Bottle cap device capable of storing and releasing liquid and bottle
By incorporating a storage mechanism and threaded connection within the bottle cap, the problem of the difficulty in instantly preparing bottled beverages is solved, achieving portability of the base liquid and convenience in the preparation process, thus enhancing the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-21
- Publication Date
- 2026-04-07
AI Technical Summary
In the existing technology, bottled beverages cannot meet users' needs for instant preparation, and the preparation process is inconvenient, especially lacking in ritual and visual appeal when mixing drinks.
Design a bottle cap device capable of storing and releasing liquids. By setting a storage mechanism in the bottle cap, the base liquid is stored in the bottle cap, and the sealing and opening of the base liquid are achieved by a threaded connection, which facilitates the fusion of the base liquid with the mixing medium inside the bottle and simplifies the mixing process.
It achieves portability and ease of operation of the base liquid, allowing users to prepare it instantly without the need for additional containers, thus improving the convenience and visual appeal of the preparation process.
Smart Images

Figure CN121799780A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bottle sealing, and more particularly to a bottle cap device and bottle capable of storing and releasing liquids. Background Technology
[0002] Currently, some bottled beverages (such as fruit juices, coffee drinks, tea drinks, and alcoholic beverages) require immediate preparation. To ensure freshness or meet specific user needs, these beverages need to be prepared before consumption. In existing technology, bottled beverages are typically prepared uniformly before leaving the factory and then bottled. This makes it difficult to meet users' immediate preparation needs. Furthermore, preparing these beverages requires additional mixing liquids and containers, which also presents operational inconvenience.
[0003] Taking alcoholic beverages as an example, blending involves mixing new and aged spirits in a certain ratio. This blending is one of the core processes in brewing, balancing the taste of the beverage with production efficiency. However, this blending process is usually completed during the distillery's production stage. Such beverages lack a sense of ceremony and visual appeal when consumed (for example, the effect of aged spirits spreading and forming thread-like yellow streaks as they slowly settle in the new spirits). More discerning drinkers prefer to blend on the spot. Currently, blending typically involves adding a small amount of aged spirits to the new spirits before drinking, requiring numerous containers to handle the mixture, which is inconvenient. Summary of the Invention
[0004] To address the aforementioned problems, the main objective of this invention is to provide a bottle cap device capable of storing and releasing liquids. By incorporating a storage mechanism, the base liquid is stored within the bottle cap, allowing it to be carried along with the cap without the need for an additional container, thus achieving portability and ease of operation.
[0005] A secondary objective of this invention is to provide a bottle in conjunction with the aforementioned cap device, wherein, when preparation is required, the base liquid in the cap device flows into the bottle and mixes with the preparation medium inside the bottle.
[0006] The technical solution of this invention is implemented as follows: A bottle cap device capable of storing and releasing liquid, comprising: The base mechanism includes a mounting sleeve, the mounting sleeve including a mounting pipe section and a first externally threaded pipe section disposed on the mounting pipe section, the top of the first threaded section being provided with a sealing ring, and the mounting sleeve having a first channel penetrating through itself; A storage mechanism includes a connecting sleeve and a driving sleeve fitted onto the connecting sleeve. The top of the driving sleeve is detachably equipped with a cover plate assembly. The inner wall of the connecting sleeve has a first internally threaded pipe section adapted to a first externally threaded pipe section. The connecting sleeve has a second channel penetrating through itself, and the driving sleeve has a third channel penetrating through itself. The axes of the first, second, and third channels are on the same straight line. The top of the connecting sleeve has a second externally threaded pipe section, and the inner wall of the driving sleeve has a second internally threaded pipe section adapted to the second externally threaded pipe section. A sealing plate is provided horizontally within the second channel, and a perforation is provided at the edge of the sealing plate. A base liquid bottle is fixedly installed within the third channel. The base liquid bottle has a cavity for containing base liquid, and an opening communicating with the cavity is provided at the bottom of the base liquid bottle. The base liquid bottle has a closed state in contact with the sealing plate and an open state detached from the sealing plate. The driving sleeve drives the base liquid bottle to switch between the closed and open states.
[0007] In this design, the connecting sleeve is detachably mounted on the mounting sleeve via a threaded connection; the driving sleeve is threaded onto the connecting sleeve and can rotate up and down along the second external thread section of the connecting sleeve; the base liquid bottle is fixedly mounted inside the driving sleeve, meaning it can move up and down with the driving sleeve; when the base liquid bottle is in a closed state, its opening is tightly fitted with the sealing plate, preventing the base liquid inside the bottle from flowing out; during mixing, the driving sleeve is rotated upwards, causing it to move upwards and lift the base liquid bottle until its opening is separated from the sealing plate. At this point, the base liquid flows from the opening onto the sealing plate, then through the perforations in the sealing plate, through the second channel, and into the first channel; when mixing needs to be stopped, the driving sleeve is rotated downwards, causing it to move downwards and lift the base liquid bottle until its opening is tightly fitted with the sealing plate again.
[0008] Preferably, the base liquid bottle has an annular flange at the upper edge of its outer side wall, and a locking ring that matches the flange is provided in the third channel. During actual assembly, the base liquid bottle is inserted into the third channel from the top, and the flange holds the bottle in place within the third channel.
[0009] Preferably, the top of the connecting sleeve is provided with a first limiting ring in the horizontal direction, and the inner sidewall of the driving sleeve is provided with a second limiting ring in the horizontal direction. When the base liquid bottle is in a closed state, the first limiting ring is located above the second limiting ring. By setting the first and second limiting rings, the maximum stroke of the driving sleeve is limited, preventing the driving sleeve from detaching from the connecting sleeve.
[0010] Preferably, the top of the drive housing is detachably equipped with a cover plate assembly, which includes a cover plate and a mounting ring. By providing the cover plate assembly, the top of the third channel is sealed, preventing foreign objects from entering the third channel.
[0011] Preferably, the base liquid bottle includes a cylindrical section and a frustum section that are connected to each other. The frustum section tapers from top to bottom, and the top of the cylindrical section is provided with a sealing top plate. The opening is located on the bottom surface of the frustum section. During assembly, the sealing top plate is first connected to the cylindrical section, and then the base liquid bottle is inverted so that the opening of the base liquid bottle faces upward. The base liquid is then injected through the opening.
[0012] Preferably, the sealing plate has a stopper in the middle that matches the opening. In actual use, the stopper seals the opening of the base liquid bottle, thus improving the sealing performance of the bottle opening.
[0013] Preferably, the system also includes a flow divider plate located within the first channel. The flow divider plate has a first dispensing hole in its center and a plurality of second dispensing holes spaced apart at its edges. By providing the flow divider plate, the base liquid flows evenly into the first channel.
[0014] Preferably, a diversion pipe is provided directly below the diversion plate. The diversion pipe is conical, and its upper end is connected to the first channel. The side wall of the diversion pipe has through holes for balancing air pressure. In actual operation, the base liquid drips evenly through the diversion pipe.
[0015] Preferably, the outer peripheral surfaces of the mounting housing, connecting housing, and driving housing are on the same cylindrical surface, ensuring the integrity of the mounting housing, connecting housing, and driving housing.
[0016] A bottle assembly includes a bottle body and a bottle neck. The bottle body is made of a transparent material and contains a mixing medium. A cap device is detachably installed at the bottle neck. The cap device is the aforementioned cap device. A sealing ring is provided inside the bottle neck. The sealing ring has a through channel. A hanging ring is provided on the inner wall of the sealing ring. An annular hanging plate is provided at the top of the distribution tube. The minimum inner diameter of the through channel is greater than the maximum diameter of the hanging plate. The diameter of the perforation at the hanging ring is smaller than the diameter of the hanging plate. In this solution, the base liquid in the cap device can enter the bottle body and form a mixing liquid with the mixing medium inside the bottle body. The cap device and the bottle body are integrated, eliminating the need for an additional container to carry the base liquid. Furthermore, during mixing, only the drive housing needs to be rotated, making operation convenient. It should be noted that after the preparation is completed, the connecting sleeve is removed from the installation sleeve. At this time, the first threaded pipe section forms the outlet of the bottle. The first threaded section has a certain length, which allows the prepared liquid to converge and flow out stably within the first threaded pipe section. This makes it easier to form a stable and continuous laminar flow, ensuring that the prepared liquid forms a stable flow column when poured. In addition, since the minimum inner diameter of the through channel is greater than the maximum diameter of the hanging plate, the perforation diameter at the hanging ring is smaller than the diameter of the hanging plate. When the bottle is placed upright, the hanging plate of the diverter pipe is hung at the hanging ring. When the bottle is inverted or tilted, the hanging plate of the diverter pipe can detach from the hanging ring, and the diverter pipe slides along the through channel.
[0017] The principle and beneficial effects of the present invention, which adopts the above technical solution, are as follows: 1. The base liquid bottle is part of the cap device, eliminating the need for an additional container to carry the base liquid, thus improving its portability.
[0018] 2. By rotating the casing upwards and downwards, the sealing and opening of the base liquid level opening are achieved, simplifying the mixing process.
[0019] 3. By setting up a flow divider plate and flow divider pipe, the base liquid is ensured to enter the mixing medium evenly, which not only ensures the uniformity of the mixing liquid, but also makes it easy for users to observe the fusion process of the base liquid and the mixing medium. Attached Figure Description
[0020] Figure 1 This is a diagram of the bottle; Figure 2 This is a schematic diagram of an explosion involving a bottle cap device; Figure 3 This is a schematic diagram showing the base liquid bottle in a closed state with the bottle cap device. Figure 4 This is a schematic diagram of the base liquid bottle in the open state of the bottle cap device; Figure 5 This is a schematic diagram showing the components of the shunt pipe, mounting sleeve, sealing plate, and connecting sleeve. Figure 6This is a schematic diagram of the sealing plate; Figure 7 This is a schematic diagram of the bottle. Figure 8 It is a cross-sectional view of the bottle neck and part of the bottle body when the bottle is inverted.
[0021] The labels for the attached figures are as follows: 1. Bottle cap device; 2. Mounting sleeve; 3. First external threaded pipe section; 4. Edge closing ring; 5. Connecting sleeve; 6. Drive sleeve; 7. Second external threaded pipe section; 8. Perforation; 9. Base liquid bottle; 10. Cavity; 11. Opening; 12. Flange; 13. Engaging ring; 14. First limiting ring; 15. Second limiting ring; 16. Cover plate; 17. Mounting ring; 18. Cylindrical section; 19. Frustum section; 20. Plug; 21. Sealing plate; 22. Diverter plate; 23. First dispensing hole; 24. Second dispensing hole; 25. Diverter pipe; 26. Through hole; 27. Bottle body; 28. Bottle neck; 29. Annular groove; 30. Sealing ring; 31. Hanging ring; 32. Hanging plate. Detailed Implementation
[0022] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0023] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and therefore the scope of protection of the invention is not limited to the specific embodiments disclosed below.
[0024] In this embodiment, the vertical direction refers to the height direction of the bottle itself.
[0025] The specific embodiments of the present invention are as follows: like Figures 1 to 6As shown, the present invention provides a bottle cap device capable of storing and releasing liquid. The bottle cap device 1 includes a base mechanism and a storage mechanism. The base mechanism includes a mounting sleeve 2, which includes a mounting tube section and a first externally threaded tube section 3 disposed on the mounting tube section. The top of the first threaded tube section is provided with a sealing ring 4, and the mounting sleeve 2 has a first through-hole. The storage mechanism includes a connecting sleeve and a driving sleeve 6 fitted on the connecting sleeve. The top of the driving sleeve 6 is detachably provided with a cover plate assembly. The inner sidewall of the connecting sleeve has a first internally threaded tube section adapted to the first externally threaded tube section 3. The connecting sleeve has a second through-hole, and the driving sleeve 6 has a third through-hole. The axes of the first, second, and third channels are on the same straight line. The top of the connecting sleeve has a second external threaded pipe section 7. The inner side wall of the driving sleeve 6 is provided with a second internal threaded pipe section that is adapted to the second external threaded pipe section 7. A sealing plate 21 is provided in the second channel along the horizontal direction. A through hole 8 is provided at the edge of the sealing plate 21. A base liquid bottle 9 is fixedly installed in the third channel. The base liquid bottle 9 has a cavity 10 for containing base liquid. The bottom of the base liquid bottle 9 is provided with an opening 11 that communicates with the cavity 10. The base liquid bottle 9 has a closed state in contact with the sealing plate 21 and an open state that is detached from the sealing plate 21. The driving sleeve 6 drives the base liquid bottle 9 to switch between the closed state and the open state.
[0026] In this design, the connecting sleeve is detachably mounted on the mounting sleeve 2 via a threaded connection; the driving sleeve 6 is threaded onto the connecting sleeve and can rotate up and down along the second external thread section of the connecting sleeve; the base liquid bottle 9 is fixedly mounted inside the driving sleeve 6, meaning it can move up and down with the driving sleeve 6; when the base liquid bottle 9 is in a closed state, its opening 11 is tightly fitted with the sealing plate 21, preventing the base liquid inside the base liquid bottle 9 from flowing out; in this embodiment, the blending of old and new wine is taken as an example. The base liquid bottle 9 contains aged liquor. During blending, the drive housing 6 is rotated upwards, causing it to move upwards and lift the base liquid bottle 9 until its opening 11 disengages from the sealing plate 21. At this point, the aged liquor in the base liquid bottle 9 flows from its opening 11 onto the sealing plate 21, then through the perforation 8 of the sealing plate 21, into the first channel. When blending needs to be stopped, the drive housing 6 is rotated downwards, causing it to move downwards and lift the base liquid bottle 9 until its opening 11 is once again tightly fitted against the sealing plate 21. It is understood that the first, second, and third channels are interconnected and their axes are collinear. The outer surfaces of the mounting housing 2, connecting housing, and drive housing 6 are on the same cylindrical surface, ensuring the integrity of the mounting housing 2, connecting housing, and drive housing 6.
[0027] In this embodiment, an annular flange 12 is provided at the upper edge of the outer wall of the base liquid bottle 9, and a locking ring 13 adapted to the flange 12 is provided in the third channel. During actual assembly, the base liquid bottle 9 is inserted into the third channel from the top, and the flange 12 hangs the base liquid bottle 9 in the third channel. A first limiting ring 14 is provided at the top of the connecting sleeve along the horizontal direction, and a second limiting ring 15 is provided on the inner wall of the driving sleeve 6 along the horizontal direction. When the base liquid bottle 9 is in a closed state, the first limiting ring 14 is located above the second limiting ring 15. By setting the first limiting ring 14 and the second limiting ring 15, the maximum stroke of the driving sleeve 6 is limited, preventing the driving sleeve 6 from detaching from the connecting sleeve.
[0028] In this embodiment, the cover plate assembly includes a cover plate 16 and a mounting ring 17. The cover plate 16 is located on top of the mounting ring 17. During actual assembly, the mounting ring 17 is snapped into the top of the third channel. By setting the cover plate 16 assembly, the top of the third channel is sealed, preventing foreign objects from entering the third channel.
[0029] The base liquid bottle 9 comprises a cylindrical section 18 and a frustum section 19 connected to each other. The frustum section 19 tapers from top to bottom. The top of the cylindrical section 18 is equipped with a sealing top plate, and the opening 11 is located on the bottom surface of the frustum section 19. During assembly, the sealing top plate is first connected to the cylindrical section 18, and then the base liquid bottle 9 is inverted so that the opening 11 of the base liquid bottle 9 faces upward. Base liquid is then injected through the opening 11. The sealing plate 21 has a stopper 20 in the middle that is adapted to the opening 11. In actual use, the opening 11 of the base liquid bottle 9 is sealed by the stopper 20. By setting the stopper 20, the sealing performance of the opening 11 of the base liquid bottle 9 is improved. It should be noted that the cylindrical section 18 and the frustum section 19 of the base liquid bottle 9 are integrally formed. The cylindrical section 18 can increase the storage space of the base liquid bottle 9, and the frustum section 19 can reduce the requirements for installation space, while also facilitating the stopper 20 to seal the opening 11 located at the bottom of the frustum.
[0030] The first channel is also equipped with a flow divider plate 22 and a flow divider tube 25. The flow divider tube 25 is located below the flow divider plate 22. The flow divider plate 22 has a first liquid distribution hole 23 in the middle and multiple second liquid distribution holes 24 spaced apart at the edge of the flow divider plate 22. By setting the flow divider plate 22, the base liquid flows evenly into the first channel. The flow divider tube 25 is conical, and its upper end is connected to the first channel. The side wall of the flow divider tube 25 has through holes 26 for balancing air pressure. In actual operation, the base liquid drips from the flow divider plate 22 into the tube body of the flow divider tube 25, and then drips out from the hole at the bottom of the flow divider tube 25. By setting the flow divider tube 25, it is ensured that the base liquid can drip evenly.
[0031] This embodiment also provides a bottle, which includes a bottle body 27 and a bottle neck 28. The bottle body 27 is made of transparent material and contains a dispensing medium. A bottle cap device 1 is detachably provided at the bottle neck 28. The bottle cap device 1 is the bottle cap device 1 mentioned above. Furthermore, the bottle neck 28 has an annular groove 29. The inner sidewall of the mounting sleeve 2 is provided with an annular protrusion that matches the annular groove 29. In actual installation, the mounting sleeve 2 is pressed onto the bottle neck 28, so that the annular protrusion is engaged with the annular groove 29, thereby achieving a stable connection between the mounting sleeve 2 and the bottle neck 28.
[0032] In this design, the base liquid bottle 9 in the cap device 1 contains aged liquor, while the bottle body 27 contains new liquor. During mixing, simply rotating the drive sleeve 6 allows the aged liquor to drip into the new liquor inside the bottle body 27, completing the mixing process. At this point, a mixed liquor is formed inside the bottle body 27. During the mixing process, because the bottle body 27 is made of transparent material, the user can clearly observe the diffusion of the aged liquor into the new liquor, enhancing the enjoyment and ritual of drinking. It is understood that the cap device 1 and the bottle body 27 are integrated, eliminating the need for an additional container to carry the base liquid. Furthermore, mixing only requires rotating the drive sleeve 6, making operation convenient. In this embodiment, part of the diversion tube 25 extends into the bottle body 27. The through-hole 26 on the diversion tube 25 is used to balance the air pressure inside the bottle body 27 and the tube body, ensuring the smooth dripping of the aged liquor from the tube body. It should be noted that after the blending is completed, the connecting sleeve is removed from the installation sleeve 2. At this time, the first threaded pipe section forms the bottle mouth for liquid outlet. The first threaded section has a certain length, which allows the blended wine to have a longer path to converge in the first threaded pipe section, making it easier to form a stable and continuous laminar flow. When pouring the blended wine, the blended wine is easy to form a stable flow column, producing a "silky" visual effect.
[0033] In this embodiment, a sealing ring 30 is provided inside the bottleneck 28. The sealing ring 30 has a through channel, and a hanging ring 31 is provided on the inner wall of the sealing ring 30. An annular hanging ring 32 is provided at the top of the diversion pipe 25. The minimum inner diameter of the through channel is greater than the maximum diameter of the hanging ring 32, and the diameter of the perforation at the hanging ring 31 is smaller than the diameter of the hanging ring 32. It can be understood that because the minimum inner diameter of the through channel is greater than the maximum diameter of the hanging ring 32, and the diameter of the perforation at the hanging ring 31 is smaller than the diameter of the hanging ring 32, when the bottle is placed upright, the hanging ring 32 of the diversion pipe 25 is hung on the hanging ring 31; as... Figure 8 As shown, when pouring wine, the bottle needs to be inverted or tilted so that the bottle mouth is facing down. At this time, the hanging ring 32 of the diverter tube 25 can disengage from the hanging ring 31 and the diverter tube 25 slides along the through channel until the diverter tube 25 completely avoids the bottle mouth, making room for the liquid to flow out. After pouring the wine, the bottle is placed upright, and the hanging ring 32 of the diverter tube 25 falls back onto the hanging ring 31.
[0034] The present invention and its embodiments have been described above illustratively. This description is not restrictive, and the figures shown are only one embodiment of the present invention; the actual structure is not limited thereto. Therefore, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A bottle cap device capable of storing and releasing liquid, characterized in that, include: The base mechanism includes a mounting sleeve, the mounting sleeve including a mounting pipe section and a first externally threaded pipe section disposed on the mounting pipe section, the top of the first threaded section being provided with a sealing ring, and the mounting sleeve having a first channel penetrating through itself; A storage mechanism includes a connecting sleeve and a driving sleeve fitted onto the connecting sleeve. The top of the driving sleeve is detachably equipped with a cover plate assembly. The inner wall of the connecting sleeve has a first internally threaded pipe section adapted to a first externally threaded pipe section. The connecting sleeve has a second channel penetrating through itself, and the driving sleeve has a third channel penetrating through itself. The axes of the first, second, and third channels are on the same straight line. The top of the connecting sleeve has a second externally threaded pipe section, and the inner wall of the driving sleeve has a second internally threaded pipe section adapted to the second externally threaded pipe section. A sealing plate is provided horizontally within the second channel, and a perforation is provided at the edge of the sealing plate. A base liquid bottle is fixedly installed within the third channel. The base liquid bottle has a cavity for containing base liquid, and an opening communicating with the cavity is provided at the bottom of the base liquid bottle. The base liquid bottle has a closed state in contact with the sealing plate and an open state detached from the sealing plate. The driving sleeve drives the base liquid bottle to switch between the closed and open states.
2. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, The outer side wall of the base liquid bottle is provided with an annular flange at its upper edge, and the third channel is provided with a locking ring that matches the flange.
3. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, The top of the connecting sleeve is provided with a first limiting ring in the horizontal direction, and the inner side wall of the driving sleeve is provided with a second limiting ring in the horizontal direction. When the base liquid bottle is in a closed state, the first limiting ring is located above the second limiting ring.
4. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, The cover plate assembly includes a cover plate and a mounting ring.
5. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, The base liquid bottle includes a cylindrical section and a frustum section that are connected to each other. The frustum section gradually narrows from top to bottom. The top of the cylindrical section is provided with a sealing top plate, and the opening is located on the bottom surface of the frustum section.
6. A bottle cap device capable of storing and releasing liquid according to claim 5, characterized in that, The sealing plate has a plug in the middle that is adapted to the opening.
7. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, It also includes a flow divider plate located in the first channel, wherein a first flow divider hole is provided in the middle of the flow divider plate, and a plurality of second flow divider holes are provided at intervals along the edge of the flow divider plate.
8. A bottle cap device capable of storing and releasing liquid according to claim 7, characterized in that, A diversion tube is provided directly below the diversion plate. The diversion tube is conical, and its upper end is connected to the first channel. A through hole for balancing air pressure is provided on the side wall of the diversion tube.
9. A bottle cap device capable of storing and releasing liquid according to claim 1, characterized in that, The outer circumferential surfaces of the mounting housing, connecting housing, and driving housing are on the same cylindrical surface.
10. A bottle, characterized in that, The bottle includes a bottle body and a bottle neck. The bottle body is made of a transparent material and contains a dispensing medium. A bottle cap device is detachably provided at the bottle neck. The bottle cap device is the bottle cap device according to any one of claims 1 to 9. A sealing ring is provided inside the bottle neck. The sealing ring has a through channel. A hanging ring is provided on the inner wall of the sealing ring. An annular hanging plate is provided at the top of the diverter. The minimum inner diameter of the through channel is greater than the maximum diameter of the hanging plate. The diameter of the perforation at the hanging ring is smaller than the diameter of the hanging plate.