Slitting device for packaging carton production
By using electric telescopic rods and sensors to fix the carton in the cardboard cutting device, combined with precise cutting components, the problem of offset during the cardboard cutting process is solved, and efficient cardboard cutting and waste reduction is achieved.
Patent Information
- Application Number
- CN202421884260.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-06
AI Technical Summary
In the prior art, the cardboard is easily deviated during the cutting process, resulting in rough cutting surfaces and increased waste materials and increased production costs.
Using a slitting device including push assembly, body assembly and cutting assembly, the carton is fixed with an electric telescopic rod and connecting spring, and the position is identified in combination with a sensor and the threaded rod and cutting blade are driven by a rotating motor.
Effectively prevent cardboard offset, reduce waste generation, maintain the quality of the cutting surface, and clean the working environment.
Smart Images

Figure CN223045270U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of slitting devices for carton production, and particularly relates to a slitting device for packaging carton production. Background Art
[0002] After the cardboard is produced, it needs to be cut to meet the use of cartons of different specifications.
[0003] However, in the prior art, during the process of cutting the cardboard, when the cutting knife cuts the cardboard, the pressure on the cardboard will cause the cardboard to shift without external force pressing, and the shift of the cardboard will cause a rough surface on the cutting surface of the cardboard, and the shift of the cutting position will cause it to be unusable later, and further increase the generation of waste, resulting in waste of cardboard and increased production costs of enterprises. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the problems existing in the above-mentioned prior art, and to propose a slitting device for packaging carton production.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme: A slitting device for packaging carton production, including a pushing component, a main body component and a cutting component; the pushing component includes a cross plate, a plurality of discharge grooves are opened on one side of the cross plate, two baffles are installed on the top of the cross plate, two electric telescopic rods are arranged on one side of the two baffles, two connecting springs are installed on one side of the two baffles, an extrusion plate is installed on one side of the two electric telescopic rods, a protective soft pad is arranged on one side of the extrusion plate, and a control panel is arranged on one side of the two baffles; the main body component includes an operating table, two grooves are opened on one side of the operating table, a support frame is installed on one side of the operating table, a rotating motor is arranged inside the support frame, a threaded rod is installed at the output end of the rotating motor, a round rod is arranged inside the two grooves, a collection box is arranged at the bottom of the operating table, and a pull-out groove is arranged inside the collection box; the cutting component includes a support frame, two electric push rods are installed on the top of the support frame, a connecting plate is installed at the bottom of the two electric push rods, and a cutting blade is installed at the bottom of the connecting plate.
[0006] Preferably, the two connecting springs are sleeved and installed with the two electric telescopic rods, and the control panel is electrically connected to the two baffles.
[0007] Preferably, a sensor is arranged on one side of the extrusion plate, and the sensor is electrically connected to the control panel.
[0008] Preferably, the rotating motor is sleeved and connected to the support frame, the threaded rod is rotatably connected to the operating table, and moving blocks are arranged on the outer surfaces of the threaded rod and the round rod.
[0009] Preferably, the moving block is threadedly connected to the threaded rod, and the moving block is slidably connected to the round rod.
[0010] Preferably, the drawing slot is slidably connected to the collection box, and the support frame is fixedly installed with two moving blocks.
[0011] Preferably, a plurality of the discharge slots communicate with the inside of the collection box, and the operating table is fixedly installed with the cross plate.
[0012] Compared with the prior art, the advantages and positive effects of the present utility model are as follows:
[0013] 1. In the present utility model, two groups of electric telescopic rods and two groups of connecting springs are provided on one side of the cross plate. One side of the two groups of electric telescopic rods is connected to the extrusion plate. A protective soft pad is provided on one side of the extrusion plate, and a sensor is provided on one side of the extrusion plate. The sensor identifies the position of the carton to be sheared. The two groups of electric telescopic rods drive the extrusion plate to fix the carton, preventing the carton from shifting during the cutting process. The shift of the cardboard will cause the cutting surface of the cardboard to produce a rough surface, and the shift of the cutting position will cause it to be unusable subsequently, and further increase the generation of waste, resulting in waste of the cardboard. The waste chips generated during the cutting process will fall into the inside of the collection box from a plurality of discharge slots, avoiding the mess of the working environment.
[0014] 2. In the present utility model, two grooves are opened on one side of the operating table, and a threaded rod and a round rod are arranged inside the two grooves. The threaded rod is rotated by driving the motor. Moving blocks are arranged on the outer surfaces of the threaded rod and the round rod. Two electric push rods are installed on the top of the two moving blocks. The bottom of the support frame is provided with two electric push rods to move up and down to facilitate the cutting work of the cutting blade. The support frame can be driven by the rotating motor to move back and forth, facilitating the cutting blade to cut at a suitable position, and the cutting position is not limited. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic diagram of the overall structure of a slitting device for packaging carton production proposed by the present utility model;
[0016] Figure 2 is a schematic diagram of the structure of the pushing component of a slitting device for packaging carton production proposed by the present utility model;
[0017] Figure 3 is a schematic diagram of the structure of the main component of a slitting device for packaging carton production proposed by the present utility model;
[0018] Figure 4 is a schematic diagram of the structure of the cutting component of a slitting device for packaging carton production proposed by the present utility model.
[0019] Legend: 1. Pushing component; 101. Horizontal plate; 102. Discharge chute; 103. Baffle; 104. Electric telescopic rod; 105. Connecting spring; 106. Extrusion plate; 107. Control panel; 108. Sensor; 2. Main body component; 201. Operating table; 202. Groove; 203. Support frame; 204. Rotating motor; 205. Threaded rod; 206. Moving block; 207. Collection box; 208. Drawer slot; 3. Cutting component; 301. Fixed frame; 302. Electric push rod; 303. Connecting plate; 304. Cutting blade. Detailed implementation
[0020] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0021] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the present invention is not limited by the specific embodiments disclosed in the following specification.
[0022] Embodiment 1, as Figures 1 - 4 shown, the present invention provides a slitting device for the production of packaging cartons, including a pushing component 1, a main body component 2 and a cutting component 3; the pushing component 1 includes a horizontal plate 101, a plurality of discharge chutes 102 are opened on one side of the horizontal plate 101, two baffles 103 are installed on the top of the horizontal plate 101, two electric telescopic rods 104 are arranged on one side of the two baffles 103, two connecting springs 105 are installed on one side of the two baffles 103, two extrusion plates 106 are installed on one side of the two electric telescopic rods 104, a protective soft pad is arranged on one side of the extrusion plate 106, and a control panel 107 is arranged on one side of the two baffles 103; the main body component 2 includes an operating table 201, two grooves 202 are opened on one side of the operating table 201, a support frame 203 is installed on one side of the operating table 201, a rotating motor 204 is arranged inside the support frame 203, a threaded rod 205 is installed at the output end of the rotating motor 204, round rods are arranged inside the two grooves 202, a collection box 207 is arranged at the bottom of the operating table 201, and a drawer slot 208 is arranged inside the collection box 207; the cutting component 3 includes a fixed frame 301, two electric push rods 302 are installed on the top of the fixed frame 301, a connecting plate 303 is installed at the bottom of the two electric push rods 302, and a cutting blade 304 is installed at the bottom of the connecting plate 303.
[0023] The effects achieved by the entire Embodiment 1 are as follows: A plurality of discharge slots 102 are opened on one side of the cross plate 101. Two baffle plates 103 are installed on the top of the cross plate 101. Two electric telescopic rods 104 are arranged on one side of the two baffle plates 103. Two connecting springs 105 are installed on one side of the two baffle plates 103. An extrusion plate 106 is installed on one side of the two electric telescopic rods 104. A protective soft pad is arranged on one side of the extrusion plate 106. A control panel 107 is arranged on one side of the two baffle plates 103. Two grooves 202 are opened on one side of the operating table 201. A support frame 203 is installed on one side of the operating table 201. A rotating motor 204 is arranged inside the support frame 203. A threaded rod 205 is installed at the output end of the rotating motor 204. Round rods are arranged inside the two grooves 202. A collection box 207 is arranged at the bottom of the operating table 201. A pull-out slot 208 is arranged inside the collection box 207. Two electric push rods 302 are installed on the top of the fixed frame 301. A connecting plate 303 is installed at the bottom of the two electric push rods 302. A cutting blade 304 is installed at the bottom of the connecting plate 303. Two groups of electric telescopic rods 104 and two groups of connecting springs 105 are arranged on one side of the cross plate 101. The two groups of electric telescopic rods 104 are connected to the extrusion plate 106 on one side. A protective soft pad is arranged on one side of the extrusion plate 106. A sensor 108 is arranged on one side of the extrusion plate 106. The sensor 108 identifies the position of the carton to be sheared. The two groups of electric telescopic rods 104 drive the extrusion plate 106 to fix the carton, preventing the carton from shifting during the cutting process. The shift of the cardboard will cause the cutting surface of the cardboard to produce a rough surface, and the shift of the cutting position will cause it to be unusable subsequently, and further increase the generation of waste, resulting in waste of the cardboard. The waste chips generated during the cutting process will fall into the inside of the collection box 207 from the plurality of discharge slots 102, avoiding the mess of the working environment.
[0024] Embodiment 2, as Figures 1 - 4 shown, the two connecting springs 105 and the two electric telescopic rods 104 are sleeved and installed. The control panel 107 is electrically connected to the two baffle plates 103. A sensor 108 is arranged on one side of the extrusion plate 106. The sensor 108 is electrically connected to the control panel 107. The rotating motor 204 is sleeved and connected to the support frame 203. The threaded rod 205 is rotatably connected to the operating table 201. Moving blocks 206 are arranged on the outer surfaces of the threaded rod 205 and the round rod. The moving block 206 is threadedly connected to the threaded rod 205. The moving block 206 is slidably connected to the round rod. The pull-out slot 208 is slidably connected to the collection box 207. The fixed frame 301 is fixedly installed with the two moving blocks 206. The plurality of discharge slots 102 are communicated with the inside of the collection box 207. The operating table 201 is fixedly installed with the cross plate 101.
[0025] The effects achieved by the entire Embodiment 2 are as follows: Two connecting springs 105 are sleeved and installed with two electric telescopic rods 104. The control screen 107 is electrically connected to the two baffles 103. A sensor 108 is arranged on one side of the pressing plate 106, and the sensor 108 is electrically connected to the control screen 107. The rotating motor 204 is sleeved and connected to the support frame 203. The threaded rod 205 is rotatably connected to the operating table 201. Moving blocks 206 are arranged on the outer surfaces of both the threaded rod 205 and the round rod. The moving block 206 is threadedly connected to the threaded rod 205 and slidably connected to the round rod. The draw slot 208 is slidably connected to the collection box 207. The fixing frame 301 is fixedly installed on the two moving blocks 206. Multiple discharge slots 102 are communicated with the inside of the collection box 207. The operating table 201 is fixedly installed on the cross plate 101. Two grooves 202 are opened on one side of the operating table 201, and the threaded rod 205 and the round rod are arranged inside the two grooves 202. By driving the threaded rod 205 to rotate through the rotating motor 204, moving blocks 206 are arranged on the outer surfaces of the threaded rod 205 and the round rod. Two electric push rods 302 are installed at the top of the two moving blocks 206 to move up and down to facilitate the cutting work of the cutting blade 304. The fixing frame 301 can be driven by the rotating motor 204 to move back and forth, facilitating the cutting blade 304 to cut at a suitable position, and the cutting position is not limited.
[0026] Working principle: A plurality of discharge grooves 102 are opened on one side of the horizontal plate 101. Two baffle plates 103 are installed on the top of the horizontal plate 101. Two electric telescopic rods 104 are arranged on one side of the two baffle plates 103. Two connecting springs 105 are installed on one side of the two baffle plates 103. An extrusion plate 106 is installed on one side of the two electric telescopic rods 104. A protective soft pad is arranged on one side of the extrusion plate 106. A control panel 107 is arranged on one side of the two baffle plates 103. Two grooves 202 are opened on one side of the operating table 201. A support frame 203 is installed on one side of the operating table 201. A rotating motor 204 is arranged inside the support frame 203. A threaded rod 205 is installed at the output end of the rotating motor 204. Round rods are arranged inside the two grooves 202. A collection box 207 is arranged at the bottom of the operating table 201. A pull-out groove 208 is arranged inside the collection box 207. Two electric push rods 302 are installed on the top of the fixed frame 301. A connecting plate 303 is installed at the bottom of the two electric push rods 302. A cutting blade 304 is installed at the bottom of the connecting plate 303. Two groups of electric telescopic rods 104 and two groups of connecting springs 105 are arranged on one side of the horizontal plate 101. One side of the two groups of electric telescopic rods 104 is connected to the extrusion plate 106. A protective soft pad is arranged on one side of the extrusion plate 106. A sensor 108 is arranged on one side of the extrusion plate 106. The sensor 108 identifies the position of the cardboard box to be sheared. The two groups of electric telescopic rods 104 drive the extrusion plate 106 to fix the cardboard box, preventing the cardboard box from shifting during the cutting process. The shift of the cardboard will cause the cutting surface of the cardboard to have a rough surface, and the shift of the cutting position will cause it to be unusable subsequently, and further increase the generation of waste, resulting in waste of the cardboard. The waste chips generated during the cutting process will fall into the inside of the collection box 207 from the plurality of discharge grooves 102, avoiding the mess of the working environment. The two connecting springs 105 and the two electric telescopic rods 104 are sleeved and installed. The control panel 107 is electrically connected to the two baffle plates 103. A sensor 108 is arranged on one side of the extrusion plate 106. The sensor 108 is electrically connected to the control panel 107. The rotating motor 204 is sleeved and connected to the support frame 203. The threaded rod 205 is rotatably connected to the operating table 201. Moving blocks 206 are arranged on the outer surfaces of the threaded rod 205 and the round rod. The moving blocks 206 are threadedly connected to the threaded rod 205. The moving blocks 206 are slidably connected to the round rod. The pull-out groove 208 is slidably connected to the collection box 207. The fixed frame 301 is fixedly installed with the two moving blocks 206. The plurality of discharge grooves 102 are communicated with the inside of the collection box 207. The operating table 201 is fixedly installed with the horizontal plate 101. Two grooves 202 are opened on one side of the operating table 201. The threaded rod 205 and the round rod are arranged inside the two grooves 202. The rotating motor 204 drives the threaded rod 205 to rotate. Moving blocks 206 are arranged on the outer surfaces of the threaded rod 205 and the round rod. The two moving blocks 206 are provided with a fixed frame 301 at the top. Two electric push rods 302 are installed at the bottom of the fixed frame 301 to move up and down to facilitate the cutting work of the cutting blade 304.The fixing frame 301 can be driven by the rotating motor 204 to move back and forth, which facilitates the cutting blade 304 to cut at a suitable position, and the cutting position is not limited.
[0027] The above are only the preferred embodiments of the present invention, and are not limitations on the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A slitting device for producing packaging cartons, characterized in that: It comprises a pushing component (1), a main body component (2) and a cutting component (3); The pushing assembly (1) comprises a horizontal plate (101), a plurality of discharge slots (102) are provided on one side of the horizontal plate (101), two baffles (103) are installed on the top of the horizontal plate (101), two electric telescopic rods (104) are arranged on one side of the two baffles (103), two connecting springs (105) are installed on one side of the two baffles (103), an extrusion plate (106) is installed on one side of the two electric telescopic rods (104), a protective cushion is arranged on one side of the extrusion plate (106), and a control screen (107) is arranged on one side of the two baffles (103); The main body component (2) comprises an operating table (201), two grooves (202) are provided on one side of the operating table (201), a support frame (203) is installed on one side of the operating table (201), a rotating motor (204) is arranged inside the support frame (203), a threaded rod (205) is installed at the output end of the rotating motor (204), round rods are arranged inside the two grooves (202), a collection box (207) is arranged at the bottom of the operating table (201), and a pull-out groove (208) is arranged inside the collection box (207); The cutting assembly (3) comprises a fixing frame (301), two electric driving rods (302) are installed on the top of the fixing frame (301), a connecting plate (303) is installed on the bottom of the two electric driving rods (302), and a cutting blade (304) is installed on the bottom of the connecting plate (303).
2. A slitting device for producing packaging cartons according to claim 1, characterized in that: The two connection springs (105) are sleeved and installed with the two electric telescopic rods (104), and the control screen (107) is electrically connected with the two baffles (103).
3. A slitting device for producing packaging cartons according to claim 1, characterized in that: A sensor (108) is provided on one side of the extrusion plate (106), and the sensor (108) is electrically connected to the control screen (107).
4. A slitting device for producing packaging cartons according to claim 1, characterized in that: The rotating motor (204) is sleeve-connected with the support frame (203), the threaded rod (205) is rotationally connected with the operating table (201), and the outer walls of the threaded rod (205) and the round rod are both provided with moving blocks (206).
5. A slitting device for producing packaging cartons according to claim 4, characterized in that: The moving block (206) is threadedly connected to the threaded rod (205), and the moving block (206) is slidably connected to the round rod.
6. A slitting device for producing packaging cartons according to claim 1, characterized in that: The drawing slot (208) is slidably connected to the collection box (207), and the fixing frame (301) is fixedly mounted to the two moving blocks (206).
7. A slitting device for producing packaging cartons according to claim 1, characterized in that: The plurality of discharge troughs (102) are in communication with the interior of the collection box (207), and the operating table (201) is fixedly mounted to the transverse plate (101).