Intelligent stamping equipment

By designing a stamp rotation and pushing mechanism, the problems of low stamp selection and stamping efficiency and poor stability of existing intelligent stamp control instruments are solved, realizing efficient and stable stamp operation and a compact equipment structure, and improving the security of stamp preservation.

CN223590418UActive Publication Date: 2025-11-25HENAN LONGYUZE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423259854.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-25
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing intelligent seal control instruments suffer from low efficiency and poor stability in seal selection and stamping, and their non-compact structure results in a large device size.

Method used

The design incorporates a stamp rotation mechanism, a stamp locking mechanism, a stamp pressing mechanism, and a housing assembly. Through the stamp rotation drive and pushing mechanism, it achieves efficient and stable stamp selection and stamping operations, and stores the stamp inside the housing when not in use, thus improving security.

Benefits of technology

It improves the efficiency of seal selection and stamping, enhances stamping stability, makes the equipment structure more compact, reduces the equipment size, and improves the security of seal preservation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of seal control equipment, and particularly relates to intelligent seal equipment. An intelligent stamping device comprises a supporting assembly which comprises a bottom plate, a supporting rod and a supporting plate; the seal rotating mechanism comprises a fixing plate, a rotating shaft, a rotating disc arranged at the lower end of the rotating shaft and a rotating driving assembly driving the rotating shaft to rotate. The seal clamping mechanism comprises a plurality of sets of sliding rods arranged on the rotary disc, clamping blocks arranged on the sliding rods in a sliding mode, limiting blocks fixedly connected to the lower ends of the sliding rods, springs arranged on the sliding rods in a sleeving mode, and seal clamps detachably arranged on the clamping blocks in a clamping mode. The seal pressing mechanism can be used for selectively pressing the seal fixture; the box body assembly surrounds the outer side of the seal clamping mechanism; the seal pushing mechanism comprises a connecting block fixedly connected to the fixing plate and a sliding assembly capable of driving the connecting block to slide in the length direction of the supporting plate. The stamping machine has the advantages of being high in required stamp selection and stamping efficiency, high in stamping stability and compact in structure.
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Description

Technical Field

[0001] This utility model belongs to the field of printing control equipment technology, and in particular relates to an intelligent stamping device. Background Technology

[0002] Traditionally, the management of various seals is done manually. Seals are placed in a designated department and managed by specific personnel. After approval through a usage process, a designated person affixes the seal. This method suffers from low levels of automation and intelligence, and suffers from technical problems such as poor seal storage and low stamping efficiency. Therefore, intelligent stamping equipment, such as intelligent seal controllers, is becoming increasingly widely used due to its advantages, including automatic stamping, ease of managing various seals, and convenient management of stamping information.

[0003] Prior art, such as Chinese invention patent application number 201610731676.7, discloses a seal control device, comprising: a housing; a stamping device; several seal sleeve structures disposed inside the stamping device; a main circuit connected to the stamping device; a main board controlling the stamping device and connected to the main circuit; an independent backup circuit connected to the stamping device; a main / backup board controlling the stamping device and connected to the independent backup circuit; an anti-theft mechanism disposed inside the housing; and a seal storage rack disposed on one side of the stamping device. This invention features automatic stamping, enabling stamping at any specified position and angle, compatibility with all conventional copper and atomic seals, controllable stamping force, and the ability to stamp multiple sheets of paper across their bindings. It also features anti-theft and anti-vandalism functions, an independent backup circuit, and the ability to monitor stored seals.

[0004] The above-mentioned seal control device has the following technical problems: Since various seals are fixed in the seal sleeve and placed on the seal storage rack, when using a certain seal for stamping, the machine head assembly needs to be driven by the longitudinal and transverse motion motors to select the required seal from the seal storage rack, and the seal is driven down by the vertical lead screw motor to complete the stamping operation. This structure has low efficiency in selecting and stamping the required seal, and low stability in the process of selecting and moving the seal. In addition, due to the need to set up the seal storage rack and the transverse and longitudinal motion mechanisms, the internal space of the seal control device is large, resulting in a large overall size of the seal control device and its structure is not compact enough. Utility Model Content

[0005] To address the technical problems existing in the prior art, this application provides an intelligent stamping device that features high efficiency in selecting and stamping required seals, high stamping stability, and a compact structure.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A smart stamping device includes:

[0008] Support assembly: includes a base plate, a support rod fixedly connected to the base plate, and a support plate horizontally fixedly connected to the upper end of the support rod;

[0009] Seal rotation mechanism: includes a fixed plate disposed below the support plate, a rotating shaft disposed on the fixed plate, a turntable fixedly connected to the lower end of the rotating shaft, and a rotation drive assembly disposed on the fixed plate to drive the rotating shaft to rotate;

[0010] Stamp latching mechanism: includes multiple sets of slide rods vertically fixedly connected on the turntable, latching blocks sliding on each set of slide rods, limiting blocks fixedly connected to the lower end of the slide rods, springs sleeved on the slide rods between the latching blocks and the limiting blocks, and stamp holders detachably latched on the latching blocks;

[0011] Stamp pressing mechanism: set on the fixed plate and can selectively press down the stamp holder;

[0012] Box assembly: includes a baffle that is fixedly connected to the fixed plate and surrounds the outside of the stamp clamping mechanism, and a baffle through groove is provided on the baffle below the stamp pressing mechanism;

[0013] The stamp pushing mechanism includes a connecting block fixedly connected to the upper surface of the fixed plate and a sliding component disposed on the support plate and capable of driving the connecting block to slide along the length direction of the support plate.

[0014] Control module: Connects to and controls the stamp rotation mechanism, stamp pressing mechanism, and stamp pushing mechanism.

[0015] Preferably, an inkpad is provided on the bottom plate below the baffle groove, and ink is provided in the inkpad.

[0016] Preferably, a slide rail is fixedly connected to the bottom plate below the baffle through groove, a pull plate is fixedly connected to the slide rail, and a slot is provided on the pull plate, so that the ink pad can be detachably locked in the slot.

[0017] Preferably, the baffle includes side baffles fixedly connected to the fixed plate on both sides, a lower baffle disposed at the bottom, a rear baffle fixedly connected between the two side baffles, and a front baffle hinged to one side baffle. A switch assembly is provided on the front baffle and the other side baffle.

[0018] Preferably, the switch assembly includes a first buckle and a sensing post fixedly connected to the inner side of the front baffle, and a first slotted photoelectric switch and a first electromagnetic lock fixedly connected to the inner side of the side baffle corresponding to the first buckle and the sensing post. When the front baffle is closed, the sensing post can be inserted into the slotted structure of the first slotted photoelectric switch and the locking tongue of the first electromagnetic lock is engaged in the first buckle.

[0019] Preferably, a second buckle is fixedly connected to the upper end face of the fixing plate, and a second electromagnetic lock is fixedly connected to the lower end face of the support plate, wherein the locking tongue of the second electromagnetic lock can be engaged in the second buckle.

[0020] Preferably, the sliding assembly includes a sliding drive motor fixedly connected to the support plate, a first synchronous belt assembly driven by the sliding drive motor, and a guide rod fixedly connected to the lower end face of the support plate along its length direction. The connecting block is slidably sleeved on the guide rod and fixedly connected to the synchronous belt of the first synchronous belt assembly.

[0021] Preferably, the rotary drive assembly includes a rotary drive motor fixedly connected to the fixed plate, and the rotary drive motor drives the shaft to rotate via a second synchronous belt assembly.

[0022] Preferably, the stamp pressing mechanism includes a pressing motor fixedly connected to the fixed plate, a lead screw fixedly connected to the output shaft of the pressing motor, a pressing sleeve engaged with the lead screw, and a guide post vertically fixedly connected to the fixed plate, wherein the pressing sleeve is slidably sleeved on the guide post.

[0023] Preferably, a housing is provided on the outside of the support assembly, and the sliding assembly can drive the housing assembly to move to the outside of the housing; a touch screen and a camera are provided on the housing.

[0024] Compared with the prior art, the beneficial effects of this utility model are:

[0025] This invention, by setting up a stamp locking mechanism, allows various stamps to be arranged in a ring around a rotating shaft. Compared to existing stamp storage racks, this invention has a more compact structure. When a desired stamp needs to be selected, the rotating shaft and turntable are simply driven by the rotation drive component of the stamp rotation mechanism to rotate the desired stamp to the area below the stamp pressing mechanism. The stamp pressing mechanism then presses down on the stamp holder that holds the stamp, causing the desired stamp to move downwards to complete the stamping operation. This results in higher stamping efficiency and stability. Furthermore, by setting up a housing component and a stamp pushing mechanism, when the stamp is not in use, it is stored inside the housing component and shell. When stamping is required, the stamp pushing mechanism moves the housing component and stamp out of the shell for the stamping operation, while the stamp remains inside the housing component, thus improving the security of stamp storage. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present utility model.

[0027] Figure 2 This is a schematic diagram of the structure after removing the shell in an embodiment of the present invention.

[0028] Figure 3 For Figure 2 A side view structural diagram based on the reference.

[0029] Figure 4 This is a schematic diagram of the connection structure between the support plate and the stamp pushing mechanism in an embodiment of this utility model.

[0030] Figure 5 This is a first-view diagram showing the connection structure of the seal rotation mechanism, seal locking mechanism, seal pressing mechanism, and housing assembly according to an embodiment of the present invention.

[0031] Figure 6 This is a second-view connection structure diagram of the seal rotation mechanism, seal locking mechanism, seal pressing mechanism, and housing assembly according to an embodiment of the present utility model.

[0032] Figure 7 This is a schematic diagram of the connection structure of the seal rotation mechanism, seal locking mechanism, seal pressing mechanism and seal holder in an embodiment of this utility model.

[0033] Figure 8 This is a schematic diagram of the connection structure of the seal rotation mechanism, seal locking mechanism, and seal pressing mechanism according to an embodiment of the present utility model.

[0034] Figure 9 This is a schematic diagram of the partial connection structure between the switch assembly and the baffle in an embodiment of this utility model.

[0035] Figure 10 This is a schematic diagram of the connection structure between the base plate, slide rail, and pull-out plate in an embodiment of this utility model.

[0036] Figure 11 This is a schematic diagram of the connection structure of the slide rail and pull-out plate in an embodiment of this utility model.

[0037] In the diagram: 1. Support component, 11. Base plate, 12. Support rod, 13. Support plate, 14. Shelf, 15. Movable plate.

[0038] 2. Seal rotation mechanism; 21. Fixed plate; 22. Rotating shaft; 23. Turntable; 231. Clearance groove; 24. Rotary drive assembly; 241. Rotary drive motor; 242. Second synchronous belt assembly; 25. Fixed cylinder; 26. Second buckle; 261. Buckle groove; 27. Second electromagnetic lock; 28. Bracket; 29. ​​Chip recognition device.

[0039] 3. Stamp latching mechanism; 31. Slide rod; 32. Latching block; 321. Latching groove; 322. Latching plate; 33. Limiting block; 34. Spring; 35. Stamp clamp.

[0040] 4. Seal pressing mechanism; 41. Pressing motor; 42. Pressing sleeve; 43. Guide column.

[0041] 5. Housing assembly; 51. Baffle through slot; 52. Side baffle; 53. Lower baffle; 54. Rear baffle; 55. Front baffle; 56. First buckle; 57. Induction post; 58. First slotted photoelectric switch; 59. First electromagnetic lock.

[0042] 6. Stamp pushing mechanism; 61. Connecting block; 62. Sliding drive motor; 63. First synchronous belt assembly; 64. Guide rod.

[0043] 7. Control module,

[0044] 8. Ink filling mechanism; 81. Slide rail; 82. Pull-out plate; 821. Slot.

[0045] 9. Housing; 91. Opening; 92. Touchscreen display; 93. Camera. Detailed Implementation

[0046] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0047] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation 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.

[0048] Example

[0049] See appendix Figure 1 , 2 As shown in Figures 1 and 3, an intelligent stamping device includes a support component 1, a stamp rotation mechanism 2, a stamp locking mechanism 3, a stamp pressing mechanism 4, a housing component 5, a stamp pushing mechanism 6, a control module 7, an ink filling mechanism 8, and a housing 9.

[0050] The support assembly 1 includes a horizontally arranged base plate 11, four support rods 12 vertically fixed to the base plate 11 by bolts, and a support plate 13 horizontally fixed to the upper end of the support rods 12 by bolts. A stamp rotation mechanism 2, a stamp locking mechanism 3, a stamp pressing mechanism 4, and a housing assembly 5 are disposed between the base plate 11 and the support plate 13.

[0051] See Figure 7 , 8 As shown, the seal rotation mechanism 2 includes a fixed plate 21 horizontally disposed below the support plate 13, a rotating shaft 22 disposed on the fixed plate 21, a turntable 23 horizontally fixedly connected to the lower end of the rotating shaft 22 by a flange and bolts, and a rotation drive assembly 24 disposed on the fixed plate 21 to drive the rotating shaft 22 to rotate. Specifically, a fixed cylinder 25 is vertically fixedly installed on the lower end face of the fixed plate 21 by bolts, and the rotating shaft 22 rotates through the fixed cylinder 25 via a rotating bearing and extends above the fixed plate 21.

[0052] The rotary drive assembly 24 includes a rotary drive motor 241 bolted to a fixed plate 21. The rotary drive motor 241 drives the rotating shaft 22 to rotate via a second synchronous belt assembly 242. The second synchronous belt assembly 242 can be of the prior art, i.e., it includes a main synchronous pulley keyed to the output shaft of the rotary drive motor 241, a driven synchronous pulley keyed to the upper end of the rotating shaft 22, and a synchronous belt meshing with the main synchronous pulley and the driven synchronous pulley.

[0053] The seal clamping mechanism 3 includes multiple sets of slide rods 31 vertically fixed on the turntable 23 by bolts. In this embodiment, each set of slide rods 31 has two rods, and a total of four sets are provided. A clearance groove 231 is provided through each set of slide rods 31 on the turntable 23. A clamping block 32 is slidably sleeved on each set of slide rods 31. A limit block 33 is fixedly installed at the lower end of each slide rod 31 by bolts. A spring 34 is sleeved on the slide rod 31 between the clamping block 32 and the limit block 33. The spring 34 is in a compressed state and its inner diameter is smaller than the outer diameter of the limit block 33. A seal clamp 35 is detachably clamped on the clamping block 32. The seal (not shown in the figure) is detachably fixed in the seal clamp 35. The structure of the seal clamp 35 and the working principle of fixing the seal can be existing technology, such as the Chinese utility model patent with application number 202020249753.7 and patent name "A Seal Clamp and Seal Control Instrument". The specific structure of the snap-fit ​​block 32 and the seal holder 35, as well as the connection method between them, can be existing technology, as long as the seal holder 35 can be detachably snapped onto the snap-fit ​​block 32. For example, a snap-fit ​​groove 321 can be opened on the outer side of the snap-fit ​​block 32, and a snap-fit ​​plate 322 can be integrally formed and fixedly connected to the inner wall of the snap-fit ​​groove 321. A seal holder slot can be opened on the upper part of the seal holder 35, and the upper part of the seal holder 35 can be snapped into the snap-fit ​​groove 321 and the clearance groove 231, and the seal holder slot can be snapped onto the snap-fit ​​plate 322. The fixing method between the seal holder 35 and the snap-fit ​​block 32 can be the magnetic attraction of magnets or the two can be fixed by bolts.

[0054] The stamp pressing mechanism 4 is mounted on the fixed plate 21 and can selectively press the stamp holder 35. Specifically, the stamp pressing mechanism 4 includes a pressing motor 41 that is vertically and downwardly fixed on the fixed plate 21 by bolts, a lead screw (not shown in the figure) that is fixedly connected to the output shaft of the pressing motor 41 by a coupling, a pressing sleeve 42 that meshes with the lead screw, and two guide posts 43 that are vertically and fixedly connected to the fixed plate 21 by bolts. The pressing sleeve 42 can be slidably sleeved on the guide posts 43.

[0055] Thus, through the above structure, the rotary drive assembly 24 drives the rotating shaft 22, the turntable 23, each latching block 32, and each stamp holder 35 to rotate, causing the required stamp holder 35 and the stamp fixed on it to rotate to below the pressing sleeve 42. The pressing motor 41 drives the lead screw to rotate, thereby causing the pressing sleeve 42 to move downward so that the stamp holder 35 and the stamp are pressed down, thereby completing the stamping operation. In addition, in other embodiments, in order to facilitate accurate identification of the type of stamp latched on each latching block 32, a chip can be embedded in the upper end of the stamp holder 35. The chip records the corresponding stamp information. A bracket 28 is fixedly connected to the fixed cylinder 25 adjacent to the stamp pressing mechanism 4 by bolts. A chip identification device 29, such as an NFC card reader that can identify the chip of the stamp holder 35, is installed on the bracket 28.

[0056] See Figure 5 , 6 As shown, to improve the security of this device when the stamp is not in use, in this embodiment, the device is provided with a housing assembly 5, and the stamp holder 35 and the corresponding stamp are disposed in the inner cavity of the housing assembly 5. Specifically, the housing assembly 5 includes a baffle that is fixedly mounted on the fixed plate 21 by bolts and surrounds the outside of the stamp holding mechanism 3, and a baffle through groove 51 opened on the baffle below the stamp pressing mechanism 4. The baffle includes side baffles 52 fixedly connected to the fixed plate 21 on both sides, a lower baffle 53 fixedly mounted on the lower end of the side baffles 52, a rear baffle 54 fixedly connected between the two side baffles 52, and a front baffle 55 hinged to one side baffle 52. Switch assemblies are provided on the front baffle 55 and the other side baffle 52. The baffle through groove 51 is opened on the lower baffle 53 below the pressing sleeve 42. The pressing motor 41 can drive the pressing sleeve 42 to move downward, so that a stamp moves through the baffle through groove 51 to the lower baffle 53 to complete the stamping operation.

[0057] See Figure 9 As shown, to facilitate opening the front baffle 55 for installing or removing the stamp holder 35 and the stamp, the switch assembly includes a U-shaped first buckle 56 and a sensing post 57 fixedly connected to the inner side of the front baffle 55 by welding or other means. A first slotted photoelectric switch 58 and a first electromagnetic lock 59 are fixedly connected to the inner side of the side baffle 52 corresponding to the first buckle 56 and the sensing post 57 by bolts. The first electromagnetic lock 59 can be an existing XG-07E type intelligent cabinet electric control lock. When the front baffle 55 is closed, the sensing post 57 can be inserted into the slotted structure of the first slotted photoelectric switch 58, and the locking tongue of the first electromagnetic lock 59 is engaged in the first buckle 56. The first slotted photoelectric switch 58 and the first electromagnetic lock 59 are electrically connected to the control module 7 and the existing power module (not shown in the figure). When the front baffle 55 is closed, the front baffle 55 can be locked by the first electromagnetic lock 59.

[0058] See Figure 4 , 8As shown, the stamp pushing mechanism 6 includes a connecting block 61 fixedly mounted on the upper surface of the fixed plate 21 by bolts, and a sliding assembly disposed on the support plate 13 and capable of driving the connecting block 61 to slide along the length direction of the support plate 13. Specifically, the sliding assembly includes a sliding drive motor 62 fixedly mounted on the support plate 13 by bolts, a first synchronous belt assembly 63 driven by the sliding drive motor 62, and a guide rod 64 fixedly connected to the lower surface of the support plate 13 along its length direction. The connecting block 61 is slidably sleeved on the guide rod 64 and fixedly connected to the synchronous belt of the first synchronous belt assembly 63. The first synchronous belt assembly 63 is prior art, that is, it includes a main synchronous pulley keyed to the output shaft of the sliding drive motor 62, a driven synchronous pulley rotatably mounted on the lower surface of the support plate 13, and a synchronous belt meshing with and sleeved on the main synchronous pulley and the driven synchronous pulley. The sliding drive motor 62 drives the synchronous belt to rotate, thereby causing the connecting block 61, the fixed plate 21, and the housing assembly 5 to move along the length direction of the guide rod 64.

[0059] To further enhance the safety of this equipment, a second latch 26 is bolted to the upper surface of the fixed plate 21. The second latch 26 has a latching groove 261. A second electromagnetic lock 27 is bolted to the lower surface of the support plate 13. The latch of the second electromagnetic lock 27 can engage within the latching groove 261 of the second latch 26. Therefore, the housing assembly 5 cannot move when the latch of the second electromagnetic lock 27 is not retracted from the latching groove 261.

[0060] See Figure 2 , 10 As shown in Figure 11, to facilitate the addition of ink to the stamp inside the housing assembly 5, an ink-adding mechanism 8 is provided on the bottom plate 11 below the baffle through groove 51. The ink-adding mechanism 8 includes a slide rail 81 fixedly installed on the bottom plate 11 below the baffle through groove 51, and a pull-out plate 82 fixedly installed on the sliding part of the slide rail 81. A slot 821 is provided on the pull-out plate 82, and an ink pad (not shown in the figure) is detachably locked in the slot 821, with ink contained in the ink pad. When the pull-out plate 82 is pulled, the ink pad can be pulled out from under the housing assembly 5. When the pull-out plate 82 is pushed to the limit position of the slide rail 81, the ink pad is directly below the baffle through groove 51.

[0061] See Figure 1 As shown, a housing 9 is provided on the outside of the support component 1. The housing 9 has an opening 91, and a sliding component can drive the box component 5 to move to the outside of the housing 9 through the opening 91. A touch screen 92 and a camera 93 are provided on the housing 9. The touch screen 92 can display the operation process and approval progress, etc., and the camera 93 can be used to record the person stamping the document and perform facial recognition, etc. Both the touch screen 92 and the camera 93 can be based on existing technologies.

[0062] To facilitate the placement of documents to be stamped, a shelf 14 is horizontally fixed to the base plate 11 outside the opening 91 by bolts. To increase the area of ​​the shelf 14, a movable plate 15 is hinged to one side of the shelf 14. The movable plate 15 can be folded onto the shelf 14.

[0063] This equipment also includes a control module 7, a power supply module, and a storage module (not shown in the figure). The control module 7 is electrically connected to and controls the stamp rotation mechanism 2, the stamp pressing mechanism 4, the stamp pushing mechanism 6, the first electromagnetic lock 59, the second electromagnetic lock 27, and the first slotted photoelectric switch 58, etc. The power supply module is used to supply power to the control module 7, the stamp rotation mechanism 2, the stamp pressing mechanism 4, and the stamp pushing mechanism 6. The storage module is used to store various types of data information. The control module 7 can be an existing controller, such as a PLC controller, and the power supply module can be AC ​​power or a storage battery.

[0064] The working process of this utility model embodiment is as follows:

[0065] Install this intelligent stamping device according to the above instructions, place the document to be stamped on the base plate 11 in front of the housing component 5. After the stamping approval information is transmitted to this device, the operator can perform the stamping operation by operating the touch screen 92. At this time, the control module 7 controls the rotary drive motor 241 to drive the rotating shaft 22, turntable 23, stamp holder 35 and stamp to rotate, so that the stamp to be used is rotated to the top of the baffle through slot 51.

[0066] The control module 7 controls the sliding drive motor 62 to drive the housing assembly 5, the stamp rotation mechanism 2, the stamp latching mechanism 3, and the stamp pressing mechanism 4 to move along the length of the guide rod 64 through the first synchronous belt assembly 63, and move to the top of the document to be stamped on the outside of the housing 9 via the opening 91.

[0067] Control module 7 controls the pressure motor 41 to drive the lead screw to rotate, causing the pressure sleeve 42 to move downward. The pressure sleeve 42 abuts against the stamp holder 35 through the clearance groove 231, causing the stamp holder 35, the stamp, and the holder block 32 to move downward, thereby completing the stamping action. After stamping, control module 7 controls the pressure motor 41 to drive the lead screw to rotate in the opposite direction, causing the pressure sleeve 42 to move upward to the initial position. The stamp holder 35, the stamp, and the holder block 32 return to the initial position under the action of the spring 34.

[0068] After the stamping is completed, the control module 7 controls the sliding drive motor 62 to drive the housing assembly 5, the stamp rotation mechanism 2, the stamp locking mechanism 3, and the stamp pressing mechanism 4 to move along the length of the guide rod 64 through the first synchronous belt assembly 63, and move into the housing 9 through the opening 91.

[0069] It should be noted that this utility model protects the structure of the intelligent stamping device. The control module, storage module, and power module involved in this utility model are all prior art and will not be described in detail here, as long as they can meet the above working process. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.

Claims

1. An intelligent stamping device, characterized in that: include: Support assembly: includes a base plate, a support rod fixedly connected to the base plate, and a support plate horizontally fixedly connected to the upper end of the support rod; Seal rotation mechanism: includes a fixed plate disposed below the support plate, a rotating shaft disposed on the fixed plate, a turntable fixedly connected to the lower end of the rotating shaft, and a rotation drive assembly disposed on the fixed plate to drive the rotating shaft to rotate; Stamp latching mechanism: includes multiple sets of slide rods vertically fixedly connected on the turntable, latching blocks sliding on each set of slide rods, limiting blocks fixedly connected to the lower end of the slide rods, springs sleeved on the slide rods between the latching blocks and the limiting blocks, and stamp holders detachably latched on the latching blocks; Stamp pressing mechanism: set on the fixed plate and can selectively press down the stamp holder; Box assembly: includes a baffle that is fixedly connected to the fixed plate and surrounds the outside of the stamp clamping mechanism, and a baffle through groove is provided on the baffle below the stamp pressing mechanism; The stamp pushing mechanism includes a connecting block fixedly connected to the upper surface of the fixed plate and a sliding component disposed on the support plate and capable of driving the connecting block to slide along the length direction of the support plate. Control module: Connects to and controls the stamp rotation mechanism, stamp pressing mechanism, and stamp pushing mechanism.

2. The intelligent stamping device according to claim 1, characterized in that: An inkpad is provided on the bottom plate below the baffle groove, and inkpad is provided in the inkpad.

3. The intelligent stamping device according to claim 2, characterized in that: A slide rail is fixedly connected to the bottom plate below the baffle through groove, and a pull plate is fixedly connected to the slide rail. A slot is provided on the pull plate, and the inkpad can be detachably locked in the slot.

4. The intelligent stamping device according to claim 1, characterized in that: The baffle includes side baffles fixedly connected to the fixed plate on both sides, a lower baffle disposed at the bottom, a rear baffle fixedly connected between the two side baffles, and a front baffle hinged to one side baffle. Switch assemblies are provided on the front baffle and the other side baffle.

5. The intelligent stamping device according to claim 4, characterized in that: The switch assembly includes a first buckle and a sensing post fixedly connected to the inner side of the front baffle, and a first slotted photoelectric switch and a first electromagnetic lock fixedly connected to the inner side of the side baffle corresponding to the first buckle and the sensing post. When the front baffle is closed, the sensing post can be inserted into the slotted structure of the first slotted photoelectric switch and the locking tongue of the first electromagnetic lock is engaged in the first buckle.

6. The intelligent stamping device according to claim 1, characterized in that: A second buckle is fixedly connected to the upper end face of the fixed plate, and a second electromagnetic lock is fixedly connected to the lower end face of the support plate. The latch of the second electromagnetic lock can be engaged in the second buckle.

7. The intelligent stamping device according to claim 1, characterized in that: The sliding assembly includes a sliding drive motor fixedly connected to the support plate, a first synchronous belt assembly driven by the sliding drive motor, and a guide rod fixedly connected to the lower end face of the support plate along its length. The connecting block is slidably sleeved on the guide rod and fixedly connected to the synchronous belt of the first synchronous belt assembly.

8. The intelligent stamping device according to claim 1, characterized in that: The rotary drive assembly includes a rotary drive motor fixedly connected to the fixed plate, and the rotary drive motor drives the shaft to rotate via a second synchronous belt assembly.

9. The intelligent stamping device according to claim 1, characterized in that: The stamp pressing mechanism includes a pressing motor fixedly connected to the fixed plate, a lead screw fixedly connected to the output shaft of the pressing motor, a pressing sleeve engaged with the lead screw, and a guide post vertically fixedly connected to the fixed plate. The pressing sleeve is slidably sleeved on the guide post.

10. The intelligent stamping device according to claim 1, characterized in that: A housing is provided on the outside of the support assembly, and the sliding assembly can drive the housing assembly to move to the outside of the housing; a touch screen and a camera are provided on the housing.

Citation Information

Patent Citations

  • Seal control instrument

    CN106218248A

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    CN211994764U