CN212827485U - Colorful seal with seal face structure - Google Patents

Colorful seal with seal face structure Download PDF

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Publication number
CN212827485U
CN212827485U CN202021433889.XU CN202021433889U CN212827485U CN 212827485 U CN212827485 U CN 212827485U CN 202021433889 U CN202021433889 U CN 202021433889U CN 212827485 U CN212827485 U CN 212827485U
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stamp
ink storage
seal
areas
layer
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CN202021433889.XU
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Chinese (zh)
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边晖
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Tianjin Baibang Technology Co ltd
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Tianjin Baibang Technology Co ltd
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Abstract

The utility model provides a colorful seal with a seal face structure, which comprises a seal face structure, wherein the seal face structure comprises a seal face layer, the seal face layer comprises seal face areas with different colors, and a protective film is arranged between the adjacent seal face areas, which is used for printing out patterns with different colors at the same time, and the pigments can not be polluted mutually; the utility model can cut the printed surface layer into a plurality of printed surface areas through the electric heating wire, so that a protective film is formed between the adjacent printed surface areas, and the adjacent printed surface areas are mutually independent and can not be polluted; the seal surface layer is cut by using the electric heating wire, so that the gap interval between adjacent seal surface areas is small, the size of the seal surface of the seal is reduced, and the seal is more convenient to carry; the protective layer is arranged between the adjacent ink storage areas, so that the ink storage areas are mutually independent, and the pigments in the ink storage areas cannot be polluted mutually; through the stamping mechanism and the driving mechanism, simultaneous stamping of a plurality of stamping areas is realized, so that the pattern position is more accurate, and the printed pattern effect is more attractive.

Description

Colorful seal with seal face structure
Technical Field
The utility model relates to a seal technical field, concretely relates to colorful seal with seal face structure.
Background
With the improvement of the technological level of making the seal, the current seal capable of stamping colored patterns is generally realized by multiple overprinting, and in the prior art, the patent document with the publication number of CN203623176U discloses an integrated multi-printing-surface overprinting colored seal, which comprises a regular triangular prism or quadrangular prism-shaped seal body (4) and a driving mechanism (5); each side surface (41) of the stamp body (4) of the regular triangular prism or the quadrangular prism is a printing surface (60) with different colors; the seal realizes color patterns through three-color or four-color semi-automatic overprinting, and the overprinting method for forming the color patterns is easy to generate position deviation, so that the printed patterns can hardly achieve the expected effect; moreover, the seal in the prior art only stores ink through the seal face, so that the storage capacity is small, and inconvenience is caused by frequent ink adding required in later use; if a large amount of ink is required, the thickness of the printing surface can be increased, and the problem that the pattern is not beautiful due to the position deviation of the pattern is generated.
In order to overcome the defects of the prior art, a colorful seal which can print colorful patterns at one time, has good ink storage effect and accurate pattern position is urgently needed.
SUMMERY OF THE UTILITY MODEL
In view of this, the problem to be solved by the present invention is to provide a colorful stamp with a stamp face structure.
In order to solve the technical problem, the utility model discloses a technical scheme is: a colorful seal with a seal face structure comprises the seal face structure, wherein the seal face structure comprises a seal face layer, the seal face layer comprises seal face areas with different colors, and a protective film is arranged between the adjacent seal face areas and is used for printing patterns with different colors at the same time, and pigments cannot be polluted mutually;
the printing surface structure also comprises an ink storage layer and an ink injection device which are arranged on the inner side of the printing surface layer.
The plurality of printed surface areas are formed by cutting the integral printed surface layer, and the protective film is formed by cutting the electric heating wire, so that the adjacent printed surface areas are mutually independent.
The ink storage layer comprises a plurality of ink storage areas matched with the printing surface area, and the adjacent ink storage areas are separated by a protective layer, so that the pigments in the ink storage areas cannot be polluted mutually.
The ink storage area is provided with reinforcing points, and the ink storage area is fixed with the printing surface area through the reinforcing points.
The reinforcing points are arranged in the non-printing surface pattern area of the printing surface area.
The reinforcing points are arranged at the inner side positions of the adjacent ink storage areas to prevent the ink storage areas from moving in the embossing process.
The ink injection device covers the outside of the ink storage layer to seal the ink storage layer and prevent ink leakage.
The ink injection device is provided with a plurality of through holes matched with the ink storage area so as to realize the respective ink injection of the ink storage area.
The colorful seal further comprises a seal carrier, and the seal carrier comprises an imprinting mechanism matched with the seal surface structure and a driving mechanism used for driving the imprinting mechanism.
The stamping mechanism comprises a stamp body, a stamp frame clamped with the stamp face layer and a gland sleeved on the stamp face structure, wherein the gland is provided with a positioning block matched with the corner of the ink storage area to fix the ink storage area in the stamping process, the gland is dispersedly provided with a plurality of press blocks, and the distribution range of the press blocks is matched with the ink storage layer.
The driving mechanism comprises a pressing rod clamped with the gland and a pressing button sleeved outside the pressing rod, the bottom of the pressing rod is clamped with the gland, and the top of the pressing rod is provided with a pressing plate;
according to the utility model discloses a seal, including the seal body, press the button, including the press button main part and the lid, press the button main part top and still be equipped with clamp plate assorted clamp for realize clamp plate and press the joint between the button, still the cover is equipped with the spring according to between button and the depression bar, the one end fixed mounting of spring is in the lower extreme of clamp plate, the lower extreme fixed mounting of spring is on the upper surface of seal body for realize the automatic resilience of depression bar.
The utility model has the advantages and positive effects that:
(1) the utility model discloses a heating wire will be printed the surface course and cut into a plurality of printed face district, make and form the protection film between the adjacent printed face district, realize adjacent printed face district mutual independence, can not pollute each other.
(2) The utility model discloses an use the heating wire to cut seal face layer for gap interval between the adjacent seal face district is little, has reduced the size of seal face, and it is more convenient to make to carry the seal.
(3) The utility model discloses a set up the protective layer between adjacent storage ink area, make each storage ink area mutually independent, realized that the pigment in each storage ink area can not pollute each other.
(4) The utility model discloses a set up impression mechanism and actuating mechanism, realized impression when to a plurality of printed face regions, made the pattern position more accurate, the pattern effect of seal out is more pleasing to the eye.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
FIG. 1 is an overall structure diagram of a multi-color stamp with a stamp face structure according to the present invention;
FIG. 2 is a schematic structural diagram of a stamp face structure of a multicolor stamp with a stamp face structure according to the present invention;
FIG. 3 is a partial cross-sectional view of the stamp face structure of a multicolor stamp with stamp face structure according to the present invention;
FIG. 4 is a cross-sectional view of a multi-color stamp with stamp face structure according to the present invention;
in the figure:
1, printing surface structure, 101, printing surface layer, 1011, printing surface area, 1012, protective film, 1013, outer frame, 102, ink storage layer, 1021, ink storage area, 1022, reinforcing point, 1023, protective layer, 103, ink injection device, 1031 and through hole;
2, a stamp carrier 201, a stamp body 202, a stamping mechanism 2021, a stamp frame 2022, a gland 2023, a pressing block 2024, a positioning block 203, a driving mechanism 2031, a pressing rod 2032, a pressing button 20321, a pressing button body 20322, a pressing button cap 20323, a clamp, 2033, a pressing plate 2034 and a spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
As shown in fig. 1 to 4, the utility model provides a multi-color seal with seal face structure, including a seal face structure 1, seal face structure 1 is including seal face layer 101, seal face layer 101 includes the seal face district 1011 of different colours, is provided with protection film 1012 between the adjacent seal face district 1011 for the pattern and the pigment that print out different colours simultaneously can not pollute each other.
The utility model discloses a multicolor seal with seal face structure is applied to the stamp to multicolour pattern, and concrete 3 is as shown in the figure, in the working process of reality, is provided with protection film 1012 between the adjacent seal face district 1011, makes the multicolor seal can stamp out different colored patterns simultaneously, and pigment can not mutual pollution moreover, has solved prior art, can only easily take place the problem that the skew leads to the printed pattern to hardly reach the expectation effect through the method that overprints could form multicolour pattern many times.
Further, the stamp face structure 1 further includes an ink storage layer 102 and an ink filling device 103 disposed inside the stamp face layer 101.
The plurality of printing surface areas 1011 are formed by cutting the integral printing surface layer 101, and the protective film 1012 is formed by cutting the electric heating wire, so that the adjacent printing surface areas 1011 are independent.
Further, in the embodiment, as shown in fig. 3, in the actual working process, the printed surface layer 101 is cut by the heating wire technology, the cutting gap of the heating wire is small, and in the cutting process, the protective film 1012 is formed between the adjacent printed surface areas 1011, so that the problem that the printed pattern is difficult to achieve the expected effect due to the position offset easily occurring in the method of forming the color pattern only by multiple overprinting in the prior art is solved.
Further, the ink storage layer 102 includes a plurality of ink storage areas 1021 matching with the printing surface area 1011, and adjacent ink storage areas 1021 are separated by a protection layer 1023, so that the pigments of the ink storage areas 1021 can not be contaminated.
In the embodiment, the adjacent ink storing section 1021 is bonded by a rubber adhesive, which forms the protective layer 1023.
The ink storage area 1021 is provided with reinforcing points 1022, and the ink storage area 1021 is fixed to the printing surface area 1011 through the reinforcing points 1022.
The reinforcing points 1022 are disposed on the non-print pattern area of the print area 1011.
The reinforcing points 1022 are disposed at inner positions adjacent to the ink storage section 1021 to prevent movement of the ink storage section 1021 during the imprinting process.
The ink injection device 103 covers the ink storage layer 102 to seal the ink storage layer 102 and prevent ink leakage.
The ink injection device 103 is provided with a plurality of through holes 1031 matched with the ink storage section 1021, so as to realize the respective ink injection of the ink storage section 1021.
Further, in the specific embodiment, as shown in fig. 3, in the actual working process, the ink storage sections 1021 are matched with the printing surface section 1011, and the protective layers 1023 are arranged between the adjacent ink storage sections 1021, so that the ink storage sections 1021 cannot be polluted mutually, and the ink can be respectively injected through the through holes 1031 matched with the ink storage sections 1021, so that the ink can be respectively injected into the ink storage sections 1021, and the mutual pollution cannot occur, thereby solving the problem that in the prior art, the ink storage is performed only through the printing surface of the ink storage section, so that the storage capacity is small, and the inconvenience is caused by frequent ink addition in the later period of use; if a large amount of ink is required, the thickness of the printing surface can be increased, and the problem that the pattern is not beautiful due to the position deviation of the pattern is generated.
Further, the multicolor stamp further comprises a stamp carrier 2, and the stamp carrier 2 comprises a stamp body 201, an imprinting mechanism 202 matched with the stamp face structure 1, and a driving mechanism 203 for driving the imprinting mechanism 202.
The stamping mechanism 202 comprises a printing frame 2021 clamped with the printing surface layer 101 and a gland 2022 sleeved on the printing surface structure 1, wherein a positioning block 2024 matched with the corner of the ink storage area 1021 is arranged on the gland 2022 to fix the ink storage area 1021 in the stamping process, a plurality of pressing blocks 2023 are scattered and distributed on the gland 2022, and the distribution range of the pressing blocks 2023 is matched with the ink storage layer 102.
The outer side of the print surface layer 101 is provided with an outer frame 1013 for preventing the print surface layer 101 from falling off the print frame 2021.
Further, in the embodiment, as shown in fig. 4, during the actual operation, the driving mechanism 203 presses the gland 2022, so that the positioning block 2024 at the edge of the gland 2022 fixes the edge of the ink storage area 1021 to prevent the ink storage area 1021 from moving, and also presses the ink storage layer 102 by the pressing block 2023 in the gland 2022, so that the print layer 101 of the print structure 1 protrudes out of the frame 2021, thereby printing the color pattern on the print layer 101.
Further, the driving mechanism 203 includes a pressure lever 2031 clamped with the gland 2022 and a pressing button 2032 sleeved outside the pressure lever 2031, the bottom of the pressure lever 2031 is clamped with the gland 2022, and a pressure plate 2033 is arranged at the top of the pressure lever 2031;
press button 2032 is detachable construction, press button 2032 includes press button main part 20321 and the press button lid 20322 of lid locating press button main part 20321 top, press button main part 20321 top still be equipped with clamp plate 2033 assorted clamp 20323 for realize clamp plate 2033 and the joint between the press button 2032, still overlap between press button 2032 and the depression bar 2031 and be equipped with spring 2034, the one end fixed mounting of spring 2034 is in the lower extreme of clamp plate 2033, the lower extreme fixed mounting of spring 2034 is on the upper surface of seal body 201, is used for realizing the automatic resilience of depression bar 2031.
Further, in the specific embodiment, as shown in fig. 4, the pressing cover 2022 is clamped at the bottom of the pressing rod 2031, the clamp 20323 is clamped between the pressing plate 2033 and the pressing button 2032, during the actual operation, the pressing button 2032 is pressed to make the pressing plate 2033 drive the pressing rod 2031 to move downward, the spring 2034 compresses to drive the pressing cover 2022 to move downward, so that the printing layer 101 protrudes out of the printing frame 2021 to print the color pattern; the pressing button 2032 is released, and the pressing plate 2033 and the pressing rod 2031 drive the pressing button 2032 and the pressing cover 2022 to move upwards along with the reaction force of the spring 2034, so that the retraction of the printing surface structure 1 is realized, and the one-time printing of the color pattern is completed.
The utility model discloses a theory of operation and working process as follows: pressing the pressing button 2032 to make the pressing plate 2033 drive the pressing rod 2031 to move downwards, the spring 2034 compresses to drive the pressing cover 2022 to move downwards, so that the pressing block 2023 in the pressing cover 2022 presses the ink storage layer 102, and the printing surface layer 101 of the printing surface structure 1 protrudes out of the printing frame 2021, and because of the protection layer 1023 between the adjacent ink storage areas 1021 and the protection film 1012 between the adjacent printing surface areas 1011, the ink storage areas 1021 and the printing surface areas 1011 cannot be polluted mutually, so that the printing surface layer 101 prints color patterns; the pressing button 2032 is released, the pressing plate 2033 and the pressing rod 2031 drive the pressing button 2032 and the pressing cover 2022 to move upwards along with the reaction force of the spring 2034, the pressing block 2023 in the pressing cover 2022 is separated from the ink storage layer 102, and the printing surface layer 101 retracts to the inside of the printing frame 2021, so that the retraction of the printing surface structure 1 is realized, and the one-time printing of the color pattern is completed.
The utility model is characterized in that: the printing surface layer 101 is cut into a plurality of printing surface areas 1011 through the electric heating wire, so that a protective film 1012 is formed between the adjacent printing surface areas 1011, and the adjacent printing surface areas 1011 are independent from each other and cannot be polluted; the seal surface layer 101 is cut by using the electric heating wire, so that the gap interval between adjacent seal surface areas 1011 is small, the size of the seal surface of the seal is reduced, and the seal is more convenient to carry; by arranging the protective layer 1023 between the adjacent ink storage areas 1021, the ink storage areas 1021 are independent from each other, so that the pigments of the ink storage areas 1021 cannot be polluted; by arranging the stamping mechanism 202 and the driving mechanism 203, a plurality of stamping areas 1011 can be stamped at the same time, so that the pattern position is more accurate, and the printed pattern is more beautiful.
The embodiments of the present invention have been described in detail, but the description is only for the preferred embodiments of the present invention and should not be construed as limiting the scope of the present invention. All equivalent changes and modifications made within the scope of the present invention should be covered by the present patent.

Claims (9)

1. The stamp face structure is characterized in that the stamp face structure (1) comprises a stamp face layer (101), the stamp face layer (101) comprises a plurality of stamp face areas (1011) with different colors, and a protective film (1012) is arranged between every two adjacent stamp face areas (1011) and is used for simultaneously printing patterns with different colors without mutual pollution of pigments;
the stamp face structure (1) further comprises an ink storage layer (102) and an ink injection device (103), wherein the ink storage layer (102) is arranged on the inner side of the stamp face layer (101).
2. The stamp face structure according to claim 1, characterized in that several stamp face areas (1011) are cut from the whole stamp face layer (101), and the protection film (1012) is cut from the heating wire to realize the mutual independence of the adjacent stamp face areas (1011).
3. The printing surface structure according to claim 2, wherein the ink storage layer (102) comprises a plurality of ink storage areas (1021) matched with the printing surface areas (1011), and adjacent ink storage areas (1021) are separated by a protective layer (1023) so as to prevent pigments in the ink storage areas (1021) from polluting each other.
4. Printing surface structure according to claim 3, characterized in that the ink storage area (1021) is provided with reinforcing points (1022), and the ink storage area (1021) is fixed to the printing surface area (1011) by the reinforcing points (1022).
5. The printing surface structure according to claim 4, wherein the reinforcing points (1022) are provided in a non-printing surface pattern region of the printing surface region (1011).
6. The stamping surface structure as claimed in claim 5, wherein the reinforcing points (1022) are disposed at inner positions adjacent to the ink storage section (1021) to prevent movement of the ink storage section (1021) during stamping.
7. A multicolor stamp with a stamp face structure, characterized by comprising the stamp face structure (1) of any one of claims 1 to 6, the multicolor stamp further comprising a stamp carrier (2), the stamp carrier (2) comprising a stamp body (201), a stamping mechanism (202) matched with the stamp face structure (1), and a driving mechanism (203) for driving the stamping mechanism (202).
8. The multicolor stamp with the stamp face structure according to claim 7, wherein the stamp mechanism (202) comprises a stamp frame (2021) clamped with the stamp face layer (101) and a gland (2022) sleeved on the stamp face structure (1), the gland (2022) is provided with a positioning block (2024) matched with the corner of the ink storage area (1021), the internal position of the gland (2022) is scattered and distributed with a plurality of pressing blocks (2023), and the distribution range of the pressing blocks (2023) is matched with the ink storage layer (102).
9. A multicolor stamp with a stamp face structure according to claim 8, wherein the driving mechanism (203) comprises a pressing rod (2031) clamped with the gland (2022) and a pressing button (2032) sleeved outside the pressing rod (2031), and a spring (2034) is further sleeved between the pressing button (2032) and the pressing rod (2031).
CN202021433889.XU 2020-07-20 2020-07-20 Colorful seal with seal face structure Active CN212827485U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021433889.XU CN212827485U (en) 2020-07-20 2020-07-20 Colorful seal with seal face structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021433889.XU CN212827485U (en) 2020-07-20 2020-07-20 Colorful seal with seal face structure

Publications (1)

Publication Number Publication Date
CN212827485U true CN212827485U (en) 2021-03-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021433889.XU Active CN212827485U (en) 2020-07-20 2020-07-20 Colorful seal with seal face structure

Country Status (1)

Country Link
CN (1) CN212827485U (en)

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