Controllable type instant blending bottle cap, packaging container comprising controllable type instant blending bottle cap and wine beverage comprising controllable type instant blending bottle cap
By designing a controllable instant mixing cap, and utilizing a flexible tube and silicone valve to achieve instant mixing and precise control of liquids, the problem of traditional alcoholic beverages being unable to meet different taste and aroma requirements has been solved, realizing a home-based and portable bartending experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional alcoholic beverages cannot meet different taste preferences, have fixed aromas, are inconvenient to use, and involve complicated mixing processes, lacking the space for independent mixing.
Design a controllable instant mixing cap, including a bottle mouth connector, a first container, an inner pressure cap and an outer cap. Utilize a cavity made of flexible compressible material and a silicone valve to achieve instant mixing and precise control of the liquid, and combine it with scale lines and a squeeze rod to achieve precise adjustment of the mixing ratio.
It achieves precise control of alcohol content and mixing ratio, simplifies the bartending process, meets different mixing needs, breaks through the limitations of traditional alcoholic beverage experiences, and realizes the home-based and portable application of bar-level bartending.
Smart Images

Figure CN224076115U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beverage packaging technology, and in particular to a controllable instant mixing bottle cap and a packaging container and alcoholic beverages including the cap. Background Technology
[0002] Traditional alcoholic beverages are generally sold directly with fixed alcohol concentration and fixed aroma. This method has the following limitations: (1) Fixed taste: The finished alcoholic beverages are determined at the factory and cannot meet different taste requirements; (2) Single product: The aroma of alcoholic beverages is fixed and consumers lack the space to mix and match on their own; (3) Rigid drinking method: On-site mixing requires professional equipment and is inconvenient to carry when going out.
[0003] Currently, there are pre-mixed cocktails on the market. These products are made by mixing base spirits and ingredients in advance, and the proportions cannot be adjusted, resulting in a fixed flavor when used. There are also separate cocktail containers on the market that come with individual mixing containers, but these require manual measurement, making them complicated and inconvenient to use.
[0004] Therefore, it is evident that the existing beverage packaging equipment still has inconveniences and defects in terms of structure, method, and use, and urgently needs further improvement. How to create a new controllable, instant-mixing bottle cap and its associated packaging container and alcoholic beverages, capable of not only instantly mixing the concentration of liquids but also precisely controlling the mixing ratio to meet different mixing needs, simplify the mixing process, and be easy to operate and control, has become a pressing goal for the industry. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a controllable instant mixing cap that can not only instantly adjust the concentration of mixed liquids, but also precisely control the mixing ratio to meet different mixing needs, simplify the mixing process, and is simple, convenient and easy to control, thereby overcoming the shortcomings of existing packaging equipment.
[0006] To solve the above-mentioned technical problems, this utility model provides a controllable instant dispensing bottle cap, including a bottle mouth connector, a first container, an inner pressure cap, and an outer cap. The bottle mouth connector adopts an open-ended cylindrical structure. The lower part of the cylindrical structure is used for sealing connection with the main bottle. The middle part of the cylindrical structure is provided with a support part with a central through hole. The upper part of the cylindrical structure and the inner pressure cap form a hollow cavity for accommodating the first container. The first container includes a tube made of flexible compressible material and a silicone valve disposed at the bottom of the tube. The inside of the tube is used to fill a first liquid to be dispensed. The central valve port of the silicone valve is directly opposite the central through hole of the support part. The silicone valve is used to prevent the first liquid from flowing out under normal conditions.
[0007] The lower part of the outer circumferential wall of the outer cover is fitted onto the upper part of the bottle mouth connector, and the inner part of the outer cover is also provided with a squeezing rod extending into the hollow cavity. The bottom end of the squeezing rod is provided with a squeezing plate corresponding to the top of the first container. The top of the inner pressure cap is provided with a clearance hole for the squeezing rod to pass through. When the outer cover moves downward under the action of external force, it drives the squeezing plate to press down on the cavity of the first container. The cavity is compressed, causing the first liquid to flow out from the central valve port of the silicone valve and flow into the main bottle body along the central through hole of the support.
[0008] As a further improvement, the outer peripheral sidewall of the bottle neck connector is provided with graduation lines for controlling the concentration of the mixture.
[0009] In a further improvement, the bottom of the cavity of the first container is provided with a tapered opening, the silicone valve is located at the tapered opening, and the upper end of the central through hole of the support is provided with an inverted tapered countersunk hole structure that matches the tapered opening.
[0010] As a further improvement, the bottom of the inner pressure cap is configured as a stepped structure that fits into the inner side of the upper part of the bottle mouth connector.
[0011] In a further improvement, the lower part of the outer cover is connected to the upper outer side of the bottle mouth connector by a thread.
[0012] As a further improvement, a limiting pull ring is also provided at the bottom of the outer cover.
[0013] In a further improvement, the lower inner side of the outer cover is provided with a locking protrusion, and the upper outer side of the bottle mouth connector is provided with multiple rows of locking grooves. The locking protrusion can be sequentially locked and connected with the locking grooves to realize the movement of the outer cover relative to the bottle mouth connector at different positions.
[0014] As a further improvement, a limiting pull ring is also provided at the bottom of the outer cover.
[0015] As another improvement of this utility model, this utility model also discloses a packaging container, including a main bottle body and the above-mentioned controllable instant dispensing cap, wherein the lower part of the bottle mouth connector in the controllable instant dispensing cap is sealed to the bottle mouth of the main bottle body, and the main bottle body is used to fill the second liquid to be dispensed.
[0016] As another improvement of this utility model, this utility model also discloses an alcoholic beverage using the above-mentioned packaging container, wherein the first liquid in the first container is a high-proof liquor, and the second liquid in the second container is a low-proof liquor, beverage, or water.
[0017] With this design, the present invention has at least the following advantages:
[0018] 1. The controllable instant mixing bottle cap of this utility model uses a first container made of flexible and compressible material and a silicone valve set at the bottom of the first container to achieve separate storage of the first liquid and to squeeze out the required amount when needed, so as to achieve instant mixing and precise control of the mixing of two liquids and meet the self-mixing needs.
[0019] 2. The addition of graduated markings makes it easier to accurately control the concentration of the solution, simplifying operation. Furthermore, the knob or push-button design on the outer cap allows for easy movement of the cap, which acts as a connector to the bottle neck, further meeting the need for precise control of the mixing ratio.
[0020] 3. The alcoholic beverages packaged in this utility model can control the release of high-proof alcohol through a controllable, real-time dispensing cap. This allows for mixing high-proof alcohol with low-proof alcohol or beverages of different flavors in different proportions, achieving the purpose of on-demand mixing. This not only breaks through the limitations of traditional alcoholic beverage experiences but also overcomes the limitation of the inability to adjust the mixing ratio, enabling free innovation in taste and flavor combinations, meeting the different needs of different consumers, and opening up a new mode of drinking. Attached Figure Description
[0021] The above is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model, the following describes this utility model in further detail with reference to the accompanying drawings and specific embodiments.
[0022] Figure 1 This is a schematic diagram of the structure of the packaging container of this utility model.
[0023] Figure 2 This is a schematic diagram of the structure of the controllable instant dispensing bottle cap of this utility model.
[0024] Figure 3 This is a schematic diagram of the scale lines on the outer periphery of the bottle mouth connecting body in the controllable instant dispensing bottle cap of this utility model. Detailed Implementation
[0025] Exemplary embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present invention and to fully convey the scope of the present invention to those skilled in the art.
[0026] This utility model relates to a packaging container for alcoholic beverages, using the packaging of alcoholic products as an example, creating a beverage that can be prepared instantly and whose alcohol content can be precisely controlled. Specific embodiments are as follows:
[0027] See attached document Figures 1 to 3As shown, the packaging container in this embodiment includes a main bottle body 1 and a controllable instant-mixing cap 2. The main bottle body 1 is used to fill a second liquid to be mixed, such as low-alcohol beverages, drinks, or water (0-20 degrees). The controllable instant-mixing cap 2 is used to package a first liquid to be mixed, such as high-alcohol beverages (30-60 degrees).
[0028] For details, see attached. Figure 2 As shown, the controllable instant dispensing cap 2 includes a bottle neck connector 21, a first container 22, an inner pressure cap 23, and an outer cap 24. The bottle neck connector 21 adopts an open-ended cylindrical structure. The lower part of the cylindrical structure is used for a sealed connection with the main bottle 1. The middle part of the cylindrical structure has a support portion 211 with a central through hole 212. The upper part of the cylindrical structure and the inner pressure cap 23 form a hollow cavity 25 for accommodating the first container 22. The first container 22 includes a tube 221 made of a flexible compressible material and a silicone valve 222 disposed at the bottom end of the tube 221. The tube 221 is used to fill with the first liquid to be dispensed. The central valve port of the silicone valve 222 is directly opposite the central through hole 212 of the support portion 211. The silicone valve 222 is used to prevent the first liquid from flowing out under normal conditions; that is, the first liquid will only flow out when the tube 221 is compressed. When not compressed, the first liquid will not flow out, and it also prevents the backflow of liquid in the main bottle 1.
[0029] The lower part of the outer circumferential wall of the outer cover 24 is fitted onto the upper part of the bottle mouth connector 21, and the inner part of the outer cover 24 is also provided with a squeezing rod 241 extending into the hollow cavity 25. The bottom end of the squeezing rod 241 is provided with a squeezing disc 242 corresponding to the top end of the first container 22, and the top of the inner pressure cap 23 is provided with a clearance hole for the squeezing rod 241 to pass through. When the outer cover 24 moves downward under the action of external force, it drives the squeezing disc 242 to press down on the cavity 221 of the first container 22. The cavity 221 is compressed, causing the first liquid to flow out from the central valve port of the silicone valve 222 and flow into the main bottle 1 along the central through hole 212 of the support part 211, forming a mixture of the two liquids.
[0030] In a preferred embodiment, the outer peripheral sidewall of the bottle neck connector 21 is provided with graduation lines for controlling the concentration of the dispensing solution, as shown in the attached figure. Figure 3As shown. This scale is calculated based on the alcohol concentration and release volume of the first liquid and the concentration and volume of the second liquid. It directly displays the scale corresponding to the release height of the first liquid and the final alcohol concentration. That is, the alcohol concentration of the pre-mixed beverage is displayed by aligning the lower edge of the outer cap 24 with the scale. In use, the position of the lower edge of the outer cap 24 corresponding to the scale indicates the alcohol concentration value of the beverage obtained after mixing the two liquids. Thus, by controlling the downward position of the outer cap 24, the release amount of the first liquid can be controlled, and the desired mixing concentration can be obtained.
[0031] Please refer to the appendix. Figure 2 As shown, in this embodiment, the bottom of the cavity of the first container 22 is provided with a tapered opening, the silicone valve 222 is located at the tapered opening, and the upper end of the central through hole 212 of the support part 211 is provided with an inverted conical countersunk hole structure that matches the tapered opening. This structure can form a tight connection between the first container 22 and the support part 211, ensuring that the first liquid, after being squeezed out, can only flow down from the central through hole 212 and will not overflow from the cap.
[0032] Furthermore, the bottom of the inner pressure cap 23 is configured as a stepped structure that fits into the upper inner side of the bottle mouth connector 21, ensuring the volume of the hollow cavity 25 and preventing the first container 22 from being squeezed and failing during transportation.
[0033] More specifically, in this embodiment, the lower part of the outer cap 24 is connected to the upper outer side of the bottle neck connector 21 by a thread. This allows the outer cap 24 to move slowly downwards under external torque, ensuring precise control of the extrusion volume of the first liquid and facilitating concentration control.
[0034] Of course, the lower part of the outer cover 24 and the upper part of the bottle mouth connector 21 can also be connected by a snap-fit structure. For example, the lower inner side of the outer cover 24 is provided with a snap-fit protrusion, and the upper outer side of the bottle mouth connector 21 is provided with multiple rows of snap-fit grooves. The snap-fit protrusion can be sequentially snapped into the snap-fit grooves to realize the movement of the outer cover 24 relative to the bottle mouth connector 21 at different positions, and the control of different liquid extrusion volumes can also be realized.
[0035] In this embodiment, a limiting pull ring can also be provided at the bottom of the outer cover 24 to ensure that the outer cover 24 is not moved before the packaging container is opened.
[0036] This utility model utilizes the aforementioned packaging equipment to package alcoholic beverages, breaking through the limitations of traditional alcoholic beverage experiences. Through controllable, real-time dispensing caps, it controls the release of high-proof alcohol, enabling the mixing of high-proof alcohol with low-proof alcohol or beverages of different flavors in varying proportions. This allows for flexible dilution from high-proof base liquor to low-proof beverages, resulting in low-proof alcoholic beverages of different concentrations or flavors. This allows for free innovation in taste and flavor combinations, satisfying the diverse needs of different consumers.
[0037] This invention, through an improved controllable instant mixing cap, enables instant cocktail mixing in just 5 seconds. This allows bar-grade mixing technology to enter various consumption scenarios, including everyday dining, outdoor leisure, and home use, thus reshaping the beverage market and promoting the industrialization of ready-to-drink cocktails. Furthermore, the invention utilizes physically separated containers to store perishable liquid components separately, isolating them from alcohol and extending shelf life. This storage method can increase the retention rate of effective ingredients in beverages by 40%.
[0038] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Any simple modifications, equivalent changes or alterations made by those skilled in the art using the above-disclosed technical content shall fall within the protection scope of the present utility model.
Claims
1. A controllable instant dispensing bottle cap, characterized in that, The device includes a bottle neck connector, a first container, an inner pressure cap, and an outer cap. The bottle neck connector adopts an open-ended cylindrical structure. The lower part of the cylindrical structure is used for a sealed connection with the main bottle. The middle part of the cylindrical structure is provided with a support part with a central through hole. The upper part of the cylindrical structure and the inner pressure cap form a hollow cavity for accommodating the first container. The first container includes a tube made of a flexible compressible material and a silicone valve disposed at the bottom end of the tube. The inside of the tube is used to fill a first liquid to be prepared. The central valve port of the silicone valve is directly opposite the central through hole of the support part. The silicone valve is used to prevent the first liquid from flowing out under normal conditions. The lower part of the outer circumferential wall of the outer cover is fitted onto the upper part of the bottle mouth connector, and the inner part of the outer cover is also provided with a squeezing rod extending into the hollow cavity. The bottom end of the squeezing rod is provided with a squeezing plate corresponding to the top of the first container. The top of the inner pressure cap is provided with a clearance hole for the squeezing rod to pass through. When the outer cover moves downward under the action of external force, it drives the squeezing plate to press down on the cavity of the first container. The cavity is compressed, causing the first liquid to flow out from the central valve port of the silicone valve and flow into the main bottle body along the central through hole of the support.
2. The controllable instant dispensing bottle cap according to claim 1, characterized in that, The outer peripheral sidewall of the bottle neck connector is provided with graduation lines for controlling the concentration.
3. The controllable instant dispensing bottle cap according to claim 1, characterized in that, The bottom of the first container's cavity is provided with a tapered opening, the silicone valve is located at the tapered opening, and the upper end of the central through hole of the support part is provided with an inverted tapered countersunk hole structure that matches the tapered opening.
4. The controllable instant dispensing bottle cap according to claim 1, characterized in that, The bottom of the inner pressure cap is configured as a stepped structure that fits into the inner upper part of the bottle mouth connector.
5. The controllable instant dispensing bottle cap according to any one of claims 1 to 4, characterized in that, The lower part of the outer cover is connected to the upper outer side of the bottle mouth connector by a thread.
6. The controllable instant dispensing bottle cap according to claim 5, characterized in that, The bottom of the outer cover is also provided with a limiting pull ring.
7. The controllable instant dispensing bottle cap according to any one of claims 1 to 4, characterized in that, The lower inner side of the outer cover is provided with a locking protrusion, and the upper outer side of the bottle mouth connector is provided with multiple rows of locking grooves. The locking protrusion can be sequentially locked and connected with the locking grooves to realize the movement of the outer cover relative to the bottle mouth connector at different positions.
8. The controllable instant dispensing bottle cap according to claim 7, characterized in that, The bottom of the outer cover is also provided with a limiting pull ring.
9. A packaging container, characterized in that, The device includes a main bottle and a controllable instant dispensing cap as described in any one of claims 1 to 8, wherein the lower part of the bottle mouth connector in the controllable instant dispensing cap is sealed to the bottle mouth of the main bottle, and the main bottle is used to fill a second liquid to be dispensed.
10. An alcoholic beverage, characterized in that, Using the packaging container of claim 9, the first liquid filled in the first container is a high-proof liquor, and the second liquid filled in the second container is a low-proof liquor, beverage, or water.