Milk choking prevention milk bottle
By designing flow-blocking components and simulated structures inside the bottle nipple, the problem of milk splashing causing choking is solved, enabling milk to enter slowly and adapting to the sucking needs of infants of different ages, thus improving the safety and adaptability of the bottle.
Patent Information
- Application Number
- CN202422891369.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2034-11-26
AI Technical Summary
During use, the increased pressure of milk at the nipple of existing baby bottles can easily cause milk to splash in a columnar shape, leading to choking and posing a safety hazard to the baby.
A choking-proof milk bottle is designed, which uses a flow-blocking component inside the nipple to separate the liquid storage space, and uses a membrane and ring design to prevent excessive milk accumulation. The simulated structure mimics the feeling of breastfeeding and adapts to the sucking needs of infants of different ages.
It effectively prevents milk splashing, ensuring that milk enters the baby's mouth slowly, improving safety, and its detachable flow-blocking component adapts to the sucking needs of different age groups, improving the anti-choking effect.
Smart Images

Figure CN223914428U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of baby bottle technology, and in particular to an anti-choking baby bottle. Background Technology
[0002] Baby bottles are a common tool for feeding infants and toddlers, and their design directly affects the baby's health and safety. Currently, most baby bottles on the market have a relatively simple structure, mainly consisting of the bottle body and the nipple assembly. The nipple assembly is detachably connected to the bottle body for easy cleaning and replacement. However, this traditional baby bottle presents certain safety hazards during use.
[0003] Specifically, when babies drink milk, parents often invert the bottle, causing the milk to pool completely at the nipple. During the sucking process, the increased pressure of the milk at the nipple can easily cause it to spray out in a jet, potentially leading to choking and harming the baby's respiratory system. Choking not only affects a baby's normal feeding but can also cause suffocation in severe cases, threatening the baby's life.
[0004] Therefore, in order to prevent choking on milk, we propose a choking-proof milk bottle. Utility Model Content
[0005] The purpose of this invention is to solve the problem in the existing technology where the increased pressure of milk at the nipple can easily cause milk to splash out in a columnar shape, which may lead to choking on the baby. Therefore, an anti-choking milk bottle is proposed.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] Design a choking-proof milk bottle, including:
[0008] The bottle body and the nipple attached to the top of the bottle body;
[0009] A flow-blocking component is detachably connected inside the nipple component. The flow-blocking component is used to separate the liquid storage space formed by the bottle body and the nipple component, and a milk tank communicating with the liquid storage space is formed between the flow-blocking component and the sucking part of the nipple component.
[0010] Furthermore, the flow-blocking component includes an annular portion and a diaphragm formed on the side of the annular portion, the annular portion being tightly fitted to the inner wall of the nipple component.
[0011] Furthermore, an inner shrinkage groove and an inner shrinkage notch are formed at intervals around the annular portion, and a retaining protrusion is formed between the inner shrinkage groove and the inner shrinkage notch.
[0012] Furthermore, two annular protrusions are formed at intervals on the inner side of the nipple component, and a groove is formed between the two annular protrusions.
[0013] The two annular protrusions are respectively engaged in the inner retractable annular groove and the inner retractable notch, and the protrusions are engaged and adapted to the groove.
[0014] Furthermore, the membrane is bent toward the side of the suction portion, and at least one liquid hole is formed on the bent surface of the membrane.
[0015] Furthermore, a simulation structure is provided on the intercepting component and / or the suction part.
[0016] Furthermore, the simulation structure includes a plurality of protrusions formed on the diaphragm, the side of the protrusions facing the sucking part contacting the inner wall of the nipple component.
[0017] Furthermore, the surface of the protrusion has a spherical structure.
[0018] Furthermore, a plurality of simulated pillars are formed on the inner side of the suction part, and the plurality of simulated pillars extend along the length direction of the suction part.
[0019] Furthermore, the end face of the suction part has a plurality of suction holes, which surround the outer side of the plurality of simulated columns.
[0020] The anti-choking milk bottle proposed in this utility model has the following advantages:
[0021] This invention employs a design that installs a flow-blocking component inside the nipple. When the baby inverts the bottle to suckle, this component blocks and intercepts the milk inside the bottle, preventing milk from accumulating completely inside the nipple. Since only a small amount of milk accumulates inside the milk container, this small amount of milk will not cause splashing. Only when the baby sucks can the milk slowly enter the milk container along the flow-blocking component and then flow into the baby's mouth, thus achieving the effect of preventing choking.
[0022] Secondly, the detachable and replaceable design of the intercepting component allows for the replacement of different liquid holes with different intercepting components according to the sucking volume of infants of different ages, thereby further improving the anti-choking effect while ensuring normal milk intake. Attached Figure Description
[0023] Figure 1 This is a cross-sectional view of the present invention;
[0024] Figure 2 This is a cross-sectional view of the nipple component of this utility model;
[0025] Figure 3 The flow-blocking component of this utility model is three-dimensional. Figure 1 ;
[0026] Figure 4 The flow-blocking component of this utility model is three-dimensional. Figure 2 .
[0027] In the diagram: 1. Bottle body; 2. Nipple component; 21. Suction part; 211. Suction hole; 22. Ring protrusion; 23. Slot part; 3. Flow interception component; 31. Ring-shaped part; 311. Inwardly recessed ring groove; 312. Inwardly recessed notch; 313. Slot protrusion; 32. Diaphragm; 33. Liquid hole; 4. Milk tank; 5. Simulation structure; 51. Protrusion; 52. Simulation column. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0029] Reference Figure 1-4 As one embodiment of this utility model, a choking-proof baby bottle is disclosed. Specifically, the baby bottle includes a bottle body 1 and a nipple component 2 connected to the upper part of the bottle body 1. The nipple component 2 includes a connector and a nipple. The connector is threaded to the bottle body 1 to achieve a detachable connection. Both the nipple and the connector are made of silicone and are fixedly connected to each other. This method is a conventional method for those skilled in the art and will not be described in detail here.
[0030] A flow-blocking component 3 is detachably connected inside the nipple component 2. The flow-blocking component 3 is used to separate the liquid storage space formed by the bottle body 1 and the nipple component 2, and a milk tank 4 that communicates with the liquid storage space is formed between the flow-blocking component 3 and the sucking part 21 of the nipple component 2.
[0031] Of course, in this embodiment, an air inlet valve can also be installed at the bottom of the bottle body 1 to achieve the purpose of air intake from the bottom when pumping milk, so as to avoid the generation of air bubbles. The air inlet valve is a silicone one-way valve, and its specific structure is existing technology, which will not be described in detail here.
[0032] In some embodiments, the flow-blocking component 3 of the present invention includes an annular portion 31 and a diaphragm 32 formed on the side of the annular portion 31. The annular portion 31 is tightly fitted to the inner wall of the nipple component 2. Of course, in this embodiment, the annular portion 31 and the diaphragm 32 are integrally molded. Preferably, the annular portion 31 and the diaphragm 32 are also made of silicone.
[0033] Based on the above embodiments, in this embodiment, an inwardly contracted annular groove 311 and an inwardly contracted notch 312 are formed at intervals around the annular portion 31. A retaining protrusion 313 is formed between the inwardly contracted annular groove 311 and the inwardly contracted notch 312. The inwardly contracted notch 312 is formed on the side of the annular portion 31, and a bevel is also formed on the side of the retaining protrusion 313 near the inwardly contracted notch 312.
[0034] Furthermore, in this embodiment, two annular protrusions 22 are formed at intervals on the inner side of the nipple component 2, and a slot 23 is formed between the two annular protrusions 22.
[0035] The two annular protrusions 22 are respectively engaged in the inner retracted annular groove 311 and the inner retracted notch 312. The engaging protrusion 313 is engaged and adapted to the engaging groove 23. Of course, in this embodiment, the shape of the engaging groove 23 is adapted to the shape of the engaging protrusion 313. It also has a slope. The design of two slopes facilitates the subsequent disassembly of the entire flow-blocking component 3.
[0036] In summary, this embodiment employs the design of annular protrusion 22 with the inner retractable annular groove 311 and inner retractable notch 312 to achieve the connection and fixation of the entire annular part 31. When the entire flow-blocking component 3 needs to be installed, simply push the flow-blocking component 3 inward until the two annular protrusions 22 are respectively engaged with the inner retractable annular groove 311 and inner retractable notch 312, and the assembly can be completed. The purpose of this detachable connection is to enable the disassembly and replacement of the entire flow-blocking component 3, while achieving the effect of convenient disassembly and cleaning.
[0037] Furthermore, in this invention, the diaphragm 32 is bent toward the side of the suction part 21, and at least one liquid hole 33 is formed on the bent surface of the diaphragm 32.
[0038] Preferably, the flow-blocking component 3 described in this embodiment can be designed with multiple different specifications according to the number of liquid holes 33. Since the liquid guiding capacity of different liquid holes 33 is different, the appropriate flow-blocking component 3 can be replaced according to the sucking needs of infants of different ages. For example, a flow-blocking component 3 with a single liquid hole 33 is used for newborns, while a flow-blocking component 3 with multiple liquid holes 33 is used for older toddlers, thus meeting the sucking needs of infants of different ages.
[0039] In a preferred embodiment, the present invention further includes a simulation structure 5 on the intercepting component 3 and / or the suction part 21.
[0040] Preferably, in this embodiment, both the intercepting component 3 and the sucking part 21 are provided with a simulation structure 5. The two simulation structures 5 have different structures and are used to jointly simulate the sensation of the mother's breast and improve the baby's adaptability.
[0041] Specifically, in this embodiment, the simulation structure 5 includes a plurality of protrusions 51 formed on the diaphragm 32, and the side of the protrusions 51 facing the sucking part 21 contacts the inner wall of the nipple component 2.
[0042] Furthermore, in this embodiment, the surface of the protrusion 51 has a spherical structure, which is formed by the outward pressing of the membrane 32. The arrangement of the protrusions 51 can be arranged according to the actual distribution of mammary glands to imitate the outer structure of the mother's areola, so as to achieve the best simulation effect.
[0043] In a further embodiment, a plurality of simulated pillars 52 are formed on the inner side of the sucking part 21, and the plurality of simulated pillars 52 extend along the length direction of the sucking part 21. Furthermore, a plurality of sucking holes 211 are provided on the end face of the sucking part 21, and the plurality of sucking holes 211 surround the outer side of the plurality of simulated pillars 52. The simulated pillars 52 are used to simulate the internal structure of a mother's nipple to further enhance the simulation effect.
[0044] In summary, this invention employs a design that incorporates a flow-blocking component 3 inside the nipple component 2. When the baby inverts the bottle to suckle, this component blocks and intercepts the milk inside the bottle body 1, preventing milk from accumulating completely inside the nipple component 2. Since only a small amount of milk accumulates inside the milk container 4, this small amount of milk will not cause splashing. Only during sucking can the milk slowly enter the milk container 4 along the flow-blocking component 3 and then flow into the baby's mouth, thus achieving the effect of preventing choking. Furthermore, the flow-blocking component 3 is detachable and replaceable, allowing for the replacement of different flow-blocking components 3 with different liquid holes 33 according to the sucking volume of infants of different ages. This further enhances the anti-choking effect while ensuring a normal milk intake.
[0045] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A burp-friendly baby bottle, characterized in that, The utility model relates to a bottle (1) and the nipple piece (2) connected above the bottle (1), the nipple piece (2) is detachably connected with the cut-off part (3) in the inside, the cut-off part (3) is used to separate the liquid storage space formed by the bottle (1) and the nipple piece (2), and the cut-off part (3) and the sucking part (21) of the nipple piece (2) form a milk chamber (4) that communicates with the liquid storage space. The cut-off part (3) includes a ring part (31) and a diaphragm (32) formed on the side of the ring part (31), and the ring part (31) is tightly attached to the inner wall of the nipple piece (2). An inner contraction ring groove (311) and an inner contraction notch (312) are formed on the periphery of the ring part (31), and the inner contraction ring groove (311) and the inner contraction notch (312) form a clamping convex part (313) therebetween.
2. A burp-friendly baby bottle as defined in claim 1, wherein: Two ring protrusions (22) are formed on the inner side of the nipple piece (2), and a clamping groove part (23) is formed between the two ring protrusions (22).
3. A spit-resistant baby bottle according to claim 2, wherein: The two ring protrusions (22) are clamped in the inner contraction ring groove (311) and the inner contraction notch (312) respectively, and the clamping convex part (313) is clamped and matched with the clamping groove part (23).
4. A spit-resistant baby bottle according to claim 3, wherein: The diaphragm (32) is curved on the side facing the sucking part (21), and at least one liquid hole (33) is formed on the curved surface of the diaphragm (32). An imitation structure (5) is further provided on the cut-off part (3) and / or the sucking part (21).
5. A burp-friendly baby bottle as defined in claim 2, wherein: The imitation structure (5) includes a plurality of protrusions (51) formed on the diaphragm (32), and the protrusions (51) are in contact with the inner wall of the nipple piece (2) on the side facing the sucking part (21).
6. A spit-resistant baby bottle according to any one of claims 2-5, wherein: The surface of the protrusions (51) is in spherical structure.
7. A spit-resistant baby bottle according to claim 6, wherein: A plurality of imitation columns (52) are further formed on the inner side of the sucking part (21), and the plurality of imitation columns (52) extend along the length direction of the sucking part (21).
8. A spit-resistant baby bottle according to claim 7, wherein: A plurality of sucking holes (211) are formed on the end face of the sucking part (21), and the plurality of sucking holes (211) surround the outer side of the plurality of imitation columns (52).
9. A burp-friendly baby bottle as defined in claim 6, wherein: 10. A burp-friendly baby bottle as defined in claim 9, wherein: