A multi-cavity packaging puncture device

By designing a multi-cavity packaging puncture device, the problem of single-cavity bottle caps being unable to meet the needs of multi-component mixing is solved, enabling simultaneous puncture and uniform mixing of multiple cavities, thus improving the convenience of use and mixing effect of ready-to-drink beverages.

CN224278214UActive Publication Date: 2026-05-26XINHUA PACKING MASCH FACTORY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XINHUA PACKING MASCH FACTORY
Filing Date
2025-06-30
Publication Date
2026-05-26

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Abstract

This utility model relates to a multi-cavity packaging puncture device, comprising a bottle body, a middle cover, a top cover, and a condiment separator cup. The condiment separator cup is inverted and detachably disposed in a first accommodating space, with its bottom contacting and fitting against the inner wall of the first accommodating space. The condiment separator cup has multiple condiment cavities, and its upper opening is sealed with a sealing film. The middle cover has a horizontally arranged support plate in its inner cavity, with multiple discharge holes on the support plate. The upper edge of each discharge hole has a puncture portion capable of puncturing the sealing film. The upper opening edge of the middle cover has an alignment groove that communicates with the inner cavity of the middle cover. The lower opening outer edge of the top cover has a first alignment block that matches the alignment groove, and the upper opening outer edge of the condiment separator cup has a second alignment block that matches the alignment groove. Both the first and second alignment blocks are located in the alignment groove, with the first alignment block positioned above the second alignment block.
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Description

Technical Field

[0001] This utility model relates to the field of packaging container technology, and in particular to a multi-cavity packaging puncture device. Background Technology

[0002] Instant beverages, free of preservatives, freshness-preserving agents, and other additives, retain their natural flavor, making them increasingly popular due to their fresh taste and healthy quality. Currently, most instant beverages on the market store ingredients and water separately by having a cavity inside the bottle cap to hold the ingredients. The bottom of this cavity is sealed with a perforated film. To drink, the film is broken using a puncture device, allowing the ingredients to automatically fall into the water; simply shake and it's ready to drink.

[0003] Currently, various packaging solutions exist on the market that achieve ingredient separation. For example, Chinese utility model patent CN213594964U discloses a detachable ready-to-drink beverage bottle cap. This design uses a rotating top cap to push a middle cap containing ingredients downwards, causing the sealing film at the bottom of the middle cap to be pierced by a fixed spike inside the bottom cap, thus releasing the ingredients into the bottle. This design, by incorporating an inverted structure to prevent springback after piercing, partially solves the problem of viscous liquids (such as honey) remaining after the opening closes. However, this type of detachable ready-to-drink beverage bottle cap still has significant limitations when dealing with more complex beverage preparation needs.

[0004] This type of split-type ready-to-drink beverage bottle cap contains only one ingredient storage chamber, allowing only a single component to mix with the base liquid in the bottle. For beverages that require the formulation of multiple ingredients with different properties or flavors, precisely mixing the different ingredients just before drinking is extremely cumbersome, and this single-chamber structure cannot meet their application requirements. Moreover, the upper cap pushes the middle cap down mainly through a threaded engagement to achieve rotation and pressure, lacking dedicated guide and support components. During rotation and pressing, improper force applied by the user may cause the middle cap to tilt or experience uneven force, thus affecting the stability and reliability of the puncture effect. Utility Model Content

[0005] The problem this invention aims to solve is to provide a multi-cavity packaging puncture device. This device has a compact structure, accurate positioning, and achieves simultaneous puncture and uniform mixing of multiple cavities, making it very convenient to use. The technical solution adopted is as follows:

[0006] A multi-cavity packaging puncture device includes a bottle body, a middle cap, and a top cap. The middle cap fits over the upper opening of the bottle body, and the top cap fits over the middle cap. A first accommodating space is formed inside the top cap. The device is characterized by further including a condiment separator cup, which is inverted and detachably disposed within the first accommodating space, with its bottom contacting the inner wall of the first accommodating space. The condiment separator cup contains multiple condiment cavities for holding beverage components to be prepared, and these cavities are not interconnected. The upper opening of the condiment separator cup is sealed with a sealing film capable of closing the upper openings of each condiment cavity. A horizontally positioned... The support plate has multiple through holes running vertically through it. The number of through holes corresponds to the number of seasoning cavities. The upper edge of each through hole has a piercing part that can pierce the sealing film of the corresponding seasoning cavity. The upper opening edge of the middle cover has an alignment groove that communicates with the inner cavity of the middle cover. The lower opening edge of the upper cover has a first alignment block that matches the alignment groove. The upper opening edge of the seasoning separator cup has a second alignment block that matches the alignment groove. Both the first and second alignment blocks are located in the alignment groove, with the first alignment block positioned above the second alignment block.

[0007] The aforementioned condiment separator cup contains multiple independent condiment chambers, each designed to hold a different component of the beverage to be prepared. These chambers are not interconnected, ensuring that the components do not mix before the cup is punctured. A sealing film covers the top opening of each condiment chamber, sealing the components within each chamber. The number of condiment chambers can be two, three, four, or more, depending on the number of components in the beverage. The number of discharge holes on the support plate of the lid is then set to correspond to the number of condiment chambers.

[0008] Before mixing the beverage, the entire device needs to be assembled. During assembly, first, place the middle lid onto the upper opening of the bottle. Then, invert the condiment separator cup and place it on the support plate of the middle lid, ensuring the second alignment block of the condiment separator cup is in the alignment slot of the middle lid. Next, place the upper lid onto the middle lid, ensuring the first alignment block of the upper lid engages with the alignment slot of the middle lid. At this point, the first alignment block is above the second alignment block, confining the condiment separator cup within the first receiving space of the upper lid. Through the cooperation of the alignment slot and the two alignment blocks, the upper lid, condiment separator cup, and middle lid are accurately aligned circumferentially, ensuring each condiment chamber aligns with the corresponding dispensing through-hole and piercing part, preventing piercing failure or components failing to fall into the correct dispensing through-hole due to rotational misalignment.

[0009] When preparing a beverage, first pre-fill the bottle with an appropriate amount of water or other liquid base. Then, press down on the top cover. Because the bottom of the condiment divider is held in place by the inner wall of the top cover, it will not move or tilt relative to the top cover during pressing, ensuring that each condiment chamber is vertically aligned with its corresponding piercing point. As the top cover is pressed down, the condiment divider moves downwards as a whole. As the condiment divider descends, the sealing film of each condiment chamber contacts the corresponding piercing point on the middle cover support plate. With continued pressing, the piercing point breaks the sealing film, allowing the components in the condiment chambers to fall simultaneously into the bottle below through the corresponding discharge holes. Finally, the user shakes the bottle to quickly mix and dissolve the various components in the water, forming the desired beverage.

[0010] In a preferred embodiment, the upper edge of the feeding through-hole is provided with piercing guide sleeves distributed circumferentially. The size of the piercing guide sleeves is smaller than the upper opening size of the corresponding seasoning cavity. The upper edge of the piercing guide sleeves is provided with a continuous serrated structure, which constitutes the piercing portion. Typically, the size of the piercing guide sleeves is slightly smaller than the upper opening size of the corresponding seasoning cavity. Therefore, when the seasoning cavity moves downward, the upper opening of the piercing guide sleeve can pierce upward into the opening of the seasoning cavity. As the seasoning cavity continues to descend, the sealing film of the seasoning cavity contacts the continuous serrations on the piercing guide sleeve and is gradually pierced. The continuous serrated structure can pierce the sealing film more effectively. Compared with blunt edges or single-point piercing, the continuous serrated structure can form multiple cuts on the sealing film, ensuring that the sealing film is fully opened. Moreover, after the opening of the seasoning cavity is fitted into the piercing guide sleeve, the edge of the seasoning cavity is supported by the outer wall of the piercing guide sleeve, keeping the sealing film taut during the piercing process, which is conducive to the serrations smoothly cutting open the sealing film without slipping.

[0011] In a further preferred embodiment, the opening of the piercing guide sleeve gradually decreases in size from bottom to top. Setting the piercing guide sleeve as a guide structure with a smaller top and a larger bottom can compensate for any slight radial deviation that may exist between the seasoning cavity and the piercing guide sleeve, making it easier and more accurate for the seasoning cavity to fit into the piercing guide sleeve.

[0012] In a further preferred embodiment, the upper edge of the piercing guide sleeve is provided with a blocking notch that prevents the sealing film from being completely torn off. This blocking notch refers to a gap left on the continuous serrated edge. When the piercing part tears the sealing film, the corresponding film portion at the blocking notch is not severed due to the absence of serrations, thus leaving a portion of the sealing film connected to the edge of the condiment chamber opening. This prevents the sealing film from being completely torn off along the entire circumference after being pierced, preventing film fragments from falling into the bottle and affecting the beverage quality.

[0013] In a preferred embodiment, the condiment divider includes a saucer and multiple condiment cups of the same shape and size. The saucer has condiment spouts evenly spaced along its circumference, with the number of spouts matching the number of condiment cups. The upper opening edge of each condiment cup is integrally connected to its corresponding spout, and the inner cavity of each condiment cup forms a condiment cavity. Connecting the condiment cups to the saucer as a whole using processes such as injection molding makes the manufacturing and assembly of the condiment divider more convenient and reduces its production cost.

[0014] In a further preferred embodiment, a partition gap is provided between the outer walls of two adjacent condiment cups. The inner cavity of the top cover contains multiple partitions corresponding to these partition gaps. Each partition divides the first accommodating space into multiple accommodating cavities. Each condiment cup is located in its corresponding accommodating cavity, and each partition is located in its corresponding partition gap. The lower edge of each partition contacts and engages with the lower surface of the cup tray. After installation, each partition divides the first accommodating space of the top cover into multiple independent accommodating cavities, with each condiment cup positioned precisely in one cavity. This prevents the condiment cups from moving or shaking horizontally, improving stability during pressing. Simultaneously, the lower edge of the partition contacts and engages with the lower surface of the cup tray. When the top cover is pressed, the lower edge of the partition presses down on the periphery of each condiment cup, providing a stable supporting reaction force for the piercing part. Thus, when the piercing part pushes upwards to pierce the sealing film, the condiment cups will not spring back or shift, ensuring the sealing film is successfully pierced.

[0015] In a further preferred embodiment, the feeding through holes are evenly spaced along the circumference of the middle cover on the support plate. The evenly spaced layout of the feeding through holes precisely matches the position of the mixing chambers, ensuring that each mixing chamber is aligned with one feeding through hole.

[0016] In a further preferred embodiment, a support strip is provided between two adjacent discharge holes, and each support strip has multiple vertically penetrating discharge holes. The presence of discharge holes allows water inside the bottle to enter the upper cavity of the middle cap after being pressed, thereby flushing down any components that may remain on the support plate and reducing residue. When the user shakes the bottle to mix beverages, water can flow through the discharge holes inside the middle cap, flushing components adhering to the puncture part or partition back into the bottle, improving component utilization.

[0017] In a preferred embodiment, the lower opening of the middle cap is larger than the upper opening of the bottle body, and the inner wall of the lower opening of the middle cap is in close contact with the outer wall of the upper opening of the bottle body; similarly, the upper opening of the middle cap is larger than the lower opening of the upper cap, and the outer wall of the lower opening of the upper cap is in close contact with the inner wall of the upper opening of the middle cap. A tight fit is used between the upper and middle caps, and between the middle cap and the bottle body, ensuring overall stability of the device during pressing and preventing loosening or misalignment. Alternatively, the middle cap can also be attached to the upper opening of the bottle body using threads or snap-fit ​​mechanisms.

[0018] Compared with the prior art, this utility model has the following advantages:

[0019] This utility model has a compact structure, with all components tightly connected and accurately positioned. Users only need to press the top cover to simultaneously pierce the seasoning separator cups with different beverage components to be mixed, achieving simultaneous piercing and uniform mixing of multiple cavities, making it very convenient to use. Attached Figure Description

[0020] Figure 1 This is a schematic diagram showing the disassembled state of the multi-cavity packaging puncture device in a preferred embodiment of this utility model;

[0021] Figure 2 for Figure 1 A cross-sectional schematic diagram of the disassembled multi-cavity packaging puncture device;

[0022] Figure 3 for Figure 2 A schematic diagram of a multi-cavity packaging puncture device in an unpressed state;

[0023] Figure 4 for Figure 3 A schematic diagram of a multi-cavity packaging puncture device in a pressed state;

[0024] Figure 5 for Figure 1 A diagram showing the view from below;

[0025] Figure 6 for Figure 1 A schematic diagram showing the assembly status of each component. Detailed Implementation

[0026] The following description, in conjunction with the accompanying drawings and preferred embodiments of the present invention, will provide further details.

[0027] like Figure 1-6As shown, the multi-cavity packaging puncture device in this embodiment includes a bottle body 1, a middle cover 2, an upper cover 3, and a condiment separator cup 4. The middle cover 2 is fitted onto the upper opening of the bottle body 1, and the upper cover 3 is fitted onto the middle cover 2. A first accommodating space 31 is formed inside the upper cover 3. The condiment separator cup 4 is inverted and detachably disposed in the first accommodating space 31, and the bottom of the condiment separator cup 4 contacts and cooperates with the inner wall of the first accommodating space 31. The condiment separator cup 4 is provided with multiple condiment cavities 41 for holding beverage components to be prepared. Each condiment cavity 41 is not interconnected. The upper opening of the condiment separator cup 4 is sealed with a sealing film 42 that can close the upper opening of each condiment cavity 41. A horizontally arranged support plate 21 is provided in the inner cavity of the middle cover 2. The support plate 21 is provided with multiple vertically penetrating discharge holes 22. The number of discharge holes 22 is the same as the number of seasoning cavities 41 and they correspond one-to-one. The upper edge of the discharge hole 22 is provided with a piercing part 23 that can pierce the sealing film 42 of the corresponding seasoning cavity 41. The upper opening edge of the middle cover 2 is provided with an alignment groove 24, which communicates with the inner cavity of the middle cover 2. The lower opening outer edge of the upper cover 3 is provided with a first alignment block 32 that matches the alignment groove 24. The upper opening outer edge of the seasoning separator cup 4 is provided with a second alignment block 43 that matches the alignment groove 24. Both the first alignment block 32 and the second alignment block 43 are located in the alignment groove 24, and the first alignment block 32 is located above the second alignment block 43.

[0028] The aforementioned condiment separator cup 4 has multiple independent condiment chambers 41 for holding different components of the beverage to be prepared. Each condiment chamber 41 is separate, ensuring that the components do not mix before being punctured. A sealing film 42 covers the upper opening of each condiment chamber 41, sealing the upper opening and thus encapsulating the components within the chamber. The number of condiment chambers 41 can be two, three, four, or more, depending on the number of components in the beverage. The number of discharge holes 22 on the support plate 21 of the middle cover 2 is then set to correspond to the number of condiment chambers 41.

[0029] Before mixing the beverage, the entire device needs to be assembled. During assembly, first, the middle cover 2 is placed on the upper opening of the bottle body 1. Then, the condiment separator cup 4 is inverted and placed on the support plate 21 of the middle cover 2, so that the second alignment block 43 of the condiment separator cup 4 is in the alignment groove 24 of the middle cover 2. Next, the upper cover 3 is placed on the middle cover 2, so that the first alignment block 32 of the upper cover 3 is engaged in the alignment groove 24 of the middle cover 2. At this time, the first alignment block 32 is located above the second alignment block 43, and the condiment separator cup 4 is confined in the first receiving space 31 of the upper cover 3. Through the cooperation of the alignment groove 24 and the two alignment blocks, the upper cover 3, the condiment separator cup 4 and the middle cover 2 are accurately aligned in the circumferential direction, ensuring that each condiment cavity 41 is aligned with the corresponding dispensing through hole 22 and piercing part 23, avoiding piercing failure or components failing to fall into the correct dispensing through hole 22 due to rotational misalignment.

[0030] When preparing a beverage, first fill the bottle 1 with an appropriate amount of water or other liquid base. Then, press down on the top cover 3 by hand. Since the bottom of the condiment separator 4 is fixed by the inner wall of the top cover 3, it will not move or tilt relative to the top cover 3 when pressed, ensuring that each condiment cavity 41 is vertically aligned with the corresponding piercing part 23. As the top cover 3 is pressed down, the condiment separator 4 moves downward as a whole. When the condiment separator 4 moves downward, the sealing film 42 of each condiment cavity 41 will contact the corresponding piercing part 23 on the support plate 21 of the middle cover 2. As the pressing continues, the piercing part 23 punctures the sealing film 42, allowing the components in the condiment cavity 41 to fall into the bottle 1 below through the corresponding discharge hole 22. Finally, the user shakes the bottle 1 to allow the various components to mix quickly and dissolve evenly in the water, forming the desired beverage.

[0031] The upper edge of the feeding through-hole 22 is provided with piercing guide sleeves 25 distributed circumferentially. The size of the piercing guide sleeves 25 is smaller than the upper opening size of the corresponding seasoning cavity 41. The upper edge of the piercing guide sleeves 25 is provided with a continuous serrated structure 26, which constitutes the piercing part 23. Typically, the size of the piercing guide sleeves 25 is slightly smaller than the upper opening size of the corresponding seasoning cavity 41. Therefore, when the seasoning cavity 41 moves downward, the upper opening of the piercing guide sleeves 25 can pierce upward into the opening of the seasoning cavity 41. As the seasoning cavity 41 continues to descend, the sealing film 42 of the seasoning cavity 41 contacts the continuous serrations on the piercing guide sleeves 25 and is gradually pierced. The continuous serrated structure 26 can pierce the sealing film 42 more effectively. Compared with blunt edge or single-point piercing, the continuous serrated structure 26 can form multiple cuts on the sealing film 42, ensuring that the sealing film 42 is fully opened. Moreover, after the opening of the seasoning cavity 41 is fitted into the piercing guide sleeve 25, the edge of the seasoning cavity 41 is supported by the outer wall of the piercing guide sleeve 25, so that the sealing film 42 remains taut during the piercing process, which is conducive to the serrations smoothly cutting open the sealing film 42 without slipping.

[0032] The opening of the puncture guide sleeve 25 gradually decreases from bottom to top. Setting the puncture guide sleeve 25 into a guide structure that is smaller at the top and larger at the bottom can compensate for any slight radial deviation that may exist between the seasoning cavity 41 and the puncture guide sleeve 25, making it easier and more accurate for the seasoning cavity 41 to fit into the puncture guide sleeve 25.

[0033] The upper edge of the piercing guide sleeve 25 is provided with a blocking notch 251 that prevents the sealing film 42 from being completely torn off. The blocking notch 251 refers to a gap left on the continuous serrated cutting edge. When the piercing part 23 cuts through the sealing film 42, the corresponding film part will not be cut off at the blocking notch 251 because there are no serrations. This leaves a part of the sealing film 42 connected to the edge of the opening of the seasoning cavity 41, so that the sealing film 42 will not be completely torn off along the entire circumference after being pierced, and prevents the fragments of the sealing film 42 from falling into the bottle and affecting the quality of the beverage.

[0034] The condiment separator cup 4 includes a cup plate 44 and multiple condiment cups 45 of the same shape and size. The cup plate 44 has condiment openings 441 evenly distributed along its circumference. The number of condiment openings 441 corresponds to the number of condiment cups 45. The upper opening edge of the condiment cup 45 is integrally connected to the corresponding condiment opening 441. The inner cavity of each condiment cup 45 forms a condiment cavity 41. The condiment cups 45 are connected to the cup plate 44 as a whole through injection molding or other processes, which makes the manufacturing and assembly of the condiment separator cup 4 more convenient and reduces the production cost of the condiment separator cup 4.

[0035] A partition gap 451 is provided between the outer walls of two adjacent condiment cups 45. The inner cavity of the upper cover 3 is provided with multiple partitions 33 corresponding to the partition gaps 451. Each partition 33 divides the first accommodating space 31 into multiple accommodating cavities 34. Each condiment cup 45 is located in its corresponding accommodating cavity 34, and each partition 33 is located in its corresponding partition gap 451. The lower edge of each partition 33 contacts and engages with the lower surface of the cup tray 44. After installation, each partition 33 divides the first accommodating space 31 of the upper cover 3 into multiple independent accommodating cavities 34. Each condiment cup 45 is precisely located in one accommodating cavity 34, preventing the condiment cup 45 from moving or shaking in the horizontal direction and improving stability during pressing. Meanwhile, the lower edge of the partition 33 contacts and engages with the lower surface of the cup and saucer 44. When the top cover 3 is pressed, the lower edge of the partition 33 can press down the periphery of each condiment cup 45, providing a stable supporting reaction force for the piercing part 23. In this way, when the piercing part 23 pushes upward to pierce the sealing film 42, the condiment cup 45 will not spring back or shift upward, ensuring that the sealing film 42 is successfully pierced.

[0036] The feeding through holes 22 are evenly distributed on the support plate 21 along the circumference of the middle cover 2. The evenly spaced arrangement of the feeding through holes 22 matches the position of the mixing chambers 41, ensuring that each mixing chamber 41 is aligned with one feeding through hole 22.

[0037] A support strip 27 is provided between two adjacent discharge holes 22, and each support strip 27 has multiple vertically penetrating discharge holes 271. The presence of the discharge holes 271 allows water in the bottle body 1 to enter the upper cavity of the middle cover 2 after being pressed, thereby rinsing off any components that may remain on the support plate 21 and reducing residue. When the user shakes the bottle body 1 to mix beverages, water can flow through the discharge holes 271 in the middle cover 2, flushing the components adhering to the puncture part 23 or the partition 33 into the bottle body 1, improving the utilization rate of the components.

[0038] The lower opening of the middle cover 2 is larger than the upper opening of the bottle body 1, and the inner wall of the lower opening of the middle cover 2 is in close contact with the outer wall of the upper opening of the bottle body 1; the upper opening of the middle cover 2 is larger than the lower opening of the upper cover 3, and the outer wall of the lower opening of the upper cover 3 is in close contact with the inner wall of the upper opening of the middle cover 2. The upper cover 3 and the middle cover 2, as well as the middle cover 2 and the bottle body 1, are tightly fitted to ensure the overall stability of the device during pressing, preventing loosening or misalignment. Alternatively, the middle cover 2 can also be fitted onto the upper opening of the bottle body 1 using threads or snap-fit ​​mechanisms.

[0039] Furthermore, it should be noted that the names of the various parts of the specific embodiments described in this specification may differ. All equivalent or simple variations made to the structure, features, and principles described in this utility model patent concept are included within the protection scope of this utility model patent. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, as long as they do not deviate from the structure of this utility model or exceed the scope defined in these claims, they should all fall within the protection scope of this utility model.

Claims

1. A multi-cavity packaging puncture device, comprising a bottle body, a middle cap, and a top cap, wherein the middle cap is fitted onto the upper opening of the bottle body, and the top cap is fitted onto the middle cap; a first accommodating space is formed inside the top cap; characterized in that: It also includes a condiment separator cup, which is inverted and detachably installed in the first accommodating space, with its bottom contacting and fitting against the inner wall of the first accommodating space; the condiment separator cup has multiple condiment chambers for holding beverage components to be prepared, and each condiment chamber is independent of the others; the upper opening of the condiment separator cup is sealed with a sealing film that can close the upper opening of each condiment chamber; the inner cavity of the middle cover has a horizontally arranged support plate, and the support plate has multiple vertically penetrating discharge holes, which connect to the condiment chambers. The quantities are identical and correspond one-to-one. The upper edge of the feeding through hole is provided with a piercing part that can pierce the sealing film of the corresponding seasoning cavity. The upper opening edge of the middle cover is provided with an alignment groove, which communicates with the inner cavity of the middle cover. The lower opening outer edge of the upper cover is provided with a first alignment block that matches the alignment groove, and the upper opening outer edge of the seasoning separator cup is provided with a second alignment block that matches the alignment groove. Both the first and second alignment blocks are located in the alignment groove, and the first alignment block is located above the second alignment block.

2. The multi-cavity packaging puncture device according to claim 1, characterized in that: The upper edge of the feeding through hole is provided with a puncture guide sleeve distributed circumferentially. The size of the puncture guide sleeve is smaller than the upper opening size of the corresponding seasoning cavity. The upper edge of the puncture guide sleeve is provided with a continuous serrated structure, which constitutes the puncture part.

3. The multi-cavity packaging puncture device according to claim 2, characterized in that: The opening of the piercing guide sleeve gradually decreases in size from bottom to top.

4. The multi-cavity packaging puncture device according to claim 2, characterized in that: The upper edge of the puncture guide sleeve is provided with a blocking notch that prevents the sealing film from being completely torn off.

5. The multi-cavity packaging puncture device according to claim 1, characterized in that: The condiment separator cup includes a saucer and multiple condiment cups of the same shape and size. The saucer has condiment openings evenly distributed along its circumference. The number of condiment openings is the same as the number of condiment cups and they correspond one-to-one. The upper opening edge of the condiment cup is integrally connected to the corresponding condiment opening. The inner cavity of one condiment cup forms one condiment cavity.

6. The multi-cavity packaging puncture device according to claim 5, characterized in that: A partition gap is provided between the outer walls of two adjacent condiment cups. The inner cavity of the top cover is provided with a plurality of partitions corresponding to the partition gaps. Each partition divides the first accommodating space into a plurality of accommodating cavities. Each condiment cup is located in a corresponding accommodating cavity. Each partition is located in a corresponding partition gap. The lower edge of the partition is in contact with the lower surface of the cup and saucer.

7. The multi-cavity packaging puncture device according to claim 5, characterized in that: The material feeding holes are evenly distributed on the support plate along the circumference of the middle cover.

8. The multi-cavity packaging puncture device according to claim 7, characterized in that: A support bar is provided between two adjacent discharge holes, and each support bar is provided with multiple vertically penetrating discharge holes.

9. The multi-cavity packaging puncture device according to claim 1, characterized in that: The lower opening of the middle cover is larger than the upper opening of the bottle body, and the inner wall of the lower opening of the middle cover is in close contact with the outer wall of the upper opening of the bottle body; the upper opening of the middle cover is larger than the lower opening of the upper cover, and the outer wall of the lower opening of the upper cover is in close contact with the inner wall of the upper opening of the middle cover.