WO2018077172A1 - Capsule-couronne comportant un code d'identification - Google Patents
Capsule-couronne comportant un code d'identification Download PDFInfo
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- WO2018077172A1 WO2018077172A1 PCT/CN2017/107551 CN2017107551W WO2018077172A1 WO 2018077172 A1 WO2018077172 A1 WO 2018077172A1 CN 2017107551 W CN2017107551 W CN 2017107551W WO 2018077172 A1 WO2018077172 A1 WO 2018077172A1
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- Prior art keywords
- identification code
- photon
- crown cap
- sensitive ink
- gray scale
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D51/00—Closures not otherwise provided for
- B65D51/24—Closures not otherwise provided for combined or co-operating with auxiliary devices for non-closing purposes
Definitions
- the present invention relates to a crown cap, and more particularly to a crown cap having an identification code on the top and/or skirt.
- the universal application of the Internet of Things is inseparable from the automatic identification of identification codes (including but not limited to two-dimensional codes or digital codes).
- the identification code represented by the two-dimensional code has the characteristics of large data storage capacity and good confidentiality, and can be better combined with mobile terminals such as smart phones to form a good interaction and user experience. Therefore, the two-dimensional code is It is widely used in the current society. In recent years, people have proposed a variety of programs that use QR codes for commodity anti-counterfeiting, point marketing, product traceability, and anti-smuggling.
- the applicant discloses a security bottle cap in the Chinese utility model patent No. ZL2014208138674.
- the two-dimensional code is acquired or destroyed in advance during the sales process, so that the two-dimensional code is suitable for use in marketing activities such as points and lottery, and can also be used for anti-counterfeiting.
- the Chinese utility model patent No. ZL2015204258614 the applicant discloses a bottle cap with a double identification code, and a character code information layer is arranged on the top side (ie, the outer surface), which can be used in production and sales.
- a two-dimensional code information layer which can be used for consumers to participate in activities such as points and lottery after destroying the package.
- an identification code such as a two-dimensional code
- a method of spraying, laser ablation or etching is required, and an identification code having a concave-convex structure is formed on the surface of the crown cover, and the processed cover body is formed.
- the surface is not smooth, which affects the appearance.
- a large amount of soot will appear in the production process, and a laser with a relatively high power is required, which consumes a lot of energy and has a great influence on the environment. Therefore, it is necessary to improve the structure of the existing crown cap and its setting identification code.
- the technical problem to be solved by the present invention is to provide a crown cover having an identification code.
- a crown cover comprising a top portion and a skirt, at least one gray scale identification code disposed on the top portion and/or the skirt portion;
- top portion and the skirt respectively comprise a substrate and a photon-sensitive ink layer disposed on the inner side and/or the outer side of the substrate, the gray scale identification code being visualized by a portion of the photonic active material in the photon-sensitive ink layer
- the gray scale identification code surface is smooth and has a gray scale difference from the surrounding area.
- the photon-sensitive ink layer disposed on the inner side of the substrate is exposed and forms one or more first gray-scale identification codes, or the photon-sensitive ink layer disposed on the inner side of the substrate is formed in the first gray-scale identification code. It is covered by the inner coating.
- the first gray scale identification code is disposed at a center position on the inner side of the top.
- the first gray scale identification code is disposed on the inner side of the skirt.
- the photon-sensitive ink layer disposed outside the substrate is formed with one or more second gray scale identification codes.
- the plurality of the second grayscale identification codes comprise a two-dimensional code and a character code.
- the outer side of the substrate is further provided with a decorative image or a trademark image formed by a change in appearance of a part of the photonic active material in the photon-sensitive ink layer, the decorative image or the trademark image having a smooth surface and having a surrounding area Grayscale difference.
- the plurality of grayscale identification codes are any one or more of a two-dimensional code, a digital code, a letter, and a text.
- the information of the plurality of grayscale identification codes are different from each other and are related to each other.
- the top side of the top is provided with a gasket made of a silicone material; the upper surface of the gasket is adhered to the surface of the photon-sensitive ink layer disposed on the inner side of the top by a glue layer.
- a crown cover includes a top portion and a skirt, wherein an inner surface of the skirt is provided with at least one identification code, and the identification code is in a digital code, a letter, or a text. Any one or more combinations.
- a crown cover including a top and a skirt An edge, wherein at least one identification code is disposed on the top portion and/or the skirt; the identification code is a surface smooth laser cold processing identification code layer.
- the laser cold working identification code layer has different gradations, and the gradation changes with the color of the crown cover.
- the crown cap provided by the present invention is provided with a gray scale identification code (abbreviated as an identification code) made of photon-sensitive ink on the top and/or the skirt.
- an identification code made of photon-sensitive ink on the top and/or the skirt.
- the grayscale identification code set on the inside of the top and the skirt can be used for anti-counterfeiting and marketing activities.
- the grayscale identification code set on the outer side of the top can be used for anti-counterfeiting.
- Figure 1 is a front view showing the structure of a crown cap in the first embodiment
- FIG. 2 is a schematic view showing a two-dimensional code disposed on the top surface of the crown cover in the first embodiment
- Figure 3a is a first sectional structural view of the crown cap of Figure 1;
- Figure 3b is a second cross-sectional structural view of the crown cap of Figure 1;
- Figure 4 is a schematic view showing the arrangement of character codes on the top back of the crown cap in the first embodiment
- Figure 5 is a schematic view showing a character code disposed on the front surface of the crown cap in the second embodiment
- Figure 6 is a schematic view showing a two-dimensional code disposed on the top surface of the crown cap in the second embodiment
- Figure 7a is a first sectional structural view of the crown cap of Figure 5;
- Figure 7b is a second cross-sectional structural view of the crown cap of Figure 5;
- Figure 8 is a schematic view showing a two-dimensional code disposed on the front surface of the crown cap in the second embodiment
- Figure 9 is a schematic view showing a character code and a two-dimensional code simultaneously provided on the front surface of the crown cover in the second embodiment
- Figure 10 is a schematic view showing a two-dimensional code disposed on the front surface of the crown cap in the third embodiment
- Figure 11 is a schematic view showing the character code disposed on the side of the skirt of the crown cap in the third embodiment
- Fig. 12 is a view showing a third embodiment in which a two-dimensional code is provided on the top surface of the crown cover, and a character code is provided on the inner side of the skirt.
- the structure of the crown cap includes a circular top portion 11 and a skirt 12 integrally formed with the top portion 11 on the inner surface of the top portion 11 (ie, the back surface of the crown cap).
- a first gray scale identification code 14 is formed in the photon-sensitive ink layer, and a gasket 13 made of a silicone material is disposed on the inner side of the top portion 11. The upper surface of the gasket 13 is adhered to the photon disposed on the inner side of the top portion 11 through the adhesive layer. The surface of the ink layer.
- the top portion 11 and the skirt 12 respectively include a substrate 100 and a photon-sensitive ink layer 101 disposed on both sides of the substrate 100.
- the photon-sensitive ink layer disposed on the inner side of the substrate 100 is exposed and forms a first gray scale identification code 14 (as shown in FIG. 3a) or the photon-sensitive ink layer disposed on the inner side of the substrate 100 is formed after the first gray scale identification code 14 is formed.
- the undercoat layer 103 (as in Fig. 3b)
- the first gray scale identification code 14 is disposed at the center of the top back surface.
- the photon-sensitive ink layer 101 disposed on both sides of the substrate 100 is formed by coating a photon-sensitive ink containing a photonic active material on the surface of the substrate 100.
- the photon-sensitive ink layer 101 may be wholly or partially covered according to product requirements.
- the surface of the material 100 Since the photon-sensitive ink layer 101 contains a photonic active material that is sensitive to laser light, when the laser light strikes the photon-sensitive ink including the photon active component, the photon active component thereof changes in a visually perceptible manner, thereby causing photon sensitivity.
- the appearance of the ink changes.
- the change in appearance is a change in color, such as a change from a transparent or light color to an opaque or darker color.
- the gradation identification code cited in the present application refers to an image formed by changing the gradation in a broad sense, and does not restrict the color of the formed identification code to be gray, and other colors may be formed in practice, for example. black.
- the appearance of the photon active component can be changed by using a laser having a lower power, so that the appearance of a part of the photon active material 102 in the photon-sensitive ink layer is changed to form a smooth surface but a gray scale difference from the surrounding area.
- the image and hardly burns, etches or flakes the photon-sensitive ink.
- a CO 2 infrared laser or a near infrared laser with a power of less than 10 W is used to produce a single black or color laser image.
- the above images broadly include decorations (such as logos, pictures or aesthetic markers) or information (such as text or two-dimensional code).
- a decorative image or a trademark image may be formed on the front side of the crown cover by subjecting a portion of the photonic active material in the photon-sensitive ink layer to a change in appearance, and the surface of the decorative image or the trademark image is smooth and has a grayscale difference from the surrounding area.
- the image formed in the photon-sensitive ink layer inside the substrate 100 is the first gray scale identification code 14.
- the photo-sensitive ink layer 101 can be directly in contact with the liquid in the can, and the photo-sensitive ink layer 101 disposed on both sides of the substrate 100 can be directly exposed, such as Figure 3a shows.
- a slight reaction may occur, and the surface of the photo-sensitive ink layer 101 disposed inside the substrate 100 may be coated with the existing inner coating. 103, as shown in Figure 3b.
- the first grayscale identification code 14 disposed on the inner side of the top of the crown cap may be the two-dimensional code shown in FIG. 2, or may be the character code shown in FIG. 4, or may be other numbers, letters, and characters not illustrated. An identifiable image of any one or more of the composition.
- the first gray scale identification code 14 is disposed on the inner side of the top of the crown cover to ensure that the first gray scale identification code 14 is not damaged during transportation and sale, and the integrity of the first gray scale identification code 14 is ensured. Also, the first gray scale identification code 14 disposed inside the top portion 11 cannot be obtained before the crown cap is removed from the bottle mouth, and therefore, only the consumer who purchased the product can obtain the first gray scale identification code 14.
- the first grayscale identification code 14 can be used in a marketing campaign or as an identification code for anti-forgery traceability.
- the information in the first gray scale identification code 14 disposed at the center of the back of each crown cap is different, and uniquely corresponds to a crown cover, thereby constituting the identification code of the product, realizing one object and one code.
- the structure of the second embodiment is basically the same as that of the first embodiment, and the difference is that not only the first gray scale identification code 24 is formed on the inner side of the top portion 21 (ie, the back surface of the crown cover), At the same time, a second gray scale identification code 25 is formed on the outer side of the top portion 21 (i.e., the front side of the crown cover).
- the top portion 21 and the skirt 22 respectively include a substrate 200 and a photon-sensitive ink layer 201 disposed on both sides of the substrate 200.
- the photon-sensitive ink layer inside the material 200 is exposed and forms a first gray scale identification code 24 (as shown in FIG. 7a) or the photon-sensitive ink layer disposed inside the substrate 200 is internally coated after forming the first gray scale identification code 24.
- the layer 203 is covered (as shown in Figure 7b) and the first gray scale identification code 24 is placed at the center of the back of the crown cap.
- the photon-sensitive ink layer disposed outside the substrate 200 is formed with one or more second gray scale identification codes 25. As shown in FIG.
- the second grayscale identification code disposed on the inner side of the top may be the character code 25 shown in FIG. 5 or the two-dimensional code 25' shown in FIG. It may be another identifiable image composed of any one or more of numbers, letters, and characters. Further, as shown in Fig. 9, it is also possible to simultaneously set the character code 25 and the two-dimensional code 25' on the outer side of the top. The number of sets of the second gray scale identification code 25 can be selected as needed.
- the photon-sensitive ink layer disposed outside the substrate 100 may be exposed or may be covered by other transparent materials, such as varnish.
- the structure of the photon-sensitive ink layer 201 disposed on both sides of the substrate 200 in this embodiment is the same as that of the photon-sensitive ink layer 101 shown in the first embodiment, and the photon-sensitive ink layer 201 disposed on both sides of the substrate 200 is the same.
- the photon-sensitive ink containing the photon active material is formed on the surface of the substrate 200, and the photon-sensitive ink layer 201 may cover the surface of the substrate 200 in whole or in part according to the product requirements.
- the photon-sensitive ink layer 201 contains a photonic active material that is sensitive to laser light
- the appearance of the photon active component can be changed by using a laser with a lower power, thereby changing the appearance of a part of the photon active material 202 in the photon-sensitive ink layer.
- An image is formed which is smooth in surface but has a difference in gradation from the surrounding area, and does not burn, etch or peel off the photon-sensitive ink.
- the first gray scale identification code 24 disposed on the inner side of the top of the crown cap may be the two-dimensional code shown in FIG. 6 or other character codes not shown, and may be other examples. An identifiable image consisting of any one or more of numbers, letters, and text.
- the first grayscale identification code 24 is not corrupted during shipping and shipping, ensuring the integrity of the first grayscale identification code 24.
- the first gray scale identification code 24 disposed on the back of the crown cap cannot be obtained before the crown cap is removed from the bottle mouth, and therefore, only the consumer who purchased the product can obtain the first gray scale identification code 24.
- the first grayscale identification code 24 can be used in a marketing campaign or as an identification code for anti-forgery traceability.
- the information in the first grayscale identification code 24 disposed on the back of each crown cover is different, and uniquely corresponds to a crown cover, thereby constituting the identification code of the product, realizing one object and one code.
- the second grayscale identification code 25 disposed outside the top of the crown cap may be as shown in FIG.
- the character code shown may also be a two-dimensional code as shown in FIG. 8, and may be another identifiable image composed of any one or more of numbers, letters, and characters.
- the information in the second gray scale identification code 25 disposed outside each crown cap is different, and uniquely corresponds to a crown cover, thereby constituting the identification code of the product.
- the second gray scale identification code 25 is located at the bare position outside the crown cover, and is in an identifiable state during product transportation and sales, and thus can be used for anti-smuggling inspection or anti-counterfeiting source, etc., and is convenient for consumers or sales personnel to obtain.
- identity authentication by scanning the second grayscale identification code 25', and input the character code on the inner side of the crown cover or scan the two-dimensional code to perform anti-counterfeiting authentication or participate in marketing activities.
- the first grayscale identification code 24 and the second grayscale identification code 25' are illustrated by a two-dimensional code, and the second grayscale identification code 25' uses a DMcode two-dimensional code;
- the identification code 24 uses a QR code two-dimensional code.
- the setting area of the first gray scale identification code 24 and the second gray scale identification code 25' in the present invention is preferably not less than 1 cm 2 .
- the information in the first grayscale identification code 24 disposed on the same crown cover is different from the information in the second grayscale identification code 25 and is associated with each other in the database.
- the structure of the third embodiment is basically the same as that of the first embodiment and the second embodiment, and the difference is that the inside of the crown cover skirt 32 is provided.
- a first gray scale identification code 36 Since the top 31 of the crown cap and the skirt 32 are integrally formed, the skirt 32 of the crown cap has the same structure as the top 31, and includes a substrate and a photon-sensitive ink layer disposed on both sides of the substrate, wherein the substrate is disposed on the substrate The inner photon sensitive ink layer is exposed and forms a first gray scale identification code 36 (shown in Figure 11).
- the first grayscale identification code 36 disposed on the inner side of the skirt 32 is limited by the size of the skirt. It is recommended to use a short character code consisting of letters and numbers, or a combination of words and letters or numbers.
- one or more second gray scale identification codes 35 may be simultaneously formed on the outer side of the crown cap top 31, and a first gray scale may be simultaneously formed on the inner side of the crown cap top 31.
- Identification code 34 (see Figure 12).
- the structures of the first gray scale identification code 34 and the second gray scale identification code 35 are the same as those in the above embodiment, and are not described herein again.
- the first gray scale code and the second gray code may be processed on the metal sheet coated with the photon sensitive ink layer, and The adhesive on the back side of the metal sheet is then processed into a plurality of crown cap semi-finished products. Finally, a silicone gasket is adhered to the inside of the formed crown cap by an injection molding process.
- the character code 36 disposed on the inner side of the skirt 32 may be arranged in an arc shape around the first gray scale identification code 34 disposed at the inner center of the top portion 31.
- the first gray scale identification code 36 disposed on the inner side of the skirt 32 is not damaged during transportation and sale, and cannot be obtained before the crown cover is removed from the bottle mouth, and therefore, the first gray The degree identification code 36 can be used together with the first grayscale identification code 34 disposed on the inside of the top as an identification code for marketing campaign or anti-counterfeiting source.
- the information in the first gray scale identification codes 34 and 36 disposed on the back of each crown cover is different, and uniquely corresponds to a crown cover, thereby constituting the identification code of the product, realizing one object and one code.
- the information in the second gray scale identification code 35 disposed outside each crown cap is different, and uniquely corresponds to one crown cover, thereby constituting the identification code of the product.
- the second gray scale identification code 35 is in a bare position outside the crown cover, and is in an identifiable state during product transportation and sales, and thus can be used for anti-smuggling inspection or anti-counterfeiting traceability, etc., and is convenient for consumers or sales personnel to obtain.
- the information in the first grayscale identification codes 34, 36 disposed on the same crown cap is different from the information in the second grayscale identification code 35 and is associated with each other in the database.
- a decorative image or a trademark image a decorative image or a trademark image formed by a change in appearance of a part of the photonic active material in the photon-sensitive ink layer may be disposed on the front surface of the crown cover.
- the surface is smooth and has a grayscale difference from the surrounding area.
- other patterns formed of fluorescent ink may be disposed on the front side of the crown cover, or a transparent varnish may be applied.
- the identification code used in the present invention is not limited to the above-described gradation identification code made of photon-sensitive ink. Ink printing method commonly used in the prior art
- the engraving process of the identification code can be implemented in the present invention by light engraving or the like.
- the identification code is formed by changing the path of laser engraving and the primer exposed after removing a part of the topcoat by laser engraving; or, by using various printing apparatuses, an identification code or the like is formed on the inner surface of the crown cover skirt 32.
- laser thermal processing means that a laser beam with a higher energy density is irradiated on the surface of the material to be processed, the surface of the material absorbs laser energy, and a thermal excitation process is generated in the irradiation region, thereby causing the temperature of the surface (or coating) of the material to rise. Metamorphosis, melting, ablation, evaporation, etc.
- Laser cold working refers to the ultraviolet laser with high load energy (output wavelength below 0.4 ⁇ m) is irradiated on the surface of the material to be processed, breaking the chemical bond in the material (especially organic material) or the surrounding medium, causing the material to undergo a non-thermal process. damage.
- This cold working has special significance in laser marking processing because it is not thermal ablation, but does not cause "thermal damage” side effects, and the cold peeling of the chemical bond is broken, so that the inner layer and the vicinity of the surface to be processed are not Produces heat or thermal deformation. Therefore, in the fourth embodiment of the present invention, the identification code involved is generated by laser cold working.
- an ultraviolet laser is used to form a laser cold-worked identification code layer having a smooth surface and no unevenness on the surface of a silicone gasket.
- the laser cold working process is realized by an ultraviolet laser.
- the ultraviolet laser preferentially selects a laser of 355 nm or 266 nm wavelength after frequency doubling of the YAG laser.
- a green laser with a wavelength consistent with laser cold working conditions.
- the ultraviolet laser can be generated by an ultraviolet laser which is irradiated on the surface of the non-metallic material, and the identification code can be formed by changing the path of the ultraviolet laser.
- the shorter the wavelength of the ultraviolet laser the smaller the focused spot (the shorter the wavelength, the greater the energy of a single photon).
- the beam quality of the ultraviolet laser is very good. High-energy ultraviolet photons can directly destroy the chemical molecular bonds on the surface of non-metallic materials, so that the molecules are separated from the object. This way does not generate heat, and does not rely on thermal ablation for marking. Therefore, no damage or scorch is caused to the non-metallic material, and no deformation occurs on the surface and the vicinity of the non-metallic material.
- the ultraviolet laser generates a laser cold-worked identification code layer on a non-metallic surface without causing harmful substances that affect the health of the technician.
- the method of providing the laser cold working identification code layer in the predetermined area of the cover is not limited to the method described in the above modification, and the laser cold working identification code layer can be directly generated in the predetermined area of the cover by using the ultraviolet laser marking machine.
- the type of the cap is not limited to the crown cap mentioned in the fourth embodiment above.
- the laser cold working identification code layer can also be disposed in a predetermined area of the cover of a material such as plastic, glass, ceramics or the like by utilizing the characteristics of the ultraviolet laser. Further, according to actual needs, a plurality of laser cold working identification code layers may be disposed in a predetermined area of the surface of the cover.
- the relative gradation of the laser cold-worked identification code layer can be diversified in view of the variety of colors of the existing crown caps. Specifically, depending on the color of the cover, the gray level of the laser cold-worked identification code layer also changes, for example, the deep-colored cover has a light-colored laser cold-worked identification code layer; the light-colored cover has a darker color. Laser cold working identification code layer. This makes it easier for consumers to discover the laser cold-working identification code layer, so that the consumer can directly scan the laser cold-working identification code layer through the smart terminal device (for example, a smartphone with camera function) to obtain the information carried by the identification code. To this end, the UV laser parameters can be controlled and adjusted according to the color of the cover.
- the wavelength, power, and frequency of the ultraviolet laser are adjusted to determine the parameter information of the laser irradiation required for the color change of various covers under ultraviolet laser irradiation, so as to form a laser cold working identification code layer having different relative gray levels.
- the crown cap provided by the embodiment of the present invention has a grayscale identification code made of photon-sensitive ink on the top and/or the skirt.
- a grayscale identification code made of photon-sensitive ink on the top and/or the skirt.
- the appearance of the photon active component in the ink does not cause the photon sensitive ink to burn, etch or fall off, so that the appearance of the product is not changed, so that the crown cap has a smooth and beautiful appearance.
- the crown cap provided by the present invention, the grayscale identification code disposed on the inner side of the top and the inner side of the skirt can be used for anti-counterfeiting source and marketing activities, and the grayscale identification code disposed on the outer side of the top can be used for anti-smuggling query.
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Abstract
L'invention concerne une capsule-couronne comportant un code d'identification, comprenant : une partie supérieure (11) et un bord de jupe (12), au moins un code d'identification étant présent sur la partie supérieure (11) et/ou le bord de jupe (12), la partie supérieure (11) et le bord de jupe (12) comprenant un substrat (100) et une couche d'encre sensible aux photons présente sur un côté interne et/ou un côté externe du substrat (100), respectivement ; le code d'identification est une image formée après modification de l'aspect d'une partie des matériaux photo-actifs dans la couche d'encre sensible aux photons (101), et une surface du code d'identification est plate et lisse, et comporte une échelle de gris différente d'une zone environnante. Étant donné que pendant le processus de fabrication du code d'identification, seul un aspect d'un ingrédient photo-actif dans la couche d'encre sensible aux photons (101) est modifié, et que l'encre sensible aux photons ne brûle pas, n'attaque pas chimiquement ou ne se décolle pas, l'aspect du produit n'est pas modifié, ce qui permet à la capsule-couronne d'avoir un aspect plat, lisse et attrayant.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201610936753.2A CN107434098A (zh) | 2016-10-24 | 2016-10-24 | 具有灰度标识码的皇冠盖 |
| CN201621161934.4 | 2016-10-24 | ||
| CN201610936753.2 | 2016-10-24 | ||
| CN201621161934.4U CN206125808U (zh) | 2016-10-24 | 2016-10-24 | 具有灰度标识码的皇冠盖 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2018077172A1 true WO2018077172A1 (fr) | 2018-05-03 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2017/107551 Ceased WO2018077172A1 (fr) | 2016-10-24 | 2017-10-24 | Capsule-couronne comportant un code d'identification |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2018077172A1 (fr) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116109325A (zh) * | 2023-01-05 | 2023-05-12 | 重庆云厨明视物联网科技有限公司 | 一种基于物联网管控食品安全和溯源系统及方法 |
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| CN204713684U (zh) * | 2015-06-18 | 2015-10-21 | 信码互通(北京)科技有限公司 | 具有双标识码的瓶盖 |
| CN205254336U (zh) * | 2015-12-22 | 2016-05-25 | 黄昌自动化工程(上海)有限公司 | 一种瓶盖底面激光打标装置 |
| CN106115064A (zh) * | 2016-08-24 | 2016-11-16 | 中山汇伟塑胶工业有限公司 | 一种新型塑料瓶盖 |
| CN206125808U (zh) * | 2016-10-24 | 2017-04-26 | 信码互通(北京)科技有限公司 | 具有灰度标识码的皇冠盖 |
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