Aluminum alloy machining integrated treatment device

By introducing deburring, cleaning and replacement components into the integrated processing device for aluminum alloy processing, the problem of burrs after cutting is solved, the processing accuracy and efficiency are improved, the tool life is extended, the safety hazards are reduced and the cleanliness is maintained.

CN120663124AInactive Publication Date: 2025-09-19HUZHOU BAOYUN LEISURE PROD CO LTD
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Patent Information

Application Number
CN202510735510.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-04
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing integrated processing devices for aluminum alloy processing fail to effectively remove burrs after cutting, resulting in reduced processing accuracy, poor surface quality, affected assembly accuracy, shortened tool life and increased safety hazards.

Method used

An integrated processing device for aluminum alloy processing was designed, which includes a deburring unit, a cleaning unit, and a part replacement unit. The device drives the movable teeth to file and deburr through a transmission motor, automatically replaces the saw blade, and collects the debris. The aluminum alloy is fixed with a clamping block to ensure stable deburring.

Benefits of technology

It improves machining efficiency, ensures machining accuracy and surface quality, extends tool life, reduces safety hazards, and maintains the cleanliness of the device.

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Abstract

The invention discloses an aluminum alloy machining integrated treatment device which comprises a shell, a standby tank is arranged on one side of the top of the shell and used for storing standby saw blades, a part replacing part is arranged above the shell, an inner frame is further arranged in the shell, and a deburring part is arranged on the right side of the inner frame. And the deburring part is used for removing burrs at the fracture of the aluminum alloy, and the cleaning part is arranged on the left side of the bottom of the inner frame and used for cleaning chippings generated by cutting and deburring. According to the aluminum alloy deburring device, through arrangement of filing teeth, burrs on the section of cut aluminum alloy are filed by the aluminum alloy deburring device, so that the aluminum alloy cut by the aluminum alloy deburring device does not need to be deburred manually, and due to the fact that the filing teeth are synchronously carried out after the aluminum alloy is cut, the machining efficiency of the aluminum alloy deburring device is improved; during use, power of the transmission motor can drive the movable teeth to rotate, then the movable teeth are reset, and then the filing teeth file burrs on the section of the aluminum alloy.
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Description

Technical Field

[0001] The present invention relates to the technical field of aluminum alloy processing, and in particular to an integrated processing device for aluminum alloy processing. Background Art

[0002] The aluminum alloy processing integrated processing device is a device that integrates multiple related processes and functions in the aluminum alloy processing process to improve production efficiency.

[0003] Existing devices of this type fail to adequately address certain details during aluminum alloy processing, resulting in reduced production efficiency. For example, Chinese Patent Publication No. "CN116423224B" discloses an integrated aluminum alloy processing device that uses a laser cutting head to cut aluminum alloys. However, in actual use, even laser cutting of aluminum alloys produces burrs. Processing without removing burrs can lead to reduced processing accuracy, poor surface quality, reduced assembly accuracy, shortened tool life, and potential safety hazards. Accordingly, the present application proposes an integrated aluminum alloy processing device. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose an integrated processing device for aluminum alloy processing.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions: An integrated processing device for aluminum alloy processing comprises a housing, a spare tank is provided on one side of the top of the housing, and the spare tank is used to store spare saw blades; A component replacement portion is provided above the shell, and an inner frame is provided inside the shell; The right side of the inner frame is provided with a deburring portion, which is used to remove burrs at the fracture of the aluminum alloy; A cleaning portion is provided on the left side of the bottom of the inner frame, and the cleaning portion is used to clean debris generated by cutting and deburring; A transmission motor is provided at the rear of the inner frame, which provides power for the burr part and the cleaning part. A plurality of spare saw blades are also provided inside the spare tank. A limit frame is also provided inside the spare tank near the outlet, which is used to limit the outside of the spare saw blade.

[0006] Preferably, a lifting assembly is installed on the side wall of the inner frame, and a main saw blade and a saw blade motor are also provided on the lifting assembly. A chip guard is provided on the side of the main saw blade, and a chip box is provided on the bottom surface of the inner frame.

[0007] Preferably, the inner frame is provided with a No. 1 rack and a guide member, the guide member is used to provide guidance for the aluminum alloy, the cross section of the inner frame is "L"-shaped, and the inner frame is arranged inside the outer shell.

[0008] Preferably, the chip box is rectangular in shape with a cavity inside. A roller brush is also provided on the left side of the chip box. The interior of the chip guard plate is recessed to one side. A chip scraping block is provided inside the chip guard plate, and the chip scraping block fits into the interior of the chip guard plate.

[0009] Preferably, a mounting shaft is provided on the output shaft of the saw blade motor, a main saw blade is provided on the mounting shaft, a limit pin is provided on the main saw blade, and a ball buckle is provided inside the limit pin. The front end of the ball buckle has a semicircular shape, and the inner side of the front end of the ball buckle bulges outward, and the rear end of the ball buckle has a trapezoidal shape.

[0010] Preferably, when the deburring part deburrs the cut aluminum alloy: the transmission motor drives the half gear to rotate through the second transmission group, so that the movable teeth rotate back and forth, and then drive the file teeth to file.

[0011] Preferably, when the cleaning unit cleans the debris generated by the aluminum alloy: the sawdust is thrown toward the chip guard plate and collected in the chip collection box; The burrs and chips are concentrated on the bottom surface of the inner frame, and the transmission motor drives the No. 1 reciprocating screw to roll the chips into the chip collection box.

[0012] Preferably, when the replacement part replaces the spare saw blade for this device: the screw motor causes the mounting rod to move back and forth, the mounting rod moves to the end point in the direction of the main saw blade, the main saw blade is removed, the spare tank is started, the spare saw blade is reinstalled on the mounting rod, and finally the spare saw blade is installed.

[0013] Preferably, the component changing portion is triggered by an ejection rod and a limiting plate.

[0014] The present invention has the following beneficial effects: 1. By setting the file teeth, the device can file the burrs on the cross-section of the aluminum alloy after cutting, so that the aluminum alloy cut by the device does not need to be manually deburred. Since this is carried out synchronously after the aluminum alloy cutting is completed, the processing efficiency of the device is improved. When in use, the power of the transmission motor will drive the movable teeth to rotate, and then the movable teeth will reset, allowing the file teeth to file the burrs on the cross-section of the aluminum alloy.

[0015] 2. By setting up a replacement part, the saw blade in this device can automatically replace the main saw blade when a cutting problem occurs. The user only needs to take away the replaced saw blade. When in use, the screw motor will start and move the mounting rod toward the direction of the main saw blade, and finally release the limit of the main saw blade. When it moves back, the main saw blade will be pushed down. When the mounting rod reaches the end away from the saw blade motor, the spare saw blade falls, and the mounting rod moves again toward the end with the saw blade motor. During this period, the mounting rod contacts the spare saw blade, and finally it is installed on the mounting shaft.

[0016] 3. By setting up a cleaning part, the chips of the aluminum alloy cut by this device can be collected, thereby avoiding the unsightly problem caused by the chips scattered on the ground. When in use, the chips of the cut aluminum alloy will be thrown into the chip guard plate and eventually fall into the chip collection box, while the chips generated by deburring will be collected by the chip collection box.

[0017] 4. By setting the clamping block, the aluminum alloy can be fixed when the device is removing burrs, thereby avoiding the displacement of the aluminum alloy during deburring, making the aluminum alloy more stable during deburring, and avoiding the phenomenon of being unable to remove burrs due to the displacement of the aluminum alloy. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the overall structure of an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 2 This is a schematic structural diagram of the back side of an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 3 A schematic diagram showing the position of a chip guard plate of an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 4 for Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the positions of the worm wheel and worm in an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 6 for Figure 5 Enlarged view of point B in the middle; Figure 7 This is a schematic structural diagram of a main saw blade of an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 8 for Figure 7 A magnified view of the structure at point C in the middle; Figure 9 This is a schematic diagram of the position of a chip collection box in an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 10 for Figure 9 Enlarged view of point D in the middle; Figure 11 for Figure 9 Enlarged view of point E in the middle; Figure 12 for Figure 9 Enlarged view of point F in the middle; Figure 13 This is a schematic structural diagram of a chip guard plate of an integrated processing device for aluminum alloy processing proposed by the present invention; Figure 14 This is a schematic structural diagram of a rotating gear of an aluminum alloy processing integrated treatment device proposed by the present invention; Figure 15 This is a structural schematic diagram of a limit frame of an aluminum alloy processing integrated treatment device proposed by the present invention.

[0019] In the figure: 1 spare tank, 2 No. 1 spring rod, 3 housing, 4 observation window, 5 aluminum alloy, 6 limit frame, 7 channel frame, 8 spare saw blade, 9 main saw blade, 10 chip guard, 11 movable teeth, 12 file teeth, 13 retaining ring, 14 inner frame, 15 ejector rod, 16 rotating rack, 17 saw blade motor, 18 worm gear, 19 worm, 20 No. 1 pulley assembly, 21 No. 1 transmission belt assembly, 22 No. 1 reciprocating screw, 23 roller brush, 24 chip scraper Block, 25 guide, 26 clamping block, 27 No. 1 rack, 28 No. 2 spring rod, 29 chip box, 30 ball buckle, 31 limit pin, 32 mounting rod, 33 mounting shaft, 34 chip box, 35 No. 2 transmission group, 36 half gear, 37 file tooth rack, 38 limit plate, 39 limit frame, 40 screw motor, 41 No. 2 reciprocating screw, 42 tension spring, 43 trigger rod, 44 rotating gear, 45 transmission motor, 46 lifting assembly. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0021] Example 1: Reference Figure 2-5 , including a shell 3, a spare tank 11 is provided on one side of the top of the shell 3, the spare tank 1 is used to store the spare saw blade 8, a replacement part is provided above the shell 3, and an inner frame 14 is also provided inside the shell 3; when the replacement part replaces the spare saw blade for the device: the screw motor 40 makes the mounting rod 32 move back and forth, the mounting rod 32 moves to the end point in the direction of the main saw blade 9, the main saw blade 9 is disassembled, the spare tank 1 is started, the spare saw blade 8 is reinstalled on the mounting rod 32, and finally the spare saw blade is installed.

[0022] A transmission motor 45 is provided at the rear of the inner frame 14, and the transmission motor 45 provides power for the burr part and the cleaning part. A plurality of spare saw blades 8 are also provided inside the spare tank 1. A limit frame 39 is also provided inside the spare tank 1 near the outlet, and the limit frame 39 is used to limit the outside of the spare saw blade 8.

[0023] The inner frame 14 is provided with a number one rack 27 and a guide member 25 . The guide member 25 is used to provide guidance for the aluminum alloy 5 . The cross section of the inner frame 14 is “L”-shaped. The inner frame 14 is arranged inside the outer shell 3 .

[0024] An installation shaft 33 is provided on the output shaft of the saw blade motor 17, and a main saw blade 9 is provided on the installation shaft 33. A limit pin 31 is provided on the main saw blade 9, and a ball buckle 30 is also provided inside the limit pin 31. The front end structure of the ball buckle 30 is semicircular, and the inner side of the front end of the ball buckle bulges outward, and the rear end structure of the ball buckle is trapezoidal. The replacement part is triggered by the ejection rod 15 and the limit plate 38.

[0025] The replacement part can be specifically composed of the following parts: the replacement part consists of a spare tank 1, a limit plate 38, a limit plate 38, a tension spring 42, a screw motor 40, a No. 2 reciprocating screw 41, a spare saw blade 8, a mounting rod 32, a No. 2 trigger rod 43, a No. 1 spring rod 2, and an ejection rod 15. The replacement part is used to replace the saw blade.

[0026] The output rod of the screw motor 40 is fixedly connected to the No. 2 reciprocating screw 41, the mounting rod 32 is threadedly connected to the No. 2 reciprocating screw 41, the limit plate 38 is fixedly connected to the tension spring 42 and is slidingly connected to the inner frame 14, the spare saw blade 8 is arranged inside the spare tank 1, and a spring for moving the spare saw blade 8 forward is arranged at the rear part of the spare tank 1, the tension spring 42 is fixedly connected to the limit plate 38, the No. 2 trigger rod 43 is fixedly connected to the mounting rod 32, the spare saw blade 8 is arranged inside the spare tank 1, the limit frame 39 is located inside the spare tank 1 and is fixedly connected to the output rod in the No. 1 spring rod 2.

[0027] In this embodiment, the replacement part is used to replace the saw blade. When the main saw blade 9 in this device is damaged or difficult to maintain working, the screw motor 40 can be started. The screw motor 40 will drive the second reciprocating screw 41 to rotate, and then drive the second trigger rod 43 and the mounting rod 32 to move.

[0028] refer to Figure 10 and and Figure 8 When the second trigger rod 43 and the mounting rod 32 move, the mounting rod 32 will move forward. Figure 10 The front end of the mounting rod 32 will compress the ball buckle 30 toward the inside of the limiting pin 31, so that the ball buckle 30 is released from the limitation on the mounting shaft 33 and the limitation of the ball buckle 30 on the mounting shaft 33 is released, so that the main saw blade 9 can be removed.

[0029] The mounting rod 32 has a rubber rod with a metal interior and a rubber-wrapped exterior to provide friction. When the mounting rod 32 moves toward the stop pin 31, the rubber rod inserts into the stop pin 31. The ball buckle 30 is pressed against the inside of the stop pin 31, releasing the stop. The rubber rod, with its frictional force, allows the main saw blade 9 to be withdrawn from the mounting shaft 33. It should be noted that the main saw blade 9 has the same structure as the backup saw blade 8.

[0030] Since the mounting rod 32 is threadedly connected to the No. 2 reciprocating screw 41, and the main saw blade 9 is located at the end of the No. 2 reciprocating screw 41, when the mounting rod 32 releases the limit of the main saw blade 9, due to the structure of the No. 2 reciprocating screw 41, the mounting rod 32 will move the replaced main saw blade 9 toward the direction of the screw motor 40.

[0031] During this period, the main saw blade 9 will contact the ejector rod 15, which will push the main saw blade 9 down the mounting rod 32, causing it to fall. The mounting rod 32 will then continue to move toward the screw motor 40, and the second trigger rod 43 will then contact the limit plate 38 and move against the limit plate 38, which will then release the limit plate 38 from limiting the position of the limit frame 39. At this time, the mounting rod 32 is located behind the limit frame 39. Since the limit frame 39 has a spare saw blade 8, the spare saw blade 8 will be squeezed into the limit frame 39 by the spring inside the spare tank 1, and then be limited on the limit frame 39.

[0032] Due to the structure of the No. 2 reciprocating screw 41, the mounting rod 32 will move toward the mounting shaft 33 again. During this period, the rubber rod on the mounting rod 32 will be inserted into the square hole on the limit pin 31, and push the spare saw blade 8 toward the mounting shaft 33, and make the spare saw blade 8 cooperate with the mounting shaft 33. During this period, the ball buckle 30 will be stuck in the mounting shaft 33. Afterwards, due to the action of the No. 2 reciprocating screw 41, the mounting rod 32 will move toward the screw motor 40 again, thereby completing the replacement of the saw blade.

[0033] Example 2: In this embodiment, a deburring part is provided on the right side of the inner frame 14, and the deburring part is used to remove burrs at the fracture of the aluminum alloy 5; a cleaning part is provided on the left side of the bottom of the inner frame 14, and the cleaning part is used to clean the debris generated by cutting and deburring; when the deburring part deburrs the aluminum alloy 5 that has been cut: the transmission motor 45 drives the half gear 36 to rotate through the No. 2 transmission group 35, so that the movable teeth 11 rotate back and forth, and then drive the file teeth 12 to file.

[0034] The deburring part is used to remove burrs. In this embodiment, the deburring part can be composed of the following components: No. 1 rack 27, No. 2 spring rod 28, guide 25, clamping block 26, worm wheel 18, worm 19, No. 1 pulley group 20, No. 1 transmission belt group 21, transmission motor 45, movable teeth 11, file teeth 12, retaining ring 13, No. 2 transmission group 35, half gear 36, and file tooth rack 37.

[0035] The No. 1 rack 27 is fixedly connected to the slider in the No. 2 spring rod 28, and the spring inside it is located below the slider. At the same time, the No. 1 rack 27 is engaged with the movable tooth 11, the retaining ring 13 is rotationally connected to the movable tooth 11, the file teeth 12 are slidingly connected to the retaining ring 13, the guide member 25 is slidingly connected to the clamping block 26, the worm wheel 18 and the worm 19 are engaged, the worm 19 is slidingly and rotationally connected to the inner frame 14, and the transmission motor 45 is fixedly connected to the inner frame 14.

[0036] refer to Figure 4-6 After the cutting is completed, burrs will be generated on the aluminum alloy. At this time, the transmission motor 45 can be started. The transmission motor 45 will drive the No. 2 transmission group 35 to rotate and the half gear 36 to rotate. The rotation of the half gear 36 will drive the file tooth rack 37 to move up and down. The file tooth rack 37 is connected to the inside of the No. 2 spring rod 28, so the file tooth rack 37 can be reset, thereby moving it up and down. The file tooth rack 37 is fixedly connected to the No. 1 rack 27, so the No. 1 rack 27 can also move up and down, thereby driving the movable tooth 11 to rotate back and forth.

[0037] The rotation of the movable teeth 11 will cause the file teeth 12 to move up and down or forward and backward. Figure 4 as well as Figure 5 Two pairs of grooves with opposite rotation directions are provided on the movable tooth 11. When the movable tooth 11 rotates back and forth, the file teeth 12 will file the cut surface of the aluminum alloy 5. Since the rotation directions of the grooves on the movable tooth 11 are opposite, when the movable tooth 11 rotates counterclockwise, the file teeth 12 in the upper and lower parts will file the cut surface of the aluminum alloy, while the file teeth 12 in the left and right parts will stay away from the aluminum alloy. When the movable tooth 11 rotates clockwise, the left and right file teeth 12 will file the aluminum alloy 5, and the file teeth 12 in the upper and lower parts will stay away from the aluminum alloy 5, thereby avoiding mutual interference between multiple file teeth 12.

[0038] refer to Figure 13 When the No. 1 rack 27 moves downward, it will press the clamping block 26 downward as well, and then press the clamping block 26 on the aluminum alloy 5, thereby completing the clamping of the aluminum alloy 5. It should be noted that the clamping block 26 is made of rubber, which can provide a certain friction force, and in the process of the No. 1 rack 27 being pressed downward, only the last small part of the stroke end will press the clamping block 26 downward, thereby clamping the aluminum alloy 5 without affecting the movement of the No. 1 rack 27.

[0039] Embodiment 3: A cleaning part is provided on the left side of the bottom of the inner frame 14, and the cleaning part is used to clean the debris generated by cutting and deburring; when the cleaning part cleans the debris generated by the aluminum alloy 5: the sawdust is thrown to the chip guard plate 10 and concentrated in the chip collecting box 29, the burr debris is concentrated on the bottom surface of the inner frame 14, and the transmission motor 45 drives the No. 1 reciprocating screw 22 to make the debris be rolled into the chip collecting box 34.

[0040] The chip box 34 is rectangular in shape and has a cavity inside. A roller brush 23 is provided on the left side of the chip box 34. The interior of the chip guard plate 10 is recessed to one side. A chip scraping block 24 is provided inside the chip guard plate 10, and the chip scraping block 24 fits in place with the interior of the chip guard plate 10.

[0041] A lifting assembly 46 is installed on the side wall of the inner frame 14 , and a main saw blade 9 and a saw blade motor 17 are also provided on the lifting assembly 46 . A chip guard plate 10 is provided on the side of the main saw blade 9 , and a chip box 34 is provided on the bottom surface of the inner frame 14 .

[0042] The cleaning part is used to collect and clean aluminum alloy debris. In this embodiment, the cleaning part can be composed of the following parts: a chip guard plate 10, a chip wiping block 24, a chip collecting box 29, a chip collecting box 34, a roller brush 23, a No. 1 reciprocating screw 22, a rotating rack 16, and a rotating gear 44.

[0043] The chip guard plate 10 is magnetically connected to the chip collecting box 29, the chip scraping block 24 is slidingly connected to the chip guard plate 10, the roller brush 23 is fixedly connected to the rotating gear 44, the rotating rack 16 is meshed with the rotating gear 44, the chip collecting box 34 is threadedly connected to the No. 1 reciprocating screw 22, and the chip collecting box 34 is also fixedly connected to the chip scraping block 24.

[0044] refer to Figure 3 、 Figure 5 、 Figure 9 When the aluminum alloy 5 is cut, chips are generated, and the chips have a certain throwing angle. The chip guard plate 10 is arc-shaped, and coolant is usually sprayed when cutting the aluminum alloy 5. The coolant will cause the chips to stick to the chip guard plate 10, and the chip wiping block 24 can move back and forth to rub the chips together, so that the chips can be sticky to the coolant and eventually fall into the chip collecting box 29.

[0045] The chip scraping block 24 is fixedly connected to the chip collecting box 34, and the chip collecting box 34 is threadedly connected to the first reciprocating screw rod 22. Figure 5 as well as Figure 2When the transmission motor 45 rotates, the power will pass through the second transmission group 35 and be transmitted to the half gear 36. The half gear 36 is fixedly connected to the worm gear 18, so the worm gear 18 will also rotate. Then the power is transmitted to the worm 19 through the worm gear, and then to the No. 1 pulley group 20 and the No. 1 transmission belt group 21 through the worm 19, and finally drives the No. 1 reciprocating screw 22 to rotate, thereby driving the chip collection box 34 to move back and forth.

[0046] Since the roller brush 23 is fixedly connected to the rotating gear 44, when the dust box 34 reciprocates, the rotating gear 44 will move, and since it is engaged with the rotating rack 16, the rotating gear 44 will rotate, thereby driving the roller brush 23 to rotate and scrape the debris into the dust box 34. It should be noted that the scraping block 24 is driven by the dust box 34.

[0047] The lifting assembly 46 is a prior art, which is used to control the lifting and lowering of the main saw blade 9 to facilitate cutting. It consists of a servo motor and a high-precision lead screw, and uses the principle of thread to make the main saw blade 9 rise or fall.

[0048] The above are only preferred specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An integrated processing device for aluminum alloy processing, comprising a housing, characterized in that: A spare tank is provided on one side of the top of the housing, and the spare tank is used to store spare saw blades; A component replacement portion is provided above the shell, and an inner frame is provided inside the shell; The right side of the inner frame is provided with a deburring portion, which is used to remove burrs at the fracture of the aluminum alloy; A cleaning portion is provided on the left side of the bottom of the inner frame, and the cleaning portion is used to clean debris generated by cutting and deburring; A transmission motor is provided at the rear of the inner frame, which provides power for the burr part and the cleaning part. A plurality of spare saw blades are also provided inside the spare tank. A limit frame is also provided inside the spare tank near the outlet, which is used to limit the outside of the spare saw blade.

2. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: A lifting assembly is installed on the side wall of the inner frame. A main saw blade and a saw blade motor are also provided on the lifting assembly. A chip guard is provided on the side of the main saw blade. A chip box is provided on the bottom surface of the inner frame.

3. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: The inner frame is provided with a No. 1 rack and a guide member, and the guide member is used to provide guidance for the aluminum alloy. The cross section of the inner frame is "L"-shaped, and the inner frame is arranged inside the outer shell.

4. The aluminum alloy processing integrated treatment device according to claim 2, characterized in that: The chip collecting box is rectangular in shape and has a cavity inside. A roller brush is also provided on the left side of the chip collecting box. The interior of the chip guard plate is recessed to one side. A chip scraping block is provided inside the chip guard plate, and the chip scraping block fits with the interior of the chip guard plate.

5. The aluminum alloy processing integrated treatment device according to claim 2, characterized in that: The output shaft of the saw blade motor is provided with a mounting shaft, the mounting shaft is provided with a main saw blade, the main saw blade is provided with a limit pin, and a ball buckle is provided inside the limit pin. The front end of the ball buckle has a semicircular shape, and the inner side of the front end of the ball buckle bulges outward, and the rear end of the ball buckle has a trapezoidal shape.

6. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: When the deburring part deburrs the cut aluminum alloy, the transmission motor drives the half gear to rotate through the second transmission group, so that the movable teeth rotate back and forth, and then drive the file teeth to file.

7. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: When the cleaning part cleans the debris generated by the aluminum alloy, the sawdust is thrown toward the chip guard plate and collected in the chip collection box; The burrs and chips are concentrated on the bottom surface of the inner frame, and the transmission motor drives the No. 1 reciprocating screw to roll the chips into the chip collection box.

8. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: When the replacement part replaces the spare saw blade for this device: the screw motor makes the mounting rod move back and forth, the mounting rod moves toward the direction of the main saw blade to the end point, the main saw blade is removed, the spare tank is started, the spare saw blade is reinstalled on the mounting rod, and finally the spare saw blade is installed.

9. The aluminum alloy processing integrated treatment device according to claim 1, characterized in that: The component replacement portion is triggered by an ejector rod and a limiting plate.