Archiving seal printer

By setting up the Y-axis box and X-axis box in the archive seal printer, the multi-directional movement of the print head is achieved, and the user can install the printing interactive terminal and automatic lifting components, the limitations of traditional printers are solved and the flexibility and convenience of the equipment are improved.

CN120116623AInactive Publication Date: 2025-06-10CHANGSHA LUFANG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510601555.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional archive stamp printers cannot meet more user needs when working, and there are certain limitations. The printhead can only be moved horizontally, and the user cannot change the usage of the printing equipment according to actual conditions.

Method used

By setting the Y-axis box and X-axis box, the print head can be moved in the X-axis and Y-axis directions. Users can install print interactive terminals and automatic lifting components according to their needs, improving the flexibility and convenience of the printer.

Benefits of technology

It improves the flexibility and convenience of the archive stamp printer, and users can adjust the printing method according to actual needs to meet more usage needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an archiving seal printer, and relates to the technical field of archiving seal printers, the archiving seal printer comprises a machine base, a Y axle box and an X axle box, the machine base is used for installing the X axle box and the Y axle box, the outer side of the machine base is provided with a wire groove used for connecting a power line and a wire groove of terminal equipment, and the side edge of the machine base is provided with a control button used for controlling the printer to start and stop. By arranging the Y-axis box and the X-axis box, a user can press the Y-axis box to print so as to realize manual pressing type printing, and when the filing seal printer is used, the printing head can be controlled to move in the X-axis direction and the Y-axis direction, so that the printing efficiency is improved, and the printing efficiency is improved. And the printing interaction terminal and the automatic lifting assembly can be installed according to requirements, a user can conveniently select whether installation is conducted or not according to the requirements when the filing seal printer is used through the modularized expansion assembly, and the flexibility and convenience of the filing seal printer in the using process are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of filing seal printers, and particularly to a filing seal printer. Background Art

[0002] A filing seal printer is a device specifically used for printing filing seal numbers, mainly used to replace the traditional manual stamping method, improve the filing efficiency and the standard beauty of files. The print head of the filing seal uses thermal transfer technology, and transfers the content to the paper by heating the carbon ribbon, avoiding the problem of print head clogging, and supporting single printing and batch printing.

[0003] When a traditional filing seal printer works, it inputs printing data to the printing terminal of the printer, then places the paper on the printing device and performs printing through electric control. And the print head can usually only move horizontally, and users cannot change the usage mode of the printing device according to actual conditions, resulting in the filing seal printer being unable to meet more needs of users when in use, and there are certain limitations. Summary of the Invention

[0004] The purpose of the present invention is to solve the problem that when a traditional filing seal printer works, it inputs printing data to the printing terminal of the printer, then places the paper on the printing device and performs printing through electric control. And the print head can usually only move horizontally, and users cannot change the usage mode of the printing device according to actual conditions, resulting in the filing seal printer being unable to meet more needs of users when in use, and there are certain limitations, and a filing seal printer is proposed.

[0005] To achieve the above object, the present invention adopts the following technical solution: A filing seal printer, including a machine base, a Y-axis box and an X-axis box. The machine base is used to install the X-axis box and the Y-axis box. On the outside of the machine base, there are wire grooves for connecting the power cord and wire grooves for terminal equipment. On the side of the machine base, there is a control button for controlling the opening and closing of the printer. Pressing the control button can adjust the printer to turn off or start the power supply. Inside the machine base, there is a sliding frame for connecting the Y-axis box and a tension spring for restricting the position of the sliding frame; the Y-axis box is installed above the machine base through the sliding frame. Pushing the Y-axis box can slide inside the machine base through the sliding frame, and the tension spring can limit the moving range of the Y-axis box; the X-axis box slides on one side of the Y-axis box. An installation seat is slidably arranged on the outside of the X-axis box. The outer surface of the installation seat is connected with a print head through bolts. The print head is composed of a material box and a thermal transfer head. The material box contains a carbon ribbon inside. The content is printed on the paper by heating the carbon ribbon through the thermal transfer head. On one side of the print head, a cross laser lamp for facilitating the alignment of the printing position is installed through bolts. The bottom end of the installation seat is installed with a pressing plate through bolts.

[0006] The effects achieved by the above components are as follows: When using the archival seal printer, connect the printer to the computer via a USB data cable and power on the archival seal printer. Touch the control button on one side of the base to turn on the printer. Input the printing data through the computer terminal, then place the paper on the base. The cross laser light on one side of the mounting base will emit a cross laser beam that shines on the paper to facilitate the user to confirm the printing position. Press the Y-axis box, and the sliding frame slides inside the base to lower the mounting base, pressing the pressure plate on the paper and deforming the tension spring. The thermal transfer head inside the print head heats the carbon ribbon inside the cartridge and prints the data on the paper (the working principle of the thermal transfer head of the archival seal printer is well-known technology in this field, so it will not be elaborated here). Release the Y-axis box, and the deformation force of the tension spring will push the sliding frame to drive the Y-axis box to rise back to its original position.

[0007] Preferably, the bottom end of the base is installed with a bottom plate through bolts. The surface of the bottom plate is provided with a plurality of heat dissipation holes, and the heat dissipation holes are linearly distributed on the outer surface of the bottom plate.

[0008] The effects achieved by the above components are as follows: The heat generated inside the archival seal printer during operation can be dissipated through the heat dissipation holes in the bottom plate. Removing the bottom plate can facilitate the maintenance of the inside of the base.

[0009] Preferably, rubber cushion blocks are respectively fixed at the four corners of the bottom end of the bottom plate, and the rubber cushion blocks are used to support the bottom plate and the base.

[0010] The effects achieved by the above components are as follows: By setting the rubber cushion blocks, the friction between the archival seal printer and the placement surface when placed on the placement surface can be increased, and it is more stable and not easily accidentally slide during use.

[0011] Preferably, a first servo motor and a first transmission block are arranged inside the Y-axis box. The first servo motor is installed on one side of the inner wall of the Y-axis box through bolts. The output end of the first servo motor is provided with a first transmission component. The first transmission component consists of a transmission belt and two grooved pulleys. The first servo motor drives the grooved pulley installed on the output end to rotate to move the transmission belt. The first transmission block is located inside the transmission belt of the first transmission component. Two first linear guide rails are fixedly connected to one side of the inner wall of the Y-axis box. The outer surfaces of the two first linear guide rails are slidably connected with a first mounting plate. The first mounting plate is connected to one end of the X-axis box through bolts.

[0012] The effects achieved by the above components are as follows: Operating the first servo motor inside the Y-axis box drives the grooved pulley installed on the output end of the first servo motor to rotate to drive the transmission belt to move, so that the first transmission block moves inside the transmission belt. The first transmission block drives the first mounting plate to slide on the surface of the first linear guide rail to drive the components on the X-axis box and the mounting base to move in the Y-axis direction.

[0013] Preferably, a second servo motor and a second transmission assembly are arranged inside the Y-axis box. The action mode of the second transmission assembly is the same as that of the first transmission assembly. A side plate is fixedly connected to the inner wall of the X-axis box by bolts. The side plate and the first shelf plate inside the Y-axis box are connected by bolts to install the X-axis box on one side of the Y-axis box. A second linear guide is fixedly connected to one side of the side plate. A second shelf plate is slidably connected to the outer surface of the second linear guide. The second shelf plate is connected to one side of the mounting seat by bolts. A second transmission block is fixedly connected to the bottom end of the second shelf plate. The second transmission block is located inside the transmission belt of the second transmission assembly.

[0014] The effects achieved by the above components are as follows: Operating the second servo motor inside the Y-axis box can drive the sheave installed on the output end of the second servo motor in the second transmission assembly to rotate, causing the transmission belt to move. The transmission belt pushes the second transmission block and the second shelf plate to move, enabling the second shelf plate to slide on the surface of the second linear guide, driving the mounting seat to move in the X-axis direction on the surface of the X-axis box.

[0015] Preferably, it further includes a printing interaction terminal. The printing interaction terminal includes a support rod, a rotating block, and a touch screen. Rotating blocks are hinged to both ends of the support rod. The touch screen is installed on one side of the rotating block at the top end of the support rod by bolts. The rotating block at the bottom end of the support rod is installed on the back side of the Y-axis box by bolts.

[0016] The effects achieved by the above components are as follows: When using the archival seal printer, the rotating block at the bottom end of the support rod can also be installed on the back side of the Y-axis box by bolts. The touch screen is connected to the machine base through a USB cable. The touch screen is used to interact with the machine base to adjust and control the printing parameters. Pushing the support rod can cause the support rod to rotate through the rotating block at the bottom end, changing the angle between the support rod and the Y-axis box. Pushing the touch screen can control the touch screen to rotate through the rotating block at the top end of the support rod to adjust the angle of the touch screen for convenient user operation. The modular printing interaction terminal facilitates users to choose whether to install it according to their needs when using the archival seal printer, improving the flexibility and convenience of using the archival seal printer.

[0017] Preferably, it further includes an automatic lifting assembly. The automatic lifting assembly includes a housing, a stepper motor, and a third shelf plate. The bottom end of the housing is fixedly bolted to the outside of the machine base for carrying and protecting the stepper motor; the third shelf plate is fixed to the outside of the output end of the stepper motor and is fixedly connected to one side of the Y-axis box by bolts.

[0018] The effects achieved by the above components are as follows: When using the filing seal printer, one side of the third plate can be connected to the outside of the Y-axis box through bolts, and the bottom end of the housing can be connected to one side of the machine base through bolts. By controlling the operation of the stepping motor, the Y-axis box can be driven to move up and down at the top of the machine base for printing in an electric control manner. When used in conjunction with the printing interaction terminal, it can achieve the complete offline and automated operation of the filing seal printer. The modular automatic lifting component facilitates users to choose whether to install it according to their needs when using the filing seal printer, improving the flexibility and convenience of using the filing seal printer.

[0019] Compared with the prior art, the advantages and positive effects of the present invention are as follows: In the present invention: By setting the Y-axis box and the X-axis box, manual pressing printing can be achieved by pressing the Y-axis box. A driving component capable of controlling the print head to move in the X-axis and Y-axis directions is arranged inside the Y-axis box. When using the filing seal printer, the movement of the print head in the X-axis and Y-axis directions can be controlled, improving the flexibility of using the filing seal printer. When users use the filing seal printer, they can install the printing interaction terminal and the automatic lifting component according to their needs. The modular expansion components facilitate users to choose whether to install them according to their needs when using the filing seal printer, improving the flexibility and convenience of using the filing seal printer. Description of the Drawings

[0020] Figure 1 is a three-dimensional structural schematic diagram of the present invention; Figure 2 is a partial cross-sectional three-dimensional structural schematic diagram of the machine base of the present invention; Figure 3 is a partial cross-sectional three-dimensional structural schematic diagram of the Y-axis box of the present invention; Figure 4 is a partial cross-sectional three-dimensional structural schematic diagram of the Y-axis box of the present invention; Figure 5 is a partial cross-sectional three-dimensional structural schematic diagram of the X-axis box of the present invention; Figure 6 is a partial cross-sectional three-dimensional structural schematic diagram of the X-axis box of the present invention; Figure 7 is a three-dimensional structural schematic diagram of the housing of the present invention.

[0021] Legend: 1. Machine base; 2. Y-axis box; 3. X-axis box; 4. Mounting base; 5. Print head; 6. Cross laser lamp; 7. Pressing plate; 8. Printing interaction terminal; 9. Automatic lifting component; 101. Bottom plate; 102. Rubber cushion block; 103. Heat dissipation hole; 104. Sliding frame; 105. Tension spring; 21. First servo motor; 22. First linear guide; 23. First transmission component; 24. First transmission block; 25. First mounting plate; 26. Second servo motor; 27. Second transmission component; 31. Side plate; 32. Second linear guide; 33. Second transmission block; 34. Second mounting plate; 81. Support rod; 82. Rotating block; 83. Touch screen; 91. Outer shell; 92. Stepper motor; 93. Third mounting plate. Detailed implementation

[0022] Example 1, as Figure 1-2 shown, the archival seal printer includes a machine base 1, a Y-axis box 2 and an X-axis box 3. The machine base 1 is used to mount the X-axis box 3 and the Y-axis box 2. The outer side of the machine base 1 is provided with wire grooves for connecting power lines and wire grooves for terminal devices. A control button for controlling the opening and closing of the printer is arranged on the side of the machine base 1. Pressing the control button can adjust the printer to turn off or start the power supply. Inside the machine base 1, there is a sliding frame 104 for connecting the Y-axis box 2 and a tension spring 105 for restricting the position of the sliding frame 104; the Y-axis box 2 is installed above the machine base 1 through the sliding frame 104. Pushing the Y-axis box 2 can slide inside the machine base 1 through the sliding frame 104, and the tension spring 105 can limit the moving range of the Y-axis box 2; the X-axis box 3 slides on one side of the Y-axis box 2. A mounting base 4 is slidably arranged on the outer side of the X-axis box 3. The outer surface of the mounting base 4 is connected with a print head 5 by bolts. The print head 5 is composed of a material box and a thermal transfer head. The material box is internally filled with a carbon ribbon. The content is printed on the paper by heating the carbon ribbon through the thermal transfer head. A cross laser lamp 6 for facilitating the alignment of the printing position is installed on one side of the print head 5 by bolts. The bottom end of the mounting base 4 is installed with a pressing plate 7 by bolts. When using the archival seal printer, connect the printer to the computer through a USB data cable and connect the archival seal printer to the power supply. Touch the control button on one side of the machine base 1 to turn on the printer. Input the printing data through the computer terminal, and then place the paper on the machine base 1. The cross laser lamp 6 on one side of the mounting base 4 will emit a cross laser to irradiate on the paper to facilitate the user to confirm the printing position. Press the Y-axis box 2 to slide inside the machine base 1 through the sliding frame 104 to lower the mounting base 4 to press the pressing plate 7 on the paper and cause the tension spring 105 to deform. Heat the carbon ribbon inside the material box through the thermal transfer head inside the print head 5 and print the data on the paper (the working principle of the thermal transfer head of the archival seal printer is well-known technology in this field, so it will not be elaborated here). Release the Y-axis box 2, and the deformation force of the tension spring 105 will push the sliding frame 104 to drive the Y-axis box 2 to rise back to its original position.

[0023] Refer to Figure 1-4As shown in the figure, in this embodiment: a bottom plate 101 is installed at the bottom end of the machine base 1 through bolts. A plurality of heat dissipation holes 103 are formed on the surface of the bottom plate 101. The heat dissipation holes 103 are linearly distributed on the outer surface of the bottom plate 101. The heat generated inside the filing seal printer during operation can be dissipated through the heat dissipation holes 103 at the bottom plate 101. Removing the bottom plate 101 can facilitate the maintenance of the inside of the machine base 1. Rubber cushion blocks 102 are fixedly connected to the four corners at the bottom end of the bottom plate 101 respectively. The rubber cushion blocks 102 are used to support the bottom plate 101 and the base. By setting the rubber cushion blocks 102, the friction force between the filing seal printer and the placement surface when placed on the placement surface can be increased, and it is more stable and not prone to accidental sliding during use.

[0024] Refer to Figure 2-5 As shown in the figure, in this embodiment: a first servo motor 21 and a first transmission block 24 are arranged inside the Y-axis box 2. The first servo motor 21 is installed on one side of the inner wall of the Y-axis box 2 through bolts. A first transmission assembly 23 is arranged at the output end of the first servo motor 21. The first transmission assembly 23 is composed of a transmission belt and two grooved pulleys. The first servo motor 21 drives the grooved pulley installed on the output end to rotate to make the transmission belt move. The first transmission block 24 is located inside the transmission belt of the first transmission assembly 23. Two first linear guide rails 22 are fixedly connected to one side of the inner wall of the Y-axis box 2. A first mounting plate 25 is slidably connected to the outer surfaces of the two first linear guide rails 22. The first mounting plate 25 is connected to one end of the X-axis box 3 through bolts. Operating the first servo motor 21 inside the Y-axis box 2 drives the grooved pulley installed on the output end of the first servo motor 21 to rotate to drive the transmission belt to move, so that the first transmission block 24 moves inside the transmission belt. The first transmission block 24 drives the first mounting plate 25 to slide on the surface of the first linear guide rails 22 to drive the components on the X-axis box 3 and the mounting seat 4 to move in the Y-axis direction.

[0025] Refer to Figure 2-5As shown in the figure, in this embodiment: Inside the Y-axis box 2, there are a second servo motor 26 and a second transmission component 27. The second transmission component 27 functions in the same way as the first transmission component 23. On the inner wall of the X-axis box 3, there is a side plate 31 fixed by bolts. The side plate 31 and the first shelf plate 25 inside the Y-axis box 2 are connected by bolts to install the X-axis box 3 on one side of the Y-axis box 2. On one side of the side plate 31, there is a second linear guide 32. On the outer surface of the second linear guide 32, there is a second shelf plate 34 slidingly connected. The second shelf plate 34 is connected to one side of the mounting base 4 by bolts. At the bottom end of the second shelf plate 34, there is a second transmission block 33. The second transmission block 33 is located inside the transmission belt of the second transmission component 27. Operating the second servo motor 26 inside the Y-axis box 2 can drive the sheave installed on the output end of the second servo motor 26 in the second transmission component 27 to rotate, causing the transmission belt to move. The transmission belt pushes the second transmission block 33 and the second shelf plate 34 to move, causing the second shelf plate 34 to slide on the surface of the second linear guide 32, driving the mounting base 4 to move in the X-axis direction on the surface of the X-axis box 3.

[0026] Embodiment 2, as Figure 1-6 shown, the filing seal printer further includes a printing interaction terminal 8. The printing interaction terminal 8 includes a support rod 81, a rotating block 82, and a touch screen 83. Both ends of the support rod 81 are hinged with a rotating block 82. The touch screen 83 is installed on one side of the rotating block 82 at the top end of the support rod 81 by bolts. The rotating block 82 at the bottom end of the support rod 81 is installed on the back side of the Y-axis box 2 by bolts. When using the filing seal printer, the rotating block 82 at the bottom end of the support rod 81 can also be installed on the back side of the Y-axis box 2 by bolts, and the touch screen 83 is connected to the machine base 1 through a USB cable. Through the touch screen 83, interaction adjustment and control of printing parameters can be performed with the machine base 1. Pushing the support rod 81 can cause the support rod 81 to rotate through the rotating block 82 at the bottom end, changing the angle between the support rod 81 and the Y-axis box 2. Pushing the touch screen 83 can control the touch screen 83 to rotate through the rotating block 82 at the top end of the support rod 81 to adjust the angle of the touch screen 83 for convenient user operation. The modular printing interaction terminal 8 facilitates the user to choose whether to install it according to needs when using the filing seal printer, improving the flexibility and convenience of using the filing seal printer.

[0027] Embodiment 3, as Figure 1-7As shown in the figure, the archiving seal printer further includes an automatic lifting assembly 9. The automatic lifting assembly 9 includes a housing 91, a stepping motor 92, and a third mounting plate 93. The bottom end of the housing 91 is fixed to the outside of the machine base 1 by bolts for carrying and protecting the stepping motor 92. The third mounting plate 93 is fixed to the outside of the output end of the stepping motor 92 and is fixedly connected to one side of the Y-axis box 2 by bolts. When using the archiving seal printer, one side of the third mounting plate 93 can also be connected to the outside of the Y-axis box 2 by bolts, and the bottom end of the housing 91 can be connected to one side of the machine base 1 by bolts. By controlling the operation of the stepping motor 92, the Y-axis box 2 can be driven to move up and down at the top of the machine base 1 in an electric control manner for printing. When used in conjunction with the printing interaction terminal 8, the complete offline and automated operation of the archiving seal printer can be achieved. The modular automatic lifting assembly 9 facilitates users to choose whether to install it according to their needs when using the archiving seal printer, improving the flexibility and convenience of using the archiving seal printer.

[0028] Working principle: When using the archiving seal printer, connect the printer to the computer through a USB data cable and power on the archiving seal printer. Touch the control button on one side of the machine base 1 to turn on the printer. Input the printing data through the computer terminal, and then place the paper on the machine base 1. The cross laser lamp 6 on one side of the mounting base 4 will emit a cross laser beam to irradiate on the paper to facilitate the user to confirm the printing position. Press the Y-axis box 2 to slide inside the machine base 1 through the sliding frame 104 to lower the mounting base 4 to press the pressing plate 7 on the paper and deform the tension spring 105. The thermal transfer head inside the print head 5 heats the carbon ribbon inside the cartridge and prints the data on the paper. The working principle of the thermal transfer head of the archiving seal printer is well-known technology to those skilled in this field, so it will not be elaborated here. Release the Y-axis box 2, and the deformation force of the tension spring 105 will push the sliding frame 104 to drive the Y-axis box 2 to rise back to its original position, and then take out the paper. When cooperating with the printing interaction terminal, install the rotating block 82 at the bottom end of the support rod 81 on the back side of the Y-axis box 2 by bolts, connect the touch screen 83 to the machine base 1 through a USB cable, interact with the machine base 1 through the touch screen 83 to adjust and control the printing parameters. Push the support rod 81, and the support rod 81 can rotate through the rotating block 82 at the bottom end to change the angle between the support rod 81 and the Y-axis box 2. Push the touch screen 83, and the touch screen 83 can be controlled to rotate through the rotating block 82 at the top end of the support rod 81 to adjust the angle of the touch screen 83 for the convenience of user operation. When cooperating with the automatic lifting assembly, connect one side of the third mounting plate 93 to the outside of the Y-axis box 2 by bolts, and connect the bottom end of the housing 91 to one side of the machine base 1 by bolts. By controlling the operation of the stepping motor 92, the Y-axis box 2 can be driven to move up and down at the top of the machine base 1 in an electric control manner for printing. When used in conjunction with the printing interaction terminal 8, the complete offline and automated operation of the archiving seal printer can be achieved.

[0029] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention in other forms. Any person skilled in the relevant art may use the technical content disclosed above to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention still fall within the protection scope of the technical solution of the present invention. In the description of the present invention, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection" and "coupling" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood through specific situations.

Claims

1. An archival stamp printer, comprising a base (1), a Y-axis box (2) and an X-axis box (3), characterized in that: The machine base (1) is used to install the X-axis box (3) and the Y-axis box (2). The outer side of the machine base (1) is provided with a wire groove for connecting a power line and a wire groove for a terminal device. The side of the machine base (1) is provided with a control button for controlling the opening and closing of the printer. Pressing the control button can adjust the power of the printer to close or start. The inside of the machine base (1) is provided with a sliding frame (104) for connecting the Y-axis box (2) and a tension spring (105) for limiting the position of the sliding frame (104); the Y-axis box (2) is installed above the machine base (1) through the sliding frame (104). The Y-axis box (2) can be pushed on the machine base through the sliding frame (104). (1) slides inside, and the tension spring (105) can limit the moving range of the Y-axis box (2); the X-axis box (3) slides on one side of the Y-axis box (2), and the outer side of the X-axis box (3) is provided with a mounting seat (4), the outer surface of the mounting seat (4) is connected with a print head (5) by bolts, and the print head (5) is composed of a material box and a thermal transfer head. The material box is filled with a carbon ribbon, and the thermal transfer head heats the carbon ribbon to print the content on the paper. A cross laser light (6) is installed on one side of the print head (5) by bolts to facilitate the alignment of the printing position, and a pressure plate (7) is installed at the bottom of the mounting seat (4) by bolts.

2. The filing stamp printer according to claim 1, characterized in that: A bottom plate (101) is mounted on the bottom end of the machine base (1) via bolts, and a plurality of heat dissipation holes (103) are provided on the surface of the bottom plate (101). The heat dissipation holes (103) are linearly distributed on the outer surface of the bottom plate (101).

3. The filing stamp printer according to claim 2, characterized in that: Rubber pads (102) are respectively fixedly connected at the four corners of the bottom end of the bottom plate (101), and the rubber pads (102) are used to support the bottom plate (101) and the base.

4. The filing stamp printer according to claim 3, characterized in that: A first servo motor (21) and a first transmission block (24) are arranged inside the Y-axis box (2). The first servo motor (21) is mounted on one side of the inner wall of the Y-axis box (2) by means of bolts. A first transmission assembly (23) is arranged at the output end of the first servo motor (21). The first transmission assembly (23) is composed of a transmission belt and two groove wheels. The first servo motor (21) drives the groove wheel mounted on the output end to rotate so as to move the transmission belt. The first transmission block (24) is located on the inner side of the transmission belt of the first transmission assembly (23). Two first linear rails (22) are fixedly connected to one side of the inner wall of the Y-axis box (2). The outer surfaces of the two first linear rails (22) are slidably connected to a first frame plate (25). The first frame plate (25) is connected to one end of the X-axis box (3) by means of bolts.

5. The filing stamp printer according to claim 4, characterized in that: A second servo motor (26) and a second transmission assembly (27) are arranged inside the Y-axis box (2). The second transmission assembly (27) and the first transmission assembly (23) function in the same manner. The inner wall of the X-axis box (3) is fixedly connected to a side plate (31) by bolts. The side plate (31) is connected to a first frame plate (25) inside the Y-axis box (2) by bolts so that the X-axis box (3) is mounted on one side of the Y-axis box (2). A second linear rail (32) is fixedly connected to one side of the side plate (31). A second frame plate (34) is slidably connected to the outer surface of the second linear rail (32). The second frame plate (34) is connected to one side of the mounting seat (4) by bolts. A second transmission block (33) is fixedly connected to the bottom end of the second frame plate (34). The second transmission block (33) is located on the inner side of the transmission belt of the second transmission assembly (27).

6. The filing stamp printer according to claim 5, characterized in that: It also comprises a printing interactive terminal (8), which comprises a support rod (81), a rotating block (82) and a touch screen (83), wherein both ends of the support rod (81) are hingedly connected to the rotating block (82).

7. The filing stamp printer according to claim 6, characterized in that: The touch screen (83) is mounted on one side of the rotating block (82) at the top end of the support rod (81) by means of bolts, and the rotating block (82) at the bottom end of the support rod (81) is mounted on the back side of the Y-axis box (2) by means of bolts.

8. The filing stamp printer according to claim 7, characterized in that: It also includes an automatic lifting component (9), which includes a housing (91), a stepper motor (92) and a third frame plate (93). The bottom end of the housing (91) is fixed to the outside of the machine base (1) by bolts to support and protect the stepper motor (92).

9. The filing stamp printer according to claim 8, characterized in that: The third frame plate (93) is fixed to the outer side of the output end of the stepping motor (92) and is fixedly connected to one side of the Y-axis box (2) by bolts.

Citation Information

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