Die steel production cutting device

By designing an automatic fixing and moving component and a dust removal component for mold steel production and cutting device, the problems of manual movement and untimely waste removal during mold steel cutting are solved, realizing automatic cutting and waste removal, and improving cutting efficiency and quality.

CN224182217UActive Publication Date: 2026-05-01嘉兴品锻机械有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
嘉兴品锻机械有限公司
Filing Date
2025-04-13
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing die steel production and cutting equipment requires manual movement of the die steel during continuous cutting, and the waste is not cleaned up in time, which affects the cutting effect.

Method used

A die steel production cutting device was designed, comprising a cutting mechanism, a fixing component, a moving component, and a dust removal component. The device achieves automatic fixing and movement of the die steel through electric and hydraulic telescopic rods, and automatically cleans up waste chips by combining airbags and push plates.

Benefits of technology

It enables continuous automatic cutting of mold steel and timely waste removal, reducing labor costs and improving cutting quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224182217U_ABST
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Abstract

The utility model discloses a die steel production cutting device which comprises an operation table, a cutting mechanism, a moving assembly, a fixing assembly, a dust removal assembly and an abutting plate, a plurality of supporting legs are arranged at the lower end of the operation table, a leakage groove is formed in the upper end of the operation table, the cutting mechanism is arranged above the leakage groove, and the cutting mechanism is arranged on the operation table. Fixing assemblies are arranged on the two sides of the cutting mechanism, an abutting plate is arranged on one side of one fixing assembly in the pair of fixing assemblies, a pair of moving assemblies are arranged on one side of the other fixing assembly in the pair of fixing assemblies, the pair of moving assemblies are oppositely arranged, and a dust removal assembly is arranged below the leakage groove and located at the lower end of the operation table. The cutting device for die steel production has the effect of automatically and continuously cutting die steel, the loss of labor force is reduced, sweeps generated during die steel cutting can be cleaned in time, and the quality of die steel cutting is improved.
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Description

A cutting device for mold steel production Technical Field

[0001] This utility model relates to the field of mold steel production and cutting technology, specifically to a mold steel production and cutting device. Background Technology

[0002] In utility model patent application CN220698426U, a workbench is included. A fixed plate is fixedly connected to the outer surface of the front end of the workbench. A first motor is mounted on the upper outer surface of the fixed plate. The output end of the first motor is connected to a first bidirectional threaded rod via a coupling. A driving roller is fixedly connected to the outer surface of the first bidirectional threaded rod. A belt is mounted on the outer surface of the driving roller. A driven roller is mounted on the inner surface of the other end of the belt. When the driving roller rotates, it drives the driven roller to rotate via the belt. A second bidirectional threaded rod is fixedly connected to the inner surface of the driven roller. Two sliders are threadedly connected to the outer surfaces of both the first and second bidirectional threaded rods. The advantages are: it facilitates the fixing of mold steel and the adjustment of cutting dimensions.

[0003] The aforementioned mold steel production and cutting device has the advantages of fixing the mold steel and facilitating the adjustment of the cutting size. However, when continuous cutting of the mold steel is required, the operator still needs to manually move the mold steel, which is very troublesome. In addition, a large amount of waste will be generated during the cutting of the mold steel, which needs to be cleaned in time, otherwise it will affect the cutting effect of the mold steel. Summary of the Invention

[0004] The purpose of this invention is to provide a die steel production cutting device to solve the problem of continuously and automatically cutting die steel while timely cleaning up waste chips as mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a mold steel production cutting device, comprising an operating table, a cutting mechanism, a moving component, a fixing component, a dust removal component, and a backing plate. The lower end of the operating table is provided with several supporting legs, and a slot is provided on the upper end of the operating table. A cutting mechanism is provided above the slot. The cutting mechanism is located on the operating table. Fixing components are provided on both sides of the cutting mechanism. A backing plate is provided on one side of one of the pair of fixing components. A pair of moving components is provided on one side of the other of the pair of fixing components. The pair of moving components are arranged opposite to each other, and a dust removal component is provided below the slot and located at the lower end of the operating table.

[0006] Furthermore, the fixing component includes a support frame, which is mounted on the upper end of the operating table. The upper end of the support frame is provided with an electric telescopic rod, and the output end of the electric telescopic rod passes through the support frame and is provided with a pressure plate facing the upper surface of the operating table.

[0007] Furthermore, the moving component includes a slide groove, an electric threaded rod, a guide rail, and a base. Slide grooves are provided on both sides of the operating table, and an electric threaded rod is provided in the slide groove. A guide rail is provided on one side of the slide groove and located on the side of the operating table. A moving block is threadedly connected to the electric threaded rod.

[0008] Furthermore, the movable block is connected to a base, the bottom end of the base is movably connected to a guide rail, the base is provided with a hydraulic telescopic rod, the output end of the hydraulic telescopic rod passes through the base and is connected to a fixed plate, and the hydraulic telescopic rod is horizontally oriented towards the operating table.

[0009] Furthermore, the dust removal assembly includes an airbag, a collection frame, and a movable frame. The side of the pair of movable blocks away from the base is respectively connected to both ends of the movable frame. The movable frame is provided with a push plate, and the slot is provided with several through holes.

[0010] Furthermore, the lower end of the through hole is connected to a suction port, the suction port is equipped with a one-way air inlet valve, the lower end of the suction port is connected to the upper end of the airbag, and the upper end of the airbag is connected to the lower end of the operating table. The lower end of the airbag is equipped with a chip discharge port, the chip discharge port is equipped with a one-way air outlet valve, and the lower end of the chip discharge port is equipped with a collection frame. The airbag and the push plate are horizontally aligned.

[0011] Furthermore, the airbag is made of elastic rubber, and an elastic support strip is provided on the side of the airbag, which is adhesively connected to the airbag.

[0012] Compared with the prior art, the beneficial effects of this utility model are: this die steel production cutting device is reasonable and has the following advantages:

[0013] (1) The mold steel is fixed by starting the electric telescopic rod to drive the pressure plate, and then the cutting mechanism is started to cut the mold steel. When the cutting operation needs to be carried out continuously, the electric threaded rod is started first according to the required mold steel length, and the base is moved to the corresponding position. The scale line can be drawn on the surface of the operating table to calibrate the length of the mold steel. Then the hydraulic telescopic rod on the base is started to drive a pair of fixed plates to clamp the mold steel. Then the electric telescopic rod is started in the opposite direction to make the pressure plate move away from the mold steel and release the fixing effect of the fixing component on the mold steel. Then the electric threaded rod is started in the opposite direction to drive the base to move towards the cutting mechanism, thereby driving the mold steel to move as a whole towards the cutting mechanism. When the mold steel moves to the appropriate position, the fixing component and the cutting mechanism are started in sequence to compact and cut the mold steel. This realizes the continuous cutting operation of the mold steel. Compared with the existing situation where the operator needs to manually adjust the position of the mold steel, the labor loss is reduced.

[0014] (2) When the electric threaded rod is started to rotate in the reverse direction, the base moves toward the cutting mechanism, which in turn moves the moving frame and the push plate toward the airbag position, thereby squeezing the side of the airbag. This allows the waste in the airbag to be discharged into the collection frame through the chip discharge port. When the electric threaded rod is started in the forward direction, the base moves away from the cutting mechanism, and the push plate moves away from the airbag. With the cooperation of the elastic support bar, the airbag returns to its initial state and sucks the waste from the operating table into the airbag from the trough, thus cleaning the waste. After each cutting of the mold steel, the waste in the trough can be cleaned, thus achieving timely and rapid cleaning of the waste on the upper part of the operating table, improving the cutting quality of this device. The power of the push plate is provided by the movement of the moving component, reducing power loss. Attached Figure Description

[0015] Figure 1 is a three-dimensional structural diagram of the present invention;

[0016] Figure 2 is an enlarged structural schematic diagram of the present invention at point A in Figure 1;

[0017] Figure 3 is a schematic diagram of the structure of this utility model from a bottom view;

[0018] Figure 4 is a partial cross-sectional structural schematic diagram of this utility model;

[0019] Figure 5 is an enlarged structural schematic diagram of some details of the dust removal component of this utility model.

[0020] In the diagram: 1. Operating platform; 2. Support leg; 3. Fixed plate; 4. Slide groove; 5. Electric threaded rod; 6. Support frame; 7. Electric telescopic rod; 8. Pressure plate; 9. Backing plate; 10. Slot; 11. Collection frame; 12. Cutting mechanism; 13. Base; 14. Guide rail; 15. Hydraulic telescopic rod; 16. Moving block; 17. Airbag; 18. One-way air outlet valve; 19. Chip discharge port; 20. Elastic support bar; 21. Moving frame; 22. Push plate; 23. One-way air inlet valve; 24. Suction port. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please refer to Figures 1-5, which illustrate a technical solution provided by this utility model:

[0023] Example 1:

[0024] A die steel production cutting device includes an operating table 1, a cutting mechanism 12, a moving component, a fixing component, a dust removal component, and a backing plate 9. The operating table 1 has several supporting legs 2 at its lower end and a trough 10 at its upper end. The cutting mechanism 12 is located above the trough 10 and is mounted on the operating table 1. Fixing components are located on both sides of the cutting mechanism 12. A backing plate 9 is located on one side of one of the fixed components, and a pair of moving components are located on one side of the other fixed component. The pair of moving components are arranged opposite to each other, and a dust removal component is located below the trough 10 and at the lower end of the operating table 1.

[0025] The cutting mechanism 12 mentioned above is an existing technical means, and will not be described in detail here.

[0026] The fixing component includes a support frame 6, which is located on the upper end of the operating table 1. The upper end of the support frame 6 is provided with an electric telescopic rod 7, and the output end of the electric telescopic rod 7 passes through the support frame 6 and is provided with a pressure plate 8 facing the upper surface of the operating table 1.

[0027] Place the mold steel body on the upper part of the operating table 1, start the electric telescopic rod 7 to drive the pressure plate 8 to move in the same direction, thereby fixing the mold steel and facilitating the subsequent cutting operation of the cutting mechanism 12.

[0028] The movable component includes a slide 4, an electric threaded rod 5, a guide rail 14 and a base 13. The operation table 1 has slides 4 on both sides. The slide 4 is provided with an electric threaded rod 5. The slide 4 is provided with a guide rail 14 on one side of the slide 4 and located on the side of the operation table 1. The electric threaded rod 5 is threadedly connected with a movable block 16.

[0029] The movable block 16 is connected to a base 13. The bottom end of the base 13 is movably connected to the guide rail 14. A hydraulic telescopic rod 15 is provided on the base 13. The output end of the hydraulic telescopic rod 15 passes through the base 13 and is connected to a fixing plate 3. The hydraulic telescopic rod 15 is horizontally oriented towards the operating table 1.

[0030] When cutting mold steel, the mold steel body is first placed on the upper end of the operating table 1. The electric telescopic rod 7 is activated to drive the pressure plate 8 to fix the mold steel. Then, the cutting mechanism 12 is activated to cut the mold steel. When continuous cutting is required, the electric threaded rod 5 is activated first according to the required mold steel length, which moves the base 13 to the corresponding position. Scale lines can be drawn on the surface of the operating table 1 to calibrate the length of the mold steel. Then, the hydraulic telescopic rod 15 on the base 13 is activated to drive a pair of fixing plates 3 to clamp the mold steel. Then, the electric telescopic rod 7 is activated in the opposite direction to move the pressure plate 8 away from the mold steel, releasing the fixing effect of the fixing components on the mold steel. After that, the electric threaded rod 5 is activated in the opposite direction to move the base 13 toward the cutting mechanism 12, thereby moving the mold steel toward the cutting mechanism 12 as a whole. When the mold steel moves to the appropriate position, the fixing components and the cutting mechanism 12 are activated in sequence to compact and cut the mold steel. This achieves continuous cutting of the mold steel, reducing labor costs.

[0031] The dust removal assembly includes an airbag 17, a collection frame 11, and a movable frame 21. The side of a pair of movable blocks 16 away from the base 13 is respectively connected to both ends of the movable frame 21. The movable frame 21 is provided with a push plate 22, and the trough 10 is provided with several through holes.

[0032] The lower end of the through hole is connected to a suction port 24, and the suction port 24 is equipped with a one-way air inlet valve 23. The lower end of the suction port 24 is connected to the upper end of the air bag 17, and the upper end of the air bag 17 is connected to the lower end of the operating table 1. The lower end of the air bag 17 is equipped with a chip discharge port 19, and the chip discharge port 19 is equipped with a one-way air outlet valve 18. The lower end of the chip discharge port 19 is equipped with a collection frame 11. The air bag 17 is horizontally aligned with the push plate 22.

[0033] When the electric threaded rod 5 is started and rotated in the reverse direction, it moves the base 13 toward the cutting mechanism 12, which in turn moves the moving frame 21 and the push plate 22 toward the airbag 17, thereby squeezing the side of the airbag 17. This allows the waste chips inside the airbag 17 to be discharged into the collection frame 11 through the chip discharge port 19. When the electric threaded rod 5 is started in the forward direction, it moves the base 13 away from the cutting mechanism 12 and moves the push plate 22 away from the airbag 17. With the cooperation of the elastic support bar 20, the airbag 17 returns to its initial state and draws the waste chips from the operating table 1 into the airbag 17 from the trough 10, thus cleaning the waste chips. After each cutting of the mold steel, the waste chips in the trough 10 can be cleaned, achieving timely and rapid cleaning of the waste chips on the upper part of the operating table 1, which improves the cutting quality of this device.

[0034] The airbag 17 is made of elastic rubber, and an elastic support strip 20 is provided on the side of the airbag 17. The elastic support strip 20 is adhesively connected to the airbag 17.

[0035] By using the elastic rubber material for the airbag 17, it is easy to squeeze the airbag 17, so that the waste inside the airbag 17 can be smoothly discharged into the collection frame 11 through the waste discharge port 19 along with the gas inside the airbag 17. Furthermore, the design of the elastic support bar 20 allows the airbag 17 to quickly return to its initial state when it is not squeezed by the push plate 22. At the same time, the waste in the trough 10 is sucked into the airbag 17 through the suction port 24, thereby cleaning up the waste around the trough 10 and improving the cutting quality of this device.

[0036] The electric threading rod 5, hydraulic telescopic rod 15, electric telescopic rod 7, and cutting mechanism 12 described above can all be wirelessly controlled via a terminal. The duration of the electric threading rod 5's forward and reverse rotation can be adjusted. Combined with the hydraulic telescopic rod 15, different advance lengths can be applied to the mold steel, thereby continuously cutting mold steel of different sizes according to the operation requirements, making it widely applicable.

[0037] Working principle: When cutting mold steel, the mold steel body is first placed on the upper end of the operating table 1. The electric telescopic rod 7 is activated to drive the pressure plate 8 to fix the mold steel. Then, the cutting mechanism 12 is activated to cut the mold steel. When continuous cutting is required, the electric threaded rod 5 is activated according to the required mold steel length, which drives the base 13 to move to the corresponding position. Scale lines can be drawn on the surface of the operating table 1 to calibrate the length of the mold steel. Then, the hydraulic telescopic rod 15 on the base 13 is activated to drive a pair of fixing plates 3 to clamp the mold steel. Then, the electric telescopic rod 7 is activated in the opposite direction to move the pressure plate 8 away from the mold steel, releasing the fixing effect of the fixing components on the mold steel. After that, the electric threaded rod 5 is activated in the opposite direction to drive the base 13 to move towards the cutting mechanism 12, thereby driving the mold steel to move as a whole towards the cutting mechanism 12. When the mold steel moves to the appropriate position, the fixing components and the cutting mechanism 12 are activated in sequence to compact and cut the mold steel. This achieves continuous cutting of the mold steel and reduces labor costs.

[0038] Furthermore, when the electric threaded rod 5 is started to rotate in the reverse direction, driving the base 13 to move towards the cutting mechanism 12, it can drive the moving frame 21 and the push plate 22 to move towards the airbag 17, thereby squeezing the side of the airbag 17. This allows the waste chips inside the airbag 17 to be discharged into the collection frame 11 through the chip discharge port 19. When the electric threaded rod 5 is started in the forward direction, it drives the base 13 away from the cutting mechanism 12, and at the same time drives the push plate 22 away from the airbag 17. With the cooperation of the elastic support bar 20, the airbag 17 returns to its initial state, and the waste chips on the operating table 1 are sucked into the airbag 17 from the trough 10, thus cleaning the waste chips. After each cutting of the mold steel, the waste chips in the trough 10 can be cleaned, achieving timely and rapid cleaning of the waste chips on the upper end of the operating table 1, which improves the cutting quality of this device.

[0039] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A die steel production cutting device, comprising an operating table (1), a cutting mechanism (12) moving component, a fixing component, a dust removal component, and a backing plate (9), characterized in that: The lower end of the operating table (1) is provided with several support legs (2), and the upper end of the operating table (1) is provided with a trough (10). A cutting mechanism (12) is provided above the trough (10). The cutting mechanism (12) is located on the operating table (1). Both sides of the cutting mechanism (12) are provided with fixing components. One side of one of the fixing components is provided with a backing plate (9), and the other side of the fixing component is provided with a pair of moving components. The pair of moving components are arranged opposite to each other, and a dust removal component is provided below the trough (10) and located at the lower end of the operating table (1).

2. The apparatus of claim 1, wherein: The fixing component includes a support frame (6), which is located on the upper end of the operating table (1). The upper end of the support frame (6) is provided with an electric telescopic rod (7), and the output end of the electric telescopic rod (7) passes through the support frame (6) and is provided with a pressure plate (8) facing the upper surface of the operating table (1).

3. The die steel production cutting device as described in claim 1, characterized in that: The moving component includes a slide (4), an electric threaded rod (5), a guide rail (14) and a base (13). The operating table (1) has slides (4) on both sides. An electric threaded rod (5) is provided in the slide (4). A guide rail (14) is provided on one side of the slide (4) and on the side of the operating table (1). A moving block (16) is threaded onto the electric threaded rod (5).

4. The die steel production cutting device as described in claim 3, characterized in that: The movable block (16) is connected to a base (13). The bottom end of the base (13) is movably connected to the guide rail (14). A hydraulic telescopic rod (15) is provided on the base (13). The output end of the hydraulic telescopic rod (15) passes through the base (13) and is connected to a fixing plate (3). The hydraulic telescopic rod (15) is set horizontally toward the operating table (1).

5. The apparatus of claim 3 wherein: the cutting device is a saw. The dust removal assembly includes an airbag (17), a collection frame (11), and a movable frame (21). A pair of movable blocks (16) are connected to the two ends of the movable frame (21) on the side away from the base (13). The movable frame (21) is provided with a push plate (22), and the trough (10) is provided with several through holes.

6. The apparatus of claim 5 wherein: the cutting device is a saw. The lower end of the through hole is connected to a suction port (24), and the suction port (24) is provided with a one-way air inlet valve (23). The lower end of the suction port (24) is connected to the upper end of the air bag (17), and the upper end of the air bag (17) is connected to the lower end of the operating table (1). The lower end of the air bag (17) is provided with a chip discharge port (19), and the chip discharge port (19) is provided with a one-way air outlet valve (18). The lower end of the chip discharge port (19) is provided with a collection frame (11). The air bag (17) is aligned with the horizontal position of the push plate (22).

7. The die steel production cutting device as described in claim 6, characterized in that: The airbag (17) is made of elastic rubber, and an elastic support strip (20) is provided on the side of the airbag (17). The elastic support strip (20) is adhesively connected to the airbag (17).

Citation Information

Patent Citations

  • Cutting device for die steel production

    CN220698426U