Imprint recording apparatus and printing system
By designing an imprint recording device that can be connected to an imprint output device, the device records the imprint in real time after the imprint output device forms an imprint, solving the problem that the imprint output device in the prior art cannot record the imprint, and achieving the effect of anti-counterfeiting and easy investigation and evidence collection.
Patent Information
- Application Number
- CN202422035664.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The prior art imprint output device can only output the imprint to the carrier to form the imprint, but it cannot record the imprint, which makes the imprint easy to be forged and inconvenient for investigation and evidence collection.
An imprint recording device is designed, which is connected to an imprint output device, and can record the imprint in real time when the imprint output device forms an imprint. The device includes a device main body and an imaging unit. The device main body realizes switching between the mark output and the shooting state through an elastic reset mechanism and a connection mechanism. The imaging unit is located between the mark output port and the mark output end of the mark output device in the shooting state, and shoots and records the mark in real time.
Real-time recording of the mark is realized, effectively preventing the forgery of the mark and facilitating investigation and evidence collection of the mark.
Smart Images

Figure CN222959469U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of imprint recording, in particular to an imprint recording device and a printing system. Background Art
[0002] Seals such as official seals are important tools for legal persons or individuals to handle internal and external affairs. Usually, they need to be stamped on documents so that the documents have legal effect. The imprint refers to the characters, patterns or symbols engraved on the seal. The imprint can be a company name, a personal name and specific marks, etc. The imprint refers to the actual imprint formed by the imprint on the paper or other media through the imprint output device.
[0003] With the continuous development of technology, imprint output devices such as rotary imprint output devices have developed rapidly.
[0004] However, the imprint output devices in the prior art can only output the imprint on the carrier to form an imprint, but cannot record the imprint. Therefore, there are technical problems such as the imprint being easily forged and it being inconvenient to investigate and obtain evidence of the imprint, which cannot meet the needs of people. Content of the Utility Model
[0005] The utility model provides an imprint recording device and a printing system to solve the technical problem that the imprint output devices in the prior art can only output the imprint on the carrier to form an imprint, but cannot record the imprint.
[0006] The utility model provides an imprint recording device, and the imprint recording device is connected to an imprint output device; the imprint output device can form an imprint on a carrier; wherein, the imprint recording device can record the imprint when the imprint output device forms the imprint.
[0007] According to an embodiment of the utility model, the imprint recording device includes a device main body and a camera unit; the device main body has a receiving cavity and an imprint output port that can communicate with the receiving cavity, and the device main body is connected to the imprint output device; the imprint output device can switch between an imprint output state and a shooting state, and the imprint output end of the imprint output device is located at the imprint output port in the imprint output state; there is a distance between the imprint output end of the imprint output device and the imprint output port in the shooting state; the camera unit is located in the receiving cavity and is movably connected to the side wall of the receiving cavity, and the camera unit is located between the side wall of the receiving cavity and the side wall of the camera unit in the imprint output state; the camera unit is located between the imprint output port and the imprint output end of the imprint output device in the shooting state.
[0008] According to an embodiment of the present utility model, the device body includes a housing, an inner housing, and an elastic reset mechanism; the housing has the accommodation cavity, the housing includes a first end and a second end along its height; the first end has the mark output port; the second end has a mounting port for mounting the mark output device; the inner housing is located in the accommodation cavity and is connected to the housing through the elastic reset mechanism, the inner housing can perform reciprocating linear motion relative to the housing along the height direction of the housing, the inner housing is located at the first end in the mark output state, and the inner housing is located at the second end in the shooting state; the mark output device can be connected to the inner housing through the mounting port; the elastic reset mechanism is in an extended state in the mark output state; the elastic reset mechanism is in a contracted state in the shooting state to reset the inner housing.
[0009] According to an embodiment of the present utility model, the elastic reset mechanism includes a first rotating shaft and a constant force spring; the first rotating shaft is arranged between the inner side wall of the housing and the outer side wall of the inner housing, and is located at the second end, and is arranged on the housing along a direction perpendicular to the height direction of the housing; the constant force spring is wound around the first rotating shaft, and the end of the constant force spring is connected to the side wall of the inner housing, the constant force spring is in an extended state in the mark output state, and the constant force spring is in a contracted state in the shooting state.
[0010] According to an embodiment of the present utility model, the imaging unit includes a base, a flipping mechanism, a rotating shaft mechanism, and an imaging mechanism; the base is located in the accommodation cavity and is connected to the inner side wall of the housing; the flipping mechanism is rotatably connected to the base through the rotating shaft mechanism, the flipping mechanism is in a vertical state in the mark output state and is located between the side wall of the accommodation cavity and the side wall of the imaging unit; the flipping mechanism is in a horizontal state in the shooting state and is located between the mark output port and the mark output end of the mark output device; the imaging mechanism is arranged on the flipping mechanism, the imaging mechanism is located between the side wall of the accommodation cavity and the side wall of the imaging unit in the mark output state; the imaging mechanism is located between the mark output port and the mark output end of the mark output device in the shooting state; when the inner housing moves along the direction from the second end to the first end, it can press the flipping mechanism to switch the flipping mechanism from the horizontal state to the vertical state.
[0011] According to an embodiment of the present utility model, the rotating shaft mechanism includes a second rotating shaft and a torsion spring; the flipping mechanism is rotatably connected to the base through the second rotating shaft; the second rotating shaft is perpendicular to the height direction of the outer shell; the torsion spring is sleeved on the second rotating shaft, one end of the torsion spring is rotatably connected to the base, and the other end of the torsion spring is connected to the flipping mechanism, which can switch the flipping mechanism from the vertical state to the horizontal state.
[0012] According to an embodiment of the present utility model, it further includes a controller, which is arranged on the device main body and connected to the imaging mechanism.
[0013] According to an embodiment of the present utility model, the controller is communicatively connected to a mobile terminal; the mobile terminal includes a display screen, and the display screen can display the area covered by the imprint output port on the carrier.
[0014] According to an embodiment of the present utility model, it further includes a display screen, which is arranged on the device main body and connected to the controller, and can display the area covered by the imprint output port on the carrier.
[0015] According to an embodiment of the present utility model, the imaging mechanism includes a camera and a first light source; the camera is arranged on the flipping mechanism; the first light source is located in the accommodating cavity and can emit light towards the imprint output port.
[0016] According to an embodiment of the present utility model, the imaging mechanism further includes a second light source, which is located in the accommodating cavity and connected to the controller, and can emit ultraviolet light towards the imprint.
[0017] According to an embodiment of the present utility model, the inner shell is arranged as a cylindrical structure with openings at both ends, the axial direction of the inner shell is parallel to the height direction of the outer shell, and the inner shell can be arranged around the imprint output device.
[0018] According to an embodiment of the present utility model, the device main body further includes a connecting mechanism, which is arranged on the inner shell and can connect the inner shell to the outer shell when the inner shell moves to the state of the first end.
[0019] According to an embodiment of the present utility model, the side wall of the outer shell has an extending through hole; the side wall of the inner shell has a receiving hole; the connecting mechanism includes a connecting column and a first spring; the connecting column is located in the receiving hole and is arranged along the extending direction of the receiving hole, the end of the connecting column is slidably connected to the inner side wall of the outer shell, and a part of the connecting column can extend into the extending through hole in the mark output state; the first spring is located between the end of the receiving hole and the end of the connecting column, the first spring is in an extended state in the mark output state, and the first spring is in a contracted state in the shooting state.
[0020] According to an embodiment of the present utility model, the inner side of the outer shell has a limiting groove, and the limiting groove is arranged along the height direction of the outer shell; the end of the connecting column is slidably connected to the groove wall of the limiting groove; the extending through hole is opened on the limiting groove.
[0021] According to an embodiment of the present utility model, the device body further includes a disconnection mechanism, which is arranged on the outer side wall of the outer shell and at the first end, and is movably inserted into the extending through hole, and the disconnection mechanism can push the connecting column out of the extending through hole.
[0022] According to an embodiment of the present utility model, the disconnection mechanism includes a pressing assembly and a second spring; the pressing assembly is slidably inserted into the extending through hole along a direction perpendicular to the height direction of the outer shell, and the pressing assembly can be switched between a first state and a second state through the slidable insertion, the pressing assembly is located outside the inner end of the extending through hole in the first state; the pressing assembly penetrates through the extending through hole in the second state to push the connecting column out of the extending through hole; the second spring is in an extended state in the first state to reset the pressing assembly, and the second spring is in a contracted state in the second state.
[0023] According to an embodiment of the present utility model, the pressing assembly includes a pressing member, a top abutting column, and a limiting member; the pressing member is disposed on the outer side wall of the housing and is located at the insertion through hole; the top abutting column is disposed on the side of the pressing member facing the housing, the end of the top abutting column is connected to the pressing member, and is movably inserted through the insertion through hole, and can eject the connecting column out of the insertion through hole; the edge of the insertion through hole has a limiting through hole; the limiting member is disposed on the side of the pressing member facing the housing, and is inserted through the limiting through hole, and is slidably connected to the hole wall of the limiting through hole, and can make the pressing member perform a linear motion; the second spring is disposed around the top abutting column and is clamped between the outer side wall of the housing and the side of the pressing member facing the housing, the second spring is in an extended state in the first state to reset the pressing member, and the second spring is in a contracted state in the second state.
[0024] According to an embodiment of the present utility model, the limiting member includes a limiting strip and a stopping portion; the limiting strip is disposed on the side of the pressing member facing the housing, and is inserted through the limiting through hole, and is slidably connected to the hole wall of the limiting through hole, and can make the pressing member perform a linear motion; the stopping portion is located in the accommodating cavity, and is connected to the end of the limiting strip, and can abut against the edge of the inner end of the limiting through hole in the first state.
[0025] The present utility model also provides a printing system, including: the imprint recording device of the above embodiment; an imprint output device connected to the imprint recording device.
[0026] The features and advantages of the imprint recording device and the printing system of the present utility model are:
[0027] The imprint recording device of the present utility model can be connected to an imprint output device, and can record the imprint in real time after the imprint output device completes printing to form an imprint, thereby solving the problem that the imprint output device in the prior art cannot record the imprint, effectively preventing the forgery of the imprint, and facilitating the investigation and evidence collection of the imprint. Description of the Drawings
[0028] In order to more clearly illustrate the technical solutions in the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0029] Figure 1 It is a right view of the printing system of the present utility model;
[0030] Figure 2 is a three-dimensional schematic diagram of the main body of the device of the present utility model and the imaging unit in a separated state;
[0031] Figure 3 is an exploded view of the imprint recording device of the present utility model;
[0032] Figure 4 is a cross-sectional view of the imprint recording device of the present utility model in a shooting state;
[0033] Figure 5 is a cross-sectional view of the printing system of the present utility model in a shooting state;
[0034] Figure 6 is a cross-sectional view of the printing system of the present utility model in an imprint output state;
[0035] Figure 7 is a three-dimensional view of the inner shell of the present utility model;
[0036] Figure 8 is a three-dimensional view of the disconnection mechanism of the present utility model;
[0037] Figure 9 is Figure 5 a partial schematic diagram in;
[0038] Figure 10 is a left view of the imprint recording device of the present utility model;
[0039] Figure 11 is a right view of the imprint recording device of the present utility model;
[0040] Figure 12 is a top view of the imprint recording device of the present utility model;
[0041] Figure 13 is a bottom view of the imprint recording device of the present utility model;
[0042] Figure 14 is a three-dimensional view of the imaging unit of the present utility model.
[0043] Reference numerals:
[0044] 100. Marking recording device; 110. Device main body; 111. Outer shell; 1111. Accommodating cavity; 1112. Marking output port; 1101. First end; 1102. Second end; 1202. Installation port; 1113. Insertion through hole; 1114. Limiting groove; 1115. Limiting through hole; 112. Inner shell; 1120. Accommodating hole; 113. Elastic reset mechanism; 1131. First rotating shaft; 1132. Constant force spring; 114. Connection mechanism; 1141. Connection column; 1142. First spring; 115. Disconnection mechanism; 1151. Pressing assembly; 1501. Pressing component; 1502. Abutting column; 1503. Limiting component; 1531. Limiting strip; 1532. Stopping portion; 1152. Second spring; 120. Camera unit; 121. Base; 122. Flipping mechanism; 123. Rotating shaft mechanism; 1231. Second rotating shaft; 1232. Torsion spring; 124. Camera mechanism; 1241. Camera; 200. Marking output device; H. Height direction of the outer shell. Detailed implementation mode
[0045] To make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions in the present utility model will be clearly and completely described below with reference to the accompanying drawings in the present utility model. Obviously, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0046] In the description of this implementation mode, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of describing this implementation mode and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to this implementation mode.
[0047] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of this implementation mode, "a plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.
[0048] In this embodiment, unless otherwise clearly specified or limited, terms such as "set", "installed", "connected", "linked", "fixed", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or integrated; 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 elements or the interaction relationship between two elements, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in this embodiment can be understood according to specific circumstances.
[0049] In the embodiment of the present utility model, unless otherwise clearly specified or limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.
[0050] Figures 1 to 14 There is shown a mark recording device 100 provided by the present utility model, and the mark recording device 100 is connected to a mark output device 200; the mark output device 200 can form a mark on a carrier; wherein, the mark recording device 100 can record the mark in a state where the mark output device 200 forms the mark.
[0051] Specifically in implementation, the mark recording device 100 of the present utility model can be connected to the mark output device 200 and record the mark after the mark output device 200 forms the mark. That is, both the specific position where the mark covers the carrier and the pattern of the mark when the mark is covered can be recorded, thereby solving the problem in the prior art that the mark output device 200 cannot record the mark, effectively preventing the forgery of the mark, and facilitating the investigation and evidence collection of the mark at the same time.
[0052] As Figure 1 shown, in this embodiment, the mark output device 200 can be a device in the prior art, such as a device that can form a mark by printing or stamping; the mark output device 200 can be vertically inserted through the mark recording device 100.
[0053] As Figures 1 to 3As shown, according to an embodiment of the present utility model, the imprint recording device 100 includes a device main body 110 and a camera unit 120; the device main body 110 has a receiving cavity 1111 and an imprint output port 1112 that can communicate with the receiving cavity 1111, and the device main body 110 is connected to an imprint output device 200; the imprint output device 200 can switch between an imprint output state and a shooting state, and the imprint output end of the imprint output device 200 is located at the imprint output port 1112 in the imprint output state; there is a distance between the imprint output end of the imprint output device 200 and the imprint output port 1112 in the shooting state; the camera unit 120 is located in the receiving cavity 1111 and is movably connected to the side wall of the receiving cavity 1111, and the camera unit 120 is located between the side wall of the receiving cavity 1111 and the side wall of the camera unit 120 in the imprint output state; the camera unit 120 is located between the imprint output port 1112 and the imprint output end of the imprint output device 200 in the shooting state.
[0054] In specific implementation, the receiving cavity 1111 can accommodate both the imprint output device 200 and the camera unit 120, and the imprint output device 200 can freely switch between the imprint output state and the shooting state, as Figure 6 shown, the imprint output end (such as a printing nozzle) of the imprint output device 200 is located at the imprint output port 1112 in the imprint output state, as Figure 5 shown, there is a certain distance between the imprint output end of the imprint output device 200 and the imprint output port 1112 in the shooting state, and the camera unit 120 is movably connected to the side wall of the device and is located between the side wall and the side wall of the camera unit 120 in the imprint output state, and is located between the imprint output port 1112 and the end of the imprint output device 200 in the shooting state, which neither affects the imprint output nor can take pictures after the imprint output is completed. Among them, when it is necessary to output an imprint, that is, when it is necessary to stamp, cover the imprint output port 1112 on the position of the carrier that needs to be stamped, and then, the imprint output device 200 can be pressed downward to make the imprint output device 200 in the imprint output state, as Figure 6 shown, in the imprint output state, the imprint output device 200 can spray ink from the imprint output port 1112 to achieve stamping. After stamping is completed, make the imprint output device 200 in the shooting state, as Figure 5 shown, in the shooting state, there is a distance between the imprint output end of the imprint output device 200 and the imprint output port 1112, that is, there is a certain space between the imprint output end of the imprint output device 200 and the imprint output port 1112, making room for the camera unit 120 to facilitate the camera unit 120 to take pictures of the stamp, thereby recording the imprint. Thus, people will know where the stamp is placed on the carrier.
[0055] As Figure 5As shown, in this embodiment, the accommodating cavity 1111 can be a columnar structure arranged vertically; the imprint output port 1112 can be located at the bottom of the device main body 110.
[0056] As Figure 3 and Figure 4 shown, according to an embodiment of the present invention, the device main body 110 includes a housing 111, an inner housing 112 and an elastic reset mechanism 113; the housing 111 has an accommodating cavity 1111, and the housing 111 includes a first end 1101 and a second end 1102 along its height; the first end 1101 has an imprint output port 1112; the second end 1102 has a mounting port 1202 for mounting the imprint output device 200; the inner housing 112 is located in the accommodating cavity 1111 and is connected to the housing 111 through the elastic reset mechanism 113. The inner housing 112 can perform a reciprocating linear motion relative to the housing 111 along the height direction H of the housing 111. The inner housing 112 is located at the first end 1101 in the imprint output state and at the second end 1102 in the shooting state; the imprint output device 200 can be connected to the inner housing 112 through the mounting port 1202; the elastic reset mechanism 113 is in an extended state in the imprint output state; the elastic reset mechanism 113 is in a contracted state in the shooting state to reset the inner housing 112.
[0057] Specifically in implementation, the housing 111 is designed with an accommodating cavity 1111, one end of which is the imprint output port 1112 and the other end is the mounting port 1202 for mounting the imprint output device 200. The outer side wall of the housing 111 can be held by the user to facilitate forming an imprint, that is, to facilitate stamping. The inner housing 112 is located in the accommodating cavity 1111 and is connected to the housing 111 through the elastic reset mechanism 113, and can realize a reciprocating linear motion in the height direction H of the housing 111, that is, the conversion from the imprint output state to the shooting state. As Figure 1 and Figure 5 shown, when the imprint output device 200 is connected to the inner housing 112 through the mounting port 1202, people can press the imprint output device 200 by hand. As Figure 6 shown, the imprint output device 200 is moved from the second end 1102 to the first end 1101, that is, from the top of the housing 111 to the bottom of the housing 111. After the imprint output device 200 moves to the bottom, it is in the imprint output state. The imprint output end (such as a printing nozzle) at the bottom of the imprint output device 200 will contact the carrier to make an imprint on the carrier, that is, to complete stamping. At this time, the elastic reset mechanism 113 extends. When the stamping is completed, people can cancel the pressing. Under the reset action of the elastic reset mechanism 113, the imprint output device 200 will move upward, that is, from the first end 1101 to the second end 1102. As Figure 5As shown, after the imprint output device 200 moves to the second end 1102, it is in the shooting state. At this time, the elastic reset mechanism 113 contracts. In the shooting state, there is a certain space between the imprint output end of the imprint output device 200 and the imprint output port 1112, making room for the imaging unit 120 to facilitate the imaging unit 120 to take pictures of the seal, thereby recording the imprint.
[0058] As Figure 5 shown, in this embodiment, the outer shell 111 and the inner shell 112 can be set as a cylindrical structure with openings at both ends; the axial direction of the inner shell 112 is parallel to the height direction H of the outer shell 111, and the inner shell 112 can be arranged around the imprint output device 200; the first end 1101 can be the bottom end of the outer shell 111; the second end 1102 can be the top end of the outer shell 111; the outer shell 111 is arranged around the inner shell 112, and the inner shell 112 can perform reciprocating linear motion relative to the outer shell 111 in the vertical direction.
[0059] As Figure 3 、 Figure 4 and Figure 7 shown, according to an embodiment of the present invention, the elastic reset mechanism 113 includes a first rotating shaft 1131 and a constant force spring 1132; the first rotating shaft 1131 is arranged between the inner side wall of the outer shell 111 and the outer side wall of the inner shell 112, and is located at the second end 1102, and is arranged on the outer shell 111 along a direction perpendicular to the height direction H of the outer shell 111; the constant force spring 1132 is wound around the first rotating shaft 1131, and the end of the constant force spring 1132 is connected to the side wall of the inner shell 112. The constant force spring 1132 is in an extended state in the imprint output state and in a contracted state in the shooting state.
[0060] Specifically, in implementation, the elastic reset mechanism 113 in the imprint recording device 100 of the present invention is a key component. In the imprint output state, the imprint output device 200 and the inner shell 112 are located at the bottom of the outer shell 111, and the constant force spring 1132 remains in an extended state. When shooting is required, in order to be able to reset, that is, in order to switch to a contracted state, the constant force spring 1132 will move the inner shell 112 and the imprint output device 200 upward along the height direction H of the outer shell 111 after the downward pressing force on the imprint output device 200 is removed by people, so as to leave an appropriate space for the imaging unit 120 at the bottom of the outer shell 111 for shooting. The design of the elastic reset mechanism 113 enables the imprint recording device 100 to flexibly switch between the imprint output state and the shooting state, improving the use efficiency of the entire device. That is, the imprint output device 200 can automatically move from the bottom of the outer shell 111 to the top of the outer shell 111 without being pressed by people.
[0061] As Figure 5 、 Figure 6 andFigure 14 As shown, according to an embodiment of the present utility model, the imaging unit 120 includes a base 121, a flipping mechanism 122, a rotating shaft mechanism 123, and an imaging mechanism 124; the base 121 is located in the accommodating cavity 1111 and is connected to the inner sidewall of the outer shell 111; the flipping mechanism 122 is rotatably connected to the base 121 through the rotating shaft mechanism 123, and the flipping mechanism 122 is in a vertical state in the imprint output state and is located between the sidewall of the accommodating cavity 1111 and the sidewall of the imaging unit 120; the flipping mechanism 122 is in a horizontal state in the shooting state and is located between the imprint output port 1112 and the imprint output end of the imprint output device 200; the imaging mechanism 124 is arranged on the flipping mechanism 122, and the imaging mechanism 124 is located between the sidewall of the accommodating cavity 1111 and the sidewall of the imaging unit 120 in the imprint output state; the imaging mechanism 124 is located between the imprint output port 1112 and the imprint output end of the imprint output device 200 in the shooting state; when the inner shell 112 moves along the direction from the second end 1102 to the first end 1101, it presses against the flipping mechanism 122, causing the flipping mechanism 122 to switch from the horizontal state to the vertical state.
[0062] Specifically, in implementation, the imprint recording device 100 of the present utility model demonstrates extremely high flexibility and adaptability in the design of the imaging unit 120. The imaging unit 120 is composed of a base 121, a flipping mechanism 122, a rotating shaft mechanism 123, and an imaging mechanism 124 to achieve precise positioning and shooting in different working states. The base 121 is fixed in the accommodating cavity 1111 and is connected to the inner sidewall of the outer shell 111, providing a stable support point. The flipping mechanism 122 is connected to the base 121 through the rotating shaft mechanism 123 and can switch between vertical and horizontal according to the working state of the imprint recording device 100. In the imprint output state, the flipping mechanism 122 remains in a vertical state, located between the sidewall of the accommodating cavity 1111 and the sidewall of the imaging unit 120, avoiding interfering with the normal imprint output work of the imprint output device 200; while in the shooting state, the flipping mechanism 122 is horizontally unfolded, located between the imprint output port 1112 and the end of the imprint output device 200, ensuring that the imaging mechanism 124 can capture the area covered by the imprint output port 1112, so as to facilitate shooting the area to be imprinted and clear imprint images. The imaging mechanism 124 is installed on the flipping mechanism 122, and its position changes with the state of the flipping mechanism 122, ensuring that it can be in a better position in the shooting state. In addition, when the inner shell 112 moves linearly, it can press against the flipping mechanism 122, prompting it to switch from the horizontal state to the vertical state. This design ensures the smooth conversion of the imprint recording device 100 in different working modes.
[0063] As Figure 14 shown, in this embodiment, the base 121 and the flipping mechanism 122 can be in a plate shape, and the base 121 can be vertically attached to the inner sidewall of the outer shell 111.
[0064] According to an embodiment of the present utility model, the rotating shaft mechanism 123 includes a second rotating shaft 1231 and a torsion spring 1232; the flipping mechanism 122 is rotatably connected to the base 121 through the second rotating shaft 1231; the second rotating shaft 1231 is perpendicular to the height direction H of the housing 111; the torsion spring 1232 is sleeved on the second rotating shaft 1231, one end of the torsion spring 1232 is rotatably connected to the base 121, and the other end of the torsion spring 1232 is connected to the flipping mechanism 122, and can switch the flipping mechanism 122 from the vertical state to the horizontal state in the second state.
[0065] In specific implementation, in the imprint recording device 100 of the present utility model, the design of the rotating shaft mechanism 123 is crucial for the flexible movement of the imaging unit 120. This mechanism consists of a second rotating shaft 1231 and a torsion spring 1232. The second rotating shaft 1231 is perpendicular to the height direction H of the housing 111, ensuring that the flipping mechanism 122 can be precisely angled between the vertical and horizontal states. The flipping mechanism 122 is rotatably connected to the base 121 through the second rotating shaft 1231, so that in the imprint output state, the flipping mechanism 122 remains vertical, located between the accommodating cavity 1111 and the side wall of the imaging unit 120, without interfering with the normal imprint output work of the imprint output device 200; when it is necessary to capture the imprint, the flipping mechanism 122 can be horizontally unfolded, located between the imprint output port 1112 and the end of the imprint output device 200, providing a clear shooting perspective for the imaging mechanism 124. The design of the torsion spring 1232 further enhances the function of the rotating shaft mechanism 123. It is sleeved on the second rotating shaft 1231, with one end connected to the base 121 and the other end connected to the flipping mechanism 122. This design enables the flipping mechanism 122 to smoothly switch from the vertical state to the horizontal state under the elastic force of the torsion spring 1232, thus meeting the requirements of the imprint recording device 100 in different working modes.
[0066] According to an embodiment of the present utility model, it further includes a controller, which is arranged on the device main body 110 and is connected to the imaging mechanism 124.
[0067] In a feasible embodiment, the controller is communicatively connected to a mobile terminal; the mobile terminal includes a display screen, and the display screen can display the area covered by the imprint output port 1112 on the carrier.
[0068] In specific implementation, the controller can be communicatively connected to the mobile terminal. The mobile terminal can be, for example, a smart phone or a tablet computer, equipped with a display screen, and can display in real time the area of the carrier covered by the imprint output port 1112 of the imprint recording device 100. Through the display screen of the mobile terminal, the user can intuitively view the imprint output situation and shooting situation of the imprint on the carrier, realizing monitoring and operation, and can avoid the user forming an imprint at the wrong position.
[0069] In this embodiment, the controller is communicatively connected to the mobile terminal, which can be either a wired connection or a wireless connection.
[0070] In another feasible embodiment, a display screen is further included, which is disposed on the device main body 110. For example, the display screen can be disposed on the outer side wall of the housing 111 and connected to the controller, and can display the area covered by the imprint output port 1112 on the carrier.
[0071] During specific implementation, when forming an imprint, people can view the area to be stamped by looking at the display screen on the outer side wall, that is, the area covered by the imprint output port 1112, which can prevent the user from forming an imprint at the wrong position.
[0072] According to an embodiment of the present invention, the imaging mechanism 124 includes a camera 1241 and a first light source; the camera 1241 is disposed on the flipping mechanism 122; the first light source can be a light-emitting diode, and the first light source is located in the accommodation cavity 1111 and can emit light toward the imprint output port 1112.
[0073] During specific implementation, the first light source emits light toward the imprint output port 1112, providing the required light for shooting and improving the image quality.
[0074] In this embodiment, the first light source can be disposed on the flipping mechanism 122.
[0075] According to an embodiment of the present invention, the imaging mechanism 124 further includes a second light source, which can be an ultraviolet lamp tube (or can be called a UV lamp). The second light source is located in the accommodation cavity 1111 and is connected to the controller, and can emit ultraviolet light toward the imprint.
[0076] During specific implementation, the second light source realizes the function of emitting ultraviolet light toward the imprint, enabling the camera 1241 to capture the imprint irradiated by ultraviolet light, which is convenient for people to distinguish whether the imprint is forged through the captured pictures or videos.
[0077] In this embodiment, the second light source can be disposed on the flipping mechanism 122.
[0078] As Figures 5 to 7 shown, according to an embodiment of the present invention, the device main body 110 further includes a connecting mechanism 114, which is disposed on the inner housing 112 and can connect the inner housing 112 to the outer housing 111 when the inner housing 112 moves to the first end 1101.
[0079] During specific implementation, as Figure 6As shown, the state where the inner shell 112 moves to the first end 1101 corresponds to the imprint output state. That is, when the inner shell 112 and the imprint output device 200 move synchronously until the imprint output end of the imprint output device 200 is located at the imprint output port 1112, after the imprint output end of the imprint output device 200 is located at the imprint output port 1112, the connecting mechanism 114 can connect the inner shell 112 and the outer shell 111. The imprint output device 200 is provided on the inner shell 112. Since the inner shell 112 is connected to the outer shell 111, the imprint output end of the imprint output device 200 is fixed at the imprint output port 1112. The imprint output device is not easily shaken or vibrated, effectively avoiding the problems of blurred or misaligned imprints caused by the movement or vibration of the imprint output device 200, ensuring the imprint quality, and there is no need for people to continue pressing the imprint output device 200 by hand, which is convenient to use.
[0080] In this embodiment, the connecting mechanism 114 can be located on the outer side wall of the bottom of the inner shell 112.
[0081] As Figure 5 shown, according to an embodiment of the present invention, the side wall of the outer shell 111 has an insertion through hole 1113; the side wall of the inner shell 112 has a receiving hole 1120; the connecting mechanism 114 includes a connecting column 1141 and a first spring 1142; the connecting column 1141 is located in the receiving hole 1120 and is arranged along the extending direction of the receiving hole 1120. The end of the connecting column 1141 is slidably connected to the inner side wall of the outer shell 111, and a part of the connecting column 1141 can extend into the insertion through hole 1113 in the imprint output state; the first spring 1142 is located between the end of the receiving hole 1120 and the end of the connecting column 1141. The first spring 1142 is in an extended state in the imprint output state and in a contracted state in the shooting state.
[0082] Specifically, when implemented, as Figure 6As shown in the figure, (1) Shooting state: The marking output device 200 is located at the top of the outer shell 111 and is connected to the inner shell 112. At this time, the marking output end of the marking output device 200 (for example, the lower end of the marking output device 200) is far from the marking output port 1112 of the first end 1101, and a marking cannot be formed yet. The imaging unit 120 is at this time in the space between the marking output end of the marking output device 200 and the first end 1101. The imaging unit 120 can face the marking output port 1112 for shooting. The end of the connecting column 1141 abuts against the inner side wall of the outer shell 111 under the action of the first spring 1142; (2) Marking output state: When it is necessary to output a marking, the marking output device 200 can be pressed by hand. After the marking output device 200 is subjected to pressure, it will move towards the first end 1101 together with the inner shell 112. As the inner shell 112 moves, the end of the connecting column 1141 will slide on the inner side wall of the outer shell 111. When the marking output end of the marking output device 200 (for example, the lower end of the marking output device 200) reaches the first end 1101, as Figure 5 shown, the end of the connecting column 1141 will slide into and extend into the through hole 1113. Since at this time a part of the connecting column 1141 is in the receiving hole 1120 and another part of the connecting column 1141 is in the through hole 1113 that extends into, the inner shell 112 cannot move relative to the marking output device 200 along the height direction H of the outer shell 111, realizing the fixation of the inner shell 112. The inner shell 112 serves as the support base of the marking output device 200. After the inner shell 112 is fixed, the marking output device 200 is relatively stable. At this time, the stability of the marking output by the marking output device 200 is relatively high, and the marking quality is also relatively high.
[0083] As Figures 4 to 6 shown, according to an embodiment of the present invention, the inner side of the outer shell 111 has a limiting groove 1114, and the limiting groove 1114 is arranged along the height direction H of the outer shell 111; the end of the connecting column 1141 is slidably connected to the groove wall of the limiting groove 1114; the through hole 1113 that extends into is opened on the limiting groove 1114.
[0084] Specifically in implementation, the end of the connecting column 1141 can slide in the limiting groove 1114, which can enable the inner shell 112 to perform a linear motion relative to the outer shell 111. And, since the through hole 1113 that extends into is also located on the limiting groove 1114, therefore, it is ensured that the connecting column 1141 can accurately extend into the above-mentioned through hole 1113 that extends into in the marking output state.
[0085] As Figure 5 shown, in this embodiment, the limiting groove 1114 can extend from the first end 1101 to the second end 1102; the end of the connecting column 1141 can be located in the limiting groove 1114.
[0086] As Figure 5 andFigure 6 As shown, according to an embodiment of the present utility model, the device main body 110 further includes a disconnection mechanism 115, which is disposed on the outer side wall of the outer shell 111 and located at the first end 1101, and is movably inserted into the insertion through hole 1113. The disconnection mechanism 115 can eject the connection column 1141 out of the insertion through hole 1113.
[0087] In specific implementation, this design allows the disconnection mechanism 115 to directly interact with the connection column 1141. Through its mobility, the connection column 1141 can be ejected from the insertion through hole 1113, thereby realizing the disconnection between the inner shell 112 and the outer shell 111. The design of this mechanism not only improves the use flexibility of the imprint recording device 100, but also provides a simple and fast way for users to switch states.
[0088] As Figures 5 to 8 shown, in this embodiment, the disconnection mechanism 115 can be disposed on the outer side wall of the bottom of the outer shell 111.
[0089] According to an embodiment of the present utility model, the disconnection mechanism 115 includes a pressing component 1151 and a second spring 1152; the pressing component 1151 is slidably inserted into the insertion through hole 1113 along the height direction H perpendicular to the outer shell 111. The pressing component 1151 can be switched between a first state and a second state by being slidably inserted. The pressing component 1151 is located outside the inner end of the insertion through hole 1113 in the first state; the pressing component 1151 penetrates through the insertion through hole 1113 in the second state to eject the connection column 1141 out of the insertion through hole 1113; the second spring 1152 is in an extended state in the first state to reset the pressing component 1151, and the second spring 1152 is in a contracted state in the second state.
[0090] In specific implementation, in the imprint recording device 100 of the present utility model, in order to achieve rapid connection and disconnection between the inner shell 112 and the outer shell 111, a disconnection mechanism 115 is specifically designed, which is realized through the cooperation of a pressing component 1151 and a second spring 1152. The pressing component 1151 can slide in the through hole 1113 extending into the inner shell along the direction H perpendicular to the height of the outer shell 111. For example, it can slide horizontally in the through hole 1113 extending into the inner shell. This design enables the pressing component 1151 to switch between two states: in the first state, the pressing component 1151 is located outside the inner end of the through hole 1113 extending into the inner shell and does not contact the connecting column 1141, and the inner shell 112 is fixed to the first end 1101 of the outer shell 111; while in the second state, the pressing component 1151 penetrates the through hole 1113 extending into the inner shell and pushes out the connecting column 1141, thereby realizing the separation of the inner shell 112 and the outer shell 111. The second spring 1152 is used to reset the pressing component 1151 and automatically return it to the first state, simplifying the operation process of the user and making the use of the device more convenient and efficient.
[0091] In this embodiment, the pressing component 1151 is equivalent to a button that can perform linear motion along the radial direction of the outer shell 111. When pressed by hand, the connection between the outer shell 111 and the inner shell 112 can be released; when the hand releases the pressing, under the action of the second spring 1152, the pressing component 1151 can move outward to achieve automatic reset.
[0092] As Figures 5 to 8 shown, according to an embodiment of the present utility model, the pressing component 1151 includes a pressing part 1501, a top column 1502, and a limiting part 1503; the pressing part 1501 is arranged on the outer side wall of the outer shell 111 and is located at the through hole 1113 extending into the inner shell; the top column 1502 is arranged on the side of the pressing part 1501 facing the outer shell 111. The end of the top column 1502 is connected to the pressing part 1501 and can movably pass through the through hole 1113 extending into the inner shell and can push out the connecting column 1141 into the through hole 1113; the edge of the through hole 1113 extending into the inner shell has a limiting through hole 1115; the limiting part 1503 is arranged on the side of the pressing part 1501 facing the outer shell 111 and passes through the limiting through hole 1115 and can slidably connect to the hole wall of the limiting through hole 1115, enabling the pressing part 1501 to perform linear motion; the second spring 1152 is arranged around the top column 1502 and is clamped between the outer side wall of the outer shell 111 and the side of the pressing part 1501 facing the outer shell 111. The second spring 1152 is in an extended state in the first state to reset the pressing part, and the second spring 1152 is in a contracted state in the second state.
[0093] During specific implementation, the pressing component 1501 is directly arranged at the position where the outer side wall of the outer shell 111 extends into the through hole 1113, facilitating the user to press and operate by hand. The abutting column 1502 is located on one side of the pressing component 1501, and its end is connected to the pressing component 1501 and passes through the through hole 1113 by extension. When it is necessary to release the connection between the inner shell 112 and the outer shell 111, the abutting column 1502 can push the connecting column 1141 out of the through hole 1113 to achieve separation. In order to ensure the stable linear movement of the pressing component 1501, a limiting through hole 1115 is specially designed at the edge of the through hole 1113, and the limiting component 1503 passes through it and is slidably connected to the hole wall of the limiting through hole 1115 to ensure the precise control of the pressing component 1501. In addition, the second spring 1152 is arranged around the abutting column 1502 and is located between the outer side wall of the outer shell 111 and the pressing component 1501, providing the power for the pressing component 1501 to reset and ensuring its automatic recovery after operation. This design makes the user operation more convenient and fast, improving the practicability of the whole device and the user experience.
[0094] In this embodiment, the limiting component 1503 includes a limiting strip 1531 and a stop portion 1532; the limiting strip 1531 is arranged on the side of the pressing component 1501 facing the outer shell 111, passes through the limiting through hole 1115, and is slidably connected to the hole wall of the limiting through hole 1115, enabling the pressing component 1501 to perform linear movement; the stop portion 1532 is located in the accommodating cavity 1111, connects the end of the limiting strip 1531, and can abut against the edge of the inner end of the limiting through hole 1115 in the first state.
[0095] During specific implementation, the arrangement of the limiting strip 1531 ensures that the pressing component 1501 can perform linear sliding in the limiting through hole 1115 on one side of the outer shell 111, and the sliding connection with the hole wall guarantees the stable movement of the pressing component 1501 during operation, avoiding the occurrence of skew or jamming phenomena. The design of the stop portion 1532 ensures the contraction and reset of the second spring 1152.
[0096] The present utility model also provides a printing system, including: the imprint recording device 100 of the above embodiment and an imprint output device 200, and the imprint output device 200 is connected to the imprint recording device 100.
[0097] During specific implementation, the specific structure, working principle, and beneficial effects of the imprint recording device 100 are the same as those of the above embodiment and will not be elaborated here.
[0098] In this embodiment, the imprint output device 200 can be an existing technology, such as a device that can form an imprint by printing or stamping.
[0099] Usage method of the printing system:
[0100] 1. Place the imprint recording device 100 on the carrier so that the imprint output port 1112 covers the area where the imprint needs to be formed.
[0101] 2. Pass the imprint output device 200 through the installation port 1202 and set it on the inner shell 112 located at the second end 1102 of the outer shell 110.
[0102] 3. Observe the area covered by the imprint output port 1112 on the mobile terminal.
[0103] 4. When it is confirmed that the covered area (the area to be stamped) is correct, press down the imprint output device 200. The imprint output device 200 will drive the inner shell 112 to move downward until the inner shell 112 moves to the first end 1101 of the outer shell 110. At this time, the imprint output end of the imprint output device 200 just abuts against the carrier, and at this time, the imprint output device 200 is in the imprint output state.
[0104] 5. Start the imprint output device 200 to perform imprint output.
[0105] 6. After the formation, press the pressing component 1501 on the outer side wall of the outer shell 110 to disconnect the connection between the inner shell 112 and the outer shell 110. At this time, the inner shell 112 automatically returns to the first end 1101 of the outer shell 110. Driven by the inner shell 112, the imprint output device 200 will move upward, and at this time, the imprint output device 200 is in the shooting state.
[0106] 7. The camera 1241 takes a picture of the imprint.
[0107] 8. Complete the operation.
[0108] In the description of this specification, the descriptions with reference to terms such as "one embodiment", "some embodiments", "mode", "specific mode", or "some modes" etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or mode are included in at least one embodiment or mode of the embodiments of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or mode. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or modes. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or modes described in this specification and the features of different embodiments or modes.
[0109] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than limiting it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A mark recording device, characterized in that: The imprint recording device is connected to an imprint output device (200); The imprint output device (200) can form an imprint on a carrier; The mark recording device is capable of recording the mark in a state where the mark is formed by the mark output device (200).
2. The mark recording device according to claim 1, characterized in that: The imprint recording device comprises a device body (110) and a camera unit (120); The device body (110) has a containing cavity (1111) and a print output port (1112) that can communicate with the containing cavity (1111), and the device body (110) is connected to the print output device (200); The imprint output device (200) can switch between an imprint output state and a shooting state, and the imprint output end of the imprint output device (200) is located at the imprint output port (1112) in the imprint output state; and there is a distance between the imprint output end of the imprint output device (200) and the imprint output port (1112) in the shooting state; The camera unit (120) is located in the accommodating cavity (1111) and is movably connected to the side wall of the accommodating cavity (1111); the camera unit (120) is located between the side wall of the accommodating cavity (1111) and the side wall of the camera unit (120) in the imprint output state; the camera unit (120) is located between the imprint output port (1112) and the imprint output end of the imprint output device (200) in the shooting state.
3. The mark recording device according to claim 2, characterized in that: The device body (110) comprises an outer shell (111), an inner shell (112) and an elastic reset mechanism (113); The housing (111) has the accommodating cavity (1111), and the housing (111) includes a first end (1101) and a second end (1102) along its height; the first end (1101) has the imprint output port (1112); the second end (1102) has an installation port (1202) for installing the imprint output device (200); The inner shell (112) is located in the accommodating cavity (1111) and is connected to the outer shell (111) via the elastic reset mechanism (113); the inner shell (112) can perform reciprocating linear motion relative to the outer shell (111) along the height direction (H) of the outer shell (111); the inner shell (112) is located at the first end (1101) in the imprint output state, and is located at the second end (1102) in the shooting state; The imprint output device (200) can be connected to the inner shell (112) through the mounting port (1202); The elastic reset mechanism (113) is in an extended state in the imprint output state; the elastic reset mechanism (113) is in a contracted state in the shooting state, so as to reset the inner shell (112).
4. The mark recording device according to claim 3, characterized in that: The elastic reset mechanism (113) comprises a first rotating shaft (1131) and a constant force spring (1132); The first rotating shaft (1131) is arranged between the inner side wall of the outer shell (111) and the outer side wall of the inner shell (112), is located at the second end (1102), and is arranged on the outer shell (111) along a height direction (H) perpendicular to the outer shell (111); The constant force spring (1132) is wound around the first rotating shaft (1131), and the end of the constant force spring (1132) is connected to the side wall of the inner shell (112). The constant force spring (1132) is in an extended state in the imprint output state, and is in a contracted state in the shooting state.
5. The mark recording device according to claim 3, characterized in that: The camera unit (120) comprises a base (121), a flip mechanism (122), a rotating shaft mechanism (123) and a camera mechanism (124); The base (121) is located in the accommodating cavity (1111) and is connected to the inner side wall of the outer shell (111); The flip mechanism (122) is rotatably connected to the base (121) via the rotating shaft mechanism (123); the flip mechanism (122) is in a vertical state in the imprint output state and is located between the side wall of the accommodating cavity (1111) and the side wall of the camera unit (120); the flip mechanism (122) is in a horizontal state in the shooting state and is located between the imprint output port (1112) and the imprint output end of the imprint output device (200); The camera mechanism (124) is arranged on the flip mechanism (122); the camera mechanism (124) is located between the side wall of the accommodating cavity (1111) and the side wall of the camera unit (120) in the imprint output state; the camera mechanism (124) is located between the imprint output port (1112) and the imprint output end of the imprint output device (200) in the shooting state; The inner shell (112) can press against the flipping mechanism (122) when moving in the direction from the second end (1102) to the first end (1101), so that the flipping mechanism (122) switches from the horizontal state to the vertical state.
6. The mark recording device according to claim 5, characterized in that: The rotating shaft mechanism (123) comprises a second rotating shaft (1231) and a torsion spring (1232); The flipping mechanism (122) is rotatably connected to the base (121) via the second rotating shaft (1231); The second rotating shaft (1231) is perpendicular to the height direction (H) of the housing (111); The torsion spring (1232) is sleeved on the second rotating shaft (1231), one end of the torsion spring (1232) is rotatably connected to the base (121), and the other end of the torsion spring (1232) is connected to the flip mechanism (122), so that the flip mechanism (122) can be switched from the vertical state to the horizontal state.
7. The mark recording device according to claim 6, characterized in that: It also includes a controller, which is arranged on the device body (110) and connected to the camera mechanism (124).
8. The mark recording device according to claim 7, characterized in that: The controller is communicatively connected to the mobile terminal; The mobile terminal comprises a display screen, which can display the area covered by the imprint output port (1112) on the carrier.
9. The mark recording device according to claim 7, characterized in that: It also comprises a display screen, which is arranged on the device body (110) and connected to the controller, and can display the area covered by the imprint output port (1112) on the carrier.
10. The mark recording device according to claim 8, characterized in that: The imaging mechanism (124) comprises a camera (1241) and a first light source; The camera (1241) is arranged on the flipping mechanism (122); The first light source is located in the accommodating cavity (1111) and can emit light toward the imprint output port (1112).
11. The mark recording device according to claim 10, characterized in that: The imaging mechanism (124) further comprises a second light source, which is located in the accommodating cavity (1111) and connected to the controller and can emit ultraviolet light to the mark.
12. The mark recording device according to any one of claims 3 to 11, characterized in that: The inner shell (112) is configured as a cylindrical structure with openings at both ends, the axial direction of the inner shell (112) is parallel to the height direction (H) of the outer shell (111), and the inner shell (112) can be configured around the imprint output device (200).
13. The mark recording device according to any one of claims 3 to 11, characterized in that: The device body (110) further comprises a connection mechanism (114) which is arranged on the inner shell (112) and can connect the inner shell (112) to the outer shell (111) when the inner shell (112) moves to the first end (1101).
14. The mark recording device according to claim 13, characterized in that: The side wall of the housing (111) has an extending through hole (1113); The side wall of the inner shell (112) has a receiving hole (1120); The connecting mechanism (114) comprises a connecting column (1141) and a first spring (1142); The connecting column (1141) is located in the accommodating hole (1120) and is arranged along the extending direction of the accommodating hole (1120); the end of the connecting column (1141) can be slidably connected to the inner side wall of the housing (111), and part of the connecting column (1141) can extend into the insertion through hole (1113) in the imprint output state; The first spring (1142) is located between the end of the accommodating hole (1120) and the end of the connecting column (1141), and the first spring (1142) is in an extended state in the imprint output state, and the first spring (1142) is in a contracted state in the shooting state.
15. The mark recording device according to claim 14, characterized in that: The inner side of the shell (111) is provided with a limiting groove (1114), and the limiting groove (1114) is arranged along the height direction (H) of the shell (111); The end of the connecting column (1141) can be slidably connected to the groove wall of the limiting groove (1114); The insertion through hole (1113) is arranged on the limiting groove (1114).
16. The mark recording device according to claim 14, characterized in that: The device body (110) further comprises a connection release mechanism (115), which is arranged on the outer wall of the housing (111) and is located at the first end (1101), and can be movably inserted into the insertion hole (1113); the connection release mechanism (115) can push the connection column (1141) out of the insertion hole (1113).
17. The mark recording device according to claim 16, characterized in that: The disconnecting mechanism (115) comprises a pressing component (1151) and a second spring (1152); The pressing component (1151) is slidably inserted into the insertion hole (1113) along a height direction (H) perpendicular to the housing (111); the pressing component (1151) can be switched between a first state and a second state by being slidably inserted into the insertion hole (1113); the pressing component (1151) is located outside the inner end of the insertion hole (1113) in the first state; the pressing component (1151) penetrates the insertion hole (1113) in the second state to push the connecting column (1141) out of the insertion hole (1113); The second spring (1152) is in an extended state in the first state to reset the pressing component (1151), and the second spring (1152) is in a contracted state in the second state.
18. The mark recording device according to claim 17, characterized in that: The pressing assembly (1151) comprises a pressing component (1501), a push-up column (1502) and a limiting component (1503); The pressing component (1501) is arranged on the outer side wall of the housing (111) and is located at the insertion through hole (1113); The push-up column (1502) is arranged on a side of the pressing component (1501) facing the housing (111); an end of the push-up column (1502) is connected to the pressing component (1501) and can be movably inserted into the insertion hole (1113) to push the connecting column (1141) out of the insertion hole (1113); The edge of the through hole (1113) extending into the through hole (1113) has a limiting through hole (1115); the limiting component (1503) is arranged on the side of the pressing component (1501) facing the housing (111), and is penetrated in the limiting through hole (1115), and can be slidably connected to the hole wall of the limiting through hole (1115), so that the pressing component (1501) can move linearly; The second spring (1152) is arranged around the top support column (1502) and is clamped between the outer wall of the outer shell (111) and the side of the pressing component (1501) facing the outer shell (111). The second spring (1152) is in an extended state in the first state to reset the pressing component, and the second spring (1152) is in a contracted state in the second state.
19. The mark recording device according to claim 18, characterized in that: The limiting component (1503) comprises a limiting strip (1531) and a stopper (1532); The limiting strip (1531) is arranged on a side of the pressing component (1501) facing the housing (111), and is passed through the limiting through hole (1115), and is slidably connected to the hole wall of the limiting through hole (1115), so that the pressing component (1501) can move in a straight line; The stopper (1532) is located in the accommodating cavity (1111), is connected to the end of the limiting strip (1531), and can abut against the edge of the inner end of the limiting through hole (1115) in the first state.
20. A printing system, characterized in that: include: The imprint recording device according to any one of claims 1 to 19; A mark output device (200) is connected to the mark recording apparatus.