A multi-functional feeding bottle and an inner cup assembly that can be built into the bottle
Patent Information
- Application Number
- CN202520149582.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-01-22
AI Technical Summary
1、用汤匙等压着舌头直接灌,容易造成呛咳,存在安全隐患;
[0015] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly relies on the setting of an inner cup assembly, which can be built into the feeding bottle. The inner cup assembly includes a cup body, a cup lid, a sealing bead, and an inner stop. The cup body is detachably set in the original first accommodating space of the feeding bottle. The inside of the cup body has a second accommodating space and a third accommodating space that are isolated from each other. The cup lid is set in the second accommodating space, and the top of the cup lid is provided with an outlet. The sealing bead can move to selectively seal or open the outlet. The inner stop is provided with a first through hole, through which the second accommodating space passes through the first through hole and the movable space passes through the outlet and the feeding outlet. The enclosing wall of the third accommodating space is provided with a second through hole, through which the first accommodating space passes through the second through hole and the third accommodating space passes through the third accommodating space and the feeding outlet. Its structure is simple, ingenious, and practical. When feeding milk, a slight rotation of the bottle can instantly switch to medication feeding, and a slight rotation can instantly switch back to milk feeding. When using the bottle for medication feeding or regular milk feeding, the shape of the feeding bottle will not change.
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Figure CN224655676U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of feeding bottles, and in particular to a multifunctional feeding bottle and an inner cup assembly that can be built into a baby bottle, which is mainly used, but not limited to, for feeding oral medications to infants and young children. Background Technology
[0002] As is well known, infants and young children often refuse to take medicine due to its taste. To address this issue, there are currently three main methods for administering medication to infants and young children: 1. Using a spoon or similar object to press down on the tongue and pour directly into the mouth can easily cause choking and poses a safety hazard; 2. Design a dedicated medicine feeder, such as a squeeze dropper, which is placed in or inserted into the infant's mouth. Squeezing the dropper allows the medicine to enter the infant's mouth. This method is slightly simpler to operate than the first method, but it is still a passive way of feeding medicine to infants and young children, and there is still a risk of choking and other safety hazards. 3. Encourage infants and toddlers to suckle actively. The design is in the shape of a baby bottle (or a baby bottle-like shape). By taking advantage of the infants' and toddlers' familiarity with their usual baby bottles, they can unknowingly swallow the medicine while drinking milk. For example, CN201840673 U discloses a feeding bottle for administering medicine, comprising a nipple, a bottle body, and a partition. The partition divides the inner cavity of the bottle into a milk chamber and a medicine chamber. Each milk chamber and medicine chamber has two holes, one leading to the nipple and the other leading to the outside of the bottle. In use, an appropriate amount of milk is placed in the milk chamber, and the medicine is placed in the medicine chamber. The bottle is held in the right hand, nearly horizontal, with the milk chamber and medicine chamber facing upwards. The thumb presses down on the milk chamber's outer hole, and the middle finger presses down on the medicine chamber's outer hole. Because the milk chamber's inner hole is low, when the baby begins to suckle, the milk flows from the milk chamber's inner hole through the nipple to the baby's mouth. The medicine chamber opening is positioned high, preventing the medicine from flowing to the nipple. The baby continues sucking, and the bottle is quickly turned upright with the bottom facing up. The milk chamber opening is pressed down, and the medicine chamber opening is released, allowing the medicine to quickly pass through the medicine chamber opening, the nipple, and the baby's mouth, completing the medication administration. Because this relies on the placement of the milk and medicine chamber openings on the bottle, this type of medicine-administering bottle is not suitable for regular use as a baby bottle. It is essentially a dedicated medicine-administering bottle, meaning that families need to purchase this bottle specifically for administering medication, incurring additional costs for medication purchases and requiring additional storage and management. For example, CN211461274 U discloses a baby bottle suitable for feeding medicine to infants, including a bottle body and a bottle cap. The bottle cap has a nipple on the top. A medicine bottle with openings at the top and bottom is installed between the bottle body and the bottle cap and cooperates with the bottle body and the bottle cap. A medicine mixing device that can rotate around the inner wall of the medicine bottle is embedded in the inner wall of the medicine bottle. The medicine mixing device includes an outer ring, an inner ring, and multiple fan-shaped sliding covers. The multiple sliding covers are inserted and closed to form a closed circle. The lower end of the inner ring has a medicine container that is integral with the inner ring. One end of the sliding cover is movably connected to the inner ring and forms a fulcrum, and the other end... The bottle is connected to an outer ring via a movable rod. The outer ring has a push rod on its outer wall that rotates with the outer ring and drives the sliding cover to rotate around the fulcrum, thus opening and closing the cover. The push rod protrudes from the outer wall of the medicine bottle, allowing the liquid or powder medicine to slowly mix into the milk, so that the infant can unknowingly ingest the medicine while drinking milk. Because the bottle adopts a segmented design and the powder box is also detachable, when medication is not needed, both the medicine bottle and the powder box can be removed, and the bottle body and cap can be used together as a regular baby bottle. However, it still has some shortcomings: (1) Due to its structural design, it is limited to the use of "powder + milk". It is not suitable for "medicine + milk". (2) It is necessary to slowly push the pusher clockwise during the infant's milk drinking process so that the medicine slowly mixes into the milk, which is more troublesome to operate. (3) When using it for feeding medicine and when using it as a regular baby bottle, the shape of the entire bottle (mainly the height) is significantly different, which may break the infant's familiarity with their usual baby bottle and make it difficult to feed medicine (or after feeding medicine once, it is difficult to feed medicine a second time).
[0003] Therefore, a new technical solution needs to be researched to address the above problems. Utility Model Content
[0004] In view of this, the present invention addresses the deficiencies of the existing technology and its main purpose is to provide a multifunctional feeding bottle and an inner cup assembly that can be built into the baby bottle. Its structure is simple, ingenious and practical. When feeding, the bottle can be rotated slightly to switch to medication feeding and can be rotated to switch to feeding milk feeding. The shape of the feeding bottle will not change when used for medication feeding or normal feeding.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A multi-functional feeding bottle includes: The bottle body has a first receiving space inside and an opening at the top that extends downward through the first receiving space; A bottle cap, which is detachably mounted on the bottle body and covers the opening, with a feeding outlet exposed at its top; The inner cup assembly includes a cup body, a cup lid, a sealing bead, and an inner baffle. The cup body is detachably disposed within the first accommodating space. The interior of the cup body has a second accommodating space and a third accommodating space that are isolated from each other. Both the second and third accommodating spaces are open at their upper ends. The cup lid is disposed within the second accommodating space and has an outlet at its top. The inner baffle is disposed on the inner side of the cup lid to form an movable space with the cup lid. The sealing bead is located within the movable space and is movable to selectively seal or open the outlet. The inner baffle has a first through hole through which the second accommodating space passes through the first through hole to the movable space, and the movable space passes through the outlet to the feeding outlet. The enclosing wall of the third accommodating space has a second through hole through which the first accommodating space passes through the second through hole to the third accommodating space and through the third accommodating space to the feeding outlet.
[0006] As a preferred embodiment, the cup lid is detachably mounted on the cup body.
[0007] As a preferred embodiment, the outer peripheral surface of the cup lid is provided with a first external thread, and the inner peripheral surface of the second accommodating space is provided with a first internal thread, wherein the first external thread is threadedly connected to the first internal thread.
[0008] As a preferred embodiment, the inner baffle is detachably mounted on the cup lid.
[0009] As a preferred embodiment, the inner circumferential surface of the cup lid is provided with a second internal thread, and the outer circumferential surface of the inner stop is provided with a second external thread, wherein the second external thread is threadedly connected to the second internal thread.
[0010] As a preferred embodiment, the sealing bead is inserted into the movable space from the bottom of the cup lid, the inner baffle is installed on the inner side of the bottom of the cup lid from bottom to top, and the cup lid is installed on the cup body from top to bottom.
[0011] As a preferred embodiment, the outer periphery of the cup body extends outward with a flange, the bottom surface of the flange being located at the top of the bottle body, and the bottle cap being located at the top surface of the flange.
[0012] As a preferred embodiment, the top of the bottle cap is provided with a feeding nozzle, and the feeding outlet is provided on the feeding nozzle.
[0013] An inner cup component that can be built into a baby bottle includes: The cup body has a second and a third accommodating space that are isolated from each other; both the second and third accommodating spaces are open at the top; the enclosing wall of the third accommodating space is provided with a second through hole, and the third accommodating space passes through the second through hole to the outer periphery of the second accommodating space; The cup lid is disposed within the second receiving space, and its top is provided with an outlet that extends downward through the second receiving space; An inner baffle is provided on the inner side of the cup lid to form an active space with the cup lid. The inner baffle is provided with a first through hole. The second receiving space passes through the first through hole to the active space. The active space passes through the outlet to the outside of the upper opening of the second receiving space. A stop-lock bead, located within the active space and movable to selectively seal or open the outlet.
[0014] As a preferred embodiment, the outer periphery of the cup body extends outward with a flange for being clamped and limited by the cap and body of the bottle, the cup cap is detachably mounted on the cup body, and the inner baffle is detachably mounted on the cup cap.
[0015] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly relies on the setting of an inner cup assembly, which can be built into the feeding bottle. The inner cup assembly includes a cup body, a cup lid, a sealing bead, and an inner stop. The cup body is detachably set in the original first accommodating space of the feeding bottle. The inside of the cup body has a second accommodating space and a third accommodating space that are isolated from each other. The cup lid is set in the second accommodating space, and the top of the cup lid is provided with an outlet. The sealing bead can move to selectively seal or open the outlet. The inner stop is provided with a first through hole, through which the second accommodating space passes through the first through hole and the movable space passes through the outlet and the feeding outlet. The enclosing wall of the third accommodating space is provided with a second through hole, through which the first accommodating space passes through the second through hole and the third accommodating space passes through the third accommodating space and the feeding outlet. Its structure is simple, ingenious, and practical. When feeding milk, a slight rotation of the bottle can instantly switch to medication feeding, and a slight rotation can instantly switch back to milk feeding. When using the bottle for medication feeding or regular milk feeding, the shape of the feeding bottle will not change.
[0016] To more clearly illustrate the structural features and effects of this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0017] Figure 1 This is a three-dimensional assembly diagram of a multifunctional feeding bottle according to an embodiment of the present invention (the assembly diagram is the same if the inner cup component is disassembled). Figure 2This is a first exploded view of a multifunctional feeding bottle according to an embodiment of the present utility model; Figure 3 This is a second exploded view of a multifunctional feeding bottle according to an embodiment of the present invention; Figure 4 This is a third exploded view of a multifunctional feeding bottle according to an embodiment of the present utility model; Figure 5 This is a fourth exploded view of a multifunctional feeding bottle according to an embodiment of the present utility model; Figure 6 This is a fifth exploded view of a multifunctional feeding bottle according to an embodiment of the present utility model; Figure 7 This is a cross-sectional view of a multifunctional feeding bottle according to an embodiment of the present invention (during feeding). Figure 8 This is a cross-sectional view of a multifunctional feeding bottle according to an embodiment of the present invention (when rotating the bottle to switch to medication feeding). Detailed Implementation
[0018] Please refer to Figures 1 to 8 As shown, it illustrates the specific structure of an embodiment of the present invention.
[0019] In the description of this utility model, it should be noted that the terms "upper", "lower", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0020] A multi-functional feeding bottle, mainly referring to a baby bottle that can also be used to administer medicine, or more generally referring to a feeding bottle that can switch between providing two different liquids (e.g., liquid A and liquid B).
[0021] In this embodiment, it is equivalent to adding an inner cup assembly to a conventional baby bottle. Specifically, this multifunctional feeding bottle includes a bottle body 10, a cap 20, a nipple 30, and an inner cup assembly, similar to a conventional baby bottle.
[0022] The bottle body 10 has a first receiving space 11 inside, and its top has an opening that extends downward through the first receiving space 11; the bottle body 10 can be made of plastic, glass or other suitable materials.
[0023] The bottle cap 20 is detachably mounted on the bottle body 10 and covers the opening, with a feeding outlet 31 exposed at its top. A feeding nipple (e.g., a pacifier) is located on the top of the bottle cap 20, and the feeding outlet 31 is situated on the feeding nipple. Specifically, the lower end of the pacifier 30 is inserted into the bottle cap 20, and the upper end of the pacifier 30 extends beyond the upper end of the bottle cap 20. A sucking hole is located at the top of the pacifier 30, serving as the feeding outlet 31. The bottle cap 20 typically includes an annular peripheral wall and an annular top wall integrally connected to the top of the annular peripheral wall. The lower end of the pacifier 30 has an outwardly extending mounting edge, which is confined below the annular top wall of the bottle cap 20, preventing the pacifier 30 from detaching upwards.
[0024] The inner cup assembly includes a cup body 41, a cup lid 42, an inner stop 43, and a stop bead 44. The cup body 41 is detachably disposed within the first accommodating space 11. The interior of the cup body 41 has two mutually isolated accommodating spaces 411 and 412, both of which are open at their upper ends. The cup lid 42 is disposed within the second accommodating space 411, and an outlet 421 is provided at the top of the cup lid 42. The inner stop 43 is disposed on the inner side of the cup lid 42 to form a movable space with the cup lid 42. The stop-sealing bead 44 is located within the active space and is movable to selectively seal or open the outlet 421. The inner baffle 43 is provided with a first through hole 431. The second accommodating space 411 passes through the active space via the first through hole 431, and the active space passes through the outlet 421 to the feeding outlet 131. The enclosing wall of the third accommodating space 412 is provided with a second through hole 413. The first accommodating space 11 passes through the second through hole 413 to the third accommodating space 412, and passes through the third accommodating space 412 to the feeding outlet 131.
[0025] Furthermore, the cup lid 42 is detachably mounted on the cup body 41. For example, the outer circumferential surface of the cup lid 42 is provided with a first external thread, and the inner circumferential surface of the second receiving space 411 is provided with a first internal thread, with the first external thread threadedly connected to the first internal thread.
[0026] Furthermore, the inner stop 43 is detachably mounted on the cup lid 42. For example, the inner circumferential surface of the cup lid 42 is provided with a second internal thread, and the outer circumferential surface of the inner stop 43 is provided with a second external thread, the second external thread being threadedly connected to the second internal thread.
[0027] During assembly, the sealing bead 44 is inserted into the movable space from the bottom of the cup lid 42, the inner stop 43 is installed from bottom to top on the inner side of the bottom of the cup lid 42, and the cup lid 42 is installed from top to bottom on the cup body 41. Since the outer periphery of the cup body 41 has an outwardly extending flange, the bottom surface of the flange is limited to the top of the bottle body 10. For better sealing, a sealing ring 45 can be placed between the bottom surface of the flange and the top surface of the bottle body, and the bottle cap 20 is limited to the top surface of the flange. Specifically, in this embodiment, the sealing ring 45 is placed on the top of the bottle body 10, and the bottom surface of the flange presses against the sealing ring 45 to limit its position on the top of the bottle body 10. The mounting clip of the nipple 30 is positioned between the top surface of the flange and the bottom surface of the annular top wall of the bottle cap 20.
[0028] like Figure 7 As shown (horizontal dashed line indicates liquid level), the second through-hole 413 faces downwards. When the baby sucks, the milk in the first receiving space 11 enters the third receiving space 412 through the second through-hole 413, and then enters the nipple 30's suction mouth through the third receiving space 412. After the baby has sucked for a while, the bottle is rotated so that the second through-hole 413 faces upwards. Figure 8 As shown (horizontal dashed line indicates liquid level), slightly shaking the bottle causes the stop-seal bead 44 to move and disengage, opening the outlet 421. When the baby sucks, the medicine in the second receiving space 411 enters the active space through the first through hole 431, and then enters the nipple 30 suction mouth from the active space through the outlet 421. After the baby has sucked the medicine, the bottle can be rotated so that the second through hole 413 faces downwards, switching back to the previous position. Figure 7 As shown, in cases with a large amount of medicine, the feeding can be switched between milk and medicine repeatedly without the baby noticing, ensuring that the medication is given smoothly and effectively solving the problem of difficulty in giving medicine to infants.
[0029] Next, an inner cup assembly that can be built into a baby bottle is provided, which includes a cup body 41, a cup lid 42, an inner stop 43 and a stop seal bead 44; The cup body 41 has a second accommodating space 411 and a third accommodating space 412 that are isolated from each other; both the second accommodating space 411 and the third accommodating space 412 are open at the top; the enclosing wall of the third accommodating space 412 is provided with a second through hole 413, and the third accommodating space 412 passes through the second through hole 413 to the outer peripheral space of the second accommodating space 411. The cup lid 42 is disposed in the second receiving space 411, and its top is provided with an outlet 421 that penetrates downward through the second receiving space 411; The inner baffle 43 is disposed on the inner side of the cup lid 42 to form an active space with the cup lid 42. The inner baffle 43 is provided with a first through hole 431. The second accommodating space 411 passes through the active space through the first through hole 431. The active space passes through the outlet 421 to the outside of the upper opening of the second accommodating space 411. The sealing bead 44 is located within the active space and is movable to selectively seal or open the outlet 421.
[0030] Furthermore, the outer periphery of the cup body 41 extends outward with a flange for being clamped and limited by the cap of the baby bottle and the bottle body 10. The cup lid 42 is detachably mounted on the cup body 41, and the inner baffle 43 is detachably mounted on the cup lid 42.
[0031] In actual production and sales, a multi-functional feeding bottle can be provided, or only an inner cup component that can be built into a baby bottle can be produced and sold. Since common baby bottles generally have standard and wide mouth diameters, the inner cup component only needs to ensure that the flange of its cup body 41 can match the standard or wide mouth diameter. People can purchase the inner cup component as needed and install it on their own baby bottles, which is very convenient, has a low purchase cost, and facilitates daily storage and management of the item.
[0032] The key design feature of this utility model lies in its inner cup assembly, which can be built into the feeding bottle. The inner cup assembly includes a cup body 41, a cup lid 42, a sealing bead 44, and an inner baffle 43. The cup body 41 is detachably installed within the original first receiving space 11 of the feeding bottle. The interior of the cup body 41 has two mutually isolated receiving spaces 411 and 412. The cup lid 42 is located within the second receiving space 411, and its top has an outlet 421. The sealing bead 44 is movable to selectively seal or open the outlet 421. The inner baffle 43 has... The bottle has a first through hole 431, through which the second receiving space 411 connects to the active space, and through the outlet 421 to the feeding outlet 131. The enclosing wall of the third receiving space 412 has a second through hole 413, through which the first receiving space 11 connects to the third receiving space 412, and through the third receiving space 412 to the feeding outlet 131. Its structure is simple, ingenious, and practical. When feeding, the bottle can be switched to medicine feeding by slightly rotating it, and can also be switched to milk feeding by rotating it. The shape of the feeding bottle will not change when using it for medicine feeding or normal milk feeding.
[0033] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A multifunctional feeding bottle, characterized in that, Including: The bottle body has a first receiving space inside and an opening at the top that extends downward through the first receiving space; A bottle cap, which is detachably mounted on the bottle body and covers the opening, with a feeding outlet exposed at its top; The inner cup assembly includes a cup body, a cup lid, a sealing bead, and an inner baffle. The cup lid is detachably mounted on the cup body. The inner baffle is detachably mounted on the cup lid. The cup body is detachably mounted within a first accommodating space. The interior of the cup body has two mutually isolated accommodating spaces: a second accommodating space and a third accommodating space. Both the second and third accommodating spaces are open at their upper ends. The cup lid is located within the second accommodating space and has an outlet at its top. The inner baffle is located inside the cup lid to form a movable space with the cup lid. The sealing bead is located within the movable space and can move to selectively seal or open the outlet. The inner baffle has a first through hole through which the second accommodating space passes through the first through hole to the movable space, and through the outlet to the feeding outlet. The enclosing wall of the third accommodating space has a second through hole through which the first accommodating space passes through the second through hole to the third accommodating space, and through the third accommodating space to the feeding outlet.
2. A multifunctional feeding bottle according to claim 1, characterized in that, The outer circumferential surface of the cup lid is provided with a first external thread, and the inner circumferential surface of the second accommodating space is provided with a first internal thread, with the first external thread threadedly connected to the first internal thread.
3. A multifunctional feeding bottle according to claim 1, characterized in that, The inner circumferential surface of the cup lid is provided with a second internal thread, and the outer circumferential surface of the inner stop is provided with a second external thread, the second external thread being threadedly connected to the second internal thread.
4. A multifunctional feeding bottle according to claim 1, characterized in that, The sealing bead is inserted into the movable space from the bottom of the cup lid, the inner baffle is installed on the inner side of the bottom of the cup lid from bottom to top, and the cup lid is installed on the cup body from top to bottom.
5. A multifunctional feeding bottle according to claim 1, characterized in that, The outer periphery of the cup body extends outward with a flange, the bottom surface of the flange being located at the top of the bottle body, and the bottle cap being located at the top surface of the flange.
6. A multifunctional feeding bottle according to claim 1, characterized in that, The bottle cap is provided with a sucking mouth on the top, and the feeding outlet is provided on the sucking mouth.
7. An inner cup assembly that can be built into a baby bottle, characterized in that, Including: The cup body has a second and a third accommodating space that are isolated from each other; both the second and third accommodating spaces are open at the top; the enclosing wall of the third accommodating space is provided with a second through hole, and the third accommodating space passes through the second through hole to the outer periphery of the second accommodating space; A cup lid is disposed within the second receiving space, and its top is provided with an outlet that extends downward through the second receiving space; the cup lid is detachably disposed on the cup body; An inner baffle is disposed on the inner side of the cup lid to form an movable space with the cup lid. The inner baffle is provided with a first through hole, and the second receiving space passes through the first through hole to the movable space. The movable space passes through the outlet to the outside of the upper opening of the second receiving space. The inner baffle is detachably disposed on the cup lid. A stop-lock bead, located within the active space and movable to selectively seal or open the outlet.
8. The inner cup assembly that can be built into a baby bottle according to claim 7, characterized in that, The outer periphery of the cup body extends outward with a flange for being clamped and limited by the cap and body of the bottle.
Citation Information
Patent Citations
Feeding medicine milk bottle
CN201840673U
Feeding bottle suitable for feeding medicine to babies
CN211461274U