Adjustable clamping and fixing structure for manufacturing environment-friendly aluminum alloy

By designing lifting and moving mechanisms, the problem that the clamping and fixing structures used in the manufacturing of environmentally friendly aluminum alloys cannot adapt to different heights has been solved, enabling flexible clamping and quick replacement of aluminum alloy workpieces and improving production efficiency.

CN223790003UActive Publication Date: 2026-01-13BOTOU HUARUI MASCH MFG CO LTD
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Patent Information

Application Number
CN202423201328.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-13
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Common clamping and fixing structures used in the manufacture of environmentally friendly aluminum alloys lack lifting and adjustment functions, making them unable to adapt to working requirements at different heights. This limits the flexibility and adaptability of operation and makes it inconvenient to quickly remove and replace workpieces, resulting in low production efficiency.

Method used

A clamping and fixing structure including a lifting mechanism and a moving mechanism was designed. The clamping height is adjusted by the lifting mechanism, the aluminum alloy is clamped and fixed by the clamping mechanism, and the workpiece can be easily removed and its position adjusted by the moving mechanism, thereby improving operational flexibility and production efficiency.

Benefits of technology

It enables height adjustment of the clamping and fixing structure and quick workpiece replacement, improving operational flexibility and production efficiency. It solves the problem that the clamping and fixing structure cannot adapt to different height requirements, thus improving processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum alloy manufacturing, in particular to an adjustable clamping and fixing structure for environment-friendly aluminum alloy manufacturing. According to the technical scheme, the adjustable clamping and fixing structure for manufacturing the environment-friendly aluminum alloy comprises a bottom plate, a protective shell is connected to the upper end of the bottom plate, a lifting mechanism is arranged at the upper end of the bottom plate, and the lifting mechanism comprises a piston, a sliding groove, a movable shell, an adaptive groove, a lifting block, a limiting rod, a fixing plate and an anti-skid plate; a piston is connected to the upper end of the bottom plate, a sliding groove is formed in the upper end of the bottom plate, a movable shell is connected to the front end of the piston, adaptive grooves are formed in the left side and the right side of the movable shell, and a lifting block is movably connected to the upper end of the sliding groove. The bottom of aluminum alloy is pushed to ascend and descend through the lifting mechanism, the clamping height of the aluminum alloy can be adjusted in cooperation with the clamping mechanism, the flexibility of the clamping and fixing structure is improved, an aluminum alloy plate can be conveniently withdrawn after being machined through the moving mechanism, and the working efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of aluminum alloy manufacturing technology, and in particular to an adjustable and environmentally friendly clamping and fixing structure for manufacturing aluminum alloys. Background Technology

[0002] Environmentally friendly aluminum alloys are aluminum alloy materials that meet environmental protection standards. They typically employ sustainable manufacturing processes and environmentally friendly technologies to reduce negative impacts on the environment. They not only possess the excellent properties of traditional aluminum alloys, such as high strength, lightweight, corrosion resistance, and good machinability, but also focus on reducing carbon emissions and saving energy and resources during production and use. Environmentally friendly aluminum alloys are widely used in construction, automobiles, aerospace, electronics, and other fields, providing an environmentally friendly and sustainable material option that helps promote green manufacturing and sustainable development.

[0003] Common clamping and fixing structures used in the manufacturing of environmentally friendly aluminum alloys lack lifting and adjustment functions. As a result, these structures cannot adapt to the working requirements at different heights, limiting the flexibility and adaptability of operation. Furthermore, the design of these clamping and fixing structures makes it difficult to quickly remove and replace workpieces, increasing operation time and reducing production efficiency.

[0004] Therefore, the aforementioned clamping and fixing structure for manufacturing environmentally friendly aluminum alloys lacks lifting and adjustment functions, making it unable to adapt to different working heights, thus limiting operational flexibility and adaptability. Furthermore, the design of the clamping and fixing structure makes it inconvenient to quickly remove and replace workpieces, increasing operation time and reducing production efficiency. These problems urgently need to be addressed to improve the application scenarios of adjustable clamping and fixing structures for manufacturing environmentally friendly aluminum alloys. Utility Model Content

[0005] To overcome the common problems of clamping and fixing structures used in the manufacturing of adjustable and environmentally friendly aluminum alloys, which lack lifting and adjustment functions, cannot adapt to the working requirements of different heights, thus limiting the flexibility and adaptability of operation, and the design of the clamping and fixing structure makes it inconvenient to quickly remove and replace workpieces, increasing operation time and reducing production efficiency.

[0006] The technical solution of this utility model is as follows: an adjustable and environmentally friendly aluminum alloy manufacturing clamping and fixing structure, including a base plate, a protective shell connected to the upper end of the base plate, a lifting mechanism provided at the upper end of the base plate, the lifting mechanism including a piston, a slide groove, a movable shell, an adapter groove, a lifting block, a limiting rod, a fixing plate, and an anti-slip plate; the piston is connected to the upper end of the base plate, the slide groove is opened at the upper end of the base plate, the movable shell is connected to the front end of the piston, the adapter groove is opened on the left and right sides of the movable shell, the lifting block is movably connected to the upper end of the slide groove, the limiting rod is connected to the left and right sides of the lifting block, the limiting rod is slidably connected to the adapter groove, the clamping mechanism is connected to the right end of the protective shell, the movable mechanism is provided at the upper end of the protective shell, and baffles are connected to the left and right ends of the protective shell.

[0007] Preferably, by setting a lifting mechanism, the bottom of the aluminum alloy is pushed up and down. In conjunction with the clamping mechanism, the clamping height of the aluminum alloy can be adjusted, improving the flexibility of the clamping and fixing structure. Furthermore, the moving mechanism facilitates the removal of the aluminum alloy plate after processing, improving work efficiency. This solves the problem that common clamping and fixing structures used in the manufacturing of environmentally friendly aluminum alloys lack lifting and adjustment functions, making them unable to adapt to different working height requirements, limiting the flexibility and adaptability of operation. Moreover, the design of the clamping and fixing structure makes it inconvenient to quickly remove and replace workpieces, increasing operation time and reducing production efficiency.

[0008] Preferably, a fixed plate is connected to the upper end of the base plate. A slot is opened on the inner side of the fixed plate. The limiting rod is slidably connected to the fixed plate through the slot. When the piston is activated, the piston drives the moving shell to slide on the slide groove. Through the linkage between the adapter groove and the fixed plate, the anti-slip plate is raised and lowered, thereby lifting the bottom of the aluminum alloy. The lifting and lowering are achieved in conjunction with the clamping mechanism.

[0009] Preferably, the lifting block is slidably connected to the fixed plate, and the upper end of the lifting block is connected to the anti-slip plate. The anti-slip plate matches the protective shell. The limiting rods on both sides of the lifting block move on the adapter groove. The position is limited by the fixed plates on both sides. The limiting rods slide on the fixed plate and match the adapter groove to realize the lifting block sliding on the fixed plate, driving the anti-slip plate to rise and fall, thereby lifting the bottom of the aluminum alloy and realizing the effect of adjusting the height.

[0010] Preferably, the clamping mechanism includes a telescopic cylinder, a pressure plate, and an anti-slip pad; the right end of the protective shell is connected with two telescopic cylinders at equal intervals. When the telescopic cylinder is activated, it drives the pressure plate to move vertically, thereby clamping the upper part of the aluminum alloy.

[0011] Preferably, the upper ends of the two telescopic cylinders are connected to pressure plates, and the lower ends of the two pressure plates are connected to anti-slip pads. There are two anti-slip pads. The pressure plates drive the anti-slip pads to move vertically, thereby pressing down on the top of the aluminum alloy. Combined with the upward pushing force of the lifting block, the aluminum alloy is clamped and fixed.

[0012] Preferably, the moving mechanism includes a motor, a rotating wheel, and an auxiliary wheel; the motor is connected to the outside of the left side baffle, and the output end of the motor extends into the inside of the protective shell and is connected to the rotating wheel. The rotating wheel is rotatably connected to the protective shell. The motor drives the rotating wheel to rotate, and the rotation of the rotating wheel drives the aluminum alloy to move, which facilitates length adjustment and facilitates the removal of the aluminum alloy material from the fixed structure.

[0013] Preferably, auxiliary wheels are rotatably connected to the front and rear sides of the upper end of the protective shell. There are two auxiliary wheels, which assist in the movement of the aluminum alloy material, thereby facilitating the adjustment of the processing position.

[0014] The beneficial effects of this utility model are:

[0015] 1. By setting up a lifting mechanism, the bottom of the aluminum alloy is pushed up and down. In conjunction with the clamping mechanism, the clamping height of the aluminum alloy can be adjusted, improving the flexibility of the clamping and fixing structure. Furthermore, the moving mechanism facilitates the removal of the aluminum alloy plate after processing, improving work efficiency. This solves the problem that common clamping and fixing structures used in the manufacturing of environmentally friendly aluminum alloys lack lifting and adjustment functions, making them unable to adapt to different working height requirements, limiting the flexibility and adaptability of operation. Moreover, the design of the clamping and fixing structure makes it inconvenient to quickly remove and replace workpieces, increasing operation time and reducing production efficiency.

[0016] 2. By setting up a lifting mechanism, the piston is activated, causing the moving shell to slide on the slide groove. The limiting rods on both sides of the lifting block move on the matching groove. The position is restricted by the fixed plates on both sides, and the limiting rods slide on the fixed plates. By matching the matching groove, the lifting block slides on the fixed plates, causing the anti-slip plate to rise and fall, thereby lifting the bottom of the aluminum alloy. With the help of the clamping mechanism, the height can be adjusted. Then, the motor is activated, and the motor drives the rotating wheel to rotate. The rotating wheel moves the aluminum alloy, which facilitates length adjustment and allows the aluminum alloy material to exit the fixed structure. The moving mechanism can also be used to adjust the processing position of the aluminum alloy material, improving processing efficiency. Attached Figure Description

[0017] Figure 1 The diagram shown is a three-dimensional rear view of an adjustable environmentally friendly aluminum alloy clamping and fixing structure for manufacturing according to this utility model.

[0018] Figure 2 The diagram shown is a three-dimensional structural schematic of an adjustable and environmentally friendly aluminum alloy clamping and fixing structure for manufacturing according to this utility model.

[0019] Figure 3 The diagram shown is a three-dimensional structural schematic of an adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing lifting mechanism according to this utility model.

[0020] Figure 4The diagram shown is a three-dimensional cross-sectional view of an adjustable environmentally friendly aluminum alloy clamping and fixing structure according to this utility model.

[0021] In the diagram: 1. Base plate; 2. Protective shell; 3. Lifting mechanism; 4. Clamping mechanism; 5. Moving mechanism; 21. Baffle; 31. Piston; 32. Slide groove; 33. Moving shell; 34. Adaptor groove; 35. Lifting block; 36. Limiting rod; 37. Fixing plate; 38. Anti-slip plate; 41. Telescopic cylinder; 42. Pressure plate; 43. Anti-slip mat; 51. Motor; 52. Rotating wheel; 53. Auxiliary wheel. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] Please see Figure 1-4 This utility model provides an embodiment: an adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure, including a base plate 1, a protective shell 2 connected to the upper end of the base plate 1, a lifting mechanism 3 provided at the upper end of the base plate 1, the lifting mechanism 3 including a piston 31, a sliding groove 32, a movable shell 33, an adapter groove 34, a lifting block 35, a limiting rod 36, a fixing plate 37, and an anti-slip plate 38; the piston 31 is connected to the upper end of the base plate 1, the sliding groove 32 is opened at the upper end of the base plate 1, the front end of the piston 31 is connected to the movable shell 33, the left and right sides of the movable shell 33 are opened with adapter grooves 34, the upper end of the sliding groove 32 is movably connected to the lifting block 35, the left and right sides of the lifting block 35 are connected to the limiting rods 36, the limiting rods 36 are slidably connected to the adapter grooves 34, the right end of the protective shell 2 is connected to a clamping mechanism 4, the upper end of the protective shell 2 is provided with a moving mechanism 5, and the left and right ends of the protective shell 2 are connected to baffles 21.

[0024] Please see Figure 1-4In this embodiment, by setting a lifting mechanism 3, the bottom of the aluminum alloy is pushed to rise and fall. Combined with the clamping mechanism 4, the clamping height of the aluminum alloy can be adjusted, improving the flexibility of the clamping and fixing structure. Furthermore, the moving mechanism 5 facilitates the removal of the aluminum alloy plate after processing, improving work efficiency. This addresses the common problem of clamping and fixing structures used in environmentally friendly aluminum alloy manufacturing, which lack lifting and adjustment functions, cannot adapt to different work height requirements, limiting operational flexibility and adaptability. Additionally, the design of the clamping and fixing structure makes it difficult to quickly remove and replace workpieces, increasing operation time and reducing production efficiency. A fixing plate 37 is connected to the upper end of the base plate 1. A slot is opened on the inner side of the fixing plate 37. A limiting rod 36 is slidably connected to the fixing plate 37 through the slot. The piston 31 is activated, causing the moving shell 33 to slide on the sliding groove 32. Through the adapter groove 34 and the fixing plate 37… The linkage between the lifting block 35 and the fixed plate 37 enables the lifting and lowering of the anti-slip plate 38, thereby lifting the bottom of the aluminum alloy. The lifting block 35 is slidably connected to the fixed plate 37. The upper end of the lifting block 35 is connected to the anti-slip plate 38. The anti-slip plate 38 matches the protective shell 2. The limiting rods 36 on both sides of the lifting block 35 move on the adapter groove 34. The position is limited by the fixed plates 37 on both sides. The limiting rods 36 slide on the fixed plate 37. The matching groove 34 enables the lifting block 35 to slide on the fixed plate 37, driving the anti-slip plate 38 to rise and fall, thereby lifting the bottom of the aluminum alloy and achieving the effect of adjusting the height. The clamping mechanism 4 includes a telescopic cylinder 41, a pressure plate 42, and an anti-slip pad 43. The right end of the protective shell 2 is connected with two telescopic cylinders 41 at equal intervals. When the telescopic cylinders 41 are activated, they drive the pressure plate 42 to move vertically, thereby clamping the top of the aluminum alloy.

[0025] Please see Figure 2-4 In this embodiment, the upper ends of the two telescopic cylinders 41 are connected to pressure plates 42, and the lower ends of the two pressure plates 42 are connected to anti-slip pads 43. There are two anti-slip pads 43. The pressure plates 42 drive the anti-slip pads 43 to move vertically, thereby pressing the top of the aluminum alloy. With the upward pushing force of the lifting block 35, the aluminum alloy is clamped and fixed. The moving mechanism 5 includes a motor 51, a rotating wheel 52, and an auxiliary wheel 53. The outer side of the left baffle 21 is connected to the motor 51. The output end of the motor 51 extends into the interior of the protective shell 2 and is connected to the rotating wheel 52. The rotating wheel 52 is rotatably connected to the protective shell 2. The motor 51 drives the rotating wheel 52 to rotate. The rotation of the rotating wheel 52 drives the aluminum alloy to move, which facilitates length adjustment and facilitates the removal of the aluminum alloy material from the fixed structure. The front and rear sides of the upper end of the protective shell 2 are rotatably connected to the auxiliary wheels 53. There are two auxiliary wheels 53. The auxiliary wheels 53 assist the movement of the aluminum alloy material, thereby facilitating the adjustment of the processing position.

[0026] During operation, the aluminum alloy material is pushed onto the protective shell 2 via the auxiliary wheel 53. The telescopic cylinder 41 is activated, causing the pressure plate 42 to move vertically. The pressure plate 42, in turn, causes the anti-slip pad 43 to move vertically, thus pressing down on the top of the aluminum alloy. Combined with the upward force of the lifting block 35, the aluminum alloy is clamped and fixed. The piston 31 is then activated, causing the moving shell 33 to slide on the slide groove 32. The limiting rods 36 on both sides of the lifting block 35 move on the fitting groove 34, their positions restricted by the fixing plates 37 on both sides. The limiting rods 36 slide on the fixing plates 37, aligning with the fitting groove. 34 This allows the lifting block 35 to slide on the fixed plate 37, driving the anti-slip plate 38 to rise and fall, thereby lifting the bottom of the aluminum alloy and achieving the effect of adjusting the height. This allows the lower end of the aluminum alloy material to also be processed. When the processing is completed and the aluminum alloy plate needs to be removed, the motor 51 is started. The motor 51 drives the rotating wheel 52 to rotate, and the rotating wheel 52 moves the aluminum alloy. This facilitates length adjustment and makes it easy for the aluminum alloy material to exit the fixed structure. The moving mechanism 5 can also be used to adjust the processing position of the aluminum alloy material, improving processing efficiency. The baffle 21 is used to assist in positioning the aluminum alloy material.

[0027] Through the above steps, the lifting mechanism 3 is used to push the bottom of the aluminum alloy to rise and fall. In conjunction with the clamping mechanism 4, the clamping height of the aluminum alloy can be adjusted, improving the flexibility of the clamping and fixing structure. Then, the moving mechanism 5 is used to facilitate the removal of the aluminum alloy plate after processing, which improves work efficiency. This solves the problem that common clamping and fixing structures used in environmentally friendly aluminum alloy manufacturing lack lifting and adjustment functions, making them unable to adapt to different working height requirements, limiting the flexibility and adaptability of operation. In addition, the design of the clamping and fixing structure is not convenient for the quick removal and replacement of workpieces, increasing operation time and reducing production efficiency.

[0028] The embodiments of the present invention have been described in detail above 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 spirit of the present invention.

Claims

1. An adjustable, environmentally friendly aluminum alloy manufacturing clamping and fixing structure, comprising a base plate (1), characterized in that: A protective shell (2) is connected to the upper end of the base plate (1). A lifting mechanism (3) is provided at the upper end of the base plate (1). The lifting mechanism (3) includes a piston (31), a slide groove (32), a movable shell (33), an adapter groove (34), a lifting block (35), a limit rod (36), a fixing plate (37), and an anti-slip plate (38). A piston (31) is connected to the upper end of the base plate (1). A slide groove (32) is opened at the upper end of the base plate (1). The front end of the piston (31) is connected to a... The movable shell (33) has an adapter groove (34) on its left and right sides. The upper end of the slide groove (32) is movably connected to a lifting block (35). The left and right sides of the lifting block (35) are connected to a limit rod (36). The limit rod (36) is slidably connected to the adapter groove (34). The right end of the protective shell (2) is connected to a clamping mechanism (4). The upper end of the protective shell (2) is provided with a moving mechanism (5). The left and right ends of the protective shell (2) are connected to baffles (21).

2. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 1, characterized in that: A fixing plate (37) is connected to the upper end of the base plate (1). A slot is provided on the inner side of the fixing plate (37), and the limiting rod (36) is slidably connected to the fixing plate (37) through the slot.

3. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 2, characterized in that: The lifting block (35) is slidably connected to the fixed plate (37), and the upper end of the lifting block (35) is connected to the anti-slip plate (38), which matches the protective shell (2).

4. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 1, characterized in that: The clamping mechanism (4) includes a telescopic cylinder (41), a pressure plate (42), and an anti-slip pad (43); the right end of the protective shell (2) is connected with telescopic cylinders (41) at equal intervals, and there are two telescopic cylinders (41).

5. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 4, characterized in that: The upper ends of the two telescopic cylinders (41) are connected to pressure plates (42), and the lower ends of the two pressure plates (42) are connected to anti-slip pads (43). There are two anti-slip pads (43).

6. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 1, characterized in that: The moving mechanism (5) includes a motor (51), a rotating wheel (52), and an auxiliary wheel (53); the motor (51) is connected to the outside of the left side baffle (21), and the output end of the motor (51) extends to the inside of the protective shell (2) and is connected to the rotating wheel (52), and the rotating wheel (52) is rotatably connected to the protective shell (2).

7. The adjustable environmentally friendly aluminum alloy manufacturing clamping and fixing structure according to claim 6, characterized in that: The front and rear sides of the upper end of the protective shell (2) are rotatably connected with auxiliary wheels (53), and there are two auxiliary wheels (53).