Bottle cap assembly with storage structure and bottled beverage
Patent Information
- Application Number
- CN202521881667.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-01
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-01
AI Technical Summary
[0002]现有瓶装饮品一般都是调制好的成品,而随着市场的需求,一些特制的饮品,采用分离式的溶剂,使用者在饮用前先混合,即可保持独特的饮品风味,因此,此种饮品,设计出具有储料腔的瓶盖组件,在饮用前,通过开启储料腔,以方便储料腔内的溶剂能够进入到瓶体内的液体进行混合,而目前大多存储的饮品溶剂是液态的,其采用在储料腔内设置可移动的刺穿件,通过刺破储料腔的下端使饮品溶剂流出,但这种结构不适合用于固态粉末的饮品剂,由于固态饮品剂会阻碍刺穿件的移动,导致结构失效
1、本实用新型提供了一种具有储料结构的瓶盖组件,采用可移动式的储料仓以及设置在安装座内的刺穿部,使得饮品剂能够独立存储在储料仓内部,当储料仓下移至封口件被刺穿部刺破后,内部的饮品剂即可被释放,而且不受固体饮品剂的限制,使其适用度更高,而且在安装座周壁上设置镂空部,使得饮用时防止饮料残留在安装座内,以及使饮料能从安装座内回流至瓶中,从而实现倒水时不会发生涌水现象,倒水更为顺畅,可实现倒出瓶内的水不会产生残留。
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Figure CN224645556U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beverage containers, and in particular to a bottle cap assembly with a storage structure and a bottled beverage. Background Technology
[0002] Most bottled beverages are pre-mixed products. However, with market demand, some specialty beverages use separate solvents, requiring users to mix them before drinking to maintain their unique flavor. Therefore, these beverages are designed with caps containing a storage chamber. Before drinking, the storage chamber is opened to allow the solvent inside to enter and mix with the liquid in the bottle. Currently, most stored beverage solvents are liquid, and these solutions use a movable piercing element within the storage chamber to puncture the lower end and allow the solvent to flow out. However, this structure is unsuitable for solid powder beverages, as the solid powder would obstruct the movement of the piercing element, causing the structure to fail. Summary of the Invention
[0003] The purpose of this invention is to provide a bottle cap assembly with a storage structure, which improves the structure of the puncture part to ensure that the beverage in the storage compartment can be released, and is applicable to the use of solid beverages.
[0004] To achieve the above objectives, the present invention adopts the following solution: A bottle cap assembly with a material storage structure includes a mounting base, a cap body, and a material storage bin; The mounting base has a mounting cavity, the storage bin is located in the mounting cavity, the storage bin has a receiving cavity, the lower end of the storage bin is a sealing element, the lower end of the mounting cavity is also provided with a piercing part opposite to the sealing element, and the peripheral wall of the mounting cavity is also provided with a number of hollow parts that penetrate to the outer periphery of the mounting base. The cover is connected to the storage bin and installed on the upper side of the mounting base. By rotating the cover, the storage bin can be moved downwards and the piercing part can pierce the sealing member.
[0005] As described above, in a bottle cap assembly with a material storage structure, the hollow portion is a notch extending longitudinally to the lower end, and the outer periphery of the mounting base is provided with a plurality of the hollow portions, which are evenly distributed at intervals along the outer periphery.
[0006] As described above, a bottle cap assembly with a storage structure is provided on the outer periphery of the storage compartment, and the positioning part extends into the hollow part to restrict the storage compartment from detaching from the mounting base.
[0007] As described above, in a bottle cap assembly with a storage structure, the sealing element is a diaphragm integrally formed with the storage hopper.
[0008] As described above, a bottle cap assembly with a material storage structure has several pre-creases along its own circumference on the sealing element.
[0009] As described above, in a bottle cap assembly with a material storage structure, the lower end of the mounting base is a connecting part, the piercing part is provided on the connecting part and extends upward, and a material outlet is provided on the connecting part.
[0010] As described above, in a bottle cap assembly with a material storage structure, the piercing portion is cylindrical, with its upper end face inclined upward and having a pointed shape, and the middle of the piercing portion is a material discharge channel penetrating its upper and lower ends.
[0011] As described above, a bottle cap assembly with a storage structure is provided at the upper end of the storage compartment for sealing the accommodating cavity.
[0012] As described above, a bottle cap assembly with a storage structure has a first limiting part on the outer periphery of the storage compartment, and a first mounting part on the cap body that cooperates with the first limiting part.
[0013] This utility model also provides a bottled beverage, including a bottle body, on which the above-mentioned bottle cap assembly with a storage structure is installed, and the storage compartment contains a solid beverage medium.
[0014] In summary, the advantages of this utility model over the prior art are: 1. This utility model provides a bottle cap assembly with a storage structure, which adopts a movable storage bin and a piercing part set in the mounting base, so that the beverage can be stored independently in the storage bin. When the storage bin moves down to the point where the sealing part is pierced by the piercing part, the beverage inside can be released. Moreover, it is not limited to solid beverages, making it more applicable. In addition, a hollow part is set on the periphery of the mounting base to prevent beverage residue in the mounting base when drinking, and to allow the beverage to flow back from the mounting base into the bottle. This prevents water from gushing when pouring water, making the pouring smoother and ensuring that no water residue is left after pouring out of the bottle.
[0015] 2. The present invention provides a bottle cap assembly with a material storage structure, which consists of three components: a mounting base, a cap body, and a material storage bin. The material storage bin is used as an accessory for independently storing beverage agents before installation, which is convenient for production. The beverage agents can be placed separately and then installed on the bottle cap and assembled with the mounting base.
[0016] 3. This utility model provides a bottle cap assembly with a material storage structure, which adds a sealing part with creases or folds. After the sealing part is punctured, the opening can be increased, allowing the powder inside to fall out more quickly. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of a bottle cap assembly with a material storage structure according to the present invention. Figure 1 ; Figure 2 This is a schematic diagram of a bottle cap assembly with a material storage structure according to the present invention. Figure 2 ; Figure 3 for Figure 1 Exploded view; Figure 4 This is an exploded view of the storage silo. Figure 5 This is a diagram showing the internal structure of the bottle cap assembly; Figure 6 This is a schematic diagram of the bottle cap assembly before it is punctured. Figure 7 for Figure 6 Enlarged view of part A; Figure 8 This is a schematic diagram of the bottle cap assembly after it has been punctured. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] like Figures 1 to 8 As shown, this utility model provides a bottle cap assembly with a storage structure, including a mounting base 1, a cap body 2, and a storage bin 3; it consists of three components: a mounting base, a cap body, and a storage bin, which facilitates assembly and use.
[0021] In this design, the mounting base 1 has a mounting cavity 101, and the storage bin 3 is located within the mounting cavity 101. The storage bin 3 has a receiving cavity 301, and its lower end is a sealing element 31. The lower end of the mounting cavity 101 also has a piercing part 11 opposite to the sealing element 31. The cover 2 is connected to the storage bin 3 and installed on the upper side of the mounting base 1. By rotating the cover 2, the storage bin 3 can move downwards, causing the piercing part 11 to pierce the sealing element 31. This design uses a movable storage bin and a piercing part located within the mounting base. The lower-positioned piercing part allows the beverage to be stored independently inside the storage bin. When the storage bin moves downwards until the sealing element is pierced by the piercing part, the beverage inside can be released. That is, the storage location of the beverage is separated from the path of movement of the storage bin, thus it is not limited by solid beverages, making it more versatile.
[0022] As an optimization, the peripheral wall of the mounting cavity 101 in this solution is also provided with several hollowed-out portions 102 that extend to the outer periphery of the mounting base 1. Since the liquid inside the bottle flows out from the mounting cavity 101 to the bottle mouth for the drinker to drink when drinking, the hollowed-out portions on the peripheral wall of the mounting base in this solution prevent beverage residue from remaining in the mounting base when drinking and allow the beverage to flow back from the mounting base into the bottle. This prevents water from gushing out when pouring water, makes pouring water smoother, and ensures that no water residue is left after pouring out of the bottle.
[0023] Specifically, the hollow portion 102 in this solution is a notch extending longitudinally to the lower end. The mounting base 1 has several hollow portions 102 on its outer periphery, and these hollow portions 102 are evenly distributed at intervals along the outer periphery. This reasonable layout design effectively achieves the aforementioned effect of preventing beverage residue.
[0024] Furthermore, to facilitate use by the user after the storage bin 3 is punctured, a corresponding limiting component can be installed between the storage bin 3 and the mounting cavity 101. This ensures that the storage bin 3 remains within the mounting base 1 after being punctured, preventing it from moving due to the user's posture and thus preventing it from falling off when pouring or shaking. Specifically, the storage bin 3 also has an outwardly extending positioning part 33 on its outer periphery. The positioning part 33 extends into the hollow part 102 to prevent the storage bin 3 from detaching from the mounting base 1. Further utilizing the hollow part 102, after installation, the positioning part 33 extends into the hollow part 102 and moves along the longitudinally opened hollow part 102 unaffected during downward movement. When inverted, the upper outer wall of the hollow part 102 restricts the positioning part 33, thus preventing the storage bin 3 from detaching from the mounting base 1.
[0025] In this design, the lower-positioned piercing part 11 is positioned in the middle of the lower discharge port. Therefore, the lower end of the mounting base 1 is the connecting part 12, and the piercing part 11 is located on the connecting part 12 and extends upward to facilitate the piercing part 11 to pierce the sealing member 31 at the lower end of the storage bin 3, thereby releasing the beverage agent in the accommodating cavity 301 out of the storage bin 3.
[0026] In this embodiment of the invention, the upper end of the storage bin 3 is also provided with a cap 32 for sealing the accommodating cavity 301. After the storage bin 3 is filled with beverage agents, especially solid powder beverage agents, it is sealed by adding the cap 32 to form a separate storage bin 3 accessory. Before installation, it serves as an accessory for independently storing beverage agents, which is convenient for production. Beverage agents can be placed separately and then installed on the bottle cap and assembled with the mounting base.
[0027] This solution uses the storage bin 3 as a separate accessory to store beverage agents. In order to ensure the storage of beverage agents, the sealing requirements must also be guaranteed. This solution can set multiple sealing structures at the connection between the cap 32 and the storage bin 3 to ensure a dry internal environment.
[0028] Preferably, this solution can provide a first sealing ring 39 protruding outward along the outer periphery of the storage bin 3, and correspondingly, a second sealing ring 329 corresponding to the first sealing ring 39 is provided on the inner side of the cover 32, forming two seals. In addition, to further ensure the sealing effect, an inner extension 321 extending into the accommodating cavity 301 is provided inside the cover 32. The inner extension 321 has a third sealing ring 328 that abuts against the inner wall of the accommodating cavity 301, thereby forming three seals. This can achieve long-term sealing without leakage, maintain high-performance weather resistance, and adapt to temperature changes. This solution can achieve extreme refrigeration from -18 degrees to +50 degrees, keeping the inside of the accommodating cavity 301 dry.
[0029] In addition, this solution uses the first sealing ring 39 and the second sealing ring 329 to interlock, thus forming an effective sealing connection without welding, thereby achieving the corresponding drying requirements. It has a particularly good sealing effect on highly absorbent powders such as tea powder, milk powder, coffee powder and other powdered beverages.
[0030] The outer side of the storage hopper 3 is the installation cavity 101. When the beverage agent is released into the installation cavity 101, it needs to be further released outside the installation cavity 101 to mix with the liquid in the bottle.
[0031] In an optional embodiment of this solution, a discharge port is provided on the connecting part 12. When the beverage is released into the mounting cavity 101, it falls naturally through the discharge port.
[0032] An optional embodiment of this solution is as follows: the piercing part 11 is cylindrical, with its upper end face inclined upward and having a pointed shape, and the middle part of the piercing part 11 is a discharge channel that runs through its upper and lower ends. After piercing, the piercing part 11 forms a discharge channel that inserts into the receiving cavity 301 and exits to the outside of the mounting cavity 101, thereby releasing the beverage along the discharge channel.
[0033] Furthermore, the piercing part 11 described in this solution is integrally formed on the connecting part 12, which has a simple structure and requires no additional accessories. The structure extending from the tip to the bevel achieves greater strength and easier piercing force. Of course, more preferably, this solution can also be combined with Embodiment 1 and Embodiment 2, that is, the puncture part 11 is provided with a discharge channel and the connection part 12 is provided with a discharge port, so as to ensure that the beverage agent can be released after the sealing part 31 at the lower end of the storage bin 3 is punctured.
[0034] In this design, for ease of use, the sealing element 31 is a diaphragm integrally formed with the storage hopper 3. As the storage hopper 3 moves downwards, the diaphragm contacts the puncture portion 11, is broken open, and folds upwards and inwards to ensure it can open fully and not obstruct the flow of beverage agents or powders inside the storage hopper 3. Furthermore, the sealing element 31 has several pre-folds 310 along its circumference. These pre-folds 310 allow for a larger opening after opening, facilitating the better flow of material into the receiving cavity 101. Moreover, the diaphragm prevents the generation of foreign objects after opening, making this improvement more suitable for large-capacity storage hoppers 3.
[0035] Furthermore, the diameter of the piercing portion 11 is smaller than that of the sealing member 31, and after the piercing portion 11 is inserted into the receiving cavity 301, a gap remains between the outer periphery of the piercing portion 11 and the peripheral wall of the receiving cavity 301. The sealing member 31 is a membrane with tensile elasticity. After being pierced, it can quickly shrink towards the edge, and most of it enters the gap left between the piercing portion 11 and the receiving cavity 301, which is equivalent to filling the gap. This fixes the storage bin 3 in the pierced position and prevents it from moving due to the user's posture.
[0036] Before use, this solution connects the storage bin 3 to the cover 2 and is also connected to the mounting base 1. When the cover 2 is rotated, the storage bin 3 is first forced to move down. After it is punctured, the cover 2 continues to rotate, allowing the cover 2 to detach from the mounting base 1 and the storage bin 3 to detach from the cover 2, so that it can be opened like an ordinary beverage bottle and consumed immediately.
[0037] The storage bin 3 described in this solution has a first limiting part 311 on its outer periphery, and the cover 2 has a first mounting part 21 that cooperates with the first limiting part 311. Specifically, the cover 2 also has a second mounting part 22 located outside the first mounting part 21, and the upper outer periphery of the mounting base 1 has an upper mating part 18 that cooperates with the second mounting part 22. The outer periphery of the mounting base 1 also has a lower mating part 19 for connecting with the bottle mouth. Of course, there are various matching structures that drive the storage bin 3 to move. For example, this solution uses a threaded fit between the first mounting part 21 and the first limiting part 311. The positioning part 33 also has another function: to restrict the rotation of the storage bin 3 within the mounting base 1. In this way, when the cover 2 rotates, the first mounting part 21 and the first limiting part 311 cooperate to force the storage bin 3 to move downward, thereby achieving the piercing effect.
[0038] Specifically, the positioning part 33 of this solution includes a plurality of positioning claws located on the outer periphery of the storage bin 3 and extending outward, which also extend into the hollow part 102. In this way, when the positioning claws abut against the corresponding side walls of the hollow part 102, the positioning claws can be restricted from continuing to rotate, thereby preventing the storage bin 3 from rotating within the mounting cavity 101. When the cover continues to rotate, it forces the storage bin 3 to move.
[0039] This utility model also provides a bottled beverage, including a bottle body, on which a bottle cap assembly with a storage structure as described above is installed, and the storage compartment 3 contains a solid beverage medium.
[0040] This utility model provides a beverage bottle cap assembly, which consists of three components: a mounting base, a cap body, and a storage compartment. It adopts a movable storage compartment and a piercing part set in the mounting base, so that the beverage can be stored independently inside the storage compartment. When the storage compartment moves down to the point where the sealing part is pierced, the beverage inside can be released. Moreover, it is not limited to solid beverages, making it more versatile.
[0041] This utility model provides a bottle cap assembly with a storage structure, which adopts a movable storage bin and a piercing part set in the mounting base, so that the beverage can be stored independently inside the storage bin. When the storage bin moves down until the sealing part is pierced by the piercing part, the beverage inside can be released, and it is not limited to solid beverages, making it more applicable. In addition, a hollow part is set on the periphery of the mounting base to prevent beverage residue in the mounting base when drinking, and to allow the beverage to flow back from the mounting base into the bottle.
[0042] The foregoing has shown and described the basic principles and main features of this utility model, as well as its advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A bottle cap assembly having a storage structure, characterized by, Includes mounting base (1), cover (2) and storage bin (3); The mounting base (1) is provided with a mounting cavity (101), the storage bin (3) is located in the mounting cavity (101), the storage bin (3) is provided with a receiving cavity (301), the lower end of the storage bin (3) is a sealing member (31), the lower end of the mounting cavity (101) is also provided with a piercing part (11) opposite to the sealing member (31), and the peripheral wall of the mounting cavity (101) is also provided with a number of hollow parts (102) that penetrate to the outer periphery of the mounting base (1). The cover (2) is connected to the storage bin (3) and installed on the upper side of the mounting base (1). By rotating the cover (2), the storage bin (3) can be moved downward and the piercing part (11) can pierce the sealing member (31).
2. A bottle cap assembly having a storage structure according to claim 1, wherein The hollow part (102) is a notch extending longitudinally to the lower end. The outer periphery of the mounting base (1) is provided with a plurality of hollow parts (102), and the plurality of hollow parts (102) are evenly distributed at intervals along the outer periphery.
3. A bottle cap assembly having a storage structure according to claim 2, wherein, The storage bin (3) is also provided with an outwardly extending positioning part (33) on its outer periphery. The positioning part (33) extends into the hollow part (102) to restrict the storage bin (3) from detaching from the mounting base (1).
4. A bottle cap assembly having a storage structure according to claim 3, wherein The sealing component (31) is a diaphragm integrally formed with the storage bin (3).
5. A bottle cap assembly having a storage structure according to claim 4, wherein, The sealing element (31) has several pre-creases (310) along its own circumference.
6. The bottle cap assembly with a storage structure according to claim 2, wherein, The lower end of the mounting base (1) is a connecting part (12), the piercing part (11) is provided on the connecting part (12) and extends upward, and the connecting part (12) is provided with a discharge port.
7. The bottle cap assembly with a storage structure according to claim 1 or 6, wherein The piercing part (11) is cylindrical, with its upper end face inclined upward and having a pointed shape. The middle part of the piercing part (11) is a discharge channel that runs through its upper and lower ends.
8. The bottle cap assembly with a storage structure according to claim 3, wherein, The upper end of the storage bin (3) is also provided with a cover (32) for sealing the accommodating cavity (301).
9. The bottle cap assembly with a storage structure according to claim 2, wherein, The storage bin (3) is provided with a first limiting part (311) on its outer periphery, and the cover (2) is provided with a first mounting part (21) that cooperates with the first limiting part (311).
10. A bottled beverage, characterized in that The container includes a bottle body, on which a bottle cap assembly with a storage structure as described in any one of claims 1-9 is installed at the bottle mouth, and the storage hopper (3) contains a solid beverage medium.