Milk shaking frame and milk shaking device with milk warming function

By setting up a gas accumulation chamber and misaligned air intake holes in the milk shaker, the problem of uneven warming of the existing milk shaker is solved, and the hot air in the bottle is uniformly distributed, which improves the milk warming effect.

CN223081534UActive Publication Date: 2025-07-11YUNBABY IND (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202421916796.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-11
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

Due to structural limitations of the existing milk shaker, the bottom of the rotating milk shaker has formed a hot and cold zone, and the air inlet is uneven, affecting the effect of the milk warming.

Method used

A milk shaker is designed, with a gas accumulation chamber and multiple air intake holes inside, and the air intake holes are arranged in a misaligned manner, combining the gas accumulation chamber and a hot air conveying mechanism to achieve uniform distribution of hot air in the milk shaker.

Benefits of technology

The uniform distribution of hot air in the bottle is achieved, the effect of warming milk is improved, and the uniform intake of each air intake hole is ensured, and the formation of hot and cold areas is avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a milk shaking frame and a milk shaking device with a milk warming function, and relates to the technical field of milk shaking devices, the milk shaking frame is internally provided with a milk bottle placing cavity, the milk shaking frame is provided with a milk bottle placing opening communicated with the milk bottle placing cavity, and the bottom edge of the milk shaking frame or the part close to the bottom edge extends downwards to form a wind gathering part; the air gathering part is provided with an air gathering cavity and an air inlet opening located in the bottom of the air gathering part, and a plurality of air inlet holes enabling the air gathering cavity to be communicated with the feeding bottle containing cavity are formed in the bottom of the milk shaking frame in a penetrating mode. The bottom of the milk shaking frame is connected with a milk shaking rotating shaft seat, at least the upper end of the milk shaking rotating shaft seat is located in the gas gathering cavity, and when the milk shaking frame is driven to rotate, hot air can be filled in the gas gathering cavity after penetrating through the air inlet opening and entering the gas gathering cavity, so that air pressure and more sufficient hot air distribution can be formed; therefore, each air inlet hole can simultaneously have uniform air inflow, milk warming is more uniform, and the milk warming effect is better.
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Description

Technical Field

[0001] The utility model relates to the technical field of milk shakers, in particular to a milk shaking rack and a milk shaker with a milk warming function. Background Art

[0002] Milk shakers with a milk warming function are becoming more and more popular in the market. They can not only help parents brew milk powder more conveniently and shake it evenly, but also keep the milk liquid within a suitable temperature range for convenient feeding at any time. The product structures are diverse, such as the Chinese utility model "Multifunctional Milk Shaker" with the publication number CN221044809U, which drives a rotating milk shaking bucket to rotate for milk shaking through a motor, and provides hot air through a hot air device composed of a blower, a wind guiding component and a heating element. The hot air can enter the rotating milk shaking bucket through a hot air outlet on the shell and a hot air inlet opened at the bottom of the rotating milk shaking bucket to heat and warm the milk bottle.

[0003] In the design of uniform milk warming, multiple hot air inlets are usually evenly arranged at the bottom of the rotating milk shaking bucket. However, due to the structural installation limitation of the motor at the bottom of the milk shaker, the hot air device and the hot air outlet are usually only arranged on one side below the rotating milk shaking bucket. This results in that although each hot air inlet can be rotated above the hot air outlet and be directly opposite to the hot air inlet after the motor drives the rotating milk shaking bucket, it also forms a hot area close to the hot air outlet and a cold area far from the hot air outlet at the bottom of the rotating milk shaking bucket. Relative to the rotating milk shaking bucket, the positions of the hot area and the cold area are constantly changing. But for overall heating, it forms that the rotating milk shaking bucket is heated in the hot area and cooled in the cold area, and the air intake of each hot air inlet is not synchronous enough, which is not conducive to uniform milk warming. Summary of the Utility Model

[0004] The utility model aims to provide a technical solution to solve the above problems in order to overcome the above situations.

[0005] To achieve the above object, the utility model provides the following technical solution: A milk shaking rack, the inside of the milk shaking rack has a milk bottle placement cavity, the milk shaking rack has a milk bottle placement opening communicating with the milk bottle placement cavity, and a wind gathering part extends downward from the bottom edge or a part near the bottom edge of the milk shaking rack; the wind gathering part has a gas gathering cavity and an air intake opening at the bottom of the wind gathering part, and a plurality of air intake holes penetrating through the bottom of the milk shaking rack to communicate the gas gathering cavity with the milk bottle placement cavity are provided; a milk shaking rotating shaft seat is connected to the bottom of the milk shaking rack, and at least the upper end of the milk shaking rotating shaft seat is located in the gas gathering cavity.

[0006] As a further scheme of the utility model: The milk shaking rotating shaft seat is vertically arranged.

[0007] As a further solution of the present utility model: The air inlet holes are provided with at least one circle, and each circle of air inlet holes takes the rotation center line of the milk-shaking rotating shaft seat as the surrounding center line.

[0008] As a further solution of the present utility model: The air inlet holes are provided with multiple circles, and the multiple circles of air inlet holes form an inner circle of air inlet holes close to the rotation center line of the milk-shaking rotating shaft seat and an outer circle of air inlet holes close to the bottom edge of the milk-shaking frame.

[0009] As a further solution of the present utility model: At least some of the air inlet holes in the inner circle of air inlet holes are arranged in a staggered manner with the air inlet holes in the outer circle of air inlet holes.

[0010] As a further solution of the present utility model: The aperture of the air inlet holes in the inner circle is smaller than the aperture of the air inlet holes in the outer circle.

[0011] As a further solution of the present utility model: The gas accumulation cavity is an annular cavity with the rotation center line of the milk-shaking rotating shaft seat as the center line.

[0012] The present utility model also provides the following technical solution: A milk warmer with a milk-shaking function, including the above-mentioned milk-shaking frame, and further including a housing, on which a milk-shaking rotation mechanism and a hot air conveying mechanism are provided; the milk-shaking frame is drivingly connected by the driving end of the milk-shaking rotation mechanism; the hot air conveying mechanism is configured to convey hot air from the air inlet opening into the gas accumulation cavity.

[0013] As a further solution of the present utility model: A wind-collecting bottom cover corresponding to the air inlet opening is provided on the housing, wherein there is an activity gap suitable for milk shaking of the milk-shaking frame between the wind-collecting bottom cover and the wind-collecting part; a hot air conveying port is opened on the wind-collecting bottom cover, and the hot air conveying mechanism has a hot air conveying pipeline communicated with the hot air conveying port.

[0014] As a further solution of the present utility model: A temperature sensor is provided in the gas accumulation cavity, and the temperature sensor is located at a position in the gas accumulation cavity far from the hot air conveying port; the temperature sensor is extended and installed on the wind-collecting bottom cover or the housing.

[0015] Compared with the prior art, the beneficial effect of this technical solution is that when the milk-shaking frame is driven to rotate, after the hot air passes through the air inlet opening and enters the gas accumulation cavity, it can be filled in the gas accumulation cavity, so as to form wind pressure and a more uniform distribution of hot air, so that each air inlet hole can have a relatively uniform air intake volume at the same time, and the milk warming is more uniform and the milk warming effect is better.

[0016] The additional aspects and advantages of the present utility model will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the present utility model. Description of the Drawings

[0017] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 is a three-dimensional structural view of the milk-shaking rack of the present invention;

[0019] Figure 2 is another three-dimensional structural view of the milk-shaking rack of the present invention;

[0020] Figure 3 is a three-dimensional structural view of the milk-shaking device of the present invention.

[0021] The corresponding reference numerals in the drawings are explained as follows:

[0022] Milk-shaking rack - 1,

[0023] Baby bottle placement cavity - 101, baby bottle insertion opening - 102, wind gathering part - 103, gas gathering cavity - 104, air inlet opening - 105, air inlet hole - 106, milk-shaking rotating shaft seat - 107, elastic clamping assembly - 108,

[0024] Milk-shaking device - 2,

[0025] Shell - 201, motor - 202, fan - 203, hot air delivery pipeline - 204, electric heating element - 205, wind gathering bottom cover - 206, hot air delivery port - 207, temperature sensor - 208. Detailed implementation manners

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0027] Please refer to Figures 1-3 , a milk-shaking rack. The interior of the milk-shaking rack 1 has a baby bottle placement cavity 101, and the milk-shaking rack 1 has a baby bottle insertion opening 102 communicating with the baby bottle placement cavity 101. As Figure 1 shown, the baby bottle insertion opening 102 is opened on the top of the milk-shaking rack 1, and the user can place the baby bottle into the baby bottle placement cavity 101 from the baby bottle insertion opening 102.

[0028] At the bottom edge of the milk-shaking rack 1 or at a position close to the bottom edge, a wind-gathering part 103 extends downward; the wind-gathering part 103 has a gas-gathering cavity 104 and an air intake opening 105 at the bottom of the wind-gathering part. The bottom of the milk-shaking rack 1 is penetrated by a plurality of air intake holes 106 that communicate the gas-gathering cavity 104 with the milk bottle placement cavity 101. The hot air used for heating and warming the milk bottle in the milk bottle placement cavity 101 can sequentially pass through the air intake opening 105, the gas-gathering cavity 104, and the air intake holes 106 from bottom to top and then enter the milk bottle placement cavity 101.

[0029] A milk-shaking rotating shaft seat 107 is connected to the bottom of the milk-shaking rack 1, and at least the upper end of the milk-shaking rotating shaft seat 107 is located in the gas-gathering cavity 104. The milk-shaking rotating shaft seat 107 can be drivingly connected to the driving end of an external milk-shaking rotating mechanism, and the milk-shaking rotating shaft seat 107 is driven to rotate by the milk-shaking rotating mechanism, so that the milk bottle on the milk-shaking rack 1 can be driven to rotate for milk shaking.

[0030] In some embodiments, the milk-shaking rotating shaft seat 107 is vertically arranged. The gas-gathering cavity 104 is an annular cavity with the rotation center line of the milk-shaking rotating shaft seat 107 as the center line. The air intake holes 106 are provided with at least one circle, and each circle of air intake holes is centered around the rotation center line of the milk-shaking rotating shaft seat 107.

[0031] Preferably, the air intake holes 106 are provided with multiple circles. The multiple circles of air intake holes form an inner circle of air intake holes close to the rotation center line of the milk-shaking rotating shaft seat 107 and an outer circle of air intake holes close to the bottom edge of the milk-shaking rack 1.

[0032] More preferably, at least some of the air intake holes in the inner circle of air intake holes are arranged in a staggered manner with the air intake holes in the outer circle of air intake holes. The staggered arrangement means that the connection line between the center of the air intake hole and the center of the circle does not coincide. The aperture of the air intake holes in the inner circle is smaller than the aperture of the air intake holes in the outer circle.

[0033] When the milk-shaking rack 1 is driven to rotate, after the hot air passes through the air intake opening 105 and enters the gas-gathering cavity 104, it can be filled in the gas-gathering cavity 104, so that wind pressure and a more uniform distribution of hot air can be formed, enabling each air intake hole 106 to have a relatively uniform air intake volume at the same time, making the milk warming more uniform and the milk-warming effect better.

[0034] When there is accumulated water in the milk bottle placement cavity 101, the design of the air intake holes, especially the design of the aperture and the position misalignment, combined with the rotation of the milk-shaking rotating mechanism, can drain and centrifuge the accumulated water in the milk bottle placement cavity 101 more quickly.

[0035] In some embodiments, an elastic clamping assembly 108 for elastically clamping a feeding bottle placed in the feeding bottle placement cavity 101 is provided on the milk shaking stand 1. The elastic clamping assembly 108 has a chuck that contacts the feeding bottle. The elastic clamping assembly 108 includes a plurality of elastic clamping arms, and the elastic clamping arms are arranged in an inverted V shape.

[0036] In this embodiment, a milk warmer 2 with a milk shaking function includes the milk shaking stand 1 of any of the above embodiments, and further includes a housing 201. A milk shaking rotation mechanism and a hot air delivery mechanism are provided on the housing 201; the milk shaking stand 1 is drivingly connected to the driving end of the milk shaking rotation mechanism; the hot air delivery mechanism is configured to deliver hot air from the air inlet opening 105 into the gas gathering cavity 104.

[0037] When the milk shaking stand 1 is driven to rotate, after the hot air passes through the air inlet opening 105 and enters the gas gathering cavity 104, it can be filled in the gas gathering cavity 104, so that a wind pressure and a more sufficient hot air distribution can be formed, so that each air inlet hole 106 can have a relatively uniform air intake, and the milk warming is more uniform and the milk warming effect is better.

[0038] A wind gathering bottom cover 206 corresponding to the air inlet opening 105 is provided on the housing 201. There is an activity gap suitable for milk shaking of the milk shaking stand 1 between the wind gathering bottom cover 206 and the wind gathering part 103; a hot air delivery port 207 is opened on the wind gathering bottom cover 206, and the hot air delivery mechanism has a hot air delivery pipe communicating with the hot air delivery port 207.

[0039] In some embodiments, the hot air delivery mechanism includes a fan 203 and a hot air delivery pipe 204 installed on the housing 201. An electric heating element 205 is installed in the hot air delivery pipe 204. The air outlet of the hot air delivery pipe 204 communicates with the hot air delivery port 207. The fan 203 delivers air into the gas gathering cavity 104 through the hot air delivery pipe 204 and the hot air delivery port 207. During this period, the electric heating element 205 heats the gas passing through the hot air delivery pipe 204, so that the air sent into the gas gathering cavity 104 is hot air.

[0040] In some embodiments, the milk shaking rotation mechanism includes a motor 202 installed on the housing 201. The motor 202 is located at the bottom of the wind gathering bottom cover 206. A rotating shaft hole is correspondingly opened on the wind gathering bottom cover 206. The rotating shaft of the motor 202 axially passes through the rotating shaft hole and is axially connected to the milk shaking rotating shaft seat 107. When the rotating shaft of the motor rotates, the milk shaking stand 1 is driven to rotate at the same time. Through the design of the wind gathering bottom cover 206, when delivering hot air, the static pressure in the gas gathering cavity 104 can be further increased.

[0041] When the milk shaking rotation mechanism drives the milk shaking stand 1 to rotate, the reserved activity gap prevents the wind gathering bottom cover 206 from blocking the rotation of the milk shaking stand 1.

[0042] In some embodiments, a temperature sensor 208 is disposed in the gas accumulation chamber 104, and the temperature sensor 208 is located at a position in the gas accumulation chamber 104 away from the hot air delivery port. The temperature sensor 208 is mounted on the air collecting bottom cover or the housing. The gas accumulation chamber 104 forms a uniform distribution of the gas before the milk shaker intake, and by arranging the temperature sensor 208 at a position in the gas accumulation chamber 104 away from the hot air delivery port 207, errors can be effectively reduced when measuring the temperature of the gas before entering the milk shaker.

[0043] In some embodiments, the temperature sensor 208 may be an NTC thermistor.

[0044] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-described exemplary embodiments, and without departing from the spirit or basic characteristics of the present utility model, the present utility model can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be construed as limiting the claimed rights.

Claims

1. A milk-shaking stand, characterized in that, The interior of the milk-shaking rack has a milk bottle placement cavity. There is a milk bottle insertion opening on the milk-shaking rack that communicates with the milk bottle placement cavity. A wind-gathering part extends downward from the bottom edge or a part near the bottom edge of the milk-shaking rack. The wind-gathering part has a gas gathering cavity and an air intake opening at the bottom of the wind-gathering part. A plurality of air intake holes that communicate the gas gathering cavity with the milk bottle placement cavity penetrate through the bottom of the milk-shaking rack. A milk-shaking rotating shaft seat is connected to the bottom of the milk-shaking rack. At least the upper end of the milk-shaking rotating shaft seat is located within the gas gathering cavity.

2. The milk-shaking stand according to claim 1, characterized in that, The milk-shaking rotating shaft seat is vertically arranged.

3. The milk-shaking rack according to claim 2, wherein, There is at least one circle of the air intake holes. Each circle of air intake holes takes the rotation center line of the milk-shaking rotating shaft seat as the surrounding center line.

4. The milk-shaking stand according to claim 3, wherein There are multiple circles of air intake holes. The multiple circles of air intake holes form an inner circle of air intake holes close to the rotation center line of the milk-shaking rotating shaft seat and an outer circle of air intake holes close to the bottom edge of the milk-shaking rack.

5. A milk shaking stand according to claim 4, characterized in that, At least some of the air intake holes in the inner circle of air intake holes are arranged in a staggered manner with the air intake holes in the outer circle of air intake holes.

6. A milk-shaking stand according to claim 4 or 5, characterized in that, The aperture of the air intake holes in the inner circle is smaller than the aperture of the air intake holes in the outer circle.

7. A milk-shaking stand according to any one of claims 2-5, characterized in that, The gas gathering cavity is an annular cavity with the rotation center line of the milk-shaking rotating shaft seat as the center line.

8. A milk shaker with a milk warming function, characterized in that, It includes the milk-shaking rack according to any one of claims 1-7, and further includes a housing. A milk-shaking rotating mechanism and a hot air conveying mechanism are arranged on the housing. The milk-shaking rack is drivingly connected by the driving end of the milk-shaking rotating mechanism. The hot air conveying mechanism is configured to convey hot air into the gas gathering cavity from the air intake opening.

9. The milk warmer and shaker according to claim 8, wherein, A wind-gathering bottom cover corresponding to the air intake opening is arranged on the housing. Among them, there is an activity gap suitable for the milk-shaking rack to shake milk between the wind-gathering bottom cover and the wind-gathering part. A hot air conveying port is opened on the wind-gathering bottom cover. The hot air conveying mechanism has a hot air conveying pipeline communicated with the hot air conveying port.

10. A milk warmer and shaker according to claim 8 or 9, characterized in that, A temperature sensor is arranged in the gas gathering cavity. The temperature sensor is located at a position in the gas gathering cavity far from the hot air conveying port. The temperature sensor is extended and installed on the wind-gathering bottom cover or the housing.

Citation Information

Patent Citations

  • Multifunctional milk shaker

    CN221044809U