Steam complementary food machine

By integrating a steam heating device and a guide channel into the baby food maker, the problem of existing baby food makers requiring external heating equipment is solved, realizing the integration of food mixing and heating, and improving steaming efficiency and steam utilization.

CN223969036UActive Publication Date: 2026-03-06SHENZHEN DING PIN ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202520019987.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-05
Publication Date
2026-03-06
Estimated Expiration
2035-01-05

AI Technical Summary

Technical Problem

Existing baby food processors require additional heating equipment after blending and crushing food, resulting in a poor user experience.

Method used

Design a steam baby food maker that integrates a steam heating device to heat the food inside the container with high-temperature steam. The steam is guided to the bottom of the container using guide channels and auxiliary channels to improve steaming efficiency.

Benefits of technology

It integrates food mixing and heating, improving cooking efficiency and user experience, and enhancing the utilization rate of high-temperature steam.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of complementary food machines, and provides a steam complementary food machine which comprises a main machine body, a container cup body and a steam heating device assembly, the steam heating assembly is installed in the main machine body, the upper portion of the container cup body is detachably connected to the main machine body, and the steam heating assembly comprises a water tank, a heating system and a guide channel. The heating system is used for heating water stored in the water tank so as to generate high-temperature steam, and the guide channel is used for guiding the high-temperature steam into the container cup body. According to the steam complementary food machine provided by the utility model, the food in the container cup body is heated / steamed by introducing high-temperature steam into the container cup body, so that the steam complementary food machine has two purposes and is good in use experience.
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Description

Technical Field

[0001] This utility model belongs to the field of baby food machine technology, and in particular relates to a steam baby food machine. Background Technology

[0002] A baby food processor or food processor with a pulverizing function is a food processing device that can make a variety of complementary foods, especially vegetable purees and fruit purees. Modern baby food processors not only have steaming and blending functions, but also incorporate more technological features, such as intelligence, portability, and energy efficiency. For example, multi-functional grinders and meat grinders can not only meet the daily needs of families for grinding and pulverizing meat, but also perform excellently in making complementary foods. According to market research, the baby food processor market in China has been expanding in recent years. With people's increasing awareness of healthy eating and the continuous innovation and upgrading of baby food processor technology, the baby food processor industry will continue to develop at a faster pace in the future, and the market size will further expand.

[0003] With continuous technological innovation and market expansion, baby food makers will provide consumers with a more convenient, efficient, and safe baby food preparation experience. At the same time, the baby food maker industry will also face more development opportunities and challenges, requiring companies to continuously innovate and upgrade their products to adapt to market changes and consumer demands. Currently, existing baby food makers require additional heating appliances to heat the blended food after it has been blended, resulting in a less than ideal user experience. Utility Model Content

[0004] The purpose of this utility model embodiment is to provide a steam baby food maker that can both stir and crush food in the container cup, and heat the food in the container cup.

[0005] The technical solution of this utility model is: a steam baby food maker, including a main body, a container cup, and a steam heating device assembly. The steam heating assembly is installed in the main body, and the upper part of the container cup is detachably connected to the main body. The steam heating assembly includes a water tank, a heating system, and a guide channel. The heating system is used to heat the water stored in the water tank to generate high-temperature steam, and the guide channel is used to guide the high-temperature steam into the container cup.

[0006] Optionally, the container cup body includes at least two auxiliary channels, which are distributed circumferentially along the inner wall surface of the container cup body. The at least two auxiliary channels are connected to the guide channel and are used to guide the high-temperature steam to the bottom of the container cup body.

[0007] Optionally, the auxiliary channel includes a baffle and two oppositely arranged side blocks. The side blocks protrude from the inner wall of the container cup body, and the baffle is installed between the two side blocks. The baffle, the inner wall of the container cup body, and the two side blocks form the auxiliary channel, wherein the auxiliary channel is configured with a structure where the upper space is large and the lower space is small.

[0008] Optionally, the baffle is detachably connected to the two side baffles; and / or, the baffle is provided with an air vent.

[0009] Optionally, the main body includes a mounting base extending toward the container cup body, the upper part of the container cup body has an opening, the mounting base extends at least partially into the container cup body through the opening and seals the opening, and the mounting base is detachably connected to the upper part of the container cup body through a bayonet structure.

[0010] Optionally, the bayonet structure includes a locking member and a locking channel. The locking member is provided on one side of the mounting base or on the inner wall of the container, and the locking channel is provided on the other side. The locking channel includes a vertical slide groove and a horizontal slide groove. The horizontal slide groove is arranged circumferentially, and the vertical slide groove is arranged in a direction different from the circumferential direction and is connected to the horizontal slide groove. The vertical slide groove has a sliding entrance. The locking member enters the vertical slide groove through the sliding entrance and slides along the vertical slide groove into the horizontal slide groove.

[0011] Optionally, the mounting base is further provided with a pressure relief channel, which connects the container body and the external environment, and a pressure relief valve is also provided in the pressure relief channel.

[0012] Optionally, the pressure relief valve includes at least two flexible members that can be spliced ​​together to form a whole and block the pressure relief channel, wherein at least two of the flexible members can be deformed under pressure to open the pressure relief channel.

[0013] Optionally, it also includes a drive assembly and a stirring head assembly, wherein the drive assembly is mounted on the main body and the stirring head assembly is located inside the container cup, and the drive assembly is used to drive the stirring head assembly.

[0014] Optionally, the stirring head assembly is detachably connected to the drive assembly, and the lower part of the stirring head assembly is suspended in the air.

[0015] The steam baby food maker provided by this utility model heats / cooks the food inside the container by introducing high-temperature steam into the container, achieving two functions in one machine and providing a good user experience. At the same time, an auxiliary channel connected to the guide channel is provided on the container to guide the high-temperature steam to the bottom of the container, thereby improving the utilization rate of high-temperature steam and accelerating the cooking efficiency. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the steam baby food machine provided by this utility model;

[0017] Figure 2 This is a cross-sectional view of the steam baby food maker provided by this utility model;

[0018] Figure 3 This is a schematic diagram of the container cup in the steam baby food maker provided by this utility model;

[0019] Figure 4 This is an exploded schematic diagram of the main body of the steam baby food machine provided by this utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the steam baby food maker provided by this utility model, which includes the installation of the stirring section and the stirring blade assembly.

[0021] Figure 6 This is a schematic diagram of the stirring blade assembly in the steam baby food maker provided by this utility model;

[0022] Figure 7 yes Figure 1 Enlarged view of point A in the middle;

[0023] Figure 8 yes Figure 1 Enlarged view of point B in the middle;

[0024] Figure 9 yes Figure 4 Enlarged diagram of point C in the middle.

[0025] Symbol explanation:

[0026] 100-Baby food maker, 10-Baby food maker body, 11-Container cup, 12-Blender head assembly, 101-Mounting base, 102-Clamping part, 103-Clamping groove, 104-Auxiliary channel, 111-Opening, 112-Guide nozzle, 121-Mounting bracket, 122-Connecting rod, 123-Blade, 124-Bearing, 125-Spacer, 1211-Mounting panel, 1212-Reinforcing seat, 1213-Reinforcing rib, 1214-Mounting groove, 1215-Sealing part, 1216-Hole, 1011-Blender mounting part, 1012- 1013-Pressure relief channel, 1014-Pressure relief valve, 1015-Flexible component, 1016-Branch channel, 1017-Outlet end, 151-Snap-on part, 152-Slot part, 1031-Vertical slide groove, 1032-Horizontal slide groove, 1033-Slide inlet, 1034-Limiting protrusion, 1021-Limiting groove, 1041-Baffle, 1042-Side baffle, 1043-Air outlet, 141-Drive motor, 142-Transmission component, 143-Gear seat, 144-Axle, 161-Water tank, 162-Heating system, 163-Guide channel. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0028] In some embodiments, such as Figure 1 As shown, a steam baby food maker 100 includes a main body 10, a container cup 11, and a steam heating device assembly. The steam heating assembly is installed inside the main body 10. The upper part of the container cup 11 is detachably connected to the main body 10 to facilitate removal of the container cup 11 from the main body 10 for cleaning. The steam heating assembly includes a water tank 161, a heating system 162, and a guide channel 163. The heating system 162 is used to heat the water stored in the water tank 161 to generate high-temperature steam. The guide channel 163 is used to guide the high-temperature steam into the container cup 11, using the high-temperature steam to heat / cook the food.

[0029] In some embodiments, the container body 11 includes at least two auxiliary channels 104, which are circumferentially spaced along the inner wall of the container body 11. Both auxiliary channels 104 are connected to the guide channel 163 and are used to guide the high-temperature steam to the bottom of the container body 11. By providing auxiliary channels 104 to guide the high-temperature steam to the bottom of the container body 11, when steaming food inside the container body 11, the high-temperature steam permeates upwards from the bottom of the food, improving the utilization rate of the high-temperature steam and accelerating the steaming efficiency. Although the number of auxiliary channels 104 is limited to at least two, in practical applications, a single auxiliary channel 104 can also guide the high-temperature steam to the bottom of the container body 11. However, when multiple auxiliary channels 104 are provided, the high-temperature steam can permeate towards the center of the container body 11 from different directions, thereby accelerating the steaming efficiency.

[0030] Optionally, the heating assembly may also include a guide fan (not shown in the figure) for guiding the high-temperature steam to the guide channel 163. The flow rate of the high-temperature steam can also be adjusted by controlling the rotation speed of the guide fan.

[0031] In some embodiments, such as Figure 3 As shown, the auxiliary channel 104 may include a baffle 1041 and two opposing side baffles 1042. The side baffles 1042 protrude from the inner wall of the container body 11, and the baffle 1041 is installed between the two side baffles 1042. The baffle 1041, the inner wall of the container body 11, and the two side baffles 1042 form the auxiliary channel 104. The auxiliary channel 104 is configured with a larger upper space and a smaller lower space to accelerate the flow of high-temperature steam from the outlet of the auxiliary channel 104. The side baffles 1042 and the inner wall of the container body 11 may be integrally formed.

[0032] In some embodiments, such as Figure 3 As shown, the baffle 1041 is detachably connected to the two side baffles 1042. During use, since the auxiliary channel 104 is located inside the container body 11, food may enter the auxiliary channel 104, making cleaning difficult. By designing the baffle 1041 to be detachably connected to the two side baffles 1042, when it is necessary to clean the auxiliary channel 104, simply remove the baffle 1041 to clean the inside of the auxiliary channel 104.

[0033] In some embodiments, sliders may be provided on both sides of the baffle 1041, and a groove is provided on each side baffle 1042, wherein the groove extends through the upper part of the side baffle 1042. During assembly, the sliders on each side of the baffle 1041 are controlled to slide into the grooves of the corresponding side baffle 1042, and then the baffle 1041 is controlled to slide along the grooves near the bottom of the container cup 11. When it is necessary to remove the baffle 1041, simply control the baffle 1041 to slide away from the container cup 11 along the grooves, so that the sliders disengage from the grooves.

[0034] In another embodiment, the baffle 1041 may be provided with grooves on both sides, and each side baffle 1042 may be provided with a slider, wherein the grooves pass through the lower part of the baffle 1041. In practical applications, the baffle 1041 and the side baffle 1042 may also be connected by a snap-fit ​​structure to achieve a detachable connection.

[0035] Generally, the auxiliary channel 104 has openings 111 at both ends. The high-temperature steam flowing within the auxiliary channel 104 can only exit from the lower opening 111, meaning the high-temperature steam slowly permeates upwards from the bottom of the container 11. To further improve cooking efficiency, alternatively, such as... Figure 3 As shown, the baffle 1041 may be provided with an air outlet 1043. That is, in addition to flowing out from the lower end opening 111 of the auxiliary channel 104, high-temperature steam can also flow out from the air outlet 1043 on the baffle 1041.

[0036] Specifically, multiple vents 1043 are provided, and the multiple vents 1043 are distributed at intervals along the height direction of the baffle 1041, so as to realize the simultaneous steaming and cooking of food at different heights inside the container cup 11.

[0037] In some embodiments, such as Figure 1 As shown, the main body 10 may include a mounting base 101 extending toward the container cup 11. The mounting base 101 can extend at least partially into the container cup 11 through an opening 111. The cross-sectional profile of the mounting base 101 is adapted to the profile of the opening 111 of the container cup. Thus, when the mounting base 101 extends into the container cup, it can limit the horizontal movement of the container cup 11 to prevent horizontal shaking. The mounting base 101 and the upper part of the container cup 11 can be detachably connected via a bayonet structure. Since the container cup 11 needs to be removed from the main body 10 for cleaning, the bayonet structure simplifies the detachment and connection, improving user convenience.

[0038] In some embodiments, the bayonet structure may include a locking member 102 and a locking channel 103. The locking member 102 is provided on one side of the mounting base 101 or on the inner wall of the container body 11, and the locking channel 103 is provided on the other side. For example:

[0039] The first type: the side of the mounting base 101 is provided with a locking component 102, and the inner wall of the container cup 11 is provided with a corresponding locking groove 103;

[0040] The second type: The side of the mounting base 101 is provided with a locking groove 103, and the inner wall of the container cup 11 is provided with a corresponding locking component 102.

[0041] The following examples illustrate the first structure, such as Figure 1 and Figure 7 As shown, a locking member 102 is provided on the side of the mounting base 101, and a locking groove 103 is correspondingly provided on the inner wall surface of the container cup 11. The locking groove 103 includes a vertical sliding groove and a horizontal sliding groove 1032. The horizontal sliding groove 1032 is arranged circumferentially along the inner wall surface of the container cup 11, and the vertical sliding groove is arranged in a direction different from the circumferential direction. For example, the vertical groove 1031 is arranged along the height direction of the container cup. The vertical groove 1031 is connected to the horizontal sliding groove 1032. A groove penetrates the opening 111 end face of the container cup body to form a sliding entrance 1033. The locking member 102 can enter the vertical groove through the sliding entrance 1033. The locking member 102 first slides along the vertical groove to its bottom, and then enters the horizontal groove 1032. After sliding a preset distance along the horizontal groove 1032, the locking member 102 is restricted by the upper and lower side walls of the horizontal groove 1032, thus stably connecting to the mounting base 101. When it is necessary to remove the container cup body 11 from the mounting base 101, the locking member 102 slides along the horizontal groove 1032 towards the vertical groove, and then slides along the vertical groove and exits from the sliding entrance 1033, thus removing the container cup body 11 from the mounting base 101.

[0042] In some embodiments, such as Figure 7As shown, at least one side wall of the transverse slide groove 1032 may be provided with a limiting protrusion 1034, and a corresponding limiting groove 1035 is provided on the locking member 102. After the locking member 102 slides along the transverse slide groove 1032 to a preset position, the limiting protrusion 1034 is accommodated in the limiting groove 1035. By cooperating with the limiting protrusion 1034 and the limiting groove 1035, the resistance of the locking member 102 sliding in the transverse slide groove 1032 is increased, which can further improve the reliability of the connection between the container cup 11 and the mounting base 101, thereby avoiding the container cup 11 from separating from the mounting base 101 due to vibration generated during the operation of the food processor 100, or accidental contact or impact. That is, only when a sufficiently large external force is applied to the container cup 11 can the limiting protrusion 1034 be pushed out from the limiting groove 1035, and then slide along the transverse slide groove 1032.

[0043] In some embodiments, such as Figure 4 and Figure 9 As shown, the mounting base 101 may also be provided with a pressure relief channel 1013, which connects the container body 11 to the external environment. This channel is used to discharge steam inside the container body 11 to the external environment, preventing excessive pressure inside the container body 11 and potential safety hazards. The pressure relief channel 1013 is also equipped with a pressure relief valve 1014. By installing the pressure relief valve 1014, the high temperature can be maintained inside the container body 11, preventing the loss of high-temperature steam. Furthermore, the pressure relief valve 1014 will only open when the pressure inside the container body 11 reaches a critical value, releasing steam to the outside, thus ensuring efficient utilization of the high-temperature steam.

[0044] In some embodiments, such as Figure 9 As shown, the pressure relief valve 1014 may include at least two flexible elements 1015, which can be spliced ​​together to form a whole and block the pressure relief channel 1013. Since the at least two flexible elements 1015 can be deformed under pressure, when the pressure inside the container cup 11 reaches a critical value, the pressure inside the container cup 11 acts on the flexible elements 1015 to open the pressure relief channel 1013. When the pressure inside the container cup 11 is lower than the critical value, the pressure acting on the flexible elements 1015 is insufficient, and the flexible elements 1015 deform, at which time the pressure relief channel 1013 is in a closed state. In practical applications, the pressure relief valve 1014 can be an electronic pressure relief valve 1014, which can more sensitively detect the pressure inside the container cup 11 and achieve more efficient pressure relief.

[0045] In some embodiments, such as Figure 1 , Figure 5 and Figure 6As shown, the system also includes a drive assembly and a stirring blade assembly 12. The drive assembly is installed on the main body 10, and the stirring blade assembly 12 is located inside the container cup 11. The drive assembly drives the stirring blade assembly 12 to stir and break down the food inside the container cup 11. During the stirring and breaking down of the food by the stirring blade assembly 12, high-temperature steam is directed to the bottom of the container cup 11. The steam is more easily turbulent within the container as the stirring blade assembly 12 rotates at high speed, ensuring that the high-temperature steam fully heats the food before being discharged, thus improving steam utilization and accelerating cooking efficiency. In practical applications, high-temperature steam can also be supplied to the bottom of the container cup 11 only after the food inside the container cup 11 has been stirred and broken down.

[0046] In some embodiments, such as Figure 2 As shown, the stirring blade assembly 12 is detachably connected to the drive assembly, thus facilitating the removal of the stirring blade assembly 12 for cleaning. The lower part of the stirring blade assembly 12 has a distance s between it and the bottom surface of the container body. The stirring blade assembly 12 extends into the container body 11 through the upper opening 111. After the container body 11 is installed on the main body 10, the stirring blade assembly 12 is suspended above the bottom surface of the container body 11, ensuring that it does not contact any structure. Because the stirring blade assembly 12 is suspended, there is no need to install a blade fixing / mounting structure on the bottom surface of the container body 11, making cleaning the container body simpler and more convenient.

[0047] In practical applications, when the stirring blade assembly 12 is installed at the bottom of the container cup 11, it can also improve the utilization rate of high-temperature steam and accelerate the cooking efficiency.

[0048] In some embodiments, such as Figure 5 and Figure 6 As shown, the stirring head assembly 12 includes a mounting bracket 121, a connecting rod 122, and a blade 123. The mounting bracket 121 can be connected to the main body 10 through a snap-fit ​​structure. The snap-fit ​​structure enables the stirring head assembly 12 and the main body 10 to be detachably connected, which is stable and easy to operate.

[0049] The connecting rod 122 has a first end and a second end. The mounting bracket 121 may be provided with a through hole 1012. After the connecting rod 122 passes through the through hole 1012, the first end and the second end are respectively located on both sides of the mounting bracket 121. The first end of the connecting rod 122 is connected to the drive assembly. The blade 123 is fixedly installed on the second end of the connecting rod 122. The connecting rod 122 can rotate relative to the mounting bracket 121. When the drive assembly drives the connecting rod 122 to rotate, it will drive the blade 123 to rotate, thereby stirring and crushing the food in the container cup 11.

[0050] In some embodiments, such as Figure 6 As shown, the mounting bracket 121 includes a mounting panel 1211 and a reinforcing seat 1212. The reinforcing seat 1212 is connected to the middle of the mounting panel 1211 and extends along the length of the connecting rod 122 toward the blade 123. A through hole 1012 passes through the reinforcing seat 1212. The mounting panel 1211 increases the contact area between the mounting bracket 121 and the main body 10, thereby further improving the stability of the connection between the mounting bracket 121 and the main body 10. By providing the reinforcing seat 1212 extending along the connecting rod 122, the support strength for the connecting rod 122 is improved, thereby preventing the blade 123 from radially swaying when the connecting rod 122 rotates, i.e., the rotation center of the blade 123 deviates from the rotation axis of the connecting rod 122.

[0051] In some embodiments, such as Figure 6 As shown, the mounting bracket 121 also includes at least two reinforcing ribs 1213. The reinforcing members are connected between the mounting panel 1211 and the reinforcing seat 1212 bracket, and the at least two reinforcing ribs 1213 are distributed in a circular array with the center of the through hole 1012 as the center. By setting the reinforcing ribs 1213, the support strength of the reinforcing seat 1212 for the connecting rod 122 is further improved.

[0052] In some embodiments, such as Figure 5 As shown, the mounting base 101 may include a stirring mounting part 1011, which may be provided with a connecting hole 1012. The first end of the connecting rod 122 extends into the connecting hole 1012 and connects to the drive assembly. The snap-fit ​​structure includes a snap-fit ​​part 151 and a slot part 152. One of the snap-fit ​​part 151 and the slot part 152 is located on the mounting bracket 121, and the other is located on the stirring mounting part 1011. The snap-fit ​​structure enables the disassembly and connection of the two parts, which is simple and convenient to operate and improves the user's ease of operation. The number of snap-fit ​​parts 151 is at least two, and the at least two snap-fit ​​parts 151 and the connecting rod 122 are distributed in a circular array. Correspondingly, the number of slot parts 152 is the same as the number of snap-fit ​​parts 151. One snap-fit ​​part 151 engages with one slot part 152. The snap-fit ​​parts 151 are distributed in a circular array to improve the stability of the connection between the mounting bracket 121 and the stirring mounting part 1011. In this embodiment, the buckle part 151 is provided on the mounting bracket 121, and the slot part 152 is provided on the stirring mounting part 1011. There are three buckle parts 151 and three slot parts 152.

[0053] In some embodiments, such as Figure 5As shown, at least two branch channels 1016 are recessed on the surface of the stirring mounting part 1011 away from the mounting bracket 121. The at least two branch channels 1016 intersect at a junction point, and the outlet end 1017 of the air guide channel is connected to one of the branch channels 1016, or the outlet end 1017 of the air guide channel is connected to the junction point. The outlet end 1017 of the branch channel 1016 passes through the stirring mounting part 1011 and is connected to the inlet end of the corresponding auxiliary channel 104.

[0054] Specifically, such as Figure 6 As shown, since the mounting bracket 121 is located between the stirring mounting part 1011 and the auxiliary channel 104, in order to avoid the mounting bracket 121 affecting the connection between the branch channel 1016 and the auxiliary channel 104, a through hole 1216 can be provided on the mounting bracket 121. After the mounting bracket 121, the stirring mounting part 1011 and the container cup 11 are installed in place, the outlet end 1017 of the branch channel 1016, the hole 1216 on the mounting bracket 121 and the inlet end of the auxiliary channel 104 are all connected.

[0055] In some embodiments, such as Figure 2 As shown, the stirring head assembly 12 may further include a bearing 124, the outer ring of which is interference-fitted with the inner wall of the through hole 1012, and the inner ring of which is interference-fitted with the outer wall of the connecting rod 122; or,

[0056] The outer ring of bearing 124 is keyed to the inner wall of through hole 1012, and the inner ring of bearing 124 is keyed to the outer wall of connecting rod 122. By setting bearing 124, the smooth rotation of connecting rod 122 can be ensured.

[0057] Specifically, such as Figure 2 As shown, the number of bearings 124 can be at least two. At least two bearings 124 are installed in the through hole 1012 and spaced apart along the axial direction of the through hole 1012. A spacer 125 can also be provided between two adjacent bearings 124. The spacer 125 is sleeved on the connecting rod 122 to keep the distance between two adjacent bearings 124 unchanged during assembly.

[0058] In some embodiments, such as Figure 5 As shown, the mounting bracket 121 has a recessed mounting groove 1214 on the side facing the stirring mounting part 1011. The stirring mounting part 1011 is at least partially accommodated in the mounting groove 1214. The cross-sectional profile of the stirring mounting part 1011 is adapted to the groove profile of the mounting groove 1214. When the stirring mounting part 1011 extends into the mounting groove 1214, the stirring mounting part 1011 can limit the horizontal movement of the mounting bracket 121 to prevent the stirring blade assembly 12 from shaking horizontally during operation.

[0059] In some embodiments, such as Figure 3 As shown, the container cup 11 has a guide nozzle 112 for guiding the food inside the container cup 11 to be stirred and crushed. In order to avoid the guide nozzle 112 from affecting the cooking efficiency, a sealing part 1215 is provided on the mounting bracket 121. After the container cup 11 is installed in place on the main body 10, the sealing part 1215 just blocks the guide nozzle 112.

[0060] In some embodiments, such as Figure 2 As shown, the drive assembly may include a drive motor 141, a transmission component 142, a gear seat 143, and a wheel axle 144. The wheel axle 144 is fixedly fitted with the gear seat 143. The drive motor 141 rotates through the transmission component 142 and the gear seat 143. The wheel axle 144 is provided with a slot for inserting the first end of the connecting rod 122. The cross-sectional shape of the slot can be polygonal, such as triangular, quadrilateral, pentagonal, or hexagonal. Correspondingly, the cross-sectional shape of the first end also matches the cross-sectional shape of the slot. When the first end is inserted into the slot, the rotation of the wheel axle 144 can drive the connecting rod 122 to rotate. The connecting rod 122 and the wheel axle 144 are connected by a plug-in method, which is simple and convenient to operate. The transmission component 142 can be a belt, chain, worm gear, etc.

[0061] The steam baby food maker provided by this utility model has an auxiliary channel on the container cup that is connected to the guide channel, which can guide high-temperature steam to the bottom of the container cup, thereby improving the utilization rate of high-temperature steam and accelerating the cooking efficiency.

[0062] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A steam food supplement machine, characterized by, The main body includes a main body, a container cup, and a steam heating device assembly, the steam heating assembly is installed in the main body, the upper part of the container cup is detachably connected to the main body, the steam heating assembly includes a water tank, a heating system and a guide channel, the heating system is used for heating the water stored in the water tank to generate high temperature steam, and the guide channel is used for guiding the high temperature steam into the container cup.

2. The complementary food machine according to claim 1, wherein The container cup includes at least two auxiliary channels, the at least two auxiliary channels are distributed along the inner wall of the container cup, and the at least two auxiliary channels are communicated with the guide channel and used for guiding the high temperature steam to the bottom of the container cup.

3. The complementary food machine according to claim 2, wherein The auxiliary channel includes a baffle and two oppositely arranged side stops, the side stops are protruded on the inner wall of the container cup, the baffle is installed between the two side stops, the baffle, the inner wall of the container cup and the two side stops form the auxiliary channel, and the auxiliary channel is configured in a structure that the upper end space is larger than the lower end space.

4. The complementary food machine according to claim 3, wherein The baffle is detachably connected with the two side stops, and / or the baffle is provided with an air outlet hole.

5. The complementary food machine according to claim 1, wherein The main body includes a mounting base extending towards the container cup, the upper part of the container cup has an opening, the mounting base is at least partially inserted into the container cup through the opening and seals the opening, and the mounting base and the upper part of the container cup are detachably connected through a bayonet structure.

6. The complementary food machine according to claim 5, wherein The bayonet structure includes a clamping part and a clamping groove, one of the side surface of the mounting base or the inner wall of the container cup is provided with the clamping part, and the other is provided with the clamping groove, the clamping groove includes a vertical sliding groove and a horizontal sliding groove, the horizontal sliding groove is arranged in a circumferential direction, the vertical sliding groove is arranged in a direction different from the circumferential direction and communicated with the horizontal sliding groove, the vertical sliding groove has a sliding inlet, and the clamping part enters the vertical sliding groove through the sliding inlet and slides along the vertical sliding groove into the horizontal sliding groove.

7. The complementary food machine according to claim 5, wherein The mounting base is further provided with a pressure relief channel, the pressure relief channel is communicated with the container cup and the external environment, and the pressure relief channel is further provided with a pressure relief valve.

8. The complementary food machine according to claim 7, wherein The pressure relief valve includes at least two flexible parts, the at least two flexible parts can be spliced into a whole and block the pressure relief channel, and at least two flexible parts can be deformed under pressure to open the pressure relief channel.

9. The complementary food machine according to any one of claims 1 to 8, wherein Further comprising a driving assembly and a stirring blade head assembly, the driving assembly is installed in the main body, the stirring blade head assembly is located in the container cup, and the driving assembly is used for driving the stirring blade head assembly.

10. The complementary food machine according to claim 9, wherein The stirring blade head assembly is detachably connected with the driving assembly, and the lower part of the stirring blade head assembly is suspended.