Bottle cap structure capable of preventing theft and sweeping
By designing a snap-fit structure in the bottle cap, the QR code automatically separates when the outer cap is pulled out, solving the problem of poor anti-theft scanning effect in existing technologies and achieving the effect of preventing theft scanning and damage to the QR code due to abnormal opening.
Patent Information
- Application Number
- CN202520695115.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-14
AI Technical Summary
Existing technologies cannot effectively prevent the unauthorized scanning of QR codes; their anti-scanning effect is poor, and QR codes are not easily damaged when the system is not properly activated.
Design a bottle cap structure that can prevent theft and scanning, including an upper cap assembly, a lower cap assembly, and a QR code. By setting a snap-fit structure between the outer cap and the connector, the anti-counterfeiting component, and the inner cap, the QR code will automatically separate when the outer cap is pulled out and cannot be reset.
It effectively prevents QR code theft and improves the anti-theft effect. It also makes the QR code easy to destroy when the device is opened abnormally, thus preventing theft.
Smart Images

Figure CN223920041U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bottle cap technology, and more specifically, to a bottle cap structure that can prevent theft and scanning. Background Technology
[0002] Currently, most bottled liquids have QR codes inside the caps so that consumers can know relevant information about the product. At the same time, merchants use QR codes to offer discounts, red envelopes, or prizes for promotional purposes. Consumers only need to scan the QR code on the product to enjoy the corresponding benefits. However, some criminals have begun to scan QR codes in large numbers to obtain promotional discounts, red envelopes, or prizes. Current technology cannot effectively prevent theft and the anti-theft effect is poor. The QR codes are not easily damaged when the bottle cap is opened abnormally.
[0003] The present invention aims to provide a bottle cap structure that can prevent theft and scanning, so as to solve the problems of existing technologies that cannot prevent theft and scanning, have poor anti-theft and scanning effects, and are not easy to damage the QR code by abnormal opening. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a bottle cap structure that can prevent theft and scanning, so as to solve the problems of existing technologies that cannot prevent theft and scanning, have poor anti-theft and scanning effects, and are not easy to damage the QR code by abnormal opening. The structure is simple and highly practical.
[0005] The solution adopted by this utility model to solve the technical problem is:
[0006] A bottle cap structure that can prevent theft and scanning includes an upper cap assembly with a QR code and a lower cap assembly that is coaxially connected to the upper cap assembly and the bottle opening, respectively.
[0007] The upper cover assembly includes an outer cover, a connector fitted inside the outer cover and snapping into it, an anti-counterfeiting component fitted inside the connector, and an inner cover fitted inside the anti-counterfeiting component and connected to the lower cover assembly; the inner cover is snapped into the anti-counterfeiting component and the connector respectively.
[0008] The QR code includes Code 1, which is set on the bottom surface of the anti-counterfeiting component, and Code 2, which is set on the bottom surface of the connector and used in conjunction with Code 1.
[0009] In some possible implementations, a circular boss is provided on the connector; a circular through hole is provided on the anti-counterfeiting component to cooperate with the circular boss.
[0010] Code 2 is located at one end of the circular boss near the inner cover; Code 1 is laser-printed on the outside of the circular boss.
[0011] In some possible implementations, a fourth retaining ring is provided on the outer side of the connector, and a plurality of fourth anti-rotation recesses are provided along the circumferential direction and located above the fourth retaining ring; a fourth hook for cooperating with the fourth retaining ring and a fourth anti-rotation protrusion for cooperating with the fourth anti-rotation recesses are provided on the inner side of the outer cover.
[0012] In some possible implementations, the inner side of the connector is provided with a plurality of second anti-rotation protrusions that cooperate with the inner cover and are arranged in the circumferential direction, and a third hook provided below the second anti-rotation protrusions and cooperating with the inner cover; the inner cover is provided with a second anti-rotation recess that cooperates with the second anti-rotation protrusions, and a third retaining ring that cooperates with the third hook.
[0013] In some possible implementations, a second hook that engages with the inner cover is provided on the inner side of the anti-counterfeiting component; and a second retaining ring that engages with the second hook is provided on the inner cover.
[0014] In some possible implementations, the lower cover assembly includes a lower tube coaxially arranged and aligned with the outer cover, a bottle mouth fitted inside the lower tube with one end passing through the lower tube and extending into the inner cover, and an inner plug fitted at both ends into the bottle mouth and the inner cover respectively; the inner cover is fitted outside the bottle mouth and screwed into the bottle mouth.
[0015] In some possible implementations, a plurality of first anti-rotation recesses and a first hook located above the first anti-rotation recesses are provided inside the lower tube and along the circumferential direction.
[0016] The outer side of the bottle opening is provided with a first anti-rotation protrusion that cooperates with the first anti-rotation recess and a first retaining ring that cooperates with the first retaining hook.
[0017] In some possible implementations, a threaded section for screwing into the bottle neck is provided inside the inner cover; and an inner cover sealing cylinder coaxial with the inner cover and sealingly engaging with the bottle neck is provided inside the inner cover.
[0018] In some possible implementations, a hook and buckle are provided inside the bottle mouth to engage with a fifth retaining ring provided on the bottle mouth;
[0019] Inside the bottle mouth, there are also several sets of fifth anti-rotation protrusions that cooperate with the fifth anti-rotation recess provided on the bottle mouth and are arranged along its circumference.
[0020] In some possible implementations, the inner plug includes a lower sealing cylinder that seals with the bottle opening and is fitted inside the bottle opening, and an upper sealing cylinder that is coaxially connected to the lower sealing cylinder and seals with the bottle opening.
[0021] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0022] With this utility model, after the outer cover is removed, the structure formed by the outer cover and the connector, the anti-counterfeiting component, and the inner cover are separated, thereby separating the QR code formed by Code 1 and Code 2, thus preventing criminals from scanning it.
[0023] This invention utilizes the combination of a circular through-hole and a circular boss to prevent the QR code from being completely reset and thus preventing unauthorized scanning, even after the outer cover is removed and the anti-counterfeiting component is taken off the inner cover and the QR code is combined. Due to the randomness of the circular alignment, the QR code cannot be completely reset and cannot be scanned without authorization. Attached Figure Description
[0024] Figure 1 The explosive structure of this utility model Figure 1 ;
[0025] Figure 2 The explosive structure of this utility model Figure 2 ;
[0026] Figure 3 This is a cross-sectional view of the present invention after assembly with the bottle mouth;
[0027] Wherein: 1-Outer cover, 11-Fourth anti-rotation protrusion, 12-Fourth hook, 13-Alignment groove, 2-Connector, 21-Second anti-rotation protrusion, 22-Third hook, 23-Circular boss, 24-Fourth anti-rotation recess, 25-Fourth retaining ring, 3-Anti-counterfeiting component, 31-Second hook, 32-Circular through hole, 4-Lower tube, 41-First anti-rotation recess, 42-First hook, 43-Broken tooth, 5-Inner cover, 51-Threaded section, 52-Inner cover sealing cylinder surface. 53-Second retaining ring, 54-Second anti-rotation recess, 55-Third retaining ring, 6-Bottle mouth, 61-Lower sealing surface of bottle mouth, 62-Screw segment, 63-Upper sealing surface of bottle mouth, 64-First anti-rotation protrusion, 65-First retaining ring, 66-Hook and buckle, 67-Fifth anti-rotation protrusion, 7-Inner plug, 71-Upper sealing cylindrical surface of inner plug, 72-Lower sealing cylindrical surface of inner plug, 8-Bottle mouth, 81-Fifth retaining ring, 82-Fifth anti-rotation recess, 83-Bottle mouth sealing surface. Detailed Implementation
[0028] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," "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 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. The terms "first," "second," and similar terms used in this application do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, "a" or "one," etc., do not indicate a quantity limitation, but rather indicate the existence of at least one. In the implementation of this application, "and / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. In the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more. For example, multiple positioning posts refer to two or more positioning posts. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0029] The present invention will now be described in detail.
[0030] like Figures 1-3 As shown:
[0031] A bottle cap structure that can prevent theft and scanning includes an upper cap assembly with a QR code and a lower cap assembly that is coaxially connected to the upper cap assembly and the bottle opening, respectively.
[0032] The upper cover assembly includes an outer cover 1, a connector 2 fitted inside the outer cover 1 and snapped into it, an anti-counterfeiting component 3 fitted inside the connector 2 and coaxially arranged, and an inner cover 5 fitted inside the anti-counterfeiting component 3 and screwed into the lower cover assembly; the inner cover 5 is snapped into the anti-counterfeiting component 3 and coaxially arranged with the connector 2.
[0033] The QR code includes a code one set on the side of the anti-counterfeiting component 3 near the inner cover 5, and a code two set on the connector 2 and used in conjunction with code one to form a QR code. During assembly, after the anti-counterfeiting component 3 and the connector 2 are assembled, code one and code two are laser-printed onto the bottom surface formed by the anti-counterfeiting component 3 and the connector 2 to form a QR code that can be scanned for anti-counterfeiting verification. Part of the QR code is located on the bottom surface of the anti-counterfeiting component 3, and the other part is located on the connector 2. Code one and code two are coplanar.
[0034] When criminals forcibly pull out the outer cover 1, the connector 2 will also be pulled out along with the outer cover 1, thus separating code one and code two. This will cause the QR code to separate when the outer cover 1 is pulled out, making it impossible to scan it.
[0035] When opened normally, the upper cover assembly separates from the lower cover assembly, and QR code verification can be performed through the highly transparent inner cover 5.
[0036] In some possible implementations, in order to effectively separate the connector 2 from the anti-counterfeiting component 3 and prevent the QR code from being reset after the outer cover 1 is pulled out, a circular boss 23 coaxial with the bottle mouth 8 is provided on the connector 2; a circular through hole 32 that cooperates with the circular boss 23 is provided on the anti-counterfeiting component 3; the side of the circular boss 23 near the inner cover 5 is coplanar with the side of the anti-counterfeiting component 3 near the inner cover 5.
[0037] The connector 2 includes a support plate and an annular plate installed on the support plate near the bottle opening 8; a circular boss 23 is coaxial with the circular support plate and is positioned on the side of the support plate near the inner cap 5; the annular plate is coaxial with the support plate; the annular plate is coaxial with the bottle opening 8 and is fitted on the outside of the anti-counterfeiting component 3 and the inner cap 5; the support plate is located on the top surface of the anti-counterfeiting component 3 and in contact with it; the annular plate is snapped into the inner cap 5.
[0038] After the connector 2 and the anti-counterfeiting component 3 are assembled, laser marking is performed on the coplanar area of the two, and the QR code consisting of code one and code two is marked on one end of the circular protrusion 23 near the inner cover 5 and on the outside of the circular protrusion 23; code two is set on one end of the circular protrusion 23 near the inner cover 5; code one is fitted on the outside of the circular protrusion 23.
[0039] The anti-counterfeiting component 3 is fitted onto the outside of the circular protrusion 23 through the circular through hole 32. The circular protrusion 23 is coaxially set with the bottle mouth 8. After the outer cover 1 is pulled out, criminals need to remove the anti-counterfeiting component 3 from the inner cover 5 in order to scan the code and combine the QR code. Due to the setting of the circular protrusion 23, the QR code cannot be reset completely due to the randomness of the circular alignment, and thus cannot be scanned and identified.
[0040] In some possible embodiments, a fourth retaining ring 25 in the shape of an annulus is provided on the outer side of the connector 2, and a plurality of fourth anti-rotation recesses 24 are provided along the circumferential direction of the connector 2 and located above the fourth retaining ring 25, the fourth anti-rotation recesses 24 being located on the outer side of the connector 2; a fourth hook 12 for cooperating with the fourth retaining ring 25 and a fourth anti-rotation protrusion 11 for cooperating with the fourth anti-rotation recesses 24 are provided on the inner side of the outer cover 1; multiple sets of fourth hooks 12 are provided;
[0041] The fourth anti-rotation recess 24 is located above the fourth retaining ring 25 and is equally spaced; the fourth anti-rotation protrusion 11 is provided in a one-to-one correspondence with the fourth anti-rotation recess 24, thereby effectively ensuring the connection between the outer cover 1 and the connector 2. When criminals pull out the outer cover 1, the connector 2 will separate from the anti-counterfeiting part 3 as the outer cover 1 is pulled out.
[0042] In some possible implementations, the inner side of the connector 2 is provided with a plurality of sets of second anti-rotation protrusions 21 that cooperate with the inner cover 5 and are arranged along the circumferential direction of the connector 2, and a third hook 22 provided below the second anti-rotation protrusions 21 and cooperating with the inner cover 5; the inner cover 5 is provided with a second anti-rotation recess 54 that cooperates with the second anti-rotation protrusions 21, and a third retaining ring 55 that cooperates with the third hook 22;
[0043] The second anti-rotation protrusion 21 cooperates with the second anti-rotation recess 54 to restrict the rotation of the connector 2 and the inner cover 5. The cooperation of the third hook 22 and the third ring 55 realizes the snap-fit cooperation between the connector 2 and the inner cover 5, so that the connector 2 and the inner cover 5 form a whole. Under the action of external force, the third hook 22 and the third ring 55 separate, thereby separating the connector 2 from the inner cover 5. There are multiple sets of third hooks 22, which are evenly arranged along the circumferential direction of the inner sidewall of the connector 2. Each set of third hooks 22 is an arc segment. The third hooks 22 are in the shape of a ring.
[0044] In some possible implementations, in order to effectively achieve the snap-fit engagement between the anti-counterfeiting component 3 and the inner cover 5, so that when the connecting component 2 is pulled out by the outer cover 1, the anti-counterfeiting component 3 is not pulled out together with the connecting component 2; a second hook 31 for cooperating with the inner cover 5 is provided on the inner side of the anti-counterfeiting component 3; and a second retaining ring 53 for cooperating with the second hook 31 is provided on the inner cover 5.
[0045] Preferably, the second hooks 31 are in multiple sets and are evenly arranged along the circumferential direction of the inner sidewall of the anti-counterfeiting component 3; each set of second hooks 31 is an arc segment; the second ring 53 is annular and engages with the multiple sets of second hooks 31.
[0046] In some possible implementations, the lower cover assembly includes a lower tube 4 that is aligned and coaxial with the outer cover 1, a bottle opening 6 that is fitted inside the lower tube 4 and has one end that passes through the lower tube 4 and extends into the inner cover 5, and an inner plug 7 that is fitted at both ends into the bottle opening 8 and the bottle opening 6 respectively; the inner cover 5 is located outside the bottle opening 6 and is screwed into the bottle opening 6.
[0047] Preferably, a broken tooth 43 is provided at one end of the lower tube 4 near the outer cover 1, which is connected to the lower tube 4 through a connection point; and an alignment groove 13 is provided at one end of the outer cover 1 near the lower tube 4 to align and assemble with the broken tooth 43.
[0048] When opened normally, the broken tooth 43 will separate from the lower tube 4, the outer cover 1 will be screwed open normally, and the whole formed by the outer cover 1, the connector 2, the anti-counterfeiting part 3, and the inner cover 5 will separate from the lower tube 4 and the bottle mouth 6.
[0049] Specifically, the anti-counterfeiting component 3 is coaxially arranged with the inner cover 5; the anti-counterfeiting component 3 includes a base plate fitted on the outside of the circular boss 23 and a sleeve-shaped ring plate connected to the base plate; the ring plate is located between the outer wall of the inner cover 5 and the inner wall of the connector 2; the second hook 31 is arranged on the inner wall of the ring plate along its circumference; the side of the base plate near the inner cover 5 is coplanar with the end of the circular boss 23 near the inner cover 5.
[0050] In some possible implementations, in order to effectively connect the lower tube 4 and the bottle mouth 6, several sets of first anti-rotation recesses 41 and first hooks 42 located above the first anti-rotation recesses 41 are provided in the lower tube 4 and along the circumferential direction.
[0051] A first anti-rotation protrusion 64, which works in conjunction with the first anti-rotation recess 41, and a first retaining ring 65, which works in conjunction with the first retaining hook 42, are provided on the outer side of the bottle mouth 6; the first retaining ring 65 is in the shape of a ring.
[0052] In some possible implementations, to effectively connect the inner cap 5 and the bottle neck 6, a threaded section 51 for screwing the bottle neck 6 is provided inside the inner cap 5; a threaded section 62 for cooperating with the threaded section 51 is provided on the outside of the bottle neck 6; the threaded section 62 is located above the first retaining ring 65; an inner cap sealing cylindrical surface 52 coaxial with the inner cap 5 and sealingly cooperating with the bottle neck 6 is provided inside the inner cap 5; an upper sealing surface 63 for sealingly cooperating with the inner cap sealing cylindrical surface 52 is provided on the bottle neck 6; a second retaining ring 53 in the shape of an annular part for cooperating with the anti-counterfeiting part 3 and a third retaining ring 55 for cooperating with the connecting part 2 and located below the second retaining ring 53 are provided on the outside of the inner cap 5; a second anti-rotation recess 54 for cooperating with the second anti-rotation protrusion 21 is also provided on the outside of the inner cap 5 and between the second retaining ring 53 and the third retaining ring 55.
[0053] In some possible implementations, a hook and buckle 66 is provided inside the bottle mouth 6 to engage with the fifth retaining ring 81 provided on the bottle mouth 8;
[0054] Inside the bottle mouth 6, there are also a number of fifth anti-rotation protrusions 67 that cooperate with the fifth anti-rotation recess 82 provided on the bottle mouth 8 and are arranged along its circumference.
[0055] In some possible implementations, in order to effectively achieve a sealing fit between the inner plug 7 and the bottle mouth 8 and bottle mouth 6, the inner plug 7 includes an inner plug lower sealing cylinder 72 that is sealed and fitted inside the bottle mouth 8 and is fitted inside the bottle mouth 8, and an inner plug upper sealing cylinder 71 that is coaxially connected to the inner plug lower sealing cylinder 72 and is sealed and fitted inside the bottle mouth lower sealing surface 61 of the bottle mouth 6; the inner plug upper sealing cylinder 71 is fitted inside the bottle mouth 6.
[0056] During assembly, the inner plug 7 is assembled from the lower end of the bottle mouth 6 upwards, and is inserted into the lower sealing surface 61 of the bottle mouth with the upper sealing cylindrical surface 71 of the inner plug as a guide.
[0057] Screw the inner cap 5 onto the threaded section 62 at the threaded section 51. The inner cap sealing cylindrical surface 52 enters the upper sealing surface 63 of the bottle mouth 6. Then assemble the assembled whole from the bottom end of the lower tube 4 upwards. The first anti-rotation protrusion 64 cooperates with the first anti-rotation recess 41, and the first hook 42 locks the first retaining ring 65.
[0058] The circular through hole 32 of the anti-counterfeiting part 3 is aligned and inserted into the circular boss 23 of the connector 2. The whole formed by the connector 2 and the anti-counterfeiting part 3 is assembled from the lower end of the outer cover 1 upward. The fourth anti-rotation protrusion 11 on the outer cover 1 cooperates with the fourth anti-rotation recess 24 on the connector 2. The fourth hook 12 on the outer cover 1 locks the fourth retaining ring 25.
[0059] Align and assemble the alignment groove 13 on the outer cover 1 and the broken tooth 43 on the lower tube 4. The second anti-rotation protrusion 21 on the connector 2 engages with the second anti-rotation recess 54 on the inner cover 5. The second hook 31 on the anti-counterfeiting part 3 engages with the second retaining ring 53 on the upper part. The third hook 22 on the connector 2 engages with the third retaining ring 55 on the inner cover 5, thus completing the assembly.
[0060] When opened, after rotating the outer cover 1 to open, the broken tooth 43 breaks, and the upper cover assembly and the lower cover assembly are separated. Anti-counterfeiting verification can be achieved by scanning the QR code formed by the connector 2 and the anti-counterfeiting component 3 through the highly transparent inner cover 5.
[0061] When criminals attempt to obtain promotional discounts, red envelopes, or prizes by scanning the QR code, forcibly removing the outer cap 1 will destroy the QR code. The entire structure formed by the outer cap 1 and the connector 2 will separate from the entire structure formed by the anti-counterfeiting component 3 and the inner cap 5, and the combined QR code will also separate. Criminals will be unable to scan the QR code, thus achieving the purpose of preventing theft. This makes the anti-theft bottle cap structure have the beneficial effects of preventing theft, having a good anti-theft effect, and preventing the QR code from being easily destroyed by abnormal opening.
[0062] This invention is not limited to the specific embodiments described above. This invention extends to any new feature or combination disclosed in this specification, as well as any new method or process step or combination disclosed herein.
Claims
1. A theft-proof scanning bottle cap structure installed on a bottle mouth, characterized in that, The application relates to a bottle cap assembly comprising an upper cap assembly provided with a two-dimensional code, and a lower cap assembly coaxially connected with the upper cap assembly and a bottle mouth respectively. The upper cap assembly comprises an outer cap, a connecting piece sleeved in the outer cap and in clasp cooperation with the outer cap, an anti-fake piece sleeved in the connecting piece, and an inner cap sleeved in the anti-fake piece and connected with the lower cap assembly; the inner cap is in clasp cooperation with the anti-fake piece and the connecting piece respectively. The two-dimensional code comprises code one laser-printed on the bottom surface of the anti-fake piece, and code two arranged on the bottom surface of the connecting piece and used in cooperation with the code one.
2. The theft-proof scanning bottle cap structure according to claim 1, wherein A circular boss is arranged on the connecting piece; a circular through hole is arranged on the anti-fake piece and used in cooperation with the circular boss. The code two is arranged on one end of the circular boss close to the inner cap; and the code one is laser-printed on the outer side of the circular boss.
3. The theft-proof scanning bottle cap structure according to claim 1, wherein A fourth clasp ring is arranged on the outer side of the connecting piece; and a plurality of groups of fourth rotation-stopping concave parts are arranged in the circumferential direction and above the fourth clasp ring; a fourth clasp hook is arranged on the inner side of the outer cap and used in cooperation with the fourth clasp ring; and a fourth rotation-stopping convex part is arranged on the inner side of the outer cap and used in cooperation with the fourth rotation-stopping concave parts.
4. The theft-proof scanning bottle cap structure according to claim 1, wherein A plurality of groups of second rotation-stopping convex parts are arranged in the circumferential direction and used in cooperation with the inner cap; and a third clasp hook is arranged below the second rotation-stopping convex parts and used in cooperation with the inner cap. A second rotation-stopping concave part is arranged on the inner side of the inner cap and used in cooperation with the second rotation-stopping convex parts; and a third clasp ring is arranged on the inner side of the inner cap and used in cooperation with the third clasp hook.
5. The theft-proof scanning bottle cap structure according to claim 4, wherein A second clasp hook is arranged on the inner side of the anti-fake piece and used in cooperation with the inner cap; and a second clasp ring is arranged on the inner side of the inner cap and used in cooperation with the second clasp hook.
6. The theft-proof scanning bottle cap structure according to claim 1, wherein The lower cap assembly comprises a lower tube coaxially arranged and in alignment with the outer cap, a bottle mouth sleeved in the lower tube and having one end extending into the inner cap through the lower tube, and inner plugs sleeved in the bottle mouth and the bottle of a bottle respectively; and the inner cap is sleeved on the outer side of the bottle mouth and in screw cooperation with the bottle mouth.
7. The theft-proof scanning bottle cap structure according to claim 6, wherein A plurality of groups of first rotation-stopping concave parts are arranged in the circumferential direction in the lower tube; and a first clasp hook is arranged above the first rotation-stopping concave parts. A first rotation-stopping convex part is arranged on the outer side of the bottle mouth and used in cooperation with the first rotation-stopping concave parts; and a first clasp ring is arranged on the outer side of the bottle mouth and used in cooperation with the first clasp hook.
8. The theft-proof scanning bottle cap structure according to claim 6, wherein A threaded section is arranged in the inner cap and used in screw cooperation with the bottle mouth; and an inner cap sealing cylindrical surface is arranged in the inner cap coaxially with the inner cap and in sealing cooperation with the bottle mouth.
9. The theft-proof scanning bottle cap structure according to claim 6, wherein A clasp buckle is arranged in the bottle mouth and used in clasp cooperation with a fifth clasp ring arranged on the bottle of a bottle. A plurality of groups of fifth rotation-stopping convex parts are arranged in the circumferential direction and used in cooperation with a fifth rotation-stopping concave part arranged on the bottle of a bottle.
10. The theft-proof scanning bottle cap structure according to claim 6, wherein The inner plug comprises an inner plug lower sealing cylindrical surface in sealing cooperation with the bottle of a bottle and sleeved in the bottle of a bottle, and an inner plug upper sealing cylindrical surface coaxially connected with the inner plug lower sealing cylindrical surface and in sealing cooperation with the bottle mouth.