Blanking guide device of aluminum cutting machine

By designing a material feeding guide device for aluminum cutting machines, the problem of aluminum scattering after cutting was solved, enabling the orderly collection and efficient production of aluminum materials and improving the convenience of material management.

CN223789612UActive Publication Date: 2026-01-13LIAONING MEDICAL QI PRECISION CO LTD
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Patent Information

Application Number
CN202520240771.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-15
Publication Date
2026-01-13
Estimated Expiration
2035-02-15

AI Technical Summary

Technical Problem

Existing aluminum cutting machines lack a material guiding function, causing the cut aluminum segments to randomly scatter and accumulate under gravity, increasing the difficulty and workload of sorting and storing them, and affecting production efficiency and the convenience of material management.

Method used

A material feeding guide device for an aluminum cutting machine was designed, including a feeding guide groove, a feeding platform and a pushing unit. The pusher plate driven by the motor pushes small segments of aluminum material into the collection box in an orderly manner. The guide components and adjustment unit are set to ensure the moving direction and feeding angle of the pusher plate, so as to realize the orderly collection of aluminum material.

Benefits of technology

It enables the orderly collection of aluminum materials after cutting, reduces the difficulty of sorting and storage, improves production efficiency and the convenience of material management. The push plate can move back and forth to push the aluminum materials one by one, ensuring that small aluminum pieces enter the storage box.

✦ Generated by Eureka AI based on patent content.

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Abstract

A blanking guide device of an aluminum material cutting machine belongs to the technical field of aluminum material cutting and comprises a cutting machine body, a blanking guide groove is formed in the output end of the right side of the cutting machine body and inclines downwards from left to right, a baffle is obliquely arranged in the blanking guide groove, and the end of the left side of the baffle is connected with the front side of the inner wall of the blanking guide groove. The right end of the baffle is connected with the middle of the right side of the inner wall of the discharging guide groove, and a feeding platform is installed at the right end of the discharging guide groove. According to the aluminum material cutting device, the guiding function is achieved for cut aluminum material small sections, cut aluminum materials can be discharged, guided, pushed and collected, the cut aluminum materials can be collected in order, the problem that due to the complex aluminum material small sections, the arrangement and storage difficulty and workload are increased is solved, and the working efficiency is improved. And the production efficiency of aluminum material cutting and the convenience of material management are guaranteed, the push plate can move in a reciprocating mode, and the small aluminum material sections which are blanked one by one are pushed into the storage box one by one to be collected in order.
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Description

Technical Field

[0001] This utility model belongs to the field of aluminum cutting technology, specifically relating to a material feeding guide device for an aluminum cutting machine. Background Technology

[0002] Aluminum profiles are widely used in construction, machinery and other fields due to their lightweight and high strength. Since the specifications and functional requirements of the application sites vary, they need to be cut into sections. Precise cutting can adapt to different scenarios, ensure that the aluminum profiles are installed properly, maximize their performance advantages, and ensure the quality of the project and the normal operation of the equipment.

[0003] A related technology (publication number CN214722633U) discloses an aluminum material cutting and blanking device, including a blanking table, a conveying device, a support column, a base, and a first electric push rod. The blanking table has strip-shaped grooves on its front upper rear edge and rear upper front edge. The conveying device includes a conveyor belt, a drive wheel, a driven wheel, several rollers, and a stepper motor, and is positioned within the grooves of the blanking table. The base is located at the lower left of the blanking table. The support column has a quadrangular prism structure, and there are two columns, fixed to the left front corner and left rear corner of the base respectively. The top of the left column is rotatably connected to the front left end of the blanking table, and the top of the right column is rotatably connected to the rear left end of the blanking table. The bottom end of the first electric push rod is connected to the top side wall of the base via a hinge block, and its top end is connected to the bottom side wall of the blanking table via a hinge block. This utility model facilitates the blanking of aluminum materials with different structures.

[0004] Currently, aluminum materials are mostly cut into segments and then automatically discharged. However, this method lacks a guiding function, and the small segments of aluminum materials are randomly scattered and piled up under the influence of gravity, presenting a complicated state. This increases the difficulty and workload of sorting and storing the small segments of aluminum materials later, which seriously affects the production efficiency of aluminum material cutting and the convenience of material management. Utility Model Content

[0005] To address the shortcomings of existing aluminum cutting machines, which lack a material guiding function, resulting in small aluminum segments randomly scattering and piling up under gravity after cutting, creating a complex and unbalanced situation, and significantly increasing the difficulty and workload of subsequent sorting and storage, this invention provides a material guiding device for aluminum cutting machines. This device guides and collects the cut aluminum segments, ensuring orderly collection and avoiding the increased difficulty and workload associated with sorting and storing the misaligned segments. This guarantees both production efficiency and ease of material management. Furthermore, the pusher plate can reciprocate, pushing each cut aluminum segment individually into a collection box for orderly collection. The specific technical solution is as follows:

[0006] A material feeding guide device for an aluminum cutting machine includes a cutting machine body. A material feeding guide groove is provided at the output end on the right side of the cutting machine body. The material feeding guide groove is inclined downward from left to right. A baffle is inclinedly arranged inside the material feeding guide groove. The left end of the baffle is connected to the front side of the inner wall of the material feeding guide groove, and the right end of the baffle is connected to the middle right side of the inner wall of the material feeding guide groove. A feeding platform is installed at the right end of the material feeding guide groove. A clearance groove is opened on the front side wall of the feeding platform. A pushing unit is provided inside the feeding platform. The pushing unit includes a push plate that moves back and forth, and pushes the material falling from the material feeding guide groove to the rear side through the push plate.

[0007] In the above technical solution, the pushing unit includes a motor disposed at the bottom of the feeding platform. The output end of the motor is connected to a first drive rod. The first drive rod passes through the feeding platform upward and is mounted on one end of a second drive rod. The other end of the second drive rod is rotatably connected to a drive pin. A movable frame is slidably sleeved on the outside of the drive pin. A connecting block is installed on the rear side wall of the movable frame. The rear end of the connecting block is connected to the push plate.

[0008] In the above technical solution, the feeding platform is provided with a guide component for guiding the moving frame to move in the forward and backward directions;

[0009] The guiding component includes a blind groove formed on the right side of the inner wall of the feeding platform. A first limiting rod is installed in the blind groove. One end of the slider is slidably sleeved on the first limiting rod, and the other end of the slider is fixedly connected to the right side wall of the moving frame.

[0010] In the above technical solution, a feeding plate is rotatably installed on the rear side wall of the feeding platform via an adjustment unit;

[0011] The adjustment unit includes two mounting blocks fixedly installed on the rear side wall of the feeding platform. A first rotating rod is rotatably connected between the two mounting blocks, and the unloading plate is fixedly connected to the first rotating rod. A first gear is installed on the right end of the first rotating rod.

[0012] In the above technical solution, a positioning component for positioning the first gear is provided on the right side wall of the feeding platform;

[0013] The positioning component includes a second rotating rod rotatably connected to the right side wall of the feeding platform, and a second gear is mounted on the second rotating rod. The second gear meshes with the side wall of the first gear.

[0014] In the above technical solution, the positioning component further includes a limiting seat fixedly installed on the right side wall of the feeding platform. The limiting seat has a second limiting rod that slides through it from front to back. A spring is sleeved on the second limiting rod. The two ends of the spring are respectively connected to the limiting seat and the second limiting rod. A positioning block is installed on the end of the second limiting rod near the second gear. The positioning block is embedded in the side wall of the second gear.

[0015] In the above technical solution, the shape of the positioning block is adapted to the shape of the gap between adjacent teeth on the sidewall of the second gear.

[0016] In the above technical solution, a storage box is provided on the rear side of the feeding platform, and the unloading plate is rotated and placed inside the storage box.

[0017] The present invention provides a material feeding guide device for an aluminum cutting machine, which, compared with the prior art, has the following advantages:

[0018] I. Existing aluminum cutting machines lack a material guiding function, resulting in small aluminum segments randomly scattering and piling up under gravity after cutting, creating a complex and chaotic situation. This increases the difficulty and workload of subsequent sorting and storage, severely impacting the production efficiency and material management convenience of aluminum cutting. This invention provides a guiding function for the cut aluminum segments, guiding, pushing, and collecting them. This ensures orderly collection of the cut aluminum segments, avoiding the increased difficulty and workload of sorting and storing the complex and chaotic segments, and guaranteeing both production efficiency and material management convenience in aluminum cutting.

[0019] II. This utility model, through components such as a motor, a first drive rod, a second drive rod, a drive pin, and a moving frame, can drive a pusher plate to push the sliding aluminum segments backward, ensuring that the aluminum segments enter the storage box for orderly collection. After pushing the material, the pusher plate can automatically return to its original position in front, preparing for the next push of aluminum segments. In other words, this utility model can guide the unloading of aluminum segments, and the pusher plate can move back and forth, pushing the unloaded aluminum segments one by one into the storage box for orderly collection.

[0020] Third, this utility model is equipped with a guiding function for the movement of the moving frame, ensuring that the push plate always moves in the front and back direction and will not deviate during the movement.

[0021] IV. By setting up a feeding plate, this utility model can guide the small segments of aluminum material in the feeding platform, ensuring that all cut materials enter the storage box for collection.

[0022] V. By setting a first rotating rod, a first gear, a second rotating rod, and a second gear, this utility model can adjust the tilt angle of the feeding plate, thereby flexibly causing the feeding plate to rotate and be placed into or out of the inner cavity of the storage box, and can also adjust the feeding angle of the feeding plate.

[0023] In summary, this utility model has a guiding function for the cut aluminum segments, which can guide, push and collect the cut aluminum segments, so as to collect the cut aluminum segments in an orderly manner. This avoids the problem of increasing the difficulty and workload of sorting and storing the complex aluminum segments, and ensures the production efficiency of aluminum cutting and the convenience of material management. In addition, the push plate can move back and forth to push the cut aluminum segments one by one into the storage box for orderly collection. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the material feeding guide groove of this utility model;

[0025] Figure 2 This is a schematic diagram of the structure of the baffle of this utility model;

[0026] Figure 3 This is a schematic diagram of the material cutting plate of this utility model;

[0027] Figure 4 for Figure 3 Enlarged view of point A;

[0028] Figure 5 This is a schematic diagram of the structure of the motor of this utility model;

[0029] Figures 1 to 5In the middle, 1. Cutting machine body, 2. Material guide groove, 3. Baffle, 4. Feeding platform, 5. Clearance groove, 6. Motor, 7. First drive rod, 8. Second drive rod, 9. Drive pin, 10. Moving frame, 11. Blind groove, 12. First limit rod, 13. Slider, 14. Connecting block, 15. Push plate, 16. Material discharge plate, 17. Storage box, 18. Mounting block, 19. First rotating rod, 20. First gear, 21. Second rotating rod, 22. Second gear, 23. Limit seat, 24. Second limit rod, 25. Spring, 26. Positioning block. Detailed Implementation

[0030] The following are specific implementation cases and appendices. Figures 1 to 5 The present invention will be further described below, but the present invention is not limited to these embodiments.

[0031] See Figures 1 to 5 As shown, an aluminum cutting machine feeding guide device includes a cutting machine body 1. A feeding guide groove 2 is provided at the output end on the right side of the cutting machine body 1. The feeding guide groove 2 is inclined downward from left to right. A baffle 3 is inclinedly provided inside the feeding guide groove 2. The left end of the baffle 3 is connected to the front side of the inner wall of the feeding guide groove 2, and the right end of the baffle 3 is connected to the middle right side of the inner wall of the feeding guide groove 2. A feeding platform 4 is installed at the right end of the feeding guide groove 2. A clearance groove 5 is opened on the front side wall of the feeding platform 4. A pushing unit is provided inside the feeding platform 4. The pushing unit includes a push plate 15 that moves back and forth. The push plate 15 pushes the material falling from the feeding guide groove 2 to the rear side.

[0032] The cut aluminum segments are equipped with a guiding function, which can guide, push and collect the cut aluminum segments, so as to collect the cut aluminum segments in an orderly manner. This avoids the problem of increasing the difficulty and workload of sorting and storing the complex aluminum segments, and ensures the production efficiency of aluminum cutting and the convenience of material management.

[0033] For details, please refer to the main references. Figure 2 As shown, the pushing unit includes a motor 6 located at the bottom of the feeding platform 4. The output end of the motor 6 is connected to a first drive rod 7. The first drive rod 7 passes through the feeding platform 4 upward and is connected to one end of a second drive rod 8. The other end of the second drive rod 8 is rotatably connected to a drive pin 9. A movable frame 10 is slidably sleeved on the outside of the drive pin 9. A connecting block 14 is installed on the rear side wall of the movable frame 10. The rear end of the connecting block 14 is connected to the push plate 15.

[0034] Under the action of the activated motor 6, the first drive rod 7 and the second drive rod 8 are driven to rotate synchronously, so as to cause the drive pin 9 to move along the inner cavity of the moving frame 10. The drive pin 9 rotates circumferentially around the first drive rod 7 as the axis, so as to realize the repeated displacement of the moving frame 10 in the front and back directions. The moving frame 10 moving to the rear drives the connecting block 14 and the push plate 15 to move to the rear, which can push the small aluminum segments on the feeding platform 4 to the rear.

[0035] In addition, the feeding platform 4 is provided with a guide component for guiding the moving frame 10 to move in the front and back directions. The guide component includes a blind groove 11 opened on the right side of the inner wall of the feeding platform 4. A first limiting rod 12 is installed in the blind groove 11. One end of the slider 13 is slidably sleeved on the first limiting rod 12. The other end of the slider 13 is fixedly connected to the right side wall of the moving frame 10. When the moving frame 10 moves in the front and back directions, it can drive the slider 13 to move in the front and back directions along the first limiting rod 12, that is, to ensure that the moving frame 10 drives the push plate 15 to always move in the front and back directions without tilting.

[0036] Main references Figures 3 to 4 As shown, a feeding plate 16 is rotatably mounted on the rear side wall of the feeding platform 4 via an adjustment unit. The adjustment unit includes two mounting blocks 18 fixedly installed on the rear side wall of the feeding platform 4. A first rotating rod 19 is rotatably connected between the two mounting blocks 18, and the feeding plate 16 is fixedly connected to the first rotating rod 19. A first gear 20 is installed on the right end of the first rotating rod 19. By driving the first rotating rod 19 to rotate, the tilt angle of the feeding plate 16 can be adjusted. A storage box 17 is provided on the rear side of the feeding platform 4. The feeding plate 16 is rotatably placed in the inner cavity of the storage box 17. By setting the feeding plate 16, the small aluminum segments in the feeding platform 4 can be guided to ensure that all cut materials enter the storage box 17 for collection.

[0037] The right side wall of the feeding platform 4 is provided with a positioning component for positioning the first gear 20. The positioning component includes a second rotating rod 21 rotatably connected to the right side wall of the feeding platform 4. A second gear 22 is installed on the second rotating rod 21. The second gear 22 meshes with the side wall of the first gear 20. The first gear 20 can be rotated and adjusted through the second gear 22. The positioning component also includes a limiting seat 23 fixedly installed on the right side wall of the feeding platform 4. A second limiting rod 24 is slidably provided through the limiting seat 23 from front to back. A spring 25 is sleeved on the second limiting rod 24. The two ends of the spring 25 are respectively connected to the limiting seat 23 and the second limiting rod 24. A positioning block 26 is installed at the end of the second limiting rod 24 near the second gear 22. The positioning block 26 is embedded in the side wall of the second gear 22.

[0038] By setting the first rotating rod 19, the first gear 20, the second rotating rod 21, and the second gear 22, the tilt angle of the feeding plate 16 can be adjusted, thereby flexibly causing the feeding plate 16 to rotate and be placed into or out of the inner cavity of the storage box 17. The feeding angle of the feeding plate 16 can also be adjusted.

[0039] Moving the second limiting rod 24 forward causes the positioning block 26 to disengage from the inner cavity of the second gear 22 at the corresponding position. At this time, the second gear 22 is disengaged, and the spring 25 is in a forced tension state. By rotating the second rotating rod 21, the second gear 22 can be rotated, thereby causing the first gear 20 to rotate. This allows the first rotating rod 19 to drive the unloading plate 16 to adjust its tilt angle, causing the storage box 17 to be placed below the unloading plate 16 when it is facing upward. After the unloading plate 16 is placed in the inner cavity of the storage box 17, the tension on the second limiting rod 24 is removed. Under the elastic force of the spring 25, the positioning block 26 is inserted into the side wall of the second gear 22 to lock the position of the second gear 22, ensuring that the unloading plate 16 remains stable after adjustment, thus enabling the collection and guiding of subsequent small aluminum segments.

[0040] In order to ensure that the second gears 22 are stable and do not continue to rotate when the positioning block 26 is positioned between the two second gears 22, the shape of the positioning block 26 is adapted to the shape of the gap between adjacent teeth on the sidewall of the second gear 22.

[0041] It is worth noting that in this application, the main body 1 of the cutting machine is a commonly used aluminum cutting machine in the prior art, which can meet the requirements of cutting and processing aluminum materials. Its model is not limited or described in detail here. The cylinder used is a commonly used self-locking cylinder on the market, whose output end can stop at any position and lock. The motor 6 is a commonly used self-locking motor on the market with a lockable output end. When it stops, its output end can lock itself and will not rotate under external force. The motor 6 is also a commonly used forward and reverse motor on the market. Its output end can rotate in the forward or reverse direction according to the usage requirements. It can meet the above usage requirements. In addition, the frequency of the push plate 15's back-and-forth reciprocating movement can be preset and controlled by an existing controller. By setting the reciprocating frequency of the push plate 15 to match the feeding speed at the feeding guide groove 2, it is ensured that the push plate 15 completes one cycle of reciprocating movement to push one piece of material. It can meet the above usage requirements. The model of the above-mentioned existing components is not limited or described in detail here.

[0042] The working principle of the aluminum material cutting machine feeding guide device in this embodiment is as follows:

[0043] After being cut at the main body 1 of the cutting machine, the small aluminum segments are pushed to the unloading guide groove 2 by the aluminum body that moves continuously to the right. Under the guidance of the baffle 3, the small aluminum segments slide onto the feeding platform 4. Under the action of the motor 6, the first drive rod 7 and the second drive rod 8 are driven to rotate synchronously, so as to cause the drive pin 9 to move along the inner cavity of the moving frame 10. By rotating the drive pin 9 around the first drive rod 7 as the axis, the moving frame 10 is repeatedly displaced in the front and back directions. The moving frame 10 moving to the rear causes the connecting block 14 and the push plate 15 to move to the rear, which can push the small aluminum segments on the feeding platform 4 to the rear, so that the small aluminum segments enter the inner cavity of the storage box 17.

[0044] By adjusting the rotation angle of the feeding plate 16, the storage box 17 is accurately placed below the feeding plate 16. The second limiting rod 24 is moved forward, causing the positioning block 26 to disengage from the inner cavity of the second gear 22 at the corresponding position. At this time, the second gear 22 is disengaged, and the spring 25 is in a forced tension state. By rotating the second rotating rod 21, the second gear 22 can be rotated, thereby causing the first gear 20 to rotate. This allows the first rotating rod 19 to drive the feeding plate 16 to adjust its tilt angle, causing the storage box 17 to be placed below the feeding plate 16 when the feeding plate 16 is facing upward. After the feeding plate 16 is placed in the inner cavity of the storage box 17, the tension on the second limiting rod 24 is removed. Under the elastic force of the spring 25, the positioning block 26 is inserted into the side wall of the second gear 22 to lock the position of the second gear 22, ensuring that the feeding plate 16 remains stable after adjustment, thus achieving the guiding and collection of subsequent small aluminum material segments.

[0045] This invention features a guiding function for the cut aluminum segments, enabling the feeding, pushing, and collection of the cut aluminum material. This ensures the orderly collection of the cut aluminum material, avoiding the increased difficulty and workload of sorting and storing the complex aluminum segments. It also guarantees the production efficiency of aluminum cutting and the convenience of material management. Furthermore, the push plate 15 can move back and forth, pushing each cut aluminum segment one by one into the storage box 17 for orderly collection.

[0046] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. An aluminum material cutting machine blank guide device comprising a cutting machine main body (1), characterized in that: The cutting machine body (1) right side output end is provided with a discharging guide groove (2), the discharging guide groove (2) is inclined downward from left to right, the discharging guide groove (2) is inclinedly provided with a baffle (3), the baffle (3) left side end is connected with the inner wall front side of the discharging guide groove (2), the right side end of the baffle (3) is connected with the inner wall right side middle part of the discharging guide groove (2), the right side end of the discharging guide groove (2) is provided with a feeding platform (4), the front wall of the feeding platform (4) is provided with a recess (5), the feeding platform (4) is provided with a pushing unit, the pushing unit includes a push plate (15) reciprocatingly moving forward and backward, the material falling from the discharging guide groove (2) is pushed backward by the push plate (15).

2. The aluminum material cutting machine blank guide device according to claim 1, characterized in that: The pushing unit includes a motor (6) provided at the bottom end of the feeding platform (4), the output end of the motor (6) is connected with a first drive rod (7), the first drive rod (7) penetrates the feeding platform (4) upward and is connected with one end of a second drive rod (8), the other end of the second drive rod (8) is rotatably connected with a drive pin (9), the outer side of the drive pin (9) is slidably sleeved with a moving frame (10), the rear wall of the moving frame (10) is provided with a connecting block (14), and the rear end of the connecting block (14) is connected with the push plate (15).

3. The aluminum material cutting machine blank guide device according to claim 2, characterized in that: The feeding platform (4) is provided with a guide assembly for guiding the moving frame (10) to move forward and backward; The guide assembly includes a blind groove (11) formed in the right side inner wall of the feeding platform (4), the first limiting rod (12) is installed in the blind groove (11), one end of the sliding block (13) is slidably sleeved on the first limiting rod (12), and the other end of the sliding block (13) is fixedly connected with the right side wall of the moving frame (10).

4. The aluminum material cutting machine blank guide device according to claim 1, characterized in that: The rear wall of the feeding platform (4) is rotatably provided with a discharging plate (16) through an adjusting unit; The adjusting unit includes two mounting blocks (18) fixedly installed on the rear wall of the feeding platform (4), a first rotating rod (19) is rotatably connected between the two mounting blocks (18), the discharging plate (16) is fixedly connected with the first rotating rod (19), and a first gear (20) is installed on the right end of the first rotating rod (19).

5. The aluminum material cutting machine blank guide device according to claim 4, characterized in that: The right wall of the feeding platform (4) is provided with a positioning assembly for positioning the first gear (20); The positioning assembly includes a second rotating rod (21) rotatably connected with the right wall of the feeding platform (4), a second gear (22) is installed on the second rotating rod (21), and the second gear (22) is meshingly connected with the side wall of the first gear (20).

6. The aluminum material cutting machine blank guide device according to claim 5, characterized in that: The positioning assembly further comprises a limiting seat (23) fixedly installed on the right side wall of the feeding platform (4), the limiting seat (23) is provided with a second limiting rod (24) sliding through from front to back, a spring (25) is sleeved on the second limiting rod (24), the two ends of the spring (25) are connected with the limiting seat (23) and the second limiting rod (24) respectively, and a positioning block (26) is installed on one end of the second limiting rod (24) close to the second gear (22), and the positioning block (26) is embedded in the side wall of the second gear (22).

7. The aluminum material cutting machine blank guide device according to claim 6, characterized in that: The shape of the positioning block (26) is matched with the shape of the gap between the adjacent teeth of the side wall of the second gear (22).

8. The aluminum material cutting machine blank guide device according to claim 4, characterized in that: The rear side of the feeding platform (4) is provided with a storage box (17), and the blanking plate (16) is rotationally placed in the inner cavity of the storage box (17).