Cleaning device of carton printing, slotting and die-cutting machine

By designing an automatic cleaning structure in the grooved die cutting machine, and using telescopic tubes and cleaning boards to clean the waste chips at the bottom of the machine, the long cleaning time and wear problems in the prior art are solved, and production efficiency is improved.

CN223014021UActive Publication Date: 2025-06-24CHENGDU FIRST PACKAGING CO LTD
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Patent Information

Application Number
CN202422064313.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-06-24
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

Existing grooved die cutting machines will produce a lot of waste after cutting, which will take more time and manpower to clean it. Long-term accumulation may accelerate the wear of machine parts, affecting printing effect and production efficiency.

Method used

A cleaning device for a carton printing slot die cutting machine is designed, including the main base plate, working components, discharge components, feed components, maintenance components, installation components, transmission components, circuit blocks, telescopic tubes, telescopic rods, cleaning boards and silicone strips. The waste chips at the bottom of the machine are cleaned by automatic cleaning structure after the cutting work is completed.

Benefits of technology

By automatically cleaning the structure, avoiding long-term accumulation of waste chips, reducing wear on machine parts, improving production efficiency, and reducing manpower cleaning time.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223014021U_ABST
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Abstract

The utility model relates to the technical field of carton printing, slotting and die-cutting machines, in particular to a cleaning device of a carton printing, slotting and die-cutting machine, which comprises a main body bottom plate, a working assembly, a discharging assembly, a feeding assembly, a maintenance assembly, a mounting assembly, a transmission assembly, a circuit block, a telescopic pipe, a telescopic rod, a cleaning plate and a silica gel strip, a working assembly is arranged on the top face of the main body bottom plate, a discharging assembly is arranged on one side of the working assembly, a feeding assembly is arranged in the working assembly, overhauling assemblies are arranged on the two sides of the working assembly, a mounting assembly is arranged on one side of the working assembly, a conveying assembly is arranged in the middle of the mounting assembly, and a circuit block is arranged in the working assembly. A plurality of telescopic pipes are arranged on one side of the circuit block, telescopic rods are sleeved with the telescopic pipes, cleaning plates are arranged on the surfaces of the telescopic rods, and silica gel strips are arranged at the bottom ends of the cleaning plates; by arranging the automatic cleaning structure, scraps at the bottom of the machine are cleaned out after cutting work is completed, and long-term accumulation is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of carton printing slotting and die-cutting machines, in particular to a cleaning device for a carton printing slotting and die-cutting machine. Background Art

[0002] A carton printing slotting and die-cutting machine is a highly integrated device that combines multiple functions such as printing, slotting, indentation, and die-cutting forming. It is mainly used for the processing of non-metallic materials and has a wide range of applications in the paper packaging industry.

[0003] At present, a large amount of waste chips will be generated after the cutting of the current slotting and die-cutting machine. These waste chips accumulate at the bottom and inside of the die-cutting machine, which requires more time and manpower for cleaning. And long-term accumulation may cause an additional burden on the machine components, thereby accelerating their wear, further affecting the printing effect and production efficiency.

[0004] Therefore, aiming at the problem that a large amount of waste chips will be generated after the cutting of the above die-cutting machine, which requires more time and manpower for cleaning, and long-term accumulation may cause an additional burden on the machine components, thereby accelerating their wear, further affecting the printing effect and production efficiency, a die-cutting machine with a cleaning device can be designed. By setting an automatic cleaning structure, the waste chips at the bottom of the machine can be swept out after the cutting work is completed, avoiding long-term accumulation and excessive time and manpower consumption, which is beneficial to ensuring production efficiency. Summary of the Utility Model

[0005] In order to overcome the problem in the prior art that a large amount of waste chips will be generated after the cutting of the slotting and die-cutting machine, these waste chips accumulate at the bottom and inside of the die-cutting machine, which requires more time and manpower for cleaning, and long-term accumulation may cause an additional burden on the machine components, thereby accelerating their wear, further affecting the printing effect and production efficiency.

[0006] The technical solution of the utility model is: a cleaning device for a carton printing slotting and die-cutting machine, including a main body bottom plate, a working component, a material feeding component, a feeding component, a maintenance component, an installation component, a transmission component, a circuit block, a telescopic tube, a telescopic rod, a cleaning plate and a silicone strip. The top surface of the main body bottom plate is provided with a working component, a material feeding component is arranged on one side of the working component, a feeding component is arranged inside the working component, maintenance components are arranged on both sides of the working component, an installation component is arranged on one side of the working component, a transmission component is arranged in the middle of the installation component, a circuit block is arranged inside the working component, a plurality of telescopic tubes are equidistantly arranged on one side of the circuit block close to the transmission component, a telescopic rod is sleeved inside the telescopic tube, a cleaning plate is arranged on the surface of the telescopic rod, and a silicone strip is arranged at the bottom end of the cleaning plate.

[0007] Preferably, the main body bottom plate bears the weight, the working component performs cutting and printing work, the feeding component places the materials to be processed, the feeding component transports the materials to the working component for processing, the maintenance component repairs and controls the operation of the whole machine, the installation component installs the transmission component, the transmission component transports the processed materials out, the circuit block connects to control the telescopic tube, after the cutting work is completed, the telescopic rod is pushed out through the telescopic tube, the cleaning plate is installed at one end of the telescopic tube through the telescopic rod, the waste chips are pushed out through the cleaning plate, and the waste chips on the main body bottom plate are cleaned by the silicone strip.

[0008] Preferably, the working component includes a support block, a baffle, a working block and a control block. Support blocks are arranged on both sides of the top surface of the main body bottom plate. A baffle is arranged on the top surface of the support block. A working block is arranged on one side of the baffle. Control blocks are arranged on both sides of the baffle. When in use, the whole baffle is supported by the support block, the cutting and printing work is carried out through the baffle, the materials are prevented from flying out during work through the working block, and the control circuit is installed through the control block.

[0009] Preferably, the feeding component includes a mounting plate, a connecting column, an inclined plate and a placement groove. A mounting plate is arranged on one side of the control block. A connecting column is arranged in the middle of the top surface of the mounting plate. An inclined plate is arranged in the middle of the connecting column. A placement groove is formed on the surface of the inclined plate. When in use, the connecting column is supported and fixed through the mounting plate, the inclined plate is connected and installed through the connecting column, the placement groove is installed in the middle of the mounting plate through the inclined plate, and the materials to be cut and printed are placed through the placement groove.

[0010] Preferably, the feeding component includes a mounting column, a conveying block and a roller. A mounting column is arranged at the bottom side of the working block inside the baffle. A number of conveying blocks are equidistantly arranged on the outer periphery of the mounting column. A roller is arranged at the bottom side of the mounting column. When in use, the conveying blocks are installed inside the baffle through the mounting column, the materials are conveyed and printed through the conveying blocks, and the materials are driven to be transported through the rolling of the roller.

[0011] Preferably, the maintenance component includes a working display block, a maintenance door panel and a door handle. The working display block is arranged on the surface of the control block. The maintenance door panel is arranged at the corresponding position on the bottom side of the working display block. The door handle is arranged on the surface of the maintenance door panel. When in use, the working information and the set working program are displayed through the working display block, the machine is closed through the maintenance door panel to reduce the contact of irrelevant personnel with the inside of the machine, and the inside of the machine is maintained by opening and closing the maintenance door panel through the door handle.

[0012] Preferably, the installation component includes a protection plate, a connecting block and a conveying round tube. A protection plate is arranged on one side of the baffle. A connecting block is arranged inside the protection plate. A conveying round tube is arranged inside the connecting block. When in use, protection is carried out through the protection plate to reduce the probability of personnel injury, the control circuit is connected through the connecting block, and the circuit is conveyed to the rotating structure through the conveying round tube.

[0013] Preferably, the transmission component includes a rotating shaft, a collar and a conveyor belt. A rotating shaft is provided in the middle of the conveying circular tube. A number of collars are equidistantly arranged on the surface of the rotating shaft. A conveyor belt is provided on the surface of the collar. During use, the rotating shaft rotates to drive the collar to rotate, the collar drives the conveyor belt to rotate, and the conveyor belt transports the cut and printed cardboard.

[0014] Preferably, the telescopic tube is connected to the telescopic rod sleeve, and the cleaning plate is fitted and connected with the silicone strip.

[0015] Advantages of the present utility model:

[0016] 1. Compared with traditional grooving and die-cutting machines, a lot of waste chips will be generated after cutting. These waste chips accumulate at the bottom and inside the die-cutting machine, which requires more time and manpower to clean. And long-term accumulation may cause an additional burden on the machine parts, thus accelerating their wear and further affecting the printing effect and production efficiency. This die-cutting machine is provided with an automatic cleaning structure to sweep out the waste chips at the bottom of the machine after the cutting work is completed, avoiding long-term accumulation and spending too much time and manpower, which is beneficial to ensuring production efficiency; Description of the drawings

[0017] Figure 1 Shown is a first three-dimensional structural schematic diagram of a cleaning device of a carton printing grooving and die-cutting machine of the present utility model;

[0018] Figure 2 Shown is a second three-dimensional structural schematic diagram of a cleaning device of a carton printing grooving and die-cutting machine of the present utility model;

[0019] Figure 3 Shown is a side three-dimensional structural schematic diagram of a cleaning device of a carton printing grooving and die-cutting machine of the present utility model;

[0020] Figure 4 Shown is a partial three-dimensional structural schematic diagram of a cleaning device of a carton printing grooving and die-cutting machine of the present utility model;

[0021] Figure 5 Shown is a partial three-dimensional structural schematic diagram of a cleaning device of a carton printing grooving and die-cutting machine of the present utility model;

[0022] Description of reference numerals: 1, main body bottom plate; 201, support block; 202, baffle; 203, working block; 204, control block; 301, mounting plate; 302, connecting column; 303, inclined plate; 304, placing groove; 401, mounting column; 402, conveying block; 403, roller; 501, working display block; 502, maintenance door panel; 503, door handle; 601, protection plate; 602, connecting block; 603, conveying circular tube; 701, rotating shaft; 702, collar; 703, conveyor belt; 801, circuit block; 802, telescopic tube; 803, telescopic rod; 804, cleaning plate; 805, silicone strip. Detailed implementation manners

[0023] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0024] Please refer to Figure 1 , the present utility model provides an embodiment: a cleaning device for a carton printing slotting and die-cutting machine, including a main body bottom plate 1, a working component, a feeding component, a material placing component, a maintenance component, a mounting component, a transmission component, a circuit block 801, a telescopic tube 802, a telescopic rod 803, a cleaning plate 804 and a silicone strip 805. A working component is arranged on the top surface of the main body bottom plate 1. A feeding component is arranged on one side of the working component. A material placing component is arranged inside the working component. Maintenance components are arranged on both sides of the working component. A mounting component is arranged on one side of the working component. A transmission component is arranged in the middle of the mounting component. A circuit block 801 is arranged inside the working component. A plurality of telescopic tubes 802 are arranged at equal intervals on one side of the circuit block 801 close to the transmission component. A telescopic rod 803 is sleeved inside the telescopic tube 802. A cleaning plate 804 is arranged on the surface of the telescopic rod 803. A silicone strip 805 is arranged at the bottom end of the cleaning plate 804.

[0025] Please refer to Figures 2 - 5, in this embodiment, the working components include a support block 201, a baffle 202, a working block 203 and a control block 204. Support blocks 201 are arranged on both sides of the top surface of the main body bottom plate 1. A baffle 202 is arranged on the top surface of the support block 201. A working block 203 is arranged on one side of the baffle 202. Control blocks 204 are arranged on both sides of the baffle 202. During use, the overall baffle 202 is supported by the support block 201. The cutting and printing work is carried out through the baffle 202. The working block 203 is used to prevent the material from flying out during work. The control circuit is installed through the control block 204. The feeding component includes a mounting plate 301, a connecting column 302, an inclined plate 303 and a placement groove 304. A mounting plate 301 is arranged on one side of the control block 204. A connecting column 302 is arranged in the middle of the top surface of the mounting plate 301. An inclined plate 303 is arranged in the middle of the connecting column 302. A placement groove 304 is formed on the surface of the inclined plate 303. During use, the connecting column 302 is supported and fixed by the mounting plate 301. The inclined plate 303 is connected and installed through the connecting column 302. The placement groove 304 is installed in the middle of the mounting plate 301 through the inclined plate 303. The material to be cut and printed is placed through the placement groove 304. The feeding component includes a mounting column 401, a conveying block 402 and a roller 403. A mounting column 401 is arranged at the bottom side of the working block 203 inside the baffle 202. A number of conveying blocks 402 are equidistantly arranged on the outer circumference of the mounting column 401. A roller 403 is arranged at the bottom side of the mounting column 401. During use, the conveying block 402 is installed inside the baffle 202 through the mounting column 401. The material is conveyed and printed through the conveying block 402. The roller 403 rolls to drive the material to be transported;

[0026] The maintenance component includes a working display block 501, a maintenance door panel 502 and a door handle 503. The working display block 501 is arranged on the surface of the control block 204, and the maintenance door panel 502 is arranged at the corresponding position of the bottom side of the working display block 501. The surface of the maintenance door panel 502 is provided with a door handle 503. When in use, the working information is displayed and the working program is set through the working display block 501. The machine is closed through the maintenance door panel 502 to reduce the contact between irrelevant personnel and the inside of the machine. The maintenance door panel 502 is opened and closed through the door handle 503 to inspect the inside of the machine. The installation component includes a protective plate 601, a connecting block 602 and a conveying round pipe 603. The protective plate 601 is arranged on one side of the baffle 202, and the connecting block 602 is arranged on the inner side of the protective plate 601. There is a conveying circular tube 603. When in use, it is protected by a protective plate 601 to reduce the probability of personal injury. The control circuit is connected through a connecting block 602, and the circuit is conveyed to the rotating structure through the conveying circular tube 603. The transmission component includes a rotating shaft 701, a ring 702 and a conveyor belt 703. The middle part of the conveying circular tube 603 is provided with a rotating shaft 701, and a plurality of rings 702 are equidistantly arranged on the surface of the rotating shaft 701. The surface of the ring 702 is provided with a conveyor belt 703. When in use, the rotating shaft 701 is rotated to drive the ring 702 to rotate, and the ring 702 is used to drive the conveyor belt 703 to rotate, and the cut and printed cardboard is transmitted through the conveyor belt 703. The telescopic tube 802 is connected to the telescopic rod 803 sleeve, and the cleaning plate 804 is engaged with the silicone strip 805.

[0027] When working, first, the whole baffle 202 is supported by the support block 201, and the cutting and printing work is carried out through the baffle 202. The working block 203 is used to prevent the material from flying out during work. The control circuit is installed through the control block 204. The connecting column 302 is supported and fixed by the mounting plate 301. The inclined plate 303 is connected and installed through the connecting column 302. The placement groove 304 is installed in the middle of the mounting plate 301 through the inclined plate 303. The material to be cut and printed is placed through the placement groove 304. The conveying block 402 is installed inside the baffle 202 through the mounting column 401. The material is conveyed and printed through the conveying block 402, and the material is conveyed and transmitted through the roller 403.

[0028] Then, the work information and the set working procedure are displayed through the work display block 501. The machine is closed through the maintenance door panel 502 to reduce the contact of irrelevant personnel with the interior of the machine. The interior of the machine is maintained through the door handle 503 to switch the maintenance door panel 502. Protection is provided through the protection plate 601 to reduce the probability of personnel injury. The control circuit is connected through the connecting block 602. The circuit is conveyed to the rotating structure through the conveying round tube 603. The rotation of the rotating shaft 701 drives the rotation of the collar 702. The rotation of the collar 702 drives the rotation of the conveyor belt 703. The cut and printed cardboard is conveyed through the conveyor belt 703. The control of the telescopic tube 802 is connected through the circuit block 801. After the cutting work is completed, the telescopic rod 803 is pushed out through the telescopic tube 802. The cleaning plate 804 is installed at one end of the telescopic tube 802 through the telescopic rod 803. The waste chips are pushed out through the cleaning plate 804. The waste chips on the main body bottom plate 1 are cleaned through the silicone strip 805.

[0029] Through the above steps, the main body bottom plate 1 bears the weight. The cutting and printing work is carried out through the work component. The materials to be processed are placed through the feeding component. The materials are conveyed to the work component for processing through the feeding component. The overall operation of the machine is maintained and controlled through the maintenance component. The transmission component is installed through the installation component. The processed materials are conveyed out through the transmission component. The control of the telescopic tube 802 is connected through the circuit block 801. After the cutting work is completed, the telescopic rod 803 is pushed out through the telescopic tube 802. The cleaning plate 804 is installed at one end of the telescopic tube 802 through the telescopic rod 803. The waste chips are pushed out through the cleaning plate 804. The waste chips on the main body bottom plate 1 are cleaned through the silicone strip 805.

[0030] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. A cleaning device for a carton printing slotting die-cutting machine, comprising a main body bottom plate (1); characterized in that: The invention also comprises a working component, a material discharging component, a material feeding component, a maintenance component, an installation component, a transmission component, a circuit block (801), a telescopic tube (802), a telescopic rod (803), a cleaning plate (804) and a silicone strip (805). The working component is arranged on the top surface of the main body bottom plate (1), the material discharging component is arranged on one side of the working component, the material feeding component is arranged inside the working component, the maintenance components are arranged on both sides of the working component, the installation component is arranged on one side of the working component, the transmission component is arranged in the middle of the installation component, the circuit block (801) is arranged inside the working component, a plurality of telescopic tubes (802) are arranged equidistantly on one side of the circuit block (801) close to the transmission component, the telescopic rod (803) is sleeved inside the telescopic tube (802), the cleaning plate (804) is arranged on the surface of the telescopic rod (803), and the silicone strip (805) is arranged at the bottom end of the cleaning plate (804).

2. A cleaning device for a carton printing slotting and die-cutting machine according to claim 1, characterized in that: The working assembly comprises a support block (201), a baffle (202), a working block (203) and a control block (204); the support blocks (201) are arranged on both sides of the top surface of the main body bottom plate (1); the baffle (202) is arranged on the top surface of the support block (201); the working block (203) is arranged on one side of the baffle (202); and the control blocks (204) are arranged on both sides of the baffle (202).

3. The cleaning device of the carton printing slotting die-cutting machine according to claim 2, characterized in that: The material discharge assembly comprises a mounting plate (301), a connecting column (302), an inclined plate (303) and a placement groove (304); the mounting plate (301) is arranged on one side of the control block (204); the connecting column (302) is arranged in the middle of the top surface of the mounting plate (301); the inclined plate (303) is arranged in the middle of the connecting column (302); and the placement groove (304) is opened on the surface of the inclined plate (303).

4. The cleaning device of the carton printing slotting die-cutting machine according to claim 3, characterized in that: The feeding assembly comprises a mounting column (401), a conveying block (402) and a roller (403); the mounting column (401) is arranged on the bottom side of the inner working block (203) of the baffle (202); a plurality of conveying blocks (402) are arranged equidistantly on the outer circumference of the mounting column (401); and the roller (403) is arranged on the bottom side of the mounting column (401).

5. The cleaning device of the carton printing slotting die-cutting machine according to claim 4, characterized in that: The maintenance component comprises a working display block (501), a maintenance door panel (502) and a door handle (503); the working display block (501) is arranged on the surface of the control block (204); the maintenance door panel (502) is arranged at a corresponding position on the bottom side of the working display block (501); and the door handle (503) is arranged on the surface of the maintenance door panel (502).

6. The cleaning device of the carton printing slotting die-cutting machine according to claim 4, characterized in that: The installation assembly comprises a protective plate (601), a connecting block (602) and a conveying round tube (603); the protective plate (601) is arranged on one side of the baffle (202); the connecting block (602) is arranged on the inner side of the protective plate (601); and the conveying round tube (603) is arranged on the inner side of the connecting block (602).

7. A cleaning device for a carton printing slotting and die-cutting machine according to claim 6, characterized in that: The transmission component comprises a rotating shaft (701), a sleeve ring (702) and a conveyor belt (703). The rotating shaft (701) is arranged in the middle of the conveying circular tube (603), a plurality of sleeve rings (702) are arranged at equal intervals on the surface of the rotating shaft (701), and the conveyor belt (703) is arranged on the surface of the sleeve ring (702).

8. The cleaning device for a carton printing slotting and die-cutting machine according to claim 6, characterized in that: The telescopic tube (802) is connected to the telescopic rod (803) by sleeves, and the cleaning plate (804) is connected to the silica gel strip (805) by interlocking.