Device for regulating and controlling temperature between welding layers of hot forging die

By designing the adjustment components and control components in the box, real-time detection and uniform heating of the temperature between the welding layers of the hot forging molds is solved, and the problem of insufficient temperature regulation between the molds is improved.

CN223057015UActive Publication Date: 2025-07-04NANJING JIANG LIAN WELDING TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422130581.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-07-04
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

The existing hot forging molds cannot effectively control the temperature between the mold layers during welding, resulting in poor welding results.

Method used

A temperature control device including a box, a regulating component and a regulating component is designed. Through components such as electric push rods, temperature sensors, motors, heating pipes and gas delivery systems, real-time detection and uniform heating control of the temperature between mold layers are achieved.

Benefits of technology

Ensure that the temperature between welding layers is within the preset range, avoid hardened structure and overheated grain growth, and improve welding quality and processing effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223057015U_ABST
    Figure CN223057015U_ABST
Patent Text Reader

Abstract

The utility model discloses a hot forging die welding interlayer temperature regulating and controlling device which comprises a box body, an adjusting assembly is arranged on one side of the box body, a part of the adjusting assembly is arranged in the box body, a regulating and controlling assembly is arranged on the box body, and a controller is arranged on one side of the box body. The temperature adjustment between welding layers can be ensured, that is, when the temperature is lower than a preset value, heating is conducted, when the temperature is higher than a certain value, a heating source is cut off, heating of a mold is stopped, temperature adjustment treatment can be evenly conducted on a welded workpiece, the welded workpiece can be placed in the using process through the adjusting assembly, and the welding efficiency is improved. Therefore, the processing effect can be ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of hot forging dies, and more specifically, to a device for regulating the interlayer temperature during welding of hot forging dies. Background Art

[0002] During the welding process, the purpose of controlling the interlayer temperature of the hot forging die is to prevent the formation of hardened structures and avoid overheating and grain growth, so as to ensure that the welding performance of the hot forging die meets the technical specifications. In order to better ensure the regulation of the interlayer temperature during welding of the hot forging die, a device for regulating the interlayer temperature during welding of the hot forging die is required.

[0003] In the existing hot forging dies during the welding process, the temperature between the die layers cannot be adjusted, resulting in poor welding effects.

[0004] Regarding the problems in the related art, no effective solution has been proposed yet. Summary of the Utility Model

[0005] Regarding the problems in the related art, the utility model proposes a device for regulating the interlayer temperature during welding of hot forging dies to overcome the above-mentioned technical problems existing in the existing related art.

[0006] Therefore, the specific technical solution adopted by the utility model is as follows:

[0007] A device for regulating the interlayer temperature during welding of hot forging dies includes a box body. One side of the box body is provided with an adjustment component, a part of the adjustment component is arranged inside the box body, the box body is provided with a regulation component, and one side of the box body is provided with a controller.

[0008] Furthermore, in order to better ensure the placement effect of the hot forging die, the adjustment component includes a support frame arranged on one side of the box body. A first electric push rod is arranged on the support frame, a movable end of the first electric push rod is provided with an adjustment seat, a moving block is slidably connected inside the adjustment seat, a scissor lift is arranged on the moving block, and an adjustment opening is formed on one side of the box body.

[0009] Furthermore, one end of the scissor lift passes through the adjustment opening and is connected to a moving plate. Guide rails are arranged on both sides of the moving plate and are fixedly arranged inside the box body.

[0010] Furthermore, in order to better ensure the regulation effect of the interlayer temperature of the hot forging die, the regulation component includes a plurality of second electric push rods arranged on the box body. The movable ends of the second electric push rods extend from the outside of the box body to the inside of the box body. One end of the movable end of the second electric push rod located inside the box body is provided with a mounting plate, and a plurality of temperature sensors are arranged on the mounting plate.

[0011] Further, a first motor is provided at one end of the box body. The output shaft of the first motor extends from the outside of the box body to the inside of the box body. An adjusting gear is provided at the end of the first motor located inside the box body. A plurality of adjusting racks are meshed and connected to the adjusting gear. A plurality of moving grooves are formed inside the box body, and a part of the adjusting rack is connected in the moving groove.

[0012] Further, an arc-shaped adjusting plate is provided on the adjusting rack. A diffusion cavity is formed in the middle of the arc-shaped adjusting plate. A heating pipe is provided on the arc-shaped adjusting plate. Delivery pumps are provided on both sides of the box body through mounting brackets. The input end of the delivery pump is connected with a filtering structure. The output end of the delivery pump is connected with an input pipe. One end of the input pipe extends from the outside of the box body to the inside of the box body. The input pipe located inside the box body is connected with the arc-shaped adjusting plate. The input pipe is connected with the diffusion cavity. Diffusion openings are formed on the arc-shaped adjusting plate, and the diffusion openings are communicated with the diffusion cavity.

[0013] Further, for better temperature regulation uniformity, the control assembly further includes a rotating groove. The rotating groove is formed on the moving plate. A rotating plate is connected in the rotating groove. A second motor is embedded on the rotating plate. The output shaft of the second motor is provided with a rotating rod through a coupling. A driving gear is provided at one end of the rotating rod. A driven gear disk is meshed and connected to the driving gear. The driven gear disk is provided at one end of the rotating plate. A three-jaw chuck is provided at one end of the rotating plate.

[0014] The beneficial effects of the present utility model are as follows: By providing the control assembly, during the welding process of the hot forging die, the temperature regulation between welding layers can be ensured, that is, when the temperature is lower than the preset value, heating is carried out, and when the temperature is higher than a certain value, the heating source is cut off and the die heating stops. Moreover, the temperature of the welded workpiece can be evenly regulated. By providing the adjusting assembly, the welding die can be conveniently placed during use, thereby ensuring the processing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0016] Figure 1 is a schematic structural diagram of a device for controlling the temperature between welding layers of a hot forging die according to an embodiment of the present utility model Figure 1 ;

[0017] Figure 2 is a schematic structural diagram of a device for controlling the temperature between welding layers of a hot forging die according to an embodiment of the present utility model Figure 2 ;

[0018] Figure 3 Schematic diagram of the adjustment component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 1 ;

[0019] Figure 4 Schematic diagram of the adjustment component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 2 ;

[0020] Figure 5 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 1 ;

[0021] Figure 6 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 2 ;

[0022] Figure 7 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 3 ;

[0023] Figure 8 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 4 ;

[0024] Figure 9 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 5 ;

[0025] Figure 10 Schematic diagram of the control component structure of a welding interlayer temperature control device for a hot forging die according to an embodiment of the present utility model Figure 6 .

[0026] In the figure:

[0027] 1. Box body; 2. Adjusting component; 201. First electric push rod; 202. Adjusting seat; 203. Moving block; 204. Scissor lift; 205. Moving plate; 3. Control component; 301. Second electric push rod; 302. Mounting plate; 303. Temperature sensor; 304. First motor; 305. Adjusting gear; 306. Adjusting rack; 307. Arc-shaped adjusting plate; 308. Heating pipe; 309. Delivery pump; 310. Filter structure; 311. Input pipe; 312. Rotating plate; 313. Second motor; 314. Driving gear; 315. Driven gear disk; 316. Three-jaw chuck; 317. Rotating rod; 4. Controller; 5. Support frame; 6. Guide rail; 7. Moving groove; 8. Diffusion chamber; 9. Diffusion port; 10. Rotating groove. Detailed implementation mode

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present invention.

[0029] According to an embodiment of the present invention, a device for controlling the interlayer temperature of a hot forging die welding is provided.

[0030] Embodiment 1;

[0031] As Figures 1 - 10 shown, a device for controlling the interlayer temperature of a hot forging die welding according to an embodiment of the present invention includes a box body 1. An adjusting component 2 is provided on one side of the box body 1 for placing the workpiece. A part of the adjusting component 2 is arranged inside the box body 1. A control component 3 is provided on the box body 1 for controlling the temperature. A controller 4 is provided on one side of the box body 1.

[0032] Embodiment 2;

[0033] As Figures 1 - 10 shown, for a device for controlling the interlayer temperature of a hot forging die welding according to an embodiment of the present invention, the adjusting component 2 includes a support frame 5. The support frame 5 is arranged on one side of the box body 1. A first electric push rod 201 is provided on the support frame 5. The moving end of the first electric push rod 201 is provided with an adjusting seat 202. A moving block 203 is slidably connected inside the adjusting seat 202. A scissor lift 204 is provided on the moving block 203. The existing conventional structure is not described in detail. An adjusting opening is provided on one side of the box body 1. One end of the scissor lift 204 passes through the adjusting opening and is connected to a moving plate 205. Guide rails 6 are provided on both sides of the moving plate 205, and the guide rails 6 are fixedly arranged inside the box body 1. The moving plate 205 is adapted to the guide rails 6.

[0034] In practical applications, through the mutual cooperation of the first electric push rod 201, the adjusting seat 202, the moving block 203, the scissor lift 204, the moving plate 205 and the guide rail 6, it is convenient to place the welding die during use, thereby ensuring the processing effect.

[0035] Embodiment Three;

[0036] As Figures 1 - 10 shown, a device for controlling the interlayer temperature of a hot forging die welding according to an embodiment of the present invention, the control assembly 3 includes a plurality of second electric push rods 301, the second electric push rods 301 are arranged on the box body 1, and the moving ends of the second electric push rods 301 extend from the outside of the box body 1 to the inside of the box body 1. An installation plate 302 is arranged at one end of the moving end of the second electric push rod 301 inside the box body 1. A plurality of temperature sensors 303 are arranged on the installation plate 302. A first motor 304 is arranged at one end of the box body 1. The output shaft of the first motor 304 extends from the outside of the box body 1 to the inside of the box body 1. An adjusting gear 305 is arranged at one end of the first motor 304 inside the box body 1. Two adjusting racks 306 are meshed with the adjusting gear 305. Two T-shaped moving grooves 7 are opened inside the box body 1, and a part of the adjusting rack 306 is connected in the moving groove 7. An arc-shaped adjusting plate 307 is arranged on the adjusting rack 306. A diffusion cavity 8 is opened in the middle of the arc-shaped adjusting plate 307. A heating pipe 308 is arranged on the arc-shaped adjusting plate 307;

[0037] On both sides of the box body 1, a transfer pump 309 is arranged through an installation frame. The input end of the transfer pump 309 is connected with a filtering structure 310. The output end of the transfer pump 309 is connected with an input pipe 311. The input pipe 311 is set as an adjustable flexible pipe. One end of the input pipe 311 extends from the outside of the box body 1 to the inside of the box body 1. One end of the input pipe 311 inside the box body 1 is connected with the arc-shaped adjusting plate 307. The input pipe 311 is connected with the diffusion cavity 8. A diffusion port 9 is opened on the arc-shaped adjusting plate 307, and the diffusion port 9 is communicated with the diffusion cavity 8;

[0038] The control assembly 3 further includes a rotating groove 10. The rotating groove 10 is opened on the moving plate 205. A rotating plate 312 is connected in the rotating groove 10. A second motor 313 is embedded on the rotating plate 312. The output shaft of the second motor 313 is provided with a rotating rod 317 through a coupling. A driving gear 314 is arranged at one end of the rotating rod 317. A driven gear disc 315 is meshed with the driving gear 314. The driven gear disc 315 is arranged at one end of the rotating plate 312. A three-jaw chuck 316 is arranged at one end of the rotating plate 312. The internal structure of the existing conventional structure is not described in detail.

[0039] In actual application, the temperature between the welding layers of the hot forging die is detected by the cooperation of the second electric push rod 301, the mounting plate 302 and the temperature sensor 303. When the temperature is low, the first motor 304 is started by the controller 4. Then, the first motor 304 drives the adjusting gear 305 to rotate. Next, the adjusting gear 305 drives the arc-shaped adjusting plate 307 to move and adjust by meshing with the adjusting rack 306, so as to realize the adjustment according to the size of the die. Then, the die is heated by the heating pipe 308. During the heating process, the conveying pump 309 is started by the controller 4. Then, the conveying pump 309 generates suction to suck the external gas through the filtering structure 310. Next, the sucked gas is filtered. Then, the filtered gas is conveyed into the input pipe 311. Then, the input pipe 311 conveys the gas into the diffusion chamber 8. Then, the gas is diffused through the diffusion port 9, so as to ensure the uniformity of heating and temperature. After the adjustment is completed, the second motor 313 is started by the controller 4. Then, the output shaft of the second motor 313 drives the rotating rod 317 to rotate. Next, the rotating rod 317 drives the driving gear 314 to rotate. Then, the driving gear 314 drives the fixed die on the rotating plate 312 to rotate by meshing with the driven gear disc 315. Then, in cooperation with the heating pipe 308, uniform heating is achieved;

[0040] When the moving plate 205 places the workpiece, the cooperation of the three-jaw chuck 316 can further ensure the fixing effect and placement effect of the die.

[0041] To facilitate the understanding of the above technical solutions of the present invention, the working principle or operation method of the present invention in the actual process will be described in detail below.

[0042] In summary, by means of the above technical solution of the present utility model, the temperature between the welding layers of the hot forging die is detected by the mutual cooperation of the second electric push rod 301, the mounting plate 302 and the temperature sensor 303. When the temperature is low, the first motor 304 is started by the controller 4, and then the first motor 304 drives the adjusting gear 305 to rotate. Then, the adjusting gear 305 drives the arc-shaped adjusting plate 307 to move and adjust by meshing with the adjusting rack 306, so as to realize the adjustment according to the size of the die. Then, the die is heated by the heating pipe 308. During the heating process, the delivery pump 309 is started by the controller 4, and then the delivery pump 309 generates suction to suck the external gas through the filtering structure 310. Then, the sucked gas is filtered, and then the filtered gas is transported into the input pipe 311. Then, the input pipe 311 transports the gas into the diffusion chamber 8, and then the gas is diffused through the diffusion port 9, so as to ensure the uniformity of heating and temperature. After the adjustment is completed, the second motor 313 is started by the controller 4, and then the output shaft of the second motor 313 drives the rotating rod 317 to rotate. Then, the rotating rod 317 drives the driving gear 314 to rotate. Then, the driving gear 314 drives the fixed die on the rotating plate 312 to rotate by meshing with the driven gear disk 315. Then, in cooperation with the heating pipe 308, uniform heating is realized;

[0043] Through the mutual cooperation of the first electric push rod 201, the adjusting seat 202, the moving block 203, the scissor lift 204, the moving plate 205 and the guide rail 6, it is convenient to place the welded die during use, so as to ensure the processing effect. When the moving plate 205 places the workpiece, the three-jaw chuck 316 can further ensure the fixing effect and placement effect of the die.

[0044] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A device for regulating the interlayer temperature during welding of a hot forging die, characterized in that It includes a box body (1), on one side of the box body (1) there is an adjusting component (2), and a part of the adjusting component (2) is arranged inside the box body (1), on the box body (1) there is a regulating component (3), and on one side of the box body (1) there is a controller (4).

2. The interlayer temperature control device for a hot forging die according to claim 1, characterized in that, The adjusting component (2) includes a support frame (5), the support frame (5) is arranged on one side of the box body (1), on the support frame (5) there is a first electric push rod (201), the moving end of the first electric push rod (201) is provided with an adjusting seat (202), a moving block (203) is slidably connected inside the adjusting seat (202), on the moving block (203) there is a scissor lift (204), and an adjusting opening is formed on one side of the box body (1).

3. The interlayer temperature control device for hot forging dies according to claim 2, wherein One end of the scissor lift (204) passes through the adjusting opening and is connected to a moving plate (205), on both sides of the moving plate (205) there are guide rails (6), and the guide rails (6) are fixedly arranged inside the box body (1).

4. The interlayer temperature control device for a hot forging die according to claim 3, characterized in that, The regulating component (3) includes a plurality of second electric push rods (301), the second electric push rods (301) are arranged on the box body (1), the moving ends of the second electric push rods (301) extend from the outside of the box body (1) to the inside of the box body (1), at the end of the moving end of the second electric push rod (301) located inside the box body (1) there is a mounting plate (302), and on the mounting plate (302) there are a plurality of temperature sensors (303).

5. A device for controlling the interlayer temperature during welding of a hot forging die according to claim 4, characterized in that, One end of the box body (1) is provided with a first motor (304), the output shaft of the first motor (304) extends from the outside of the box body (1) to the inside of the box body (1), at the end of the first motor (304) located inside the box body (1) there is an adjusting gear (305), the adjusting gear (305) is meshed with a plurality of adjusting racks (306), a plurality of moving grooves (7) are formed inside the box body (1), and a part of the adjusting rack (306) is connected inside the moving groove (7).

6. The interlayer temperature control device for hot forging dies according to claim 5, characterized in that On the adjusting rack (306) there is an arc-shaped adjusting plate (307), a diffusion chamber (8) is formed in the middle of the arc-shaped adjusting plate (307), on the arc-shaped adjusting plate (307) there is a heating pipe (308), on both sides of the box body (1) there is a delivery pump (309) through a mounting frame, the input end of the delivery pump (309) is connected to a filtering structure (310), the output end of the delivery pump (309) is connected to an input pipe (311), one end of the input pipe (311) extends from the outside of the box body (1) to the inside of the box body (1), the input pipe (311) located inside the box body (1) is connected to the arc-shaped adjusting plate (307), the input pipe (311) is connected to the diffusion chamber (8), and a diffusion opening (9) is formed on the arc-shaped adjusting plate (307), and the diffusion opening (9) is communicated with the diffusion chamber (8).

7. The interlayer temperature control device for a hot forging die according to claim 3, characterized in that The control component (3) further includes a rotating groove (10) which is formed on the moving plate (205). A rotating plate (312) is connected in the rotating groove (10). A second motor (313) is embedded on the rotating plate (312). A rotating rod (317) is arranged on the output shaft of the second motor (313) through a coupling. A driving gear (314) is arranged at one end of the rotating rod (317). A driven gear disc (315) is meshed with the driving gear (314). The driven gear disc (315) is arranged at one end of the rotating plate (312). A three-jaw chuck (316) is arranged at one end of the rotating plate (312).