Infant complementary food feeding bowl

By designing a baby food tray with multiple ribs, a heating and heat preservation mechanism, and an infant food bowl with an automatic rotation function, the problem of convenient placement and feeding of various complementary foods has been solved. It enables independent placement and temperature maintenance of complementary foods, improving the convenience and safety of feeding.

CN224403322UActive Publication Date: 2026-06-26HUNAN MATERNITY & CHILDREN HEALTH HOSPITAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN MATERNITY & CHILDREN HEALTH HOSPITAL
Filing Date
2025-09-10
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Existing infant feeding bowl designs have problems such as not being able to hold multiple types of complementary foods at the same time, the complementary foods cooling down easily and causing diarrhea, and inconvenient feeding operations.

Method used

The design incorporates a multi-ribbed baby food tray, a heating and insulation mechanism, and a bowl lid with an arc-shaped drain outlet and a fan-shaped opening. Combined with a micro geared motor, it achieves automatic rotation, ensuring that baby food is placed in separate sections and easily accessible.

Benefits of technology

It allows for the independent placement of various complementary foods, preventing cross-contamination of flavors, maintaining temperature, facilitating operation, reducing spillage, and meeting the diverse nutritional needs of infants and young children.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of infant complementary food feeding bowl, it is related to infant article technical field. Including bowl body, complementary food tray and bowl cover. Arc-shaped drainage port is provided at the bowl mouth of bowl body, handle is provided on the sidewall of bowl body. The middle part of bowl body is provided with center column. Heating and heat preservation mechanism is provided in bowl body. Complementary food tray is rotationally arranged in bowl body, and complementary food tray includes tray bottom, sleeve, annular baffle and multiple rib plates, and multiple rib plates divide complementary food tray into multiple complementary food placement areas. Bowl cover is buckled on the bowl mouth of bowl body, and fan-shaped opening is provided on bowl cover, and fan-shaped opening is arranged in alignment with arc-shaped drainage port. The utility model divides complementary food tray into multiple independent complementary food placement areas by multiple rib plates, and can place multiple different types of complementary food simultaneously, to avoid smell and mix. By setting heating and heat preservation mechanism, uniform heating and stable heat preservation of complementary food are realized. By the cooperation design of arc-shaped drainage port and fan-shaped opening, it is convenient for spoon to adhere to eat.
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Description

Technical Field

[0001] This utility model relates to the field of infant and toddler products technology, and in particular to an infant and toddler complementary food feeding bowl. Background Technology

[0002] During the process of feeding complementary foods to infants and toddlers, parents not only need to ensure the nutritional balance of the complementary foods, but also need to consider the convenience and safety of feeding. Currently, infant feeding bowls on the market have the following shortcomings: First, most bowls are designed with a single cavity, which cannot hold multiple complementary foods at the same time, and the mixing of different ingredients can easily affect the taste; Second, complementary foods cool down quickly during the feeding process, especially in winter or during long feeding periods, which can easily cause diarrhea in infants and toddlers; Third, parents need to frequently rotate the bowl or adjust their hand positions to pick up different complementary foods, which increases the difficulty of feeding and easily causes complementary foods to spill. Utility Model Content

[0003] The main purpose of this utility model is to provide an infant feeding bowl to solve the above-mentioned problems.

[0004] To achieve the above objectives, this utility model provides an infant feeding bowl, comprising a bowl body, a feeding tray, and a bowl lid;

[0005] The bowl body has an outwardly protruding arc-shaped drain at the rim, a handle on the side wall of the bowl body, and the handle is positioned opposite the arc-shaped drain; a central column is provided in the middle of the bowl body; and a heating and heat preservation mechanism is provided inside the bowl body.

[0006] The baby food tray is rotatably mounted inside the bowl. The baby food tray includes a tray bottom, and a sleeve with a bottom opening is provided at the center of the tray bottom. The sleeve is rotatably mounted on a central post. An annular baffle is provided at the edge of the tray bottom, and the annular baffle is in clearance fit with the inner wall of the bowl. Multiple ribs are evenly provided on the tray bottom, and the two ends of the ribs are respectively connected to the sleeve and the annular baffle. The multiple ribs divide the baby food tray into multiple baby food placement areas.

[0007] The bowl lid is attached to the rim of the bowl body, and the bowl lid has a fan-shaped opening that is aligned with the arc-shaped drain outlet.

[0008] Furthermore, the bowl is provided with two horizontally placed partitions, which divide the bowl from top to bottom into a baby food tray placement cavity, a heating cavity, and an electrical cavity; the baby food tray is located in the baby food tray placement cavity, and the heating cavity is filled with a heating medium.

[0009] Furthermore, the heating and heat preservation mechanism includes an electric heating plate, a temperature sensor, a battery, and a control panel; the electric heating plate and the temperature sensor are both disposed inside the heating cavity, the battery is disposed inside the electrical cavity, and the control panel is disposed on the side wall of the bowl; the electric heating plate, the temperature sensor, and the battery are all electrically connected to the control panel.

[0010] Furthermore, the heating and heat preservation mechanism also includes a charging port, which is located on the side wall of the bowl and electrically connected to the battery.

[0011] Furthermore, a miniature geared motor is installed inside the central column, and the output shaft of the miniature geared motor is connected to a drive shaft via a coupling. The drive shaft is connected to the top of the central column via a bearing. The top of the sleeve is provided with a through hole that matches the drive shaft.

[0012] Furthermore, the drive shaft is a hexagonal shaft or a splined shaft.

[0013] Furthermore, the miniature geared motor is electrically connected to the control panel.

[0014] Furthermore, a button switch is provided on the handle, and the button switch is electrically connected to the control panel.

[0015] This utility model has the following beneficial effects:

[0016] 1. This utility model divides the baby food tray into multiple independent baby food placement areas through multiple ribs, which can hold multiple different types of baby food at the same time, avoiding cross-contamination and mixing, and meeting the diverse nutritional needs of infants and young children.

[0017] 2. The baby food tray rotates through the cooperation of the sleeve and the central column, and can also be rotated automatically by a micro geared motor and a button switch. Parents can switch between different baby food placement areas without adjusting their grip or rotating the bowl, making it easy to operate and reducing baby food spillage.

[0018] 3. The heating and heat preservation mechanism uses an electric heating plate and a heating medium to achieve uniform heating and stable heat preservation of complementary foods.

[0019] 4. The combination of the arc-shaped drain and the fan-shaped opening makes it easy for the spoon to fit snugly when picking up food.

[0020] 5. The baby food tray features a detachable design, making it easy to remove and clean, with no unsanitary corners. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of an infant feeding bowl according to the present invention.

[0022] Figure 2 This is an exploded view of an infant feeding bowl according to the present invention.

[0023] Figure 3 This is a cross-sectional view of a baby food feeding bowl according to the present invention.

[0024] Among them, 1-bowl lid; 2-feeding dish; 3-bowl body; 4-control panel; 5-charging port; 6-button switch; 7-battery; 8-miniature geared motor; 9-electric heating plate; 10-temperature sensor; 11-fan-shaped opening; 21-bottom of the dish; 22-ring baffle; 23-rib plate; 24-sleeve; 25-through hole; 31-handle; 32-arc-shaped drain port; 33-partition; 34-center column; 35-feeding dish placement cavity; 36-heating cavity; 37-electrical cavity. Detailed Implementation

[0025] To achieve the above objectives and effects, the technical means and structure adopted by this utility model are described in detail with reference to the accompanying drawings, focusing on the features and functions of the preferred embodiments of this utility model.

[0026] like Figure 1-3 As shown, this utility model provides an infant feeding bowl, including a bowl body 3, a feeding plate 2, and a bowl lid 1.

[0027] The bowl body 3 has an arc-shaped drain port 32 protruding outward at the rim, and a handle 31 is provided on the side wall of the bowl body 3, with the handle 31 facing the arc-shaped drain port 32; a central column 34 is provided in the middle of the bowl body 3; and a heating and heat preservation mechanism is provided inside the bowl body 3.

[0028] The food preparation dish 2 is rotatably mounted inside the bowl 3. The food preparation dish 2 includes a bottom 21, and a sleeve 24 with a bottom opening is provided at the center of the bottom 21. The sleeve 24 is rotatably mounted on the central post 34. An annular baffle 22 is provided at the edge of the bottom 21, and the annular baffle 22 is in clearance fit with the inner wall of the bowl 3. Four ribs 23 are evenly provided on the bottom 21, and the two ends of the ribs 23 are respectively connected to the sleeve 24 and the annular baffle 22. The four ribs 23 divide the food preparation dish 2 into four food placement areas.

[0029] The bowl lid 1 is attached to the rim of the bowl body 3. The bowl lid 1 has a fan-shaped opening 11, which is aligned with the arc-shaped drain port 32.

[0030] In another embodiment, the bowl body 3 is provided with two horizontally placed partitions 33, which divide the bowl body 3 from top to bottom into a baby food tray placement cavity 35, a heating cavity 36, and an electrical cavity 37; the baby food tray 2 is located in the baby food tray placement cavity 35, and the heating cavity 36 is filled with a heating medium, which can be heat-conducting oil, and the filling amount is 80% of the heating cavity volume. The heating and heat preservation mechanism includes an electric heating plate 9, a temperature sensor 10, a battery 7, and a control panel 4. The electric heating plate 9 has a power of 10W, and the temperature sensor 10 uses an NTC thermistor with an accuracy of ±1℃. The battery 7 has a capacity of 800mAh and can work continuously for 5-6 hours after being fully charged. The display screen on the control panel 4 is a touch screen that can display the temperature and battery level, and simultaneously set the upper and lower temperature limits. The electric heating plate 9 and the temperature sensor 10 are both located inside the heating cavity 36, the battery 7 is located inside the electrical cavity 37, and the control panel 4 is located on the side wall of the bowl 3. The electric heating plate 9, the temperature sensor 10, and the battery 7 are all electrically connected to the control panel 4, and the heating of the electric heating plate 9 is controlled by the control panel 4. In a preferred embodiment, the heating and heat preservation mechanism also includes a charging port 5, which is located on the side wall of the bowl 3 and electrically connected to the battery 7. The charging port 5 can use a Type-C interface and supports 5V / 1A charging.

[0031] In another embodiment, a micro geared motor 8 is installed inside the central column 34. The micro geared motor 8 has a power of 5W and a speed of 10r / min. The output shaft of the micro geared motor 8 is connected to a drive shaft via a coupling. The drive shaft is connected to the top of the central column 34 via a bearing. The top of the sleeve 24 is provided with a through hole 25 adapted to the drive shaft. The drive shaft is a hexagonal shaft or a spline shaft. The micro geared motor 8 is electrically connected to the control panel 4. A push-button switch 6 is provided on the handle 31, and the push-button switch 6 is electrically connected to the control panel 4. The push-button switch 6 on the handle 31 is a tactile switch. Pressing it once rotates the feeding tray 2 90° clockwise, pressing it for a long time rotates it continuously, and releasing it stops the rotation.

[0032] The usage process of this utility model is as follows:

[0033] 1. Open the bowl lid 1 and place the different types of complementary foods into the respective complementary food placement areas of the complementary food plate 2;

[0034] 2. Cover the bowl with lid 1, ensuring that the fan-shaped opening 11 is aligned with the arc-shaped drain 32;

[0035] 3. Set the upper temperature limit (e.g., 40℃) and lower temperature limit (e.g., 35℃) via the touch screen on the control panel 4, start the heating program, and the electric heating plate 9 starts working, heating the baby food through the heating medium. The temperature sensor 10 detects the temperature in real time and transmits the temperature data to the control panel 4. The touch screen displays the current temperature and battery level in real time. When the temperature data detected by the temperature sensor 10 is lower than the set lower temperature limit, the electric heating plate 9 starts working. When the temperature data detected by the temperature sensor 10 reaches the set upper temperature limit, the electric heating plate 9 stops working.

[0036] 4. Parents hold the handle 31 and use the fan-shaped opening 11 and the arc-shaped drainage port 32 to scoop up the corresponding complementary food in the complementary food placement area for feeding.

[0037] 5. When it is necessary to switch complementary foods, press the button switch 6 on the handle 31. The micro geared motor 8 drives the complementary food tray 2 to rotate, and rotate the target complementary food placement area to the arc-shaped drainage port 32, so that feeding can continue.

[0038] 6. After feeding, turn off the heating program via the touch screen on the control panel 4, remove the bowl lid 1 and the food tray 2, and clean the food tray placement cavity 35 of the bowl lid 1, the food tray 2 and the bowl body 3 respectively. If charging is required, simply insert the charger into the charging port 5.

[0039] The above description is only a preferred embodiment of the present utility model and not all embodiments. Anyone should know that structural changes made under the guidance of the present utility model are protected by the present utility model. All technical solutions that are the same as or similar to the present utility model are within the scope of protection of the present utility model.

Claims

1. A baby food serving bowl, characterized in that, Includes the bowl, feeding plate, and bowl lid; The bowl body has an arc-shaped drain port that protrudes outward at the rim; a handle is provided on the side wall of the bowl body, and the handle is positioned opposite to the arc-shaped drain port; a central column is provided in the middle of the bowl body; and a heating and heat preservation mechanism is provided inside the bowl body. The baby food tray is rotatably mounted inside the bowl. The baby food tray includes a tray bottom, and a sleeve with a bottom opening is provided at the center of the tray bottom. The sleeve is rotatably mounted on a central post. An annular baffle is provided at the edge of the tray bottom, and the annular baffle is in clearance fit with the inner wall of the bowl. Multiple ribs are evenly provided on the tray bottom, and the two ends of the ribs are respectively connected to the sleeve and the annular baffle. The multiple ribs divide the baby food tray into multiple baby food placement areas. The bowl lid is attached to the rim of the bowl body, and the bowl lid has a fan-shaped opening that is aligned with the arc-shaped drain port.

2. The baby food bowl of claim 1, wherein The bowl is equipped with two horizontal partitions, which divide the bowl into a baby food tray placement cavity, a heating cavity, and an electrical cavity from top to bottom; the baby food tray is located in the baby food tray placement cavity, and the heating cavity is filled with a heating medium.

3. A baby food bowl as claimed in claim 2, wherein, The heating and heat preservation mechanism includes an electric heating plate, a temperature sensor, a battery, and a control panel; the electric heating plate and the temperature sensor are both located inside the heating chamber, the battery is located inside the electrical cavity, and the control panel is located on the side wall of the bowl; the electric heating plate, the temperature sensor, and the battery are all electrically connected to the control panel.

4. A baby food bowl as claimed in claim 3, wherein, The heating and heat preservation mechanism also includes a charging port, which is located on the side wall of the bowl and electrically connected to the battery.

5. A baby food bowl as claimed in claim 3 or 4, wherein the bowl is provided with a lid which is adapted to be secured to the bowl by means of a hinge arrangement. A miniature geared motor is installed inside the central column. The output shaft of the miniature geared motor is connected to a drive shaft via a coupling. The drive shaft is connected to the top of the central column via a bearing. The top of the sleeve is provided with a through hole that matches the drive shaft.

6. The infant feeding bowl as described in claim 5, characterized in that, The drive shaft is either a hexagonal shaft or a splined shaft.

7. The infant feeding bowl as described in claim 5, characterized in that, The miniature geared motor is electrically connected to the control panel.

8. The infant feeding bowl as described in claim 7, characterized in that, The handle is equipped with a button switch, which is electrically connected to the control panel.