Intelligent linkage type corrugated board coining and cutting complete equipment
Through the intelligent linkage corrugated cardboard printing, pressing and cutting equipment set, the use of fully digital control and rotating frame has solved the problem of low efficiency in small-batch production and realized efficient and automated processing of corrugated cardboard.
Patent Information
- Application Number
- CN202422827942.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing automated corrugated cardboard production lines are inefficient in small batch and proofing production, and are unable to achieve efficient printing, creasing and slotting operations.
An intelligent linkage corrugated cardboard printing, pressing and cutting equipment set is designed, which includes printing, flipping, creasing and slotting mechanisms. The equipment is automatically linked through a fully digital control system. A rotating frame and power source are used to ensure stable transmission and flipping of cardboard, and it supports 180° or 360° flipping and movement functions.
It realizes efficient automated processing of small batch production and proofing. The whole set of equipment is linked front and back to realize automated operations from printing to creasing and grooving, thus improving production efficiency.
Smart Images

Figure CN223340146U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an improved invention in the field of corrugated cardboard processing, in particular to an improved invention of an intelligent linkage type corrugated cardboard printing, pressing and cutting equipment set. Background Art
[0002] The production process for packaging cartons includes cardboard manufacturing, slitting, printing, creasing and slotting, and binding. While typical tertiary carton factories don't include cardboard manufacturing equipment, they do have assembly lines for slitting, printing, creasing and slotting. While automated production lines are highly efficient for large volumes, they are significantly less efficient for smaller batches and sample production. Utility Model Content
[0003] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide an intelligent linkage type corrugated cardboard printing, pressing and cutting equipment set.
[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions: This intelligent linkage corrugated cardboard printing, pressing and cutting equipment is characterized in that it includes a printing mechanism, a flipping mechanism, a creasing mechanism and a slotting mechanism that are arranged in sequence and connected to each other, and the printing mechanism, the flipping mechanism, the creasing mechanism and the slotting mechanism are all connected to a fully digital control system, the flipping mechanism includes a rotating frame, the rotating frame can be flipped, and an upper paper pressing frame and a lower paper pressing frame corresponding to each other are provided in the rotating frame, the upper paper pressing frame and the lower paper pressing frame can be relatively movably arranged, and a transmission structure is provided on the upper paper pressing frame and the lower paper pressing frame.
[0005] The upper paper pressing frame can be moved up and down and is arranged in the rotating frame. The corresponding rotating frame is provided with a power source, which is transmission-connected with the upper paper pressing frame.
[0006] The upper paper pressing frame and the lower paper pressing frame can be moved up and down and are arranged in the rotating frame. The corresponding rotating frame is equipped with a corresponding power source, and the upper paper pressing frame and the lower paper pressing frame are respectively connected to the corresponding power source by transmission.
[0007] The printing mechanism, the turning mechanism, the creasing mechanism and the slotting mechanism are all arranged on the ground rail, and the corresponding printing mechanism, the turning mechanism, the creasing mechanism and the slotting mechanism can be quickly separated or assembled.
[0008] The rotating frame can flip back and forth 180 degrees or rotate 360 degrees.
[0009] The beneficial effect of this utility model is the improved intelligent linkage corrugated cardboard printing, coining and cutting equipment set. This all-in-one device is designed for small-batch production and proofing, and includes functions from printing to creasing and slotting. The entire linkage equipment consists of four major parts: printing, turning, creasing, and slotting. The entire system is linked front and back to automatically complete the entire process from printing to creasing and slotting, realizing a complete linkage of "printing, coining and cutting". BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The specific implementation of the present invention is further described in detail below with reference to the accompanying drawings.
[0011] Figure 1 It is a structural diagram of the present utility model.
[0012] Figure 2 This is a schematic diagram of the turning mechanism of the utility model. DETAILED DESCRIPTION
[0013] The accompanying drawings show the structure of the present invention, and the following further describes its relevant details in conjunction with the accompanying drawings. Figure 1-2 The intelligent linked corrugated cardboard printing, pressing and cutting equipment comprises a printing mechanism 1, a turning mechanism 2, a creasing mechanism 3, and a slotting mechanism 4, which are arranged in sequence and interconnected. The printing mechanism 1, turning mechanism 2, creasing mechanism 3, and slotting mechanism 4 are all connected to a fully digital control system. The turning mechanism 2 includes a rotating frame 21, which is reversible. Preferably, both ends of the rotating frame 21 are rotatably mounted on a machine base and equipped with a motor gear drive mechanism. The rotating frame 21 is provided with an upper and lower corresponding paper pressing frame 22 and a lower paper pressing frame 23, which are relatively movable. The upper and lower paper pressing frames 22 and 23 are each provided with a conveying structure 24, which is preferably a conveyor belt, a transmission roller, and a transmission motor arranged side by side. The printing mechanism 1, creasing mechanism 3, slotting mechanism 4, and fully digital control system are all prior art and will not be described in detail here.
[0014] The working principle of the present invention is that after the corrugated cardboard 5 is printed by the printing mechanism 1, it is sent to the turning mechanism 2 with the upper paper pressing frame 22 and the lower paper pressing frame 23 opened in advance, and then the corrugated cardboard 5 is pressed between the conveying structure 24 of the upper paper pressing frame 22 and the lower paper pressing frame 23, and the rotating frame 21 is turned over and drives the corrugated cardboard 5 to turn over, and then the turned corrugated cardboard 5 is sent to the creasing mechanism 3 for creasing, and finally the creasing corrugated cardboard 5 is sent to the slotting mechanism 4 for slotting, and is sent out for collection after slotting is completed. The above adopts a fully digital control system, and automatic processing can be achieved as long as the design is completed on the computer.
[0015] As a further improved embodiment, the upper paper pressing frame 22 is movable up and down within the rotating frame 21. The upper paper pressing frame 22 is equipped with a guide rod. The corresponding rotating frame 21 is provided with a power source 25, which is transmission-connected to the upper paper pressing frame 22. The power source is preferably a cylinder. During operation, the printed corrugated cardboard 5 enters the lower paper pressing frame 23. The cylinder drives the upper paper pressing frame 22 to move downward and press the cardboard on the lower paper pressing frame 23 to prevent the cardboard from shifting during flipping. After flipping is completed, the corrugated cardboard is fed into the indentation mechanism 3 under the action of the conveying structure 24. Thereafter, the rotating frame 21 and the upper paper pressing frame 22 return to their original positions to receive the new corrugated cardboard.
[0016] As a further improved specific embodiment, the upper paper pressing frame 22 and the lower paper pressing frame 23 can be moved up and down and arranged in the rotating frame 21, and the upper paper pressing frame 22 and the lower paper pressing frame 23 are both equipped with guide rods. The corresponding rotating frame 21 is equipped with a corresponding power source 25. The upper paper pressing frame 22 and the lower paper pressing frame 23 are respectively connected to the corresponding power source by transmission, and the power source is preferably a cylinder. During operation, the printed corrugated cardboard 5 enters the lower paper pressing frame 23, and the cylinder drives the upper paper pressing frame 22 to move down and press the cardboard on the lower paper pressing frame 23 to prevent the cardboard from shifting during flipping. After flipping is completed, the corrugated cardboard is sent to the indentation mechanism 3 under the action of the transmission structure 24, and at this time, the upper paper pressing frame 22 and the lower paper pressing frame 23 are interchanged in position, and then the lower paper pressing frame 23 moves up, and can continue to take on new corrugated cardboard in the same way afterwards, so as to work alternately and improve production efficiency.
[0017] As a further improved specific implementation method, the printing mechanism 1, flipping mechanism 2, creasing mechanism 3 and slotting mechanism 4 are all arranged on the ground rail 6, and the corresponding printing mechanism 1, flipping mechanism 2, creasing mechanism 3 and slotting mechanism 4 can be quickly separated or assembled, that is, the printing mechanism 1, flipping mechanism 2, creasing mechanism 3 and slotting mechanism 4 can be movably arranged on the ground rail 6 respectively, which is convenient for separation or assembly.
[0018] As a further improved specific implementation method, the rotating frame 21 can flip back and forth 180° or rotate 360°, both of which can realize the flipping of corrugated cardboard. The 360° rotation combined with the alternating operation of the upper paper pressing frame 22 and the lower paper pressing frame 23 can greatly improve the flipping efficiency and reduce waiting time.
[0019] In summary, the above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the scope of protection of the present invention.
Claims
1. Intelligent linkage corrugated cardboard printing, pressing and cutting equipment, characterized by: It includes a printing mechanism, a turning mechanism, a creasing mechanism and a slotting mechanism which are arranged in sequence and connected to each other, and the printing mechanism, the turning mechanism, the creasing mechanism and the slotting mechanism are all connected to a fully digital control system. The turning mechanism includes a rotating frame which can be turned over, and an upper paper pressing frame and a lower paper pressing frame corresponding to each other are arranged in the rotating frame, and the upper paper pressing frame and the lower paper pressing frame can be relatively moved, and a transmission structure is provided on the upper paper pressing frame and the lower paper pressing frame.
2. The intelligent linkage type corrugated cardboard printing, pressing and cutting equipment according to claim 1, characterized in that: The upper paper pressing frame can be moved up and down and is arranged in the rotating frame. The corresponding rotating frame is provided with a power source, which is transmission-connected with the upper paper pressing frame.
3. The intelligent linkage type corrugated cardboard printing, pressing and cutting equipment according to claim 1, characterized in that: The upper paper pressing frame and the lower paper pressing frame can be moved up and down and are arranged in the rotating frame. The corresponding rotating frame is equipped with a corresponding power source, and the upper paper pressing frame and the lower paper pressing frame are respectively connected to the corresponding power source by transmission.
4. The intelligent linkage type corrugated cardboard printing, pressing and cutting equipment according to claim 1, characterized in that: The printing mechanism, the turning mechanism, the creasing mechanism and the slotting mechanism are all arranged on the ground rail, and the corresponding printing mechanism, the turning mechanism, the creasing mechanism and the slotting mechanism can be quickly separated or assembled.
5. The intelligent linkage type corrugated cardboard printing, pressing and cutting equipment according to claim 1, characterized in that: The rotating frame can flip back and forth 180 degrees or rotate 360 degrees.