Packaging bottle for intestinal bacteria capsules

By designing a capsule packaging bottle with a push block, connecting rod, and pusher, the problem of water mist in the capsules after thawing is solved, enabling convenient capsule ejection and preventing sticking, thus improving the user experience and transportation safety.

CN224225686UActive Publication Date: 2026-05-12SUZHOU SHANBAI BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU SHANBAI BIOTECHNOLOGY CO LTD
Filing Date
2025-06-16
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Traditional enterobiotic capsule packaging bottles cause water vapor to form on the capsule surface after thawing, resulting in softened capsule skin, inconvenient use, and sticky hands, affecting user experience and hygiene.

Method used

A packaging bottle for enterobiotic capsules was designed, comprising a bottle body, a first cap, and a second cap. Utilizing a structure including a lever, a connecting rod, a rotating plate, and a pusher, the capsules are easily ejected by rotating the lever, which drives the connecting rod and the pusher. Water mist formation is prevented under the protection of an absorbent sponge. The design also incorporates a double-layer sealing structure and a release film to prevent adhesion.

Benefits of technology

This technology enables convenient capsule dispensing, avoids the inconvenience and risk of contamination from manual handling, keeps the capsules dry, ensures safe transportation and efficacy, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a packaging bottle for intestinal bacteria capsules, and relates to the technical field of packaging of the intestinal bacteria capsules. The packaging bottle comprises a packaging bottle body, a first bottle cap and a second bottle cap, a plurality of moving grooves are formed in the first bottle cap, fixing rods are fixed to the middles of the inner sides of the moving grooves, shifting blocks are rotationally arranged on the outer sides of the fixing rods, and first connecting rods are fixed to one ends of the inner sides of the shifting blocks; rotating pieces are rotatably arranged in the first connecting rods, limiting cylinders are fixed to one sides of the bottoms of the multiple sets of moving grooves, sliding blocks are slidably arranged in the limiting cylinders, pushing blocks are fixed to the tops of the sliding blocks, second connecting rods are fixed to the two sides of the pushing blocks, and stabilizing cylinders are fixed to the bottoms of the limiting cylinders; according to the capsule unfreezing device, a good water mist adsorption effect can be provided for the outer surface of a capsule after unfreezing, and meanwhile, the capsule can be conveniently taken out for use under the condition that the capsule is not touched when the capsule unfreezing device is used.
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Description

Technical Field

[0001] This utility model relates to the field of intestinal bacteria capsule packaging technology, specifically to a packaging bottle for intestinal bacteria capsules. Background Technology

[0002] The intestinal probiotic capsule bottle is a container specifically designed for storing intestinal probiotic capsules. Its core function is to provide a stable and safe storage environment for the capsules. The bottle material effectively blocks external light, moisture, and oxygen, maintaining the activity and stability of the active intestinal bacteria inside the capsules and preventing the bacteria from becoming inactive due to environmental factors. Its sealed design makes it easy to carry and store, ensuring that patients can take the capsules on time and in the correct dosage to achieve the therapeutic effects of regulating intestinal flora and improving intestinal function.

[0003] However, traditional enterobiotic capsule packaging bottles require the capsules to be thawed after removal. However, due to temperature differences, a layer of water vapor forms on the surface of the capsule skin after thawing, causing the capsule skin to soften and become sticky, making it inconvenient to use. Utility Model Content

[0004] Based on this, the purpose of this utility model is to provide a packaging bottle for intestinal bacteria capsules that can provide good water mist adsorption on the surface of the capsules after thawing, and at the same time, it can make it easier for users to take out and use the capsules without touching them, thereby avoiding contamination of the capsules and the capsules sticking to the user's hands after contact.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a packaging bottle for intestinal bacteria capsules, comprising a packaging bottle body, a first cap, and a second cap. The first cap has several sets of movable grooves inside, and a fixing rod is fixed to the middle of the inner side of each set of movable grooves. A lever is rotatably arranged on the outer side of the fixing rod, and a first connecting rod is fixed to one end of the inner side of the lever. A rotating plate is rotatably arranged inside the first connecting rod. A limiting cylinder is fixed to one side of the bottom of each set of movable grooves, and a sliding block is slidably arranged inside the limiting cylinder. A push block is fixed to the top of the sliding block, and a second connecting rod is fixed to both sides of the push block and rotatably arranged with one end of the rotating plate. A stabilizing cylinder is fixed to the bottom of the limiting cylinder, and an absorbent sponge is pasted inside the stabilizing cylinder.

[0006] By adopting the above technical solution, the fixed rod provides a fulcrum for the paddle, which drives the first connecting rod fixed at one end of its inner side to move in a circular motion. The first connecting rod, through its rotational connection with the rotating plate, converts its own circular motion into a specific directional movement of the rotating plate. The rotating plate, through its rotational connection with the second connecting rod, drives the sliding block at the bottom of the push block to slide inside the limiting cylinder. The stabilizing cylinder provides a stable storage space for the absorbent sponge. The absorbent sponge is pasted inside the stabilizing cylinder, which can absorb the water mist generated by the capsule due to temperature difference and press and lock the capsule in place.

[0007] Furthermore, the top of the packaging bottle is threadedly connected to a first cap, and the top of the first cap is threadedly provided with a second cap.

[0008] By adopting the above technical solution, the packaging bottle, as the basic container of the entire packaging structure, provides the main storage space for the enterobiotic capsules. The bottle cap is connected to the first cap by threads. This connection method is tight and stable, which can effectively isolate adverse factors such as external air, moisture, and dust, creating a relatively independent and safe storage environment for the capsules. The first cap is threaded with a second cap, forming a two-layer sealing structure.

[0009] Furthermore, the threads of the packaging bottle body and the first cap, and the first cap and the second cap, are opened in opposite directions, and a sealing strip is provided at the bottom of both the first cap and the second cap.

[0010] By adopting the above technical solution, the threads of the packaging bottle body and the first bottle cap and the first bottle cap and the second bottle cap are opened in opposite directions, so that when opening the packaging bottle, the packaging bottle body and the first bottle cap and the first bottle cap and the second bottle cap need to be rotated in opposite directions, making it easier to separate the packaging bottle body and the first bottle cap and the first bottle cap and the second bottle cap independently. The bottom of the first bottle cap and the second bottle cap are provided with sealing strips, so that the packaging bottle body and the first bottle cap and the first bottle cap and the second bottle cap have a good sealing environment.

[0011] Furthermore, a stabilizing column is fixed to the inner bottom of the packaging bottle, and several sets of drag blocks are arranged in a circular array based on the outer side of the stabilizing column on the inner bottom of the packaging bottle.

[0012] By adopting the above technical solution, the stabilizing column is fixed to the inner bottom of the packaging bottle. By interlocking with the stabilizing slot at the bottom of the first bottle cap, it provides a centrally positioned support structure for the capsule. Several sets of drag blocks are distributed in a circumferential array based on the outer side of the stabilizing column. These drag blocks provide support and limit the capsule from multiple directions.

[0013] Furthermore, each of the several groups of drag blocks has a drag groove on its top, and a release film is attached to the inner side of the drag groove. The several groups of drag blocks are arranged in a one-to-one correspondence with the several groups of moving grooves.

[0014] By adopting the above technical solution, the groove opened on the top of the drag block provides a precise placement space for the capsule. The release film attached to the inside of the groove has anti-stick and moisture-proof properties. Several sets of drag blocks and several sets of moving grooves are set one-to-one to provide better support for the capsule inside the water-absorbing sponge above.

[0015] Furthermore, a stabilizing slot is fixed to the bottom of the first bottle cap, and it is inserted and engaged with the stabilizing post.

[0016] By adopting the above technical solution, the stabilizing slot fixed at the bottom of the first bottle cap is engaged with the stabilizing post at the bottom of the inner side of the packaging bottle, which significantly enhances the overall sealing performance of the packaging bottle.

[0017] Furthermore, a push bar is fixed to the bottom of the sliding block and is slidably connected to the water-absorbing sponge.

[0018] By adopting the above technical solution, the push bar fixed at the bottom of the sliding block is a key actuator in the capsule ejection process. The push bar is slidably connected to the absorbent sponge, which can stably eject the capsule that is held in place by the absorbent sponge.

[0019] In summary, the present invention has the following main advantages:

[0020] 1. This utility model is provided with a toggle block, a first connecting rod, a rotating plate, a push block, and a second connecting rod. When the toggle block is pushed upward, it will rotate through the fixed rod fixed inside the moving groove, thereby driving the first connecting rod at one end of the toggle block to move in a circle. During the movement, the first connecting rod will drive the rotating plate to move through the rotation of the rotating plate, and the other end of the rotating plate will rotate and press down on the second connecting rods on both sides of the push block, so that the push block drives the sliding block at the bottom to slide inside the moving groove and the limiting cylinder. Finally, the sliding block can push out the capsule at the bottom of the stabilizing cylinder, which is protected by the water-absorbing sponge, through the push bar at the bottom.

[0021] 2. By setting up a drag block and a drag groove, when the first bottle cap is sealed and stored with the packaging bottle, the drag block will support the bottom of the capsule, which is protected by an absorbent sponge inside the stabilizing cylinder, through the drag groove opened at the top. This ensures that the capsule will not fall out from the absorbent sponge during transportation, thus ensuring the safety of the capsule during transportation. At the same time, a release film is attached to the inside of the drag groove to prevent the capsule from sticking to the inside of the drag groove due to long-term contact. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0023] Figure 2 This is a schematic diagram of the structure of the first and second bottle caps of this utility model after they have been removed from the packaging bottle.

[0024] Figure 3 This is a side view sectional structural diagram of the present invention;

[0025] Figure 4 This is a side cross-sectional view of the connection between the sliding block and the limiting cylinder of this utility model;

[0026] Figure 5 This is a side sectional view of the connection between the packaging bottle body and the first bottle cap of this utility model;

[0027] Figure 6 This utility model Figure 4 Enlarged structural diagram at point A in the middle.

[0028] In the diagram: 1. Packaging bottle body; 2. First bottle cap; 3. Second bottle cap; 4. Stabilizing column; 5. Dragging block; 6. Dragging groove; 7. Moving groove; 8. Fixing rod; 9. Pushing block; 10. First connecting rod; 11. Rotating plate; 12. Sliding block; 13. Pushing block; 14. Second connecting rod; 15. Limiting cylinder; 16. Stabilizing cylinder; 17. Water-absorbing sponge; 18. Stabilizing slot; 19. Push bar. Detailed Implementation

[0029] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0030] In this embodiment:

[0031] A packaging bottle for enterobiotic capsules, such as Figures 1-6 As shown, the package includes a bottle body 1, a first cap 2, and a second cap 3. The first cap 2 has several sets of moving grooves 7 inside, and a fixing rod 8 is fixed to the middle of the inner side of each set of moving grooves 7. A lever 9 is rotatably arranged on the outer side of the fixing rod 8, and a first connecting rod 10 is fixed to one end of the inner side of the lever 9. A rotating plate 11 is rotatably arranged inside the first connecting rod 10. A limiting cylinder 15 is fixed to one side of the bottom of each set of moving grooves 7, and a sliding block 12 is slidably arranged inside the limiting cylinder 15. A push block 13 is fixed to the top of the sliding block 12, and a second connecting rod 14 is fixed to both sides of the push block 13 and is rotatably arranged with one end of the rotating plate 11. A stabilizing cylinder 16 is fixed to the bottom of the limiting cylinder 15, and an absorbent sponge 17 is pasted inside the stabilizing cylinder 16.

[0032] The fixed rod 8 provides a fulcrum for the rotation of the lever 9. When the lever 9 is pushed upward, it can rotate around the fixed rod 8, thereby driving the first connecting rod 10 at one end of the inner side of the lever 9 to move in a circular motion. The first connecting rod 10 is rotatably connected to the rotating plate 11. During the movement of the first connecting rod 10, it can drive the rotating plate 11 to move. The rotating plate 11 is then rotatably connected to the second connecting rods 14 on both sides of the push block 13, applying a rotational and downward force to the second connecting rods 14, causing the push block 13 to drive the bottom sliding block 12 to slide within the limiting cylinder 15. Finally, the sliding block 12 is pushed by the bottom... The movable strip 19 pushes the capsule out of the stabilizing cylinder 16, enabling convenient access to the capsule and avoiding the inconvenience and risk of contamination from manual handling. The limiting cylinder 15 provides a track and limit for the sliding block 12, ensuring that the sliding block 12 slides stably along a predetermined path and guaranteeing the smoothness of the capsule ejection process. The stabilizing cylinder 16 provides a stable storage space for the capsule, and the absorbent sponge 17 attached inside can absorb water vapor generated by temperature differences in the capsule, ensuring the dryness of the capsule, preventing the capsule from getting damp and deteriorating, maintaining the efficacy and quality of the capsule, and playing a key protective role in the storage and transportation of the capsule.

[0033] See Figure 1 , Figure 2 , Figure 3 and Figure 5 The top of the packaging bottle 1 is threadedly connected to a first bottle cap 2, and the top of the first bottle cap 2 is threadedly provided with a second bottle cap 3;

[0034] The internal environment of the packaging bottle 1 is where the capsules are stored for a long time. The packaging bottle 1 and the first cap 2 are connected by threads, and the user can easily remove the capsule from the packaging bottle 1 by rotating the first cap 2. The second cap 3 can protect the internal structure of the first cap 2, preventing the internal structure from being accidentally hit or disturbed by external factors after the first cap 2 is removed from the packaging bottle 1, ensuring the safety of the capsule during the removal process, and also providing a relatively stable operating environment for the subsequent operation of ejecting the capsule through a specific structure.

[0035] See Figure 1 , Figure 2 , Figure 3 and Figure 5 The threads of the packaging bottle 1 and the first bottle cap 2 and the first bottle cap 2 and the second bottle cap 3 are opened in opposite directions, and the bottom of the first bottle cap 2 and the second bottle cap 3 are provided with sealing strips.

[0036] When it is necessary to open the packaging bottle to take out the capsule, the user can follow a specific sequence to first unscrew the first cap 2 and the packaging bottle 1 by rotating in one direction to initially separate the first cap 2. Then, by rotating in the opposite direction, the user can unscrew the first cap 2 and the second cap 3 to separate them. When the packaging bottle 1, the first cap 2 and the second cap 3 are in a sealed storage state, the sealing strip plays a crucial sealing role.

[0037] See Figure 3 and Figure 5 A stabilizing column 4 is fixed to the bottom inner side of the packaging bottle 1, and several sets of drag blocks 5 are arranged in a circular array based on the outside of the stabilizing column 4 on the bottom inner side of the packaging bottle 1.

[0038] When the capsule is placed inside the packaging bottle 1, the stabilizing column 4 occupies the center position of the bottom of the packaging bottle 1. By interlocking with the stabilizing slot 18 at the bottom of the first bottle cap 2, it provides good stability for the whole. The circumferential array of drag blocks 5 ensures effective support for the capsule.

[0039] See Figure 3 and Figure 5 Each of the several sets of drag blocks 5 has a drag groove 6 on its top, and a release film is attached to the inner side of the drag groove 6. The several sets of drag blocks 5 are arranged in a one-to-one correspondence with the several sets of moving grooves 7.

[0040] The groove 6 restricts the horizontal movement of the capsule, and the release film prevents the capsule from sticking to the inner wall of the groove 6 when it comes into direct contact with the inner wall, making the capsule easier to pick up and preventing it from sticking and becoming difficult to detach from the groove 6.

[0041] See Figure 3 , Figure 4 and Figure 5 The bottom of the first bottle cap 2 is fixed with a stabilizing slot 18, which is inserted and engaged with the stabilizing post 4;

[0042] When the first bottle cap 2 is screwed onto the packaging bottle 1 via threads, the stabilizing post 4 is inserted into the stabilizing slot 18, and the two fit tightly together, forming a double sealing effect.

[0043] See Figure 3 , Figure 4 and Figure 5 The bottom of the sliding block 12 is fixed with a push bar 19, which is slidably connected to the water-absorbing sponge 17;

[0044] When the sliding block 12 slides within the limiting cylinder 15 under the drive of the push block 13, the push strip 19 moves accordingly and directly contacts the capsule inside the absorbent sponge 17. The absorbent sponge 17 is attached to the inside of the stabilizing cylinder 16, and its main function is to absorb water mist generated by the temperature difference in the capsule to ensure the dryness of the capsule. The push strip 19 contacts the absorbent sponge 17 during the sliding process, but will not damage or interfere with it. The two work together to ensure the normal realization of the capsule ejection function and maintain the protective function of the absorbent sponge 17 on the capsule, so that the components inside the packaging bottle can work together to achieve the maximum functional benefits.

[0045] The implementation principle of this embodiment is as follows: First, after the packaging bottle 1 is taken out of the refrigerator and placed at a usable temperature, a layer of water vapor will be generated on the entire packaging bottle due to the temperature difference. Most of the water vapor generated on the outer side of the capsule located at the bottom of the inner side of the stabilizing cylinder 16 will be absorbed by the absorbent sponge 17, thereby ensuring that the capsule has good dryness. Then, by rotating the second cap 3 clockwise, the second cap 3 will drive the first cap 2 to unlock the threaded fastening with the packaging bottle 1, thus separating the first cap 2 from the packaging bottle 1. Then, by holding the slot on the bottom outer side of the first cap 2 and rotating the second cap 3 counterclockwise, the threaded fastening of the first cap 2 and the second cap 3 will be released, thereby separating the first cap 2 and the second cap 3. By pushing the lever 9 upwards, the lever 9 rotates through its rotational connection with the fixed rod 8, thereby causing the first connecting rod 10 at one end of the lever 9 to move in a circle. During the movement, the first connecting rod 10 will drive the rotating plate 11 to move through the rotation of the rotating plate 11, and the other end of the rotating plate 11 will rotate and press down on the second connecting rods 14 on both sides of the push block 13, so that the push block 13 will drive the bottom sliding block 12 to slide inside the moving groove 7 and the limiting cylinder 15. Then, the sliding block 12 can push out the capsule at the bottom of the stabilizing cylinder 16, which is protected by the water-absorbing sponge 17, through the bottom push bar 19, thus eliminating the problem of the capsule sticking to the user's hands when picking up the capsule.

[0046] Meanwhile, both the first bottle cap 2 and the second bottle cap 3 are equipped with sealing rings inside, ensuring good sealing when the first bottle cap 2 and the second bottle cap 3, as well as the first bottle cap 2 and the packaging bottle 1 are threaded together. When the packaging bottle 1, the first bottle cap 2 and the second bottle cap 3 are in a sealed storage state, the drag block 5 will support the bottom of the capsule, which is protected by the water-absorbing sponge 17 inside the stabilizing cylinder 16, through the drag groove 6 opened at the top. This ensures that the capsule will not fall out from the water-absorbing sponge 17 during transportation, thus ensuring the safety of the capsule during transportation. At the same time, the inside of the drag groove 6 is lined with a release film to prevent the capsule from sticking to the inside of the drag groove 6 due to long-term contact with it.

[0047] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, and variations are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. A packaging bottle for intestinal bacteria capsules, characterized in that: Includes the packaging bottle body (1), the first bottle cap (2), and the second bottle cap (3); The first bottle cap (2) has several sets of moving grooves (7) inside, and a fixing rod (8) is fixed in the middle of the inner side of each set of moving grooves (7). A lever (9) is rotatably arranged on the outer side of the fixing rod (8), and a first connecting rod (10) is fixed at one end of the inner side of the lever (9). A rotating plate (11) is rotatably arranged inside the first connecting rod (10). A limiting cylinder (15) is fixed on one side of the bottom of each set of moving grooves (7), and a sliding block (12) is slidably arranged inside the limiting cylinder (15). A push block (13) is fixed on the top of the sliding block (12), and a second connecting rod (14) is fixed on both sides of the push block (13) and rotatably arranged with one end of the rotating plate (11). A stabilizing cylinder (16) is fixed at the bottom of the limiting cylinder (15), and an absorbent sponge (17) is pasted inside the stabilizing cylinder (16).

2. The packaging bottle for the intestinal bacteria capsules according to claim 1, characterized in that: The top of the packaging bottle (1) is threaded with a first bottle cap (2), and the top of the first bottle cap (2) is threaded with a second bottle cap (3).

3. The packaging bottle for the intestinal bacteria capsules according to claim 1, characterized in that: The threads of the packaging bottle body (1) and the first bottle cap (2) and the first bottle cap (2) and the second bottle cap (3) are opened in opposite directions, and the bottom of the first bottle cap (2) and the second bottle cap (3) are provided with sealing strips.

4. The packaging bottle for the intestinal bacteria capsules according to claim 1, characterized in that: The inner bottom of the packaging bottle (1) is fixed with a stabilizing column (4), and the inner bottom of the packaging bottle (1) is arranged in a circular array with several sets of drag blocks (5) based on the outer side of the stabilizing column (4).

5. The packaging bottle for the intestinal bacteria capsules according to claim 4, characterized in that: Each of the several groups of drag blocks (5) has a drag groove (6) on its top, and a release film is attached to the inner side of the drag groove (6). The several groups of drag blocks (5) are arranged in a one-to-one correspondence with the several groups of moving grooves (7).

6. The packaging bottle for the intestinal bacteria capsules according to claim 1, characterized in that: The bottom of the first bottle cap (2) is fixed with a stabilizing slot (18) and is engaged with the stabilizing post (4).

7. The packaging bottle for the intestinal bacteria capsules according to claim 1, characterized in that: The bottom of the sliding block (12) is fixed with a push bar (19) and is slidably connected to the water-absorbing sponge (17).