Grooving device for aluminum profile machining
By designing an automatic feeding and angle-adjustable grooving device, the problem of low efficiency in traditional aluminum profile grooving devices has been solved, realizing efficient and automated grooving of aluminum profiles.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional aluminum profile grooving devices require manual feeding and unloading, and the grooving blade angle is not adjustable, resulting in low efficiency.
A grooving device for aluminum profile processing was designed. It adopts automatic feeding with a conveyor chain and push plate, automatic discharge with a collection port, and the angle of the grooving knife is adjusted by a motor-driven adjusting gear and gear ring system.
It enables automatic rotary feeding and unloading of aluminum profiles, improving grooving efficiency, and allows adjustment of the grooving blade angle as needed, thus enhancing the grooving effect.
Smart Images

Figure CN224073474U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum profile grooving technology, specifically a grooving device for aluminum profile processing. Background Technology
[0002] Titanium plating on aluminum profiles is a coating technology that adds pre-plating and electroplating steps to the conventional titanium plating process. The aluminum profile process involves placing the activated parts in an aqueous solution of salt and hydrochloric acid for chemical treatment. It is widely used in various fields. During the processing of aluminum profiles, a grooving device is required to cut grooves.
[0003] Traditional grooving devices mostly require manual feeding of aluminum profiles when grooving them. After grooving, the grooved profiles need to be manually removed from the grooving station to complete the material discharge. Then, the ungrooved profiles are placed back on the grooving station. This process of adding material is quite troublesome, time-consuming, and labor-intensive. The grooving blades on existing grooving devices are mostly fixed, and their angle cannot be adjusted, so they can only groove in one direction, resulting in slow grooving efficiency. Utility Model Content
[0004] The purpose of this utility model is to solve the problems of traditional grooving devices, which require manual feeding of aluminum profiles during grooving. After grooving, the grooved aluminum profiles need to be manually removed from the grooving station to complete the material discharge. Then, the ungrooved aluminum profiles are placed back on the grooving station. This process of adding material is troublesome, time-consuming, and labor-intensive. The grooving blades on existing grooving devices are mostly fixed, and their angles cannot be adjusted, so they can only groove in one direction, resulting in slow grooving efficiency. This utility model provides a grooving device for aluminum profile processing.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a grooving device for aluminum profile processing, comprising a device body, a support frame fixed to one end of the top rear side of the device body, a first electric telescopic rod fixed through the middle of the support frame, a first support rod rotatably connected to the front side of the first electric telescopic rod, a second support rod rotatably connected to one end of the first support rod, a third support rod rotatably connected to the rear side of the second support rod, a first mounting plate rotatably connected to the front side of the second support rod, a fourth support rod rotatably connected to the other end of the rear side of the first mounting plate, the rear side of the fourth support rod rotatably connected to one end of the front side of the support frame, and the other end of the third support rod rotatably connected to one end of the front side of the support frame. A fixed column plate is fixedly connected to the middle of the top of the first mounting plate, a conveyor belt is rotatably connected to the outer side of the fixed column plate, and multiple push plates are equidistantly fixed to the outer side of the conveyor belt. An arc-shaped limiting plate is fixed to both the front and rear sides of the upper surface of the first mounting plate, and a material collection port is opened in the middle of one end of the bottom of the first mounting plate.
[0006] As a further embodiment of this utility model: a second mounting plate is provided at one end of the first mounting plate, a debris cleaning box is fixed to the front side of the top of the second mounting plate, a conveying pipe is fixed to the middle of one end of the debris cleaning box, a clamping plate is fixed to one end of the conveying pipe, a protective filter screen is fixed to one end inside the debris cleaning box, a first motor is fixedly connected to the middle of one end of the debris cleaning box, a dust extraction fan is fixedly connected to the output end of the first motor, and the dust extraction fan is located at one end inside the debris cleaning box.
[0007] As a further embodiment of this utility model: a support rod is fixed to the middle of the front top of the main body of the device, a third electric telescopic rod is clamped at the middle of the top of the support rod, a hanging plate is fixed to the rear of the third electric telescopic rod, a second electric telescopic rod is clamped at the middle of the hanging plate, a toothed ring is rotatably mounted at the bottom of the second electric telescopic rod, a U-shaped mounting hanging plate is fixed at the bottom of the toothed ring, an adjusting gear is engaged at the middle of one end of the toothed ring, a third motor is fixed to the top of the adjusting gear, and one end of the third motor is fixedly connected to the lower end of the second electric telescopic rod.
[0008] As a further embodiment of this utility model: a grooving cutter disc is rotatably connected to the inner side of the U-shaped mounting plate, and a second motor is fixed below one end of the U-shaped mounting plate, with the output end of the second motor fixedly connected to one end of the grooving cutter disc.
[0009] As a further embodiment of this utility model: a cavity is provided on the inner side of the conveying pipe, three moving wheels are fixedly connected at equal intervals on both the left and right ends of the bottom of the debris cleaning box, a slag discharge port is fixedly provided on the lower front side of the debris cleaning box, a material slag inlet is provided below the slag discharge port, and a debris collection box is slidably connected to the bottom of the material slag inlet.
[0010] As a further improvement of this utility model: a discharge groove is provided on the rear side of one end of the upper surface of the first mounting plate, and an aluminum profile collection box is located below the collection port.
[0011] Compared with the prior art, the beneficial effects of this utility model are: it facilitates the automatic feeding and unloading of aluminum profiles to be grooved, which helps to improve the efficiency of grooving aluminum profiles; and it facilitates the automatic adjustment of the angle of the grooving blade during grooving, which helps to improve the grooving effect of aluminum profiles.
[0012] 1. Through the set conveyor belt, push plate, first mounting plate and collection port, the conveyor belt rotates and drives the push plate on the outside to rotate along the upper surface of the first mounting plate to one end, thereby pushing the aluminum profile block clamped between the push plates to move to one end of the upper surface of the first mounting plate to complete the feeding and discharging. When the slotted aluminum profile block moves to the position of the discharge groove opened on the rear side of one end of the upper surface of the first mounting plate under the drive of the conveyor belt and push plate, the aluminum profile block falls into the collection port through the discharge groove and into the aluminum profile collection box below. This facilitates the automatic rotation feeding and discharging of the aluminum profile to be slotted, which helps to improve the efficiency of aluminum profile slotting.
[0013] 2. Through the set third motor, adjusting gear, gear ring, U-shaped mounting plate and grooving cutter head, the third motor drives the adjusting gear fixedly connected to the output end to rotate. The rotating adjusting gear drives the gear ring meshed in the middle of one end to rotate. The rotating gear ring drives the U-shaped mounting plate fixedly connected to the bottom end to rotate a certain angle, thereby driving the grooving cutter head rotatably connected to the inner side of the U-shaped mounting plate to rotate synchronously by a specified angle. The second motor drives the grooving cutter head fixedly connected to the output end to rotate. The rotating grooving cutter head will groove the aluminum profile block in contact, which facilitates automatic adjustment of the grooving cutter angle during grooving and helps to improve the grooving effect of aluminum profiles. Attached Figure Description
[0014] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 2 This utility model Figure 1 Enlarged structural diagram of section A in the middle;
[0016] Figure 3 This is a three-dimensional structural diagram of the connection between the first mounting plate and the second mounting plate of this utility model;
[0017] Figure 4 This is a three-dimensional cross-sectional structural diagram of the connection between the clamping plate and the debris cleaning box of this utility model.
[0018] In the diagram: 1. Main body of the device; 2. First electric telescopic rod; 3. Support frame; 4. First support rod; 5. Second support rod; 6. Third support rod; 7. Fourth support rod; 8. First mounting plate; 9. Conveyor chain; 10. Push plate; 11. Fixed column plate; 12. Hanging plate; 13. Second electric telescopic rod; 14. Third electric telescopic rod; 15. Collection port; 16. Arc-shaped limiting plate; 17. Clamping plate; 18. Conveying pipe; 19. Debris collection box; 20. First motor; 21. Moving wheel; 22. Debris collection box; 23. Second mounting plate; 24. Support fixing rod; 25. Gear ring; 26. U-shaped mounting hanging plate; 27. Grooving cutter head; 28. Second motor; 29. Third motor; 30. Adjusting gear; 31. Protective filter screen; 32. Dust extraction fan. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figures 1-4 In this embodiment of the present invention, a grooving device for processing aluminum profiles includes a device body 1. A support frame 3 is fixed to one end of the top rear side of the device body 1. A first electric telescopic rod 2 is fixed through the middle of the support frame 3. A first support rod 4 is rotatably connected to the front side of the first electric telescopic rod 2. A second support rod 5 is rotatably connected to one end of the first support rod 4. A third support rod 6 is rotatably connected to the rear side of the second support rod 5. A first mounting plate 8 is rotatably connected to the front side of the second support rod 5. A fourth support rod 7 is rotatably connected to the other end of the rear side of the first mounting plate 8. The rear side of the fourth support rod 7 is connected to the support frame 3. One end of the frame 3 is rotatably connected, and the other end of the third support rod 6 is also rotatably connected to one end of the support frame 3. A fixed column plate 11 is fixedly connected to the middle of the top of the first mounting plate 8. A conveyor chain 9 is rotatably connected to the outside of the fixed column plate 11. Multiple push plates 10 are fixed at equal intervals on the outside of the conveyor chain 9. An arc-shaped limiting plate 16 is fixed on both the front and rear sides of the upper surface of the first mounting plate 8. A material collection port 15 is opened in the middle of one end of the bottom of the first mounting plate 8. A material discharge groove is opened on the rear side of one end of the upper surface of the first mounting plate 8. An aluminum profile collection box is collected below the material collection port 15.
[0021] In this embodiment: Before feeding, aluminum profile blocks are placed sequentially between multiple push plates 10 on the conveyor belt 9 above the first mounting plate 8. Before grooving, the first electric telescopic rod 2 drives one end of the first support rod 4, which is rotatably connected to the front, to move to the rear, thereby pulling the middle of the second support rod 5, which is rotatably connected to one end of the first support rod 4, to slide to one end. This causes the rear side of the second support rod 5 to rotate around the third support rod 6 to one end, thereby driving the first mounting plate 8, which is rotatably connected to the front of the third support rod 6, to slide towards one end of the top of the device body 1. When the first mounting plate 8 slides towards one end of the top of the device body 1, it will drive the other end of the first mounting plate 8 to move. The fourth support rod 7, which is rotatably connected to the rear, rotates around the other end of the third support rod 6 and the front end of the support frame 3 toward the top end of the device body 1, thereby improving the stability of the first mounting plate 8 sliding to one end. Simultaneously, the first support rod 4, the second support rod 5, the third support rod 6 and the fourth support rod 7 provided at the other end of the front side of the support frame 3 drive the corresponding second mounting plate 23 connected to the front side to slide toward the other end of the top of the device body 1, thereby driving the debris cleaning box 19, the conveying pipe 18 and the clamping plate 17 fixed on the front side of the top of the second mounting plate 23 to slide above the first mounting plate 8, and clamping and fixing the aluminum profile block placed between a set of push plates 10.
[0022] During feeding, the conveyor belt 9 rotates, driving the pusher plate 10 on the outer side to rotate along the upper surface of the first mounting plate 8 to one end, thereby pushing the aluminum profile block clamped between the pusher plates 10 to move towards one end of the upper surface of the first mounting plate 8. When the aluminum profile moves to one side of the arc-shaped limiting plate 16 under the push of the pusher plate 10, the arc-shaped limiting plate 16 limits the trajectory of the aluminum profile block, which helps to prevent the aluminum profile block from shifting its position when it moves to the arc corner of the first mounting plate 8. During discharge, the slotted aluminum profile block moves to the discharge groove position opened on the rear side of one end of the upper surface of the first mounting plate 8 under the drive of the conveyor belt 9 and the pusher plate 10. The aluminum profile block falls into the collection port 15 through the discharge groove and into the aluminum profile collection box provided below through the collection port 15.
[0023] Please refer to this carefully. Figure 1 and Figure 4A second mounting plate 23 is provided at one end of the first mounting plate 8. A debris cleaning box 19 is fixed to the front side of the top of the second mounting plate 23. A conveying pipe 18 is fixed to the middle of one end of the debris cleaning box 19. A clamping plate 17 is fixed to one end of the conveying pipe 18. A protective filter screen 31 is fixed to one end inside the debris cleaning box 19. A first motor 20 is fixedly connected to the middle of one end of the debris cleaning box 19. A dust extraction fan 32 is fixedly connected to the output end of the first motor 20. The dust extraction fan 32 is located at one end inside the debris cleaning box 19. A cavity is opened on the inner side of the conveying pipe 18. Three moving wheels 21 are fixedly connected at equal distances to the left and right ends of the bottom of the debris cleaning box 19. A slag discharge port is fixed to the lower front side of the debris cleaning box 19. A slag inlet is provided below the slag discharge port. A debris collection box 22 is slidably connected to the bottom of the slag inlet.
[0024] In this embodiment: During debris cleaning, the first motor 20 drives the dust extraction fan 32, which is fixedly connected to the output end, to rotate. The suction force generated by the rotation of the dust extraction fan 32 will suck the debris generated when the aluminum profile block clamped by the clamping plate 17 is slotted into the debris cleaning box 19 through the conveying pipe 18 fixed in the middle of one end of the debris cleaning box 19. When the debris comes into contact with the protective filter 31 provided inside the debris cleaning box 19, it slides down the protective filter 31 to the bottom of the inner side of the debris cleaning box 19. Then, it slides down the inclined angle of the bottom of the debris cleaning box 19 to the slag discharge port, falls into the slag inlet through the slag discharge port, and falls into the debris collection box 22 through the slag inlet.
[0025] Please refer to this carefully. Figure 1 and Figure 2 A support rod 24 is fixed to the middle of the front top of the main body 1 of the device. A third electric telescopic rod 14 is clamped at the middle of the top of the support rod 24. A hanging plate 12 is fixed to the rear side of the third electric telescopic rod 14. A second electric telescopic rod 13 is clamped at the middle of the hanging plate 12. A toothed ring 25 is rotatably attached to the bottom end of the second electric telescopic rod 13. A U-shaped mounting hanging plate 26 is fixed to the bottom end of the toothed ring 25. An adjusting gear 30 is engaged at the middle of one end of the toothed ring 25. A third motor 29 is fixed to the top of the adjusting gear 30. One end of the third motor 29 is fixedly connected to the lower end of the second electric telescopic rod 13. A grooving cutter disc 27 is rotatably connected to the inner side of the U-shaped mounting hanging plate 26. A second motor 28 is fixed to the lower end of one end of the U-shaped mounting hanging plate 26. The output end of the second motor 28 is fixedly connected to one end of the grooving cutter disc 27.
[0026] In this embodiment: During grooving, the second electric telescopic rod 13 drives the U-shaped mounting plate 26 fixedly connected to the bottom of the toothed ring 25 to move downward through the toothed ring 25 rotatably connected at the bottom. This causes the grooving cutter disc 27 rotatably connected to the inner side of the U-shaped mounting plate 26 to move down onto the aluminum profile block. The second motor 28 drives the grooving cutter disc 27 fixedly connected at the output end to rotate. The rotating grooving cutter disc 27 will groove the aluminum profile block it contacts. When it is necessary to groove the aluminum profile block at another angle, the third motor 29 drives the output end fixedly connected... The adjusting gear 30 rotates, which in turn drives the gear ring 25, which is meshed in the middle of one end, to rotate. The rotating gear ring 25 drives the U-shaped mounting plate 26, which is fixedly connected to the bottom end, to rotate by a certain angle. This causes the grooving cutter disc 27, which is rotatably connected to the inside of the U-shaped mounting plate 26, to rotate synchronously by a specified angle, thereby grooving the aluminum profile block in contact. At the same time, the third electric telescopic rod 14 drives the U-shaped mounting plate 26 below to slowly move intermittently to one end of the upper surface of the aluminum profile block by the same distance through the hanging plate 12.
[0027] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A slotting device for processing of aluminum profiles, comprising a device body (1), characterized in that, The end of the rear side of the top of the device body (1) is fixedly provided with a support frame (3), the middle of the support frame (3) is fixedly provided with a first electric telescopic rod (2), the front side of the first electric telescopic rod (2) is rotatably connected with a first supporting rod (4), one end of the first supporting rod (4) is rotatably connected with a second supporting rod (5), the rear side of the second supporting rod (5) is rotatably connected with a third supporting rod (6), the front side of the second supporting rod (5) is rotatably connected with a first mounting plate (8), the other end of the rear side of the first mounting plate (8) is rotatably connected with a fourth supporting rod (7), the rear side of the fourth supporting rod (7) is rotatably connected with one end of the front side of the support frame (3), the other end of the third supporting rod (6) is also rotatably connected with one end of the front side of the support frame (3), the middle of the top end of the first mounting plate (8) is fixedly connected with a fixed column plate (11), the outer side of the fixed column plate (11) is rotatably connected with a conveying chain belt (9), a plurality of push plates (10) are equidistantly fixed on the outer side of the conveying chain belt (9), the front and rear sides of the upper surface of the first mounting plate (8) are both fixedly provided with an arc-shaped limiting plate (16), and the middle of one end of the bottom of the first mounting plate (8) is provided with a material collecting port (15).
2. The slitting device for aluminum profile processing according to claim 1, characterized in that, One end of the first mounting plate (8) is provided with a second mounting plate (23), the front side of the top of the second mounting plate (23) is fixedly provided with a debris cleaning box (19), the middle of one end of the debris cleaning box (19) is fixedly provided with a conveying pipe (18), one end of the conveying pipe (18) is fixedly provided with a clamping plate (17), one end of the inside of the debris cleaning box (19) is fixedly provided with a protective filter screen (31), the middle of one end of the debris cleaning box (19) is fixedly connected with a first motor (20), the output end of the first motor (20) is fixedly connected with a dust extraction fan (32), and the dust extraction fan (32) is located at one end of the inside of the debris cleaning box (19).
3. The slitting device for aluminum profile processing according to claim 1, characterized in that, The middle of the front side of the top of the device body (1) is fixedly provided with a support fixing rod (24), the middle of the top end of the support fixing rod (24) is clamped with a third electric telescopic rod (14), the rear side of the third electric telescopic rod (14) is fixedly provided with a hanging plate (12), the middle of the hanging plate (12) is clamped with a second electric telescopic rod (13), the bottom end of the second electric telescopic rod (13) is rotatably provided with a gear ring (25), the bottom end of the gear ring (25) is fixedly provided with a U-shaped mounting hanging plate (26), the middle of one end of the gear ring (25) is engaged with an adjusting gear (30), the top of the adjusting gear (30) is fixedly provided with a third motor (29), and one end of the third motor (29) is fixedly connected with one end below the second electric telescopic rod (13).
4. The slitting device for aluminum profile processing according to claim 3, characterized in that, The inner side of the U-shaped mounting hanging plate (26) is rotatably connected with a slotting cutter head (27), one end below the U-shaped mounting hanging plate (26) is fixedly provided with a second motor (28), and the output end of the second motor (28) is fixedly connected with one end of the slotting cutter head (27).
5. The slitting device for aluminum profile processing according to claim 2, characterized in that, The inside of the conveying pipe (18) is provided with a cavity, the left and right ends of the bottom of the scrap cleaning box (19) are equidistantly and fixedly connected with three moving wheels (21), the lower front side of the scrap cleaning box (19) is fixedly connected with a slag discharge port, the lower side of the slag discharge port is provided with a material slag inlet, and the bottom of the material slag inlet is slidably connected with a scrap collecting box (22).
6. The slitting device for aluminum profile processing according to claim 1, characterized in that, The rear side of one end of the upper surface of the first mounting plate (8) is provided with a material discharge groove, and the lower side of the material collecting port (15) is provided with an aluminum profile collecting box.