Milk choking prevention device for newborns
Through the innovative design of the multi-functional bottle and temperature control module, the problems of inaccurate temperature control and bacterial contamination during the preparation of formula milk powder in newborn anti-choking devices have been solved, achieving stable preparation and safe drinking of formula milk powder, and improving the dietary safety of newborns and the stability of device use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-25
- Publication Date
- 2026-04-07
AI Technical Summary
Existing anti-choking devices for newborns do not have precise temperature control during formula preparation, which can easily lead to the loss of nutrients in the formula or abdominal distension and diarrhea in newborns. Furthermore, the natural cooling process may introduce bacterial contamination, affecting drinking safety.
The bottle features a multi-functional design, incorporating lightweight metal materials, a temperature control module, and a charging structure. It achieves precise temperature control through insulating blocks and rotating parts, avoiding contamination from natural cooling. It also utilizes vibrating and rotating parts to promote the blending of milk powder and warm water.
It achieves precise control of milk powder brewing temperature within the range of 40℃-60℃, ensuring that the milk powder's nutrients are not lost, avoiding bacterial contamination, improving drinking safety, simplifying the cleaning process, and enhancing the stability and safety of the device.
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Figure CN121796231A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of new-born feeding utensils, in particular to a new-born anti-choking milk device. BACKGROUND
[0002] New-born generally refers to infants from umbilical cord ligation to 28 days after birth, so that the infant needs to be fed milk after birth, so that the amount of milk sucked by the new-born each time can be controlled when feeding the new-born, avoiding the new-born spitting up caused by excessive milk and preventing the danger of blocking the respiratory tract caused by excessive milk; Based on the above, the present inventor has found through searching: Firstly, the "new-born anti-choking milk device" with the application number "CN202022476294.9" is convenient for disassembling the device, thereby facilitating the parents of the new-born to clean the inside of the device, making it easier to clean the residual milk, preventing the residual milk from affecting the subsequent use of the device, and protecting the health of the new-born; Secondly, the "new-born anti-choking milk device" with the application number "CN202221221761.6" is capable of adjusting the capacity of the inside of the feeding bottle according to the amount of milk each time, discharging the excess air in the feeding bottle after the milk is finished, and controlling the outflow of the milk through the setting of the fixing plate, the first through hole, the second through hole, the mounting cylinder and the shielding plate, thereby protecting the new-born, effectively reducing the possibility of the new-born choking on milk, and solving the problem of the new-born choking on milk when using the feeding bottle to drink milk; However, the following defects still exist: since the suitable temperature for milk powder infusion is between 40℃-60℃, but after boiling, the water temperature is about 100℃, which is not conducive to the infusion of milk powder (high temperature can damage the nutrients of milk powder, and low temperature can easily cause abdominal distension or diarrhea in new-borns), so it is necessary to combine the space gas to cool naturally to a constant temperature state (40℃-60℃ range), and then infuse the milk powder, during which the space gas contains bacteria impurities, which can contaminate the purity of the milk during the natural cooling process, cannot guarantee the safety of the new-born, and can easily cause bacteria to invade the new-born's body. SUMMARY
[0003] The technical scheme adopted by the present application to achieve the technical purpose is: a new-born baby anti-choking device, which comprises a handrail, a multifunctional bottle body, a sealing cover, a flow control ring and a flexible nipple, wherein the handrail is provided with four groups and is fixed to the edge of the multifunctional bottle body in a ring shape, the upper end of the multifunctional bottle body is threadedly connected with the sealing cover, the flow control ring is embedded in the center of the upper end of the sealing cover, and the flexible nipple is perpendicular to the sealing cover through the flow control ring and communicates with the inside of the multifunctional bottle body.
[0004] As a further improvement of the present application, the multifunctional bottle body is provided with a charging structure, a food-grade bottle body, a coincident ring, a threaded wall and a brewing cavity, the charging structure is arranged at the lower end of the food-grade bottle body and is perpendicular to each other, the top of the food-grade bottle body is connected with the coincident ring, the threaded wall is arranged in the inner wall area of the coincident ring, the brewing cavity is developed in the inside of the food-grade bottle body, the food-grade bottle body is threadedly connected with the sealing cover through the threaded wall of the coincident ring, and the inside of the flexible nipple communicates with the above of the brewing cavity of the food-grade bottle body; the charging structure and the food-grade bottle body are both composed of light metal blocks, and the threaded wall in the inside of the coincident ring and the brewing cavity of the food-grade bottle body are both developed in a vertical direction.
[0005] As a further improvement of the present application, the food-grade bottle body is provided with a temperature insulation layer, a polished inner wall, a connecting end and a temperature control module, the inside of the temperature insulation layer is an integrated structure with the polished inner wall, the surface layer of the polished inner wall is developed with the connecting end, the temperature control module is embedded in the polished inner wall through the connecting end and is electrically connected with the charging structure; the polished inner wall is in a ring shape and is developed with four rectangular connecting ends, the temperature control module is in a cuboid shape and is provided with four groups, and there is a combined spacing between each group.
[0006] As a further improvement of the present application, the temperature control module is provided with a power block, an insulating block, a vibration body, a rotating part and a movable block, the power block is embedded in the side of the insulating body, the vibration block is coincident with the insulating block and is electrically connected with the power block, the rotating part is inserted into the inside of the insulating block through the center of the vibration body and is electrically connected with the power block, the movable block is perpendicular to the rotating part and is movably connected, and the power block is inserted into the inside of the connecting end and is electrically connected with the charging structure; the power block is provided with two blocks on the insulating block, the insulating block and the vibration body are both in a rectangular shape, the rotating part is in a round rod shape and the area of the movable block is consistent with the vibration body, so that the rotating part has an extension function, and the extension length is consistent with the combined thickness of the insulating block and the vibration body.
[0007] As a further improvement of the application, the power block is provided with a contact layer, a solid body, a conducting block, a restraint rod, the contact layer is integrated with the lower end of the solid body, the upper end of the solid body is provided with the conducting block, the restraint rod is arranged at the side of the solid body and is fixedly connected, and the solid body is embedded in the side of the insulating block through the conducting block.
[0008] As a further improvement of the application, the charging structure is provided with a communication disc, a parallel base, a limiting ring, a slot and an adjusting wheel, the communication disc and the parallel base coincide with each other and are at the same center point, the limiting ring is arranged at the upper end center point of the parallel base, the slot is vertically developed at the center of the parallel base through the limiting ring and is communicated with the communication disc, the adjusting wheel is positioned at the upper end side of the parallel base and is electrically connected with the communication disc, and the communication disc is connected with the lower end of the edible bottle body through the limiting ring and the slot of the parallel base.
[0009] As a further improvement of the application, the communication disc is provided with a fitting layer, a disc body, a fixed block, a restraint block and a conductor, the fitting layer and the edge of the disc body are integrated, the edge of the inner layer of the disc body is connected with the fixed block, the restraint block is fixed at the center point of the disc body and is matched with the fixed block at intervals, and the conductor penetrates the center of the restraint block and coincides with the center point of the slot.
[0010] Compared with the prior art, the application has the following beneficial effects: 1. After the further improvement of the multifunctional bottle body, the edible bottle body can effectively ensure the diet safety factor of the newborn, then the temperature control module in the interior can balance the temperature of the boiling water in the brewing cavity to the range of 40-60 DEG C, then the milk powder can be poured in to complete stable brewing, thereby avoiding the pollution of impurities and bacteria caused by natural cooling and increasing the multifunctional characteristics of the device, and then the polished inner wall and the right-angle characteristics of the temperature control block can facilitate subsequent cleaning and prevent the difficult-to-clean situation in the corner area.
[0011] 2. The temperature control module is further improved, the power leakage of the vibration body and the rotating part started by the energized block can be avoided through the cooperation of the insulating block, then the rotation and vibration method is used to replace the manual stirring of the milk, which further promotes the full mixing of the milk powder and the warm water, improves the drinking effect of the newborn, and then the solid body of the energized block can avoid the position loosening and falling of the vibration block and the rotating part during operation through the cooperation of the restraint rod, and the use stability of the device is improved.
[0012] 3. The charging structure is further improved, the edible bottle body can be embedded in the vertical orientation through the limiting ring and the slot on the parallel base, then the temperature of the temperature control module is controlled by the left and right rotation of the adjusting wheel, and the simple control characteristic is achieved, then after the newborn drinks and the brewing cavity is cleaned, the communication disc at the lower end of the parallel base can be fixed in the corresponding charging base through the conductor, the restraint block and the fixed block, so that the power supply effect is achieved, the square restraint block and the fixed block can avoid the manual touch rotation of the edible bottle body during charging, improve the charging stability of the device and avoid the safety hidden danger caused by the frequent rotation of the newborn due to curiosity. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It belongs to a structure diagram of a newborn anti-choking device.
[0014] Figure 2 It belongs to a structure diagram of a multifunctional bottle body after improvement.
[0015] Figure 3 It belongs to a structure diagram of an edible bottle body after improvement.
[0016] Figure 4 It belongs to a structure diagram of a temperature control module after improvement.
[0017] Figure 5 It belongs to a structure diagram of an energized block after improvement.
[0018] Figure 6 It belongs to a structure diagram of a charging structure after improvement.
[0019] Figure 7 It belongs to a structure diagram of a communication disc after improvement.
[0020] In the figure: handrail-1, multifunctional bottle body-2, sealing cover-3, flow control ring-4, flexible nipple-5, charging structure-21, food-grade bottle body-22, coincident ring-23, threaded wall-24, brewing cavity-25, temperature insulation layer-221, polished inner wall-222, connection end-223, temperature control module-224, power-on block-a1, insulating block-a2, vibrating body-a3, rotating part-a4, movable block-a5, contact layer-a11, solid body-a12, conducting block-a13, restraint rod-a14, communication disc-211, parallel base-212, limiting ring-213, insertion slot-214, adjusting wheel-215, fitting layer-b1, disc body-b2, fixed block-b3, restraint block-b4, conductor-b5. Embodiment
[0021] The application is further described below in conjunction with the accompanying drawings: Embodiment
[0022] Figures 1 to 5 shown: The application provides a new-born baby anti-choking device, The structure comprises a handrail 1, a multifunctional bottle body 2, a sealing cover 3, a flow control ring 4, and a flexible nipple 5. The handrail 1 is provided with four groups and is fixed to the edge of the multifunctional bottle body 2 in a ring shape. The upper end of the multifunctional bottle body 2 is threadedly connected with the sealing cover 3. The flow control ring 4 is embedded in the center of the upper end of the sealing cover 3. The flexible nipple 5 is perpendicular to the sealing cover 3 through the flow control ring 4 and communicates with the inside of the multifunctional bottle body 2.
[0023] The multifunctional bottle body 2 is provided with a charging structure 21, a food-grade bottle body 22, a coincident ring 23, a threaded wall 24, and a brewing cavity 25. The charging structure 21 is arranged at the lower end of the food-grade bottle body 22 and is perpendicular to each other. The top of the food-grade bottle body 22 is connected with the coincident ring 23. The threaded wall 24 is arranged in the inner wall area of the coincident ring 23. The brewing cavity 25 is developed in the inside of the food-grade bottle body 22. The food-grade bottle body 22 is threadedly connected with the sealing cover 3 through the threaded wall 24 of the coincident ring 23. The inside of the flexible nipple 5 communicates with the brewing cavity 25 of the food-grade bottle body 22. The charging structure 21 and the food-grade bottle body 22 are both composed of light metal blocks. The threaded wall 24 in the inside of the coincident ring 23 and the brewing cavity 25 of the food-grade bottle body 22 are both developed in a vertical direction. The charging structure 21 and the food-grade bottle body 22 are matched by the characteristics of light metal to reduce the weight of the device, thereby avoiding excessive weight to compress the newborn. The heavy ring 23 is matched with the components by the vertical threaded wall 24 to achieve the effect of quick assembly and disassembly. Then, the food-grade bottle body 22 can improve the effect of the full fusion of milk powder and boiling water according to the vertical brewing cavity 25, avoiding the residual milk powder in the corner area with an arc.
[0024] The food-grade bottle body 22 is provided with a temperature insulation layer 221, a polished inner wall 222, a connection end 223, and a temperature control module 224. The temperature insulation layer 221 is integrated with the polished inner wall 222. The polished inner wall 222 has a connection end 223 on the surface. The temperature control module 224 is embedded in the polished inner wall 222 through the connection end 223 and is electrically connected with the charging structure 21. The polished inner wall 222 is annular and has four rectangular connection ends 223. The temperature control module 224 is a cuboid and has four groups, and each group has a combined spacing. The polished inner wall 222 is annular and can be matched with the shape of the components. According to the four rectangular connection ends 223, the four temperature control modules 224 can be fixed in position, so that the temperature control module 224 can be stably controlled. The temperature control module 224 is cuboid and can be matched with the shape of the connection end 223. According to the spacing between them, subsequent cleaning is facilitated.
[0025] The temperature control module 224 is provided with an energized block a1, an insulating block a2, a vibration body a3, a rotating part a4, and a movable block a5. The energized block a1 is embedded in the side of the insulating block a2. The vibration block a3 coincides with the insulating block a2 and is electrically connected with the energized block a1. The rotating part a4 penetrates the center of the vibration body a3 and is inserted into the insulating block a2 and is electrically connected with the energized block a1. The movable block a5 is perpendicular to the rotating part a4 and is movably connected. The energized block a1 is inserted into the connection end 223 and is electrically connected with the charging structure 21. The energized block a1 has two blocks on the insulating block a2. The insulating block a2 and the vibration body a3 are rectangular. The rotating part a4 is a circular rod, and the area of the movable block a5 is consistent with the vibration body a3. The rotating part a4 has a telescopic function, and the telescopic length is consistent with the combined thickness of the insulating block a2 and the vibration body a3. The power block a1 can improve the stability of the power transmission by repeatedly transmitting according to the number of two blocks on the insulating block a2, the insulating block a2 and the vibration body a3 can achieve the effect of mutual coincidence according to the rectangular shape, the rotating part a4 can drive the movable block a5 to rotate at a fixed point by the circular rod shape, so as to promote the fusion effect of milk powder and hot water, and then according to the telescopic effect, the movable block a5 and the vibration body a3 can be mutually attached when not in use, so as to avoid excessive space occupation affecting the cleaning process.
[0026] The power block a1 is provided with a contact layer a11, a solid body a12, a conducting block a13 and a restraint rod a14, the contact layer a11 and the lower end of the solid body a12 are integrated, the upper end of the solid body a12 is provided with the conducting block a13, the restraint rod a14 is arranged at the side of the solid body a12 and is fixedly connected, and the solid body a12 is embedded in the side of the insulating block a2 through the conducting block a13; the contact layer a11 is in a flat shape, the solid body a12 and the conducting block a13 are perpendicular to each other, and the restraint rod a14 is made of magnetic metal material; The contact layer a11 can improve the connection stability with the components by the flat shape, the solid body a12 and the conducting block a13 can improve the transmission effect of electric energy by the perpendicular shape, and the restraint rod a14 can improve the connection firmness of the conducting block a13 and the components according to the magnetic attraction feature, so as to prevent the components from falling off during the vibration and rotation process.
[0027] The specific functions and operation processes of the embodiment are as follows: In the application, Firstly, the multifunctional bottle body 2 of the newborn anti-choking device can be conveniently fixed by the four groups of handrails 1 on the outer edge, and the medical staff can assist in fixing, then the sealing cover 3 on the upper end of the multifunctional bottle body 2 can control the milk volume sucked by the flexible nipple 5 each time through the flow control ring 4, so as to avoid the invasion of the nasal cavity caused by too much single sucking of the newborn, and improve the safety coefficient of the newborn's diet; Secondly, the food-grade bottle body 22 and the charging structure 21 of the multifunctional bottle body 2 can reduce the weight of the device by using light metal, and then the food-grade bottle body 22 can be screw-connected with the sealing cover 3 through the screw wall 24 of the upper end coinciding ring 23, so that the quick disassembly and assembly effect can be achieved through the screw joint, which is convenient for subsequent cleaning of the brewing cavity 25, so that the boiling water in the brewing cavity 25 can be balanced to the temperature range of 40-60 DEG C through the cooperation of the food-grade bottle body 22 and the charging structure 21, so as to ensure the stable brewing of the milk powder, avoid the destruction of the nutrients of the milk powder caused by too high temperature, and prevent the invasion of impurities and bacteria caused by the original natural cooling; Third: The food-grade bottle body 22 can completely confine the polished inner wall 222 inside through the heat insulation layer 221, preventing it from communicating with the outside. Then, the four connecting ends 223 of the polished inner wall 222 can fix four temperature control modules 224, so that the temperature control modules 224 can adjust their own temperature to the range of 40℃-60℃ under the control of the charging structure 21, and then form a communication with the brewing chamber 25 to balance and keep the internal boiling water temperature, ensuring that the temperature of the milk will not drop too low due to prolonged storage, thereby improving the cooling efficiency of boiling water. Fourth: The energizing block a1 of the temperature control module 224 will be embedded inside the connector 223. When it is energized with the vibrating body a3 and the rotating part a4, the insulating block a2 can provide protection to prevent leakage. The vibrating body a3 can be activated when the temperature control module 224 is used. At the same time, the rotating part a4 can push the movable block a5 out of the vibrating body a3 according to its own extension and contraction effect. Then, the rotation effect of the rotating part a4 and the vibration effect of the vibrating body a3 promote the mixing of milk powder and warm water, replacing the inconvenience of brewing caused by manual stirring. Fifth: The solid body a12 of the energized block a1 can form a stable overlap with the interior of the connecting end 223 through the contact layer a11. Then, the conductive block a13 on the top of the solid body a12 can introduce the electrical energy of the connecting end 223 into the area of the vibrating body a3 and the rotating part a4 to complete the electrical control. During the process, the magnetic attraction rod a14 on the side of the solid body a12 can increase the connection stability between the solid body a12, the conductive block a13 and the connecting end 223, and prevent the vibrating body a3 and the rotating part a4 from falling off due to the influence of the movement force. Example
[0028] Figures 6 to 7 As shown: This invention provides a device to prevent newborns from choking on milk. Its structure includes a charging structure 21 comprising a connecting plate 211, a parallel base 212, a limiting ring 213, a slot 214, and an adjusting wheel 215. The connecting plate 211 and the parallel base 212 overlap and are located at the same center point. The limiting ring 213 is installed at the upper center point of the parallel base 212. The slot 214 is vertically extended at the center of the parallel base 212 through the limiting ring 213 and communicates with the connecting plate 211. The adjusting wheel 215 is positioned on the upper side of the parallel base 212 and is electrically connected to the connecting plate 211. The connecting plate 211 is connected to the lower end of the food-grade bottle body 22 through the limiting ring 213 and the slot 214 of the parallel base 212. The connecting plate 211 and the parallel base 212 have the same area. The diameter of the limiting ring 213 is smaller than the diameter of the parallel base 212. The center point of the adjusting wheel 215 contains a vertical rod containing a conductive shaft. The movable wheel can rotate left and right. The connecting plate 211 can overlap with the parallel base 212 by having the same area. The limiting ring 213 can determine the position of the slot 214 by having a small diameter. The adjusting wheel 215 can rotate in a balanced manner according to the power line of the vertical rod, so as to adjust the temperature of the component.
[0029] The connecting disk 211 includes an adhesive layer b1, a disk body b2, a fixing block b3, a restraining block b4, and a conductor b5. The adhesive layer b1 and the edge of the disk body b2 are integrated. The inner edge of the disk body b2 is connected to the fixing block b3. The restraining block b4 is fixed to the center point of the disk body b2 and is spaced apart from the fixing block b3. The conductor b5 passes through the center of the restraining block b4 and coincides with the center point of the slot 214. The fixing block b3 of the disk body b2 is arc-shaped and has one on each of the upper and lower edges inside the disk body b2. The restraining block b4 is square-shaped, and the conductor b5 is a solid circle. The disc body b2, with the cooperation of two arc-shaped fixing blocks and restraining block b4, can maintain stability when the conductor b5 overlaps with the corresponding charging base for charging, preventing instability caused by rotation due to human touch. The restraining block b4, with its square shape, can completely avoid the occurrence of rotation. The conductor b5, with its solid circular shape, can be adapted to the shape of the component.
[0030] The specific functions and operation procedures of this embodiment are as follows: In this invention, First: The parallel base 212 of the charging structure 21 can completely cover the lower end of the food-grade bottle body 22 through the slot 214 of the upper limiting ring 213, so that the lower end of the food-grade bottle body 22 can be stably electrically connected to the center of the surface of the connecting plate 211. Then, the adjustment wheel 215 on the upper side of the parallel base 212 can adjust the temperature of the temperature control module 224 of the food-grade bottle body 22 by rotating left and right and the energizing effect of the spool, thereby achieving the convenience of temperature adjustment. With the assistance of the adjustment wheel 215, the inaccuracy of the data during the adjustment process can be prevented. Second: The disk body b2 of the connecting disk 211 can be stably aligned with the bottom of the parallel base 212 through the bonding layer b1. Then, the fixing block b3 and the restraining block b4 of the disk body b2 will respectively limit the position of the conductor b5 according to the arc and square shapes. Therefore, when the conductor b5 is embedded in the corresponding charging base area for charging, the square restraining block b4 and the fixing block b3 can achieve stable charging by intercepting their own vertical corners, preventing the device from rotating due to human touch and affecting the stable charging process.
[0031] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.
Claims
1. A newborn anti-choking device, comprising: The handrail (1), multi-functional bottle body (2), sealing cap (3), flow control ring (4), and flexible nipple (5) are characterized in that: the handrail (1) is provided with four sets and fixed to the edge of the multi-functional bottle body (2) in a ring orientation; the upper end of the multi-functional bottle body (2) is threadedly connected to the sealing cap (3); the flow control ring (4) is embedded in the upper center of the sealing cap (3); and the flexible nipple (5) is perpendicular to the sealing cap (3) through the flow control ring (4) and communicates with the interior of the multi-functional bottle body (2).
2. The newborn anti-choking device according to claim 1, characterized in that: The multifunctional bottle body (2) is provided with a charging structure (21), a food-grade bottle body (22), a superimposed ring (23), a threaded wall (24), and a brewing chamber (25). The charging structure (21) is located at the lower end of the food-grade bottle body (22) and is perpendicular to each other. The top of the food-grade bottle body (22) is connected to the superimposed ring (23). The threaded wall (24) is located in the inner wall area of the superimposed ring (23). The brewing chamber (25) is opened inside the food-grade bottle body (22). The food-grade bottle body (22) is threadedly connected to the sealing cap (3) through the threaded wall (24) of the superimposed ring (23). The upper part of the brewing chamber (25) of the food-grade bottle body (22) is connected to the interior of the flexible nipple (5).
3. The newborn anti-choking device according to claim 2, characterized in that: The food-grade bottle body (22) is provided with a heat insulation layer (221), a polished inner wall (222), a connecting end (223), and a temperature control module (224). The heat insulation layer (221) and the polished inner wall (222) are an integrated structure. The surface of the polished inner wall (222) has a connecting end (223). The temperature control module (224) is embedded in the polished inner wall (222) through the connecting end (223) and is electrically connected to the charging structure (21).
4. A newborn anti-choking device according to claim 3, characterized in that: The temperature control module (224) is provided with an energized block (a1), an insulating block (a2), a vibrating body (a3), a rotating component (a4), and a movable block (a5). The energized block (a1) is embedded in the side of the insulating body (a2). The vibrating block (a3) overlaps with the insulating block (a2) and is electrically connected to the energized block (a1). The rotating component (a4) passes through the center of the vibrating body (a3) and is inserted into the insulating block (a2) and electrically connected to the energized block (a1). The movable block (a5) is perpendicular to the rotating component (a4) and is movably connected. The energized block (a1) is inserted into the connecting end (223) and electrically connected to the charging structure (21).
5. A newborn anti-choking device according to claim 4, characterized in that: The energized block (a1) is provided with a contact layer (a11), a solid body (a12), a conductive block (a13), and a restraining rod (a14). The contact layer (a11) and the lower end of the solid body (a12) are integrated. The upper end of the solid body (a12) is equipped with a conductive block (a13). The restraining rod (a14) is located on the side of the solid body (a12) and fixedly connected. The solid body (a12) is embedded in the side of the insulating block (a2) through the conductive block (a13).
6. A newborn anti-choking device according to claim 2, characterized in that: The charging structure (21) is provided with a connecting plate (211), a parallel base (212), a limiting ring (213), a slot (214), and an adjusting wheel (215). The connecting plate (211) and the parallel base (212) overlap and are located at the same center point. The upper center point of the parallel base (212) is equipped with a limiting ring (213). The slot (214) is vertically opened at the center of the parallel base (212) through the limiting ring (213) and communicates with the connecting plate (211). The adjusting wheel (215) is positioned on the upper side of the parallel base (212) and is electrically connected to the connecting plate (211). The connecting plate (211) is connected to the lower end of the food-grade bottle body (22) through the limiting ring (213) and the slot (214) of the parallel base (212).
7. A newborn anti-choking device according to claim 6, characterized in that: The connecting plate (211) is provided with an adhesive layer (b1), a plate body (b2), a fixing block (b3), a restraining block (b4), and a conductor (b5). The adhesive layer (b1) and the edge of the plate body (b2) are an integrated structure. The inner edge of the plate body (b2) is connected to the fixing block (b3). The restraining block (b4) is fixed at the center point of the plate body (b2) and is spaced to fit the fixing block (b3). The conductor (b5) passes through the center of the restraining block (b4) and coincides with the center point of the slot (214).
Citation Information
Patent Citations
Milk choking prevention device for newborns
CN213666834U
Milk choking prevention device for newborns
CN219558105U