Automatic die-cutting machine with detection function
By designing the collection structure and motor drive system of the automatic die-cutting machine, the automatic replacement of the material collection box is realized, which solves the problem that existing die-cutting machines require manual monitoring and handling of full boxes of materials, improves collection efficiency and reduces the workload of operators.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-03-17
AI Technical Summary
Existing die-cutting machines require manual monitoring of the box collection after material handling, and the boxes must be moved immediately once full, increasing the workload of staff.
An automatic die-cutting machine with detection function was designed. Through the collection structure and the motor-driven connecting shaft system, the placement plate and collection box are automatically rotated to realize the automatic replacement of the material collection box and reduce manual intervention.
It improves material collection efficiency, reduces the workload of operators, and realizes automated operation without the need for real-time manual monitoring and handling of full boxes of materials.
Smart Images

Figure CN223998549U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of die-cutting machine technology, and in particular to an automatic die-cutting machine with detection function. Background Technology
[0002] Die-cutting machines, also known as die-cutting machines, cutting machines, or CNC punching machines, are mainly used for die-cutting (full cut, half cut), creasing, hot stamping, laminating, and automatic waste removal of various non-metallic materials, self-adhesive labels, EVA, double-sided tape, electronic products, and mobile phone pads. They utilize steel blades, metal molds, and steel wire (or templates carved from steel plates) to apply pressure through an imprinting plate, cutting printed materials or cardboard into specific shapes. They are essential equipment for post-printing packaging processing. Currently, existing die-cutting machines collect materials into boxes after processing. Once the boxes are full, they are removed to store the remaining materials. This collection process requires manual monitoring, and the boxes must be moved immediately after collection, increasing the workload for workers. Utility Model Content
[0003] The purpose of this invention is to provide an automatic die-cutting machine with detection function, in order to solve the problem mentioned in the background art that existing die-cutting machines collect materials after operation, and then remove the box after it is full to place the materials. During the collection process, manual monitoring of the collection situation is required, and the materials are immediately moved away after collection, which increases the workload of the staff.
[0004] To achieve the above objectives, this utility model provides the following technical solution: an automatic die-cutting machine with detection function, including a base plate, an adjustment structure provided on the base plate, and a collection structure provided on the base plate;
[0005] The collection structure includes an annular guide frame, a slider, a placement plate, a placement rack, a detector, a collection box, a connecting plate, a placement box, a first connecting shaft, a rotating plate, a second connecting shaft, a motor, a toggle plate, and a locking block. The annular guide frame is mounted on the base plate, the slider is movably mounted on the annular guide frame, the placement plate is mounted on the slider, the placement rack is mounted on the placement plate, the detector is mounted inside the placement rack, the collection box is disposed on the placement rack, the connecting plate is mounted on the annular guide frame, the placement box is mounted on the connecting plate, the first connecting shaft is movably mounted on the connecting plate and connected to the placement plate, the rotating plate is mounted on the end of the first connecting shaft away from the placement plate, the locking block is mounted on the rotating plate, the motor is mounted on the placement box, the second connecting shaft is movably mounted on the placement box and one end of the second connecting shaft penetrates the side wall of the placement box and is connected to the motor drive end, and the toggle plate is mounted on the end of the second connecting shaft away from the motor.
[0006] Preferably, the base plate is provided with fixed support feet, and the rotating plate is provided with a limiting shaft.
[0007] Preferably, there are several placement racks arranged circumferentially.
[0008] Preferably, the adjustment structure includes a conveyor belt, a support frame, a fixed frame, a first gear, a rotating shaft, a second gear, a forward and reverse threaded screw, a guide rod, a first limiting frame, a second limiting frame, a connecting frame, a hydraulic cylinder, and a processing frame. The conveyor belt is mounted on the base plate, the support frame is mounted on the side wall of the conveyor belt, the fixed frame is mounted on the support frame, the rotating shaft is movably mounted on the support frame with one end penetrating the side wall of the support frame, the forward and reverse threaded screw is movably mounted on the fixed frame, the second gear is mounted on the forward and reverse threaded screw and meshes with the first gear, the guide rod is disposed on the fixed frame, the first limiting frame is movably mounted on the forward and reverse threaded screw and is movably connected to the guide rod, the second limiting frame is movably mounted on the end of the forward and reverse threaded screw away from the first limiting frame and is movably connected to the guide rod, the connecting frame is mounted on the side wall of the conveyor belt, the hydraulic cylinder is mounted on the connecting frame with its driving end penetrating the side wall of the connecting frame, and the processing frame is mounted on the driving end of the hydraulic cylinder.
[0009] Preferably, one end of the rotating shaft is provided with a rotating handle, and the support frame is provided with reinforcing ribs.
[0010] Preferably, the motor is fixed to the placement box by bolts, and the slider is provided in pairs.
[0011] Preferably, the placement rack is adapted to the collection box, and there are several collection boxes.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: This automatic die-cutting machine with detection function, through the setting of the collection structure, the motor drives the second connecting shaft to rotate, the second connecting shaft drives the actuating plate to rotate, the actuating plate rotates and abuts against the locking block, the rotating plate rotates under the action of the locking block, the first connecting shaft rotates on the connecting plate under the action of the rotating plate, the placement plate follows the rotation of the first connecting shaft, the placement plate drives the collection box on the placement rack to rotate, and the empty collection box is moved into the position of the originally full collection box to continue the collection operation, which improves the collection efficiency and reduces the workload of the operator. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0014] Figure 2This is a three-dimensional structural schematic diagram of the present invention from another perspective;
[0015] Figure 3 This is a schematic diagram of the cooperation structure between the placement plate and the placement rack of this utility model;
[0016] Figure 4 This is a schematic diagram of the cooperation structure between the first connecting shaft and the rotating plate of this utility model;
[0017] In the diagram: 1. Base plate; 2. Adjustment structure; 201. Conveyor belt; 202. Support frame; 203. Fixing frame; 204. First gear; 205. Rotating shaft; 206. Second gear; 207. Positive and negative thread screw; 208. Guide rod; 209. First limiting frame; 210. Second limiting frame; 211. Connecting frame; 212. Hydraulic cylinder; 213. Processing frame; 3. Collection structure; 301. Annular guide frame; 302. Slider; 303. Placement plate; 304. Placement frame; 305. Detector; 306. Collection box; 307. Connecting plate; 308. Placement box; 309. First connecting shaft; 310. Rotating plate; 311. Limiting shaft; 312. Second connecting shaft; 313. Actuating plate; 314. Locking block; 315. Motor. 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. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0019] Please see Figure 1-4 This utility model provides a technical solution: an automatic die-cutting machine with detection function, including a base plate 1, an adjustment structure 2 and a collection structure 3 provided on the base plate 1;
[0020] The collecting structure 3 includes an annular guide frame 301, a slider 302, a placement plate 303, a placement rack 304, a detector 305, a collecting box 306, a connecting plate 307, a placement box 308, a first connecting shaft 309, a rotating plate 310, a second connecting shaft 312, a motor 315, a toggle plate 313, and a locking block 314. The annular guide frame 301 is mounted on the base plate 1, the slider 302 is movably mounted on the annular guide frame 301, the placement plate 303 is mounted on the slider 302, the placement rack 304 is mounted on the placement plate 303, and the detector 305 is mounted on the placement rack 306. Within 04, the collection box 306 is mounted on the placement frame 304, the connecting plate 307 is mounted on the annular guide frame 301, the placement box 308 is mounted on the connecting plate 307, the first connecting shaft 309 is movably mounted on the connecting plate 307 and is connected to the placement plate 303, the rotating plate 310 is mounted on the end of the first connecting shaft 309 away from the placement plate 303, the locking block 314 is mounted on the rotating plate 310, the motor 315 is mounted on the placement box 308, and the second connecting shaft 312 is movably mounted on the placement box 308 and... One end of the second connecting shaft 312 passes through the side wall of the placement box 308 and is connected to the drive end of the motor 315. The actuating plate 313 is installed at the end of the second connecting shaft 312 away from the motor 315. The placement rack 304 is provided with several units. The number of detectors 305 is the same as the number of placement racks 304. The number of collection boxes 306 is the same as the number of placement racks 304 and is evenly and movably disposed within the placement rack 304. The actuating plate 313 can abut against the locking block 314. After the material is processed, it falls into the collection box 306. When the collection box 306 is full, the detector 305 sends a signal, the motor 315 works, and the motor 315 drives the second connecting shaft 312 to rotate. The second connecting shaft 312 drives the actuating plate 313 to rotate. The actuating plate 313 rotates and abuts against the locking block 314. The rotating plate 310 rotates under the action of the locking block 314. The first connecting shaft 309 rotates on the connecting plate 307 under the action of the rotating plate 310. The placement plate 303 rotates with the first connecting shaft 309. The placement plate 303 drives the collection box 306 on the placement rack 304 to rotate, turning the empty collection box 306 into the position of the originally full collection box 306 to continue the collection operation. There is no need for constant manual monitoring, and the operator can do other things. At the same time, there is no need to immediately process the full collection box 306, which improves the collection efficiency.
[0021] Furthermore, the base plate 1 is provided with fixed feet, and several fixed feet are provided evenly on the lower wall of the base plate 1. Several feet facilitate the stable placement of the device. The rotating plate 310 is provided with a limiting shaft 311, which can abut against the actuating plate 313 to make the actuating plate 313 stable when rotating.
[0022] Furthermore, there are several placement racks 304 arranged circumferentially, which facilitates the placement of several placement boxes 308. The circumferentially arranged placement racks 304 can rotate with the placement plate 303 to collect the items.
[0023] Furthermore, the adjustment structure 2 includes a conveyor belt 201, a support frame 202, a fixing frame 203, a first gear 204, a rotating shaft 205, a second gear 206, a forward and reverse threaded screw 207, a guide rod 208, a first limiting frame 209, a second limiting frame 210, a connecting frame 211, a hydraulic cylinder 212, and a processing frame 213. The conveyor belt 201 is mounted on the base plate 1, the support frame 202 is mounted on the side wall of the conveyor belt 201, the fixing frame 203 is mounted on the support frame 202, and the rotating shaft 205 is movably mounted on the support frame 202. One end of the rotating shaft 205 passes through the side wall of the support frame 202. The threaded screw 207 is movably mounted on the fixed frame 203. The second gear 206 is mounted on the threaded screw 207 and meshes with the first gear 204. The guide rod 208 is provided on the fixed frame 203. The first limiting frame 209 is movably mounted on the threaded screw 207 and is movably connected to the guide rod 208. The second limiting frame 210 is movably mounted on the threaded screw 207 away from the first limiting frame 209. One end of the second limiting frame 210 is movably connected to the guide rod 208. The connecting frame 211 is installed on the side wall of the conveyor belt 201. The hydraulic cylinder 212 is installed on the connecting frame 211, and the driving end of the hydraulic cylinder 212 passes through the side wall of the connecting frame 211. The processing frame 213 is installed on the driving end of the hydraulic cylinder 212. The first limiting frame 209 and the second limiting frame 210 are in contact with the positive and negative threads of the positive and negative thread screw 207. The first limiting frame 209 and the second limiting frame 210 can move closer or further away simultaneously. The material is placed on the conveyor belt 201, and the rotating shaft 20 is rotated. 5. The rotating shaft 205 drives the first gear 204 to rotate. Under the action of the first gear 204, the second gear 206 drives the positive and negative thread screw 207 to rotate. At this time, the first limit frame 209 and the second limit frame 210 can slide on the guide rod 208. They can move closer or further away from the material in sync according to the size of the material, so as to avoid the material from shifting due to vibration during the conveying process and affecting subsequent operations. When the material moves to the bottom of the processing frame 213, the hydraulic cylinder 212 is driven. The hydraulic cylinder 212 drives the processing frame 213 to move to process the material. The processed material enters the collection box 306 for collection through the conveyor belt 201.
[0024] Furthermore, a rotating handle is provided at one end of the rotating shaft 205. The rotating handle is located at the end of the rotating shaft 205 away from the support frame 202. The rotating handle facilitates the rotation of the rotating shaft 205. The support frame 202 is provided with reinforcing ribs, which increase the strength of the support frame 202.
[0025] Furthermore, the motor 315 is fixed to the placement box 308 by bolts, and a pair of sliders 302 are provided. The motor 315 fixed by bolts is easy to install and remove on the placement box 308, and the pair of sliders 302 can make the rotation of the placement plate 303 more stable.
[0026] Furthermore, the placement rack 304 is adapted to the collection box 306, and there are several collection boxes 306. The adapted placement rack 304 can make the collection box 306 more stable when placed. Several collection boxes 306 are evenly arranged in several placement racks 304, and several collection boxes 306 improve the collection efficiency.
[0027] Working principle: When materials need to be processed, they are placed on the conveyor belt 201. The rotating shaft 205 drives the first gear 204 to rotate, and the second gear 206, under the action of the first gear 204, drives the positive and negative thread screw 207 to rotate. At this time, the first limit frame 209 and the second limit frame 210 can slide on the guide rod 208, moving synchronously closer or further away according to the size of the material, preventing the material from shifting due to vibration during conveying and affecting subsequent operations. When the material moves to below the processing frame 213, the hydraulic cylinder 212 is driven, causing the processing frame 213 to move and process the material. The processed material enters the collection box 306 via the conveyor belt 201 for collection. After the collection box 306 is full, the detector 3... A signal is sent at 05, and motor 315 starts working. Motor 315 drives the second connecting shaft 312 to rotate, and the second connecting shaft 312 drives the actuating plate 313 to rotate. The actuating plate 313 rotates and abuts against the locking block 314. The rotating plate 310 rotates under the action of the locking block 314. The first connecting shaft 309 rotates on the connecting plate 307 under the action of the rotating plate 310. The placement plate 303 rotates with the first connecting shaft 309. The placement plate 303 drives the collection box 306 on the placement rack 304 to rotate, turning the empty collection box 306 into the position of the previously full collection box 306 to continue the collection operation. There is no need for constant manual monitoring, and the operator can do other things. At the same time, there is no need to immediately process the full collection box 306, which improves the collection efficiency.
[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An automatic die-cutting machine with detection function, comprising a base plate (1), characterized in that: The bottom plate (1) is provided with an adjusting structure (2), and the bottom plate (1) is provided with a collecting structure (3); The collecting structure (3) comprises a ring-shaped guide frame (301), a sliding block (302), a placing plate (303), a placing frame (304), a detector (305), a collecting box (306), a connecting plate (307), a placing box (308), a first connecting shaft (309), a rotating plate (310), a second connecting shaft (312), a motor (315), a poking plate (313) and a clamping block (314), the ring-shaped guide frame (301) is installed on the bottom plate (1), the sliding block (302) is movably installed on the ring-shaped guide frame (301), the placing plate (303) is installed on the sliding block (302), the placing frame (304) is installed on the placing plate (303), the detector (305) is installed in the placing frame (304), the collecting box (306) is arranged on the placing frame (304), the connecting plate (307) is installed on the ring-shaped guide frame (301), the placing box (308) is installed on the connecting plate (307), the first connecting shaft (309) is movably installed on the connecting plate (307) and the first connecting shaft (309) is connected with the placing plate (303), the rotating plate (310) is installed at an end of the first connecting shaft (309) away from the placing plate (303), the clamping block (314) is installed on the rotating plate (310), the motor (315) is installed on the placing box (308), the second connecting shaft (312) is movably installed on the placing box (308) and one end of the second connecting shaft (312) penetrates through the side wall of the placing box (308) and is connected with the driving end of the motor (315), and the poking plate (313) is installed at an end of the second connecting shaft (312) away from the motor (315).
2. The automatic die cutting machine with detection function according to claim 1, characterized in that: The bottom plate (1) is provided with a fixed supporting leg, and the rotating plate (310) is provided with a limiting shaft (311).
3. The automatic die cutting machine with detection function according to claim 1, characterized in that: The placing frame (304) is provided with a plurality of placing frames (304), and the plurality of placing frames (304) are arranged in a circumferential direction.
4. The automatic die cutting machine with detection function according to claim 1, characterized in that: Said adjusting structure (2) includes a conveyor belt (201), a support frame (202), a fixed frame (203), a first gear (204), a rotating shaft (205), a second gear (206), a reversible screw rod (207), a guide rod (208), a first limiting frame (209), a second limiting frame (210), a connecting frame (211), a hydraulic cylinder (212) and a processing frame (213), the conveyor belt (201) is installed on the bottom plate (1), the support frame (202) is installed on the side wall surface of the conveyor belt (201), the fixed frame (203) is installed on the support frame (202), the rotating shaft (205) is movably installed on the support frame (202) and one end of the rotating shaft (205) penetrates through the side wall surface of the support frame (202), the reversible screw rod (207) is movably installed on the fixed frame (203), the second gear (206) is installed on the reversible screw rod (207) and the second gear (206) is engaged with the first gear (204), the guide rod (208) is arranged on the fixed frame (203), the first limiting frame (209) is movably installed on the reversible screw rod (207) and the first limiting frame (209) is movably connected with the guide rod (208), the second limiting frame (210) is movably installed on the reversible screw rod (207) away from the first limiting frame (209) and the second limiting frame (210) is movably connected with the guide rod (208), the connecting frame (211) is installed on the side wall surface of the conveyor belt (201), the hydraulic cylinder (212) is installed on the connecting frame (211) and the driving end of the hydraulic cylinder (212) penetrates through the side wall surface of the connecting frame (211), and the processing frame (213) is installed on the driving end of the hydraulic cylinder (212).
5. The automatic die cutting machine with detection function according to claim 4, characterized in that: One end of the rotating shaft (205) is provided with a rotating handle, and the support frame (202) is provided with a reinforcing rib.
6. The automatic die cutting machine with detection function according to claim 1, characterized in that: The motor (315) is fixed on the placing box (308) by bolts, and the sliding block (302) is provided with a pair.
7. The automatic die cutting machine with detection function according to claim 1, characterized in that: The placing frame (304) is matched with the collecting box (306), and the collecting box (306) is provided with a plurality of.