Aluminum alloy square tube grinding equipment

By designing automated aluminum alloy square tube grinding equipment and using conveyor belts and jacking positioning components to achieve automated grinding of aluminum alloy square tubes, the problems of labor-intensive and safety-hazardous manual grinding are solved, thereby improving efficiency and reducing costs.

CN223369005UActive Publication Date: 2025-09-23HUNAN HERMONY TECH CO LTD
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Patent Information

Application Number
CN202422764947.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-23
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

In the prior art, the grinding of aluminum alloy square tubes relies on manual operation, which is labor-intensive and has safety hazards, and improper grinding can easily cause injuries.

Method used

A grinding device for aluminum alloy square tubes is designed, which includes a protective box, a control box, a screw linear motion module, a grinding module and a conveying mechanism. A conveyor belt and a lifting and positioning component are used to realize automated grinding. The conveying and fixing of the aluminum alloy square tubes are controlled by sensors and cylinders to achieve continuous grinding.

Benefits of technology

It improves work efficiency, reduces labor costs, ensures operational safety, and avoids potential safety hazards of manual grinding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses aluminum alloy square tube polishing equipment, and relates to the technical field of aluminum alloy square tube polishing, the equipment comprises a protection box, the lower end of the protection box is provided with a control box, the bottom of the protection box is provided with a screw rod linear movement module, the output end of the screw rod linear movement module is provided with a polishing module, and the output end of the polishing module is provided with a polishing module. According to the aluminum alloy square tube feeding device, aluminum alloy square tubes are detected through a sensor, a blocking air cylinder is controlled to move up and down, equal-distance feeding of the aluminum alloy square tubes is achieved, the aluminum alloy square tubes are jacked and clamped to a profiling positioning clamping frame through a jacking block, and limiting and fixing of the aluminum alloy square tubes are achieved; and after polishing is completed, the jacking block and the polishing module are reset, the aluminum alloy square pipe is moved to the conveying belt again, the conveying belt conveys the polished aluminum alloy square pipe to the receiving frame, and therefore continuous polishing of the aluminum alloy square pipe is achieved, the working efficiency is effectively improved, and the labor cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of aluminum alloy square tube grinding, in particular to aluminum alloy square tube grinding equipment. Background Art

[0002] The manufacturing industry has always attached great importance to product quality requirements. Aluminum alloy square tube parts produced by mold cutting have burrs, which affect assembly, affect appearance, and easily scratch employees.

[0003] At present, most of the aluminum alloy square tube parts on the market are manually held on the grinder to grind the burrs as required. This operation method consumes manpower, and if the grinding is not done properly, the operator is prone to injury.

[0004] In view of the above problems, an improved aluminum alloy square tube grinding equipment is now designed. Utility Model Content

[0005] The purpose of the utility model is to provide an aluminum alloy square tube grinding device to solve the problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A kind of aluminum alloy square tube grinding equipment includes a protective box, a control box is installed at the lower end of the protective box, a screw linear motion module is installed at the bottom of the protective box, a grinding module for grinding the end of the aluminum alloy square tube is installed at the output end of the screw linear motion module, and a conveying mechanism for conveying the aluminum alloy square tube is provided inside the protective box.

[0008] As a further solution of the present invention: the conveying mechanism includes two parallel conveyor belts, the conveyor belts are horizontally arranged above the screw linear moving module, the output direction of the conveyor belt is perpendicular to the conveying direction of the screw linear moving module, and a conveyor belt bracket for supporting the conveyor belt is vertically installed on the side wall of the conveyor belt, and the lower end of the conveyor belt bracket is installed on the bottom of the protective box, and the side wall of the protective box above the input end of the conveyor belt and the side wall of the protective box below the output end of the conveyor belt are both provided with through-openings, and the input end of the conveyor belt is inclinedly provided with a loading frame for conveying aluminum alloy square tubes to the conveyor belt, and the loading frame is installed on the through-opening of the protective box above the input end of the conveyor belt, and the output end of the conveyor belt is provided with a receiving frame for collecting processed aluminum alloy square tubes, and the receiving frame is installed on the through-opening of the protective box below the output end of the conveyor belt, and the conveyor belt on the grinding side of the grinding module is provided with a jacking and positioning component for lifting and fixing the aluminum alloy square tubes.

[0009] As a further solution of the present invention: the jacking and positioning assembly includes a second bracket, which is vertically mounted on the bottom of the protective box on the side of the conveyor belt away from the polishing module. A second mounting plate is horizontally mounted on the upper end of the second bracket, and the second mounting plate is arranged above the conveyor belt. The lower end of the second mounting plate is detachably mounted with a contour positioning card frame for clamping and fixing the aluminum alloy square tube. The contour positioning card frame and the polishing end of the polishing module are on the same vertical plane. A jacking cylinder is installed at the bottom of the protective box directly below the contour positioning card frame, and a jacking block is installed at the output end of the jacking cylinder for pushing the aluminum alloy square tube upward. The jacking cylinder and the jacking block are arranged between two conveyor belts, and the input end of the conveyor belt is provided with a loading assembly for releasing the aluminum alloy square tubes one by one.

[0010] As a further solution of the present invention: the feeding assembly includes a first bracket, the first bracket is vertically mounted on the bottom of the protective box on the side of the second bracket close to the feeding frame, the upper end of the first bracket is horizontally mounted with a first mounting plate, the first mounting plate is arranged above the conveyor belt, the upper end of the first mounting plate is mounted with a blocking cylinder, the output end of the blocking cylinder is passed through the first mounting plate and is equipped with a block for blocking the aluminum alloy square tube, a sensor for detecting the aluminum alloy square tube is arranged between the first bracket and the second bracket, and the sensor is connected to the conveyor belt bracket through a connecting plate.

[0011] As a further solution of the present invention: the grinding module is provided with a suction module for sucking away grinding debris.

[0012] As a further solution of the present invention: the lower end of the control box is equipped with a universal roller for facilitating the movement of the equipment, and the lower end of the control box is equipped with a telescopic support leg.

[0013] As a further solution of the present invention: the contoured positioning frame is detachably connected to the second mounting plate by bolts.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] The utility model places the aluminum alloy square tube on a feeding frame, then detects the aluminum alloy square tube through a sensor, and controls the blocking cylinder to move up and down, thereby realizing equidistant feeding of the aluminum alloy square tube, then lifts the aluminum alloy square tube and connects it to the contour positioning card frame through a lifting block, realizes the limited fixation of the aluminum alloy square tube, then moves the grinding module through a screw rod linear movement module, grinds the aluminum alloy square tube through the grinding module, and after the grinding is completed, resets the lifting block and the grinding module, so that the aluminum alloy square tube is moved back to the conveyor belt, and the conveyor belt transports the grinded aluminum alloy square tube to the receiving frame, thereby realizing continuous grinding of the aluminum alloy square tube, effectively improving work efficiency and reducing labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.

[0017] Figure 2 This is a schematic diagram of the main structure of the present utility model.

[0018] Figure 3 It is a schematic diagram of the internal structure of the utility model.

[0019] Figure 4 It is a structural schematic diagram of the jacking and positioning component in the utility model.

[0020] Among them: 1. Protective box; 2. Screw linear moving module; 3. Stop block; 4. Loading frame; 5. Stop cylinder; 6. First mounting plate; 7. First bracket; 8. Sensor; 9. Profiling positioning frame; 10. Second mounting plate; 11. Second bracket; 12. Conveyor belt; 13. Material receiving frame; 14. Conveyor belt bracket; 15. Grinding module; 16. Lifting cylinder; 17. Lifting block; 18. Control box. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] See also Figure 1-Figure 4 In an embodiment of the utility model, an aluminum alloy square tube grinding device includes a protective box 1, a control box 18 is installed at the lower end of the protective box 1, a screw linear moving module 2 is installed at the bottom of the protective box 1, and a grinding module 15 for grinding the end of the aluminum alloy square tube is installed at the output end of the screw linear moving module 2. A suction module for sucking away grinding debris is provided on the grinding module 15, and a conveying mechanism for conveying the aluminum alloy square tube is provided inside the protective box 1.

[0023] The conveying mechanism includes two parallel conveyor belts 12, and the conveyor belts 12 are horizontally arranged above the screw linear moving module 2. The output direction of the conveyor belt 12 is perpendicular to the conveying direction of the screw linear moving module 2. A conveyor belt bracket 14 for supporting the conveyor belt 12 is vertically installed on the side wall of the conveyor belt 12. The lower end of the conveyor belt bracket 14 is installed at the bottom of the protective box 1. The side wall of the protective box 1 above the input end of the conveyor belt 12 and the side wall of the protective box 1 below the output end of the conveyor belt 12 are They are all provided with through openings. The input end of the conveyor belt 12 is obliquely provided with a loading frame 4 for conveying aluminum alloy square tubes to the conveyor belt 12. The loading frame 4 is installed on the through opening of the protective box 1 above the input end of the conveyor belt 12. The output end of the conveyor belt 12 is provided with a receiving frame 13 for collecting processed aluminum alloy square tubes. The receiving frame 13 is installed on the through opening of the protective box 1 below the output end of the conveyor belt 12. The conveyor belt 12 on the grinding side of the grinding module 15 is provided with a jacking and positioning component for jacking and fixing the aluminum alloy square tubes.

[0024] The jacking and positioning assembly includes a second bracket 11, which is vertically mounted on the bottom of the protective box 1 on the side of the conveyor belt 12 away from the polishing module 15. A second mounting plate 10 is horizontally mounted on the upper end of the second bracket 11, and the second mounting plate 10 is arranged above the conveyor belt 12. The lower end of the second mounting plate 10 is detachably mounted with a contour positioning frame 9 for clamping and fixing the aluminum alloy square tube. The contour positioning frame 9 is on the same vertical plane as the polishing end of the polishing module 15. A jacking cylinder 16 is installed at the bottom of the protective box 1 directly below the contour positioning frame 9. A jacking block 17 for pushing the aluminum alloy square tube upward is installed at the output end of the jacking cylinder 16. The jacking cylinder 16 and the jacking block 17 are arranged between the two conveyor belts 12. The input end of the conveyor belt 12 is provided with a loading assembly for releasing the aluminum alloy square tubes one by one.

[0025] When the conveyor belt 12 transports the aluminum alloy square tube to the bottom of the profiling positioning frame 9, the controller controls the conveyor belt 12 to stop and controls the lifting cylinder 16 to start at the same time. The output end of the lifting cylinder 16 pushes the lifting block 17 to move upward. The lifting block 17 pushes the aluminum alloy square tube to move upward and is clamped on the profiling positioning frame 9.

[0026] The feeding assembly includes a first bracket 7, which is vertically mounted on the bottom of the protective box 1 on the side of the second bracket 11 close to the feeding frame 4. A first mounting plate 6 is horizontally mounted on the upper end of the first bracket 7, and the first mounting plate 6 is arranged above the conveyor belt 12. A blocking cylinder 5 is mounted on the upper end of the first mounting plate 6, and a block 3 for blocking the aluminum alloy square tube is installed at the output end of the blocking cylinder 5 through the first mounting plate 6. A sensor 8 for detecting the aluminum alloy square tube is arranged between the first bracket 7 and the second bracket 11, and the sensor 8 is connected to the conveyor belt bracket 14 through a connecting plate.

[0027] The staff puts the aluminum alloy square tube into the loading frame 4, and the aluminum alloy square tube slides along the bottom of the loading frame 4 to the input end of the conveyor belt 12. The block 3 blocks the aluminum alloy square tube. Initially, the blocking cylinder 5 is automatically started to extend and retract once, and the output end of the blocking cylinder 5 drives the block 3 to move up and down, thereby releasing an aluminum alloy square tube, and the conveyor belt 12 drives the aluminum alloy square tube to move. When the sensor 8 detects the aluminum alloy square tube, the sensor 8 sends a signal to the controller, and the controller controls the blocking cylinder 5 to extend and retract once, and the output end of the blocking cylinder 5 drives the block 3 to move up and down, thereby releasing another aluminum alloy square tube, thereby realizing continuous transportation of the aluminum alloy square tube.

[0028] The working principle of an aluminum alloy square tube grinding equipment:

[0029] When in use, start the conveyor belt 12 and the polishing module 15, and the staff puts the aluminum alloy square tube into the loading frame 4. The aluminum alloy square tube slides along the bottom of the loading frame 4 to the input end of the conveyor belt 12. At this time, the output end of the blocking cylinder 5 is in an extended state, and the block 3 blocks the aluminum alloy square tube.

[0030] Initially, the blocking cylinder 5 is automatically started to extend and retract once, and the output end of the blocking cylinder 5 drives the block 3 to move up and down, thereby releasing an aluminum alloy square tube, and the conveyor belt 12 drives the aluminum alloy square tube to move. When the sensor 8 detects the aluminum alloy square tube, the sensor 8 sends a signal to the controller, and the controller controls the blocking cylinder 5 to extend and retract once, and the output end of the blocking cylinder 5 drives the block 3 to move up and down, thereby releasing another aluminum alloy square tube, thereby realizing continuous transportation of the aluminum alloy square tube.

[0031] When the conveyor belt 12 transports the aluminum alloy square tube to the bottom of the profiling positioning card frame 9, the controller controls the conveyor belt 12 to stop and controls the jacking cylinder 16 to start at the same time. The output end of the jacking cylinder 16 pushes the jacking block 17 to move upward, and the jacking block 17 pushes the aluminum alloy square tube to move upward and is clamped on the profiling positioning card frame 9. Then the controller controls the screw rod linear movement module 2 to start, and the output end of the screw rod linear movement module 2 drives the grinding module 15 to move, so that the grinding end of the grinding module 15 is close to the aluminum alloy square tube, thereby grinding the aluminum alloy square tube. After grinding is completed, the grinding module 15 is reset first, and then the jacking block 17 and the jacking cylinder 16 are reset, so that the polished aluminum alloy square tube is moved back to the conveyor belt 12. Then the controller controls the conveyor belt 12 to start, and then repeats the above actions. During the gap movement of the conveyor belt 12, the conveyor belt 12 will transport the polished aluminum alloy square tube to the receiving frame 13.

[0032] It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention.

Claims

1. An aluminum alloy square tube grinding device, comprising a protection box (1), a control box (18) is installed at the lower end of the protection box (1), characterized in that: A screw linear motion module (2) is installed at the bottom of the protection box (1), a grinding module (15) for grinding the end of the aluminum alloy square tube is installed at the output end of the screw linear motion module (2), and a conveying mechanism for conveying the aluminum alloy square tube is provided inside the protection box (1).

2. The aluminum alloy square tube grinding equipment according to claim 1, characterized in that: The conveying mechanism comprises two conveyor belts (12) parallel to each other, the conveyor belts (12) are horizontally arranged above the screw linear moving module (2), the output direction of the conveyor belt (12) is perpendicular to the conveying direction of the screw linear moving module (2), a conveyor belt bracket (14) for supporting the conveyor belt (12) is vertically installed on the side wall of the conveyor belt (12), the lower end of the conveyor belt bracket (14) is installed at the bottom of the protective box (1), the side wall of the protective box (1) above the input end of the conveyor belt (12) and the side wall of the protective box (1) below the output end of the conveyor belt (12) are vertically installed on the side wall of the protective box (1) for supporting the conveyor belt (12). A through-hole is provided on each of the conveyor belts (12); a loading frame (4) is tiltedly provided at the input end of the conveyor belt (12) for conveying aluminum alloy square tubes to the conveyor belt (12); the loading frame (4) is installed on the through-hole of the protection box (1) above the input end of the conveyor belt (12); a receiving frame (13) is provided at the output end of the conveyor belt (12) for collecting processed aluminum alloy square tubes; the receiving frame (13) is installed on the through-hole of the protection box (1) below the output end of the conveyor belt (12); a lifting and positioning component for lifting and fixing the aluminum alloy square tubes is provided on the conveyor belt (12) on the grinding side of the grinding module (15).

3. The aluminum alloy square tube grinding equipment according to claim 2, characterized in that: The lifting and positioning assembly includes a second bracket (11), which is vertically mounted on the bottom of the protective box (1) on the side of the conveyor belt (12) away from the grinding module (15), and a second mounting plate (10) is horizontally mounted on the upper end of the second bracket (11), and the second mounting plate (10) is arranged above the conveyor belt (12). The lower end of the second mounting plate (10) is detachably mounted with a contour positioning frame (9) for clamping and fixing the aluminum alloy square tube, and the contour positioning card The frame (9) and the grinding end of the grinding module (15) are on the same vertical plane, and a lifting cylinder (16) is installed at the bottom of the protective box (1) just below the contour positioning card frame (9), and a lifting block (17) for pushing the aluminum alloy square tube to move upward is installed at the output end of the lifting cylinder (16), and the lifting cylinder (16) and the lifting block (17) are arranged between two conveyor belts (12), and the input end of the conveyor belt (12) is provided with a loading assembly for releasing the aluminum alloy square tubes one by one.

4. The aluminum alloy square tube grinding equipment according to claim 3, characterized in that: The feeding assembly includes a first bracket (7), which is vertically mounted on the bottom of the protective box (1) on the side of the second bracket (11) close to the feeding frame (4), and a first mounting plate (6) is horizontally mounted on the upper end of the first bracket (7), and the first mounting plate (6) is arranged above the conveyor belt (12). A blocking cylinder (5) is mounted on the upper end of the first mounting plate (6), and a block (3) for blocking the aluminum alloy square tube is mounted on the output end of the blocking cylinder (5) through the first mounting plate (6). A sensor (8) for detecting the aluminum alloy square tube is arranged between the first bracket (7) and the second bracket (11), and the sensor (8) is connected to the conveyor belt bracket (14) through a connecting plate.

5. The aluminum alloy square tube grinding equipment according to claim 1, characterized in that: The grinding module (15) is provided with a suction module for sucking away grinding debris.

6. The aluminum alloy square tube grinding equipment according to claim 1, characterized in that: The lower end of the control box (18) is equipped with a universal roller for facilitating the movement of the device, and the lower end of the control box (18) is equipped with a telescopic support leg.

7. The aluminum alloy square tube grinding equipment according to claim 3, characterized in that: The contoured positioning frame (9) is detachably connected to the second mounting plate (10) via bolts.