Anti-forgery bottle cap and bottle container
Patent Information
- Application Number
- CN202521899180.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-09-04
AI Technical Summary
[0004]基于此,有必要针对目前防伪瓶盖非正常开启时存在二维码被盗扫的问题,提供一种防伪瓶盖及瓶类容器,其能够在非正常开启时隐藏识别码,避免二维码被盗扫
[0033] The anti-counterfeiting bottle cap and bottle container of this application include a mounting sleeve fixedly installed at the neck of the bottle body, a transparent inner cap rotatably installed on the mounting sleeve, an outer cap installed on the inner cap and capable of rotating synchronously with the outer cap, and an identification code located on the inner or outer side of the inner cap. A blocking component can block the side of the identification code away from the bottle body. When the outer cap rotates and opens the inner cap relative to the mounting sleeve, the identification code is exposed on the inner side of the inner cap. When the outer cap is pulled up to detach from the inner cap, the blocking component can block the identification code, hiding it on the outer side of the inner cap and preventing the identification code from being exposed on the outer side of the inner cap.
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Figure CN224690806U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of packaging technology, and in particular to an anti-counterfeiting bottle cap and bottle container. Background Technology
[0002] QR codes are widely used across various industries, especially on bottle caps, where they are commonly used by consumers to quickly verify product authenticity, participate in promotional activities such as lucky draws and points redemptions, and allow businesses to monitor product distribution channels through scanned data. They play a crucial role in building trust systems and ensuring market order.
[0003] Commonly found QR codes with rewards such as red envelopes are located on the top of the inner cap, inside the bottle cap. These codes are unreadable before normal opening. Once opened, the transparent inner cap allows consumers to scan the QR code. However, due to a structural defect in the inner and outer cap's fit, criminals can forcibly remove the outer cap, scan the inner QR code, and then re-press the outer cap. Consumers cannot verify whether the QR code has been scanned fraudulently, severely damaging the legitimate rights and interests of both consumers and businesses. Utility Model Content
[0004] Therefore, it is necessary to address the problem of QR codes being scanned when anti-counterfeiting bottle caps are opened improperly, and to provide an anti-counterfeiting bottle cap and bottle container that can hide the identification code when opened improperly, thus preventing the QR code from being scanned.
[0005] An anti-counterfeiting bottle cap is installed at the neck of a bottle in a bottle-type container, the anti-counterfeiting bottle cap comprising:
[0006] The mounting sleeve is fixedly installed at the neck of the bottle body;
[0007] The inner cap, made of transparent material, is rotatably mounted on the mounting sleeve to seal the bottle body;
[0008] An outer cover, installed on the inner cover and covering the mounting sleeve, the outer cover being capable of rotating synchronously with the inner cover; and
[0009] The identification code is located on the inside or outside of the inner cover;
[0010] A shielding element is used to shield the identification code on the side of the identification code away from the bottle body, so that the identification code is exposed when the outer cover rotates and opens the inner cover relative to the mounting sleeve, and is hidden when the outer cover is detached from the inner cover.
[0011] In one embodiment of this application, the shielding member is a non-transparent coating forming a shielding layer.
[0012] In one embodiment of this application, the identification code is disposed on the outer top wall of the inner cover, and the shielding layer is disposed on the side of the identification code away from the bottle body to shield the identification code;
[0013] Alternatively, the shielding layer is disposed on the outer top wall of the inner cover, and the identification code is disposed on the inner top wall of the inner cover;
[0014] Alternatively, the shielding layer is disposed on the inner top wall of the inner cap, and the identification code is located on the side of the shielding layer facing the bottle.
[0015] In one embodiment of this application, the anti-counterfeiting bottle cap further includes a transition code that is different from the identification code, and the transition code is located on the side of the shielding layer opposite to the transition code.
[0016] In one embodiment of this application, the identification code is disposed on the outer top wall of the inner cover, the shielding layer is disposed on the side of the identification code away from the bottle body, and the transition code is disposed on the side of the shielding layer away from the identification code;
[0017] Alternatively, the identification code is disposed on the inner top wall of the inner cover, the shielding layer is disposed on the outer top wall of the inner cover, and the transition code is disposed on the side of the shielding layer opposite to the identification code.
[0018] Alternatively, the shielding layer is disposed on the inner top wall of the inner cap, the identification code is located on the side of the shielding layer facing the bottle, and the transition code is disposed on the outer top wall of the inner cap or located between the inner top wall of the inner cap and the shielding layer.
[0019] In one embodiment of this application, the shielding layer is formed by inkjet printing, hot stamping, or printing.
[0020] And / or, the identification code is formed using inkjet printing, engraving, or thermal transfer printing processes;
[0021] And / or, the transition code is formed using inkjet printing, engraving, or thermal transfer printing processes;
[0022] And / or, the identification code is a QR code or a barcode;
[0023] And / or, the transition code is a QR code or a barcode.
[0024] In one embodiment of this application, the shielding member is a gasket, which is disposed between the inner cover and the mounting sleeve, and the gasket is made of a non-transparent material;
[0025] The identification code is set on the surface of the gasket facing the bottle.
[0026] In one embodiment of this application, the anti-counterfeiting bottle cap further includes a transition code that is different from the identification code;
[0027] The transition code is disposed on the inner top wall or outer top wall of the inner cap, or the transition code is disposed on the surface of the gasket opposite to the bottle body.
[0028] In one embodiment of this application, the mounting sleeve includes an outer sleeve and an inner sleeve. The inner sleeve is fixedly installed at the neck of the bottle body, the inner cap is rotatably installed on the inner sleeve, and the outer sleeve is installed on the outside of the inner sleeve.
[0029] And / or, the anti-counterfeiting bottle cap further includes an inner plug, which is installed in the mounting sleeve and inserted into the bottle body to seal the bottle body.
[0030] A bottle-type container includes a bottle body and an anti-counterfeiting bottle cap as described in any of the above embodiments;
[0031] The outer sleeve of the anti-counterfeiting bottle cap is fixedly installed at the neck of the bottle body, and the outer cap of the anti-counterfeiting bottle cap is placed on the outer sleeve to seal the bottle body.
[0032] By adopting the above technical solution, this application has at least the following technical effects:
[0033] The anti-counterfeiting bottle cap and bottle container of this application include a mounting sleeve fixedly installed at the neck of the bottle body, a transparent inner cap rotatably installed on the mounting sleeve, an outer cap installed on the inner cap and capable of rotating synchronously with the outer cap, and an identification code located on the inner or outer side of the inner cap. A blocking component can block the side of the identification code away from the bottle body. When the outer cap rotates and opens the inner cap relative to the mounting sleeve, the identification code is exposed on the inner side of the inner cap. When the outer cap is pulled up to detach from the inner cap, the blocking component can block the identification code, hiding it on the outer side of the inner cap and preventing the identification code from being exposed on the outer side of the inner cap.
[0034] In this way, the obscuring component can block the identification code on the side facing away from the bottle, thus hiding the identification code when the outer cap is detached from the inner cap. When the anti-counterfeiting bottle cap is opened normally by rotating it, the identification code can be seen normally on the inside of the inner cap. When the outer cap is detached abnormally, the identification code is hidden because the obscuring component blocks it, preventing counterfeiters from scanning the identification code on the inside of the inner cap, thus avoiding the identification code being scanned without authorization and raising the threshold for counterfeiting. Attached Figure Description
[0035] Figure 1 This is a partial cross-sectional view of the anti-counterfeiting bottle cap according to the first embodiment of this application.
[0036] Figure 2 for Figure 1 The image shows a magnified view of the anti-counterfeiting bottle cap at point A.
[0037] Figure 3 for Figure 1 The diagram shows the process of setting the identification code and the obscuring element on the inner cap of the anti-counterfeiting bottle cap.
[0038] Figure 4 This is a partial cross-sectional view of the anti-counterfeiting bottle cap in the second embodiment of this application.
[0039] Figure 5 for Figure 4 The image shows a magnified view of the anti-counterfeiting bottle cap at point B.
[0040] Figure 6 for Figure 4 The diagram shows the process of setting the identification code and the obscuring element on the inner cap of the anti-counterfeiting bottle cap.
[0041] Figure 7 This is a partial cross-sectional view of the anti-counterfeiting bottle cap in the third embodiment of this application.
[0042] Figure 8 for Figure 7 The image shows a magnified view of the anti-counterfeiting bottle cap at point C.
[0043] Figure 9 for Figure 7 The diagram shows the process of setting the identification code and the obscuring element on the inner cap of the anti-counterfeiting bottle cap.
[0044] Figure 10 This is a partial cross-sectional view of the anti-counterfeiting bottle cap in the fourth embodiment of this application.
[0045] Figure 11 for Figure 10 The image shows a magnified view of the anti-counterfeiting bottle cap at point D.
[0046] Figure 12 for Figure 10 The diagram shows the process of setting the identification code and the obscuring element on the inner cap of the anti-counterfeiting bottle cap.
[0047] Among them: 100, anti-counterfeiting bottle cap; 110, installation sleeve; 111, outer sleeve; 112, inner sleeve; 120, inner cap; 130, outer cap; 140, identification code; 150, inner plug; 160, shielding layer; 170, transition code; 180, gasket; 200, bottle body. Detailed Implementation
[0048] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.
[0049] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0050] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0051] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0052] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact, or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0053] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.
[0054] QR codes are widely used across various industries, especially on bottle caps, where they are commonly used by consumers to quickly verify product authenticity, participate in promotional activities such as lucky draws and points redemptions, and allow businesses to monitor product distribution channels through scanned data. They play a crucial role in building trust systems and ensuring market order.
[0055] Commonly found QR codes with rewards such as red envelopes are located on the top of the inner cap, inside the bottle cap. These codes are unreadable before normal opening. Once opened, the transparent inner cap allows consumers to scan the QR code. However, due to a structural defect in the inner and outer cap's fit, criminals can forcibly remove the outer cap, scan the inner QR code, and then re-press the outer cap. Consumers cannot verify whether the QR code has been scanned fraudulently, severely damaging the legitimate rights and interests of both consumers and businesses.
[0056] For this purpose, please refer to Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 7 , Figure 8 , Figure 10 and Figure 11 This application provides an anti-counterfeiting bottle cap 100. Figure 1 This is a partial cross-sectional view of the anti-counterfeiting bottle cap 100 according to the first embodiment of this application. Figure 2 for Figure 1 The enlarged view of the anti-counterfeiting bottle cap 100 at point A is shown. Figure 4 This is a partial cross-sectional view of the anti-counterfeiting bottle cap 100 in the second embodiment of this application. Figure 5 for Figure 4 The enlarged view of the anti-counterfeiting bottle cap 100 at point B is shown. Figure 7 This is a partial cross-sectional view of the anti-counterfeiting bottle cap 100 in the third embodiment of this application. Figure 8 for Figure 7 The enlarged view of the anti-counterfeiting bottle cap 100 at point C is shown. Figure 10 This is a partial cross-sectional view of the anti-counterfeiting bottle cap 100 in the fourth embodiment of this application. Figure 11 for Figure 10 The image shows a partial enlarged view of the anti-counterfeiting bottle cap 100 at point D. This anti-counterfeiting bottle cap 100 is used in bottle containers and can be installed at the neck (not shown) of the bottle body 200 within the bottle container (not shown) to achieve an anti-counterfeiting seal on the bottle body 200. It is worth noting that... Figure 1 , Figure 4 , Figure 7 , Figure 10 The diagram only shows a partial schematic of the bottle body 200.
[0057] In this application, the bottle container is a wine bottle, and the anti-counterfeiting cap 100 is disposed at the neck of the bottle body 200, which can realize the sealing of the wine bottle. At the same time, the anti-counterfeiting cap 100 can also serve as an anti-counterfeiting measure. Of course, in other embodiments of this application, the bottle container can also be other containers that need to serve an anti-counterfeiting function, such as cosmetic bottles, etc. The following description only uses a wine bottle as an example.
[0058] Understandably, the capacity of the bottle 200 is not limited in principle; it can be 100ml, 200ml, or even 50ml, 350ml, 500ml, or other capacities, etc., which will not be specified in this application. Optionally, the bottle 200 is made of glass, i.e., the bottle 200 is a glass bottle. Of course, in other embodiments of this application, the bottle 200 may also be made of ceramic or other materials.
[0059] The anti-counterfeiting bottle cap 100 of this application employs a shielding component to obscure the identification code 140 on the side opposite to the bottle body 200, thereby concealing the identification code 140 when the outer cap 130 is detached from the inner cap 120. When the anti-counterfeiting bottle cap 100 is normally rotated open, the identification code 140 is clearly visible on the inside of the inner cap 120. When the outer cap 130 is abnormally removed, the identification code 140 is hidden due to the shielding component, preventing counterfeiters from scanning the identification code 140 on the inside of the inner cap 120, thus avoiding the theft of the identification code 140 and raising the barrier to counterfeiting. The specific structure of the anti-counterfeiting bottle cap 100 in some embodiments is described below.
[0060] See Figure 1 , Figure 2 , Figure 4 , Figure 5 , Figure 7 , Figure 8 , Figure 10 and Figure 11 In one embodiment, the anti-counterfeiting bottle cap 100 includes a mounting sleeve 110, an inner cap 120, an outer cap 130, an identification code 140, and a shielding member (not shown). The mounting sleeve 110 is fixedly mounted to the neck of the bottle body 200. The inner cap 120 is made of transparent material and is rotatably mounted on the mounting sleeve 110 to seal the bottle body 200. The outer cap 130 is mounted on the inner cap 120 and covers the mounting sleeve 110. The outer cap 130 is capable of rotating synchronously with the inner cap 120. The identification code 140 is located inside or outside the inner cap 120. The shielding member is used to shield the identification code 140 on the side of the identification code facing away from the bottle body 200, so that the identification code 140 is exposed when the outer cap 130 rotates and opens the inner cap 120 relative to the mounting sleeve 110, and is hidden when the outer cap 130 detaches from the inner cap 120.
[0061] The mounting sleeve 110 is a component for mounting the anti-counterfeiting bottle cap 100 onto the bottle body 200. The mounting sleeve 110 is fitted onto the neck of the bottle body 200 and fixedly installed therein. The mounting sleeve 110 cannot rotate relative to the bottle body 200 to ensure the anti-counterfeiting bottle cap 100 is reliably installed on the bottle body 200. The inner cap 120 is rotatably fitted with the mounting sleeve 110. After the inner cap 120 is placed on the mounting sleeve 110, it seals the bottle body 200. When the inner cap 120 is rotated open relative to the mounting sleeve 110, the bottle body 200 can be opened.
[0062] Typically, an anti-counterfeiting structure, such as anti-counterfeiting dots or anti-counterfeiting buckles, is provided between the inner cap 120 and the mounting sleeve 110. This anti-counterfeiting structure serves to prevent counterfeiting by indicating whether the anti-counterfeiting bottle cap 100 has been illegally opened. When the inner cap 120 is rotated open relative to the mounting sleeve 110, the anti-counterfeiting structure is destroyed, alerting the consumer that the anti-counterfeiting bottle cap 100 has been opened, preventing packaging material recycling, and thus achieving the purpose of preventing counterfeiting.
[0063] The outer cap 130 is the outer cylindrical body of the anti-counterfeiting bottle cap 100. The outer cap 130 is installed on the inner cap 120 and covers the inner cap 120 and part of the mounting sleeve 110. The outer cap 130 can protect the anti-counterfeiting structure between the inner cap 120 and the mounting sleeve 110, preventing the anti-counterfeiting structure from being exposed, so as to ensure the anti-counterfeiting effect of the anti-counterfeiting structure. Moreover, the outer cap 130 and the inner cap 120 are press-fitted together. When the anti-counterfeiting bottle cap 100 is rotated open, the outer cap 130 can drive the inner cap 120 to rotate relative to the mounting sleeve 110, thereby opening the bottle 200.
[0064] Furthermore, the inner cap 120 is made of transparent material, and the identification code 140 is located on the inner or outer side of the inner cap 120. When the anti-counterfeiting bottle cap 100 is normally rotated open, consumers can see the identification code 140 on the inner side of the inner cap 120 and can scan the identification code 140 to perform corresponding operations, such as verifying the authenticity of the product, scanning the code to participate in promotional activities such as lucky draws and points redemption, thereby enhancing the consumer experience. In this embodiment, the identification code 140 is a QR code. Of course, in other embodiments of this application, the identification code 140 may also be a barcode or other graphic that can obtain information by scanning.
[0065] If a counterfeiter forcibly pulls up the outer cover 130 to detach it from the inner cover 120, the anti-counterfeiting structure will not be damaged. Because the inner cover 120 is made of transparent material, after the outer cover 130 is detached from the inner cover 120, the counterfeiter can see the identification code 140 on the outside of the inner cover 120, which could lead to the identification code 140 being scanned. The counterfeiter can then re-press the outer cover 130, making it impossible for consumers to identify whether the identification code 140 has been scanned when purchasing, which seriously damages the legitimate rights and interests of consumers and businesses.
[0066] To prevent unauthorized scanning of the identification code 140 by pulling up the outer cap 130, the anti-counterfeiting bottle cap 100 of this application also includes a blocking component. This blocking component can obscure the identification code 140 on the side of the bottle body 200 that is away from the identification code 140. Specifically, the blocking component is located above the identification code 140, and the identification code 140 is located below the blocking component. The blocking component can obscure the identification code 140 from above. Furthermore, the identification code 140 can be directly positioned below the blocking component or indirectly positioned below the blocking component, as will be explained in detail later.
[0067] The vertical direction of this application is Figure 1 and Figure 2 The height direction, top-bottom direction, and axial direction shown are the central axis directions of the outer cover 130. The outer cover 130 has circumferential and radial directions. The circumferential direction of the outer cover 130 is the circumferential direction, and the radial direction of the outer cover 130 is the radial direction. These vertical, circumferential, and radial directions are applicable to the anti-counterfeiting bottle cap 100 and its various components, and will not be elaborated further below.
[0068] After the obstruction element blocks the identification code 140 from above, the identification code 140 will not be visible on the outside of the inner cap 120. When the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the identification code 140 can be seen on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction element, the identification code 140 is hidden and cannot be seen from the outside.
[0069] In other words, consumers can only scan the QR code inside the inner cap 120 after the anti-counterfeiting bottle cap 100 is opened normally. If the anti-counterfeiting bottle cap 100 is opened abnormally, the cover can hide the identification code 140, and counterfeiters will not be able to scan the identification code 140 inside the inner cap 120, thus preventing the identification code 140 from being scanned by theft, raising the threshold for counterfeiting, and thus protecting the rights and interests of consumers and manufacturers.
[0070] It is worth noting that the location of the identification code 140 is not restricted in principle. The identification code 140 can be located on the inside or outside of the inner cover 120. The location of the blocking component is also not restricted in principle, as long as the blocking component can block the identification code 140, so that the identification code 140 can be seen on the inside of the inner cover 120 and not on the outside of the inner cover 120. The specific positions of the identification code 140 and the blocking component will be specified later.
[0071] In the anti-counterfeiting bottle cap 100 of the above embodiment, the blocking component can block the identification code 140 on the side of the bottle body 200 away from the bottle body 200, thereby hiding the identification code 140 when the outer cap 130 is removed from the inner cap 120. When the anti-counterfeiting bottle cap 100 is normally rotated open, the identification code 140 can be seen normally on the inside of the inner cap 120. When the outer cap 130 is abnormally removed, the identification code 140 is hidden because the blocking component blocks it. Counterfeiters cannot scan the identification code 140 on the inside of the inner cap 120, thus preventing the identification code 140 from being scanned and raising the threshold for counterfeiting.
[0072] See Figure 1 , Figure 4 , Figure 7 and Figure 11 In one embodiment, the mounting sleeve 110 includes an outer sleeve 111 and an inner sleeve 112. The inner sleeve 112 is fixedly mounted to the neck of the bottle body 200, and the inner cap 120 is rotatably mounted to the inner sleeve 112. The outer sleeve 111 is mounted on the outside of the inner sleeve 112. The inner sleeve 112 is a component that is fixedly connected to the mounting sleeve 110 and the bottle body 200. The inner sleeve 112 is fixedly mounted to the neck of the bottle body 200, and the inner sleeve 112 can rotate with the inner cap 120.
[0073] The outer sleeve 111 is fitted onto the outside of the inner sleeve 112. The outer sleeve 111 is the external part for mounting the sleeve 110. The outer sleeve 111 cooperates with the outer cap 130 to ensure the aesthetic appearance of the anti-counterfeiting bottle cap 100. At the same time, anti-counterfeiting structures such as dotted lines can be set between the outer sleeve 111 and the outer cap 130 to provide a direct anti-counterfeiting function.
[0074] See Figure 1 , Figure 4 , Figure 7 and Figure 11 In one embodiment, the anti-counterfeiting bottle cap 100 further includes an inner plug 150, which is installed in the mounting sleeve 110 and inserted into the bottle body 200 to seal the bottle body 200. The inner plug 150 is installed on the top wall of the inner sleeve 112 and in the top opening of the bottle body 200. The inner plug 150 seals the bottle body 200 to prevent leakage of liquids such as wine from the bottle body 200 and ensures a sealing effect.
[0075] See Figures 1 to 6 In one embodiment, the shielding element is a shielding layer 160 formed by a non-transparent coating. Figure 3 for Figure 1 The diagram shown illustrates the process of setting the identification code 140 and the obstruction element on the inner cap 120 of the anti-counterfeiting bottle cap 100. Figure 6 for Figure 4 The diagram shows the process of setting the identification code 140 and the cover in the inner cap 120 of the anti-counterfeiting bottle cap 100.
[0076] The non-transparent coating of the shielding layer 160 can shield the identification code 140 from above. When the outer cover 130 is abnormally removed, it detaches from the inner cover 120. At this time, due to the shielding layer 160 shielding the identification code 140, the identification code 140 can be hidden and not seen from the outside, thus preventing the identification code 140 from being scanned.
[0077] See Figures 1 to 3 In the first embodiment of this application, the identification code 140 is disposed on the outer top wall of the inner cover 120, and the shielding layer 160 is disposed on the side of the identification code 140 away from the bottle body 200 to shield the identification code 140. In this embodiment, both the shielding layer 160 and the identification code 140 are located on the outside of the inner cover 120. Specifically, the shielding layer 160, the identification code 140, and the outer top wall of the inner cover 120 are arranged sequentially from top to bottom. The shielding layer 160 is located on the outer top wall of the inner cover 120, and the identification code 140 is located between the outer top wall of the inner cover 120 and the shielding layer 160. The shielding layer 160 can shield the identification code 140 from above.
[0078] During molding, first provide a transparent inner cover 120, such as Figure 3 As shown in (a), an identification code 140 is then set on the outer top wall of the transparent inner cover 120, as shown in (a). Figure 3 As shown in (b), a non-transparent coating layer 160 is then placed over the identification code 140, as shown in [example image]. Figure 3 As shown in (c), the identification code 140 is not visible on the outside of the inner cover 120. After flipping the inner cover 120, the identification code 140 can be seen on the inside of the inner cover 120, as shown in (c). Figure 3As shown in (d), and because the identification code 140 is obscured by the shielding layer 160 on the outside of the inner cover 120, the identification code 140 is not visible on the outside of the inner cover 120, as shown in (d). Figure 3 As shown in (c), the shielding layer 160 can shield the identification code 140, preventing the identification code 140 from being exposed on the outside of the inner cover 120.
[0079] Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the consumer can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, the outer cap 130 detaches from the inner cap 120. At this time, due to the obstruction of the shielding layer 160, the identification code 140 can be hidden and cannot be seen from the outside, thus preventing the identification code 140 from being scanned by unauthorized means.
[0080] In one embodiment, the shielding layer 160 is formed using inkjet printing, hot stamping, or printing processes. That is, a non-transparent coating shielding layer 160 can be formed on the outer top wall of the inner cover 120 using inkjet printing, hot stamping, or printing to cover the identification code 140 inside the inner cover 120. It is worth noting that the shielding layer 160 in all embodiments described below is formed using the above-described processes; only the placement of the shielding layer 160 differs, which will not be repeated hereafter.
[0081] In one embodiment, the identification code 140 is formed using inkjet printing, hot stamping, or printing processes. That is, the identification code 140 can be formed on the outer top wall of the inner cover 120 using methods such as inkjet printing, hot stamping, or printing, facilitating the integration of the identification code 140 with the inner cover 120. It is worth noting that the identification code 140 in the various embodiments described below is formed using the above-described processes; only the placement of the identification code 140 differs, which will not be repeated hereafter.
[0082] In another embodiment of this application, a shielding layer 160 is disposed on the outer top wall of the inner cover 120, and an identification code 140 is disposed on the inner top wall of the inner cover 120. In this embodiment, the shielding layer 160 is located on the outer side of the inner cover 120, and the identification code 140 is located on the inner side of the inner cover 120. The shielding layer 160, the top wall of the inner cover 120, and the identification code 140 are arranged sequentially from top to bottom, and the outer shielding layer 160 can shield the inner identification code 140.
[0083] During molding, a transparent inner cover 120 is first provided. Then, an identification code 140 is set on the inner top wall of the transparent inner cover 120. Next, the inner cover 120 is flipped over, and a non-transparent coating layer 160 is set on the outer top wall of the inner cover 120. The coating layer 160 can cover the identification code 140, making it invisible from the outside of the inner cover 120. After flipping the inner cover 120 over, the identification code 140 can be seen from the inside of the inner cover 120. In this way, the coating layer 160 can block the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0084] Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the consumer can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, the outer cap 130 detaches from the inner cap 120. At this time, due to the obstruction of the shielding layer 160, the identification code 140 can be hidden and cannot be seen from the outside, thus preventing the identification code 140 from being scanned by unauthorized means.
[0085] In another embodiment of this application, the shielding layer 160 is disposed on the inner top wall of the inner cover 120, and the identification code 140 is located on the side of the shielding layer 160 facing the bottle body 200. In this embodiment, both the shielding layer 160 and the identification code 140 are located inside the inner cover 120. Specifically, the inner top wall of the inner cover 120, the shielding layer 160, and the identification code 140 are arranged sequentially from top to bottom. The identification code 140 is located on the inner top wall of the inner cover 120, and the shielding layer 160 is located between the inner top wall of the inner cover 120 and the identification code 140. The shielding layer 160 can shield the identification code 140 from above.
[0086] During molding, a transparent inner cover 120 is first provided. Then, a non-transparent coating shielding layer 160 is formed on the inner top wall of the transparent inner cover 120. An identification code 140 is then set on the shielding layer 160. The shielding layer 160 can cover the identification code 140, so it is not visible from the outside of the inner cover 120. After flipping the inner cover 120, the identification code 140 can be seen from the inside of the inner cover 120. In this way, the shielding layer 160 can block the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0087] Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the consumer can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, the outer cap 130 detaches from the inner cap 120. At this time, due to the obstruction of the shielding layer 160, the identification code 140 can be hidden and cannot be seen from the outside, thus preventing the identification code 140 from being scanned by unauthorized means.
[0088] See Figures 4 to 6 In one embodiment, the anti-counterfeiting bottle cap 100 further includes a transition code 170 that is different from the identification code 140. The transition code 170 is located on the side of the shielding layer 160 opposite to the transition code 170. The transition code 170 is different from the identification code 140, and scanning the transition code 170 and scanning the identification code 140 will produce different information.
[0089] In actual production, the inner cap 120 is usually installed onto the mounting sleeve 110 first, and then the outer cap 130 is placed on the outside of the inner cap 120. During this process, since the identification code 140 cannot be scanned on the outside of the inner cap 120, but the transition code 170 can be scanned on the outside of the inner cap 120, manufacturers can use the identification code 140 to track the bottle containers during the production process, facilitating production monitoring.
[0090] The transition code 170, the shielding layer 160, and the identification code 140 are arranged sequentially from top to bottom. The shielding layer 160 shields the identification code 140. The transition code 170 is exposed on the outside of the inner cover 120, and the identification code 140 is exposed on the inside of the inner cover 120. Thus, due to the shielding effect of the shielding layer 160, the transition code 170 is visible on the outside of the inner cover 120, but the identification code 140 is not visible, and the identification code 140 is visible on the inside of the inner cover 120, but the transition code 170 is not visible.
[0091] When the anti-counterfeiting bottle cap 100 is rotated open normally, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, due to the obstruction of the transition code 170 by the shielding layer 160, consumers can see and scan the identification code 140 on the inside of the inner cap 120 to perform corresponding operations, such as identifying the authenticity of the product, scanning the code to participate in the red envelope lottery, redeeming points and other promotional activities, so as to enhance the consumer experience.
[0092] When the outer cover 130 is abnormally pulled up, the outer cover 130 is separated from the inner cover 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, the counterfeiter can only scan the transition code 170 and cannot scan the identification code 140. Even if the counterfeiter scans the transition code 170, he cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned by theft.
[0093] In this embodiment, the transition code 170 is a QR code. Of course, in other embodiments of this application, the transition code 170 may also be a barcode or other graphic that can obtain information by scanning. In one embodiment, the identification code 140 and the transition code 170 are of the same type, both being QR codes or barcodes. Of course, the identification code 140 and the transition code 170 may also be different; one may be a QR code and the other a barcode, etc.
[0094] In one embodiment, the transition code 170 is formed using inkjet printing, hot stamping, or printing processes. That is, the transition code 170 can be formed on the shielding layer 160 using inkjet printing, hot stamping, or printing, facilitating the integration of the transition code 170 with the inner cover 120. It is worth noting that the transition code 170 in all embodiments described below is formed using the above-described processes; only the placement of the transition code 170 differs, which will not be repeated hereafter.
[0095] See Figures 4 to 6 In the second embodiment of this application, the identification code 140 is disposed on the outer top wall of the inner cover 120, the shielding layer 160 is disposed on the side of the identification code 140 away from the bottle body 200, and the transition code 170 is disposed on the side of the shielding layer 160 away from the identification code 140. In this embodiment, the transition code 170, the shielding layer 160, and the identification code 140 are all located on the outside of the inner cover 120. Specifically, the transition code 170, the shielding layer 160, the identification code 140, and the outer top wall of the inner cover 120 are arranged sequentially from top to bottom. The shielding layer 160 is located on the outer top wall of the inner cover 120, the identification code 140 is located between the outer top wall of the inner cover 120 and the shielding layer 160, and the transition code 170 is located on the upper surface of the shielding layer 160. The shielding layer 160 can shield the identification code 140 from above.
[0096] During molding, first provide a transparent inner cover 120, such as Figure 6 As shown in (a), an identification code 140 is then set on the outer top wall of the transparent inner cover 120, as shown in (a). Figure 6 As shown in (b), a non-transparent coating layer 160 is then placed over the identification code 140, as shown in [example image]. Figure 6 As shown in (c), the identification code 140 is not visible on the outside of the inner cover 120. Then, a transition code 170 is placed above the shielding layer 160, as shown... Figure 6 As shown in (d) in the diagram. After flipping the inner cover 120, the identification code 140 can be seen on the inside of the inner cover 120, as shown in the diagram. Figure 6 As shown in (e), and because the identification code 140 is obscured by the shielding layer 160 on the outside of the inner cover 120, the identification code 140 is not visible on the outside of the inner cover 120; only the transition code 170 is visible, as shown in (e). Figure 6 As shown in (d), the shielding layer 160 can shield the identification code 140, preventing the identification code 140 from being exposed on the outside of the inner cover 120.
[0097] Thus, when the anti-counterfeiting bottle cap 100 is rotated open normally, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0098] In another embodiment of this application, the identification code 140 is disposed on the inner top wall of the inner cover 120, the shielding layer 160 is disposed on the outer top wall of the inner cover 120, and the transition code 170 is disposed on the side of the shielding layer 160 opposite to the identification code 140. In this embodiment, the transition code 170 and the shielding layer 160 are located on the outer side of the inner cover 120, and the identification code 140 is located on the inner side of the inner cover 120. The transition code 170, the shielding layer 160, the top wall of the inner cover 120, and the identification code 140 are arranged sequentially from top to bottom. The outer shielding layer 160 can shield the inner identification code 140.
[0099] During molding, a transparent inner cover 120 is first provided. An identification code 140 is then placed on the inner top wall of the transparent inner cover 120. Next, the inner cover 120 is flipped over, and a non-transparent coating layer 160 is placed on the outer top wall of the inner cover 120. The coating layer 160 obscures the identification code 140, making it invisible from the outside of the inner cover 120. Subsequently, a transition code 170 is placed above the coating layer 160. After flipping the inner cover 120, the identification code 140 is visible on the inside of the inner cover 120. However, due to the obstruction of the identification code 140 by the coating layer 160, it is not visible on the outside of the inner cover 120; only the transition code 170 is visible. In this way, the coating layer 160 effectively obscures the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0100] Thus, when the anti-counterfeiting bottle cap 100 is rotated open normally, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0101] In another embodiment of this application, a shielding layer 160 is disposed on the inner top wall of the inner cover 120, an identification code 140 is located on the side of the shielding layer 160 facing the bottle body 200, and a transition code 170 is disposed on the outer top wall of the inner cover 120. In this embodiment, the transition code 170 is located on the outer side of the inner cover 120, and both the shielding layer 160 and the identification code 140 are located on the inner side of the inner cover 120. Specifically, the transition code 170, the inner top wall of the inner cover 120, the shielding layer 160, and the identification code 140 are arranged sequentially from top to bottom. The identification code 140 is located on the inner top wall of the inner cover 120, the shielding layer 160 is located between the inner top wall of the inner cover 120 and the identification code 140, and the transition code 170 is located on the outer top wall of the inner cover 120. The shielding layer 160 can shield the identification code 140 from above.
[0102] During molding, a transparent inner cover 120 is first provided. Then, a non-transparent coating shielding layer 160 is set on the inner top wall of the transparent inner cover 120. An identification code 140 is then set on the shielding layer 160, which effectively conceals the identification code 140, making it invisible from the outside of the inner cover 120. Subsequently, a transition code 170 is set on the outer top wall of the inner cover 120. After flipping the inner cover 120, the identification code 140 is visible on the inside of the inner cover 120. Furthermore, due to the shielding layer 160's obstruction of the identification code 140, it is not visible on the outside of the inner cover 120; only the transition code 170 is visible. In this way, the shielding layer 160 effectively blocks the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0103] Thus, when the anti-counterfeiting bottle cap 100 is rotated open normally, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0104] Of course, in other embodiments of this application, the shielding layer 160 is disposed on the inner top wall of the inner cover 120, the identification code 140 is located on the side of the shielding layer 160 facing the bottle body 200, and the transition code 170 may also be located between the inner top wall of the inner cover 120 and the shielding layer 160. In this embodiment, the transition code 170, the shielding layer 160, and the identification code 140 are all located inside the inner cover 120. Specifically, the inner top wall of the inner cover 120, the transition code 170, the shielding layer 160, and the identification code 140 are arranged sequentially from top to bottom. The identification code 140 is located on the inner top wall of the inner cover 120, the shielding layer 160 is located between the inner top wall of the inner cover 120 and the identification code 140, and the transition code 170 is located between the inner top wall of the inner cover 120 and the shielding layer 160. The shielding layer 160 can shield the identification code 140 from above.
[0105] During molding, a transparent inner cover 120 is first provided. A transition code 170 is then set on the inner top wall of the transparent inner cover 120. A non-transparent coating covering layer 160 is then applied over the transition code 170. An identification code 140 is then set on the covering layer 160. The covering layer 160 effectively conceals the identification code 140, making it invisible from the outside of the inner cover 120. Subsequently, when the inner cover 120 is flipped over, the identification code 140 is visible on the inside of the inner cover 120. However, due to the covering layer 160's obstruction of the identification code 140, it is not visible on the outside of the inner cover 120; only the transition code 170 is visible. In this way, the covering layer 160 effectively blocks the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0106] Thus, when the anti-counterfeiting bottle cap 100 is rotated open normally, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0107] See Figures 7 to 12 In one embodiment, the shielding element is a gasket 180, which is disposed between the inner cap 120 and the mounting sleeve 110. The gasket 180 is made of a non-transparent material, and the identification code 140 is disposed on the surface of the gasket 180 facing the bottle body 200. Figure 9 for Figure 7 The diagram shown illustrates the process of setting the identification code 140 and the obstruction element on the inner cap 120 of the anti-counterfeiting bottle cap 100. Figure 12 for Figure 10 The diagram shows the process of setting the identification code 140 and the cover in the inner cap 120 of the anti-counterfeiting bottle cap 100.
[0108] The gasket 180 is disposed on the inner top wall of the inner cover 120 and contacts the top wall of the mounting sleeve 110. Thus, the gasket 180 can seal the connection between the inner cover 120 and the mounting sleeve 110, thereby sealing the bottle 200 and preventing liquid leakage, further improving the reliability of the bottle container seal. Furthermore, the gasket 180 is made of a non-transparent material, and the identification code 140 is disposed on the lower surface of the gasket 180. That is, the identification code 140 can be disposed on the surface of the gasket 180 instead of on the inner cover 120.
[0109] During molding, an opaque gasket 180 is first provided, and an identification code 140 is set on the lower surface of the opaque gasket 180. Then, a transparent inner cover 120 is provided, and the gasket 180 is installed into the transparent inner cover 120. Because the opaque gasket 180 obscures the identification code 140, it is not visible from the outside of the inner cover 120. After flipping the inner cover 120, the identification code 140 can be seen from the inside of the inner cover 120. Thus, the gasket 180 effectively obscures the identification code 140, preventing it from being exposed on the outside of the inner cover 120.
[0110] The opaque gasket 180 can obscure the identification code 140. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obscuring of the identification code 140 by the gasket 180, the identification code 140 is hidden and cannot be seen from the outside, thus preventing the identification code 140 from being scanned. When the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the consumer can see the identification code 140 on the inside of the inner cap 120.
[0111] See Figures 7 to 9 In the third embodiment of this application, the anti-counterfeiting bottle cap 100 further includes a transition code 170, which is different from the identification code 140. The transition code 170 is disposed on the surface of the gasket 180 facing away from the bottle body 200. In this embodiment, both the transition code 170 and the identification code 140 are disposed on the gasket 180. The transition code 170 is located on the upper surface of the gasket 180 and faces the inner top wall of the inner cap 120, while the identification code 140 is disposed on the lower surface of the gasket 180 and faces the bottle body 200. Specifically, the inner top wall of the inner cap 120, the transition code 170, the gasket 180, and the identification code 140 are arranged sequentially from top to bottom, and the gasket 180 can block the identification code 140 from above.
[0112] During molding, first provide a non-transparent 180mm gasket, such as... Figure 9 As shown in (a), an identification code 140 is then set on the lower surface of the non-transparent gasket 180, as shown in (a). Figure 9 As shown in (b), a transition code 170 is then provided on the upper surface of the opaque gasket 180, as shown in [example]. Figure 9 As shown in (c), a transparent inner cover 120 is then provided, as... Figure 9 As shown in (d), the gasket 180 is installed into the transparent inner cover 120, as... Figure 9 As shown in (e), the transition code 170 is visible through the transparent inner cover 120. After flipping the inner cover 120, the identification code 140 can be seen on the inside of the inner cover 120, as shown... Figure 9 As shown in (f), and because the gasket 180 obstructs the identification code 140 on the outside of the inner cover 120, the identification code 140 is not visible on the outside of the inner cover 120; only the transition code 170 is visible, as shown in (f). Figure 9 As shown in (e), the gasket 180 can thus shield the identification code 140, preventing the identification code 140 from being exposed on the outside of the inner cover 120.
[0113] Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the gasket 180, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0114] See Figures 10 to 12 In the fourth embodiment of this application, the anti-counterfeiting bottle cap 100 further includes a transition code 170 that is different from the identification code 140. The transition code 170 is disposed on the inner top wall or the outer top wall of the inner cap 120. This embodiment is only described with the transition code 170 disposed on the outer top wall of the inner cap 120 as an example. The principle of the transition code 170 being disposed on the inner top wall of the inner cap 120 is essentially the same as that of the transition code 170 being disposed on the inner top wall of the inner cap 120.
[0115] In this embodiment, the transition code 170 is disposed on the outer top wall of the inner cover 120, and the identification code 140 is disposed on the gasket 180. Furthermore, the identification code 140 is disposed on the lower surface of the gasket 180 and faces the bottle body 200. Specifically, the transition code 170, the outer top wall of the inner cover 120, the inner top wall of the inner cover 120, the gasket 180, and the identification code 140 are arranged sequentially from top to bottom. The gasket 180 can obscure the identification code 140 from above.
[0116] During molding, first provide a transparent inner cover 120, such as Figure 12 As shown in (a), a transition code 170 is then set on the outer top wall of the inner cover 120, as shown in (a). Figure 12 As shown in (b), then a non-transparent gasket 180 is provided, as... Figure 12 As shown in (c), an identification code 140 is then set on the lower surface of the non-transparent gasket 180, as shown in [example]. Figure 12 As shown in (d), the gasket 180 is installed into the transparent inner cover 120, as... Figure 12 As shown in (e) in the diagram. After flipping the inner cover 120, the identification code 140 can be seen on the inside of the inner cover 120, as shown in the diagram. Figure 12 As shown in (f), and because the gasket 180 obstructs the identification code 140 on the outside of the inner cover 120, the identification code 140 is not visible on the outside of the inner cover 120; only the transition code 170 is visible, as shown in (f). Figure 12 As shown in (e), the gasket 180 can thus shield the identification code 140, preventing the identification code 140 from being exposed on the outside of the inner cover 120.
[0117] Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, consumers can see the identification code 140 on the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the gasket 180, the identification code 140 is hidden and cannot be seen from the outside. Only the transition code 170 can be seen. In this way, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned without authorization.
[0118] The anti-counterfeiting bottle cap 100 of this application has a blocking component that can block the identification code 140 on the side opposite to the bottle body 200, thereby hiding the identification code 140 when the outer cap 130 is detached from the inner cap 120. When the anti-counterfeiting bottle cap 100 is normally rotated open, the identification code 140 can be seen normally on the inside of the inner cap 120. When the outer cap 130 is abnormally removed, the identification code 140 is hidden because the blocking component blocks it. Counterfeiters cannot scan the identification code 140 on the inside of the inner cap 120, thus preventing the identification code 140 from being scanned and raising the threshold for counterfeiting.
[0119] Furthermore, the shielding element can be a non-transparent coating shielding layer 160 or a gasket 180. The shielding layer 160 or the gasket 180 can shield the identification code 140. When the anti-counterfeiting bottle cap 100 is normally rotated open, the outer cap 130 and the inner cap 120 rotate open relative to the mounting sleeve 110. At this time, the consumer can see the identification code 140 from the inside of the inner cap 120. When the outer cap 130 is abnormally pulled up, it detaches from the inner cap 120. At this time, due to the shielding layer 160 or the gasket 180 shielding the identification code 140, the identification code 140 is hidden and cannot be seen from the outside, preventing the identification code 140 from being scanned.
[0120] Furthermore, the anti-counterfeiting bottle cap 100 may also include a transition code 170. The transition code 170 is set on the side of the shielding layer 160 away from the transition code 170, the outer top wall of the inner cap 120, or the upper surface of the gasket 180. When the outer cap 130 is abnormally pulled up, the outer cap 130 is separated from the inner cap 120. At this time, due to the obstruction of the identification code 140 by the shielding layer 160, counterfeiters can only scan the transition code 170 and cannot scan the identification code 140. Even if counterfeiters scan the transition code 170, they cannot obtain the information attached to the identification code 140, thus preventing the identification code 140 from being scanned by theft.
[0121] This application also provides a bottle container, including a bottle body 200 and an anti-counterfeiting bottle cap 100 as described in any of the above embodiments. An outer sleeve 111 of the anti-counterfeiting bottle cap 100 is fixedly installed at the neck of the bottle body 200, and an outer cap 130 of the anti-counterfeiting bottle cap 100 is placed over the outer sleeve 111 to seal the bottle body 200. Thus, when the anti-counterfeiting bottle cap 100 is normally rotated open, the consumer can see the identification code 140 on the inside of the inner cap 120. When the anti-counterfeiting bottle cap 100 is not normally opened, the identification code 140 is blocked by a blocking component, preventing the identification code 140 from being scanned and raising the threshold for counterfeiting.
[0122] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0123] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.
Claims
1. A counterfeit-proof bottle cap, characterized in that, The anti-counterfeiting bottle cap is installed at the neck of the bottle body in bottle-type containers and includes: The mounting sleeve is fixedly installed at the neck of the bottle body; The inner cap, made of transparent material, is rotatably mounted on the mounting sleeve to seal the bottle body; An outer cover, installed on the inner cover and covering the mounting sleeve, the outer cover being capable of rotating synchronously with the inner cover; and The identification code is located on the inside or outside of the inner cover; A shielding element is used to shield the identification code on the side of the identification code away from the bottle body, so that the identification code is exposed when the outer cover rotates and opens the inner cover relative to the mounting sleeve, and is hidden when the outer cover is detached from the inner cover.
2. The anti-counterfeiting bottle cap according to claim 1, characterized in that, The shielding element is a non-transparent coating forming a shielding layer.
3. The anti-counterfeiting bottle cap according to claim 2, characterized in that, The identification code is disposed on the outer top wall of the inner cap, and the shielding layer is disposed on the side of the identification code away from the bottle body to shield the identification code; Alternatively, the shielding layer is disposed on the outer top wall of the inner cover, and the identification code is disposed on the inner top wall of the inner cover; Alternatively, the shielding layer is disposed on the inner top wall of the inner cap, and the identification code is located on the side of the shielding layer facing the bottle.
4. The anti-counterfeiting bottle cap according to claim 2, characterized in that, The anti-counterfeiting bottle cap also includes a transition code that is different from the identification code, and the transition code is located on the side of the shielding layer opposite to the transition code.
5. The anti-counterfeiting bottle cap according to claim 4, characterized in that, The identification code is disposed on the outer top wall of the inner cap, the shielding layer is disposed on the side of the identification code away from the bottle body, and the transition code is disposed on the side of the shielding layer away from the identification code; Alternatively, the identification code is disposed on the inner top wall of the inner cover, the shielding layer is disposed on the outer top wall of the inner cover, and the transition code is disposed on the side of the shielding layer opposite to the identification code. Alternatively, the shielding layer is disposed on the inner top wall of the inner cap, the identification code is located on the side of the shielding layer facing the bottle, and the transition code is disposed on the outer top wall of the inner cap or located between the inner top wall of the inner cap and the shielding layer.
6. The anti-counterfeiting bottle cap according to claim 5, characterized in that, The shielding layer is formed by inkjet printing, hot stamping or printing processes. And / or, the identification code is formed using inkjet printing, engraving, or thermal transfer printing processes; And / or, the transition code is formed using inkjet printing, engraving, or thermal transfer printing processes; And / or, the identification code is a QR code or a barcode; And / or, the transition code is a QR code or a barcode.
7. The anti-counterfeiting bottle cap according to claim 1, characterized in that, The shielding component is a gasket, which is disposed between the inner cover and the mounting sleeve, and the gasket is made of a non-transparent material; The identification code is set on the surface of the gasket facing the bottle.
8. The anti-counterfeiting bottle cap according to claim 7, characterized in that, The anti-counterfeiting bottle cap also includes a transition code that is different from the identification code; The transition code is disposed on the inner top wall or outer top wall of the inner cap, or the transition code is disposed on the surface of the gasket opposite to the bottle body.
9. The anti-counterfeiting bottle cap according to any one of claims 1 to 8, characterized in that, The mounting sleeve includes an outer sleeve and an inner sleeve. The inner sleeve is fixedly installed at the neck of the bottle body, the inner cap is rotatably installed on the inner sleeve, and the outer sleeve is installed on the outside of the inner sleeve. And / or, the anti-counterfeiting bottle cap further includes an inner plug, which is installed in the mounting sleeve and inserted into the bottle body to seal the bottle body.
10. A bottle-type container, characterized in that, Includes the bottle body and the anti-counterfeiting bottle cap as described in any one of claims 1 to 9; The outer sleeve of the anti-counterfeiting bottle cap is fixedly installed at the neck of the bottle body, and the outer cap of the anti-counterfeiting bottle cap is placed on the outer sleeve to seal the bottle body.