Intelligent forming device for corrugated paper lining
By setting up an angle adjustment mechanism and a cleaning mechanism on the intelligent corrugated paper forming device, the problem that existing devices cannot form curved, angled corrugated paper liners has been solved, achieving efficient and precise cutting and forming, and improving processing quality and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN YOUWEI PRINTING PACKAGING
- Filing Date
- 2025-05-06
- Publication Date
- 2026-05-08
AI Technical Summary
Existing intelligent forming devices for corrugated paper liners cannot effectively form corrugated paper liners with curved angles, affecting processing efficiency and quality.
A first angle adjustment mechanism and a second angle adjustment mechanism are set on the intelligent corrugated paper forming device to realize the X and Y angle adjustment of the cutter, and a cleaning mechanism is equipped to remove impurities at the cutting point and improve cutting accuracy.
It enables precise cutting of corrugated paper linings with different curvatures and angles, improving forming efficiency and quality, reducing the impact of impurity residue, and enhancing processing accuracy.
Smart Images

Figure CN224210073U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of corrugated paper production technology, specifically to an intelligent forming device for corrugated paper lining. Background Technology
[0002] Corrugated cardboard liners are a common packaging protection material made from corrugated cardboard, primarily used for shock absorption, impact protection, securing, and separation of products during transportation or storage. Intelligent forming of corrugated cardboard liners refers to the process of producing corrugated cardboard cushioning liners using automated, digital, and intelligent technologies. This technology is revolutionizing traditional packaging liner production methods, offering advantages such as high efficiency, precision, and environmental friendliness.
[0003] The existing intelligent forming device for corrugated paper lining (a corrugated paper lining forming device with application number 202321602762.X) uses a limiting mechanism on the upper mold of the forming device to buffer and limit the forming of corrugated paper, thereby reducing forming deviation. However, this stamping forming device cannot form corrugated paper linings that require arc-shaped angles during use, which affects the forming efficiency and quality of corrugated paper lining. Utility Model Content
[0004] In view of the above-mentioned defects or deficiencies in the prior art, it is desirable to provide an intelligent forming device for corrugated paper linings to solve the technical problem that existing intelligent forming devices for corrugated paper linings cannot form corrugated paper linings that require arc-shaped angles during use, thus affecting the forming efficiency and quality of corrugated paper linings.
[0005] According to the technical solution provided in the embodiments of this application, a corrugated paper liner intelligent forming device includes a cutting component, which is installed on the top of the cutting bed for cutting and forming the liner of corrugated cardboard.
[0006] A first angle adjustment mechanism is installed on the top of the cutter for adjusting the cutting angle of the cutter in the X direction;
[0007] The second angle adjustment mechanism is installed on top of the first angle adjustment mechanism and is used for adjusting the cutting angle of the cutter in the Y direction.
[0008] A cleaning mechanism, installed on the outside of the cutter, is used to remove impurities from the cut areas of the corrugated paper.
[0009] Furthermore, the cleaning mechanism includes several cleaning pipes and an air pump. The cleaning pipes are installed side by side and spaced apart at the bottom of the fixing rod of the cutter, and each cleaning pipe is connected to the air supply channel on the fixing rod. An air inlet pipe is installed on the air supply channel, and the air inlet pipe is connected to the air pump through the air supply pipe, so that the positive pressure gas output by the air pump is sprayed out from each of the cleaning pipes, thereby cleaning the cutting position of the cutter.
[0010] Furthermore, the first angle adjustment mechanism includes a first rotation drive and a first transmission shaft. The first transmission shaft is positioned and engaged in a positioning groove on the cutter, and the first transmission shaft is fixedly connected to the output end of the first rotation drive, so that the first rotation drive drives the cutter to rotate along the X direction for adjusting the X-axis cutting angle of the cutter.
[0011] Furthermore, the first rotation drive is mounted on the first connecting plate.
[0012] Furthermore, the second angle adjustment mechanism includes a second rotation drive, a second transmission shaft, and a second connecting plate. A connecting ear plate is installed on the top of the first connecting plate. The connecting ear plate is snapped into the connecting groove on the second connecting plate. The second transmission shaft is connected to the connecting ear plate and is fixedly connected to the output end of the second rotation drive, so that the second rotation drive drives the cutter to rotate along the Y direction for adjusting the Y-axis cutting angle of the cutter.
[0013] Furthermore, a height adjustment mechanism is installed on the top of the second angle adjustment mechanism. The height adjustment mechanism includes a first telescopic drive member and a telescopic rod. The bottom of the telescopic rod is connected to the second connecting plate, while the top of the telescopic rod is fixedly connected to the output end of the first telescopic drive member.
[0014] Furthermore, the height adjustment mechanism is installed at the bottom of the first moving mechanism. The first moving mechanism includes a third rotation drive, a gear, a moving block, a rack, and a support plate. The gear is fixedly connected to the output end of the third rotation drive, and the third rotation drive and the gear are installed on the moving block. The moving block is slidably engaged with the support plate, and the gear is meshed with the rack, so that the third rotation drive drives the moving block with the gear to move along the length direction of the support plate, thereby driving the cutter to move horizontally in the first moving mechanism.
[0015] Furthermore, the first moving mechanism is installed between the two second moving mechanisms. The second moving mechanism includes a fourth rotation drive and a lead screw. The end of the crossbar is screwed onto the lead screw, which is installed between the two support frames. The lead screw is fixedly connected to the output end of the fourth rotation drive, so that the fourth rotation drive drives the crossbar to move along the length direction of the lead screw, thereby causing the two second moving mechanisms to drive the first moving mechanism to move along the length direction of the lead screw, for the horizontal longitudinal position movement of the cutter.
[0016] Furthermore, the cutting table is also equipped with a control panel, which is electrically connected to the cutting assembly and is used to control the cutting range of the cutting assembly.
[0017] In summary, the beneficial effects of this application are as follows:
[0018] 1. By setting a first angle adjustment mechanism and a second angle adjustment mechanism on the intelligent corrugated paper forming device, the first angle adjustment mechanism adjusts the X-axis cutting angle of the cutter during the corrugated paper cutting and forming process, while the second adjustment mechanism adjusts the Y-axis cutting angle of the cutter. This allows the intelligent forming device to cut and form corrugated paper with different arcs and angles, thereby improving the forming efficiency and forming quality of the corrugated paper liner.
[0019] Second, by setting a cleaning mechanism on the cutter, the air pump on the cleaning mechanism outputs positive pressure air, which then enters the air supply channel through the air supply pipe. The positive pressure air is then sprayed out from the various cleaning pipes connected to the air supply channel to clean the cut part of the corrugated paper, avoiding the residue of impurities that would affect the accuracy of the intelligent cutting and forming of the corrugated paper lining. This improves the forming efficiency and processing quality of the intelligent forming device for the corrugated paper lining. Attached Figure Description
[0020] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0022] Figure 2 This is an exploded view of the cutting component of this utility model;
[0023] Figure 3 This is a schematic diagram of the bottom structure of the cutting component of this utility model.
[0024] The following are the labeling elements in the diagram: Cutting assembly - 100, Cutter - 110, First angle adjustment mechanism - 120, First rotation drive - 121, First transmission shaft - 122, First connecting plate - 123, Second angle adjustment mechanism - 130, Second rotation drive - 131, Second transmission shaft - 132, Second connecting plate - 133, Cleaning mechanism - 140, Cleaning pipe - 141, Air pump - 142, Height adjustment mechanism - 150, First moving mechanism - 160, Second moving mechanism - 170, Cutting bed - 200, Control panel - 210. Detailed Implementation
[0025] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the relevant utility model and not intended to limit the scope of the utility model. Furthermore, it should be noted that, for ease of description, only the parts relevant to the utility model are shown in the accompanying drawings.
[0026] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.
[0027] A smart forming device for corrugated paper lining, the structure of which is as follows: Figures 1-3 As shown, the device includes a cutting assembly 100, mounted on top of a cutting bed 200, for intelligent cutting and forming of corrugated cardboard liners; a first angle adjustment mechanism 120, mounted on top of a cutter 110, for adjusting the X-axis cutting angle of the cutter 110, so that the cutter 110 can cut the corrugated cardboard liners at different X-axis angles; a second angle adjustment mechanism, mounted on top of the first angle adjustment mechanism 120, for adjusting the Y-axis cutting angle of the cutter 110, so that the cutter 110 can cut the corrugated cardboard liners at different Y-axis angles, thereby improving the forming quality of the corrugated cardboard liners by the intelligent forming device; and a cleaning mechanism 140, mounted on the outside of the cutter 110, for removing impurities from the cut areas of the corrugated cardboard, preventing impurities from remaining and affecting the accuracy of intelligent cutting and forming of the corrugated cardboard liners, thereby improving the forming efficiency and processing quality of the corrugated cardboard liners by the intelligent forming device.
[0028] As a preferred embodiment, please refer to Figure 2 and Figure 3The cleaning mechanism 140 includes several cleaning pipes 141 and an air pump 142. The cleaning pipes 141 are installed side by side and spaced apart at the bottom of the fixed rod of the cutter 110. Each cleaning pipe 141 is connected to the air supply channel on the fixed rod. An air inlet pipe is installed on the air supply channel. The air inlet pipe is connected to the air pump 142 through the air supply pipe so that the positive pressure gas output by the air pump 142 is input into the air supply channel from the air supply pipe and then sprayed out from each cleaning pipe 141. The positive pressure gas cleans the corrugated paper cut by the cutter 110 to avoid impurities remaining and affecting the accuracy of intelligent cutting and forming of the corrugated paper lining.
[0029] As a preferred embodiment, please refer to Figure 2 The first angle adjustment mechanism 120 includes a first rotation drive 121 and a first transmission shaft 122. The first transmission shaft 122 is positioned and engaged in the positioning groove on the cutter 110. The first transmission shaft 122 is fixedly connected to the output end of the first rotation drive 121, and the first rotation drive 121 is mounted on the first connecting plate 123123. This allows the first rotation drive 121 to drive the fixedly connected first transmission shaft 122 to rotate, thereby driving the cutter 110, which is positioned and connected to the first transmission shaft 122, to rotate along the X direction. This adjusts the X-direction cutting angle of the cutter 110, allowing the cutter 110 to cut the corrugated paper at different X-direction angles, thereby improving the processing quality of the corrugated paper lining by the intelligent forming device.
[0030] As a preferred embodiment, please refer to Figure 2 The second angle adjustment mechanism includes a second rotation drive 131, a second transmission shaft 132, and a second connecting plate 133. A connecting ear plate is installed on the top of the first connecting plate 123123, and the connecting ear plate is snapped into the connecting groove on the second connecting plate 133. The second transmission shaft 132 is connected to the connecting ear plate, and the second transmission shaft 132 is fixedly connected to the output end of the second rotation drive 131, so that the second rotation drive 131 drives the second transmission shaft 132 to rotate, thereby causing the first connecting plate 123123 installed on the second transmission shaft 132 to rotate, thereby causing the cutter 110 to rotate along the Y direction, thereby adjusting the Y-direction cutting angle of the cutter 110, so that the cutter 110 can cut the corrugated paper at different Y-direction angles, thereby improving the processing quality of the corrugated paper lining by the intelligent forming device.
[0031] As a preferred embodiment, please refer to Figure 1 and Figure 2The second angle adjustment mechanism is equipped with a height adjustment mechanism 150 on its top. The height adjustment mechanism 150 includes a first telescopic drive and a telescopic rod. The bottom of the telescopic rod is connected to the second connecting plate 133, and the top of the telescopic rod is fixedly connected to the output end of the first telescopic drive, so that the first telescopic drive drives the telescopic rod to extend, thereby adjusting the cutting height of the cutter 110, so that the intelligent forming device can cut and form corrugated paper linings of different thicknesses.
[0032] As a preferred embodiment, please refer to Figure 1 and Figure 2 The height adjustment mechanism 150 is installed at the bottom of the first moving mechanism 160. The first moving mechanism 160 includes a third rotation drive, a gear, a moving block, a rack, and a support plate. The gear is fixedly connected to the output end of the third rotation drive, and the third rotation drive and the gear are installed on the moving block. The moving block is slidably engaged with the support plate, and the gear is meshed with the rack so that the third rotation drive on the first moving mechanism 160 drives the gear to rotate, thereby causing the moving plate with the gear to move along the length of the support plate, thereby adjusting the transverse cutting position of the cutter 110.
[0033] As a preferred embodiment, please refer to Figure 1 and Figure 2 The first moving mechanism 160 is installed between the two second moving mechanisms 170. The second moving mechanism 170 includes a fourth rotation drive and a lead screw. The end of the crossbar is screwed onto the lead screw, which is installed between the two support frames. The lead screw is fixedly connected to the output end of the fourth rotation drive. At the same time, the fourth rotation drive on the two second moving mechanisms 170 is activated so that each fourth rotation drive drives the corresponding lead screw to rotate synchronously, thereby moving the support plate along the length of the lead screw, thereby adjusting the horizontal longitudinal cutting position of the cutter 110, thereby improving the cutting and forming efficiency of corrugated cardboard.
[0034] As a preferred embodiment, please refer to Figure 1 The cutting table is also equipped with a control panel 210, which is electrically connected to the cutting component 100 and is used to control the cutting range of the cutting component 100. The intelligent control system plans and designs the cutting data of the corrugated paper liner, thereby improving the cutting accuracy of the corrugated paper liner and reducing the waste of corrugated paper.
[0035] The working principle of this intelligent forming device for corrugated paper lining is as follows:
[0036] In the process of cutting and forming corrugated paper linings by an intelligent forming device, traditional cutting methods can only cut vertical straight lines of corrugated paper. They cannot intelligently cut curved or angled structures, thus affecting the forming quality and efficiency of the corrugated paper lining. By setting a cutting assembly 100 with a first angle adjustment mechanism 120 and a second angle adjustment mechanism on the cutting table, the first rotation drive 121 on the first angle adjustment mechanism 120 drives the first transmission shaft 122 to rotate, thereby driving the cutter 110 mounted on the first connecting plate 123123 along the X-axis. The cutter 110 is rotated to adjust its X-axis cutting angle. Simultaneously, the second rotation drive 131 on the second angle adjustment mechanism drives the corresponding second transmission shaft 132 to rotate, thereby rotating and adjusting the first connecting plate 123123 of the first angle adjustment mechanism 120 on which the cutter 110 is mounted. This, in turn, adjusts the Y-axis cutting angle of the cutter 110, enabling the intelligent forming device to cut corrugated paper at different arcs and angles, thus improving the forming efficiency and quality of the corrugated paper liner. During the cutting process, a cleaning mechanism 140 is installed on the cutter 110. This allows the air pump 142 on the cleaning mechanism 140 to output positive pressure air, which then enters the air supply channel on the fixed rod through the air supply pipe. The positive pressure air is then sprayed out from the cleaning pipes 141 connected to the air supply channel, cleaning the cut areas of the corrugated paper and preventing impurities from remaining and affecting the accuracy of the intelligent cutting and forming of the corrugated paper lining. This improves the forming efficiency and quality of the intelligent forming device for the corrugated paper lining. Simultaneously, the first moving mechanism 160 and the second moving mechanism 170 on the cutting assembly 100 are synchronously activated under the control of the controller, causing the third rotation drive component on the first moving mechanism 160 to drive... The rotating gear causes the moving plate equipped with the gear to move along the length of the support plate, thereby adjusting the transverse cutting position of the cutter 110. At the same time, the fourth rotation drive components on the two second moving mechanisms 170 are activated, so that each fourth rotation drive component drives the corresponding lead screw to rotate synchronously, thereby causing the support plate to move along the length of the lead screw, thereby adjusting the horizontal longitudinal cutting position of the cutter 110, thus improving the cutting and forming efficiency of corrugated cardboard. The intelligent control system plans and designs the cutting data of the corrugated paper liner, thereby improving the cutting accuracy of the corrugated paper liner and reducing waste.
[0037] The above description is merely a preferred embodiment of this application and an explanation of the technical principles and solutions employed. Furthermore, the scope of the utility model involved in this application is not limited to the specific combination of the above-described technical features, but should also cover other technical solutions formed by any combination of the above-described technical features or their equivalents without departing from the inventive concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features with similar functions disclosed in this application.
Claims
1. A smart forming device for corrugated cardboard liners, comprising a cutting assembly (100) mounted on top of a cutting bed (200) for cutting and forming the liners of corrugated cardboard, characterized in that: A first angle adjustment mechanism (120) is mounted on top of the cutter (110) for adjusting the cutting angle of the cutter (110) in the X direction; The second angle adjustment mechanism (130) is installed on top of the first angle adjustment mechanism (120) and is used for adjusting the cutting angle of the cutter (110) in the Y direction; A cleaning mechanism (140), which is installed on the outside of the cutter (110), is used to remove impurities from the cuts on the corrugated paper.
2. The intelligent forming device for corrugated paper lining according to claim 1, characterized in that: The cleaning mechanism (140) includes several cleaning pipes (141) and an air pump (142). The several cleaning pipes (141) are installed side by side and spaced apart at the bottom of the fixing rod of the cutter (110). Each cleaning pipe (141) is connected to the air supply channel on the fixing rod. An air inlet pipe is installed on the air supply channel. The air inlet pipe is connected to the air pump (142) through the air supply pipe so that the positive pressure gas output by the air pump (142) is sprayed out from each cleaning pipe (141) to clean the cutting position of the cutter (110).
3. The intelligent forming device for corrugated paper lining according to claim 1, characterized in that: The first angle adjustment mechanism (120) includes a first rotation drive (121) and a first transmission shaft (122). The first transmission shaft (122) is positioned and engaged in the positioning groove on the cutter (110), and the first transmission shaft (122) is fixedly connected to the output end of the first rotation drive (121) so that the first rotation drive (121) drives the cutter (110) to rotate along the X direction for adjusting the X-direction cutting angle of the cutter (110).
4. The intelligent forming device for corrugated paper lining according to claim 3, characterized in that: The first rotation drive (121) is mounted on the first connecting plate (123).
5. The intelligent forming device for corrugated paper lining according to claim 1, characterized in that: The second angle adjustment mechanism (130) includes a second rotation drive (131), a second transmission shaft (132), and a second connecting plate (133). A connecting ear plate is installed on the top of the first connecting plate (123). The connecting ear plate is snapped into the connecting groove on the second connecting plate (133). The second transmission shaft (132) is connected to the connecting ear plate. The second transmission shaft (132) is fixedly connected to the output end of the second rotation drive (131) so that the second rotation drive (131) drives the cutter (110) to rotate along the Y direction for adjusting the Y-direction cutting angle of the cutter (110).
6. The intelligent forming device for corrugated paper lining according to claim 1, characterized in that: The second angle adjustment mechanism (130) is equipped with a height adjustment mechanism (150) on top. The height adjustment mechanism (150) includes a first telescopic drive and a telescopic rod. The bottom of the telescopic rod is connected to the second connecting plate (133), and the top of the telescopic rod is fixedly connected to the output end of the first telescopic drive.
7. The intelligent forming device for corrugated paper lining according to claim 6, characterized in that: The height adjustment mechanism (150) is mounted on the bottom of the first moving mechanism (160) so that the first moving mechanism (160) drives the cutter (110) to move horizontally.
8. The intelligent forming device for corrugated paper lining according to claim 7, characterized in that: The first moving mechanism (160) is installed between the two second moving mechanisms (170) so that the two second moving mechanisms (170) drive the first moving mechanism (160) to move along the length of the lead screw, thereby moving the horizontal longitudinal position of the cutter (110).
9. The intelligent forming device for corrugated paper lining according to claim 1, characterized in that: A control panel (210) is also provided on the cutting table. The control panel (210) is electrically connected to the cutting assembly (100) and is used to control the cutting range of the cutting assembly (100).
Citation Information
Patent Citations
Corrugated paper lining forming device
CN220075773U