling box, and finally be discharged through the drainage pipe, which can reduce the risk of debris clogging the pipe. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A three-dimensional diagram of the entire utility model;

[0018] Figure 2 This is a three-dimensional diagram of the cooling box of the utility model;

[0019] Figure 3 for Figure 2 A magnified view of location A.

[0020] Legend: 1. Cooling box; 2. Conveying roller; 3. Water spray box; 4. Cooling nozzle; 5. Water pump; 6. Water hose; 7. Connecting shaft; 8. Protective shell; 9. Drive worm gear; 10. Drive worm; 11. Drive motor; 12. Water baffle; 13. Blocking partition; 14. Chip collection box; 15. Drainage pipe. DETAILED DESCRIPTION

[0021] Example 1: A cooling device for flange forging production, such as Figure 1 、 Figure 2 and Figure 3As shown, it includes a cooling box 1, the cooling box 1 is concave, and a cavity is opened inside the cooling box 1. A conveying roller 2 for transportation is rotatably installed inside the groove of the cooling box 1. The conveying roller 2 is made of high-temperature resistant material. There are multiple conveying rollers 2, and the multiple conveying rollers 2 are equidistantly distributed. The front side wall of the conveying roller 2 is fixedly installed with a connecting shaft 7 for transmission. The multiple connecting shafts 7 are rotatably installed on the front side wall of the cooling box 1 through bearings. A driving mechanism for rotating it is provided on the upper side wall of the cooling box 1, a water spray box 3 is fixedly installed on the upper side wall, the water spray box 3 is hollow and concave, and the bottom wall of the horizontal end of the water spray box 3 is sealed and connected to the cooling nozzles 4 that are evenly distributed, and a water pump 5 is fixedly installed on the top wall of the water spray box 3, and the input end of the water pump 5 is sealed and connected to the top wall of the water spray box 3, and the input end of the water pump 5 is sealed and connected to a water hose 6, which is connected to a water source, and the front side wall of the cooling box 1 is sealed and connected to a drainage pipe 15.

[0022] During use of the utility model, the driving mechanism rotates multiple connecting shafts 7, and multiple conveying rollers 2 start to rotate. Then, the flanges to be cooled are placed one by one on the outer wall of the conveying roller 2. The conveying roller 2 moves toward the water spray box 3 with the flanges. The water spray box 3 is supplied with water through the water pump 5 and the water hose 6. The cooling nozzle 4 sprays water to cool the flanges.

[0023] Example 2: Based on Example 1, Figure 1 、 Figure 2 and Figure 3 As shown, the driving mechanism includes multiple transmission worm gears 9 that can be used for transmission. The multiple transmission worm gears 9 are respectively fixedly mounted on the outer walls of multiple connecting shafts 7. A protective shell 8 is fixedly mounted on the front side wall of the cooling box 1, and the multiple transmission worm gears 9 are all located inside the protective shell 8.

[0024] A transmission worm 10 is rotatably installed inside the protective shell 8 for transmission. The transmission worm 10 is arranged in a horizontal state, and the transmission worm 10 is meshed and connected with multiple transmission worm wheels 9.

[0025] A blocking baffle 13 and a water baffle 12 are fixedly installed in the cooling box 1 cavity. The left end of the water baffle 12 is fixedly installed on the upper side wall of the blocking baffle 13, and the water baffle 12 is arranged in an inclined state.

[0026] A chip storage box 14 is provided between the left side wall of the blocking partition 13 and the adjacent wall in the cavity of the cooling box 1 , and the chip storage box 14 and the blocking partition 13 are connected together in a detachable manner.

[0027] The right side wall of the chip storage box 14 is provided with screening holes that are evenly distributed. The screening holes penetrate the left and right walls of the blocking partition 13 .

[0028] A driving motor 11 for transmission is fixedly mounted on the right side wall of the protective housing 8 , and an output end of the driving motor 11 is connected to a transmission worm 10 in a transmission manner.

[0029] During use of the utility model, by turning on the drive motor 11, the transmission worm 10 starts to rotate, and multiple transmission worm wheels 9 rotate synchronously in the same direction to realize the rotation of multiple connecting shafts 7. The cooling nozzle 4 flushes the flange with cooled water, which will pass through the inclined surface of the water baffle 12 and flow into the interior of the chip storage box 14. The debris in the water will remain in the chip storage box 14, and the clean water will flow back to the position inside the cooling box 1, blocking the position on the right side of the partition 13, and finally be discharged through the drainage pipe 15.

[0030] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.

Claims

1. A cooling device for flange forging production, comprising a cooling box (1), the cooling box (1) being concave, characterized in that: The cooling box (1) has a cavity inside, and a conveying roller (2) for transporting is rotatably installed inside the groove of the cooling box (1). The conveying roller (2) is made of high-temperature resistant material. There are multiple conveying rollers (2), and the multiple conveying rollers (2) are distributed in an equidistant state. The front side wall of the conveying roller (2) is fixedly installed with a connecting shaft (7) for transmission. The multiple connecting shafts (7) are rotatably installed on the front side wall of the cooling box (1) through bearings. The multiple connecting shafts (7) are provided with a driving mechanism for rotating them. A water spray box (3) is fixedly installed on the upper side wall of the cooling box (1). The water spray box (3) is hollow and concave. The bottom wall of the horizontal end of the water spray box (3) is sealed and connected to the cooling nozzles (4) that are evenly distributed. A water pump (5) is fixedly installed on the top wall of the water spray box (3). The input end of the water pump (5) is sealed and connected to the top wall of the water spray box (3). The input end of the water pump (5) is sealed and connected to a water hose (6). The front wall of the cooling box (1) is sealed and connected to a drainage pipe (15). A blocking baffle (13) and a water baffle (12) are fixedly installed in the cooling box (1) cavity. The left end of the water baffle (12) is fixedly installed on the upper wall of the blocking baffle (13). The water baffle (12) is arranged in an inclined state. A chip storage box (14) is arranged between the left wall of the blocking baffle (13) and the adjacent wall in the cooling box (1) cavity. The chip storage box (14) and the blocking baffle (13) are connected together in a detachable manner. The right wall of the chip storage box (14) is provided with screening holes that are evenly distributed. The screening holes penetrate the left and right walls of the blocking baffle (13).

2. The cooling device for flange forging production according to claim 1, characterized in that: The driving mechanism comprises a plurality of transmission worm gears (9) capable of transmitting, wherein the plurality of transmission worm gears (9) are respectively fixedly mounted on the outer walls of the plurality of connecting shafts (7), a protective shell (8) is fixedly mounted on the front side wall of the cooling box (1), and the plurality of transmission worm gears (9) are all located inside the protective shell (8).

3. The cooling device for flange forging production according to claim 2, characterized in that: A transmission worm (10) capable of transmitting is rotatably installed inside the protective shell (8), the transmission worm (10) is arranged in a horizontal state, and the transmission worm (10) is meshed and connected with a plurality of transmission worm wheels (9).

4. The cooling device for flange forging production according to claim 3, characterized in that: A driving motor (11) capable of transmitting is fixedly mounted on the right side wall of the protective housing (8), and an output end of the driving motor (11) is connected to a transmission worm (10) in a transmission manner.

Citation Information

Patent Citations

  • Cooling device for flange forging production

    CN218532700U