H-shaped steel cutting equipment with fixing structure

By designing the fixed structure of conveying, limiting, rolling and cutting components, the sliding problem during steel cutting is solved, stable conveying and smooth cutting of steel is achieved, and construction costs are reduced.

CN223146131UActive Publication Date: 2025-07-25WANDERKAI CONSTR GRP CO LTD
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Patent Information

Application Number
CN202421963091.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-07-25
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

Existing steel cutting equipment is prone to sliding during cutting, resulting in uneven cutting surfaces, affecting the use effect and increasing construction costs.

Method used

A fixed structure including a conveying component, a limiting component, a roller assembly, a cutting component and a control component are designed. Through the conveying component, the steel is moved, the limiting component limits sliding, the roller assembly fixes the inlet and outlet, the cutting component cuts the steel, and the control component controls the movement, so as to achieve stable conveying and cutting of steel.

Benefits of technology

Effectively limit the horizontal sliding of steel, ensure the flat cutting surface, reduce construction waste, and reduce construction costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of H-shaped steel cutting equipment, in particular to H-shaped steel cutting equipment with a fixing structure, and aims to solve the technical problems that when the steel cutting equipment is used for cutting steel, the steel needs to be fixed at a specified operation position of the equipment, but most of the steel cutting equipment cannot fix the steel at the specified operation position of the equipment when the steel cutting equipment is used for cutting the steel. Steel is prone to horizontally sliding, the cutting face of the steel is uneven, normal use of the steel is affected, and the construction cost is increased. According to the technical scheme, the H-shaped steel cutting equipment with the fixing structure comprises a conveying assembly, a limiting assembly, a rolling assembly, a cutting assembly, a sliding assembly and a control assembly; compared with a traditional steel cutting device, the steel cutting device can be flexibly adjusted according to the actual size of the steel in a mode of limiting horizontal sliding of the steel when the steel is prone to horizontally sliding in the cutting process, stable conveying of the steel is guaranteed, and horizontal sliding of the steel is effectively limited.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel cutting equipment, in particular to an H-shaped steel cutting equipment with a fixing structure. Background Art

[0002] H-shaped steel is a kind of steel with more optimized cross-sectional area distribution and more reasonable strength-to-weight ratio. Its cross-section is shaped like an H, and all parts of the H-shaped steel are arranged at right angles. Therefore, it has strong bending resistance in all directions, saves cost in use, has a light structural weight, and is widely used in various civil and industrial building structures and public infrastructure construction. The factory length of H-shaped steel is a unified length, and during use, the steel needs to be cut into the required length. When using steel cutting equipment to cut steel, the steel needs to be fixed at the designated working position of the equipment. However, for most steel cutting equipment, the fixing structure is relatively simple, and the fixing effect on the steel is weak. During cutting, the steel is prone to sliding under the influence of the cutting equipment, resulting in the cutting surface of the steel not reaching the expected effect, causing inconvenience to the use of the steel and increasing the construction cost. Content of the Utility Model

[0003] In order to overcome the problem that for most steel cutting equipment, during the steel cutting operation, the steel is prone to horizontal sliding, resulting in an uneven cutting surface of the steel, affecting the normal use of the steel, scrapping the steel, causing waste to the construction, and increasing the construction cost.

[0004] The technical solution of the utility model is: an H-shaped steel cutting equipment with a fixing structure, which includes a bracket, a conveying component, a limiting component, a rolling component, a cutting component, a sliding component and a control component; the conveying component is arranged on the upper side of the bracket, the limiting component is arranged on the upper side of the conveying component, the rolling component is arranged on one side of the limiting component, the cutting component is arranged on one side of the bracket, the sliding component is arranged on the lower side of the cutting component, and the control component is arranged on one side of the sliding component.

[0005] Preferably, the conveying component is installed on the bracket to move the steel, the limiting component is used to restrict the sliding of the steel during cutting, the rolling component can normally feed and discharge materials when pressing the steel, the cutting component is used to cut and truncate the steel, the sliding component is used to move the cutting component, the control component is used to control the movement of the conveying component, the control component is used to control the movement of the cutting component, and the control component is used to control the power supply of the cutting component.

[0006] Preferably, the conveying assembly includes a conveyor belt, conveying rollers, conveying bearings, and a conveying motor; the inside of the bracket is provided with conveying bearings, the outside of the conveying bearings is provided with conveying rollers, the conveying rollers and the conveying bearings are rotatably connected to each other, the outside of the conveying rollers is provided with a conveyor belt, and a conveying motor is provided on one side of the bracket. The output end of the conveying motor is connected to the conveying rollers; the steel is conveyed by the conveyor belt, the conveyor belt is driven to move by the rolling of the conveying rollers, the conveying rollers are fixed by the conveying bearings, and the conveying rollers are driven to rotate by the conveying motor.

[0007] Preferably, the limiting assembly includes a slide bar and a spring; a slide bar is provided on one side of the bracket, and a spring is provided inside the slide bar; the components can slide back and forth in the bracket through the slide bar, and the movement tendency of the steel is restricted by the spring to accommodate steel of different sizes.

[0008] Preferably, the rolling material assembly includes a connecting rod, rolling material rollers, and rolling material bearings; a connecting rod is provided on one side of the bracket, rolling material bearings are provided on the outside of the connecting rod, rolling material rollers are provided on the outside of the rolling material bearings, and the rolling material bearings and the rolling material rollers are rotatably connected to each other; the rolling material bearings are fixed by the connecting rod, the normal feeding and discharging can be achieved when the steel is fixed by the rolling material rollers, and the rolling material rollers are fixed by the rolling material bearings.

[0009] Preferably, the cutting assembly includes a circular saw, a housing, cutting bearings, a power rod, and a cutting motor; a circular saw is provided on one side of the bracket, a housing is provided on the outside of the circular saw, cutting bearings are provided inside the housing, a power rod is provided inside the cutting bearings, the cutting bearings and the power rod are rotatably connected to each other, a cutting motor is provided at one end of the power rod, and the output end of the cutting motor is connected to the power rod; the steel is cut off by the circular saw, the cutting bearings are fixed by the housing, the cutting motor is fixed by the housing, the circular saw can rotate through the cutting bearings, the circular saw is driven to rotate by the power rod, and the power rod is driven to rotate by the cutting motor.

[0010] Preferably, the sliding assembly includes a sliding table, a threaded rod, a box body, a sliding groove, and a sliding motor; a box body is provided on one side of the bracket, a sliding table is provided inside the box body, a threaded rod is provided inside the sliding table, a sliding groove is opened on the inner side of the box body, a sliding motor is provided at one end of the threaded rod, and the output end of the sliding motor is connected to the threaded rod; the cutting assembly is driven to move by the sliding table, the sliding table is driven to move by the threaded rod, other components in the assembly are accommodated by the box body, the sliding table slides through the sliding groove, and the threaded rod is driven to rotate by the sliding motor.

[0011] Preferably, the control assembly includes control buttons and a power button; control buttons are provided on one side of the box body, multiple groups of control buttons are provided, and a power button is provided on one side of the control buttons; the operation of the conveying motor is controlled by the control buttons, the operation of the sliding motor is controlled by the control buttons, and the power supply of the cutting motor is controlled by the power button.

[0012] Advantages of the present utility model:

[0013] 1. Compared with traditional steel cutting equipment, the fixing structure is relatively simple and the fixing effect on steel is weak. During the steel cutting operation, the steel is prone to horizontal sliding, resulting in an uneven cutting surface of the steel, affecting the normal use of the steel and increasing the construction cost. This device can be flexibly adjusted according to the actual size of the steel by restricting the horizontal sliding of the steel, ensuring the stable transportation of the steel and effectively restricting the horizontal sliding of the steel;

[0014] 2. When the steel is fixed, the spring is compressed and arranged between the sliding rod and the bracket, causing the sliding rod to slide towards the steel. The rolling material roller is driven by the connecting rod to press against the steel. The extrusion of the rolling material rollers on both sides restricts the sliding of the steel, solving the problem that most traditional steel cutting equipment is prone to horizontal deviation of the steel during the steel cutting operation. At the same time, the rolling material roller can rotate around the rolling material bearing, and the steel can still be fed and discharged when it is limited, enhancing the practical value of the device;

[0015] 3. When the steel is fed and discharged, press the control button on the box body to make the conveyor motor work to drive the conveyor roller to roll. The conveyor roller rolls around the conveyor bearing, driving the conveyor belt to move, so that the steel moves for feeding. When cutting the steel, press the power button on the box body to make the cutting motor work to drive the power rod to rotate, so that the circular saw rotates around the cutting bearing. Press the control button, and the sliding motor works to drive the threaded rod to rotate, so that the sliding table slides in the chute, driving the circular saw to advance and retreat through the outer shell, thereby cutting the steel. Description of the drawings

[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of an H-shaped steel cutting device with a fixing structure of the present utility model;

[0017] Figure 2 Shown is a three-dimensional structural schematic diagram of the conveying component of an H-shaped steel cutting device with a fixing structure of the present utility model;

[0018] Figure 3 Shown is a three-dimensional structural schematic diagram of the fixing component of an H-shaped steel cutting device with a fixing structure of the present utility model;

[0019] Figure 4 Shown is a three-dimensional structural schematic diagram of the cutting component of an H-shaped steel cutting device with a fixing structure of the present utility model.

[0020] Description of reference numerals: 1, bracket; 2, conveying assembly; 3, limiting assembly; 4, material rolling assembly; 5, cutting assembly; 6, sliding assembly; 7, control assembly; 201, conveyor belt; 202, conveying roller; 203, conveying bearing; 204, conveying motor; 301, sliding rod; 302, spring; 401, connecting rod; 402, material rolling roller; 403, material rolling bearing; 501, circular saw; 502, housing; 503, cutting bearing; 504, power rod; 505, cutting motor; 601, sliding table; 602, threaded rod; 603, box body; 604, chute; 605, sliding motor; 701, control button; 702, power button. Detailed implementation manners

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

[0022] Please refer to Figure 1 , the present utility model provides an embodiment: an H-shaped steel cutting device with a fixed structure, including a bracket 1, a conveying assembly 2, a limiting assembly 3, a material rolling assembly 4, a cutting assembly 5, a sliding assembly 6 and a control assembly 7; a conveying assembly 2 is arranged on the upper side of the bracket 1, a limiting assembly 3 is arranged on the upper side of the conveying assembly 2, a material rolling assembly 4 is arranged on one side of the limiting assembly 3, a cutting assembly 5 is arranged on one side of the bracket 1, a sliding assembly 6 is arranged on the lower side of the cutting assembly 5, and a control assembly 7 is arranged on one side of the sliding assembly 6.

[0023] Please refer to Figure 2 , in this embodiment, the conveying assembly 2 includes a conveyor belt 201, a conveying roller 202, a conveying bearing 203 and a conveying motor 204; a conveying bearing 203 is arranged inside the bracket 1, a conveying roller 202 is arranged on the outer side of the conveying bearing 203, the conveying bearing 203 is rotatably connected to the conveying roller 202, a conveyor belt 201 is arranged on the outer side of the conveying roller 202, a conveying motor 204 is arranged on one side of the bracket 1, and the output end of the conveying motor 204 is connected to the conveying roller 202; the steel is transported through the conveyor belt 201, the conveyor belt 201 is driven to move by the rolling of the conveying roller 202, the conveying roller 202 is fixed by the conveying bearing 203 and the conveying roller 202 can rotate normally, and the conveying roller 202 is driven to rotate by the conveying motor 204.

[0024] Please refer to Figure 3, in this embodiment, the limiting component 3 includes a sliding rod 301 and a spring 302; a sliding rod 301 is provided on one side of the bracket 1, and a spring 302 is arranged inside the sliding rod 301. The component can slide back and forth in the bracket 1 through the sliding rod 301. The spring 302 is used to limit the movement trend of the steel and adapt to steels of different sizes; the material rolling component 4 includes a connecting rod 401, a material rolling roller 402 and a material rolling bearing 403. A connecting rod 401 is provided on one side of the bracket 1, a material rolling bearing 403 is arranged on the outside of the connecting rod 401, and a material rolling roller 402 is arranged on the outside of the material rolling bearing 403. The material rolling bearing 403 and the material rolling roller 402 are rotatably connected to each other. The material rolling bearing 403 is fixed by the connecting rod 401, and the material rolling roller 402 can normally feed in and out when fixing the steel. The material rolling roller 402 is fixed by the material rolling bearing 403.

[0025] Please refer to Figure 4 , in this embodiment, the cutting component 5 includes a circular saw 501, a housing 502, a cutting bearing 503, a power rod 504 and a cutting motor 505. A circular saw 501 is provided on one side of the bracket 1, a housing 502 is arranged on the outside of the circular saw 501, a cutting bearing 503 is arranged inside the housing 502, a power rod 504 is arranged inside the cutting bearing 503, and a cutting motor 505 is arranged at one end of the power rod 504. The output end of the cutting motor 505 is connected to the power rod 504. The steel is cut off by the circular saw 501. The cutting bearing 503 is fixed by the housing 502, the cutting motor 505 is fixed by the housing 502. The circular saw 501 can rotate through the cutting bearing 503, the circular saw 501 rotates through the power rod 504, and the power rod 504 is driven to rotate by the cutting motor 505; the sliding component 6 includes a sliding table 601, a threaded rod 602, a box body 603, a sliding groove 604 and a sliding motor 605; a box body 603 is provided on one side of the bracket 1, a sliding table 601 is arranged inside the box body 603, a threaded rod 602 is arranged inside the sliding table 601, a sliding groove 604 is formed on the inner side of the box body 603, and a sliding motor 605 is arranged at one end of the threaded rod 602. The output end of the sliding motor 605 is connected to the threaded rod 602. The cutting component 5 is driven to move by the sliding table 601. The sliding table 601 is driven to move by the threaded rod 602. Other components in the component are accommodated by the box body 603. The sliding table 601 slides through the sliding groove 604. The threaded rod 602 is driven to rotate by the sliding motor 605; the control component 7 includes a control button 701 and a power button 702. A control button 701 is provided on one side of the box body 603. There are multiple groups of control buttons 701. A power button 702 is arranged on one side of the control button 701. The operation of the conveying motor 204 is controlled by the control button 701. The operation of the sliding motor 605 is controlled by the control button 701. The power supply of the cutting motor 505 is controlled by the power button 702.

[0026] When feeding or discharging steel, press the control button 701 on the box body 603 to make the conveyor motor 204 work to drive the conveyor roller 202 to roll. The conveyor roller 202 rolls around the conveyor bearing 203 to drive the conveyor belt 201 to move, so that the steel moves for feeding. When the steel moves to the appropriate position, release the control button 701 to stop the steel;

[0027] When the steel is fixed, the spring 302 is compressed and arranged between the slide bar 301 and the bracket 1, so that the slide bar 301 slides towards the steel direction. The rolling material roller 402 is driven by the connecting rod 401 to press against the steel. The extrusion of the rolling material rollers 402 on both sides restricts the sliding of the steel. At the same time, the rolling material roller 402 rotates around the rolling material bearing 403 under the drive of the feeding and discharging of the steel, and still plays a fixing role for the steel without affecting the feeding and discharging of the steel;

[0028] When cutting the steel, press the power button 702 on the box body 603 to make the cutting motor 505 work to drive the power rod 504 to rotate, so that the circular saw 501 rotates around the cutting bearing 503. Press the control button 701, and the sliding motor 605 works to drive the threaded rod 602 to rotate, so that the sliding table 601 slides in the chute 604, and drives the circular saw 501 to advance and retreat through the outer shell 502, so as to cut the steel. After cutting, press the power button 702 again to turn off the circular saw 501.

[0029] Through the above steps, by setting the bracket 1 to install the conveying component 2, using the conveying component 2 to move the steel, restricting the sliding of the steel during cutting by the limiting component 3, enabling the rolling material component 4 to feed and discharge normally when pressing the steel, using the cutting component 5 to cut and truncate the steel, moving the cutting component 5 through the sliding component 6, controlling the movement of the conveying component 2 by the control component 7, controlling the movement of the cutting component 5 by the control component 7, and controlling the power supply of the cutting component 5 by the control component 7.

[0030] The above has described the embodiments of the present invention in detail with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. A cutting device for H-shaped steel with a fixed structure, comprising a bracket (1); characterized in that: It also includes a conveying component (2), a limiting component (3), a rolling component (4), a cutting component (5), a sliding component (6) and a control component (7); a conveying component (2) is arranged on the upper side of the bracket (1), a limiting component (3) is arranged on the upper side of the conveying component (2), a rolling component (4) is arranged on one side of the limiting component (3), a cutting component (5) is arranged on one side of the bracket (1), a sliding component (6) is arranged on the lower side of the cutting component (5), and a control component (7) is arranged on one side of the sliding component (6). The conveying component (2) includes a conveyor belt (201), conveying rollers (202), conveying bearings (203) and a conveying motor (204); conveying bearings (203) are arranged inside the bracket (1), conveying rollers (202) are arranged on the outer sides of the conveying bearings (203), the conveying rollers (202) are rotatably connected to the conveying bearings (203), a conveyor belt (201) is arranged on the outer sides of the conveying rollers (202), a conveying motor (204) is arranged on one side of the bracket (1), and the output end of the conveying motor (204) is connected to the conveying rollers (202). The limiting component (3) includes a sliding rod (301) and a spring (302); a sliding rod (301) is arranged on one side of the bracket (1), and a spring (302) is arranged inside the sliding rod (301). The rolling component (4) includes a connecting rod (401), rolling rollers (402) and rolling bearings (403); a connecting rod (401) is arranged on one side of the bracket (1), rolling bearings (403) are arranged on the outer sides of the connecting rod (401), rolling rollers (402) are arranged on the outer sides of the rolling bearings (403), and the rolling bearings (403) are rotatably connected to the rolling rollers (402).

2. The H-shaped steel cutting device with a fixed structure according to claim 1, characterized in that: The cutting component (5) includes a circular saw (501), a housing (502), a cutting bearing (503), a power rod (504) and a cutting motor (505); a circular saw (501) is arranged on one side of the bracket (1), a housing (502) is arranged on the outer side of the circular saw (501), a cutting bearing (503) is arranged inside the housing (502), a power rod (504) is arranged inside the cutting bearing (503), the cutting bearing (503) is rotatably connected to the power rod (504), a cutting motor (505) is arranged at one end of the power rod (504), and the output end of the cutting motor (505) is connected to the power rod (504).

3. The H-shaped steel cutting device with a fixed structure according to claim 1, characterized in that: The sliding component (6) includes a sliding table (601), a threaded rod (602), a box body (603), a sliding groove (604) and a sliding motor (605); a box body (603) is arranged on one side of the bracket (1), a sliding table (601) is arranged inside the box body (603), a threaded rod (602) is arranged inside the sliding table (601), a sliding groove (604) is formed on the inner side of the box body (603), a sliding motor (605) is arranged at one end of the threaded rod (602), and the output end of the sliding motor (605) is connected to the threaded rod (602).

4. A cutting device for H-shaped steel with a fixed structure according to claim 2, characterized in that: The control component (7) includes a control button (701) and a power button (702); a control button (701) is provided on one side of the box body (603), there are multiple groups of control buttons (701), and a power button (702) is provided on one side of the control button (701).

Citation Information

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