High-efficiency packaging machine for extraction paper production
By designing a sliding track and a collaboratively operating drive feeding and lifting film feeding assembly, the problem of low efficiency in traditional tissue paper packaging has been solved, realizing a highly efficient and automated tissue paper packaging process, and improving production efficiency and quality.
Patent Information
- Application Number
- CN202520649773.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-08
AI Technical Summary
Traditional tissue paper packaging methods rely on manual operation or semi-automated equipment, resulting in low efficiency, high labor costs, unstable packaging quality, and a mismatch between material feeding and film feeding speeds, affecting production continuity and flexibility.
A high-efficiency packaging machine including a sliding track, a drive feeding component, and a lifting film feeding component was designed. Through the close coordination of the drive feeding component and the lifting film feeding component, the continuous operation of tissue feeding and film covering is realized. The output motor drives the gear and the self-rotating rod to drive the feeding tray and the film covering box, ensuring rapid tissue feeding and accurate film covering.
It significantly improves packaging speed, reduces manual labor input, lowers labor costs, achieves high efficiency, continuity and consistency in tissue packaging, reduces waiting time, and improves production efficiency and flexibility.
Smart Images

Figure CN223949459U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] Embodiments of the present disclosure relate to the technical field of paper processing, in particular, to a high-efficiency packing machine for tissue paper production. BACKGROUND
[0002] In the field of tissue paper production, the packing process is a crucial link in the entire production process. Traditional tissue paper packing methods rely on manual operation or semi-automatic equipment, which is extremely inefficient. Manual packing not only consumes a large amount of labor cost, but also is limited by the skill level and physical strength of workers, making it difficult to achieve large-scale and continuous production. At the same time, manual operation also has great differences in packing quality, which can lead to problems such as non-standard packaging and incomplete film covering, affecting the appearance and sales image of the product.
[0003] Early semi-automatic packing equipment, although to some extent, reduces the burden of manual work, but has obvious defects in functional integration and collaborative operation. The material loading link and film feeding and packaging link are often independent of each other, lacking effective linkage mechanism, leading to mismatch between loading and film feeding speed, frequent idling or waiting phenomenon, greatly wasting production time. Moreover, when packing different specifications of tissue paper, these devices need to manually adjust equipment parameters and component positions frequently, which is tedious and time-consuming, seriously affecting production efficiency and flexibility. SUMMARY
[0004] To overcome the above-mentioned defects, embodiments of the present disclosure provide a high-efficiency packing machine for tissue paper production, which solves the technical problem that in the related art / prior art, there are obvious defects in functional integration and collaborative operation, the material loading link and film feeding and packaging link are often independent of each other, lacking effective linkage mechanism, leading to mismatch between loading and film feeding speed, frequent idling or waiting phenomenon, greatly wasting production time.
[0005] According to one aspect, at least one embodiment of the present disclosure provides a high-efficiency packing machine for tissue paper production, comprising:
[0006] a sliding rail, a fixed stand is arranged in the sliding rail;
[0007] a driving loading assembly, the driving loading assembly is arranged inside the sliding rail;
[0008] a lifting film feeding assembly, the lifting film feeding assembly is arranged on the fixed stand;
[0009] The driving feeding assembly comprises a sliding block, the side wall of the sliding block is provided with an embedded groove, the inside of the sliding block is provided with a driving cavity, the driving cavity is provided with an output motor, the output end of the output motor is provided with a driving gear, the upper end surface of the driving gear is provided with a driving shaft, the upper end of the driving shaft is connected with a feeding disc, the inside of the feeding disc is opened with a self-rotation cavity, the inside of the self-rotation cavity is provided with a pulley, and the upper end of the pulley is provided with a self-rotation disc.
[0010] As a further technical scheme, the upper end surface of the fixed stand is provided with a self-rotation rod, the bottom surface of the self-rotation rod is inserted into the fixed stand, a driven gear is sleeved on the self-rotation rod, and the driven gear is engaged with the driving gear.
[0011] As a further technical scheme, the lifting film feeding assembly comprises a driving screw, the driving screw is arranged on the self-rotation rod, a threaded sleeve is engaged on the driving screw, the side wall of the threaded sleeve is provided with a connecting frame, the distal end of the connecting frame is provided with a lifting sleeve, the side wall of the lifting sleeve is provided with a film coating box, the inside of the lifting sleeve is provided with a positioning rod, and the bottom of the positioning rod is inserted into the ground.
[0012] As a further technical scheme, the side wall of the film coating box is provided with a film outlet, the inside of the film coating box is provided with a film outlet shaft, the bottom of the film outlet shaft is connected with a motor, the upper end of the film coating box is opened with a feeding port, the side wall of the feeding port is provided with a stepped block, the feeding port is provided with a buckling cover, the bottom surface of the buckling cover is provided with a clearance, and the top end of the driving shaft is inserted into the clearance.
[0013] As a further technical scheme, the upper end surface of the buckling cover is provided with a pull knob, the side wall of the buckling cover is provided with a mounting block, the mounting block is matched with the structure of the stepped block, and the mounting block is matched with the stepped block.
[0014] As a further technical scheme, the embedded groove is of an arc structure, the embedded groove is matched with the structure of the fixed stand, and the embedded groove is matched with the side wall of the fixed stand.
[0015] As a further technical scheme, the inside upper end of the sliding rail is provided with a locking groove, a locking rod is inserted into the locking groove, and the locking groove is corresponding to the position of the side wall of the sliding block.
[0016] As a further technical scheme, the lower end surface of the self-rotation disc is provided with a limiting sleeve, the feeding disc is opened with a driving port, the upper end of the driving shaft is inserted into the driving port, and the top of the driving shaft is inserted into the limiting sleeve.
[0017] As a further technical solution, bearings are arranged in the driving port and the limiting sleeve, and the bearings are sleeved on the driving shaft.
[0018] The embodiments of the present disclosure have the following beneficial effects:
[0019] 1. In the present disclosure, through the close cooperation of the driving feeding assembly and the lifting film feeding assembly, the continuous and efficient operation of paper extraction feeding and film covering packaging is realized. The output motor drives the driving gear to accurately drive the feeding disc to rotate and quickly convey the paper to the designated position. At the same time, the rotation of the self-rotating rod drives the lifting film feeding assembly, so that the film covering box descends and feeds out the film at the right time. The whole process is completed in one breath, effectively reducing the waiting time of each link, and compared with traditional manual or semi-automatic equipment, the packaging speed is significantly improved.
[0020] 2. In the present disclosure, the automatic operation of the equipment greatly reduces the labor input, and a large number of workers are not needed to perform the tedious paper extraction and packaging work, thereby reducing the labor cost expenditure. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the drawings needed to be used in the description of the embodiments of the present disclosure will be briefly introduced. Obviously, the drawings in the following description are only some example embodiments of the present disclosure. For those skilled in the art, other drawings can be obtained according to the content of the example embodiments of the present disclosure and the drawings without creative labor.
[0022] Figure 1 The structure diagram of an embodiment of the present disclosure;
[0023] Figure 2 The cross-sectional view of the film covering box of the present disclosure;
[0024] Figure 3 The cross-sectional view of the feeding disc of the present disclosure;
[0025] Figure 4 The cross-sectional view of the sliding block of the present disclosure;
[0026] In the figure: 1, sliding rail; 2, fixed stand; 3, drive feeding assembly; 3-1, sliding block; 3-2, embedded groove; 3-3, drive cavity; 3-4, output motor; 3-5, drive gear; 3-6, drive shaft; 3-7, feeding disc; 3-8, self-rotation cavity; 3-9, pulley; 3-10, self-rotation disc; 3-11, self-rotation rod; 3-12, driven gear; 4, lifting film feeding assembly; 4-1, drive screw; 4-2, threaded sleeve; 4-3, connecting frame; 4-4, lifting sleeve; 4-5, film coating box; 4-6, positioning rod; 4-7, film outlet; 4-8, film outlet shaft; 4-9, feeding opening; 4-10, stepped block; 4-11, buckling cover; 4-12, accommodation opening; 4-13, pull knob; 4-14, mounting block; 5, locking groove; 6, limiting sleeve; 7, drive opening. DETAILED DESCRIPTION
[0027] The present disclosure will be further described in conjunction with the drawings and examples. It can be understood that the specific examples described herein are merely intended to explain the present disclosure, but not to limit the present disclosure.
[0028] In order to make the drawing simple, only the parts related to the disclosure are shown in each drawing, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, only one of the parts with the same structure or function is shown in some drawings, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".
[0029] In this paper, it should be noted that unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrated connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0030] In the present disclosure, unless otherwise specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only means that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only means that the horizontal height of the first feature is less than that of the second feature.
[0031] In the description of the present embodiment, the terms "upper", "lower", "left", "right", and the like, orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present disclosure.
[0032] In addition, in the description of the present application, the terms "first", "second", and the like are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0033] As shown in Figures 1-4 , it shows a high-efficiency packing machine for tissue paper production of the present disclosure, comprising:
[0034] A sliding rail 1 is provided with a fixed stand 2 inside the sliding rail 1;
[0035] A driving feeding assembly 3 is arranged inside the sliding rail 1;
[0036] A lifting film feeding assembly 4 is arranged on the fixed stand 2;
[0037] The driving feeding assembly 3 includes a sliding block 3-1, the side wall of the sliding block 3-1 is provided with an embedded groove 3-2, the inside of the sliding block 3-1 is provided with a driving cavity 3-3, the driving cavity 3-3 is provided with an output motor 3-4, the output end of the output motor 3-4 is provided with a driving gear 3-5, the upper end surface of the driving gear 3-5 is provided with a driving shaft 3-6, the upper end of the driving shaft 3-6 is connected with a feeding disc 3-7, the inside of the feeding disc 3-7 is opened with a self-rotation cavity 3-8, the inside of the self-rotation cavity 3-8 is provided with a pulley 3-9, and the upper end of the pulley 3-9 is provided with a self-rotation disc 3-10.
[0038] The lifting film feeding assembly 4 includes a driving thread 4-1 arranged on a self-rotation rod 3-11, a threaded sleeve 4-2 engaged on the driving thread 4-1, a connecting frame 4-3 arranged on the side wall of the threaded sleeve 4-2, a lifting sleeve 4-4 arranged at the end of the connecting frame 4-3, a film coating box 4-5 arranged on the side wall of the lifting sleeve 4-4, a positioning rod 4-6 arranged inside the lifting sleeve 4-4, and the bottom of the positioning rod 4-6 is inserted into the ground.
[0039] In some examples, the sliding block 3-1 is installed inside the sliding rail 1, the embedded groove 3-2 on the sliding block 3-1 is attached to the side wall of the fixed stand 2 (since the embedded groove 3-2 is an arc-shaped structure and matches the structure of the fixed stand 2), to realize the stable sliding of the sliding block 3-1 in the rail and the accuracy of the relative position of the fixed stand 2, the output motor 3-4 is installed in the driving cavity 3-3 inside the sliding block 3-1, to ensure the firm installation of the motor, the power supply line of the motor is connected, the driving gear 3-5 is installed at the output end of the output motor 3-4, to ensure the firm installation of the gear and the concentricity with the motor shaft, the driving shaft 3-6 is installed on the upper end surface of the driving gear 3-5, to make the driving shaft 3-6 closely connected with the driving gear 3-5, the feeding disc 3-7 is installed on the upper end of the driving shaft 3-6, to ensure the firm installation of the feeding disc 3-7, the pulley 3-9 is installed in the self-rotation cavity 3-8 inside the feeding disc 3-7, to make the pulley 3-9 flexibly rotate in the self-rotation cavity 3-8, the self-rotation disc 3-10 is installed on the upper end of the pulley 3-9, to ensure the flexible rotation of the self-rotation disc 3-10, the self-rotation rod 3-11 is installed on the upper end surface of the fixed stand 2, to make the bottom surface of the self-rotation rod 3-11 inserted into the fixed stand 2 and firmly fixed, the driven gear 3-12 is sleeved on the self-rotation rod 3-11, to ensure that the driven gear 3-12 can flexibly rotate on the self-rotation rod 3-11 and mesh with the driving gear 3-5, and the accuracy and stability of transmission are ensured by adjusting the position and gap of the gear.
[0040] The driving thread 4-1 is installed on the self-rotation rod 3-11, to ensure that the driving thread 4-1 is firmly connected with the self-rotation rod 3-11 and accurately positioned, the threaded sleeve 4-2 is installed on the driving thread 4-1, to ensure that the threaded sleeve 4-2 can smoothly move up and down on the driving thread 4-1, the connecting frame 4-3 is installed on the side wall of the threaded sleeve 4-2, to ensure that the connecting frame 4-3 is firmly connected with the threaded sleeve 4-2, the lifting sleeve 4-4 is installed at the end of the connecting frame 4-3, to make the lifting sleeve 4-4 stably move with the connecting frame 4-3, the film coating box 4-5 is installed on the side wall of the lifting sleeve 4-4, to ensure that the film coating box 4-5 is firmly installed, the positioning rod 4-6 is installed inside the lifting sleeve 4-4, to make the bottom of the positioning rod 4-6 inserted into the ground and firmly fixed, to ensure the stability and accuracy of the lifting sleeve 4-4 during lifting, and the film outlet shaft 4-8 is installed inside the film coating box 4-5.
[0041] As shown in Figures 1-4 The upper end surface of the fixed stand 2 is provided with the self-rotation rod 3-11, the bottom surface of the self-rotation rod 3-11 is inserted into the fixed stand 2, and the driven gear 3-12 is sleeved on the self-rotation rod 3-11 and meshes with the driving gear 3-5.
[0042] In some examples, the self-rotation rod 3-11 provides the rotation stability of the driven gear 3-12.
[0043] For example, as shown in Figure 2 The side wall of the film coating box 4-5 is provided with a film outlet 4-7, the inside of the film coating box 4-5 is provided with a film outlet shaft 4-8, the bottom of the film outlet shaft 4-8 is connected with a motor, the upper end of the film coating box 4-5 is provided with a feeding port 4-9, the side wall of the feeding port 4-9 is provided with a stepped block 4-10, the feeding port 4-9 is provided with a buckle cover 4-11, the bottom surface of the buckle cover 4-11 is provided with a clearance 4-12, and the top end of the driving shaft 3-6 is inserted into the clearance 4-12.
[0044] In some examples, the film outlet 4-7 is installed on the side wall of the film coating box 4-5, ensuring that the position of the film outlet 4-7 is accurate, facilitating the output of the film, and the bottom of the film outlet shaft 4-8 is connected with a motor, ensuring that the motor is firmly connected with the film outlet shaft 4-8 and the motor can drive the film outlet shaft 4-8 to rotate.
[0045] For example, as shown in Figure 2 The upper end surface of the buckle cover 4-11 is provided with a pull button 4-13, the side wall of the buckle cover 4-11 is provided with a mounting block 4-14, the mounting block 4-14 is matched with the structure of the stepped block 4-10, and the mounting block 4-14 is matched with the stepped block 4-10.
[0046] In some examples, the feeding port 4-9 is formed at the upper end of the film coating box 4-5, the stepped block 4-10 is installed on the side wall of the feeding port 4-9, ensuring that the stepped block 4-10 is firmly installed, the buckle cover 4-11 is installed in the feeding port 4-9, the clearance 4-12 on the bottom surface of the buckle cover 4-11 corresponds to the position of the top end of the driving shaft 3-6, and the top end of the driving shaft 3-6 can be inserted into the clearance 4-12, the pull button 4-13 is installed on the upper end surface of the buckle cover 4-11, facilitating the opening and closing of the buckle cover 4-11, the mounting block 4-14 is installed on the side wall of the buckle cover 4-11, ensuring that the mounting block 4-14 is matched with the structure of the stepped block 4-10 and closely matched, and ensuring the stability of the installation of the buckle cover 4-11.
[0047] For example, as shown in Figure 1 The embedded groove 3-2 is an arc structure, the embedded groove 3-2 is matched with the structure of the fixed stand 2, the embedded groove 3-2 is matched with the side wall of the fixed stand 2, the inside of the sliding rail 1 is provided with a locking groove 5, a locking rod is inserted into the locking groove 5, and the locking groove 5 corresponds to the position of the side wall of the sliding block 3-1.
[0048] In some examples, after the locking rod is inserted into the locking groove 5, the locking rod can be blocked at the side wall of the sliding block 3-1, so that the position of the sliding block 3-1 is fixed, and the driving gear 3-5 on the sliding block 3-1 is stably meshed with the driven gear 3-12.
[0049] For example, as shown in Figure 3As shown, a limiting sleeve 6 is arranged at the lower end surface of the rotating disc 3-10, the driving opening 7 is arranged on the upper feeding disc 3-7, the upper end of the driving shaft 3-6 is inserted into the driving opening 7, the top of the driving shaft 3-6 is inserted into the limiting sleeve 6, and bearings are arranged in the driving opening 7 and the limiting sleeve 6, which are sleeved on the driving shaft 3-6.
[0050] In some examples, the limiting sleeve 6 is used to stably embed the rotating disc 3-10 into the rotating cavity 3-8, and the driving shaft 3-6 can also be connected through the limiting sleeve 6, so that the connection of the rotating disc 3-10 is more stable.
[0051] The film is added into the film coating box 4-5 through the pull knob 4-13 to open the buckle cover 4-11 from the feeding opening 4-9, and the buckle cover 4-11 is closed after the film is added, so that the mounting block 4-14 is tightly attached to the stepped block 4-10, the sealing property of the film coating box 4-5 is ensured, the output motor 3-4 is started, the output motor 3-4 drives the driving gear 3-5 to rotate, the driving gear 3-5 drives the upper feeding disc 3-7 to rotate through the driving shaft 3-6, the driving gear 3-5 is engaged with the driven gear 3-12 to drive the rotating rod 3-11 to rotate, the upper feeding disc 3-7 rotates to convey the paper to a suitable position, and the film coating and packaging are prepared, when the rotating rod 3-11 rotates, the driving screw 4-1 drives the threaded sleeve 4-2 to move up and down, the threaded sleeve 4-2 drives the lifting sleeve 4-4 and the film coating box 4-5 to move up and down through the connecting frame 4-3, when the film coating box 4-5 is lowered to a suitable position, the motor of the film output shaft 4-8 is started to output the film from the film output opening 4-7 to cover the paper, and when the sliding block 3-1 moves to a suitable position, the locking rod is inserted to lock the sliding block 3-1 on the track, so as to ensure the stability of the position of the upper feeding disc 3-7.
[0052] It should be noted that the above examples are only used to illustrate the technical solutions of the present disclosure, not to limit it, although the present disclosure has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present disclosure can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present disclosure, which should be covered in the scope of the claims of the present disclosure.
Claims
1. A high efficiency packer for tissue production, characterized by, Include: The sliding rail (1) is provided with a fixed stand (2) inside; Drive feeding assembly (3), the drive feeding assembly (3) is arranged inside the sliding rail (1); Lift film feeding assembly (4), the lift film feeding assembly (4) is arranged on the fixed stand (2); The drive feeding assembly (3) includes a sliding block (3-1), the side wall of the sliding block (3-1) is provided with an embedded groove (3-2), the inside of the sliding block (3-1) is provided with a drive cavity (3-3), the drive cavity (3-3) is provided with an output motor (3-4), the output end of the output motor (3-4) is provided with a drive gear (3-5), the upper end surface of the drive gear (3-5) is provided with a drive shaft (3-6), the upper end of the drive shaft (3-6) is connected with a feeding disc (3-7), the inside of the feeding disc (3-7) is opened with a self-rotating cavity (3-8), the inside of the self-rotating cavity (3-8) is provided with a pulley (3-9), the upper end of the pulley (3-9) is provided with a self-rotating disc (3-10).
2. The high efficiency packer for tissue production according to claim 1, characterized in that, The upper end surface of the fixed stand (2) is provided with a self-rotating rod (3-11), the bottom surface of the self-rotating rod (3-11) is inserted into the fixed stand (2), the self-rotating rod (3-11) is sleeved with a driven gear (3-12), the driven gear (3-12) is engaged with the drive gear (3-5).
3. The high efficiency packer for extraction paper production according to claim 2, characterized in that, The lift film feeding assembly (4) includes a drive screw (4-1), the drive screw (4-1) is arranged on the self-rotating rod (3-11), the drive screw (4-1) is engaged with a threaded sleeve (4-2), the side wall of the threaded sleeve (4-2) is provided with a connecting frame (4-3), the end of the connecting frame (4-3) is provided with a lifting sleeve (4-4), the side wall of the lifting sleeve (4-4) is provided with a film coating box (4-5), the inside of the lifting sleeve (4-4) is provided with a positioning rod (4-6), the bottom of the positioning rod (4-6) is inserted into the ground.
4. The high efficiency packer for extraction paper production according to claim 3, characterized in that, The side wall of the film coating box (4-5) is provided with a film outlet (4-7), the inside of the film coating box (4-5) is provided with a film outlet shaft (4-8), the bottom of the film outlet shaft (4-8) is connected with a motor, the upper end of the film coating box (4-5) is opened with a feeding port (4-9), the side wall of the feeding port (4-9) is provided with a stepped block (4-10), the feeding port (4-9) is provided with a buckle cover (4-11), the bottom surface of the buckle cover (4-11) is provided with a clearance (4-12), the top end of the drive shaft (3-6) is inserted into the clearance (4-12).
5. The high efficiency packer for extraction paper production according to claim 4, characterized in that, The upper end surface of the buckle cover (4-11) is provided with a pull knob (4-13), the side wall of the buckle cover (4-11) is provided with a mounting block (4-14), the mounting block (4-14) is matched with the structure of the stepped block (4-10), the mounting block (4-14) is matched with the stepped block (4-10).
6. The high efficiency packer for tissue production according to claim 1, wherein The embedded groove (3-2) is in arc shape, which matches with the structure of the fixed stand (2), and is attached to the side wall of the fixed stand (2).
7. The high efficiency packer for tissue production according to claim 1, wherein The inner upper end of the sliding rail (1) is provided with a locking groove (5), a locking rod is inserted into the locking groove (5), and the locking groove (5) corresponds to the position of the side wall of the sliding block (3-1).
8. The high efficiency baler of claim 1, wherein, The lower end surface of the self-rotating disc (3-10) is provided with a limiting sleeve (6), the feeding disc (3-7) is provided with a driving port (7), the upper end of the driving shaft (3-6) is inserted into the driving port (7), and the top of the driving shaft (3-6) is inserted into the limiting sleeve (6).
9. The high efficiency baler of claim 8, wherein, The driving port (7) and the limiting sleeve (6) are both provided with bearings, which are sleeved on the driving shaft (3-6).