Milk mixing and shaking combined disinfection cabinet

By integrating the formula preparation and shaking functions into a single sterilizer through a modular power supply design, the problem of existing combined formula preparation and sterilizers not integrating the shaking function is solved, enabling convenient and efficient formula preparation and shaking operations, which is suitable for the space-constrained needs of modern families.

CN223787542UActive Publication Date: 2026-01-13ZHONGSHAN HANJIA ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202520207396.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-13
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

Existing combination formula sterilizers do not integrate a shaking function, which forces mothers to manually shake the bottles during formula preparation, increasing labor intensity and inconvenience.

Method used

Design a combined milk preparation and shaking sterilizer, comprising a sterilizer body, a functional base, a milk preparation device, and a milk shaking device. The device can be used alternately through a modular power supply component, which is compatible with the power supply component. Users can switch between using the milk preparation or shaking function in the same location.

Benefits of technology

It integrates the functions of formula preparation and milk shaking, reducing operation steps and time consumption, improving ease of use and space utilization, reducing the risk of cross-contamination, and is suitable for the limited space needs of modern families.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of household appliances, in particular to a milk mixing and shaking combined type disinfection cabinet which comprises a disinfection cabinet body, a functional seat, a milk mixing device and a milk shaking device, the functional seat is arranged on one side of the disinfection cabinet body and provided with a power supply assembly, and the power supply assembly is connected with the disinfection cabinet body. The milk mixing device and the milk shaking device are respectively provided with a power supply assembly capable of being matched with the power supply assembly, the two power supply assemblies are identical modules, and the power supply assembly can be matched with the corresponding power supply assembly, so that the milk mixing device or the milk shaking device is electrified to work. The milk mixing device and the milk shaking device can be alternately used on the functional seat, a user only needs to place the milk mixing device or the milk shaking device on the functional seat according to needs, different functions can be switched and used at the same position, and by the adoption of the design, the milk mixing function and the milk shaking function can be integrated in one disinfection cabinet; a user only needs one disinfection cabinet body and one functional seat to complete milk mixing and milk shaking.
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Description

Technical Field

[0001] This utility model relates to the field of household appliance technology, and in particular to a combination sterilizer for mixing and shaking milk. Background Technology

[0002] With the continuous updating of parenting concepts and the advancement of technology, sterilizers, as essential equipment for infant care, have gradually received widespread attention from parents, and the demand for sterilization products has increased significantly. The main function of sterilizers is to sterilize baby bottles and tableware through high temperature, ultraviolet light, and other methods to ensure the healthy diet of infants.

[0003] The emergence of modular bottle sterilizers on the current market provides parents with a convenient solution. These products not only sterilize bottles but also integrate kettle boiling and bottle sterilization functions, greatly improving space utilization and efficiency. However, due to design or size limitations, these products can only provide the two basic functions mentioned above and fail to fully meet the needs of users in actual use.

[0004] In practice, many mothers using combination formula sterilizers often need to mix warm water with formula powder and then manually shake the bottle to ensure that the formula and water are fully mixed and to avoid clumping or granulation. However, this process often takes a lot of time and energy, especially when the baby is crying. Mothers have to put down the bottle to soothe the baby, which interrupts the formula preparation process. This not only increases the mother's workload but also brings inconvenience to daily life.

[0005] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content

[0006] The aforementioned technical issue addresses the lack of a milk-shaking function in existing modular milk sterilizers due to limitations in design structure or size.

[0007] The technical solution adopted by this utility model to solve its technical problem is:

[0008] A combination sterilizer for preparing and shaking formula includes a sterilizer body, a functional base, a formula preparation device, and a shaking device. The functional base is located on one side of the sterilizer body and is equipped with a power supply component. The formula preparation device and the shaking device are each equipped with a power supply component that can cooperate with the power supply component. The two power supply components are identical modules. The power supply component can cooperate with the corresponding power supply component to power up the formula preparation device or the shaking device, so that the formula preparation device and the shaking device can be used alternately at the functional base.

[0009] As described above, in a combination sterilizer for preparing and shaking milk, the power supply component includes an upper coupler located at the top of the functional base, and the two power supply components include a first lower coupler and a second lower coupler, with the first lower coupler located at the bottom of the milk preparation device and the second lower coupler located at the bottom of the milk shaking device.

[0010] As described above, a combination sterilizer for preparing and shaking milk includes a milk preparation device comprising a pot and a heating component located at the bottom of the pot, wherein the heating component is electrically connected to a power supply component.

[0011] As described above, a combination sterilizer for preparing and shaking milk includes a shaking base, a cradle, and a drive assembly. The cradle is rotatably connected to the shaking base, and the drive assembly is located inside the shaking base and is drively connected to the cradle. The drive assembly can drive the cradle to rotate relative to the shaking base. The drive assembly is electrically connected to a power supply assembly.

[0012] As described above, in a combination sterilizer for preparing and shaking milk, the top of the functional base is provided with a positioning groove for assembling a milk preparation device or a milk shaking device, and the power supply component is located within the positioning groove.

[0013] As described above, in a combination sterilizer for preparing and shaking milk, the outer diameter of the milk preparation device is similar to or equal to the outer diameter of the milk shaking device, and the inner diameter of the positioning groove is greater than or equal to the outer diameter of the milk preparation device; the inner diameter of the positioning groove is greater than or equal to the outer diameter of the milk shaking device.

[0014] In the milk preparation and shaking combination sterilizer described above, the sum of the height of the milk preparation device and the height of the functional seat is less than or equal to the height of the sterilizer body.

[0015] In the milk mixing and shaking combination sterilizer described above, the sum of the height of the milk shaking device and the height of the functional seat is less than the height of the sterilizer body.

[0016] As described above, a combination sterilizer for preparing and shaking milk has a housing cavity and a sterilization component inside. The housing cavity can hold items, and the sterilization component can sterilize the items inside the housing cavity.

[0017] The beneficial effects of this utility model are:

[0018] This utility model relates to a combined milk preparation and shaking sterilizer, belonging to the field of household appliance technology. It includes a sterilizer body, a functional base, a milk preparation device, and a shaking device. The functional base is located on one side of the sterilizer body and is equipped with a power supply component. The milk preparation and shaking devices are each equipped with a power receiving component that can cooperate with the power supply component. The two power receiving components are identical modules. The power supply component can cooperate with the corresponding power receiving component to power up the milk preparation or shaking device. Due to the compatibility of the power supply and power receiving components, the milk preparation and shaking devices can be used alternately on the functional base. Users only need to place the milk preparation or shaking device on the functional base as needed to switch between different functions in the same location. This design integrates milk preparation and shaking functions into one sterilizer, allowing users to complete both functions with just one sterilizer body and functional base.

[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0020] Figure 1 This is one of the structural schematic diagrams of this utility model (the functional seat is equipped with a milk preparation device, and the milk shaking device is located on one side).

[0021] Figure 2 This is the second structural schematic diagram of the present invention (the functional seat is equipped with a milk shaking device and the milk mixing device is hidden).

[0022] Figure 3 This is the third structural schematic diagram of the present invention (concealed milk shaking device and milk preparation device).

[0023] Figure 4 This is a schematic diagram of the structure of the milk shaking device and the milk preparation device of this utility model;

[0024] Figure 5 This is a schematic diagram of the structure of the milk shaking device of this utility model. Detailed Implementation

[0025] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0026] like Figures 1 to 5 As shown, a combination sterilizer for preparing and shaking milk in this embodiment includes a sterilizer body 1, a functional seat 2, a milk preparation device 3, and a milk shaking device 4. The functional seat 2 is located on one side of the sterilizer body 1 and is equipped with a power supply component 5. The milk preparation device 3 and the milk shaking device 4 are respectively equipped with power supply components 6 that can cooperate with the power supply component 5. The two power supply components 6 are the same module. The power supply component 5 can cooperate with the corresponding power supply component 6 to power the milk preparation device 3 or the milk shaking device 4 so that the milk preparation device 3 and the milk shaking device 4 can be used alternately at the functional seat 2.

[0027] Specifically, the sterilizer 1 is equipped with a functional seat 2, which is located on the side of the sterilizer and integrates a power supply component 5. The design of the functional seat 2 allows the formula preparation device 3 and the formula shaking device 4 to be easily connected to the power supply component 5.

[0028] Furthermore, the formula preparation device 3 and the milk shaking device 4 are each equipped with a power supply component 6. These power supply components 6 are identical modules and can cooperate with the power supply component 5 on the function seat. Each time the formula preparation device 3 or the milk shaking device 4 is placed on the function seat 2, the power supply component 5 will automatically identify the corresponding power supply component 6 and provide power to it.

[0029] Due to the compatibility of the power supply component 5 and the power supply component 6, the formula preparation device 3 and the milk shaking device 4 can be used alternately on the function seat 2. Users only need to place the formula preparation device or the milk shaking device on the function seat as needed to switch between different functions in the same position. This design avoids the space occupied by multiple devices and reduces operational inconvenience.

[0030] This design integrates the formula preparation and shaking functions into a single sterilizer. Users only need a sterilizer and a functional unit to complete both functions, greatly saving home space, making it especially suitable for modern families with limited space.

[0031] Furthermore, when it is time to prepare formula, the user can take the bottle out from the sterilizer 1, add hot water to the bottle through the formula preparation module 3 on the function seat 2, then remove the formula preparation module 3 from the function seat 2 and place the shaking module 4 on the function seat 2. Then, the bottle with added formula can be placed on the shaking module 4 to shake the formula. After shaking the formula, the shaking module 4 can be removed from the function seat 2 and placed back on the function seat 2 to ensure a stable supply of hot water.

[0032] Furthermore, the milk-shaking device in this design can automatically shake the milk, saving mothers the trouble of manual operation. Especially when the baby is crying or needs to be soothed, parents do not need to interrupt the operation, which improves the convenience of use. This design simplifies the multi-step operation in the childcare process, making the preparation and shaking of milk powder faster and more efficient. Especially for busy mothers, it reduces time consumption and labor, allowing them to have more time to take care of their babies.

[0033] Through modular power supply design, the system enables intelligent switching between different functional devices. Mothers do not need to manually connect the power supply or change the socket. The functions are automatically identified and switched, greatly improving the ease of operation and user experience.

[0034] Furthermore, integrating sterilization, formula preparation, and shaking functions into the same device reduces the chances of bottles coming into contact with other items, lowers the risk of cross-contamination, and ensures the hygiene and safety of infants when drinking formula.

[0035] Furthermore, because the design adopts a modular power supply and alternating device function scheme, it can further expand more intelligent functions, such as temperature control, automatic timed milk preparation, and automated adjustment of the sterilization process, thereby further enhancing the added value and intelligence level of the product.

[0036] like Figures 1 to 5 As shown, the power supply component 5 in this embodiment includes an upper coupler 51, which is located on the top of the functional base 2. The two power supply components 6 include a first lower coupler 61 and a second lower coupler 62. The first lower coupler 61 is located at the bottom of the milk preparation device 3, and the second lower coupler 62 is located at the bottom of the milk shaking device 4.

[0037] Specifically, when the user places the milk preparation device 3 or the milk shaking device 4 on the functional seat 2, the corresponding first lower coupler 61 or second lower coupler 62 will contact or match with the upper coupler 51 on the functional seat, thereby realizing the transmission of power. Through the coupling of the upper coupler with the lower coupler, the milk preparation device or the milk shaking device can be powered on and work normally on the functional seat 2.

[0038] Users simply place the formula mixing device 3 or the milk shaking device 4 on the functional base, and the system automatically completes the power connection. This "plug and play" design greatly simplifies the usage process and avoids cumbersome plugging and unplugging operations, making it particularly suitable for childcare scenarios that require quick responses.

[0039] Users simply align the required module (such as a milk maker or shaker) with the upper coupler and press gently to complete the installation and power connection. No complicated plugging or unplugging or wiring operations are required, enabling quick switching between devices, improving efficiency, simplifying the power connection process, and enhancing product safety.

[0040] Furthermore, the universal design of the lower coupler reduces the number of parts, which helps to reduce production costs and improve maintenance convenience.

[0041] Thanks to the coupler design, the milk mixing device 3 and the milk shaking device 4 no longer require additional power cords or sockets to connect to the functional base. This design avoids the tangling and mess of external cables, further optimizes space utilization, and reduces the space occupied on the table or in the kitchen.

[0042] The coupler design makes the power connection more secure, less prone to loosening or poor socket contact, and ensures the safety of the equipment during use.

[0043] Furthermore, the foolproof feature of the coupler ensures that the milk mixing device 3 and the milk shaking device 4 can only be connected to the functional base 2 in the correct way, ensuring that the user will not make an incorrect connection during installation or use.

[0044] When users place the formula mixing or shaking device onto the functional base, the foolproof positioning feature helps users easily find the correct connection position, ensuring that the lower coupler and upper coupler are perfectly connected and that power can be smoothly transmitted to the device. Once assembled, the device will automatically power on and start working, ensuring smooth operation and normal use of the equipment functions.

[0045] The foolproof positioning feature ensures that the device will not malfunction or have poor power contact due to incorrect assembly, reducing the risk of failure caused by operational errors. This feature is especially important in busy or anxious parenting scenarios.

[0046] Foolproof design helps avoid safety hazards such as short circuits or device damage caused by improper connection, ensuring that the device can only be connected in the correct way, which helps improve the overall safety of use, especially for devices involving infants, where safety is of paramount importance.

[0047] Users don't need to spend extra time repeatedly adjusting the position or confirming whether the connection is correct. The foolproof design allows users to complete the operation more easily and intuitively during use, making the assembly process smoother, reducing confusion and frustration, and improving the product's ease of use and user-friendliness.

[0048] The foolproof design not only prevents incorrect connections but also ensures that every connection is precise, avoiding unstable power contact caused by incomplete contact or loose plugs during long-term use, thus improving the stability and lifespan of the device.

[0049] Whether you're a tech-savvy user or a new parent unfamiliar with the device, this foolproof design allows you to quickly master how to use it. The intuitiveness and simplicity of the design make the product widely adaptable to users from different backgrounds, increasing its market adaptability.

[0050] In addition to the coupler design described above, the power supply component 5 and the power receiving component 6 can also employ other structures to achieve power transmission and device connection. Several feasible alternatives are given below:

[0051] (1) Wireless charging structure: Through wireless charging technology, the power supply component 5 can be equipped with a built-in wireless charging transmitter, while the milk preparation device 3 and the milk shaking device 4 are equipped with built-in wireless charging receivers. When the device is placed on the functional seat, the radio magnetic field will transmit power to the receiver. No physical contact is required, and there are no physical contact points, which avoids wear and tear during the plugging and unplugging process and increases the lifespan of the device.

[0052] Furthermore, since there is no direct plug or socket, the risk of water or liquid entering the power interface is reduced, making it suitable for environments involving water or moisture. Users only need to place the device on the functional base, and the system will automatically charge it, which is convenient and intelligent.

[0053] (2) Spring-type contact connection structure: between the power supply component 5 and the power receiving component 6, spring contacts or spring-type contacts are used for electrical connection. When the milk preparation device or milk shaking device is placed on the functional seat, the spring contacts will automatically contact to realize the power transmission. The spring contacts have strong elasticity and pressure, which can ensure stable current transmission and avoid poor contact. Compared with traditional plugs and sockets, the spring-type contact structure reduces physical wear when directly plugging and unplugging, extends the device life, and can adapt to docking at different angles, ensuring that the connection between the device and the functional seat is more fault-tolerant.

[0054] (3) Metal contact sliding connection structure: between the power supply component 5 and the power supply component 6, a sliding metal contact design is adopted. When the device is placed on the functional seat, the metal contact completes the current transmission through the sliding connection. Usually, the sliding contact will ensure a stable electrical connection through a pair of conductive metal plates or contact points.

[0055] The design is not limited to the above embodiments; a suitable design can be selected according to actual needs.

[0056] like Figures 1 to 5 As shown, the top of the functional seat 2 in this embodiment is provided with a positioning groove 21 that can position and assemble the milk preparation device 3 or the milk shaking device 4, and the power supply component 5 is located in the positioning groove 21.

[0057] Specifically, the positioning groove 21 is designed to ensure that the milk preparation device 3 and the milk shaking device 4 are accurately positioned when placed on the functional seat 2. The groove provides physical positioning guidance for the device, allowing it to be accurately placed on the functional seat and avoiding poor power contact caused by improper placement.

[0058] The power supply component 5 is located in the positioning groove 21, which means that the contact position between the power supply end of the power supply module and the power receiving end of the device is very precise. The position design of the power supply component in the groove ensures that the power transmission of the device can proceed smoothly. Through this integrated design, the power supply component can accurately connect with the power input end of the device through the groove to realize the transmission of power and simplify user operation.

[0059] The positioning grooves not only ensure accurate placement of each device but also prevent poor contact or safety issues caused by improper placement. They provide physical guidance, making device placement simpler and more intuitive.

[0060] By integrating the power supply component 5 into the positioning groove 21, the complex wiring of external cables or sockets is avoided, thereby reducing the space occupied by the device. This design keeps the functional base simpler and tidier, and avoids cable tangling or mess, making it more convenient for users to use.

[0061] The positioning groove design makes device placement more intuitive and easier, allowing users to sense whether the device is correctly positioned through touch or sight. This simplifies each operation, improving the overall smoothness and comfort of use. This design significantly enhances user-friendliness, especially for new parents or users who need quick operation.

[0062] The positioning groove effectively prevents the device from shifting or falling off during use, ensuring a secure connection between the device and the functional base. This is especially important when the device is used at high frequencies, preventing power instability caused by slight displacement.

[0063] like Figures 1 to 5 As shown, in this embodiment, the outer diameter of the milk preparation device 3 is similar to or equal to the outer diameter of the milk shaking device 4, and the inner diameter of the positioning groove 21 is greater than or equal to the outer diameter of the milk preparation device 3; the inner diameter of the positioning groove 21 is greater than or equal to the outer diameter of the milk shaking device 4.

[0064] Preferably, the outer diameters of the milk preparation device 3 and the milk shaking device 4 are similar or equal, meaning that the external dimensions of the two devices are almost the same or very close. This design reduces the difference between the dimensions of the different devices, allowing them to be used interchangeably on the functional seat, and ensuring that the positioning groove 21 can position the two devices.

[0065] The inner diameter of the positioning groove 21 is greater than or equal to the outer diameter of the milk preparation device and the milk shaking device. This means that there is enough space in the positioning groove to accommodate the two devices, ensuring that they can be correctly placed and connected to the power supply component 5.

[0066] Because the inner diameter of the positioning groove is slightly larger than or equal to the outer diameter of the milk preparation device and the milk shaking device, this design ensures that the device can freely enter the groove and automatically align itself, avoiding misinstallation or instability caused by an outer diameter that is too large or too small.

[0067] Meanwhile, the tolerance design of the inner diameter (i.e., "slightly greater than or equal to") ensures that the groove can accommodate the external dimensions of the device and provides sufficient space for the device to be flexibly placed in the groove and to make stable contact with the power supply components.

[0068] Furthermore, users do not need to worry about how to adjust the docking position of the milk mixing or shaking device when placing it, because the positioning groove design allows the device to be placed in the correct position naturally, reducing the difficulty of operation. As long as the user puts the device into the groove, the device will automatically align and start working, greatly improving the convenience of use.

[0069] Because the design allows for sufficient space, the milk preparation and shaking devices can avoid direct friction or excessive pressure with the grooves during placement and removal, reducing the risk of wear and damage. This not only extends the lifespan of the devices but also enhances the product's durability.

[0070] Because the formula mixing device and the formula shaking device have similar outer diameters, the positioning groove can accurately position and assemble the two devices. Furthermore, the inner wall of the positioning groove is close to the outer wall of the device and will abut against it. This design ensures that when the device is placed on the functional seat, the positioning groove provides a physical guide to help the device align accurately and prevents it from shifting.

[0071] Furthermore, the inner wall of the positioning groove is close to or abuts against the outer wall of the device. When the device shifts, the outer wall of the device and the inner wall of the groove come into contact with each other and provide support, thereby preventing the device from tipping over or tilting on the functional seat. This design can effectively maintain the stability of the device and prevent the device from tilting or falling off due to external forces or unbalanced placement.

[0072] Furthermore, by positioning the inner wall of the groove in contact with the outer wall of the device, in addition to preventing tipping, it can also provide more physical support during use. Even if the equipment vibrates or moves during use, the tight design of the groove can effectively maintain the stability of the equipment and prevent displacement, ensuring the stable cooperation of the power supply components and the power receiving components.

[0073] By accurately positioning and stably fixing the device within the groove, the entire device looks cleaner and simpler, without any extra supports or fixing devices. This close-fitting design not only enhances the aesthetics of the functional base but also avoids externally exposed additional components, making the overall product appearance more refined.

[0074] like Figures 1 to 5As shown, in this embodiment, the sum of the height of the milk mixing device and the height of the functional seat is less than or equal to the height of the sterilizer body 1. The functional seat is placed outside the sterilizer, ensuring its height does not exceed the overall height of the sterilizer. This avoids visual disharmony or an abrupt appearance due to excessively tall external components, ensuring spatial coordination between the external milk mixing device and the main body of the sterilizer. It also prevents discomfort in appearance and structure due to mismatched external heights, maintaining a visually clean and simple appearance that meets the aesthetic and design needs of modern families.

[0075] If the functional base and formula mixing device are too high, the total height of the sterilizer may exceed the reasonable range, thus wasting space. By controlling the combined height of the functional base and device within a reasonable range, the overall design of the sterilizer is more compact, avoiding the space waste and inconvenient operation problems caused by excessive height.

[0076] The external design of the functional base ensures the stability of the formula mixing device and other items, avoiding the risk of instability or tilting caused by excessive height. The equipment has good stability and can prevent tilting or falling during use, thus improving safety.

[0077] External functional bases not only enhance the flexibility of the equipment, but also allow for positional adjustments based on actual needs. For example, if more storage space is required, the functional base can be designed to be detachable or adjustable, allowing users to adjust the equipment configuration at any time according to their needs. This design meets the needs of different users and enhances the product's adaptability and market competitiveness.

[0078] like Figures 1 to 5 As shown, in this embodiment, the sum of the height of the milk shaking device and the height of the functional seat is less than the height of the sterilization cabinet body 1. The total height of the milk shaking device and the functional seat is less than the height of the sterilization cabinet, which allows the sterilization cabinet to remain compact and efficient while providing enough space to store other items.

[0079] The total height of the milk shaking device and the functional seat is kept below the height of the sterilizer to ensure a compact and stable design. This prevents the sterilizer from looking uncoordinated or affecting external operations due to excessively tall external components. This design allows the equipment to maintain an overall aesthetic appearance and maximize its efficiency within a limited space.

[0080] Preferably, the sum of the height of the shaking device after the baby bottle is assembled and the height of the functional seat is less than the height of the sterilizer body 1. This design can prevent the baby bottle from tipping over due to being at too high a height.

[0081] like Figures 1 to 5As shown, the milk preparation device 3 in this embodiment includes a pot body 31 and a heating component located at the bottom of the pot body 31. The heating component is electrically connected to the power supply component 6.

[0082] The body of a formula mixing device (such as a baby bottle or container) is used to hold liquids (such as water or formula), while the heating element is located at the bottom of the body and heats the liquid inside the body by electric heating. The function of the heating element is to heat the liquid to a suitable temperature so that it can be used to prepare formula or for drinking.

[0083] The power supply component provides the necessary power to the heating component, ensuring its proper functioning. Typically, the power supply component connects to the heating component via wires, interfaces, or electromagnetic connections. Current flows through the power supply component to the heating component, causing the heating element (such as a heating plate or heating tube) to heat the bottom of the kettle, thus heating the liquid.

[0084] The design of the heating component and the power supply component being electrically connected allows the heating process to precisely control the heating temperature by adjusting the intensity of the current or controlling the working time of the heating element. This precise control ensures that the formula preparation device can control the temperature according to different needs (such as the specific temperature required when preparing formula), avoiding overheating or insufficient temperature. For example, the adjustment function can be achieved by controlling the circuit board of the heating component.

[0085] like Figures 1 to 5 As shown, the milk shaking device in this embodiment includes a milk shaking base 41, a cradle 42, and a drive assembly. The cradle 42 is rotatably connected to the milk shaking base 41. The drive assembly is disposed inside the milk shaking base 41 and is drively connected to the cradle 42. The drive assembly can drive the cradle 42 to rotate relative to the milk shaking base 41. The drive assembly is electrically connected to the power supply assembly 6.

[0086] Specifically, the cradle 42 (a container for holding a bottle or formula) and the cradle base 41 (a base supporting the overall structure) are rotatably connected. When the cradle is driven by the drive component, it rotates relative to the cradle base. This rotational movement effectively simulates the action of manually shaking a bottle, thereby helping to mix formula and water or evenly mix liquids.

[0087] The drive assembly (usually an electric motor, gear system, or vibration device) is located inside the cradle and is responsible for providing the power required for the cradle to rotate. The drive assembly is connected to the cradle through some kind of transmission mechanism (such as gears, belts, etc.) and can drive the cradle to rotate according to the instructions of the control system. The design of the drive assembly allows the cradle to shake at an appropriate speed and amplitude to ensure that the milk is fully mixed.

[0088] The power supply component 6 provides power to the drive component, enabling the drive component to operate. The drive component obtains energy from the power source and converts it into mechanical power to drive the cradle to rotate. This electrical connection method allows the milk shaking device to be electrically driven without manual operation, thereby saving time and effort and improving ease of operation.

[0089] The drive component can adjust the cradle's rotation mode (such as shaking frequency and amplitude) according to different needs to achieve different levels of mixing. Users can select the appropriate shaking mode through the control panel or intelligent system to ensure that milk powder or other liquid components are fully mixed and evenly dispersed, such as by controlling the circuit board of the drive component to achieve the adjustment function.

[0090] like Figures 1 to 5 As shown, the disinfection cabinet 1 in this embodiment is provided with a accommodating cavity and a disinfection component. The accommodating cavity can accommodate items, and the disinfection component can disinfect the items in the accommodating cavity.

[0091] Specifically, the storage chamber is the space inside the sterilizer, designed to store items that need to be sterilized (such as tableware, baby bottles, toys, etc.). The storage chamber is usually appropriately planned according to the size and quantity of different items to ensure that it can accommodate various items and provide sufficient sterilization space. In order to ensure the sterilization effect, the space inside the storage chamber is usually designed to be adjustable to accommodate items of different sizes and shapes.

[0092] The disinfection component is the core of a disinfection cabinet, and its main task is to disinfect the items inside the chamber. Various disinfection methods can be used; common disinfection components include ultraviolet lamps, heating elements, or steam elements, and the appropriate design can be selected based on actual needs.

[0093] This design allows the sterilizer to simultaneously perform sterilization, storage, milk shaking, and formula preparation functions, avoiding the need for multiple separate devices to occupy kitchen or nursery space. For families with limited space, this integrated design saves space, reduces the number of appliances, and simplifies the management of the home environment.

[0094] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.

Claims

1. A combination sterilizer for preparing and shaking milk, characterized in that, The device includes a sterilizing cabinet (1), a functional seat (2), a milk preparation device (3), and a milk shaking device (4). The functional seat (2) is located on one side of the sterilizing cabinet (1). The functional seat (2) is equipped with a power supply component (5). The milk preparation device (3) and the milk shaking device (4) are respectively equipped with a power supply component (6) that can cooperate with the power supply component (5). The two power supply components (6) are the same module. The power supply component (5) can cooperate with the corresponding power supply component (6) to enable the milk preparation device (3) or the milk shaking device (4) to be powered on and work, so that the milk preparation device (3) and the milk shaking device (4) can be used alternately at the functional seat (2).

2. The combined milk preparation and shaking sterilizer according to claim 1, characterized in that, The power supply component (5) includes an upper coupler (51) located at the top of the functional base (2). The two power supply components (6) include a first lower coupler (61) and a second lower coupler (62). The first lower coupler (61) is located at the bottom of the milk preparation device (3), and the second lower coupler (62) is located at the bottom of the milk shaking device (4).

3. The combined milk preparation and shaking sterilizer according to claim 1, characterized in that, The milk preparation device (3) includes a pot body (31) and a heating component located at the bottom of the pot body (31), the heating component being electrically connected to the power supply component (6).

4. The combined milk preparation and shaking sterilizer according to claim 1, characterized in that, The milk shaking device includes a milk shaking base (41), a cradle (42), and a drive assembly. The cradle (42) is rotatably connected to the milk shaking base (41). The drive assembly is located inside the milk shaking base (41) and is connected to the cradle (42) in a transmission manner. The drive assembly can drive the cradle (42) to rotate relative to the milk shaking base (41). The drive assembly is electrically connected to the power supply assembly (6).

5. A milk mixing and shaking combination sterilizer according to any one of claims 1 to 4, characterized in that, The top of the functional seat (2) is provided with a positioning groove (21) for positioning and assembling a milk preparation device (3) or a milk shaking device (4), and the power supply component (5) is located in the positioning groove (21).

6. A combined milk preparation and shaking sterilizer according to claim 5, characterized in that, The outer diameter of the milk preparation device (3) is similar to or equal to the outer diameter of the milk shaking device (4). The inner diameter of the positioning groove (21) is greater than or equal to the outer diameter of the milk preparation device (3). The inner diameter of the positioning groove (21) is greater than or equal to the outer diameter of the milk shaking device (4).

7. A milk mixing and shaking combination sterilizer according to any one of claims 1 to 4, characterized in that, The sum of the height of the milk preparation device and the height of the functional seat is less than or equal to the height of the sterilization cabinet (1).

8. A milk mixing and shaking combination sterilizer according to any one of claims 1 to 4, characterized in that, The sum of the height of the milk shaking device and the height of the functional seat is less than the height of the sterilization cabinet (1).

9. A combined milk preparation and shaking sterilizer according to claim 1, characterized in that, The disinfection cabinet (1) is provided with a accommodating cavity and a disinfection component. The accommodating cavity can accommodate items, and the disinfection component can disinfect the items in the accommodating cavity.