Aluminum bar bending equipment
By introducing an automated positioning system of screw motor and transmission screw into the aluminum rod bending equipment, combined with the design of the bent shaft and telescopic cylinder, the problems of equipment in angle adjustment and multi-direction fine adjustment are solved, and efficient, safe and flexible aluminum rod processing is achieved, reducing maintenance costs.
Patent Information
- Application Number
- CN202422224886.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-11
AI Technical Summary
During processing, existing aluminum rod bending equipment is not convenient for convenient operation according to the required product angle, and lacks adaptability and flexibility.
The screw motor and transmission screw are used to achieve automatic positioning of the sliding bottom plate and bending components. Combined with the design of the bent shaft, telescopic cylinder and sliding top plate, angle adjustment and multi-direction fine adjustment are achieved, and machining flexibility is enhanced. At the same time, it is convenient to maintain and replace parts through modular design, protect internal transmission components, and enhance equipment safety and stability.
Improve processing accuracy and efficiency, enhance equipment adaptability and flexibility, reduce downtime and maintenance costs, and extend the service life of the equipment.
Smart Images

Figure CN223171673U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum bar bending, in particular to an aluminum bar bending device. Background Technique
[0002] An aluminum bar bending device is a mechanical device used to bend aluminum materials into specific angles or shapes. According to the search results, the design and functions of aluminum bar bending devices can vary greatly to adapt to different industrial applications and material characteristics.
[0003] Comparing the publicly disclosed No. CN 216801222 U, an aluminum bar bending device, which includes a bottom plate. It is characterized in that: on the top surface of the bottom plate, there are two pairs of symmetrically distributed support columns. The tops of the support columns are jointly connected to a top plate. On the top plate, there is a first-stage cylinder. The working end of the first-stage cylinder is connected to a floating plate, and the floating plate is slidably connected to all the support columns. On the bottom surface of the floating plate, there are two sets of symmetrically distributed upper bending mechanisms. The upper bending mechanism includes an upper die and a bending cylinder. On the working end of the bending cylinder, there is a pressing block, and a roller is rotatably supported on the pressing block. On the bottom plate, there are respectively a first lower die and a second lower die corresponding to the two upper dies one by one. At the same time, on the bottom plate, there is also a linear cylinder. On the sliding table of the linear cylinder, there is a support plate, and on the top of the support plate, there is a finger cylinder. On the sliding table of the linear cylinder, there is also a movable limit block, and the movable limit block corresponds to a fixed limit block arranged on the first die. It can save labor and improve work efficiency, and speed up the production rhythm. At the same time, compared with the traditional fully automatic bending machine, its cost is relatively low, suitable for small batch production of small enterprises, and its manufacturing process is simple and the manufacturing cost is low. Therefore, it can be said that it has various advantages and is particularly suitable for popularization and application in this field, and its market prospect is very broad.
[0004] This aluminum bar bending device has a relatively low cost, is suitable for small batch production of small enterprises, and its manufacturing process is simple and the manufacturing cost is low. Therefore, it can be said that it has various advantages and is particularly suitable for popularization and application in this field, and its market prospect is very broad. However, when the whole device bends and processes products, it is not convenient to provide convenient operation according to the angle of the products to be bent. Content of the Utility Model
[0005] To solve the above technical problems, the utility model provides an aluminum bar bending device.
[0006] The utility model is realized by adopting the following technical solutions: An aluminum bar bending device includes a power control cabinet. The front of the power control cabinet is hinged with a cabinet door. The bottom end of the power control cabinet is fixedly connected with a support bottom plate. The top end of the power control cabinet is fixedly connected with a lead screw motor;
[0007] A transmission lead screw is fixedly connected to the left end of the lead screw motor. A sliding vertical plate is welded to the top end of the power control cabinet. The top end of the sliding vertical plate is slidably connected to a sliding bottom plate. A bending assembly is fixedly connected to the top end of the sliding bottom plate. A first telescopic cylinder is welded to the left end of the power control cabinet. A fixed shell is welded to the surface of the first telescopic cylinder. A protective sleeve is fixedly connected to the inside of the fixed shell. A bending rotating shaft is rotatably connected to the inside of the protective sleeve. A pulley protective shell is welded to the bottom end of the protective sleeve. A connecting shell is welded to the surface of the protective sleeve. A limiting block is fixedly connected to the rear end of the connecting shell. A connecting bottom plate is welded to the left end of the power control cabinet. A second telescopic cylinder is fixedly connected to the top end of the connecting bottom plate. A support sliding plate is welded to the bottom end of the second telescopic cylinder. The top end of the support sliding plate is slidably connected to a sliding top plate. An auxiliary assembly is fixedly connected to the rear end of the sliding top plate.
[0008] As a further improvement of the above solution, a motor is fixedly connected to the inside of the power control cabinet. A protective shell is threadedly connected to the top end of the power control cabinet. The motor is located at the bottom end of the protective shell.
[0009] As a further improvement of the above solution, the sliding vertical plates are symmetrically distributed with the power control cabinet as the center. The transmission lead screw is located at the top end of the power control cabinet. The support bottom plates are symmetrically distributed with the power control cabinet as the center.
[0010] Through the above technical solution, the number of sliding vertical plates is set to two, and the sliding bottom plate and the bending assembly at the top can be slidably adjusted in the left and right positions at the top end of the power control cabinet.
[0011] As a further improvement of the above solution, a second telescopic cylinder is arranged on the front surface of the first telescopic cylinder. A connecting bottom plate is arranged on the front surface of the first telescopic cylinder. The support sliding plate is located on the front surface of the connecting shell.
[0012] As a further improvement of the above solution, the pulley protective shell is located at the rear end of the fixed shell. The limiting block is located at the left end of the auxiliary assembly. The sliding top plate is located at the right end of the connecting shell.
[0013] As a further improvement of the above solution, the sliding top plate is located at the left end of the protective shell. The connecting shell is located at the left end of the sliding top plate. The auxiliary assembly is located at the top end of the power control cabinet.
[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0015] Through the cooperation of the screw rod motor and the transmission screw rod, the utility model can realize the automatic positioning of the sliding bottom plate and the bending assembly, improve the processing accuracy and efficiency. By setting the rotational connection of the bending rotating shaft inside the protective sleeve and cooperating with the first telescopic cylinder and the second telescopic cylinder, the bending assembly can perform angle adjustment to adapt to the processing requirements of different sizes and shapes. By setting the sliding top plate and the sliding vertical plate, the auxiliary assembly and the bending assembly can be finely adjusted in multiple directions, increasing the flexibility and application range of processing. By setting the modular design of the fixed shell and the connection shell, it is convenient to maintain and replace components, reducing the downtime and maintenance cost.
[0016] By setting the pulley protection shell and the protective shell, the utility model effectively protects the internal transmission components and the motor from the influence of the external environment, improving the safety and service life of the equipment. By setting the support bottom plate and the support sliding plate, the stability and load-bearing capacity of the structure are enhanced. Through its unique structural design and the integration of automation components, the power control cabinet realizes the functions of efficient, safe and flexible power equipment processing and control. Brief Description of the Drawings
[0017] Figure 1 is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 is a schematic diagram of the rear structure of the utility model;
[0019] Figure 3 is an enlarged schematic diagram of the structure at A of the utility model;
[0020] Figure 4 is a schematic diagram of the right view structure of the utility model.
[0021] Main Symbol Description:
[0022] 1. Power control cabinet; 2. Cabinet door; 3. Support bottom plate; 4. Screw rod motor; 5. Transmission screw rod; 6. Sliding vertical plate; 7. Sliding bottom plate; 8. Bending assembly; 9. First telescopic cylinder; 10. Fixed shell; 11. Protective sleeve; 12. Bending rotating shaft; 13. Pulley protection shell; 14. Connection shell; 15. Limit block; 16. Connection bottom plate; 17. Second telescopic cylinder; 18. Support sliding plate; 19. Sliding top plate; 20. Auxiliary assembly; 21. Protective shell; 22. Motor. Detailed Embodiment
[0023] Next, in combination with the drawings and specific embodiments, the utility model will be further described. It should be noted that on the premise of no conflict, the following described embodiments or technical features can be combined arbitrarily to form new embodiments.
[0024] Embodiment:
[0025] Please combine with Figures 1-4 A kind of aluminum bar bending equipment of this embodiment includes a power control cabinet 1. A cabinet door 2 is hinged to the front of the power control cabinet 1. A support bottom plate 3 is fixedly connected to the bottom end of the power control cabinet 1. A lead screw motor 4 is fixedly connected to the top end of the power control cabinet 1;
[0026] The left end of the lead screw motor 4 is fixedly connected to a transmission lead screw 5. A sliding vertical plate 6 is welded to the top end of the power control cabinet 1. A sliding bottom plate 7 is slidably connected to the top end of the sliding vertical plate 6. A bending assembly 8 is fixedly connected to the top end of the sliding bottom plate 7. A first telescopic cylinder 9 is welded to the left end of the power control cabinet 1. A fixed shell 10 is welded to the surface of the first telescopic cylinder 9. A protective sleeve 11 is fixedly connected to the inside of the fixed shell 10. A bending rotating shaft 12 is rotatably connected to the inside of the protective sleeve 11. A pulley protective shell 13 is welded to the bottom end of the protective sleeve 11. A connecting shell 14 is welded to the surface of the protective sleeve 11. A limiting block 15 is fixedly connected to the rear end of the connecting shell 14. A connecting bottom plate 16 is welded to the left end of the power control cabinet 1. A second telescopic cylinder 17 is fixedly connected to the top end of the connecting bottom plate 16. A support sliding plate 18 is welded to the bottom end of the second telescopic cylinder 17. A sliding top plate 19 is slidably connected to the top end of the support sliding plate 18. An auxiliary assembly 20 is fixedly connected to the rear end of the sliding top plate 19. Through the cooperation of the lead screw motor 4 and the transmission lead screw 5, the automatic positioning of the sliding bottom plate 7 and the bending assembly 8 can be realized, improving the processing accuracy and efficiency. By setting the rotational connection of the bending rotating shaft 12 inside the protective sleeve 11 and cooperating with the first telescopic cylinder 9 and the second telescopic cylinder 17, the bending assembly 8 can perform angle adjustment to adapt to the processing requirements of different sizes and shapes. By setting the sliding top plate 19 and the sliding vertical plate 6, the auxiliary assembly 20 and the bending assembly 8 can be finely adjusted in multiple directions, increasing the flexibility and application range of processing. By setting the modular design of the fixed shell 10 and the connecting shell 14, it is convenient to maintain and replace components, reducing the downtime and maintenance cost.
[0027] A motor 22 is fixedly connected to the inside of the power control cabinet 1. A protective shell 21 is threadedly connected to the top end of the power control cabinet 1. The motor 22 is located at the bottom end of the protective shell 21.
[0028] The sliding vertical plates 6 are symmetrically distributed with the power control cabinet 1 as the center. The transmission lead screw 5 is located at the top end of the power control cabinet 1. The support bottom plates 3 are symmetrically distributed with the power control cabinet 1 as the center.
[0029] The number of the sliding vertical plates 6 is set to two, and the sliding bottom plate 7 and the bending assembly 8 at the top end can be slidably adjusted in the left and right positions on the top end of the power control cabinet 1.
[0030] On the front of the first telescopic cylinder 9, there is a second telescopic cylinder 17. On the front of the first telescopic cylinder 9, there is a connecting base plate 16. The supporting sliding plate 18 is located on the front of the connecting shell 14. By providing the pulley protection shell 13 and the protection shell 21, the internal transmission components and the motor 22 are effectively protected from the external environment, improving the safety and service life of the equipment. By providing the supporting base plate 3 and the supporting sliding plate 18, the stability and load-bearing capacity of the structure are enhanced. Through its unique structural design and the integration of automation components, the power control cabinet 1 realizes the efficient, safe and flexible processing and control functions of power equipment.
[0031] The pulley protection shell 13 is located at the rear end of the fixed shell 10. The limiting block 15 is located at the left end of the auxiliary component 20. The sliding top plate 19 is located at the right end of the connecting shell 14.
[0032] The sliding top plate 19 is located at the left end of the protection shell 21. The connecting shell 14 is located at the left end of the sliding top plate 19. The auxiliary component 20 is located at the top of the power control cabinet 1.
[0033] The implementation principle of an aluminum rod bending device in the embodiment of this application is as follows: After placing the device in a suitable position, through the cooperation of the lead screw motor 4 and the transmission lead screw 5, the automatic positioning of the sliding base plate 7 and the bending component 8 can be realized, improving the processing accuracy and efficiency. By providing the rotational connection of the bending rotating shaft 12 inside the protection sleeve 11 and cooperating with the first telescopic cylinder 9 and the second telescopic cylinder 17, the bending component 8 can perform angle adjustment to adapt to the processing requirements of different sizes and shapes. By providing the sliding top plate 19 and the sliding vertical plate 6, the auxiliary component 20 and the bending component 8 can be finely adjusted in multiple directions, increasing the flexibility and application range of processing. By providing the modular design of the fixed shell 10 and the connecting shell 14, it is convenient to maintain and replace components, reducing the downtime and maintenance cost. By providing the pulley protection shell 13 and the protection shell 21, the internal transmission components and the motor 22 are effectively protected from the external environment, improving the safety and service life of the equipment. By providing the supporting base plate 3 and the supporting sliding plate 18, the stability and load-bearing capacity of the structure are enhanced. Through its unique structural design and the integration of automation components, the power control cabinet 1 realizes the efficient, safe and flexible processing and control functions of power equipment.
[0034] The above implementation manners are only the preferred implementation manners of the present utility model, and cannot be used to limit the scope of protection of the present utility model. Any non-substantial changes and substitutions made by those skilled in the art on the basis of the present utility model fall within the scope of protection required by the present utility model.
Claims
1. An aluminum bar bending device, comprising a power control cabinet (1), a cabinet door (2) is hinged to the front of the power control cabinet (1), a support bottom plate (3) is fixedly connected to the bottom end of the power control cabinet (1), and a lead screw motor (4) is fixedly connected to the top end of the power control cabinet (1); It is characterized in that The left end of the lead screw motor (4) is fixedly connected to a transmission lead screw (5), a sliding vertical plate (6) is welded to the top end of the power control cabinet (1), a sliding bottom plate (7) is slidably connected to the top end of the sliding vertical plate (6), a bending assembly (8) is fixedly connected to the top end of the sliding bottom plate (7), a first telescopic cylinder (9) is welded to the left end of the power control cabinet (1), a fixed shell (10) is welded to the surface of the first telescopic cylinder (9), a protective sleeve (11) is fixedly connected to the inside of the fixed shell (10), a bending rotating shaft (12) is rotatably connected to the inside of the protective sleeve (11), a pulley protective shell (13) is welded to the bottom end of the protective sleeve (11), a connecting shell (14) is welded to the surface of the protective sleeve (11), a limiting block (15) is fixedly connected to the rear end of the connecting shell (14), a connecting bottom plate (16) is welded to the left end of the power control cabinet (1), a second telescopic cylinder (17) is fixedly connected to the top end of the connecting bottom plate (16), a support sliding plate (18) is welded to the bottom end of the second telescopic cylinder (17), a sliding top plate (19) is slidably connected to the top end of the support sliding plate (18), and an auxiliary assembly (20) is fixedly connected to the rear end of the sliding top plate (19).
2. The aluminum bar bending device according to claim 1, characterized in that: A motor (22) is fixedly connected to the inside of the power control cabinet (1), a protective shell (21) is threadedly connected to the top end of the power control cabinet (1), and the motor (22) is located at the bottom end of the protective shell (21).
3. An aluminum bar bending device according to claim 1, characterized in that: The sliding vertical plates (6) are symmetrically distributed with the power control cabinet (1) as the center, the transmission lead screw (5) is located at the top end of the power control cabinet (1), and the support bottom plates (3) are symmetrically distributed with the power control cabinet (1) as the center.
4. The aluminum bar bending device according to claim 3, characterized in that: The second telescopic cylinder (17) is arranged on the front side of the first telescopic cylinder (9), the connecting bottom plate (16) is arranged on the front side of the first telescopic cylinder (9), and the support sliding plate (18) is located on the front side of the connecting shell (14).
5. The aluminum bar bending device according to claim 1, characterized in that: The pulley protective shell (13) is located at the rear end of the fixed shell (10), the limiting block (15) is located at the left end of the auxiliary assembly (20), and the sliding top plate (19) is located at the right end of the connecting shell (14).
6. The aluminum bar bending device according to claim 5, characterized in that: The sliding top plate (19) is located at the left end of the protective shell (21), the connecting shell (14) is located at the left end of the sliding top plate (19), and the auxiliary assembly (20) is located at the top end of the power control cabinet (1).
Citation Information
Patent Citations
Aluminum bar bending device
CN216801222U