A milk frother

By separating the heating element from the kettle and employing a heat-insulated design, the formula maker solves the problems of inconvenience and noise in existing technologies, achieving improvements in convenience and heating uniformity.

CN224307143UActive Publication Date: 2026-06-02浙江夕尔科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
浙江夕尔科技有限公司
Filing Date
2025-06-25
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing formula makers are inconvenient to operate, have increased weight, and produce harsh noise because the kettle and heating element are fixed together, which affects the user's health.

Method used

Design a formula maker in which the heating element is partially surrounded by the base assembly, the kettle assembly is separated from the base assembly, and heat insulation and limiting structures are used. The heating plate does not directly contact the kettle, and heating is achieved through the combination of the metal heating plate and the heating tube, which reduces the weight of the kettle and improves the uniformity of heating.

Benefits of technology

It improves ease of use, reduces kettle weight, eliminates harsh noise, and enhances heating uniformity and user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224307143U_ABST
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Abstract

A kind of milk regulator, the milk regulator includes: base assembly, half-enclosed with a heating assembly is fixed, so that the top surface of heating assembly is exposed to base assembly outside;Water jug assembly is placed on base assembly, or mutually separate with base assembly;When the water jug assembly is placed on base assembly, the bottom surface of water jug assembly is closely combined with the top surface of heating assembly.The utility model discloses by the gravity of heating assembly is transferred to base assembly, the weight of water jug assembly is effectively reduced, to effectively improve the convenience of product use.Meanwhile, by the liquid in heating assembly and water jug non-direct contact, not only heating and heat transfer more evenly, but also will not produce piercing noise, to greatly reduce the negative influence of user's mental health.
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Description

Technical Field

[0001] This utility model relates to the field of maternal and infant products technology, and in particular to a formula maker. Background Technology

[0002] A bottle warmer, also known as a formula warmer, was originally used to warm cooled boiled water to a suitable temperature for babies to drink, in order to prepare formula for feeding. The basic function of a bottle warmer is to maintain a constant water temperature, hence it is also called a constant temperature bottle warmer.

[0003] Typical thermostatic formula warmers, such as rapid thermostatic formula warmers, use an integrated structure of the heating element and water container, similar to a household electric kettle. This not only improves heating efficiency and enables rapid temperature adjustment, but these warmers usually also have a water boiling function, which can be completed in a few minutes. When using this type of rapid thermostatic formula warmer, it is recommended to boil the water in advance and allow it to cool naturally to room temperature. When you need to prepare formula, adjust the temperature control knob, and the water temperature will reach the desired level within one minute. Alternatively, you can adjust the temperature control knob before boiling the water, and the water temperature will naturally drop to the set temperature and remain constant after boiling.

[0004] However, the aforementioned bottle warmers are generally fixed together mechanically or with glue, making the entire kettle body quite heavy and inconvenient to operate. Furthermore, when using these kettles, a significant amount of water remains inside, exacerbating the inconvenience and increasing the risk of the kettle slipping from the hand and causing burns. On the other hand, because the heating element is in almost direct contact with the water, the bursting of bubbles from the high-temperature water vapor during operation generates a loud, piercing noise, which can have a significant negative impact on the user's mental health. Utility Model Content

[0005] To overcome the shortcomings of existing technologies, this utility model provides a formula warmer that reduces the weight of the kettle, is convenient to use, and provides even heating. To solve the above-mentioned technical problems, this utility model provides the following technical solution:

[0006] A formula maker, the formula maker comprising:

[0007] A base assembly, which is semi-enclosed to a heating component, so that the top surface of the heating component is exposed outside the base assembly, includes a housing and an outer shell that are fixed to each other, and a heat insulation component. The housing is located inside the outer shell, and the heat insulation component is located between the housing and the heating component. A gap is left between the side of the heat insulation component and the side wall of the housing.

[0008] The kettle assembly is placed on the base assembly or is separate from the base assembly;

[0009] When the kettle assembly is placed on the base assembly, the bottom surface of the kettle assembly is in close contact with the top surface of the heating assembly.

[0010] Based on the above technical solution, the present invention may also adopt the following further technical solutions:

[0011] The side wall of the housing is provided with an annular concave surface, and the outer periphery of the heat insulation component is provided with an annular retaining edge. The cross-section of the annular retaining edge is arc-shaped. When the heat insulation component is fixed inside the housing, the annular retaining edge abuts against the annular concave surface to deform the annular retaining edge.

[0012] The bottom of the housing is provided with a limiting member, and the bottom of the heat insulation member is provided with a limiting step. When the heat insulation member is fixed inside the housing, the limiting member and the limiting step press against each other.

[0013] A first heat insulation space is formed between the outer wall of the limiting step, the side of the heat insulation component, and the side wall of the shell, and a second heat insulation space is formed between the inner wall of the limiting step, the bottom surface of the heat insulation component, and the bottom surface of the shell.

[0014] The heating assembly includes a heating tube and a heating plate that are tightly connected. The heating tube is located at the bottom of the heating plate, and the top surface of the heating plate is in close contact with the bottom surface of the kettle assembly.

[0015] The heating plate has a fixing groove, and the heating tube is tightly fixed in the fixing groove of the heating plate.

[0016] The heating plate is made of metal and has a thickness of not less than 1.5 mm.

[0017] The base assembly also includes a control unit and a screen. The screen is located on the housing, and the control unit is located inside the housing and is electrically connected to the screen and the heating assembly via wires.

[0018] The kettle assembly includes a kettle, a lid that fits onto the kettle, and a handle located on the side of the kettle. The bottom surface of the kettle is in close contact with the top surface of the heating assembly.

[0019] Compared with the prior art, the beneficial effects that this utility model can achieve are:

[0020] This invention effectively reduces the weight of the kettle assembly by transferring the weight of the heating element to the base assembly, thereby significantly improving the ease of use of the product. Furthermore, by avoiding direct contact between the heating element and the liquid in the kettle, heating and heat transfer are more even, and no harsh noise is generated, greatly reducing the negative impact on the user's mental health. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of a formula maker according to the present invention.

[0022] Figure 2 This is a cross-sectional view of a formula maker according to the present invention.

[0023] Figure 3 This is an exploded view of a formula maker according to the present invention.

[0024] The components include: base assembly 1, housing 11, annular concave surface 111, side wall 112, limiting member 113, outer shell 12, heat insulation member 13, annular retaining edge 131, arc 132, side 133, limiting step 134, control unit 14, screen 15, kettle assembly 2, kettle 21, kettle lid 22, handle 23, heating element 31, heating plate 32, and fixing groove 33. Detailed Implementation

[0025] The following description, in conjunction with the accompanying drawings, further illustrates a formula maker provided by this utility model.

[0026] like Figure 1-3 As shown, a formula maker includes a base assembly 1, a kettle assembly 2, and a heating assembly.

[0027] The heating component is partially enclosed and fixed inside the base assembly 1, while the top surface of the heating component is exposed outside the base assembly 1.

[0028] Furthermore, the base assembly 1 includes a housing 11 and an outer shell 12 that are fixed to each other, with the housing 11 disposed inside the outer shell 12.

[0029] Furthermore, the base assembly 1 also includes a heat insulation element 13, which is disposed between the housing 11 and the heating element.

[0030] Furthermore, the side wall of the housing 11 is provided with an annular concave surface 111, and the outer periphery of the heat insulation member 13 is provided with an annular retaining edge 131. The cross-section of the annular retaining edge 131 is arc-shaped 132. When the heat insulation member 13 is fixed inside the housing 11, the annular retaining edge 131 abuts against the annular concave surface 111 to cause the annular retaining edge 131 to deform. This can be understood as an interference fit between the heat insulation member 13 and the housing 11.

[0031] Furthermore, a gap is left between the side 133 of the heat insulation component 13 and the side wall 112 of the housing 11.

[0032] Furthermore, the bottom of the housing 11 is provided with a limiting member 113, and the bottom of the heat insulation member 13 is provided with a limiting step 134. When the heat insulation member 13 is fixed inside the housing 11, the limiting member 113 and the limiting step 134 press against each other to limit and fix the heat insulation member 13 and the housing 11.

[0033] Furthermore, a first heat insulation space is formed between the outer wall of the limiting step 134, the side of the heat insulation member 13, and the side wall of the shell 11, and a second heat insulation space is formed between the inner wall of the limiting step 134, the bottom surface of the heat insulation member 13, and the bottom surface of the shell 11. The design of two heat insulation spaces can increase the heat insulation effect.

[0034] Furthermore, the base assembly 1 is also provided with a control unit 14 and a screen 15. The screen 15 is located on the housing 12, and the control unit 14 is located inside the housing 12. The control unit 14, the screen 15 and the heating assembly are electrically connected by wires.

[0035] Specifically, the kettle assembly 2 can be placed on the base assembly 1, or it can be used separately from the base assembly 1.

[0036] Furthermore, when the kettle assembly 2 is placed on the base assembly 1, the bottom surface of the kettle assembly 2 is in close contact with the top surface of the heating assembly.

[0037] Furthermore, the heating assembly includes a heating tube 31 and a heating plate 32 that are tightly connected. The heating tube 31 is located at the lower part of the heating plate 32, and the top surface of the heating plate 32 is in close contact with the bottom surface of the kettle assembly 2.

[0038] Furthermore, the heating plate 32 has a fixing groove 33, and the heating tube 31 is tightly fixed in the fixing groove of the heating plate 32 for positioning.

[0039] Furthermore, the heating plate 32 is made of metal to conduct heat, and the thickness of the heating plate 32 is not less than 1.5 mm.

[0040] Specifically, the kettle assembly 2 includes a kettle 21, a lid 22 that fits onto the kettle 21, and a handle 23 located on the side of the kettle 21. The bottom surface of the kettle 21 is in close contact with the top surface of the heating assembly. The kettle 21 may be made of materials such as glass or stainless steel.

[0041] This utility model has been illustrated and described with reference to preferred embodiments; however, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.

Claims

1. A formula maker, characterized in that... The formula maker includes: A base assembly, which is semi-enclosed to a heating component, so that the top surface of the heating component is exposed outside the base assembly, includes a housing and an outer shell that are fixed to each other, and a heat insulation component. The housing is located inside the outer shell, and the heat insulation component is located between the housing and the heating component. A gap is left between the side of the heat insulation component and the side wall of the housing. The kettle assembly is placed on the base assembly or is separate from the base assembly; When the kettle assembly is placed on the base assembly, the bottom surface of the kettle assembly is in close contact with the top surface of the heating assembly.

2. A formula maker according to claim 1, characterized in that... The side wall of the housing is provided with an annular concave surface, and the outer periphery of the heat insulation component is provided with an annular retaining edge. The cross-section of the annular retaining edge is arc-shaped. When the heat insulation component is fixed inside the housing, the annular retaining edge abuts against the annular concave surface to deform the annular retaining edge.

3. A formula maker according to claim 1, characterized in that... The bottom of the housing is provided with a limiting member, and the bottom of the heat insulation member is provided with a limiting step. When the heat insulation member is fixed inside the housing, the limiting member and the limiting step press against each other.

4. A formula maker according to claim 3, characterized in that... A first heat insulation space is formed between the outer wall of the limiting step, the side of the heat insulation component, and the side wall of the shell, and a second heat insulation space is formed between the inner wall of the limiting step, the bottom surface of the heat insulation component, and the bottom surface of the shell.

5. A formula maker according to claim 1, characterized in that... The heating assembly includes a heating tube and a heating plate that are tightly connected. The heating tube is located at the bottom of the heating plate, and the top surface of the heating plate is in close contact with the bottom surface of the kettle assembly.

6. A formula maker according to claim 5, characterized in that... The heating plate has a fixing groove, and the heating tube is tightly fixed in the fixing groove of the heating plate.

7. A formula maker according to claim 5, characterized in that... The heating plate is made of metal and has a thickness of not less than 1.5 mm.

8. A formula maker according to claim 1, characterized in that... The base assembly also includes a control unit and a screen. The screen is located on the housing, and the control unit is located inside the housing and is electrically connected to the screen and the heating assembly via wires.

9. A formula maker according to claim 1, characterized in that... The kettle assembly includes a kettle, a lid that fits onto the kettle, and a handle located on the side of the kettle. The bottom surface of the kettle is in close contact with the top surface of the heating assembly.