Pressing type intelligent stamping machine

By introducing a height adjustment structure into the stamp stamping machine, the problem of fixture diversity caused by differences in stamp heights was solved, and unified adaptation of stamps and cost control were achieved.

CN223478595UActive Publication Date: 2025-10-28GUANGDONG HOPSON INFORMATION TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423187393.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-10-28
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing stamp stamping machines require the design of various specifications of clamps based on the differences in stamp heights, which leads to increased costs.

Method used

A press-type intelligent stamping machine is designed. The height position of the clamp is adjusted through the height adjustment structure to adapt to the installation of seals of different heights and reduce the number of clamp types.

Benefits of technology

It achieves uniform adaptation of seals of different heights, reduces the types of fixtures, controls costs, and improves the intelligence and convenience of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223478595U_ABST
    Figure CN223478595U_ABST
Patent Text Reader

Abstract

The pressing type intelligent stamping machine comprises a shell, a pressing assembly and a clamp, the shell is provided with an installation cavity, and one side face of the shell is provided with an opening communicated with the installation cavity; the pressing assembly slidably penetrates through the side wall, away from the opening, of the mounting cavity, a first reset structure is arranged between the pressing assembly and the shell, the first reset structure is used for driving the pressing assembly to move away from the opening, the pressing assembly comprises a pressing piece and a mounting frame, and the mounting frame is movably mounted on the pressing piece; the end, close to the opening, of the mounting frame is located in the mounting cavity, and a height adjusting structure is arranged between the mounting frame and the pressing piece and used for adjusting the distance between the end, close to the opening, of the mounting frame and the opening. The clamp is used for clamping a seal and connected to the end, close to the opening, of the mounting frame. According to the press type intelligent stamping machine, the height position of the clamp can be adjusted according to the height of the stamp, and therefore the press type intelligent stamping machine is suitable for installation of stamps with different heights.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of stamping machine technology, and in particular to a press-type intelligent stamping machine. Background Technology

[0002] Stamping machines are used for security management and the use of official seals, financial seals, and other stamps. Some existing stamping machines include a housing and a pressing component. The housing has an installation cavity, and one end of the pressing component is inserted into the cavity. A return spring is installed between the pressing component and the housing. A clamp is installed at one end of the pressing component, holding the stamp. When using the stamping machine, the user presses the pressing component, moving the stamp to the opening of the installation cavity for stamping. After the user releases the pressing component, the return spring drives the pressing component, moving the clamp and stamp away from the opening of the installation cavity. Because different stamps have different heights, existing stamping machines require clamps of varying heights to ensure that the distance between the stamping surface and the opening of the installation cavity is consistent after the stamp is installed. Therefore, existing stamping machines typically require the design and production of clamps of various specifications, increasing costs. Utility Model Content

[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a press-type intelligent stamping machine that can adjust the height of the clamp according to the height of the stamp, thereby adapting to the installation of stamps of different heights and helping to control costs.

[0004] According to an embodiment of the present invention, a press-type intelligent stamping machine includes a housing, a pressing assembly, and a clamp. The housing has a mounting cavity, and one side of the housing has an opening communicating with the mounting cavity. The pressing assembly is slidably disposed on the side wall of the mounting cavity away from the opening. A first reset structure is provided between the pressing assembly and the housing, the first reset structure being used to drive the pressing assembly to move away from the opening. The pressing assembly includes a pressing element and a mounting frame. The mounting frame is movably mounted on the pressing element, and one end of the mounting frame near the opening is located within the mounting cavity. A height adjustment structure is provided between the mounting frame and the pressing element, the height adjustment structure being used to adjust the distance between the end of the mounting frame near the opening and the opening. The clamp is used to clamp a stamp, and the clamp is connected to the end of the mounting frame near the opening.

[0005] The press-type intelligent stamping machine according to the embodiments of the present utility model has at least the following beneficial effects: The press-type intelligent stamping machine provided by the present utility model can adjust the distance between the end of the mounting frame near the opening and the opening through the height adjustment structure according to the height of the official seal to be installed, thereby adjusting the height position of the clamp relative to the opening of the mounting cavity, so as to adapt to the installation needs of seals of different heights, reduce the number of types of clamps required, and control costs.

[0006] According to some embodiments of the present invention, the housing is provided with a control device, the height adjustment structure includes a drive device, the drive device is tractively connected to the mounting bracket, the drive device is electrically connected to the control device, and the control device is used to control the drive device to drive the mounting bracket to move closer to or away from the opening.

[0007] According to some embodiments of the present invention, the control device is electrically connected to a position detection element, which is used to detect the position of the stamping surface of the stamp on the fixture, and the control device can control the drive device to work according to the signal of the position detection element.

[0008] According to some embodiments of the present invention, the pressing member is provided with a mounting hole, the driving device includes a first motor and a lead screw, the first motor is mounted in the mounting hole, the output shaft of the first motor is connected to the lead screw, one end of the mounting bracket is slidably inserted into the mounting hole, and one end of the mounting bracket is screwed to the lead screw.

[0009] According to some embodiments of the present invention, the control device is electrically connected to a camera, the camera is mounted on an adjustment assembly, the adjustment assembly is mounted on the housing, and the adjustment assembly is used to raise, lower, rotate, and adjust the camera.

[0010] According to some embodiments of this utility model, the adjustment assembly includes an outer cylinder, a first rod, a second rod, and a swing member. The outer cylinder is inserted into the housing. The first rod, the second rod, and the swing member are all slidably installed inside the outer cylinder. One end of the swing member is rotatably connected to the first rod, and the other end of the swing member is rotatably connected to the second rod. The rotation axis between the swing member and the first rod is along the radial direction or the axial direction of the outer cylinder. The rotation axis between the swing member and the second rod is perpendicular to the rotation axis between the swing member and the first rod. The camera is installed on the second rod. A portion of the first rod, the second rod, and the swing member can slide in and out of the outer cylinder.

[0011] According to some embodiments of the present invention, the first rod is connected to a height positioning member, which abuts against the inner wall of the outer cylinder to position the first rod.

[0012] According to some embodiments of the present invention, an automatic ink-applying mechanism is provided inside the mounting cavity, which is used to apply ink to the stamp on the fixture.

[0013] According to some embodiments of this utility model, the automatic ink-applying mechanism includes an ink-applying component located within the mounting cavity. One end of the ink-applying component is rotatably mounted on the side wall of the mounting cavity. The ink-applying component has an ink-applying position and a clearance position. When the ink-applying component is in the ink-applying position, it is located on the side of the clamp near the opening and is opposite to the clamp. When the ink-applying component is in the clearance position, it clearances the clamp. The pressing member can push the ink-applying component to rotate from the ink-applying position to the clearance position. The pressing member is drively connected to the ink-applying component, or a second reset structure is provided between the ink-applying component and the housing, so that the pressing member or the second reset structure can drive the ink-applying component to rotate from the clearance position to the ink-applying position.

[0014] According to some embodiments of the present invention, the housing is provided with a control device and a locking device. The control device is electrically connected to the locking device. When the first reset structure drives the pressing member to return to a position away from the opening, the control device can control the locking device to lock the pressing member.

[0015] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0017] Figure 1 This is a schematic diagram of a push-to-press intelligent stamping machine according to an embodiment of the present utility model;

[0018] Figure 2 for Figure 1 The diagram shows a cross-sectional view of a press-type intelligent stamping machine (with the ink-applying part in the ink-applying position when not stamping);

[0019] Figure 3 for Figure 2 The diagram shows a cross-sectional view of a press-type intelligent stamping machine (with the ink-applying part in a non-collision position during stamping);

[0020] Figure 4 for Figure 2 The image shows a cross-sectional view of the push-button smart stamping machine on section AA.

[0021] Figure 5 for Figure 1 A cross-sectional view of a push-button smart stamping machine (with a stamp of another height installed);

[0022] Figure 6 for Figure 1 An external schematic diagram of a push-button smart stamping machine (with the push-button cover hidden);

[0023] Figure 7 for Figure 1 An exploded view showing the components of the press-type intelligent stamping machine, including the pressing assembly and clamps.

[0024] Figure 8 for Figure 1 A schematic diagram of the camera and adjustment components of a press-type smart stamping machine is shown;

[0025] Figure 9 for Figure 8 An exploded view of the camera and adjustment components of the push-to-press smart stamping machine is shown.

[0026] Figure label:

[0027] Housing 100, mounting cavity 110, opening 111, rear cover 120, transparent cover 121, pressing component 210, mounting hole 211, first transmission part 212, transmission column 213, mounting bracket 220, insertion slot 221, pressing cover 230, clamp 300, receiving cavity 310, drive device 400, first motor 410, lead screw 420, control device 510, position detection element 520, display screen 530, microphone 540, camera 610, adjustment component 620, outer cylinder 621, first rod 622, second rod 623, swing component 624, rotating ring 625, height positioning component 626, automatic ink application mechanism 700, ink application component 710, second transmission part 711, transmission groove 712, ink cotton 720, seal locking device 810, cover locking device 820, seal 900. Detailed Implementation

[0028] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0029] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0030] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.

[0031] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0032] Reference Figure 1 , Figure 2 , Figure 4 and Figure 5 According to an embodiment of the present invention, a press-type intelligent stamping machine includes a housing 100, a pressing component, and a clamp 300. The housing 100 is provided with a mounting cavity 110, and one side of the housing 100 is provided with an opening 111 communicating with the mounting cavity 110. The pressing component is slidably disposed on the side wall of the mounting cavity 110 away from the opening 111. A first reset structure (not shown in the figure) is provided between the pressing component and the housing 100. The first reset structure is used to drive the pressing component to move away from the opening 111. The pressing assembly includes a pressing member 210 and a mounting bracket 220. The mounting bracket 220 is movably mounted on the pressing member 210. One end of the mounting bracket 220 near the opening 111 is located inside the mounting cavity 110. A height adjustment structure is provided between the mounting bracket 220 and the pressing member 210. The height adjustment structure is used to adjust the distance between the end of the mounting bracket 220 near the opening 111 and the opening 111. A clamp 300 is used to clamp the stamp 900. The clamp 300 is connected to the end of the mounting bracket 220 near the opening 111.

[0033] Reference Figure 4 and Figure 5The press-type intelligent stamping machine provided by this utility model can adjust the distance between the end of the mounting frame 220 near the opening 111 and the opening 111 according to the height of the official seal to be installed. This adjusts the height position of the clamp 300 relative to the opening 111 of the mounting cavity 110, so that the distance between the stamping surface of the stamp 900 and the opening 111 is consistent after the installation of stamps 900 of different heights. This adapts to the installation needs of stamps 900 of different heights, reduces the number of types of clamps 300 required, and controls costs.

[0034] Reference Figure 4 and Figure 5 In practice, the same clamp 300 can be used to clamp stamps 900 of different heights, eliminating the need to select the appropriate clamp 300 based on the height of the stamp 900 and avoiding the situation where the wrong clamp 300 is selected, which would require the stamp 900 to be disassembled and reassembled.

[0035] In the specific implementation process, the fixture 300 can be integrally connected with the mounting frame 220, or the fixture 300 and the mounting frame 220 can be detachably connected, and the fixture 300 and the mounting frame 220 can be formed separately.

[0036] Reference Figure 2 , Figure 4 and Figure 6 According to some embodiments of this utility model, the housing 100 is provided with a control device 510, and the height adjustment structure includes a drive device 400. The drive device 400 is connected to the mounting bracket 220 in a transmission manner, and the drive device 400 is electrically connected to the control device 510. The control device 510 is used to control the drive device 400 to drive the mounting bracket 220 to move closer to or away from the opening 111. With the above configuration, the drive device 400 can be controlled by the control device 510 to drive the mounting bracket 220 to move, thereby adjusting the height position of the clamp 300 relative to the opening 111 of the mounting cavity 110. There is no need to manually operate the mounting bracket 220 to move, making it more convenient to use.

[0037] Reference Figure 2 , Figure 4 and Figure 6 According to some embodiments of this utility model, the control device 510 is electrically connected to a position detection element 520. The position detection element 520 is used to detect the position of the stamping surface of the stamp 900 on the fixture 300. The control device 510 can control the drive device 400 to work according to the signal from the position detection element 520. With the above configuration, after stamps 900 of different heights are installed on the fixture 300, the control device 510 can control the drive device 400 to work according to the signal from the position detection element 520, thereby completing the adjustment of the height position of the fixture 300. The entire adjustment process is completed automatically. Therefore, the press-type intelligent stamping machine provided by this utility model is more convenient and more intelligent to use.

[0038] In some embodiments, the position detection element 520 may include an infrared position sensor, which can accurately detect the position of the stamp 900. In other embodiments, the position detection element 520 may also adopt other configuration methods. For example, the position detection element 520 may include a CCD sensor, which takes pictures to obtain images, and then the control device 510 processes the images to obtain the position of the stamping surface of the stamp 900 on the fixture 300.

[0039] Reference Figure 2 and Figure 7 According to some embodiments of this utility model, the pressing member 210 is provided with a mounting hole 211. The driving device 400 includes a first motor 410 and a lead screw 420. The first motor 410 is mounted in the mounting hole 211, and the output shaft of the first motor 410 is connected to the lead screw 420. One end of the mounting bracket 220 is slidably inserted into the mounting hole 211, and one end of the mounting bracket 220 is screwed to the lead screw 420. Thus, the first motor 410 can drive the lead screw 420 to rotate, thereby driving the mounting bracket 220 to slide. With the above arrangement, the sliding of the mounting bracket 220 can be precisely controlled, and the lead screw 420 and the mounting bracket 220 can be self-locking. In addition, with the above arrangement, the driving device 400 can be completely installed in the pressing member 210 without occupying additional installation space, which is beneficial for controlling the size of the press-type intelligent stamping machine and making the structure of the press-type intelligent stamping machine more compact.

[0040] In the specific implementation process, the first motor 410 can be set as a stepper motor or a servo motor, and the specific model is not limited here.

[0041] It is conceivable that the aforementioned drive device 400 can also be configured in other ways, such as a telescopic cylinder, an electromagnetic linear drive device 400, etc.

[0042] It should be noted that the height adjustment structure described above can also adopt other settings. For example, the height adjustment structure includes a threaded hole on the pressing member 210 and a threaded connection part on one end of the mounting bracket 220. The threaded connection part is screwed into the threaded hole. In this case, the pressing member 210 is rotatably mounted on the housing 100. When the position of the mounting bracket 220 needs to be adjusted, the pressing member 210 can be manually rotated. During this process, the first reset structure can restrict the movement of the pressing member 210, so that the pressing member 210 can drive the mounting bracket 220 to slide. Thus, the height position of the end of the mounting bracket 220 near the opening 111 relative to the opening 111 of the mounting cavity 110 can be adjusted by sliding.

[0043] Reference Figure 2 and Figure 6 According to some embodiments of the present invention, one side wall of the mounting cavity 110 has a transparent cover 121, so that the user can observe from the transparent cover 121 whether the position of the stamp 900 on the clamp 300 is adjusted accurately.

[0044] Reference Figure 2 According to some embodiments of this utility model, the clamp 300 is provided with a receiving cavity 310, and an elastic sleeve is provided within the receiving cavity 310. The elastic sleeve is used to hold the stamp 900. Thus, the clamp 300 clamps and fixes the stamp 900 through the elastic sleeve. With the above arrangement, it is convenient and simple for the clamp 300 to clamp the stamp 900. The elastic sleeve can be made of silicone or rubber.

[0045] In other embodiments, the clamp 300 may also clamp the stamp 900 in other ways. For example, the elastic sleeve described above may be replaced with two or more locking bolts. The locking bolts are inserted through and screwed into the side wall of the receiving cavity 310. Thus, the stamp 900 can be inserted between the locking bolts, and then the locking bolts are tightened so that each locking bolt abuts against the stamp 900, thereby fixing the stamp 900 to the clamp 300.

[0046] Reference Figure 1 , Figure 8 and Figure 9 According to some embodiments of this utility model, the control device 510 is electrically connected to a camera 610. The camera 610 is mounted on an adjustment assembly 620, which is mounted on the housing 100. The adjustment assembly 620 is used to raise, lower, and rotate the camera 610. With the above settings, users can use the camera 610 to record the process of using the press-type intelligent stamping machine by taking photos or videos. During the recording process, the camera 610 can be adjusted to the desired position or the shooting angle of the camera 610 can be adjusted by the adjustment assembly 620 to better meet the recording needs.

[0047] Reference Figure 1 , Figure 8 and Figure 9According to some embodiments of the present invention, the adjustment assembly 620 includes an outer cylinder 621, a first rod 622, a second rod 623, and a swing member 624. The outer cylinder 621 is inserted into the housing 100. The first rod 622, the second rod 623, and the swing member 624 are all slidably installed inside the outer cylinder 621. One end of the swing member 624 is rotatably connected to the first rod 622, and the other end of the swing member 624 is rotatably connected to the second rod 623. The camera 610 is installed on the second rod 623. A portion of the first rod 622, the second rod 623, and the swing member 624 are slidable. The movement of the camera 610 into and out of the outer cylinder 621 serves two purposes: firstly, the outer cylinder 621 can be used to house the first rod 622 and the second rod 623; secondly, by sliding the first rod 622 within the outer cylinder 621, the height of the camera 610 can be adjusted. The axis of rotation between the swing member 624 and the first rod 622 is along the radial direction or the axial direction of the outer cylinder 621, while the axis of rotation between the swing member 624 and the second rod 623 is perpendicular to the axis of rotation between the swing member 624 and the first rod 622. Thus, the camera 610 can be adjusted by swinging up and down and rotating horizontally to change its shooting angle and position.

[0048] Reference Figure 8 and Figure 9 In the specific implementation process, the rotation axis between the first rod 622 and the swing member 624 is along the radial direction of the outer cylinder 621. At this time, the first rod 622 can limit the swing member 624, so that the rotation range of the swing member 624 relative to the first rod 622 is less than 360 degrees. In order to make the rotation range of the second rod 623 relative to the swing member 624 less than 360 degrees, the second rod 623 and the swing member 624 are rotatably connected by a rotating ring 625. The rotation axis between the second rod 623 and the swing member 624 is along the axial direction of the rotating ring 625, and a limit structure is provided between the rotating ring 625 and the second rod 623 or the swing member 624. Through the above settings, the wire of the camera 610 can be prevented from being twisted during the rotation and adjustment of the camera 610.

[0049] Reference Figure 9According to some embodiments of this utility model, a first rod 622 is connected to a height positioning member 626. The height positioning member 626 abuts against the inner wall of the outer cylinder 621 to position the first rod 622. Therefore, when sliding the first rod 622 to adjust the height of the camera 610, the first rod 622 can be positioned by the damping force between the height positioning member 626 and the outer cylinder 621, preventing the first rod 622 from sliding automatically and thus maintaining the height of the camera 610. Similarly, the rotation angle between the first rod 622 and the swing member 624 can be maintained by the damping force between the first rod 622 and the swing member 624, and the rotation angle between the second rod 623 and the swing member 624 can be maintained by the damping force between the second rod 623 and the swing member 624.

[0050] It should be noted that the aforementioned adjustment component 620 can be set to an automatic adjustment mode. For example, a second motor can be installed inside the outer cylinder 621, and the second motor is screw-driven with the first rod 622. Thus, the first rod 622 can be driven to slide by the second motor. At this time, a self-locking mechanism is formed between the second motor and the first rod 622, and the aforementioned height positioning component 626 is not required.

[0051] Reference Figure 2 and Figure 3 According to some embodiments of this utility model, an automatic ink application mechanism 700 is provided inside the mounting cavity 110. The automatic ink application mechanism 700 is used to apply ink to the stamp 900 on the clamp 300. Therefore, compared with the manual ink application method, the press-type intelligent stamping machine provided by this utility model can automatically apply ink to the stamp 900 on the clamp 300 through the automatic ink application mechanism 700, which is convenient to use and improves ink application efficiency.

[0052] Reference Figure 2 and Figure 3According to some embodiments of the present invention, the automatic ink-applying mechanism 700 includes an ink-applying component 710 located in the mounting cavity 110. One end of the ink-applying component 710 is rotatably mounted on the side wall of the mounting cavity 110. The ink-applying component 710 has an ink-applying position and a clearance position. When the ink-applying component 710 is in the ink-applying position, it is located on the side of the clamp 300 near the opening 111 and is opposite to the clamp 300. When the ink-applying component 710 is in the clearance position, it clears the clamp 300. The pressing component 210 can push the ink-applying component 710 to rotate from the ink-applying position to the clearance position. The pressing component 210 is connected to the ink-applying component 710 in a transmission manner, or a second reset structure is provided between the ink-applying component 710 and the housing 100, so that the pressing component 210 or the second reset structure can drive the ink-applying component 710 to rotate from the clearance position to the ink-applying position. Therefore, before or during the pressing of the pressing member 210, the stamp 900 on the clamp 300 first contacts the ink-applying member 710 in the ink-applying position to apply ink to the stamp 900. In the subsequent process of the pressing member 210 driving the clamp 300 and the stamp 900 toward the opening 111 of the mounting cavity 110, the pressing member 210 directly or indirectly pushes the ink-applying member 710 to rotate from the ink-applying position to the clearance position, so that the clamp 300 can carry the stamp 900 to the opening 111 of the mounting cavity 110 for stamping. After stamping, the pressing member 210 drives the clamp 300 and the stamp 900 back to the position away from the opening 111 of the mounting cavity 110. At the same time, the pressing member 210 or the second reset structure drives the ink-applying member 710 to return from the clearance position to the ink-applying position so that the ink-applying member 710 can apply ink to the stamp 900 again. With the above settings, the automatic ink application mechanism 700 has a simple structure and can automatically complete the ink application work, eliminating the need for staff to apply ink to the stamp 900. This makes the intelligent stamping machine more convenient to use and more efficient.

[0053] Reference Figure 2 In the specific implementation process, the ink-applying component 710 is equipped with an ink cotton 720, which stores ink. The ink-applying component 710 applies ink to the stamp 900 through the ink cotton 720.

[0054] Reference Figure 2 , Figure 6 , Figure 7According to some embodiments of this utility model, the pressing member 210 is connected to the ink-applying member 710 via a transmission connection. The housing 100 is provided with a locking device 810, and the control device 510 is electrically connected to the locking device 810. When the first reset structure drives the pressing member 210 to return to a position away from the opening 111, the control device 510 can control the locking device 810 to lock the pressing member 210. In the absence of authorization from the control device 510, the locking device 810 locks the pressing member 210, making it impossible to press. At the same time, since the ink-applying member 710 is connected to the pressing member 210 via a transmission connection, it can also be locked in the ink-applying position. At this time, the ink-applying member 710 blocks the stamp 900, preventing others from removing the stamp 900 from the mounting cavity 110, thereby ensuring the safe use of the stamp 900. When the control device 510 is authorized, the control device 510 can control the locking device 810 to unlock the pressing element 210, thereby allowing the user to press the pressing element 210 to perform a stamping operation.

[0055] Reference Figure 2 and Figure 7 Specifically, when the pressing member 210 and the ink-applying member 710 are connected by a transmission mechanism, the pressing member 210 is provided with a first transmission part 212, and the ink-applying member 710 is provided with a second transmission part 711. One of the first transmission part 212 and the second transmission part 711 is provided with a transmission groove 712, and the other is provided with a transmission column 213. The transmission column 213 is inserted into the transmission groove 712 and can slide along the transmission groove 712. Thus, after the stamping is completed, when the pressing member 210 returns to its initial position, the pressing member 210 can drive the ink-applying member 710 to rotate from the avoidance position to the ink-applying position, so that the ink-applying member 710 can apply ink to the stamp 900 again.

[0056] It is conceivable that when a second reset structure is provided between the ink-applying component 710 and the housing 100, the ink-applying component 710 and the pressing component 210 do not need to be connected by transmission. At this time, the ink-applying component 710 in the ink-applying position can be locked by the locking device 810, thereby ensuring the safety of the stamp 900.

[0057] In the specific implementation process, the control device 510 can obtain authorization through one or two of the following methods: facial recognition, fingerprint recognition, password input, network verification, etc. After obtaining authorization, the control device 510 controls the locking device 810 to unlock. After the user completes the stamping, the control device 510 controls the locking device 810 to lock again.

[0058] In other embodiments, the automatic ink application mechanism 700 described above may also be configured in other ways. For example, the automatic ink application mechanism 700 includes an ink column and a telescopic cylinder. The ink column is rotatably mounted on the piston rod of the telescopic cylinder. The telescopic cylinder can drive the ink column to move in a direction perpendicular to the moving direction of the clamp 300. Thus, when ink application is required, the telescopic cylinder drives the ink column to roll on the stamp 900 on the clamp 300 to apply ink to the stamp 900. When the sliding member needs to be pressed, the telescopic cylinder drives the ink column to move away from the clamp 300.

[0059] Reference Figure 1 , Figure 2 and Figure 7 In some embodiments, the end of the pressing member 210 away from the opening 111 of the mounting cavity 110 is detachably connected to a pressing cover 230, which is located outside the mounting cavity 110 and is used to prevent the pressing member 210 from sliding completely into the mounting cavity 110.

[0060] In some embodiments, the locking device 810 includes a motor and a locking post. The motor is driven to the locking post, and the locking post is provided with a locking part. When the pressing member 210 is away from the opening 111 of the mounting cavity 110, the motor can drive the locking post to rotate so that the locking part is inserted into the pressing member 210 or blocked on the side of the pressing member 210 near the opening 111, thereby locking the pressing member 210.

[0061] It is conceivable that the locking device 810 can also be configured in other ways. For example, the locking device 810 can be configured as an electromagnetic lock, in which the locking rod can extend and retract under the action of magnetic force to enter or disengage from the locking groove to achieve locking or unlocking.

[0062] Reference Figure 1 and Figure 2 According to some embodiments of this utility model, the control device 510 is electrically connected to a display screen 530, which is disposed in the housing 100. Thus, the control device 510 can capture videos or photos of the stamping process using the camera 610, and then save these videos or photos, or upload them via the network. The control device 510 can also perform facial recognition or other functions using the camera 610. The control device 510 can display the authorization status, user login status, or other information of the intelligent stamping machine on the display screen 530.

[0063] Reference Figure 1 and Figure 2 According to some embodiments of the present invention, the control device 510 is electrically connected to a microphone 540 to record audio during the operation of the camera 610. The control device 510 can also perform voice recognition through the microphone 540.

[0064] Reference Figure 2 and Figure 6 In some embodiments, the clamp 300 is detachably connected to the mounting bracket 220, a portion of the sidewall of the mounting cavity 110 is configured as a rear cover 120, the rear cover 120 is detachably or movably mounted on the housing 100, the housing 100 is provided with a locking device 820, the locking device 820 is electrically connected to the control device 510, and the locking device 820 is used to lock the rear cover 120. If the control device 510 is not authorized, the locking device 820 locks the rear cover 120, preventing it from being disassembled or opened, thus ensuring the safe use of the seal 900. If the control device 510 is authorized, it can control the locking device 820 to unlock the rear cover 120, allowing it to be disassembled or opened. The clamp 300 can then be removed from its mounting position. After removing the clamp 300, the seal 900 can be removed from it. Therefore, when removing the seal 900 and clamp 300, it is not necessary to simultaneously press the pressing member 210, making disassembly and assembly more convenient and efficient. When installing the seal 900, first install the seal 900 onto the clamp 300, then install the clamp 300 onto the mounting bracket 220 from the mounting position of the rear cover 120, and finally close or install the rear cover 120.

[0065] It should be noted that the locking cover device 820 can be configured in the same way as the locking seal device 810, and will not be described in detail here.

[0066] Reference Figure 2 and Figure 7 In the specific implementation process, the mounting bracket 220 is provided with an insertion slot 221, with the inlet and outlet of the insertion slot 221 facing downwards towards the mounting position of the rear cover 120. The clamp 300 is inserted into the insertion slot 221 through the inlet and outlet of the insertion slot 221. With the above configuration, the clamp 300 can be easily inserted and removed from the mounting position of the rear cover 120, realizing quick assembly and disassembly of the clamp 300 and improving the efficiency of clamp assembly and disassembly.

[0067] In specific implementation, the first reset structure can be set as a reset spring, which is sleeved on the pressing member 210 and disposed between the pressing cover 230 and the housing 100. Of course, the first reset structure can also adopt other settings. For example, the first reset structure can include two magnets that cooperate to generate repulsive force, one magnet is installed on the pressing cover 230, and the other magnet is sleeved on the pressing member 210 and installed on the housing 100.

[0068] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0069] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. A press-type intelligent stamping machine, characterized in that, include: The housing (100) is provided with a mounting cavity (110), and one side of the housing (100) is provided with an opening (111) communicating with the mounting cavity (110); A pressing component is slidably disposed in the side wall of the mounting cavity (110) away from the opening (111). A first reset structure is provided between the pressing component and the housing (100). The first reset structure is used to drive the pressing component to move away from the opening (111). The pressing component includes a pressing element (210) and a mounting bracket (220). The mounting bracket (220) is movably mounted on the pressing element (210). One end of the mounting bracket (220) near the opening (111) is located in the mounting cavity (110). A height adjustment structure is provided between the mounting bracket (220) and the pressing element (210). The height adjustment structure is used to adjust the distance between the end of the mounting bracket (220) near the opening (111) and the opening (111). A clamp (300) for holding a stamp (900) is connected to one end of the mounting bracket (220) near the opening (111).

2. The press-type intelligent stamping machine according to claim 1, characterized in that, The housing (100) is provided with a control device (510), and the height adjustment structure includes a drive device (400). The drive device (400) is convexly connected to the mounting bracket (220), and the drive device (400) is electrically connected to the control device (510). The control device (510) is used to control the drive device (400) to drive the mounting bracket (220) to move closer to or away from the opening (111).

3. The press-type intelligent stamping machine according to claim 2, characterized in that, The control device (510) is electrically connected to a position detection element (520), which is used to detect the position of the stamping surface of the stamp (900) on the fixture (300). The control device (510) can control the drive device (400) to work according to the signal of the position detection element (520).

4. The press-type intelligent stamping machine according to claim 2, characterized in that, The pressing member (210) is provided with a mounting hole (211). The driving device (400) includes a first motor (410) and a lead screw (420). The first motor (410) is installed in the mounting hole (211). The output shaft of the first motor (410) is connected to the lead screw (420). One end of the mounting bracket (220) is slidably inserted into the mounting hole (211), and one end of the mounting bracket (220) is screwed to the lead screw (420).

5. The press-type intelligent stamping machine according to claim 2, characterized in that, The control device (510) is electrically connected to a camera (610), the camera (610) is mounted on an adjustment assembly (620), the adjustment assembly (620) is mounted on the housing (100), and the adjustment assembly (620) is used to raise, lower, rotate and adjust the camera (610).

6. The press-type intelligent stamping machine according to claim 5, characterized in that, The adjustment assembly (620) includes an outer cylinder (621), a first rod (622), a second rod (623), and a swing member (624). The outer cylinder (621) is inserted into the housing (100). The first rod (622), the second rod (623), and the swing member (624) are all slidably installed inside the outer cylinder (621). One end of the swing member (624) is rotatably connected to the first rod (622), and the other end of the swing member (624) is rotatably connected to the second rod (623). The rotation axis between (624) and the first rod (622) is along the radial direction of the outer cylinder (621) or the axial direction of the outer cylinder (621). The rotation axis between the swing member (624) and the second rod (623) is perpendicular to the rotation axis between the swing member (624) and the first rod (622). The camera (610) is mounted on the second rod (623). A part of the first rod (622), the second rod (623) and the swing member (624) can slide in and out of the outer cylinder (621).

7. The press-type intelligent stamping machine according to claim 6, characterized in that, The first rod (622) is connected to a height positioning component (626), which abuts against the inner wall of the outer cylinder (621) to position the first rod (622).

8. The press-type intelligent stamping machine according to claim 1, characterized in that, An automatic ink-applying mechanism (700) is provided inside the mounting cavity (110), which is used to apply ink to the stamp (900) on the fixture (300).

9. The press-type intelligent stamping machine according to claim 8, characterized in that, The automatic ink application mechanism (700) includes an ink application component (710) located within the mounting cavity (110). One end of the ink application component (710) is rotatably mounted on the side wall of the mounting cavity (110). The ink application component (710) has an ink application position and a clearance position. When the ink application component (710) is in the ink application position, it is located on the side of the clamp (300) near the opening (111) and is opposite to the clamp (300). When the ink application component (710) is in the clearance position, it clears the clamp (300). The pressing member (210) can push the ink-applying member (710) to rotate from the ink-applying position to the clearance position. The pressing member (210) is connected to the ink-printing member (710) or a second reset structure is provided between the ink-printing member (710) and the housing (100) so that the pressing member (210) or the second reset structure can drive the ink-printing member (710) to rotate from the avoidance position to the ink-printing position.

10. The press-type intelligent stamping machine according to claim 9, characterized in that, The pressing member (210) is connected to the ink-printing member (710) in a transmission manner. The housing (100) is provided with a control device (510) and a locking device (810). The control device (510) is electrically connected to the locking device (810). When the first reset structure drives the pressing member (210) to return to a position away from the opening (111), the control device (510) can control the locking device (810) to lock the pressing member (210).