Intelligent full-automatic aluminum material cutting equipment

Through the design of the feed adjustment mechanism and folding transmission arm, the saw blade can move in any direction and transmit power, which solves the problem of limited moving range of the circular saw, improves the applicability and efficiency of aluminum cutting, and reduces energy consumption.

CN120644723AActive Publication Date: 2025-09-16GD JINMING IND ALUMINIUM LTD CO
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Patent Information

Application Number
CN202511085780.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2025-09-16
Estimated Expiration
2045-08-04

AI Technical Summary

Technical Problem

When cutting aluminum materials, the existing circular saw machine has a limited range of movement of the saw blade, which makes it difficult to meet the requirements of multi-directional and multi-position cutting. In addition, the high-power main motor increases the energy consumption and load of the equipment.

Method used

A feed adjustment mechanism consisting of a slide, a first drive mechanism, a second drive mechanism and a lifting seat is adopted, combined with a circular saw device and a folding transmission arm to achieve arbitrary direction movement and power transmission of the saw blade, preventing the main motor from moving with the saw blade.

Benefits of technology

The freedom of the saw blade's moving trajectory is improved, making it suitable for cutting large-size workpieces, reducing equipment energy consumption, and improving processing efficiency and flexibility.

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Abstract

The invention relates to the technical field of cutting equipment, and particularly discloses intelligent full-automatic aluminum material cutting equipment which comprises a machine body, a control system, a feeding adjusting mechanism, a circular ring saw device and a driving system. The circular ring saw device is composed of a saw shell, a rotating ring body, a saw blade and a driving gear, the saw blade is in a circular ring shape, and the circular ring saw device is supported by a feeding adjusting mechanism and can move in a working plane; the driving system comprises a main motor and a folding transmission arm, and the main motor is installed on the machine body and provides power for the circular ring saw device through the folding transmission arm. When the intelligent full-automatic aluminum material cutting equipment works, the saw blade track freedom degree is high, the applicable working condition is wide, and due to the fact that a workpiece does not need to be rotationally adjusted, the machining efficiency can be remarkably improved; cutting can be carried out in a mode of rotating around the workpiece, so that the cutting device is suitable for cutting operation of the large-size workpiece; the main motor does not need to move along with the circular ring saw device, the moving flexibility of the circular ring saw device is improved, and operation energy consumption is remarkably reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of cutting equipment, and in particular to an intelligent fully automatic aluminum material cutting equipment. Background Art

[0002] Circular saws are widely used in aluminum cutting, but they have certain defects, which bring certain inconveniences to production. The saw blade of a circular saw is disc-shaped and its center is fixed to the main shaft. During operation, the main shaft and the workpiece easily form a spatial obstacle, resulting in a limited range of movement of the saw blade and a low degree of freedom of movement trajectory, which makes it difficult to meet the processing requirements of multi-directional and multi-position cutting of the workpiece. When cutting workpieces such as pipes and profiles, the saw blade cannot adjust its position around the workpiece and can only cut the workpiece by moving in a single direction. This method can only cut small-sized workpieces and is not suitable for large-sized workpieces. Circular saws usually require a high-power main motor to provide power. The main motor generally moves together with the saw blade, which increases the load on the feed mechanism, increases the energy consumption of the equipment, and reduces the movement flexibility of the saw blade. Summary of the Invention

[0003] In order to solve the above-mentioned deficiencies in the prior art, the present invention provides an intelligent fully automatic aluminum cutting equipment with a high degree of freedom in the movement trajectory of the saw blade, which can cut from any direction around the workpiece and has extremely high applicability to working conditions and workpiece sizes.

[0004] In order to achieve the above technical objectives, the present invention adopts the following technical solutions: An intelligent fully automatic aluminum cutting device, comprising a machine body, a control system, a feed adjustment mechanism, a circular saw device and a drive system; The feed adjustment mechanism includes a slide, a first drive mechanism, a second drive mechanism and a lifting seat; the slide is slidably connected to the machine body and is driven by the first drive mechanism to move horizontally; the second drive mechanism and the lifting seat are supported by the slide, and the lifting seat is driven by the second drive mechanism to move vertically; The circular saw device comprises a saw housing, a swivel body, a saw blade and a driving gear; the saw housing is supported by a lifting seat, a circular hole is formed in the saw housing, and a swivel body is mounted in the circular hole to rotate with the swivel body; the swivel body is provided with an outer toothed ring portion; the saw blade is annular, the inner edge of the circumference is a cutting portion, and the outer edge of the circumference is fixedly connected to the swivel body; the driving gear is mounted in the saw housing and meshes with the outer toothed ring portion; The drive system includes a main motor and a folding transmission arm. The main motor is installed on the machine body. The folding transmission arm is composed of several arm sections that are connected in sequence through a hinge shaft. One end of the folding transmission arm is connected to the machine body through a first rotating shaft, and the other end is connected to the saw shell through a second rotating shaft. Transmission wheels are installed on the first rotating shaft, the second rotating shaft and the hinge shaft, and adjacent transmission wheels are connected through flexible parts. The first rotating shaft is connected to the main motor, and the second rotating shaft is connected to the driving gear.

[0005] In a preferred embodiment, the machine body is composed of a base, two columns and a crossbeam, and is a gantry structure; a slide is provided along the length of the crossbeam; the slide is supported by the crossbeam and slides with the slide.

[0006] In a preferred embodiment, the second driving mechanism includes two linear driving mechanisms installed on the slide and arranged in parallel; the lifting seat is located directly below the slide and supported by the two linear driving mechanisms.

[0007] In a preferred embodiment, the arm section of the folding transmission arm adopts a shell-like structure, and the transmission wheel and the flexible member are located in the inner cavity of the folding transmission arm; the flexible member is a transmission belt, and the transmission wheel is a pulley; or, the flexible member is a transmission chain, and the transmission wheel is a sprocket.

[0008] In a preferred embodiment, the saw housing includes a circular ring, a gear seat is provided on one side of the circular ring, the rotating ring is placed in the circular ring, and the driving gear is installed in the gear seat; a detachable cover is provided at one end of the saw housing.

[0009] In a preferred embodiment, a detachable pressing ring is provided on one side of the rotating ring body, and the outer circular edge of the saw blade is clamped and fixed by the rotating ring body and the pressing ring.

[0010] In a preferred embodiment, a plurality of fins located on both sides of the saw blade are fixed to the rotating ring body, and the fins located on the same side of the saw blade are distributed around the saw blade at equal angles.

[0011] In a preferred embodiment, the intelligent fully automatic aluminum cutting equipment further comprises a feeding device located on the feeding side of the circular saw device, the feeding device comprising a support platform, a plurality of parallel guide rollers being provided on the support platform, some of the guide rollers being transmission-connected to a driving device; a plurality of clamping devices being fixed on the support platform, each clamping device comprising two clamping arms capable of approaching and opening; Furthermore, the intelligent fully automatic aluminum cutting equipment also includes a discharge device; the discharge device has the same structure as the feeding device and is placed on the discharge side of the circular saw device.

[0012] In a preferred embodiment, the intelligent fully automatic aluminum cutting equipment also includes an anti-collision mechanism, which includes an anti-collision ring, a support arm and a parking switch; the support arm is rotatably connected to the machine body and an elastic member is provided between the two, and the inner diameter of the anti-collision ring is not larger than the inner diameter of the saw blade; when the support arm is in the initial position, it does not contact the parking switch, and at this time the central axes of the anti-collision ring and the saw blade coincide; when the support arm deviates toward the circular saw device, it will touch the parking switch, causing the equipment to enter a parking state.

[0013] In a preferred embodiment, two dust suction rings are fixed on the saw shell, and the two dust suction rings are respectively located on both sides of the saw blade; the interior of the dust suction ring is hollow, and suction holes are evenly distributed on the side wall facing the center of the circle; the two dust suction rings are connected to a negative pressure telescopic tube.

[0014] Compared with the existing technology, the intelligent fully automatic aluminum cutting equipment in the present invention has the following beneficial technical effects: 1. When this intelligent fully automatic aluminum cutting equipment is working, the workpiece is located in the inner hole of the saw blade, and the saw blade can move in any direction to cut the corresponding position of the workpiece. The saw blade trajectory has a high degree of freedom and is applicable to a wide range of working conditions. Moreover, since there is no need to rotate and adjust the workpiece, the processing efficiency can be significantly improved.

[0015] 2. This intelligent fully automatic aluminum cutting equipment avoids the spatial obstacle problem between the spindle and the workpiece. The saw blade movement trajectory can form a closed loop around the workpiece, so it can cut by rotating around the workpiece, which is suitable for cutting operations on large-size workpieces.

[0016] 3. The main motor in this intelligent fully automatic aluminum cutting equipment transmits power to the circular saw device through a folding transmission arm, which prevents the main motor from moving with the circular saw device, improves the movement flexibility of the circular saw device, reduces the workload of the feed adjustment mechanism, and significantly reduces operating energy consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below. Obviously, the drawings in the following description only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0018] Figure 1 This is a structural diagram of the intelligent fully automatic aluminum cutting equipment in Example 1.

[0019] Figure 2 This is a schematic diagram of the structure of the partially cut-away intelligent fully automatic aluminum cutting equipment in Example 1.

[0020] Figure 3 This is a schematic diagram of the parts explosion of the circular saw device in Example 1.

[0021] Figure 4 This is one of the structural schematic diagrams of the circular saw device after partial cross-section in Example 1.

[0022] Figure 5 This is the second structural diagram of the circular saw device in Example 1 after partial cutaway.

[0023] Figure 6 This is a schematic diagram of the structure of the rotating ring body after partial cross-section in Example 1.

[0024] Figure 7 Schematic diagram of the coordination state between the circular saw device and the folding transmission arm when moving in Example 1.

[0025] Figure 8 Schematic diagram of the transmission status between the main motor, folding transmission arm and circular saw device in Example 1.

[0026] Figure 9 This is a schematic diagram of the structure in which fins are provided on the rotating ring body in Example 1.

[0027] Figure 10 This is a structural diagram of the intelligent fully automatic aluminum cutting equipment in Example 2.

[0028] Figure 11 This is a schematic structural diagram of the feeding device in Example 2.

[0029] Figure 12 This is a structural diagram of the intelligent fully automatic aluminum cutting equipment in Example 3.

[0030] Figure 13 This is a schematic diagram of the coordinated structure of the support arm, parking switch and body in Example 3.

[0031] Figure 14 This is a schematic diagram of the structure of the intelligent fully automatic aluminum cutting equipment in Example 4.

[0032] In the figure, 1, base, 2, column, 3, cover, 4, rotating ring, 401, outer gear ring, 402, pressure ring, 403, fin, 5, saw blade, 6, saw shell, 601, placement seat, 602, circular hole, 603, circular ring, 604, gear seat, 7, lifting seat, 8, beam, 9, slide, 10, slide, 11, second drive mechanism, 12, first drive mechanism, 13, first rotating shaft, 14, arm section , 15. Hinge shaft, 16. Flexible part, 17. Second rotating shaft, 18. Transmission wheel, 19. Main motor, 20. Driving gear, 21. Feeding device, 211. Guide roller, 212. Driving device, 213. Clamping arm, 214. Support table, 22. Discharging device, 23. Anti-collision ring, 24. Support arm, 25. Parking switch, 26. Elastic part, 27. Dust suction ring, 28. Suction hole, 29. Negative pressure telescopic tube. DETAILED DESCRIPTION

[0033] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Example

[0034] See Figures 1-6 As shown, the present invention discloses an intelligent fully automatic aluminum cutting device, which is mainly composed of a body and a control system, a feed adjustment mechanism, a circular saw device and a drive system installed on the body; The machine body is composed of a base 1, two columns 2 and a crossbeam 8, which is a gantry structure used to provide installation space and support for other components; a slide 9 is provided along the length of the crossbeam 8; The feed adjustment mechanism includes a slide 10, a first drive mechanism 12, a second drive mechanism 11 and a lifting seat 7; the slide 10 is supported by a crossbeam 8 and slides with the slide 9; the first drive mechanism 12 is installed on the machine body and is a linear drive mechanism for driving the slide 10 to move along the slide 9. Based on the regulation of the control system, the first drive mechanism 12 can adjust the horizontal position of the slide 10; the second drive mechanism 11 and the lifting seat 7 are installed on the slide 10, and the second drive mechanism 11 is a linear drive mechanism for driving the lifting seat 7 to move up and down. Based on the regulation of the control system, the second drive mechanism 11 can adjust the vertical position of the lifting seat 7; based on the above design, with the cooperation of the control system, the first drive mechanism 12 and the second drive mechanism 11, the lifting seat 7 can move arbitrarily within a plane area; The circular saw device includes a saw housing 6, a rotating ring body 4, a saw blade 5 and a driving gear 20; the saw housing 6 is supported and fixed by a lifting seat 7, so that the circular saw device can move with the lifting seat 7 in a working plane, a circular hole 602 is provided in the saw housing 6, and a placement seat 601 is provided around the circular hole 602; the main structure of the rotating ring body 4 is annular, mounted on the placement seat 601 and the two rotate in conjunction; the rotating ring body 4 is provided with an outer gear ring portion 401, the outer gear ring The outer circumference of the portion 401 is uniformly distributed with teeth; the saw blade 5 is annular, and the inner edge of the circular circle is the cutting portion. According to actual cutting needs, corresponding saw teeth can be provided on the cutting portion; the outer edge of the circular circle of the saw blade 5 is fixedly connected to the rotating ring body 4. Under the drive of the rotating ring body 4, the saw blade 5 will rotate around its own central axis, and the central axis of the saw blade 5 is perpendicular to the working plane of the circular saw device; the driving gear 20 is rotatably connected to the saw housing 6 and meshes with the outer toothed ring portion 401 to drive the rotating ring body 4 to rotate; The drive system includes a main motor 19 and a folding transmission arm; the main motor 19 is mounted and fixed on the machine body; the folding transmission arm is composed of a plurality of arm sections 14 that are rotatably connected in sequence via a hinge shaft 15, one end of the folding transmission arm is rotatably connected to the machine body via a first rotating shaft 13, and the other end is rotatably connected to the saw shell 6 via a second rotating shaft 17, and the directions of the first rotating shaft 13, the second rotating shaft 17 and the hinge shaft 15 are consistent and perpendicular to the working plane of the circular saw device, thereby making it possible to Figure 7As shown, the folding transmission arm can generate corresponding folding and bending as the position of the circular saw device changes, thereby not restricting the movement of the circular saw device; the first rotating shaft 13, the second rotating shaft 17 and the hinge shaft 15 are all equipped with transmission wheels 18, and the adjacent transmission wheels 18 are connected by flexible members 16; the first rotating shaft 13 is connected by transmission to the main motor 19, and the second rotating shaft 17 is connected by transmission to the driving gear 20 in the circular saw device, thereby making it possible to Figure 8 As shown, the main motor 19 can provide the circular saw device with the power required for cutting operations through the folding transmission arm; since the transmission wheel 18 in the folding transmission arm is arranged at the joint, the relative positions of the two adjacent transmission wheels 18 are constant, so that the transmission function of the folding transmission arm is not affected by the folding and bending state.

[0035] When this intelligent fully automatic aluminum cutting equipment is working, the workpiece is fixed by a clamp and passed through the inner hole of the saw blade 5. The main motor 19 drives the saw blade 5 to rotate at high speed through the folding transmission arm. Under the control of the control system, the circular saw device can move in any direction to perform corresponding cutting operations on the workpiece.

[0036] The technical advantages of this intelligent fully automatic aluminum cutting equipment in actual use are mainly reflected in: 1. Improvement of working conditions applicability and processing efficiency.

[0037] When this intelligent fully automatic aluminum cutting equipment is working, the workpiece is located in the inner hole of the saw blade 5, and the saw blade 5 can move in any direction to cut the corresponding position of the workpiece. The trajectory of the saw blade 5 has a high degree of freedom and is applicable to a wide range of working conditions. For example, when cutting the local area around the aluminum profile, after the aluminum profile is fixed, the saw blade 5 can cut into the aluminum profile from any side to cut the corresponding wing plate, fin plate and other parts, and quickly complete the complex cutting operation. For example, when processing aluminum tube products such as air-cooling pipes, gas distribution pipes, water distribution pipes, and screen pipes, it is usually necessary to evenly cut slots around the aluminum tube. With the help of this device, the corresponding slots can be cut flexibly and automatically around the tube without the need to rotate and adjust the tube, which can significantly improve the processing efficiency.

[0038] 2. Suitable for cutting off large-size workpieces.

[0039] This intelligent fully automatic aluminum cutting equipment avoids the problem of spatial obstacles between the main shaft and the workpiece. The moving trajectory of the saw blade 5 can form a closed loop around the workpiece. Therefore, when cutting large-sized profiles and pipes, the saw blade 5 can cut by rotating around the workpiece, and finally close the cut and cut the workpiece. Cutting operations in this way can significantly increase the size of applicable workpieces.

[0040] 3. Low operating energy consumption.

[0041] The main motor 19 in this intelligent fully automatic aluminum cutting equipment transmits power to the circular saw device through a folding transmission arm. The main motor 19 is usually configured with a large power and is a bulky component, but the main motor does not need to move with the circular saw device, which improves the mobile flexibility of the circular saw device, reduces the workload of the feed adjustment mechanism, and significantly reduces operating energy consumption.

[0042] In a specific embodiment, the first driving mechanism 12 and the second driving mechanism 11 can be linear driving mechanisms such as air cylinders, oil cylinders, electric cylinders and linear motors; preferably, Figure 1 、 Figure 2 As shown, the second driving mechanism 11 includes two linear driving mechanisms installed on the slide 10, and the two linear driving mechanisms are arranged in parallel; the lifting seat 7 is located directly below the slide 10 and is supported by the two linear driving mechanisms.

[0043] See Figure 1 As shown in FIG. 2 , in this embodiment, the arm section 14 of the folding transmission arm adopts a shell-like structure, so that a closed or semi-closed inner cavity is formed inside the folding transmission arm for accommodating other components; the transmission wheel 18 and the flexible member 16 are located in the inner cavity of the folding transmission arm to improve operational stability and safety; in the selection of the flexible member 16, a transmission belt can be used, and correspondingly, the transmission wheel 18 is a pulley with a belt groove that cooperates with the transmission; a transmission chain can also be used, and correspondingly, the transmission wheel 18 is a sprocket with teeth that cooperate with the transmission chain.

[0044] See Figure 3-Figure 5 As shown, in this embodiment, the saw housing 6 includes a circular body 603, a gear seat 604 is provided on one side of the circular body 603, the rotating ring body 4 is placed in the circular body 603, and the driving gear 20 is installed in the gear seat 604; a removable cover plate 3 is provided at one end of the saw housing 6 to facilitate the assembly of the rotating ring body 4 and the driving gear 20 in the saw housing 6.

[0045] See Figure 6 As shown, in this embodiment, a detachable pressure ring 402 is provided on one side of the swivel body 4, and the two can be connected by bolts to facilitate disassembly. The outer circular edge of the saw blade 5 is clamped and fixed by the swivel body 4 and the pressure ring 402.

[0046] See Figure 9 As shown, in this embodiment, a plurality of fins 403 distributed on both sides of the saw blade 5 are fixed on the rotating ring body 4, and the fins 403 located on the same side of the saw blade 5 are distributed around the saw blade 5 at equal angles; when the rotating ring body 4 drives the saw blade 5 to rotate, the fins 403 can accelerate the flow of air around the saw blade 5, thereby improving the heat dissipation effect of the saw blade 5 and preventing the saw blade 5 from being too hot and affecting the working performance. Example

[0047] See Figure 10 、 Figure 11 As shown, in this embodiment, the intelligent fully automatic aluminum cutting equipment also includes a feeding device 21, which is placed on the feeding side of the circular saw device, and the feeding device 21 includes a support platform 214, on which are provided a number of guide rollers 211 which are parallel to each other and distributed in sequence along the axial direction of the rotating ring body 4, and the guide rollers 211 are used to provide support for the workpiece, and some of the guide rollers 211 are transmission-connected with the driving device 212 to drive the workpiece to move; a number of clamping devices which are distributed in sequence along the axial direction of the rotating ring body 4 are fixed on the support platform 214, and each clamping device includes two clamping arms 213 which can approach and open, and when the two clamping arms 213 approach, they can clamp the workpiece on the upper side of the guide roller 211, and when the two clamping arms 213 are opened, they can provide a limiting effect for the workpiece to prevent the workpiece from moving axially along the guide roller 211.

[0048] When cutting the workpiece, the workpiece is placed above the guide roller 211. The rotation of the guide roller 211 will drive the workpiece to move toward the circular saw device. During the above process, the clamping device is in an open state and will not hinder the movement of the workpiece. It can also provide a limiting effect for the workpiece and maintain the moving direction of the workpiece; after the workpiece passes through the inner hole of the saw blade 5 and reaches the expected position, the clamping device clamps the workpiece and fixes it, and the cutting operation can be performed.

[0049] Furthermore, the intelligent fully automatic aluminum cutting equipment also includes a discharging device 22, which has the same structure as the feeding device 21 and is placed on the discharging side of the circular saw device; the discharging device 22 has the same working principle as the feeding device 21. When the workpiece is cut, the discharging device 22 can provide support for the cut workpiece and drive the workpiece out of the circular saw device. Example

[0050] When the intelligent, fully automatic aluminum cutting equipment disclosed in the present invention is in operation, a workpiece passes through the inner hole of the saw blade 5. If the workpiece's dimensions are unclear or its outer contour is irregular, improper operation may cause the workpiece to move and come into abnormal contact with the saw blade 5. This can easily cause the saw blade 5 to break, damage the workpiece, or cause equipment failure. In serious cases, this can lead to a safety accident. To prevent this from happening, a corresponding safety mechanism is provided in this embodiment.

[0051] Specifically, such as Figure 12 、 Figure 13As shown, the intelligent fully automatic aluminum cutting equipment in the present invention also includes an anti-collision mechanism, which includes an anti-collision ring 23, a support arm 24 and a parking switch 25; the support arm 24 is rotatably connected to the body and an elastic member 26 is provided between the two, so that the support arm 24 can swing toward the direction of the circular saw device and can automatically reset to the initial position based on the elastic force of the elastic member 26, and the parking switch 25 is fixed to the body and is located on the rotation path of the support arm 24; the inner diameter of the anti-collision ring 23 is not larger than the inner diameter of the saw blade 5, and when the support arm 24 is in the initial position, it does not contact the parking switch 25, and at this time the central axes of the anti-collision ring 23 and the saw blade 5 coincide with each other; when the support arm 24 deviates toward the circular saw device, it will touch the parking switch 25, causing the equipment to enter a parking state.

[0052] Therefore, when the intelligent fully automatic aluminum cutting equipment is working, if the workpiece passes through the anti-collision ring 23 without hindrance, it means that the workpiece will not collide with the saw blade 5 at the initial position, and the intelligent fully automatic aluminum cutting equipment will operate normally; but if the workpiece moves toward the saw blade 5 and drives the anti-collision ring 23 to move, it means that there is a risk of collision between the workpiece and the saw blade 5. At this time, the anti-collision ring 23 will drive the support arm 24 to deflect, and the parking switch 25 will cut off the power to the entire equipment or the workpiece feeding unit, so that the workpiece stops moving, avoiding the occurrence of risks, thereby improving the safety of the equipment's operation.

[0053] In a specific implementation process, the parking switch 25 can be a commonly used touch switch such as a push switch, a travel switch, and a limit switch. Example

[0054] When aluminum is cut using cutting equipment, a large amount of metal dust is generated. Collecting this metal dust can reduce material waste and help reduce pollution. This embodiment provides a corresponding metal dust recovery mechanism.

[0055] Specifically, such as Figure 14 As shown, two dust suction rings 27 are fixed on the saw housing 6, and the two dust suction rings 27 are respectively located on both sides of the saw blade 5; the dust suction ring 27 is hollow inside, and suction holes 28 are evenly distributed on the side wall facing the center of the circle; the two dust suction rings 27 are connected to a negative pressure telescopic tube 29.

[0056] In actual use, the two dust collection rings 27 are connected to the negative pressure dust removal system via the negative pressure telescopic tube 29. Dust generated during the cutting process can enter the dust collection rings 27 along with the airflow, and ultimately enter the negative pressure dust removal system through the negative pressure telescopic tube 29 for recovery. During the metal dust recovery process, airflow is formed on both sides of the saw blade 5, achieving an air cooling effect, which helps to reduce the temperature of the saw blade 5 and ensure cutting performance.

[0057] Unless otherwise defined, the technical or scientific terms used in the present invention should have the usual meanings understood by people with ordinary skills in the field to which the present invention belongs. The "first", "second" and similar words used in the present invention do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, "include" or "comprise" and similar words mean that the elements or objects appearing before the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. "Connect" or "connected" and similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative position relationships. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.

Claims

1. An intelligent fully automatic aluminum cutting equipment, including a body and a control system, characterized in that: Also includes: A feed adjustment mechanism, comprising a slide, a first drive mechanism, a second drive mechanism and a lifting seat; The slide is driven by the first driving mechanism to move horizontally; The second driving mechanism and the lifting seat are supported by the slide, and the lifting seat is driven by the second driving mechanism to move vertically; The circular saw device comprises a saw housing, a swivel body, a saw blade and a drive gear; the saw housing is supported by a lifting seat, a circular hole is formed in the saw housing, and a swivel body is mounted in the circular hole for rotation; the swivel body is provided with an outer toothed ring portion; the saw blade is annular, and the outer edge of the swivel body is fixedly connected to the swivel body; the drive gear is meshed with the outer toothed ring portion; The drive system includes a main motor and a folding transmission arm. The main motor is installed on the machine body. The folding transmission arm is composed of several arm sections that are connected in sequence through a hinge shaft. One end of the folding transmission arm is connected to the machine body through a first rotating shaft, and the other end is connected to the saw shell through a second rotating shaft. Transmission wheels are installed on the first rotating shaft, the second rotating shaft and the hinge shaft, and adjacent transmission wheels are connected through flexible parts. The first rotating shaft is connected to the main motor, and the second rotating shaft is connected to the driving gear.

2. The intelligent fully automatic aluminum cutting equipment according to claim 1 is characterized in that: The machine body is composed of a base, two columns and a crossbeam, and is a gantry structure; a slide is provided along the length of the crossbeam; the slide is supported by the crossbeam and slidably cooperates with the slide.

3. The intelligent fully automatic aluminum cutting equipment according to claim 1 is characterized in that: The second driving mechanism includes two linear driving mechanisms installed on the slide and arranged in parallel; the lifting seat is located directly below the slide and is supported by the two linear driving mechanisms.

4. The intelligent fully automatic aluminum cutting equipment according to claim 1 is characterized in that: The arm section of the folding transmission arm adopts a shell-shaped structure, and the transmission wheel and the flexible member are located in the inner cavity of the folding transmission arm.

5. The intelligent fully automatic aluminum cutting equipment according to claim 1 is characterized in that: The flexible member is a transmission belt or a transmission chain.

6. The intelligent fully automatic aluminum cutting equipment according to claim 1 is characterized in that: The saw housing comprises a circular body, one side of which is provided with a gear seat, the rotating ring body is placed in the circular body, and the driving gear is installed in the gear seat; a detachable cover is provided at one end of the saw housing.

7. The intelligent fully automatic aluminum cutting equipment according to claim 1, characterized in that: A detachable pressing ring is provided on one side of the rotating ring body, and the outer circular edge of the saw blade is clamped and fixed by the rotating ring body and the pressing ring.

8. The intelligent fully automatic aluminum cutting equipment according to claim 1, characterized in that: The intelligent fully automatic aluminum cutting equipment also includes a feeding device located on the feeding side of the circular saw device, the feeding device includes a support platform, a plurality of parallel guide rollers are provided on the support platform, and some of the guide rollers are connected to the driving device; a plurality of clamping devices are fixed on the support platform, and each clamping device includes two clamping arms that can be approached and opened.

9. The intelligent fully automatic aluminum cutting equipment according to claim 8, characterized in that: The intelligent fully automatic aluminum material cutting equipment further comprises a discharging device; the discharging device has the same structure as the feeding device and is placed on the discharging side of the circular saw device.

10. The intelligent fully automatic aluminum cutting equipment according to claim 1, characterized in that: The intelligent fully automatic aluminum cutting equipment also includes an anti-collision mechanism, which includes an anti-collision ring, a support arm and a parking switch; the support arm is rotatably connected to the machine body and an elastic part is provided between the two, and the inner diameter of the anti-collision ring is not larger than the inner diameter of the saw blade; when the support arm is in the initial position, it does not contact the parking switch, and at this time the central axes of the anti-collision ring and the saw blade coincide; when the support arm deviates toward the circular saw device, it will touch the parking switch, causing the equipment to enter a parking state.

Citation Information

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