Clamping device for die steel production

By designing a clamping device for mold steel production including multiple components, rapid clamping and moving of rows of steel ingots is achieved, the problem of clamping inconvenience in the prior art is solved and production efficiency is improved.

CN223032279UActive Publication Date: 2025-06-27XIANYOU XINJIA METALLURGICAL MASCH CO LTD
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Patent Information

Application Number
CN202421842262.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-06-27
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

The existing clamping device for mold steel production is not convenient for rapid and stable clamping and handling of steel ingots, especially for rapid grasping of steel ingots placed in the discharge.

Method used

A clamping device including a first moving assembly, a handling assembly, a first clamping assembly, a second moving assembly, a second clamping assembly and a guide assembly is designed. By pushing the first moving assembly, adjusting the handling assembly, and moving the second clamping assembly, rapid clamping and moving the rows of steel ingots are achieved.

Benefits of technology

The rapid and stable clamping and handling of steel ingots placed in the discharge are achieved, and the problem of inconvenience of rapid clamping of the clamping device in the prior art is solved, thereby improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of clamping devices, in particular to a clamping device for die steel production. The clamping device solves the technical problems that in the prior art, a clamping device for die steel production usually cannot conveniently, rapidly and stably clamp and carry steel ingots, and the steel ingots placed in rows cannot be conveniently and rapidly grabbed by the clamping device. According to the technical scheme, the clamping device for die steel production comprises a first moving assembly; the device further comprises a carrying assembly, a first clamping assembly, a second moving assembly, a second clamping assembly and a guiding assembly. The left-right position of the second clamping assembly is adjusted by opening the second moving assembly, steel ingots which are placed on a lifting table (not drawn) in rows in batches can be rapidly clamped between the first clamping assembly and the second clamping assembly, and the positions of the first clamping assembly and the second clamping assembly can be adjusted by opening the carrying assembly again. Therefore, the steel ingots placed in rows can be conveniently and rapidly moved, and the technical problem is solved.
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Description

Technical Field

[0001] The utility model belongs to the field of clamping devices, and particularly relates to a clamping device for die steel production. Background Art

[0002] With the rapid development of China's manufacturing industry, the die industry, as the cornerstone of industry, has become increasingly important. The quality of dies directly affects the accuracy, performance, and production efficiency of products. Therefore, the research and development of die materials and production technologies have always been the focus of the die industry. Especially in the production of high-end die steel, the requirements for material properties are more stringent, such as corrosion resistance, mirror polishing performance, hardness uniformity, etc. In the traditional die steel production process, the clamping of die steel is a key link to ensure material quality and production efficiency. However, the existing clamping devices for die steel production are usually inconvenient for quickly and stably clamping and transporting steel ingots, and the clamping device is inconvenient for quickly grasping the steel ingots placed in rows, which needs to be further improved. Summary of the Utility Model

[0003] In order to overcome the problem that the existing clamping devices for die steel production are usually inconvenient for quickly and stably clamping and transporting steel ingots, and the clamping device is inconvenient for quickly grasping the steel ingots placed in rows.

[0004] The technical solution of the utility model is as follows: A clamping device for die steel production includes a first moving component; it also includes a handling component, a first clamping component, a second moving component, a second clamping component, and a guiding component; the handling component is arranged at the upper end of the first moving component; a first clamping component for clamping is arranged on the handling component; the second moving component is arranged at the upper end of the first clamping component; a second clamping component for clamping is arranged on the second moving component; a guiding component for guiding the second clamping component is arranged on the first clamping component.

[0005] Preferably, during use, the first moving component is pushed to the destination, then the handling component is started to adjust the front and rear positions of the first clamping component, and the second moving component is started to adjust the left and right positions of the second clamping component, so that the steel ingots placed in rows on the lifting table (not shown) can be quickly clamped between the first clamping component and the second clamping component. Starting the handling component again can adjust the positions of the first clamping component and the second clamping component, thereby facilitating the quick movement of the steel ingots placed in rows, and solving the problem that the existing clamping devices for die steel production are usually inconvenient for quickly and stably clamping and transporting steel ingots, and the clamping device is inconvenient for quickly grasping the steel ingots placed in rows.

[0006] Preferably, the first moving component includes a moving platform, a first groove body, rollers and a second groove body; two first groove bodies are formed at the lower end of the moving platform; evenly distributed rollers are rotatably installed at the left and right ends of the inner wall of the first groove body; a second groove body is formed at the right edge of the upper end of the moving platform; the second groove body runs through the front and rear ends of the moving platform. By providing a plurality of rollers, it is convenient to push the moving platform.

[0007] Preferably, the handling component includes a rodless cylinder and a connecting block; the rodless cylinder is fixedly connected to the upper end of the moving platform; the connecting block is fixedly connected to the sliding block of the rodless cylinder. By turning on the rodless cylinder to make the connecting block move, the first clamping component can be driven to move quickly back and forth.

[0008] Preferably, the first clamping component includes a slider, a bearing block, a bearing column, a first clamping block, a third groove body, a fourth groove body, a threaded column, a rotating disk, a pressing disk and a U-shaped plate; the slider is movably arranged on the inner wall of the second groove body; the bearing block is fixedly connected to the upper end of the slider; two bearing columns are fixedly connected to the upper end of the bearing block; the first clamping block is fixedly connected to the upper end of the bearing column; evenly distributed third groove bodies are formed at the upper end of the first clamping block; the fourth groove body runs through the lower end of the third groove body; evenly distributed threaded columns are threadedly installed through the left end of the first clamping block; the threaded columns are located inside the fourth groove body; the rotating disk is fixedly connected to the left end of the threaded column; the pressing disk is fixedly connected to the right end of the threaded column; U-shaped plates are fixedly connected to the front and rear ends of the first clamping block. The slider can slide along the inner wall of the second groove body. By manually rotating the threaded column, the position of the pressing disk can be adjusted, so as to facilitate the extrusion and fixation of the ingot.

[0009] Preferably, the second moving component includes a fixed seat, a bearing seat, a motor, a lead screw, a lead screw sleeve and a moving block; the fixed seat and the bearing seat are fixedly connected to the upper end of the U-shaped plate; the motor is fixedly connected to the left end of the fixed seat; the right end of the output shaft of the motor passes through the fixed seat and is fixedly connected to the lead screw; the right end of the lead screw passes through the bearing seat and extends to the right side of the bearing seat; the lead screw sleeve is movably installed on the outer wall of the lead screw; the moving block is fixedly connected to the outer wall of the lead screw sleeve. By turning on the motor to make the lead screw rotate, the lead screw sleeve will move left and right along the outer wall of the lead screw, and the moving block will drive the second clamping component to move left and right.

[0010] Preferably, the second clamping assembly includes a second clamping block, a fifth groove, a sixth groove, an electric cylinder and a limiting block; a second clamping block is movably arranged to the right of the first clamping block; a fifth groove is formed through the upper end of the second clamping block; a sixth groove is formed through the lower end of the fifth groove; the right end of the second clamping block is fixedly connected with evenly distributed electric cylinders; the left end of the output shaft of the electric cylinder penetrates through the second clamping block and extends into the interior of the sixth groove; limiting blocks are fixedly connected to the front and rear ends of the second clamping block; the upper and lower ends of the limiting blocks are attached to the upper and lower end faces of the inner wall of the U-shaped plate; the upper end of one of the limiting blocks is fixedly connected to the lower end of the moving block. When the moving block moves, it can drive one of the limiting blocks to move left and right, so as to conveniently adjust the position of the second clamping block relative to the first clamping block. Turning on the electric cylinder to make the output shaft of the electric cylinder extend can facilitate the clamping and fixing of the ingot.

[0011] Preferably, the guiding assembly includes a fixed block, a guiding rod and a sleeve block; a fixed block is fixedly connected to the upper end of the other U-shaped plate; a guiding rod is fixedly connected to the right end of the fixed block; a sleeve block is sleeved on the outer wall of the guiding rod; the lower end of the sleeve block is fixedly connected to the upper end of the other limiting block. When the other limiting block moves left and right, the limiting block drives the sleeve block to move left and right along the outer wall of the guiding rod, which can improve the stability of the limiting block when moving left and right.

[0012] The beneficial effects of the present utility model:

[0013] 1. By pushing the first moving assembly to the destination, then turning on the handling assembly to adjust the front and rear positions of the first clamping assembly, and turning on the second moving assembly to adjust the left and right positions of the second clamping assembly, the ingots placed in batches and rows on the lifting table (not shown) can be quickly clamped between the first clamping assembly and the second clamping assembly. Turning on the handling assembly again can adjust the positions of the first clamping assembly and the second clamping assembly, so as to conveniently move the ingots placed in rows quickly, solving the problems that the clamping device for die steel production in the prior art is usually inconvenient to quickly and stably clamp and handle the ingots, and the clamping device is inconvenient to quickly grab the ingots placed in rows.

[0014] 2. By turning on the rodless cylinder to make the connecting block move, it can drive the first clamping assembly to move quickly back and forth. The slider can slide along the inner wall of the second groove. By manually rotating the threaded column, the position of the pressing disc can be adjusted, so as to conveniently press and fix the ingot. Turning on the motor to make the lead screw rotate, the nut sleeve will move left and right along the outer wall of the lead screw, and the moving block will drive the second clamping assembly to move left and right. When the moving block moves, it can drive one of the limiting blocks to move left and right, so as to conveniently adjust the position of the second clamping block relative to the first clamping block. Turning on the electric cylinder to make the output shaft of the electric cylinder extend can facilitate the clamping and fixing of the ingot.

[0015] 3. When the other limiting block moves left and right, the limiting block drives the sleeve block to move left and right along the outer wall of the guiding rod, which can improve the stability when the limiting block moves left and right. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 FIG. 6 shows a schematic perspective view of a clamping device for mold steel production according to the present utility model;

[0017] Figure 2 FIG. 10 shows a schematic perspective view of a first moving assembly and a second moving assembly of a clamping device for mold steel production according to the present utility model;

[0018] Figure 3 FIG. 14 shows a schematic perspective view of a handling assembly of a clamping device for mold steel production according to the present utility model;

[0019] Figure 4 FIG. 18 shows a schematic perspective view of a first clamping assembly of a clamping device for mold steel production according to the present utility model;

[0020] Figure 5 FIG. 22 shows a schematic perspective view of a second clamping assembly of a clamping device for mold steel production according to the present utility model.

[0021] The reference signs in the drawings are: 1, first moving assembly; 101, moving table; 102, first groove; 103, roller; 104, second groove; 2, handling assembly; 201, rodless cylinder; 202, connecting block; 3, first clamping assembly; 301, slider; 302, bearing block; 303, bearing column; 304, first clamping block; 305, third groove; 306, fourth groove; 307, threaded column; 308, rotating disk; 309, pressing disk; 310, U-shaped plate; 4, second moving assembly; 401, fixed seat; 402, bearing seat; 403, motor; 404, lead screw; 405, lead screw nut; 406, moving block; 5, second clamping assembly; 501, second clamping block; 502, fifth groove; 503, sixth groove; 504, electric cylinder; 505, limiting block; 6, guiding assembly; 601, fixed block; 602, guiding rod; 603, sleeve block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] The present utility model will be further described below with reference to the drawings and embodiments.

[0023] Please refer to Figure 1, the present utility model provides an embodiment: a clamping device for die steel production, including a first moving component 1; further including a handling component 2, a first clamping component 3, a second moving component 4, a second clamping component 5 and a guiding component 6; the upper end of the first moving component 1 is provided with the handling component 2; the handling component 2 is provided with the first clamping component 3 for clamping; the upper end of the first clamping component 3 is provided with the second moving component 4; the second moving component 4 is provided with the second clamping component 5 for clamping; the first clamping component 3 is provided with the guiding component 6 for guiding the second clamping component 5.

[0024] Please refer to Figure 2 , in this embodiment, the first moving component 1 includes a moving table 101, a first groove body 102, rollers 103 and a second groove body 104; two first groove bodies 102 are opened at the lower end of the moving table 101; the left and right ends of the inner wall of the first groove body 102 are rotatably installed with evenly distributed rollers 103; a second groove body 104 is opened at the upper right edge of the moving table 101; the second groove body 104 is disposed through the front and rear ends of the moving table 101.

[0025] Please refer to Figure 3 , in this embodiment, the handling component 2 includes a rodless cylinder 201 and a connecting block 202; the rodless cylinder 201 is fixedly connected to the upper end of the moving table 101; the sliding block of the rodless cylinder 201 is fixedly connected to the connecting block 202.

[0026] Please refer to Figure 4 , in this embodiment, the first clamping component 3 includes a slider 301, a bearing block 302, bearing columns 303, a first clamping block 304, a third groove body 305, a fourth groove body 306, threaded columns 307, a rotating disk 308, an extrusion disk 309 and a U-shaped plate 310; the slider 301 is movably disposed on the inner wall of the second groove body 104; the bearing block 302 is fixedly connected to the upper end of the slider 301; two bearing columns 303 are fixedly connected to the upper end of the bearing block 302; the first clamping block 304 is fixedly connected to the upper end of the bearing columns 303; evenly distributed third groove bodies 305 are opened at the upper end of the first clamping block 304; the fourth groove body 306 is opened through the lower end of the third groove body 305; evenly distributed threaded columns 307 are threadedly installed through the left end of the first clamping block 304; the threaded columns 307 are located inside the fourth groove body 306; the rotating disk 308 is fixedly connected to the left end of the threaded columns 307; the extrusion disk 309 is fixedly connected to the right end of the threaded columns 307; U-shaped plates 310 are fixedly connected to both the front and rear ends of the first clamping block 304.

[0027] Please refer to Figure 2, in this embodiment, the second moving component 4 includes a fixed seat 401, a bearing seat 402, a motor 403, a lead screw 404, a lead screw nut 405 and a moving block 406; the upper end of the U-shaped plate 310 is fixedly connected with the fixed seat 401 and the bearing seat 402; the left end of the fixed seat 401 is fixedly connected with the motor 403; the right end of the output shaft of the motor 403 penetrates through the fixed seat 401 and is fixedly connected with the lead screw 404; the right end of the lead screw 404 passes through the bearing seat 402 and extends to the right of the bearing seat 402; the outer wall of the lead screw 404 is movably installed with the lead screw nut 405; the outer wall of the lead screw nut 405 is fixedly connected with the moving block 406.

[0028] Please refer to Figure 5 , in this embodiment, the second clamping component 5 includes a second clamping block 501, a fifth groove 502, a sixth groove 503, an electric cylinder 504 and a limiting block 505; the second clamping block 501 is movably arranged to the right of the first clamping block 304; a fifth groove 502 is formed through the upper end of the second clamping block 501; a sixth groove 503 is formed through the lower end of the fifth groove 502; the right end of the second clamping block 501 is fixedly connected with uniformly distributed electric cylinders 504; the left end of the output shaft of the electric cylinder 504 penetrates through the second clamping block 501 and extends into the interior of the sixth groove 503; limiting blocks 505 are fixedly connected to the front and rear ends of the second clamping block 501; the upper and lower ends of the limiting blocks 505 are in contact with the upper and lower end faces of the inner wall of the U-shaped plate 310; the upper end of one of the limiting blocks 505 is fixedly connected to the lower end of the moving block 406; the guiding component 6 includes a fixed block 601, a guiding rod 602 and a sleeve block 603; the upper end of the other U-shaped plate 310 is fixedly connected with the fixed block 601; the right end of the fixed block 601 is fixedly connected with the guiding rod 602; the outer wall of the guiding rod 602 is sleeved with the sleeve block 603; the lower end of the sleeve block 603 is fixedly connected to the upper end of the other limiting block 505.

[0029] When working, first, place them in batches and in a row on the lifting table (not shown), push the moving table 101 to move the device to the left of the lifting table, and then turn on the rodless cylinder 201 to make the connecting block 202 move, driving the first clamping component 3 to move quickly back and forth;

[0030] Next, the position of the pressing disc 309 can be adjusted by manually rotating the threaded column 307, and then turn on the motor 403 to make the lead screw 404 rotate, the lead screw nut 405 will move left and right along the outer wall of the lead screw 404, and the moving block 406 will drive the second clamping component 5 to move left and right;

[0031] When the moving block 406 moves, it can drive one of the limit blocks 505 to move left and right, so as to facilitate the adjustment of the position of the second clamping block 501 relative to the first clamping block 304, so that the electric cylinder 504 is opened so that the output shaft of the electric cylinder 504 extends, so as to facilitate the clamping and fixing of the steel ingot, and the steel ingot is clamped between the left end of the output shaft of the electric cylinder 504 and the right end of the extrusion plate 309;

[0032] Then, the rodless cylinder 201 is turned on again to move the connecting block 202, thereby driving the first clamping assembly 3 to move back and forth quickly, so as to facilitate the rapid clamping and placement of the steel ingot.

[0033] Through the above steps, when in use, the first moving component 1 is pushed to the destination, and then the conveying component 2 is opened to adjust the front and rear positions of the first clamping component 3, and the second moving component 4 is opened to adjust the left and right positions of the second clamping component 5. The steel ingots placed in batches in rows on the lifting platform not shown can be quickly clamped between the first clamping component 3 and the second clamping component 5. The conveying component 2 is opened again to adjust the positions of the first clamping component 3 and the second clamping component 5, so that the steel ingots placed in rows can be quickly moved conveniently, which solves the problem that the clamping device for mold steel production in the prior art is usually not convenient for quickly and stably clamping and conveying the steel ingots, and the clamping device is not convenient for quickly grabbing the steel ingots placed in rows.

[0034] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.

Claims

1. A clamping device for mold steel production, comprising a first moving assembly (1); characterized in that: The invention also comprises a transport assembly (2), a first clamping assembly (3), a second moving assembly (4), a second clamping assembly (5) and a guide assembly (6); the transport assembly (2) is arranged at the upper end of the first moving assembly (1); the first clamping assembly (3) for clamping is arranged on the transport assembly (2); the second moving assembly (4) is arranged at the upper end of the first clamping assembly (3); the second moving assembly (4) is arranged on the second clamping assembly (5) for clamping; and the first clamping assembly (3) is arranged on the guide assembly (6) for guiding the second clamping assembly (5).

2. A clamping device for mold steel production according to claim 1, characterized in that: The first moving assembly (1) comprises a moving platform (101), a first trough (102), rollers (103) and a second trough (104); two first troughs (102) are provided at the lower end of the moving platform (101); rollers (103) are rotatably mounted on the left and right ends of the inner wall of the first trough (102) and are evenly distributed; a second trough (104) is provided at the right edge of the upper end of the moving platform (101); and the second trough (104) is arranged in a through-type manner at the front and rear ends of the moving platform (101).

3. A clamping device for mold steel production according to claim 2, characterized in that: The transport assembly (2) comprises a rodless cylinder (201) and a connecting block (202); the rodless cylinder (201) is fixedly connected to the upper end of the moving platform (101); and the connecting block (202) is fixedly connected to the sliding block of the rodless cylinder (201).

4. A clamping device for mold steel production according to claim 2, characterized in that: The first clamping assembly (3) comprises a slider (301), a bearing block (302), a bearing column (303), a first clamping block (304), a third trough (305), a fourth trough (306), a threaded column (307), a rotating disk (308), an extrusion disk (309) and a U-shaped plate (310); the inner wall of the second trough (104) is movably provided with a slider (301); the upper end of the slider (301) is fixedly connected to the bearing block (302); the upper end of the bearing block (302) is fixedly connected to two bearing columns (303); the upper end of the bearing column (303) is fixedly connected to the first clamping block (304); the upper end of the first clamping block (304) is provided with evenly distributed third grooves (305); the lower end of the third groove (305) is penetrated by a fourth groove (306); the left end of the first clamping block (304) is threadedly installed with evenly distributed threaded columns (307); the threaded columns (307) are located inside the fourth groove (306); the left end of the threaded column (307) is fixedly connected to a rotating disk (308); the right end of the threaded column (307) is fixedly connected to an extrusion disk (309); the front and rear ends of the first clamping block (304) are both fixedly connected to U-shaped plates (310).

5. A clamping device for mold steel production according to claim 4, characterized in that: The second moving assembly (4) comprises a fixed seat (401), a bearing seat (402), a motor (403), a screw rod (404), a threaded sleeve (405) and a moving block (406); the upper end of the U-shaped plate (310) is fixedly connected to the fixed seat (401) and the bearing seat (402); the left end of the fixed seat (401) is fixedly connected to the motor (403); the right end of the output shaft of the motor (403) passes through the fixed seat (401) and is fixedly connected to the screw rod (404); the right end of the screw rod (404) passes through the bearing seat (402) and extends to the right of the bearing seat (402); the outer wall of the screw rod (404) is movably mounted with a threaded sleeve (405); and the outer wall of the threaded sleeve (405) is fixedly connected to the moving block (406).

6. A clamping device for mold steel production according to claim 5, characterized in that: The second clamping assembly (5) comprises a second clamping block (501), a fifth slot body (502), a sixth slot body (503), an electric cylinder (504) and a limit block (505); the second clamping block (501) is movably arranged on the right side of the first clamping block (304); the fifth slot body (502) is penetrated through the upper end of the second clamping block (501); the sixth slot body (503) is penetrated through the lower end of the fifth slot body (502); the second clamping block (501) The right end of the electric cylinder (504) is fixedly connected to the electric cylinder (504) which is evenly distributed; the left end of the output shaft of the electric cylinder (504) passes through the second clamping block (501) and extends to the inside of the sixth slot (503); the front and rear ends of the second clamping block (501) are fixedly connected to the limit blocks (505); the upper and lower ends of the limit blocks (505) are in contact with the upper and lower end surfaces of the inner wall of the U-shaped plate (310); the upper end of one of the limit blocks (505) is fixedly connected to the lower end of the moving block (406).

7. A clamping device for mold steel production according to claim 6, characterized in that: The guide assembly (6) comprises a fixed block (601), a guide rod (602) and a sleeve block (603); the upper end of another U-shaped plate (310) is fixedly connected to the fixed block (601); the right end of the fixed block (601) is fixedly connected to the guide rod (602); the outer wall of the guide rod (602) is sleeved with the sleeve block (603); the lower end of the sleeve block (603) is fixedly connected to the upper end of another limit block (505).