Rotary probiotic straw
Through the design of rotary probiotic straws, the problem that existing straws cannot effectively store probiotics is solved, and the convenient release and sealing of probiotics is achieved, which improves the user experience.
Patent Information
- Application Number
- CN202422496740.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-15
AI Technical Summary
Existing straws cannot effectively store probiotics, resulting in cumbersome use and affecting the user experience.
A rotary probiotic straw is designed, including a storage middle tube and an upper and lower hollow tube. Through the rotary cutting structure of the upper and lower sealing membranes, the convenient release of probiotics is achieved.
It improves the storage activity and release efficiency of probiotics, enhances sealing, provides a safe drinking experience, and improves user convenience and practicality.
Smart Images

Figure CN223111418U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of straws, and particularly to a rotary probiotic straw. Background Art
[0002] Probiotics, as a group of microorganisms extremely beneficial to the human body, have multiple health benefits. They can synthesize antioxidant substances, effectively inhibit and eliminate pathogenic microorganisms and spoilage bacteria, and play a positive role in human health. Specifically, probiotics can scavenge oxygen free radicals in the body, enhance the body's defense against pathogens, delay the process of cell aging, activate key immune T cells, and decompose potential organic carcinogens such as nitrosocompounds.
[0003] However, the common straws on the market are usually hollow tubes without a probiotic storage structure. When users consume probiotics, they need to first pour the probiotic powder into a bottle, then stir it, and finally drink it through a straw. The usage process is relatively cumbersome, affecting the overall user experience.
[0004] Therefore, there are defects and deficiencies in the prior art and it needs to be further improved and developed. Summary of the Utility Model
[0005] In view of the above deficiencies of the prior art, the purpose of this application is to provide a rotary probiotic straw, aiming to solve the problem of poor experience when using straws in the prior art to suck probiotics.
[0006] One technical solution adopted by this application to solve the technical problem is as follows: A rotary probiotic straw for sucking probiotics, which includes:
[0007] A storage middle tube, the storage middle tube has an upper sealing section, a storage section and a lower sealing section arranged in sequence from top to bottom. An upper sealing film is fixedly arranged between the upper sealing section and the storage section, and a lower sealing film is fixedly arranged between the storage section and the lower sealing section; the storage section is used for storing probiotics; an upper hollow tube, the upper hollow tube has an upper connecting section, the upper connecting section is connected in the upper sealing section, and an upper film-opening member is fixedly arranged on the upper connecting section;
[0008] A lower hollow tube, the lower hollow tube has a lower connecting section, the lower connecting section is connected in the lower sealing section, and a lower film-opening member is fixedly arranged on the lower connecting section;
[0009] Wherein, the upper film-opening member can move downward to cut the upper sealing film, and the lower film-opening member can move upward to cut the lower sealing film.
[0010] Optionally, the upper film opening member includes an upper contact portion, an upper cutting ring portion, and an upper support portion that are integrally formed from bottom to top. The upper support portion is fixedly disposed on the end face of the upper connection section close to the lower sealing section. The upper cutting ring portion is used for cutting the upper sealing film.
[0011] The lower film opening member includes a lower contact portion, a lower cutting ring portion, and a lower support portion that are integrally formed from top to bottom. The lower support portion is fixedly disposed on the end face of the lower connection section close to the upper sealing section. The lower cutting ring portion is used for cutting the lower sealing film.
[0012] Optionally, a plurality of upper telescopic concave rings are provided on the inner wall of the upper sealing section, and the plurality of upper telescopic concave rings are all spaced apart.
[0013] An upper sealing convex ring adapted to the plurality of upper telescopic concave rings is provided on the outer side wall of the upper connection section.
[0014] Wherein, when the upper hollow tube rotates and moves downward, the upper sealing convex ring moves downward in the plurality of upper telescopic concave rings, the upper contact portion contacts the upper sealing film, and the upper cutting ring portion cuts the upper sealing film.
[0015] Optionally, a plurality of lower telescopic concave rings are provided on the inner wall of the lower sealing section, and the plurality of lower telescopic concave rings are all spaced apart.
[0016] A lower sealing convex ring adapted to the plurality of lower telescopic concave rings is provided on the outer side wall of the lower connection section.
[0017] Wherein, when the lower hollow tube rotates and moves upward, the lower sealing convex ring moves upward in the plurality of lower telescopic concave rings, the lower contact portion contacts the lower sealing film, and the lower cutting ring portion cuts the lower sealing film.
[0018] Optionally, two upper limit protrusions are provided on the end face of the upper sealing section facing away from the storage section, and the included angle formed by the connection lines of the two upper limit protrusions and the axis of the upper hollow tube is set to 30°-90°.
[0019] An upper rotation angle protrusion adapted to the two upper limit protrusions is provided above the upper sealing convex ring. The upper rotation angle protrusion rotates horizontally between the two upper limit protrusions to limit the rotation angle of the upper hollow tube in the upper sealing section.
[0020] Optionally, two lower limit protrusions are provided on the end face of the lower sealing section facing away from the storage section, and the included angle formed by the connection lines of the two lower limit protrusions and the axis of the lower hollow tube is set to 30°-90°.
[0021] Below the lower sealing convex ring, there is a lower rotation angle convexity adapted to the two lower limiting convexities. The lower rotation angle convexity rotates horizontally between the two lower limiting convexities to limit the rotation angle of the lower hollow tube in the lower sealing section.
[0022] Optionally, the middle storage tube is provided with a transparent structure.
[0023] Optionally, scale marks are provided on the outer side wall of the middle storage tube.
[0024] Optionally, the lower hollow tube also has an insertion end opposite to the lower connection section.
[0025] Optionally, the insertion end has an inclined opening.
[0026] Compared with the prior art, the present application provides a rotary probiotic straw. The rotary probiotic straw ensures the activity of probiotics in the storage section through a sealed middle storage tube. The upper sealing film and the lower sealing film enhance the sealing performance and prevent external contamination, providing a safe drinking experience for users. By rotating the upper hollow tube and the lower hollow tube, the upper sealing film and the lower sealing film can be conveniently cut. Under the action of gravity, the probiotics are released into the drink, greatly improving the user experience and further enhancing the practicality and convenience of use of the rotary probiotic straw. Description of the Drawings
[0027] Figure 1 is a schematic perspective view of the rotary probiotic straw provided in the present application;
[0028] Figure 2 is a front view of the rotary probiotic straw provided in the present application;
[0029] Figure 3 is in the present application Figure 2 a cross-sectional view taken along the direction of I-I;
[0030] Figure 4 is in the present application Figure 3 an enlarged schematic view of part A;
[0031] Figure 5 is in the present application Figure 3 an enlarged schematic view of part B;
[0032] Figure 6 is a schematic exploded view of the rotary probiotic straw provided in the present application;
[0033] Figure 7 is a schematic perspective exploded view of the upper hollow tube and the middle storage tube of the rotary probiotic straw provided in the present application;
[0034] Figure 8 This is a three-dimensional exploded structural schematic diagram of the storage middle tube and the lower hollow tube of the rotary probiotic straw provided in this application.
[0035] Description of the reference numerals in the drawings:
[0036] 10. Rotary probiotic straw; 11. Storage middle tube; 111. Upper sealing section; 1111. Upper telescopic concave ring; 1112. Upper limiting protrusion; 112. Storage section; 113. Lower sealing section; 1132. Lower telescopic concave ring; 1131. Lower limiting protrusion; 114. Upper sealing film; 115. Lower sealing film; 12. Upper hollow tube; 121. Upper connecting section; 1211. Upper sealing convex ring; 1212. Upper rotation angle protrusion; 122. Upper film-opening member; 1221. Upper contact part; 1222. Upper cutting ring part; 1223. Upper support part; 13. Lower hollow tube; 131. Lower connecting section; 1311. Lower sealing convex ring; 1312. Lower rotation angle protrusion; 132. Lower film-opening member; 1321. Lower contact part; 1322. Lower cutting ring part; 1323. Lower support part; 133. Insertion end; 1331. Oblique opening. Detailed implementation manners
[0037] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application and should not be construed as a limitation to the present application.
[0038] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, the meaning of "a plurality" is two or more.
[0039] In the description of the present application, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0040] Please refer to Figures 1 to 5 Figures 1 to 3 , the first embodiment of the present application provides a rotary probiotic straw 10 for sucking probiotics. The rotary probiotic straw 10 includes a storage middle tube 11, an upper hollow tube 12, and a lower hollow tube 13. A storage section 112 is provided in the storage middle tube 11. The storage section 112 is sealed by an upper sealing film 114 and a lower sealing film 115 to ensure the activity and freshness of the probiotics before use. When the user uses the straw, by rotating the upper hollow tube 12, the rotation of the upper hollow tube 12 causes the sealing convex ring to move within the upper telescopic concave ring 1111, generating a downward pressure, so that the upper contact portion 1221 of the upper film opening member 122 contacts the upper sealing film 114. After the lower contact portion 1321 contacts the upper sealing film 114, the upper cutting ring portion 1222 starts to cut the upper sealing film 114 downward to open the upper sealing film 114. At the same time, the user rotates and moves the lower hollow tube 13. The rotation of the lower hollow tube 13 causes the sealing convex ring to move within the upper telescopic concave ring 1111, generating an upward pressure, so that the lower contact portion 1321 of the lower film opening member 132 contacts the lower sealing film 115. After the lower contact portion 1321 contacts the lower sealing film 115, the lower cutting ring portion 1322 starts to cut the lower sealing film 115 upward to open the lower sealing film 115, and then release the probiotics stored in the storage middle tube 11, and the probiotics can be released into the drink. When the user sucks, the liquid containing active probiotics can be sucked through the straw.
[0041] Please refer to Figures 1 to 3, in some embodiments, the rotary probiotic straw 10 includes a storage middle tube 11, an upper hollow tube 12, and a lower hollow tube 13. The storage middle tube 11 has an upper sealing section 111, a storage section 112, and a lower sealing section 113 arranged in sequence from top to bottom. An upper sealing film 114 is fixedly arranged between the upper sealing section 111 and the storage section 112, and a lower sealing film 115 is fixedly arranged between the storage section 112 and the lower sealing section 113; the storage section 112 is used for storing probiotics; the upper hollow tube 12 has an upper connecting section 121, and the upper connecting section 121 is connected in the upper sealing section 111, and an upper film-opening member 122 is fixedly arranged on the upper connecting section 121; the lower hollow tube 13 has a lower connecting section 131, and the lower connecting section 131 is connected in the lower sealing section 113, and a lower film-opening member 132 is fixedly arranged on the lower connecting section 131; wherein, the upper film-opening member 122 can move downward to cut the upper sealing film 114, and the lower film-opening member 132 can move upward to cut the lower sealing film 115, releasing the probiotics, thus solving the problem that traditional straws cannot effectively store probiotics. Through the sealed storage middle tube 11, it is ensured that the probiotics remain active in the storage section 112. The settings of the upper sealing film 114 and the lower sealing film 115 enhance the sealing performance, prevent external contamination, and provide a safe drinking experience for users. By rotating the upper hollow tube 12 and the lower hollow tube 13, the upper sealing film 114 and the lower sealing film 115 can be conveniently cut, and the probiotics are released into the drink under the action of gravity, greatly improving the user experience and further ensuring the practicability and use effect of the rotary probiotic straw 10.
[0042] Please refer to Figures 1 to 3 , in some embodiments, the upper film-opening member 122 includes an upper contact portion 1221, an upper cutting ring portion 1222, and an upper support portion 1223 which are integrally formed from bottom to top. The upper support portion 1223 is fixedly arranged on the end face of the upper connecting section 121 close to the lower sealing section 113, and the upper cutting ring portion 1222 is used for cutting the upper sealing film 114; the lower film-opening member 132 includes a lower contact portion 1321, a lower cutting ring portion 1322, and a lower support portion 1323 which are integrally formed from top to bottom. The lower support portion 1323 is fixedly arranged on the end face of the lower connecting section 131 close to the upper sealing section 111; the lower cutting ring portion 1322 is used for cutting the lower sealing film 115, thereby enabling the smooth release of the probiotics, improving the convenience of user use, ensuring that users can easily obtain the required probiotics when sucking, improving the user experience, and greatly improving the convenience and practicability of using the rotary probiotic straw 10.
[0043] Please refer to Figure 6 and Figure 7, in some embodiments, a plurality of upper telescopic concave rings 1111 are provided on the inner wall of the upper sealing section 111, and the plurality of upper telescopic concave rings 1111 are all arranged at intervals; an upper sealing convex ring 1211 adapted to the plurality of upper telescopic concave rings 1111 is provided on the outer side wall of the upper connecting section 121; wherein, when the upper hollow tube 12 rotates and moves downward, the upper sealing convex ring 1211 moves downward in the plurality of upper telescopic concave rings 1111, the upper contact portion 1221 contacts the upper sealing film 114, and pierces the upper sealing film 114, and the upper cutting ring portion 1222 cuts the upper sealing film 114, thereby realizing that the upper hollow tube 12 can move smoothly downward in the plurality of upper telescopic concave rings 1111, not only improving the sealing performance between the upper hollow tube 12 and the upper sealing section 111, but also avoiding damage to the upper sealing film 114 caused by improper user operation.
[0044] Please refer to Figure 6 and Figure 8 , in some embodiments, a plurality of lower telescopic concave rings 1132 are provided on the inner wall of the lower sealing section 113, and the plurality of lower telescopic concave rings 1132 are all arranged at intervals; a lower sealing convex ring 1311 adapted to the plurality of lower telescopic concave rings 1132 is provided on the outer side wall of the lower connecting section 131; wherein, when the lower hollow tube 13 rotates and moves upward, the lower sealing convex ring 1311 moves upward in the plurality of lower telescopic concave rings 1132, the lower contact portion 1321 contacts the lower sealing film 115, and pierces the lower sealing film 115, and the lower cutting ring portion 1322 cuts the lower sealing film 115, thereby realizing that the lower hollow tube 13 can move smoothly upward in the plurality of lower telescopic concave rings 1132, not only improving the sealing performance between the lower hollow tube 13 and the lower sealing section 113, but also avoiding damage to the lower sealing film 115 caused by improper user operation.
[0045] Please refer to Figures 6 to 8, in some embodiments, two upper limit protrusions 1112 are provided on the end face of the upper sealing section 111 facing away from the storage section 112, and the included angle formed by the connecting lines of the two upper limit protrusions 1112 and the axis of the upper hollow tube 12 is set to 30° to 90°; above the upper sealing convex ring 1211, there is an upper rotation angle protrusion 1212 adapted to the two upper limit protrusions 1112, and the upper rotation angle protrusion 1212 rotates horizontally between the two upper limit protrusions 1112 to limit the rotation angle of the upper hollow tube 12 in the upper sealing section 111. The rotation angle of the upper film opening member 122 for cutting the upper sealing film 114 is 270° to 330°, thereby ensuring the stability of the upper film opening member 122 cutting the upper sealing film 114, making the cutting process more controllable, and avoiding the risk that the upper sealing film 114 is completely cut open and drops into the drink or is inhaled by the user.
[0046] Please refer to Figures 6 to 8 , in some embodiments, two lower limit protrusions 1131 are provided on the end face of the lower sealing section 113 facing away from the storage section 112, and the included angle formed by the connecting lines of the two lower limit protrusions 1131 and the axis of the lower hollow tube 13 is set to 30° to 90°; below the lower sealing convex ring 1311, there is a lower rotation angle protrusion 1312 adapted to the two lower limit protrusions 1131, and the lower rotation angle protrusion 1312 rotates horizontally between the two lower limit protrusions 1131 to limit the rotation angle of the lower hollow tube 13 in the lower sealing section 113. The rotation angle of the lower film opening member 132 for cutting the lower sealing film 115 is 270° to 330°, thereby ensuring the stability of the lower film opening member 132 cutting the lower sealing film 115, making the cutting process more controllable, and avoiding the risk that the lower sealing film 115 is completely cut open and drops into the drink or is inhaled by the user.
[0047] In some embodiments, the storage middle tube 11 is provided with a transparent structure, so that users can clearly observe the storage and release conditions of probiotics. It is convenient for users to judge the release amount of probiotics, greatly improving the convenience and practicality of using the rotary probiotic straw 10.
[0048] Please refer to Figure 8 , in some embodiments, the lower hollow tube 13 further has an insertion end 133 opposite to the lower connection section 131, so that the rotary probiotic straw 10 can adapt to different containers, improving the usage flexibility of the rotary probiotic straw 10.
[0049] In some embodiments, the insertion end 133 has an inclined opening 1331, which enables the straw to be more easily inserted into various beverages or containers, enhancing the user experience and greatly improving the convenience and practicality of using the rotary probiotic straw 10.
[0050] In some embodiments, scale marks are provided on the outer sidewall of the storage middle tube 11, providing an intuitive measurement reference for the user, helping the user to master the release amount of probiotics, and greatly enhancing the user experience.
[0051] In summary, the present application provides a rotary probiotic straw, which includes a storage middle tube having an upper sealing section, a storage section, and a lower sealing section arranged in sequence from top to bottom. An upper sealing film is fixedly arranged between the upper sealing section and the storage section, and a lower sealing film is fixedly arranged between the storage section and the lower sealing section; the storage section is used for storing probiotics; an upper hollow tube having an upper connection section connected in the upper sealing section, and an upper film-opening member is fixedly arranged on the upper connection section; a lower hollow tube having a lower connection section connected in the lower sealing section, and a lower film-opening member is fixedly arranged on the lower connection section; wherein, the upper film-opening member can move downward to cut the upper sealing film, and the lower film-opening member can move upward to cut the lower sealing film to release probiotics. Thus, through the sealed storage middle tube, the problem that traditional straws cannot effectively store probiotics is solved, ensuring that the probiotics remain active in the storage section. The setting of the upper sealing film and the lower sealing film enhances the sealing performance, prevents external contamination, and provides a safe drinking experience for the user. By rotating the upper hollow tube and the lower hollow tube, the upper sealing film and the lower sealing film can be conveniently cut, and the probiotics are released into the beverage under the action of gravity, further ensuring the practicality and use effect of the rotary probiotic straw.
[0052] It should be understood that the application of the present application is not limited to the above examples. For those of ordinary skill in the art, improvements or changes can be made according to the above description, and all such improvements and changes should fall within the protection scope of the appended claims of the present application.
Claims
1. A rotary probiotic straw for sucking probiotics, characterized in that, The rotary probiotic straw comprises: A storage middle tube, wherein the storage middle tube has an upper sealing section, a storage section and a lower sealing section arranged in sequence from top to bottom, an upper sealing film is fixedly arranged between the upper sealing section and the storage section, and a lower sealing film is fixedly arranged between the storage section and the lower sealing section; the storage section is used to store probiotics; An upper hollow tube, wherein the upper hollow tube has an upper connecting section, the upper connecting section is connected to the upper sealing section, and an upper film-opening member is fixedly provided on the upper connecting section; A lower hollow tube, wherein the lower hollow tube has a lower connecting section, the lower connecting section is connected to the lower sealing section, and the lower connecting section is fixedly provided with a lower film opening member; Wherein, the upper film-opening member can move downward to cut the upper sealing film, and the lower film-opening member can move upward to cut the lower sealing film.
2. The rotary probiotic straw according to claim 1, characterized in that: The upper film-opening member comprises an upper contact portion, an upper cutting ring portion, and an upper supporting portion integrally formed from bottom to top, wherein the upper supporting portion is fixedly arranged on the end surface of the upper connecting section close to the lower sealing section, and the upper cutting ring portion is used to cut the upper sealing film; The lower film opening member includes a lower contact portion, a lower cutting ring portion and a lower supporting portion integrally formed from top to bottom, wherein the lower supporting portion is fixedly arranged on the end surface of the lower connecting section close to the upper sealing section; the lower cutting ring portion is used for cutting the lower sealing film.
3. The rotary probiotic straw according to claim 2, wherein A plurality of upper telescopic concave rings are arranged on the inner wall of the upper sealing section, and the plurality of upper telescopic concave rings are arranged at intervals; An upper sealing convex ring matched with the plurality of upper telescopic concave rings is arranged on the outer side wall of the upper connecting section; When the upper hollow tube rotates and moves downward, the upper sealing convex ring moves downward in the plurality of upper telescopic concave rings, the upper contact portion contacts the upper sealing film, and the upper cutting ring portion cuts the upper sealing film.
4. The rotary probiotic straw according to claim 2, wherein, A plurality of lower telescopic concave rings are arranged on the inner wall of the lower sealing section, and the plurality of lower telescopic concave rings are arranged at intervals; A lower sealing convex ring matched with a plurality of lower telescopic concave rings is arranged on the outer side wall of the lower connecting section; When the lower hollow tube rotates and moves upward, the lower sealing convex ring moves upward in the plurality of lower telescopic concave rings, the lower contact portion contacts the lower sealing film, and the lower cutting ring portion cuts the lower sealing film.
5. The rotary probiotic straw according to claim 3, wherein Two upper limit protrusions are arranged on the end surface of the upper sealing section away from the storage section, and the angle formed by the line connecting the two upper limit protrusions and the axis of the upper hollow tube is set to 30° to 90°; An upward rotation angle protrusion matched with the two upper limit protrusions is arranged above the upper sealing protrusion ring, and the upward rotation angle protrusion rotates horizontally between the two upper limit protrusions to limit the rotation angle of the upper hollow tube in the upper sealing section.
6. The rotary probiotic straw according to claim 4, characterized in that: Two lower limit protrusions are arranged on the end surface of the lower sealing section away from the storage section, and the angle formed by the line connecting the two lower limit protrusions and the axis of the lower hollow tube is set to 30° to 90°; Below the said lower sealing convex ring, there is a lower rotation angle convexity adapted to the two said lower limit convexities. The lower rotation angle convexity rotates horizontally between the two said lower limit convexities to limit the rotation angle of the lower hollow tube at the lower sealing section.
7. The rotary probiotic straw according to claim 6, characterized in that, The said middle storage tube is arranged as a transparent structure.
8. The rotary probiotic straw according to claim 7, wherein, There are scale marks arranged on the outer side wall of the said middle storage tube.
9. The rotary probiotic straw according to claim 1, wherein, The said lower hollow tube also has an insertion end arranged opposite to the said lower connection section.
10. The rotary probiotic straw according to claim 9, wherein, The insertion end has an inclined opening.