Automatic aligning and stacking device of printer
By designing an automatic code stacking device including a rack, abutment plate, conveyor belt and side gauge components, the problem that the processing speed of the printer's automatic code stacking device in the prior art cannot keep up with the printing speed and poor adaptability to papers of different specifications is solved, and efficient automatic code stacking and stacking is achieved, reducing operational complexity and maintenance costs, and improving user experience and printing quality.
Patent Information
- Application Number
- CN202421887344.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-08-06
AI Technical Summary
When handling high-speed printing tasks, the existing printer automatic code stacking device has an unreasonable structural design, resulting in the processing speed not keeping up with the printing speed, and has poor adaptability to papers of different specifications, complex operating interface, increased the threshold for use, and high-end equipment is expensive and has a high investment cost.
An automatic code-sharing and stacking device including a frame, abutment plate, a conveyor belt and a side gauge is designed. By setting a first pass-through gap and a second pass-through gap, and making the first abutment end and the second abutment end parallel to the paper conveying direction, it is arranged interlaced to realize automatic code-sharing; the side gauge and the conveyor belt form a conveyor gap, and in conjunction with the movement of the past cardboard, it realizes stacking of papers of different sizes and types.
It improves paper conveying efficiency, realizes automatic coding and stacking, reduces manual operation requirements, reduces equipment damage and maintenance costs, adapts to different specifications of paper, simplifies operation processes, and improves user experience and print quality.
Smart Images

Figure CN222833744U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of printing and stacking, and in particular to an automatic alignment and stacking device for a printer. Background Art
[0002] In modern office and production environments, printers are important tools for document output, and their efficiency and accuracy are crucial to improving work efficiency. When traditional printers handle large amounts of printing tasks, they often require manual paper alignment and stacking, a process that is not only time-consuming and labor-intensive, but also prone to errors, affecting print quality and work efficiency.
[0003] In order to solve the above problems, some automated printing equipment has appeared in the prior art, which realizes automatic transportation and sorting of paper through various mechanical structures and control systems. However, many automated equipment can only complete simple transportation tasks, and the precise stacking and stacking functions of paper still rely on manual operation. When dealing with high-speed printing tasks, the existing automatic stacking and stacking devices often fail to keep up with the printing speed due to unreasonable structural design, affecting the overall work efficiency. Some automated equipment can only be used for paper of a specific size or type, and has poor adaptability to paper of different specifications, which limits its scope of application. The operating interface of some automated equipment is complex and requires professional personnel to operate and maintain, which increases the threshold for use. High-end automated equipment is often expensive, and the investment cost is high for small and medium-sized enterprises. Utility Model Content
[0004] The utility model provides an automatic stacking and bundling device for a printer, which solves the problem in the related art that the accurate stacking and bundling functions of papers still rely on manual operation.
[0005] The technical solution of the utility model is as follows:
[0006] A printer automatic stacking and sorting device, comprising:
[0007] frame;
[0008] an abutment plate, arranged on the frame, the abutment plate having a first paper feeding gap and a second paper feeding gap, the first paper feeding gap and the second paper feeding gap respectively having a first abutment end and a second abutment end, the first abutment end and the second abutment end are both parallel to the paper conveying direction, and the first abutment end and the second abutment end are arranged alternately;
[0009] A conveyor belt, arranged on the frame;
[0010] A side gauge is arranged on the frame, the side gauge and the conveyor belt form a conveying gap, and the first paper feeding gap and the second paper feeding gap are both connected to the conveying gap.
[0011] As a further technical solution, it also includes:
[0012] The paper feeding board is movably arranged on the frame, and the paper feeding board has a third paper feeding gap. After the paper feeding board moves, the third paper feeding gap is connected with the first paper feeding gap or the second paper feeding gap.
[0013] As a further technical solution, it also includes:
[0014] The telescopic member is arranged on the frame, and after the telescopic member is extended and retracted, it is used to drive the paperboard to move on the frame.
[0015] As a further technical solution, it also includes:
[0016] A limit plate is arranged on the abutment plate, and the limit plate is used to limit the movement of the paper board.
[0017] As a further technical solution, the side gauge comprises:
[0018] A mounting plate, arranged on the frame, the mounting plate having a plurality of first mounting slots;
[0019] A roller is obliquely arranged in the first mounting groove, and is used to rotate along with the conveyor belt. After the roller rotates, it is used to push the paper to move toward the first abutting end and the second abutting end.
[0020] As a further technical solution, the mounting plate has a second mounting groove, and the side gauge further includes:
[0021] A paper pressing ball is disposed in a floating manner in the second mounting groove.
[0022] As a further technical solution, the frame has an adjustment hole and further comprises:
[0023] There are a plurality of connecting blocks, wherein the connecting blocks are arranged at intervals on the mounting plate, the mounting plate is arranged on the frame through the connecting blocks, and the connecting blocks have threaded holes;
[0024] There are a plurality of threaded rods, which pass through the adjustment holes and are threadedly arranged in the threaded holes. After the threaded rods are rotated, they are used to adjust the distance between the frame and the connecting block.
[0025] The working principle and beneficial effects of the utility model are:
[0026] In the utility model, by setting the first paper feeding gap and the second paper feeding gap, and making the first abutting end and the second abutting end parallel to the paper conveying direction, the paper can be effectively guided to pass smoothly, reducing paper blockage and paper jam, thereby improving the overall paper conveying efficiency. The staggered arrangement design of the first abutting end and the second abutting end enables the paper to be automatically adjusted to the correct position when passing, realizing the automatic alignment function, reducing the workload of manual adjustment of the paper, and improving the efficiency of the preparation work before printing. The conveying gap formed by the side gauge and the conveyor belt, in conjunction with the first paper feeding gap and the second paper feeding gap, can effectively stack the paper, avoid the chaos of paper stacking, and ensure the neatness and consistency of the print output. Due to the design of the first paper feeding gap and the second paper feeding gap, the device can adapt to different sizes and types of paper, improving the versatility and flexibility of the device. Through the simplified structural design and automated control, the need for manual operation is reduced, thereby reducing the probability of equipment damage caused by improper operation and reducing maintenance costs. The automatic alignment and stacking functions ensure the neat arrangement of the paper, reduce the printing quality problems caused by the uneven paper, and improve the overall quality of the print output. The design of the device makes operation easier. Users only need to make simple settings to realize automatic paper conveying, alignment and stacking, which reduces the complexity of operation. Through the automatic paper handling function, the waiting time and labor intensity of users in the printing process are reduced, and the user experience is improved. Automated paper handling reduces paper waste and energy consumption caused by manual operation, which meets the energy-saving and environmental protection requirements of modern offices. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The preferred implementation modes will be described below in a clear and understandable manner with reference to the accompanying drawings to further illustrate the above-mentioned characteristics, technical features, advantages and implementation methods of the present utility model.
[0028] Figure 1 It is a schematic diagram of the structure of the utility model;
[0029] Figure 2 for Figure 1 A local enlarged structural schematic diagram;
[0030] Figure 3 for Figure 1 A schematic diagram of the local enlarged structure at B;
[0031] Figure 4 This is a schematic diagram of the structure of the clamping assembly of the utility model.
[0032] In the figure: 1, frame, 2, abutment plate, 3, first paper feeding gap, 4, second paper feeding gap, 5, first abutment end, 6, second abutment end, 7, conveyor belt, 8, side gauge, 9, paper feeding board, 10, third paper feeding gap, 11, telescopic member, 12, limit plate, 13, mounting plate, 14, first mounting groove, 15, roller, 16, second mounting groove, 17, paper pressing ball, 18, adjustment hole, 19, connecting block, 20, threaded hole, 21, threaded rod, 22, conveying gap. DETAILED DESCRIPTION
[0033] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the specific implementation methods of the utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, they can also be understood as further technical solutions without paying creative work. In some figures, components with the same structure or function are only schematically illustrated, or only one of them is marked. In this article, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".
[0034] In this article, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.
[0035] In addition, in the description of the present application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0036] Reference Figure 1 to Figure 4 , is an embodiment of the utility model, and proposes
[0037] A printer automatic stacking and sorting device, comprising:
[0038] Rack 1;
[0039] The abutment plate 2 is arranged on the frame 1, and has a first paper feeding gap 3 and a second paper feeding gap 4. The first paper feeding gap 3 and the second paper feeding gap 4 respectively have a first abutment end 5 and a second abutment end 6. The first abutment end 5 and the second abutment end 6 are parallel to the paper conveying direction, and the first abutment end 5 and the second abutment end 6 are arranged alternately.
[0040] A conveyor belt 7 is arranged on the frame 1;
[0041] The side gauge 8 is arranged on the frame 1 , and the side gauge 8 and the conveyor belt 7 form a conveying gap 22 , and the first paper feeding gap 3 and the second paper feeding gap 4 are both connected to the conveying gap 22 .
[0042] In this embodiment, by setting the first paper gap 3 and the second paper gap 4, and making the first abutment end 5 and the second abutment end 6 parallel to the paper conveying direction, the paper can be effectively guided to pass smoothly, reducing paper blockage and paper jam, thereby improving the overall paper conveying efficiency. The staggered arrangement design of the first abutment end 5 and the second abutment end 6 enables the paper to be automatically adjusted to the correct position when passing, realizing the automatic alignment function, reducing the workload of manual adjustment of the paper, and improving the efficiency of the preparation work before printing. The conveying gap 22 formed by the side gauge 8 and the conveyor belt 7, in conjunction with the first paper gap 3 and the second paper gap 4, can effectively stack the paper, avoid paper stacking chaos, and ensure the neatness and consistency of the print output. Due to the design of the first paper gap 3 and the second paper gap 4, the device can adapt to different sizes and types of paper, improving the versatility and flexibility of the device. Through simplified structural design and automated control, the need for manual operation is reduced, thereby reducing the probability of equipment damage caused by improper operation and reducing maintenance costs. The automatic alignment and stacking functions ensure the neat arrangement of the paper, reduce the printing quality problems caused by uneven paper, and improve the overall quality of the print output. The design of the device makes operation easier. Users only need to make simple settings to realize automatic paper conveying, alignment and stacking, which reduces the complexity of operation. Through the automatic paper handling function, the waiting time and labor intensity of users in the printing process are reduced, and the user experience is improved. Automated paper handling reduces paper waste and energy consumption caused by manual operation, which meets the energy-saving and environmental protection requirements of modern offices.
[0043] Furthermore, it also includes:
[0044] The paper feeding board 9 is movably arranged on the frame 1 , and has a third paper feeding gap 10 . After the paper feeding board 9 moves, the third paper feeding gap 10 is connected with the first paper feeding gap 3 or the second paper feeding gap 4 .
[0045] In this embodiment, through the movable setting of the paperboard 9, the third paper gap 10 can be connected with the first paper gap 3 or the second paper gap 4 as needed, so as to realize flexible adjustment of the paper conveying path. The movement of the paperboard 9 can adjust the stacking position of the paper during the conveying process, so that the stacking is more accurate, the stacking efficiency is improved, and the paper misalignment or confusion is reduced. The automatic movement function of the paperboard 9 further improves the automation level of the entire device, reduces manual intervention, and makes the entire printing and stacking process smoother. The user can realize the movement of the paperboard 9 and the switching of the paper conveying path through simple control instructions, which simplifies the operation process. Since the paperboard 9 can be moved according to different paper conveying requirements, the device can adapt to a wider range of application scenarios and working environments. The movable setting of the paperboard 9, if properly designed, can make maintenance and cleaning work easier and reduce the difficulty and cost of maintenance. Through the flexible adjustment of the paperboard 9, the user can quickly change the paper conveying and stacking method according to actual needs, which improves the user's experience and satisfaction. The precise control of the paperboard 9 can ensure the accuracy of the paper during the conveying and stacking process, thereby improving the overall quality of the printing job. By optimizing the paper conveying and stacking process, paper waste and energy consumption are reduced, meeting the energy-saving and environmental protection requirements of modern offices.
[0046] Furthermore, it also includes:
[0047] The telescopic member 11 is arranged on the frame 1 . After the telescopic member 11 is extended and retracted, it is used to drive the paperboard 9 to move on the frame 1 .
[0048] In this embodiment, the setting of the telescopic member 11 makes the movement of the paperboard 9 change from manual to automatic, further reducing human intervention and improving the automation level of the entire system. The telescopic action of the telescopic member 11 can accurately control the position of the paperboard 9, ensuring the accurate positioning of the paper during the conveying process, thereby improving the accuracy of paper conveying. The telescopic function of the telescopic member 11 enables the paperboard 9 to move flexibly on the frame 1, and the position of the paperboard 9 can be adjusted according to different paper types and sizes to meet different paper conveying requirements. The telescopic member 11 drives the paperboard 9 to move, and can accurately control the position and gap of the paper stacking, making the stacking more neat and reducing the situation of paper misalignment or confusion.
[0049] Furthermore, it also includes:
[0050] The limiting plate 12 is arranged on the abutting plate 2 , and is used for limiting the movement of the paperboard 9 .
[0051] In this embodiment,
[0052] The limit plate 12 can ensure the stability of the paper feeding paper 9 during movement, and prevent the paper feeding paper 9 from deviating from the predetermined position due to accidental movement, thereby ensuring the continuity and accuracy of paper transportation. The existence of the limit plate 12 can prevent the paper feeding paper 9 from shifting when it moves at high speed or is subjected to external forces, reduce the risk of paper jamming or damage, and improve the safety of the entire system.
[0053] Further, the side gauge 8 comprises:
[0054] A mounting plate 13 is disposed on the frame 1, and the mounting plate 13 has a plurality of first mounting slots 14;
[0055] The roller 15 is obliquely arranged in the first mounting groove 14 . The roller 15 is used to rotate along with the conveyor belt 7 . After the roller 15 rotates, it is used to push the paper to move toward the first abutting end 5 and the second abutting end 6 .
[0056] In this embodiment, the roller 15 is tilted in the first mounting groove 14, which can effectively push the paper to move along the first abutment end 5 and the second abutment end 6, so as to achieve more accurate paper positioning. The roller 15 rotates with the conveyor belt 7, and can continuously push the paper, reduce the pause of the paper during the conveying process, and improve the conveying efficiency. The tilted setting of the roller 15 provides a certain driving force, which helps to stably convey the paper on the conveyor belt 7 and reduce the deviation or sliding of the paper.
[0057] Further, the mounting plate 13 has a second mounting groove 16, and the side gauge 8 further includes:
[0058] The paper pressing ball 17 is disposed in the second installation groove 16 in a floating manner.
[0059] In this embodiment, the floating setting of the paper ball allows it to dynamically adjust the pressure applied to the paper according to the thickness and hardness of the paper, thereby adapting to different types and sizes of paper. The paper pressing ball 17 can adjust its contact with the paper in real time to ensure that the paper remains stable during the conveying process and reduce the deviation or sliding of the paper. Since the paper pressing ball 17 can float, it can apply appropriate pressure according to the actual state of the paper to avoid excessive pressure causing damage or deformation of the paper.
[0060] Further, the frame 1 has an adjustment hole 18 and further comprises:
[0061] There are a plurality of connecting blocks 19, which are arranged on the mounting plate 13 at intervals. The mounting plate 13 is arranged on the frame 1 through the connecting blocks 19, and the connecting blocks 19 have threaded holes 20;
[0062] There are a plurality of threaded rods 21 , which pass through the adjustment hole 18 and are threadedly arranged in the threaded hole 20 . After the threaded rods 21 are rotated, they are used to adjust the distance between the frame 1 and the connecting block 19 .
[0063] In this embodiment, the distance between the frame 1 and the connecting block 19 can be precisely adjusted by passing the threaded rod 21 through the adjustment hole 18 and threading it in the threaded hole 20, providing flexible adjustment options to accommodate paper of different sizes and thicknesses. The design of the adjustment hole 18 and the threaded rod 21 allows the user to adjust the position of the side gauge 8 according to actual needs, thereby enhancing the adaptability of the device to paper of different specifications. The distance is adjusted by rotating the threaded rod 21, which simplifies the installation and adjustment process, making the device setting more convenient and quick. The precise control of the threaded rod 21 can ensure that the distance between the connecting block 19 and the frame 1 is adjusted to the most suitable position, thereby improving the accuracy of the overall operation. Through the threaded connection, it can be ensured that the connecting block 19 is firmly fixed on the frame 1, thereby enhancing the stability of the entire device during operation. The design of the threaded rod 21 simplifies the installation and disassembly process of the connecting block 19, facilitates maintenance and replacement, and reduces maintenance time and cost.
[0064] It should be noted that the above embodiments are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model has been described in detail with reference to the preferred embodiments, ordinary technicians in the field should understand that the technical solution of the utility model can be modified or replaced by equivalents without departing from the spirit and scope of the technical solution of the utility model, which should be included in the scope of the claims of the utility model.
Claims
1. A printer automatic stacking and sorting device, characterized in that: include: Rack (1); An abutment plate (2) is arranged on the frame (1), the abutment plate (2) having a first paper feeding gap (3) and a second paper feeding gap (4), the first paper feeding gap (3) and the second paper feeding gap (4) respectively having a first abutment end (5) and a second abutment end (6), the first abutment end (5) and the second abutment end (6) are both parallel to the paper conveying direction, and the first abutment end (5) and the second abutment end (6) are arranged alternately; A conveyor belt (7) arranged on the frame (1); A side gauge (8) is arranged on the frame (1); the side gauge (8) and the conveyor belt (7) form a conveying gap (22); and the first paper feeding gap (3) and the second paper feeding gap (4) are both connected to the conveying gap (22).
2. The automatic stacking and sorting device for a printer according to claim 1, characterized in that: Also includes: A paper feeding paperboard (9) is movably arranged on the frame (1), and the paper feeding paperboard (9) has a third paper feeding gap (10). After the paper feeding paperboard (9) moves, the third paper feeding gap (10) is connected to the first paper feeding gap (3) or the second paper feeding gap (4).
3. The automatic stacking and sorting device for a printer according to claim 2, characterized in that: Also includes: A telescopic member (11) is arranged on the frame (1); after the telescopic member (11) is extended or retracted, it is used to drive the paperboard (9) to move on the frame (1).
4. The automatic stacking and sorting device for a printer according to claim 2, characterized in that: Also includes: A limiting plate (12) is arranged on the abutting plate (2), and the limiting plate (12) is used to limit the movement of the paper board (9).
5. The automatic stacking and sorting device for a printer according to claim 1, characterized in that: The side gauge (8) comprises: A mounting plate (13) arranged on the frame (1), wherein the mounting plate (13) has a plurality of first mounting grooves (14); A roller (15) is obliquely arranged in the first mounting groove (14), and the roller (15) is used to rotate along with the conveying belt (7). After the roller (15) rotates, it is used to push the paper to move toward the first abutting end (5) and the second abutting end (6).
6. The automatic stacking and sorting device for a printer according to claim 5, characterized in that: The mounting plate (13) has a second mounting groove (16), and the side gauge (8) further comprises: A paper pressing ball (17), wherein the paper pressing ball (17) is arranged in a floating manner in the second mounting groove (16).
7. The automatic alignment and stacking device for a printer according to claim 6, characterized in that: The frame (1) has an adjustment hole (18) and further comprises: A plurality of connecting blocks (19), each of which is arranged at intervals on the mounting plate (13); the mounting plate (13) is arranged on the frame (1) through the connecting blocks (19); and the connecting blocks (19) have threaded holes (20); There are a plurality of threaded rods (21), wherein the threaded rods (21) pass through the adjustment holes (18) and are threadedly arranged in the threaded holes (20). After the threaded rods (21) are rotated, they are used to adjust the distance between the frame (1) and the connecting block (19).