Cutting equipment for steel plate production

The steel plate cutting device addresses the challenge of securing and positioning steel plates during cutting by using a servo motor and clamping mechanism to ensure precise and efficient cutting.

CN223098120UActive Publication Date: 2025-07-15LIAONING FUBANG PLASTIC PIPE IND
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Patent Information

Application Number
CN202422178793.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-15
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The existing steel plate production and cutting equipment cannot effectively limit the steel plate when cutting, resulting in inconvenient operation.

Method used

The bidirectional threaded rod driven by a servo motor is used to cooperate with the clamp, and the cutting knife is driven by the limiting plate and hydraulic cylinder to achieve accurate positioning and cutting of the steel plate.

Benefits of technology

It realizes precise positioning and efficient cutting of steel plates, improving the practicality and operational convenience of cutting equipment.

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Abstract

The utility model provides cutting equipment for steel plate production, and belongs to the technical field of steel plate production cutting. The cutting equipment for steel plate production comprises an assembling frame, a servo motor is arranged on one side of the assembling frame, a two-way threaded rod is arranged at the output end of the servo motor, mounting frames are symmetrically connected to the surface of the two-way threaded rod in a threaded mode, and a fixing plate is arranged at the tops of the mounting frames; according to the automatic assembling machine, the mounting table, the machining table, the servo motor, the two-way threaded rod, the mounting frame, the fixing plates, the clamping plates, the speed reducing motor, the limiting plate and the PLC are matched with one another, the servo motor is started to drive the two-way threaded rod, the two-way threaded rod is driven to rotate, the two-way threaded rod is driven to rotate, and the two-way threaded rod is driven to rotate; the two-way threaded rod can drive the two sets of mounting frames to move oppositely, the two sets of fixing plates and the two sets of clamping plates to move, when the two sets of clamping plates make contact with the two sides of the steel plate, the position of the steel plate can be limited, and the cutting effect of the steel plate is improved.
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Description

Technical Field

[0001] The utility model relates to the field of steel plate production and cutting, and particularly relates to a cutting device for steel plate production. Background Art

[0002] The cutting device for steel plate production cuts the steel plate into required sizes by mechanical force, and is suitable for relatively thick steel plates and simple cutting operations. During specific cutting, different cutting machines can be used according to requirements to perform cutting operations on the steel plate. These devices are usually selected according to the thickness of the steel plate, required precision, production efficiency, and cost budget. Each device has its unique advantages and applicable scenarios, and can be selected and configured according to specific requirements to perform cutting operations on the steel plate.

[0003] When specifically producing steel plates, during the cutting process, the usual cutting method is to directly place the steel plate on a table board, and then the staff directly uses a cutting machine, etc. to cut the steel plate. Although this method can perform cutting operations on the steel plate, during cutting, the steel plate cannot be limited, and then during the cutting operation, it is not convenient for the operator to use. Summary of the Utility Model

[0004] To make up for the above deficiencies, the utility model provides a cutting device for steel plate production that overcomes the above technical problems or at least partially solves the above problems.

[0005] The utility model is implemented as follows:

[0006] The utility model provides a cutting device for steel plate production, including an assembly frame,

[0007] A servo motor is arranged on one side of the assembly frame. The output end of the servo motor is provided with a bidirectional threaded rod. The surface of the bidirectional threaded rod is symmetrically thread-connected with mounting frames. The top of the mounting frames is provided with fixing plates. On the opposite sides of the two fixing plates, clamping plates are arranged. A limiting plate is arranged inside the assembly frame;

[0008] A stepping motor is arranged on the top of the assembly frame. The top of the stepping motor is provided with a processing table.

[0009] In a preferred scheme, a fixing frame is arranged on the top of the assembly frame, and a hydraulic cylinder is arranged on the top of the fixing frame.

[0010] The bottom of the hydraulic cylinder is provided with a cutting knife, and the cutting knife is arranged directly above the processing table.

[0011] In a preferred scheme, a reduction motor is arranged inside the assembly frame, and the output end of the reduction motor is provided with a fixed shaft.

[0012] In a preferred embodiment, a conveyor belt is provided on the surface of the fixed shaft, and a connecting ring is provided at the bottom of the conveyor belt.

[0013] In a preferred embodiment, a limiting frame is provided on one side of the connecting ring, and the limiting plate is fixed to the surface of the limiting frame.

[0014] In a preferred embodiment, sliding grooves are formed in both inner sides of the assembly frame, sliding rods are arranged inside the sliding grooves, and the connecting ring slides on the surface of the sliding rods.

[0015] In a preferred embodiment, a PLC controller is provided on the other side of the assembly frame, an installation table is arranged inside the assembly frame, a bearing sleeve is arranged inside one side of the assembly frame, one end of the bidirectional threaded rod is connected to the bearing sleeve, a limiting rod is arranged inside the assembly frame, and the installation frame is arranged on the surface of the limiting rod.

[0016] A cutting device for steel plate production provided by the present utility model has the following beneficial effects:

[0017] 1. Through the mutual cooperation of the installation table, processing table, servo motor, bidirectional threaded rod, installation frame, fixing plate, clamping plate, reduction motor, limiting plate and PLC controller, first start the servo motor to drive the bidirectional threaded rod to rotate. The bidirectional threaded rod can drive the two groups of installation frames to move towards each other, and the two groups of fixing plates and clamping plates move synchronously. When the two groups of clamping plates contact both sides of the steel plate, turn off the servo motor. When the limiting is completed, the operator can start the reduction motor to drive the limiting plate to move. When the position of the steel plate is adjusted and limited, the position of the steel plate can be adjusted and limited, improving the cutting effect of the steel plate.

[0018] 2. Through the mutual cooperation of the servo motor, clamping plate, stepping motor, processing table, hydraulic cylinder and cutting knife, start the servo motor and reverse it, so that the two groups of clamping plates move in opposite directions. After the movement is completed, start the stepping motor to drive the processing table to rotate. When it rotates to the direction where the steel plate needs to be cut, turn off the stepping motor, so as to adjust the position of the steel plate. After the adjustment is completed, limit its current position, and start the hydraulic cylinder to drive the cutting knife to cut the steel plate, thereby improving the practicability of the device. Description of the Drawings

[0019] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present utility model, and thus should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other relevant drawings can also be obtained based on these drawings;

[0020] Figure 1 is the overall three-dimensional view provided by the embodiment of the present utility model;

[0021] Figure 2 is the schematic structural diagram of one side of the mounting rack provided by the embodiment of the present utility model;

[0022] Figure 3 is the schematic structural diagram of the bottom of the mounting rack provided by the embodiment of the present utility model;

[0023] Figure 4 provided by the embodiment of the present utility model Figure 3 is the enlarged view of part A in

[0024] In the figure: 11, assembly rack; 12, servo motor; 13, bidirectional threaded rod; 14, limiting rod; 15, processing table; 16, mounting rack; 17, fixing plate; 18, clamping plate; 19, cutting knife; 2, connecting ring; 21, transmission belt; 22, sliding rod; 23, limiting frame; 24, limiting plate; 25, fixing frame; 26, hydraulic cylinder; 27, PLC controller; 28, mounting table; 29, reduction motor; 3, stepping motor; 31, bearing sleeve. Specific embodiments

[0025] To make the purpose, technical solutions and advantages of the embodiments of the present utility model clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.

[0026] Refer to Figures 1-4The utility model provides a technical solution: a cutting device for steel plate production, including an assembly frame 11, a servo motor 12 is arranged on one side of the assembly frame 11, a bidirectional threaded rod 13 is arranged on the output end of the servo motor 12, a mounting frame 16 is symmetrically threadedly connected on the surface of the bidirectional threaded rod 13, a fixing plate 17 is arranged on the top of the mounting frame 16, and a clamping plate 18 is arranged on the opposite sides of the two sets of fixing plates 17, and a limiting plate 24 is arranged inside the assembly frame 11, through the mounting table 28, the processing table 15, the servo motor 12, the bidirectional threaded rod 13, the mounting frame 16, the fixing plate 17, the clamping plate 18, the reduction motor 29, the limit plate 24 and the PLC controller 27 cooperate with each other, so that when the operator needs to cut the steel plate, the operator can first place the steel plate on the top of the mounting table 28, and then move the steel plate to the processing table 15. After the movement is completed, the operator can start the servo motor 12 to drive the bidirectional threaded rod 13 to rotate, and the bidirectional threaded rod 13 can drive the two sets of mounting frames 16 to move toward each other. When the mounting frame 16 moves, the two sets of fixing plates 17 and clamping plates 18 move synchronously When the two sets of clamps 18 come into contact with both sides of the steel plate, the servo motor 12 is turned off, so that the positions of both sides of the steel plate can be temporarily limited. When the limiting is completed, the operator can start the reduction motor 29 to drive the fixed shaft to rotate, and the fixed shaft drives the transmission belt 21 to rotate. When the transmission belt 21 rotates, it can drive the connecting ring 2 to move on the slide bar 22. When the connecting ring 2 moves, it can drive the limiting frame 23 and the limiting plate 24 to move. At this time, the operator can control the position of the limiting plate 24 through the PLC controller 27. When it moves to one side of the steel plate, it can resist the steel plate, so that the position of the steel plate can be adjusted. When the adjustment is completed, the operator can turn off the reduction motor 29 and start the servo motor 12, so that the two sets of clamps 18 can clamp and limit the steel plate. When the position adjustment and limiting of the steel plate are completed, the operator can start the hydraulic cylinder 26 to drive the cutting knife 19 to cut the steel plate. Then, when the operator cuts the steel plate, the position of the steel plate can be adjusted and limited, thereby improving the cutting effect of the steel plate.

[0027] Reference Figures 1-4, in a preferred embodiment, a stepping motor 3 is provided at the top of the assembly frame 11, a processing table 15 is provided at the top of the stepping motor 3, a fixing frame 25 is provided at the top of the assembly frame 11, a hydraulic cylinder 26 is provided at the top of the fixing frame 25, a cutting knife 19 is provided at the bottom of the hydraulic cylinder 26, the cutting knife 19 is disposed directly above the processing table 15, a reduction motor 29 is provided inside the assembly frame 11, a fixed shaft is provided at the output end of the reduction motor 29, a conveyor belt 21 is provided on the surface of the fixed shaft, a connecting ring 2 is provided at the bottom of the conveyor belt 21, a limiting frame 23 is provided on one side of the connecting ring 2, a limiting plate 24 is fixed to the surface of the limiting frame 23. Through the mutual cooperation of the servo motor 12, the clamping plates 18, the stepping motor 3, the processing table 15, the hydraulic cylinder 26 and the cutting knife 19, when the operator needs to cut the steel plate in other directions as required, the operator can start the servo motor 12 and reverse it, so that the two clamping plates 18 move in opposite directions. After the movement is completed, the operator can start the stepping motor 3 to drive the processing table 15 to rotate. When it rotates to the direction where the steel plate needs to be cut, the operator can turn off the stepping motor 3, so that the position of the steel plate can be adjusted. After the adjustment is completed, limit its current position and start the hydraulic cylinder 26 to drive the cutting knife 19 to cut the steel plate, thereby improving the practicability of the device and facilitating the operator to use it.

[0028] Refer to Figures 1-4 , in a preferred embodiment, sliding grooves are respectively formed in the inner sides of both sides of the assembly frame 11, sliding rods 22 are provided inside the sliding grooves, the connecting ring 2 slides on the surfaces of the sliding rods 22, a PLC controller 27 is provided on the other side of the assembly frame 11. By providing the PLC controller 27, the servo motor 12, the hydraulic cylinder 26, the reduction motor 29 and the stepping motor 3 can be controlled. An installation table 28 is provided inside the assembly frame 11, a bearing sleeve 31 is provided inside one side of the assembly frame 11, one end of the bidirectional threaded rod 13 is connected to the bearing sleeve 31, a limiting rod 14 is provided inside the assembly frame 11, and the mounting frame 16 is provided on the surface of the limiting rod 14.

[0029] Specifically, the working process or working principle of the cutting equipment for steel plate production is as follows: when the steel plate is produced, it needs to be cut. The usual cutting method is to directly place the steel plate on a table, and then the staff directly uses a cutting machine to cut the steel plate. Although this method can cut the steel plate, it is impossible to limit the steel plate during cutting, and then perform the cutting operation, which is inconvenient for the operator to use. Therefore, the technical solution can solve the above problem. When the operator needs to cut the steel plate, the operator can first place the steel plate on the top of the mounting table 28, and then move the steel plate to the processing table 15. When the movement is completed, the operator The author can start the servo motor 12 to drive the bidirectional threaded rod 13 to rotate, and the bidirectional threaded rod 13 can drive the two sets of mounting frames 16 to move toward each other. When the mounting frame 16 moves, the two sets of fixed plates 17 and the clamping plates 18 move synchronously. When the two sets of clamping plates 18 contact the two sides of the steel plate, the servo motor 12 is turned off, so that the positions of the two sides of the steel plate can be temporarily limited. After the limiting is completed, the operator can start the reduction motor 29 to drive the fixed shaft to rotate, and the fixed shaft drives the transmission belt 21 to rotate. When the transmission belt 21 rotates, it can drive the connecting ring 2 to move on the sliding rod 22. When the connecting ring 2 moves, it can drive the limit frame 23 and The limit plate 24 moves. At this time, the operator can control the position of the limit plate 24 through the PLC controller 27. When it moves to one side of the steel plate, it can resist the steel plate, so that the position of the steel plate can be adjusted. When the adjustment is completed, the operator can turn off the reduction motor 29 and start the servo motor 12, so that the two sets of clamps 18 can clamp and limit the steel plate. When the position adjustment and limiting of the steel plate are completed, the operator can start the hydraulic cylinder 26 to drive the cutting knife 19 to cut the steel plate. Then, when the operator cuts the steel plate, the position of the steel plate can be adjusted and its position can be limited, thereby improving the cutting efficiency of the steel plate. When the operator needs to cut the steel plate in other directions as required, the operator can start the servo motor 12 and reverse it, so that the two sets of clamps 18 move in opposite directions. When the movement is completed, the operator can start the stepper motor 3 to drive the processing table 15 to rotate. When it rotates to the direction where the steel plate needs to be cut, the operator can turn off the stepper motor 3 to adjust the position of the steel plate. When the adjustment is completed, the current position is limited, and the hydraulic cylinder 26 is started to drive the cutting knife 19 to cut the steel plate, thereby improving the practicability of the device and facilitating the operator to use it. At this point, all processes are completed.

[0030] It should be noted that the servo motor 12, the hydraulic cylinder 26, the reduction motor 29, the stepping motor 3 and the PLC controller 27 are all electrically connected to an external power supply and are devices or equipment existing in the prior art, or devices or equipment that can be realized by the prior art. Their power supply, specific composition and principle are clear to those skilled in the art, so they will not be described in detail here.

Claims

1. A cutting device for steel plate production, characterized in that: It includes an assembly frame (11). On one side of the assembly frame (11), a servo motor (12) is provided. At the output end of the servo motor (12), a bidirectional threaded rod (13) is provided. On the surface of the bidirectional threaded rod (13), mounting frames (16) are symmetrically and threadedly connected. On the top of the mounting frame (16), a fixing plate (17) is provided. On the opposite sides of the two fixing plates (17), clamping plates (18) are provided. Inside the assembly frame (11), a limiting plate (24) is provided. On the top of the assembly frame (11), a stepping motor (3) is provided. On the top of the stepping motor (3), a processing table (15) is provided.

2. The cutting device for steel plate production according to claim 1, characterized in that, On the top of the assembly frame (11), a fixing frame (25) is provided. On the top of the fixing frame (25), a hydraulic cylinder (26) is provided.

3. The cutting device for steel plate production according to claim 2, characterized in that, At the bottom of the hydraulic cylinder (26), a cutting knife (19) is provided. The cutting knife (19) is arranged directly above the processing table (15).

4. The cutting device for steel plate production according to claim 3, characterized in that, Inside the assembly frame (11), a reduction motor (29) is provided. At the output end of the reduction motor (29), a fixed shaft is provided.

5. The cutting device for steel plate production according to claim 4, characterized in that, On the surface of the fixed shaft, a conveyor belt (21) is provided. At the bottom of the conveyor belt (21), a connecting ring (2) is provided.

6. The cutting device for steel plate production according to claim 5, characterized in that, On one side of the connecting ring (2), a limiting frame (23) is provided. The limiting plate (24) is fixed to the surface of the limiting frame (23).

7. The cutting device for steel plate production according to claim 6, wherein, Inside both sides of the assembly frame (11), chutes are provided. Inside the chutes, sliding rods (22) are provided. The connecting ring (2) slides on the surface of the sliding rods (22).

8. The cutting device for steel plate production according to claim 7, characterized in that, On the other side of the assembly frame (11), a PLC controller (27) is provided. Inside the assembly frame (11), a mounting table (28) is provided. Inside one side of the assembly frame (11), a bearing sleeve (31) is provided. One end of the bidirectional threaded rod (13) is connected to the bearing sleeve (31). Inside the assembly frame (11), a limiting rod (14) is provided. The mounting frame (16) is arranged on the surface of the limiting rod (14).