Steel bar cutting device for water conservancy and hydropower

By designing a steel bar cutting device containing multiple components, the automatic loading, cutting, unloading and waste recycling of steel bars is realized, solving the problems of manual operation hazards and inconvenient waste recycling in the prior art, and improving production efficiency.

CN222944393UActive Publication Date: 2025-06-06JIUQUAN DAYU HYDROPOWER PROJECT CO LTD +1
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Patent Information

Application Number
CN202421542787.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-06-06
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

During the use of existing steel bar cutting devices, they need to be loaded and unloaded manually, and the waste generated after cutting needs to be manually recycled, and the cut steel bars generate heat and iron chip particles, endangering human safety.

Method used

A steel bar cutting device for water conservancy and hydropower is designed, including a platform, support plate, placement groove, lifting component, guide component, cutting component, guide component, moving component and clamping component. Through the coordinated work of these components, the automatic loading, cutting, unloading and waste recycling of steel bars is realized.

Benefits of technology

The automatic processing of steel bars is realized, which reduces the risk of manual operation, improves production efficiency, and solves the problem of waste recycling.

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Abstract

The utility model relates to the technical field of steel bar cutting devices, in particular to a steel bar cutting device for water conservancy and hydropower. In the using process of a traditional reinforcing steel bar cutting device, manual feeding and discharging of reinforcing steel bars are generally needed, redundant waste materials can be generated after the reinforcing steel bars are cut, manual waste recovery is needed, and due to the fact that the cut reinforcing steel bars can generate heat, danger and harm can be caused to the human body, and the use cost is low. And therefore, automatic discharging and waste recovery are inconvenient to realize. The utility model provides a steel bar cutting device for water conservancy and hydropower. The steel bar cutting device comprises a platform, a supporting plate, a containing groove, a lifting assembly, a guiding assembly, a cutting assembly, a material guiding assembly, a moving assembly and a clamping assembly. Compared with a traditional steel bar cutting device in the using process, the steel bar cutting device is provided with the material guiding structure and the movable clamping structures, the two sets of clamping structures are driven by the movable structures to move in the opposite directions, and therefore the purposes of automatic discharging and waste recycling can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel bar cutting devices, in particular to a steel bar cutting device for water conservancy and hydropower. Background Art

[0002] Water conservancy and hydropower engineering training has the knowledge of surveying, planning, design, construction, scientific research and management of water conservancy and hydropower engineering, and in water conservancy construction projects, steel bars are indispensable as a basic material and need to be cut in advance. The utility model relates to the technical field of steel bar cutting devices. With the development of society, the steel bar cutting device industry has become more and more developed, and the steel bar cutting devices have been continuously improved to meet the needs of production. Most steel bar cutting devices have the function of steel bar cutting, but the functions of automatic unloading and waste recycling are not perfect enough, and are inconvenient to operate and use. Usually, manual loading and unloading of steel bars is required. Moreover, excess waste is generated after the steel bar is cut, and manual waste recovery is required. Since the cut steel bars will generate heat and iron filings will be accompanied in the air, it will cause danger and harm to the human body, making it inconvenient to achieve automatic unloading and waste recovery. Utility Model Content

[0003] In order to overcome the problem that during the use of the steel bar cutting device, it is usually necessary to manually load and unload the steel bars. In addition, excess waste will be generated after the steel bar cutting, which requires manual waste recovery. Since the cut steel bars will generate heat and iron filings will be present in the air, it will cause danger and harm to the human body, making it inconvenient to achieve automatic unloading and waste recovery.

[0004] The technical solution of the utility model is: a steel bar cutting device for water conservancy and hydropower, comprising a platform, a support plate, a placement groove, a lifting component, a guide component, a cutting component, a material guiding component, a moving component and a clamping component; a placement groove is provided above the platform, a support plate is provided above the platform, a lifting component is provided on one side of the support plate, a guide component is provided on one side of the lifting component, a cutting component is provided on one side of the guide component, material guiding components are provided on both sides of the platform, a moving component is provided on the bottom wall of the platform, and clamping components are provided on both sides of the moving component.

[0005] Preferably, when the steel bar cutting device is in use, first, the steel bar is pushed into the interior of the placement groove through the middle of the two groups of material guide components, and then the clamping component is started to drive the steel bar to move to the position of the cutting component. Subsequently, the cutting component is started to cut the steel bar. When the finished steel bar needs to be unloaded, one group of clamping components is started to clamp and fix the finished steel bar, and at the same time, another group of clamping components is started to clamp and fix the steel bar waste, and then the moving component is started to drive the two groups of clamping components to move in relative directions, thereby achieving the purpose of automatic unloading and waste recycling.

[0006] Preferably, the lifting assembly includes a fixed plate, a lifting rod and a lifting block; a fixed plate is provided on one side of the support plate, a lifting rod is provided below the fixed plate, and a lifting block is provided at the lower end of the lifting rod; starting the lifting rod can drive the lifting block to move up and down, thereby driving the guide assembly to move up and down.

[0007] Preferably, the guide assembly includes a guide groove, a guide block and a guide rod; a guide groove is arranged inside the support plate, a guide rod is arranged inside the guide groove, a guide block is arranged on the side wall of the guide rod, the guide block is slidably connected to the guide rod, and one side of the guide block is fixedly connected to one side of the lifting block; the lifting block can drive the guide block to move up and down through the guide rod, thereby driving the cutting assembly to move up and down.

[0008] Preferably, the cutting assembly includes a lifting frame, a dustproof shell, an active motor, an active shaft and a cutting blade; a lifting frame is arranged on the other side of the guide block, a dustproof shell is arranged on the side wall of the lifting frame, an active motor is arranged inside the dustproof shell, an active shaft is arranged at the output end of the active motor, and a cutting blade is arranged on the side wall of the active shaft; starting the active motor can drive the active shaft to rotate, the active shaft can drive the cutting blade to rotate, and the steel bars can be cut by the cutting blade.

[0009] Preferably, the material guide assembly includes a material guide placement rack, a waste collection frame, a cutting groove, a mounting block, a mounting shaft and a material guide pulley; a cutting groove is provided above the platform, mounting blocks are provided on both sides of the platform, and multiple groups of mounting blocks are provided, a mounting shaft is provided inside the mounting block, both ends of the mounting shaft are rotatably connected to the inner wall of the mounting block, a material guide pulley is provided on the side wall of the mounting shaft, a material guide placement rack is provided at one end of the platform, and a waste collection frame is provided on the other side of the platform; first, the steel bar is pushed into the placement groove through the middle of the two groups of material guide pulleys, and then the clamping group is started The components can drive the steel bars to move to the position of the cutting groove, and then, the cutting component is started to cut the steel bars through the cutting groove. When the finished steel bars need to be unloaded, a group of clamping components is started to clamp and fix the finished steel bars. At the same time, another group of clamping components is started to clamp and fix the steel bar waste, and the moving component is started to drive the two groups of clamping components to move in relative directions. Then, the finished steel bars can be placed on the material guide placement rack, and the steel bar waste can be collected through the waste collection frame, thereby achieving the purpose of automatic unloading and waste recycling.

[0010] Preferably, the moving component includes a moving frame, a reciprocating motor, a bidirectional screw and a moving block; a moving frame is arranged on the bottom wall of the platform, a reciprocating motor is arranged on one side of the moving frame, a bidirectional screw is arranged at the output end of the reciprocating motor, one end of the bidirectional screw is rotatably connected to the inner wall of the moving frame, a moving block is arranged on the side wall of the bidirectional screw, two groups of moving blocks are arranged, and the moving blocks are threadedly connected to the bidirectional screw; starting the reciprocating motor can drive the bidirectional screw to rotate, and the bidirectional screw can drive the two groups of moving blocks to move in relative directions, thereby driving the two groups of clamping components to move in relative directions.

[0011] Preferably, the clamping assembly includes a clamping plate, an electric push rod and a moving frame; the moving frame is arranged on both sides of the moving block, an electric push rod is arranged at one end of the moving frame, and a clamping plate is arranged at one end of the electric push rod; the moving block can be guided and moved by the clamping plate driven by the electric push rod, and then, starting the electric push rod can drive the clamping plate to move, and the steel bars placed inside the slot can be clamped and fixed by the two sets of clamping plates.

[0012] Beneficial effects of the utility model:

[0013] 1. Compared with the traditional steel bar cutting device, during use, it is usually necessary to manually load and unload the steel bars, and after the steel bars are cut, excess waste will be generated, which requires manual waste recovery. Since the cut steel bars will generate heat, there will be iron filings in the air, which will cause danger and harm to the human body, making it inconvenient to achieve automatic unloading and waste recovery. The steel bar cutting device is provided with a guide structure and a mobile clamping structure. When the steel bar cutting device is in use, first, the steel bar is pushed into the inside of the placement groove through the middle of the two sets of guide structures, and then the clamping structure is started to drive the steel bar to move to the position of the cutting structure, and then the cutting structure is started to cut the steel bar. When the finished steel bar needs to be unloaded, one set of clamping structures is started to clamp and fix the finished steel bar, and at the same time, another set of clamping structures is started to clamp and fix the steel bar waste, and then the mobile structure is started to drive the two sets of clamping structures to move in relative directions, so as to achieve the purpose of automatic unloading and waste recovery;

[0014] 2. When the steel bar cutting device is in use, first, the steel bar is pushed into the inside of the placement groove through the middle of the two sets of guide pulleys, and then, the electric control push rod is started to drive the clamping plate to move, and the steel bar inside the placement groove can be clamped and fixed through the two sets of clamping plates, and then, the reciprocating motor is started to drive the bidirectional screw rod to rotate, and the bidirectional screw rod can drive the two sets of moving blocks to move in relative directions, and one set of moving blocks can drive the steel bar to move to the position of the cutting groove through the clamping assembly, and then, the active motor is started to drive the active shaft to rotate, and the active shaft can drive the cutting blade to rotate, and the steel bar can be cut through the cutting blade. When it is necessary to unload the finished steel bar, one set of clamping assemblies is started to clamp and fix the finished steel bar, and at the same time, another set of clamping assemblies is started to clamp and fix the steel bar waste, and the moving assembly is started to drive the two sets of clamping assemblies to move in relative directions, and then the finished steel bar can be placed through the guide placement rack, and the steel bar waste can be collected through the waste collection frame, so as to achieve the purpose of automatic unloading and waste recycling;

[0015] 3. Starting the lifting rod can drive the lifting block to move up and down, the lifting block can drive the guide block to move up and down through the guide rod, the guide block can drive the guide frame to move up and down, thereby driving the cutting assembly to achieve the effect of height adjustment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 What is shown is a first three-dimensional structural schematic diagram of a steel bar cutting device for water conservancy and hydropower according to the utility model;

[0017] Figure 2 What is shown is a schematic diagram of the first partial three-dimensional structure of a steel bar cutting device for water conservancy and hydropower according to the utility model;

[0018] Figure 3 The second partial three-dimensional structure schematic diagram of a steel bar cutting device for water conservancy and hydropower of the utility model is shown;

[0019] Figure 4 The third partial three-dimensional structure diagram of a steel bar cutting device for water conservancy and hydropower of the utility model is shown;

[0020] Explanation of the accompanying drawings: 1. lifting assembly; 2. guide assembly; 3. cutting assembly; 4. material guide assembly; 5. moving assembly; 6. clamping assembly; 7. platform; 8. support plate; 9. placement groove; 101. fixed plate; 102. lifting rod; 103. lifting block; 201. guide groove; 202. guide block; 203. guide rod; 301. lifting frame; 302. dust cover; 303. active motor; 304. active shaft; 305. cutting blade; 401. cutting groove; 402. mounting block; 403. mounting shaft; 404. material guide pulley; 405. material guide placement rack; 406. waste collection frame; 501. moving frame; 502. reciprocating motor; 503. bidirectional screw rod; 504. moving block; 601. clamping plate; 602. electric control push rod; 603. moving frame. DETAILED DESCRIPTION

[0021] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0022] See also Figure 1 The utility model provides an embodiment: a steel bar cutting device for water conservancy and hydropower, comprising a platform 7, a support plate 8, a placement groove 9, a lifting component 1, a guide component 2, a cutting component 3, a material guide component 4, a moving component 5 and a clamping component 6; a placement groove 9 is opened above the platform 7, a support plate 8 is arranged above the platform 7, a lifting component 1 is arranged on one side of the support plate 8, a guide component 2 is arranged on one side of the lifting component 1, a cutting component 3 is arranged on one side of the guide component 2, material guide components 4 are arranged on both sides of the platform 7, a moving component 5 is arranged on the bottom wall of the platform 7, and clamping components 6 are arranged on both sides of the moving component 5.

[0023] See also Figure 2, the lifting assembly 1 includes a fixed plate 101, a lifting rod 102 and a lifting block 103; a fixed plate 101 is provided on one side of the support plate 8, a lifting rod 102 is provided below the fixed plate 101, and a lifting block 103 is provided at the lower end of the lifting rod 102; starting the lifting rod 102 can drive the lifting block 103 to move up and down, thereby driving the guide assembly 2 to move up and down; the guide assembly 2 includes a guide groove 201, a guide block 202 and a guide rod 203; a guide groove 201 is provided inside the support plate 8, a guide rod 203 is provided inside the guide groove 201, a guide block 202 is provided on the side wall of the guide rod 203, the guide block 202 is slidably connected to the guide rod 203, and one side of the guide block 202 is fixedly connected to one side of the lifting block 103; the lifting The block 103 can drive the guide block 202 to move up and down through the guide rod 203, thereby driving the cutting assembly 3 to move up and down; the cutting assembly 3 includes a lifting frame 301, a dust cover 302, an active motor 303, an active shaft 304 and a cutting blade 305; a lifting frame 301 is arranged on the other side of the guide block 202, a dust cover 302 is arranged on the side wall of the lifting frame 301, an active motor 303 is arranged inside the dust cover 302, an active shaft 304 is arranged at the output end of the active motor 303, and a cutting blade 305 is arranged on the side wall of the active shaft 304; starting the active motor 303 can drive the active shaft 304 to rotate, the active shaft 304 can drive the cutting blade 305 to rotate, and the steel bar can be cut by the cutting blade 305.

[0024] See also Figure 3-4In this embodiment, the material guide assembly 4 includes a material guide rack 405, a waste collection frame 406, a cutting groove 401, a mounting block 402, a mounting shaft 403 and a material guide pulley 404; a cutting groove 401 is provided above the platform 7, mounting blocks 402 are provided on both sides of the platform 7, and the mounting blocks 402 are provided with multiple groups, and the mounting shaft 403 is provided inside the mounting block 402. Both ends of the mounting shaft 403 are rotatably connected to the inner wall of the mounting block 402, and a material guide pulley 404 is provided on the side wall of the mounting shaft 403. A material guide rack 405 is provided at one end of the platform 7, and a waste collection frame 406 is provided on the other side of the platform 7; first, the steel bars are passed through the two The middle of the group of guide pulleys 404 is pushed into the interior of the placement groove 9, and then, the clamping assembly 6 is started to drive the steel bar to move to the position of the cutting groove 401. Subsequently, the cutting assembly 3 is started to cut the steel bar through the cutting groove 401. When the finished steel bar needs to be unloaded, one group of clamping assemblies 6 is started to clamp and fix the finished steel bar. At the same time, another group of clamping assemblies 6 is started to clamp and fix the steel bar waste, and the moving assembly 5 is started to drive the two groups of clamping assemblies 6 to move in relative directions. Then, the finished steel bar can be placed through the guide placement rack 405, and the steel bar waste can be collected through the waste collection frame 406, so that automatic unloading can be achieved. The purpose of dynamic unloading and waste recycling; the moving assembly 5 includes a moving frame 501, a reciprocating motor 502, a bidirectional screw rod 503 and a moving block 504; a moving frame 501 is arranged on the bottom wall of the platform 7, a reciprocating motor 502 is arranged on one side of the moving frame 501, a bidirectional screw rod 503 is arranged on the output end of the reciprocating motor 502, one end of the bidirectional screw rod 503 is rotatably connected to the inner wall of the moving frame 501, and a moving block 504 is arranged on the side wall of the bidirectional screw rod 503, and the moving block 504 is provided with two groups, and the moving block 504 is threadedly connected with the bidirectional screw rod 503; starting the reciprocating motor 502 can drive the bidirectional screw rod 503 to rotate, and the bidirectional screw rod 503 can To drive the two groups of moving blocks 504 to move in relative directions, thereby driving the two groups of clamping components 6 to move in relative directions; the clamping component 6 includes a clamping plate 601, an electric control push rod 602 and a moving frame 603; moving frames 603 are arranged on both sides of the moving block 504, one end of the moving frame 603 is arranged with an electric control push rod 602, and one end of the electric control push rod 602 is arranged with a clamping plate 601; the moving block 504 can drive the clamping plate 601 to move in a guided manner through the electric control push rod 602, and then, starting the electric control push rod 602 can drive the clamping plate 601 to move, and the steel bars inside the placement slot 9 can be clamped and fixed through the two groups of clamping plates 601.

[0025] When the steel bar cutting device is in use, first, the steel bar is pushed into the interior of the placement slot 9 through the middle of the two sets of guide pulleys 404;

[0026] Then, the electric control push rod 602 is started to drive the clamping plate 601 to move, and the steel bars inside the placement slot 9 can be clamped and fixed by the two sets of clamping plates 601;

[0027] Subsequently, the reciprocating motor 502 is started to drive the bidirectional screw rod 503 to rotate, and the bidirectional screw rod 503 can drive the two sets of moving blocks 504 to move in relative directions, and one set of moving blocks 504 can drive the steel bar to move to the position of the cutting groove 401 through the clamping assembly 6;

[0028] Then, the active motor 303 is started to drive the active shaft 304 to rotate, and the active shaft 304 can drive the cutting blade 305 to rotate, and the cutting blade 305 can cut the steel bar;

[0029] When the finished steel bars need to be unloaded, one set of clamping components 6 is started to clamp and fix the finished steel bars, and at the same time, another set of clamping components 6 is started to clamp and fix the steel bar waste;

[0030] In addition, the moving component 5 is started to drive the two groups of clamping components 6 to move in relative directions. Then, the finished steel bars can be placed through the material guide placement rack 405, and the steel bar waste can be collected through the waste collection frame 406, thereby achieving the purpose of automatic unloading and waste recycling.

[0031] Through the above steps, when the steel bar cutting device is in use, first, the steel bar is pushed into the interior of the placement groove 9 through the middle of the two groups of material guide components 4, and then, the clamping component 6 is started to drive the steel bar to move to the position of the cutting component 3, and then, the cutting component 3 is started to cut the steel bar. When the finished steel bar needs to be unloaded, one group of clamping components 6 is started to clamp and fix the finished steel bar, and at the same time, another group of clamping components 6 is started to clamp and fix the steel bar waste, and then the moving component 5 is started to drive the two groups of clamping components 6 to move in relative directions, so as to achieve the purpose of automatic unloading and waste recycling.

[0032] 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 steel bar cutting device for water conservancy and hydropower, comprising a platform (7); characterized in that: The platform (7) further comprises a support plate (8), a placement groove (9), a lifting component (1), a guide component (2), a cutting component (3), a material guide component (4), a moving component (5) and a clamping component (6); a placement groove (9) is provided above the platform (7); a support plate (8) is provided above the platform (7); a lifting component (1) is provided on one side of the support plate (8); a guide component (2) is provided on one side of the lifting component (1); a cutting component (3) is provided on one side of the guide component (2); material guide components (4) are provided on both sides of the platform (7); a moving component (5) is provided on the bottom wall of the platform (7); and clamping components (6) are provided on both sides of the moving component (5).

2. A steel bar cutting device for water conservancy and hydropower according to claim 1, characterized in that: The lifting assembly (1) comprises a fixed plate (101), a lifting rod (102) and a lifting block (103); the fixed plate (101) is arranged on one side of the support plate (8), the lifting rod (102) is arranged below the fixed plate (101), and the lifting block (103) is arranged at the lower end of the lifting rod (102).

3. A steel bar cutting device for water conservancy and hydropower according to claim 1, characterized in that: The guide assembly (2) comprises a guide groove (201), a guide block (202) and a guide rod (203); the guide groove (201) is arranged inside the support plate (8), the guide rod (203) is arranged inside the guide groove (201), the guide block (202) is arranged on the side wall of the guide rod (203), the guide block (202) is slidably connected to the guide rod (203), and one side of the guide block (202) is fixedly connected to one side of the lifting block (103).

4. A steel bar cutting device for water conservancy and hydropower according to claim 3, characterized in that: The cutting assembly (3) comprises a lifting frame (301), a dustproof shell (302), a driving motor (303), a driving shaft (304) and a cutting blade (305); the lifting frame (301) is arranged on the other side of the guide block (202), the dustproof shell (302) is arranged on the side wall of the lifting frame (301), the driving motor (303) is arranged inside the dustproof shell (302), the driving shaft (304) is arranged at the output end of the driving motor (303), and the cutting blade (305) is arranged on the side wall of the driving shaft (304).

5. A steel bar cutting device for water conservancy and hydropower according to claim 1, characterized in that: The material guide assembly (4) comprises a material guide placement frame (405), a waste material collection frame (406), a cutting groove (401), a mounting block (402), a mounting shaft (403) and a material guide pulley (404); a cutting groove (401) is provided above the platform (7), mounting blocks (402) are provided on both sides of the platform (7), a plurality of mounting blocks (402) are provided, a mounting shaft (403) is provided inside the mounting block (402), both ends of the mounting shaft (403) are rotatably connected to the inner wall of the mounting block (402), a material guide pulley (404) is provided on the side wall of the mounting shaft (403), a material guide placement frame (405) is provided at one end of the platform (7), and a waste material collection frame (406) is provided at the other side of the platform (7).

6. A steel bar cutting device for water conservancy and hydropower according to claim 1, characterized in that: The moving assembly (5) comprises a moving frame (501), a reciprocating motor (502), a bidirectional screw rod (503) and a moving block (504); the moving frame (501) is arranged on the bottom wall of the platform (7); the reciprocating motor (502) is arranged on one side of the moving frame (501); the output end of the reciprocating motor (502) is arranged with a bidirectional screw rod (503); one end of the bidirectional screw rod (503) is rotatably connected to the inner wall of the moving frame (501); the moving block (504) is arranged on the side wall of the bidirectional screw rod (503); two groups of the moving block (504) are arranged; and the moving block (504) is threadedly connected to the bidirectional screw rod (503).

7. A steel bar cutting device for water conservancy and hydropower according to claim 6, characterized in that: The clamping assembly (6) comprises a clamping plate (601), an electric control push rod (602) and a moving frame (603); the moving frames (603) are arranged on both sides of the moving block (504), one end of the moving frame (603) is arranged with the electric control push rod (602), and one end of the electric control push rod (602) is arranged with the clamping plate (601).

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