Full-automatic digital cutting machine

By using a motor to drive a movable plate to move the scanning head, the problem of the scanning head being unable to move was solved, enabling clear scanning of the edges of large templates and improving cutting accuracy.

CN224266357UActive Publication Date: 2026-05-22JIANGSU MAOLONG MACHINERY MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU MAOLONG MACHINERY MFG
Filing Date
2025-03-17
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

When scanning large templates, the scanning head of the existing fully automatic cutting machine cannot move, resulting in the corners not being recorded or becoming blurry, which affects the cutting accuracy.

Method used

The design employs a motor-driven movable plate and scanning head movement. Through the connection of movable plate one and movable plate two, the reciprocating motion of the scanning head is realized, expanding the scanning range and reducing edge scanning omissions.

Benefits of technology

The scanning area of ​​the scanning head has been increased to ensure clear scanning of the edges of large templates, reduce the impact on subsequent cutting operations, and improve cutting accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of cutting, and particularly relates to a full-automatic digital cutting machine which comprises a machine table body, two second supporting plates are fixedly connected to the outer side wall of the machine table body, rails are fixedly connected to the tops of the two second supporting plates, and fixing plates are fixedly connected to the left side wall and the right side wall of the top of each second supporting plate. A first limiting rod is fixedly connected to the inner side wall of the fixing plate, a first supporting plate is slidably connected to the outer side wall of the rail, a first sliding opening is formed in the first supporting plate, the first supporting plate is in sliding contact with the outer side wall of the first limiting rod through the first sliding opening, and a connecting plate and a second limiting rod are fixedly connected to the inner side wall of the first supporting plate. The first movable plate is driven by the motor to rotate, and the second movable plate and the scanning head are driven to move when the first movable plate rotates, so that the scanning area of the scanning head can be increased, the edge of a large template can be scanned more finely, and the influence on subsequent cutting operation is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of cutting technology, and in particular to a fully automatic digital cutting machine. Background Technology

[0002] Cutting machines are industrial equipment used to cut various materials. They are widely used in industries such as clothing, leather, textiles, and automotive interiors. They can accurately cut different types of fabrics, leather, foam, paper, and other materials according to requirements.

[0003] Currently, fully automatic cutting machines require scanning the cutting template before cutting and then copying it. However, existing scanners require moving the entire scanner during scanning, and the scanning head cannot be moved. If the cutting template is large, it will cause the edges and corners to be unable to be recorded or to be blurry, affecting the cutting process.

[0004] To address the above issues, we propose a fully automated digital cutting machine. Utility Model Content

[0005] The purpose of this utility model is to solve the problems in the background art by proposing a fully automatic digital cutting machine.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a fully automatic digital cutting machine, comprising a machine body, two support plates II fixedly connected to the outer side wall of the machine body, a track fixedly connected to the top of each of the two support plates II, and a fixing plate fixedly connected to the left and right side walls of the top of each of the two support plates II, a limit rod I fixedly connected to the inner side wall of the fixing plate, a support plate I slidably connected to the outer side wall of the track, a sliding opening I provided on the support plate I, the support plate I slidably contacting the outer side wall of the limit rod I through the sliding opening I, a connecting plate and a limit rod II fixedly connected to the inner side wall of the support plate I, a cutting drive end fixedly connected to the bottom of the connecting plate, and a sweeping mechanism provided on the outer side of the limit rod II.

[0007] In the aforementioned fully automatic digital cutting machine, the scanning mechanism includes a scanning head. The top of the scanning head is provided with a sliding port two. The scanning head slides in contact with the outer wall of the limiting rod two through the sliding port two. A motor is fixedly connected to the top of the connecting plate. A movable plate one is fixedly connected to the drive end of the motor. A movable plate two is rotatably connected to the outer wall of the movable plate one. The outer wall of the movable plate two is rotatably connected to the outer wall of the scanning head.

[0008] In the aforementioned fully automatic digital cutting machine, a support frame is fixedly connected to the left side wall of the machine body. The top of the support frame is provided with a sliding groove, and a telescopic plate is slidably connected in the sliding groove. A control end is fixedly connected to the top of the telescopic plate. The support frame is provided with multiple screw holes one, and the outer side of the telescopic plate is provided with multiple screw holes two. The screw holes one are connected to the screw holes two through screws.

[0009] In the aforementioned fully automatic digital cutting machine, the two support plates are arranged on the left and right sides of the machine body, and the limiting rod is arranged on the rear side of the connecting plate.

[0010] In the aforementioned fully automatic digital cutting machine, multiple support legs are fixedly connected to the bottom of the machine body, and the multiple support legs are evenly arranged at the bottom of the machine body.

[0011] In the aforementioned fully automatic digital cutting machine, multiple screw holes are evenly arranged on the outer side of the support frame, and multiple screw holes are evenly arranged on the outer side of the telescopic plate. The diameters of multiple screw holes are equal, and the diameter of the screw is equal to the diameters of screw holes.

[0012] Compared with existing technologies, the advantages of this utility model are:

[0013] This invention uses a motor to drive a movable plate to rotate. When the movable plate rotates, it drives a second movable plate and a scanning head to move. This increases the scanning area of ​​the scanning head and allows for more detailed scanning of the edges of large templates, reducing the impact on subsequent cutting operations. Attached Figure Description

[0014] Figure 1 This is a side view of the fully automatic digital cutting machine proposed in this utility model;

[0015] Figure 2 This is a top view of the fully automatic digital cutting machine proposed in this utility model;

[0016] Figure 3 This is a perspective view of the fully automatic digital cutting machine proposed in this utility model.

[0017] In the diagram: 1. Machine body, 2. Legs, 3. Support frame, 4. Telescopic plate, 5. Screw hole one, 6. Screw hole two, 7. Control end, 8. Screw, 9. Support plate one, 10. Cutting drive end, 11. Support plate two, 12. Fixing plate, 13. Limiting rod one, 14. Connecting plate, 15. Limiting rod two, 16. Scanning head, 17. Motor, 18. Movable plate one, 19. Movable plate two, 20. Track. Detailed Implementation

[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0019] Reference Figures 1-3 The fully automatic digital cutting machine includes a machine body 1. Two support plates 11 are fixedly connected to the outer wall of the machine body 1. A track 20 is fixedly connected to the top of each support plate 11. Fixing plates 12 are fixedly connected to the left and right side walls of the top of each support plate 11. A limit rod 13 is fixedly connected to the inner wall of the fixing plate 12. A support plate 9 is slidably connected to the outer wall of the track 20. The support plate 9 has a sliding opening, through which it slides in contact with the outer wall of the limit rod 13. A connecting plate 14 and a limit rod 15 are fixedly connected to the inner wall of the support plate 9. The bottom of the connecting plate 14 is fixedly connected to the cutting drive end 10. A scanning mechanism is provided on the outer side of the limiting rod 15. The scanning mechanism includes a scanning head 16, the top of which has a sliding port 2. The scanning head 16 slides in contact with the outer wall of the limiting rod 15 through the sliding port 2. A motor 17 is fixedly connected to the top of the connecting plate 14. A movable plate 18 is fixedly connected to the drive end of the motor 17. A movable plate 19 is rotatably connected to the outer wall of the movable plate 18. The outer wall of the movable plate 19 is rotatably connected to the outer wall of the scanning head 16. Two support plates 11 are set on the left and right sides of the machine body 1. The limiting rod 1... 5 is set on the rear side of the connecting plate 14. Multiple support legs 2 are fixedly connected to the bottom of the machine body 1. The multiple support legs 2 are evenly arranged at the bottom of the machine body 1. The cutting drive end 10 is used for cutting operations. The multiple support legs 2 are used to increase the friction between the machine body 1 and the ground. All drive devices will vibrate when working. Increasing the friction with the ground can improve the stability of the equipment. When scanning is required, if the template is large, the motor 17 drives the movable plate 18 to rotate. When the movable plate 18 rotates, it will drive the movable plate 2 19 and the scanning head 16 to move. When the connection of 19 moves to the left, the second movable plate 19 will drive the scanning head 16 to move to the left. When the connection of the first movable plate 18 and the second movable plate 19 moves to the right, the second movable plate 19 will drive the scanning head 16 to move to the right, thus completing the reciprocating motion. This can increase the scanning area of ​​the scanning head 16, allowing for more detailed scanning of the edge of the large template and reducing the impact on subsequent cutting operations. The cutting position of the cutting drive end 10 can be changed by moving the first support plate 9. The first limiting rod 13 and the second limiting rod 15 limit the first support plate 9 and the scanning head 16 respectively, which can also improve the smoothness of movement.

[0020] A support frame 3 is fixedly connected to the left side wall of the machine body 1. A sliding groove is provided on the top of the support frame 3, and a telescopic plate 4 is slidably connected within the sliding groove. A control terminal 7 is fixedly connected to the top of the telescopic plate 4. The support frame 3 has multiple screw holes 5, and the outer side of the telescopic plate 4 has multiple screw holes 6. Screw holes 5 are connected to screw holes 6 via screws 8. The screw holes 5 are evenly distributed on the outer side of the support frame 3, and the screw holes 6 are evenly distributed on the outer side of the telescopic plate 4. The diameters of the screw holes 5 and 6 are all equal, and the diameter of the screw 8 is equal to the diameters of the screw holes 5 and 6. The control terminal 7... The output terminal (control terminal 7 and cutting drive terminal 10 are existing technologies and will not be described in detail here) is used to control the machine body 1, motor 17, and cutting drive terminal 10. The height of the control terminal 7 can be adjusted by pulling the telescopic plate 4. When the height is moved to a suitable height, the screw 8 is rotated to make it contact the inner side of screw hole 1 5 and screw hole 2 6. This fixes the position of the telescopic plate 4, thereby fixing the position of the control terminal 7. This allows the user to adjust the height according to their own height, making the user more comfortable when using the control terminal 7.

[0021] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A fully automatic digital cutting machine, comprising a machine body (1), characterized in that, Two support plates (11) are fixedly connected to the outer side wall of the machine body (1). The top of each support plate (11) is fixedly connected to a track (20). The top left and right side walls of each support plate (11) are fixedly connected to a fixing plate (12). The inner side wall of the fixing plate (12) is fixedly connected to a limiting rod (13). The outer side wall of the track (20) is slidably connected to a support plate (9). The support plate (9) is provided with a sliding opening. The support plate (9) slides in contact with the outer side wall of the limiting rod (13) through the sliding opening. The inner side wall of the support plate (9) is fixedly connected to a connecting plate (14) and a limiting rod (15). The bottom of the connecting plate (14) is fixedly connected to a cutting drive end (10). The outer side of the limiting rod (15) is provided with a sweeping mechanism.

2. The fully automatic digital cutting machine according to claim 1, characterized in that, The scanning mechanism includes a scanning head (16), the top of which is provided with a sliding port II. The scanning head (16) slides in contact with the outer wall of the limiting rod II (15) through the sliding port II. A motor (17) is fixedly connected to the top of the connecting plate (14). A movable plate I (18) is fixedly connected to the driving end of the motor (17). A movable plate II (19) is rotatably connected to the outer wall of the movable plate I (18). The outer wall of the movable plate II (19) is rotatably connected to the outer wall of the scanning head (16).

3. The fully automatic digital cutting machine according to claim 1, characterized in that, A support frame (3) is fixedly connected to the left side wall of the machine body (1). The top of the support frame (3) is provided with a sliding groove. A telescopic plate (4) is slidably connected in the sliding groove. A control end (7) is fixedly connected to the top of the telescopic plate (4). The support frame (3) is provided with multiple screw holes (5). The outer side of the telescopic plate (4) is provided with multiple screw holes (6). The screw holes (5) are connected to the screw holes (6) through screws (8).

4. The fully automatic digital cutting machine according to claim 1, characterized in that, The two support plates (11) are arranged on the left and right sides of the machine body (1), and the limiting rod (15) is arranged on the rear side of the connecting plate (14).

5. The fully automatic digital cutting machine according to claim 1, characterized in that, The bottom of the machine body (1) is fixedly connected to multiple support legs (2), and the multiple support legs (2) are evenly arranged at the bottom of the machine body (1).

6. The fully automatic digital cutting machine according to claim 3, characterized in that, Multiple screw holes one (5) are evenly arranged on the outside of the support frame (3), and multiple screw holes two (6) are evenly arranged on the outside of the telescopic plate (4). The diameters of multiple screw holes one (5) and screw holes two (6) are all equal, and the diameter of the screw (8) is equal to the diameters of screw holes one (5) and screw holes two (6).