Disassembly-free intelligent seal printing ink filling device
The smart ink filling device for stamps addresses the slow ink penetration and cumbersome sealing issues by enabling rapid ink injection and uniform distribution, enhancing efficiency and reducing manual effort.
Patent Information
- Application Number
- CN202422752427.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The existing seal ink filling device needs to wait a long time after filling to completely soak, and the sealing cover is inconvenient to open, which wastes time and effort.
A disassembly-free smart seal ink filling device is designed, including a grip, a sealing assembly, a rotating device and a pressing assembly. By combining the rotating sealing cover and the rotating plate, the ink is quickly injected and evenly applied, and the fast switching of the sealing cover is realized through the pressing assembly.
It realizes rapid injection and uniform soaking of ink, saves staff's time and energy and improves work efficiency.
Smart Images

Figure CN223100319U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of intelligent seal technology, and particularly relates to a non-detachable intelligent seal ink filling device. Background Technique
[0002] A seal ink filling device is a device used to add ink to a seal, aiming to improve the efficiency and convenience of stamping. In addition, there is a specially designed financial seal ink filler that focuses on the shape design of the product for easy operation and practical use. There are also some automatic ink-adding seal products on the market that integrate the functions of an ink pad and ink storage. Users can complete ink filling with simple operations, greatly improving the usability. In short, the emergence of seal ink filling devices has greatly simplified the traditional manual filling process, saving not only time but also effectively improving work efficiency and user experience.
[0003] However, currently, after most of the ink is filled, it takes about half an hour to an hour for the ink to be completely soaked, thus wasting a lot of time of the staff. And some are inconvenient to open the sealing cover during filling, resulting in cumbersome operations and wasting a lot of energy and time of the staff. Content of the Utility Model
[0004] The purpose of this utility model is to provide a non-detachable intelligent seal ink filling device that can inject ink into the seal more quickly, and can quickly spread the injected ink evenly, so that the ink can be quickly soaked, and can also quickly open and close the sealing cover, thus saving a lot of time and energy of the staff.
[0005] The technical solution adopted by this utility model is specifically as follows:
[0006] A non-detachable intelligent seal ink filling device, comprising:
[0007] A handle, a sealing component is arranged at the lower end of the handle, a housing is arranged below the handle, a rotating device is arranged at the lower end inside the housing, an oil storage layer is arranged below the rotating device, a seal body is arranged below the oil storage layer, a pressing component is arranged on the outer side of the lower end of the housing, and a protective cover is arranged below the pressing component. The pressing component controls the seal body to stamp.
[0008] Among them, the sealing component includes a sealing cover, and the rotation of the sealing cover is used to control the entry of ink; the rotating device includes a rotating ring and a rotating plate, and the rotating ring is used to control the rotation of the rotating plate.
[0009] In one preferred embodiment of the present invention, the sealing cover is rotatably connected to the handle, the sealing cover is rotatably connected to the housing, an external injection port is opened at one end of the sealing cover, a groove is opened at the lower end of the sealing cover, and first fixing blocks are respectively and fixedly connected to both sides of the groove opened at the lower end of the sealing cover.
[0010] In one preferred embodiment of the present invention, the rotating device includes a fixed shaft, the upper part of the fixed shaft is fixedly connected to the housing, a rotating shaft is rotatably connected to the fixed shaft, connecting brackets are respectively and fixedly connected to both ends of the lower part of the rotating shaft, a cross bar is fixedly connected to the lower part of the two groups of connecting brackets, a rotating plate is fixedly connected to the lower part of the cross bar, a second fixing block is fixedly connected to one end of the cross bar, and a rotating ring is fixedly connected to the other end of the second fixing block.
[0011] In one preferred embodiment of the present invention, the pressing assembly includes third fixing blocks, third fixing blocks are respectively arranged on both sides of the housing, and the two groups of third fixing blocks are fixedly connected to the housing, springs are respectively and fixedly connected to the lower parts of the two groups of third fixing blocks, and a fixed ring is fixedly connected to the lower part of the springs.
[0012] In one preferred embodiment of the present invention, an internal injection port is opened at the upper end of the housing, and the internal injection port is matched with the external injection port. Arc-shaped grooves are respectively opened at both sides of the upper end of the housing, and the two groups of first fixing blocks are respectively arranged symmetrically about the center in the arc-shaped grooves opened by the housing, and the first fixing blocks are slidably connected to the housing.
[0013] In one preferred embodiment of the present invention, a groove is opened at the outer side of the upper end of the housing, the rotating ring is arranged in the groove opened at the upper end of the housing, and the rotating ring is rotatably connected to the housing. A groove is opened at the lower end of the housing, the oil storage layer and the stamp body are respectively and fixedly arranged in the groove opened at the lower end of the housing, and an arc-shaped through hole is opened at the upper end of the groove opened by the housing. The second fixing block is arranged in the arc-shaped through hole opened by the housing, and the second fixing block is slidably connected to the housing. The rotating plate is rotatably connected to the oil storage layer.
[0014] In one preferred embodiment of the present invention, rectangular grooves are respectively opened at both ends of the inner side of the fixed ring, and the two groups of third fixing blocks and the two groups of springs are respectively arranged in the rectangular grooves opened by the fixed ring. The third fixing blocks are slidably connected to the fixed ring, and the housing is slidably connected to the fixed ring.
[0015] The technical effects achieved by the present utility model are:
[0016] An ink filling device for a detachable intelligent seal of the present utility model can quickly inject ink into the seal. By controlling the seal cover in the sealing component, the seal cover can be rotated, and the ink injection port can be quickly opened and closed, so that ink can be injected faster. By controlling the rotation of the rotating plate in the rotating device, the ink injected onto the oil storage layer can be quickly and evenly soaked, thus saving a lot of time and energy for the staff. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of the present utility model;
[0018] Figure 2 is a cross-sectional view of the present utility model;
[0019] Figure 3 is an exploded structural schematic diagram of the present utility model;
[0020] Figure 4 is a schematic structural diagram of the seal cover of the present utility model;
[0021] Figure 5 is a cross-sectional view of the housing of the present utility model;
[0022] Figure 6 is a schematic structural diagram of the rotating device of the present utility model;
[0023] Figure 7 is a partial cross-sectional view of the present utility model.
[0024] In the drawings, the list of components represented by each reference numeral is as follows:
[0025] 1, handle; 2, sealing component; 201, seal cover; 202, external injection port; 203, first fixing block; 3, housing; 301, internal injection port; 4, rotating device; 401, fixed shaft; 402, rotating shaft; 403, connecting bracket; 404, cross bar; 405, rotating plate; 406, second fixing block; 407, rotating ring; 5, pressing component; 501, third fixing block; 502, spring; 503, fixed ring; 6, oil storage layer; 7, seal body; 8, protective cover. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] In order to make the purpose and advantages of the present utility model clearer, the following specific examples are used to illustrate the present utility model in detail. It should be understood that the following text only describes one or several specific implementation manners of the present utility model, and does not strictly limit the scope of protection of the specific claims of the present utility model.
[0027] As Figure 1As shown in the figure, a non-detachable intelligent seal ink filling device includes a handle 1. A sealing component 2 is arranged at the lower end of the handle 1. A housing 3 is arranged below the handle 1. A rotating device 4 is arranged at the lower end inside the housing 3. An oil storage layer 6 is arranged below the rotating device 4. A seal body 7 is arranged below the oil storage layer 6. A pressing component 5 is arranged on the outer side of the lower end of the housing 3. A protective cover 8 is arranged below the pressing component 5. The pressing component 5 controls the seal body 7 to stamp.
[0028] Among them, the sealing component 2 includes a sealing cover 201. The rotation of the sealing cover 201 is used to control the entry of ink. The rotating device 4 includes a rotating ring 407 and a rotating plate 405. The rotating ring 407 is used to control the rotation of the rotating plate 405.
[0029] In this implementation, when the stamping ink marks are not clear, rotate the sealing cover 201 in the sealing component 2, so that the sealing cover 201 rotates around the handle 1. The external filling port 202 and the first fixing blocks 203 on both sides inside the sealing cover 201 rotate together. After rotating 90°, the external filling port 202 is aligned with the internal filling port 301, so as to inject the seal ink into the inside of the housing 3. After the injection is completed, reverse the sealing cover 201 to close the filling port. At this time, repeatedly rotate the rotating ring 407 in the rotating device 4, so that the rotating ring 407 rotates around the housing 3, and the second fixing block 406 inside the rotating ring 407 rotates. The rotation of the second fixing ring 503 drives the cross bar 404 at the other end to rotate, thereby driving the rotating plate 405 below the cross bar 404 to rotate together, so that the two connecting brackets 403 above the middle of the cross bar 404 rotate. Due to the rotation of the connecting brackets 403, the rotating shaft 402 rotates together. Since the fixed shaft 401 is fixed at the upper end of the center inside the housing 3, the whole rotating device 4 rotates around the center of the housing 3, so that the rotating plate 405 evenly scrapes the ink dripping on the oil storage layer 6 everywhere, so that the oil storage layer 6 can quickly and evenly soak the ink. When the ink soaking is completed, at this time, open the protective cover 8, cover the fixed ring 503 at the position to be stamped, hold the handle 1 and press it down, so that the housing 3 starts to move downward, and the third fixing blocks 501 on both sides of the housing 3 start to move downward. Since the third fixing blocks 501 move downward, the spring 502 is squeezed, so that the seal body 7 moves downward to stamp the position to be stamped, thus completing a series of operations.
[0030] As Figure 3 、 4 As shown in the figure, the sealing cover 201 is rotationally connected to the handle 1 and the housing 3. An external filling port 202 is opened at one end of the sealing cover 201. A groove is opened at the lower end of the sealing cover 201, and first fixing blocks 203 are respectively and fixedly connected to both sides of the groove opened at the lower end of the sealing cover 201.
[0031] In the above method, when the stamp ink is unclear, the sealing cover 201 in the sealing assembly 2 is rotated so that the sealing cover 201 rotates around the handle 1, and the outer injection port 202 and the first fixed blocks 203 on both sides of the inner side of the sealing cover 201 rotate together. After rotating 90°, the outer injection port 202 is aligned with the inner injection port 301, so that the stamp ink is injected into the shell 3. After the injection is completed, the sealing cover 201 is reversed to close the injection port.
[0032] like Figure 3 , 6 As shown, the rotating device 4 includes a fixed shaft 401, which is fixedly connected to the shell 3 at the top, a rotating shaft 402 is rotatably connected to the fixed shaft 401, connecting brackets 403 are respectively fixedly connected at both ends below the rotating shaft 402, a cross bar 404 is fixedly connected below the two groups of connecting brackets 403, a rotating plate 405 is fixedly connected below the cross bar 404, a second fixed block 406 is fixedly connected to one end of the cross bar 404, and a rotating ring 407 is fixedly connected to the other end of the second fixed block 406.
[0033] In the above method, after the ink is injected, the rotating ring 407 in the rotating device 4 is repeatedly rotated, so that the rotating ring 407 rotates around the shell 3, so that the second fixed block 406 inside the rotating ring 407 rotates, and the second fixed ring 503 rotates to drive the cross bar 404 at the other end to rotate, thereby driving the rotating plate 405 under the cross bar 404 to rotate together, so that the two groups of connecting brackets 403 in the middle and upper part of the cross bar 404 rotate together, and because the connecting bracket 403 rotates, the rotating shaft 402 rotates together, and because the fixed shaft 401 is fixed at the upper end of the center inside the shell 3, the rotating device 4 rotates around the center of the shell 3 as a whole, so that the rotating plate 405 scrapes the ink dripping on the oil reservoir 6 evenly to everywhere, so that the oil reservoir 6 can be quickly and evenly soaked with ink.
[0034] like Figure 3 , 7 As shown, the pressing assembly 5 includes a third fixed block 501, and the third fixed blocks 501 are respectively arranged on both sides of the shell 3, and the two groups of third fixed blocks 501 are fixedly connected to the shell 3, and springs 502 are respectively fixedly connected below the two groups of third fixed blocks 501, and a fixing ring 503 is fixedly connected below the spring 502.
[0035] In the above method, after the ink is completely soaked, the protective cover 8 is opened, the fixing ring 503 is covered on the position where the stamp is to be stamped, the handle 1 is held and pressed down, so that the shell 3 starts to move downward, and the third fixing blocks 501 on both sides of the shell 3 start to move downward. As the third fixing blocks 501 move downward, the spring 502 is squeezed, so that the seal body 7 moves downward, and the place to be stamped is stamped.
[0036] like Figure 1 , 2 As shown, an inner injection port 301 is opened at the upper end of the shell 3, and the inner injection port 301 matches the outer injection port 202, 90° arc grooves are opened on both sides of the upper end of the shell 3, and two groups of first fixing blocks 203 are respectively symmetrically arranged in the arc grooves opened in the shell 3, and the first fixing blocks 203 are slidably connected to the shell 3.
[0037] In the above manner, the inner injection port 301 matches the outer injection port 202, so that when the ink is injected into the seal, the ink can be accurately injected to prevent the inner injection port 301 from not matching the outer injection port 202, thereby preventing the ink from dripping to other places; the multiple grooves opened on the shell 3 can make the opening and closing of the sealing component 2 faster and more convenient to operate.
[0038] like Figure 3 , 5 As shown, a groove is opened on the outer side of the upper end of the shell 3, a rotating ring 407 is arranged in the groove opened at the upper end of the shell 3, and the rotating ring 407 is rotatably connected to the shell 3, a groove is opened at the lower end of the shell 3, the oil reservoir 6 and the seal body 7 are respectively fixedly arranged in the groove opened at the lower end of the shell 3, and a 180° arc-shaped through hole is opened at the upper end of the groove opened in the shell 3, the second fixed block 406 is arranged in the arc-shaped through hole opened in the shell 3, and the second fixed block 406 is slidably connected to the shell 3, and the rotating plate 405 is rotatably connected to the oil reservoir 6.
[0039] In the above method, after the ink is injected, the rotating ring 407 in the rotating device 4 is repeatedly rotated, so that the rotating ring 407 rotates around the shell 3, so that the second fixed block 406 inside the rotating ring 407 rotates, and the second fixed ring 503 rotates to drive the cross bar 404 at the other end to rotate, thereby driving the rotating plate 405 under the cross bar 404 to rotate together, so that the two groups of connecting brackets 403 in the middle and upper part of the cross bar 404 rotate together, and because the connecting bracket 403 rotates, the rotating shaft 402 rotates together, and because the fixed shaft 401 is fixed at the upper end of the center inside the shell 3, the rotating device 4 rotates around the center of the shell 3 as a whole, so that the rotating plate 405 scrapes the ink dripping on the oil reservoir 6 evenly to everywhere, so that the oil reservoir 6 can be quickly and evenly soaked with ink.
[0040] like Figure 2 , 7 As shown, rectangular grooves are respectively opened at both ends of the inner side of the fixing ring 503, and two groups of third fixing blocks 501 and two groups of springs 502 are respectively arranged in the rectangular grooves opened in the fixing ring 503, the third fixing block 501 is slidably connected to the fixing ring 503, and the shell 3 is slidably connected to the fixing ring 503.
[0041] In the above method, after the ink is fully soaked, the protective cover 8 is opened at this time, the fixing ring 503 is placed on the position where the seal is to be stamped, the handle 1 is held, and it is pressed downwards, so that the housing 3 starts to move downwards, and the third fixing blocks 501 on both sides of the housing 3 start to move downwards. Since the third fixing blocks 501 move downwards, the spring 502 is squeezed, so that the seal body 7 moves downwards to stamp the place where the seal is to be stamped.
[0042] Among them, due to the elasticity of the spring 502, when pressing down to stamp, the housing 3 and the third fixing block 501 can return to the initial state.
[0043] The working principle of this utility model is as follows: when the seal ink is not clear, the seal cover 201 in the sealing assembly 2 is rotated, so that the seal cover 201 rotates around the handle 1, and the external injection port 202 and the first fixing blocks 203 on both sides inside the seal cover 201 rotate together. After rotating 90°, the external injection port 202 is aligned with the internal injection port 301, and the seal ink is injected into the housing 3. After the injection is completed, the seal cover 201 is reversed to close the injection port. At this time, the rotating ring 407 in the rotating device 4 is rotated repeatedly, so that the rotating ring 407 rotates around the housing 3, and the second fixing block 406 inside the rotating ring 407 rotates. The rotation of the second fixing ring 503 drives the cross bar 404 at the other end to rotate, thereby driving the rotating plate 405 below the cross bar 404 to rotate together, so that the two connecting brackets 403 above the middle of the cross bar 404 rotate. Since the connecting brackets 403 rotate, the rotating shaft 402 rotates together. Since the fixed shaft 401 is fixed at the upper end of the center inside the housing 3, the whole rotating device 4 rotates around the center of the housing 3, so that the rotating plate 405 evenly scrapes the ink dripping on the oil storage layer 6 everywhere, so that the oil storage layer 6 can be quickly and evenly soaked with ink. After the ink is fully soaked, the protective cover 8 is opened at this time, the fixing ring 503 is placed on the position where the seal is to be stamped, the handle 1 is held, and it is pressed downwards, so that the housing 3 starts to move downwards, and the third fixing blocks 501 on both sides of the housing 3 start to move downwards. Since the third fixing blocks 501 move downwards, the spring 502 is squeezed, so that the seal body 7 moves downwards to stamp the place where the seal is to be stamped, thus completing a series of operations.
[0044] The above is only the preferred embodiment of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and retouches can be made, and these improvements and retouches should also be regarded as the protection scope of the present utility model. The structures, devices and operation methods not specifically described and explained in the present utility model are implemented according to the conventional means in the art without special description and limitation.
Claims
1. An intelligent seal ink filling device without disassembly, characterized in that: Comprising: A handle (1), a sealing component (2) is provided at the lower end of the handle (1), a housing (3) is provided below the handle (1), a rotating device (4) is provided at the lower end inside the housing (3), an oil storage layer (6) is provided below the rotating device (4), a seal body (7) is provided below the oil storage layer (6), a pressing component (5) is provided on the outer side of the lower end of the housing (3), a protective cover (8) is provided below the pressing component (5), and the pressing component (5) controls the seal body (7) to stamp. Wherein, the sealing component (2) includes a sealing cover (201), and the rotation of the sealing cover (201) is used to control the entry of ink; the rotating device (4) includes a rotating ring (407) and a rotating plate (405), and the rotating ring (407) is used to control the rotation of the rotating plate (405).
2. The ink filling device for the detachable intelligent seal according to claim 1, wherein: The sealing cover (201) is rotatably connected to the handle (1) and the housing (3). An external injection port (202) is opened at one end of the sealing cover (201), a groove is opened at the lower end of the sealing cover (201), and first fixing blocks (203) are respectively fixedly connected to both sides of the groove opened at the lower end of the sealing cover (201).
3. The ink filling device for the detachable intelligent seal according to claim 2, wherein: The rotating device (4) includes a fixed shaft (401), the upper part of the fixed shaft (401) is fixedly connected to the housing (3), a rotating shaft (402) is rotatably connected to the fixed shaft (401), connecting brackets (403) are respectively fixedly connected to both ends below the rotating shaft (402), a cross bar (404) is fixedly connected below the two groups of connecting brackets (403), a rotating plate (405) is fixedly connected below the cross bar (404), a second fixing block (406) is fixedly connected to one end of the cross bar (404), and a rotating ring (407) is fixedly connected to the other end of the second fixing block (406).
4. The ink filling device for the detachable intelligent seal according to claim 1, wherein: The pressing component (5) includes third fixing blocks (501), third fixing blocks (501) are respectively provided on both sides of the housing (3), and the two groups of third fixing blocks (501) are fixedly connected to the housing (3). Springs (502) are respectively fixedly connected below the two groups of third fixing blocks (501), and a fixed ring (503) is fixedly connected below the springs (502).
5. The ink filling device for the detachable intelligent seal according to claim 2, wherein: An internal injection port (301) is opened at the upper end of the housing (3), and the internal injection port (301) matches the external injection port (202). 90° arc-shaped grooves are respectively opened on both sides of the upper end of the housing (3), and the two groups of first fixing blocks (203) are respectively symmetrically arranged at the centers of the arc-shaped grooves opened by the housing (3), and the first fixing blocks (203) are slidably connected to the housing (3).
6. The ink filling device for the detachable intelligent seal according to claim 3, wherein: A groove is formed on the outer side of the upper end of the housing (3). The rotating ring (407) is arranged in the groove formed on the upper end of the housing (3), and the rotating ring (407) is rotatably connected to the housing (3). A groove is formed on the lower end of the housing (3). The oil storage layer (6) and the seal body (7) are respectively fixedly arranged in the groove formed on the lower end of the housing (3). An arc-shaped through hole of 180° is formed at the upper end of the groove formed on the housing (3). The second fixing block (406) is arranged in the arc-shaped through hole formed on the housing (3), and the second fixing block (406) is slidably connected to the housing (3). The rotating plate (405) is rotatably connected to the oil storage layer (6).
7. An ink filling device for a detachable intelligent seal according to claim 4, characterized in that: Rectangular grooves are respectively formed at both ends of the inner side of the fixing ring (503). The two third fixing blocks (501) and the two springs (502) are respectively arranged in the rectangular grooves formed on the fixing ring (503). The third fixing block (501) is slidably connected to the fixing ring (503). The housing (3) is slidably connected to the fixing ring (503).