CN215533760U - Milk shaker - Google Patents

Milk shaker Download PDF

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Publication number
CN215533760U
CN215533760U CN202121714163.8U CN202121714163U CN215533760U CN 215533760 U CN215533760 U CN 215533760U CN 202121714163 U CN202121714163 U CN 202121714163U CN 215533760 U CN215533760 U CN 215533760U
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China
Prior art keywords
positioning sleeve
rotating
driving
milk
wall
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CN202121714163.8U
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Chinese (zh)
Inventor
何佳
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Shenzhen Chuangxiang Life E Commerce Co ltd
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Shenzhen Chuangxiang Life E Commerce Co ltd
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Abstract

The utility model discloses a milk shaker which comprises a shell, a driving mechanism and a rotating mechanism, wherein the driving mechanism is positioned at the bottom in the shell and is used for driving the rotating mechanism to rotate in the shell; one end of each clamping arm is connected to the positioning sleeve, and the other end of each clamping arm and the inner wall of the positioning sleeve are arranged at intervals to form a clamping end; the clamping end is used for approaching or departing from the inner wall of the positioning sleeve when stressed; the driving mechanism is used for driving the positioning sleeve to rotate. According to the milk shaker, the rotating disc is connected with the machine body through the bearing, so that the running stability of the milk shaker is improved, the plurality of clamping arms are arranged in the positioning sleeve at intervals, the milk bottle can be automatically centered in the rotating process, bubbles are not easy to generate, and the milk powder shaking effect is good.

Description

Milk shaker
Technical Field
The utility model relates to the technical field of milk powder shaking, in particular to a milk shaker.
Background
At present, milk powder becomes a main food for many infants, and when the infants are fed with the milk powder, the milk powder is required to be shaken up, namely, the milk powder is put into hot water according to a proportion to be fully dissolved. In order to make the milk powder dissolve more fully, people usually shake the mode of feeding bottle through the hand in order to reach the purpose of shaking even milk powder, and need shake even milk powder operation many times every day, it is comparatively loaded down with trivial details, and it is inhomogeneous to appear that milk powder shakes even milk powder easily, causes milk powder caking scheduling problem. Meanwhile, the problems of uneven shaking speed and unstable shaking direction exist when the feeding bottle is shaken manually, more bubbles are easily generated in the feeding bottle, and the phenomenon of stomach distension and milk returning is easily caused when the infant sucks too many bubbles, so that the feeding effect is influenced.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides the milk shaker, and the milk shaker has the advantages that the plurality of clamping arms are arranged in the positioning sleeve at intervals, so that the milk bottle can be automatically centered in the rotating process, bubbles are not easy to generate, and the milk powder shaking effect is good.
The purpose of the utility model is realized by adopting the following technical scheme:
a milk shaker comprises a shell, a driving mechanism and a rotating mechanism, and is characterized in that the driving mechanism is positioned at the bottom in the shell and used for driving the rotating mechanism to rotate in the shell, the rotating mechanism comprises a positioning sleeve and a plurality of clamping arms, and the clamping arms are arranged on the inner wall of the positioning sleeve; one end of each clamping arm is connected to the positioning sleeve, and the other end of each clamping arm and the inner wall of the positioning sleeve are arranged at intervals to form a clamping end; the clamping end is used for approaching or departing from the inner wall of the positioning sleeve when stressed; the driving mechanism is used for driving the positioning sleeve to rotate.
Furthermore, the clamping arm is made of an elastic material.
Further, slewing mechanism includes the rolling disc, be provided with on the rolling disc the position sleeve, actuating mechanism hub connection in the bottom of rolling disc, the centre gripping arm interval set up in the inner wall of position sleeve and be umbelliform to the position sleeve bottom extends.
Furthermore, slewing mechanism still includes opening form mount, the interval is provided with a plurality of stationary blades on the opening form mount, opening form mount cup joint in carousel top outer wall.
Furthermore, the rotating mechanism further comprises a fixing sleeve which is sleeved on the outer wall of the opening-shaped fixing frame.
Further, actuating mechanism includes motor, pivot and bearing, the motor is used for the drive the pivot is rotated, the pivot passes through the bearing pin joint in the slewing mechanism bottom.
Furthermore, the driving mechanism further comprises a worm and gear transmission mechanism, and the motor drives the rotating shaft to rotate through the worm and gear transmission mechanism.
Further, the milk shaker further comprises a controller, and the controller is electrically connected with the driving mechanism.
Furthermore, a power supply mechanism is arranged inside the shell and used for supplying power to the driving mechanism.
Further, a plurality of suckers are arranged at the bottom of the shell at intervals.
Compared with the prior art, the utility model has the beneficial effects that:
1. be provided with a plurality of centre gripping arms on the inner wall through the position sleeve, and the one end of each centre gripping arm is connected in the position sleeve to the other end and the position sleeve inner wall interval of each centre gripping arm set up and form into the exposed core, make the exposed core be close to or keep away from when the atress the position sleeve inner wall, thereby make the feeding bottle place the position sleeve and rotate the in-process and can realize automatic centering, make milk powder atress more even when shaking even operation.
2. The rotating disc and the machine body are connected through the bearing, so that the stability of the device in rotation is improved, and bubbles are not easily generated.
3. The transmission mechanism of the worm gear and the worm can realize the quick start and stop of the rotation of the motor, and the transmission is more efficient.
Drawings
FIGS. 1-2 are schematic structural views of the present invention;
FIG. 3 is a schematic structural view of the driving mechanism of the present invention;
fig. 4-5 are schematic structural views of the rotating mechanism of the present invention.
In the figure: 10. a housing; 11. a controller; 12. a suction cup; 20. a drive mechanism; 21. a motor; 22. a worm gear drive; 23. a rotating shaft; 24. a bearing; 30. a rotating mechanism; 31. rotating the disc; 32. a positioning sleeve; 33. a clamp arm; 34. an open-shaped fixing frame; 35. a fixing sheet; 36. fixing a sleeve; 40. a power supply mechanism.
Detailed Description
The utility model will be further described with reference to the accompanying drawings and the detailed description below:
in the description of the present invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model.
A milk shaker as shown in fig. 1-5 comprises a housing 10, a driving mechanism 20, a rotating mechanism 30, specifically, the driving mechanism 20 is located at the bottom of the housing 10, the driving mechanism 20 is used for driving the rotating mechanism 30 to rotate in the housing 10, and the rotating mechanism 30 comprises a positioning sleeve 32 and a plurality of clamping arms 33, and the plurality of clamping arms 33 are arranged on the inner wall of the positioning sleeve 32.
In addition, one end of each clamping arm 33 is connected to the positioning sleeve 32, and the other end of each clamping arm 33 is spaced from the inner wall of the positioning sleeve 32 and forms a clamping end, and the clamping end is used for approaching or departing from the inner wall of the positioning sleeve 32 when being stressed, and the driving mechanism 20 is used for driving the positioning sleeve 32 to rotate.
On the basis of the structure, when the milk shaker is used, particularly when milk powder is shaken uniformly, the milk bottle can be placed in the rotating mechanism 30, and the driving mechanism 20 is used for driving the rotating mechanism 30 to rotate in the shell 10, so that the milk bottle can rotate along with the rotating mechanism 30, and the milk powder shaking operation is carried out; and the rotating mechanism 30 comprises a positioning sleeve 32 and a plurality of clamping arms 33, and the plurality of clamping arms 33 are arranged on the inner wall of the positioning sleeve 32, so that the clamping arms 33 can enable the feeding bottle to be tightly attached to the positioning sleeve 32, and the feeding bottle can be further placed in the positioning sleeve 32 in a limiting manner.
In addition, the one end of each centre gripping arm 33 is connected in position sleeve 32, and the other end of each centre gripping arm 33 sets up and forms the exposed core with position sleeve 32 inner wall interval, and the exposed core is used for being close to or keeping away from position sleeve 32 inner wall when the atress, and actuating mechanism 20 is used for driving position sleeve 32 and rotates, so set up, make the feeding bottle evenly receive the extrusion force of exposed core 33 in position sleeve 32, thereby make the feeding bottle realize automatic centering along with position sleeve 32 rotation in-process, make milk powder atress more even when shaking even, avoid caking or knot.
Furthermore, the clamping arm 33 is made of an elastic material, the elastic material can be a plastic sheet, a silicon sheet or a spring sheet, and the like, so that the feeding bottle has the advantages of good flexibility, good flexibility and the like, and the feeding bottle is prevented from being damaged due to hard contact between the feeding bottle and the clamping arm 33 in the rotating process.
Further, slewing mechanism 30 includes rolling disc 31, and is provided with position sleeve 32 on the rolling disc 31, and actuating mechanism 20 hub connection in the bottom of rolling disc 31, and centre gripping arm 33 interval sets up in the inner wall of position sleeve 32 and is umbelliform and extend to position sleeve 32 bottom, so, when shaking even milk powder operation, can with the vertical back of placing the position sleeve 32 of feeding bottle, the body of feeding bottle leans on the extrusion with centre gripping arm 33 counterbalance, make the feeding bottle evenly atress obtain fixed in position sleeve 32, after shaking even milk powder operation completion, the vertical feeding bottle of extracting can.
Further, the rotating mechanism 30 further comprises an opening-shaped fixing frame 34, a plurality of fixing pieces 35 are arranged on the opening-shaped fixing frame 34 at intervals, the opening-shaped fixing frame 34 is sleeved on the outer wall of the top end of the rotating disc 31, and the fixing pieces 35 can increase the extrusion elasticity of the feeding bottle, so that the requirement of loading feeding bottles of various specifications is met.
Furthermore, the rotating mechanism 30 further includes a fixing sleeve 36, and the fixing sleeve 36 is sleeved on the outer wall of the open-shaped fixing frame 34, so that the open-shaped fixing frame 34 is more stably sleeved on the outer wall of the top end of the rotating disc 31.
Further, the driving mechanism 20 includes a motor 21, a rotating shaft 23 and a bearing 24, specifically, the motor 21 is used for driving the rotating shaft 23 to rotate, and the rotating shaft 23 is pivoted to the bottom of the rotating mechanism 30 through the bearing 24, so that the rotating mechanism 30 rotates with the rotating shaft 23 more stably during the rotation of the motor 21, and bubbles are not easily generated.
Further, actuating mechanism 20 still includes worm gear drive mechanism 22, and motor 21 passes through worm gear drive mechanism 22 and drives above-mentioned pivot 23 rotation, so sets up for motor 21 rotates and to open fast and stop, makes motor 21 just reversing to switch more smoothly, and the transmission is more high-efficient.
In this embodiment, the worm of the worm gear is connected with the motor, the worm gear is connected with the rotating shaft, the rotating shaft for driving the rotating disc to rotate is connected with the motor through the worm gear transmission mechanism, and the worm gear transmission mechanism has self-locking property, namely when the lead angle of the worm is smaller than the equivalent friction angle between the teeth of the worm gear, the mechanism has self-locking property, reverse self-locking can be realized, only the worm drives the worm gear, but the worm is not driven by the worm gear, so the rotating disc cannot drive the worm to rotate when the nursing bottle is taken up, and the effect of protecting the motor is further achieved.
Further, the milk shaker further comprises a controller 11, wherein the controller 11 is located outside the housing 10, and the controller 11 is configured to control the rotation speed, the rotation direction, and the rotation duration of the driving mechanism 20, for example, the controller may control the rotation speed, the rotation direction, and the rotation duration of the motor, and taking the rotation speed of the motor as an example, the rotation frequency of the motor may be 60r/min in the low speed mode, and 120r/min in the high speed mode; of course, the rotation direction of the rotating shaft of the motor can also be controlled, that is, the motor can drive the rotating mechanism 30 coupled with the rotating shaft 23 to rotate forward and backward, for example, the steering control module controls the motor 21 to rotate forward for 10 seconds and then rotate backward for 10 seconds; the rotation duration control module may set a plurality of timing modes to control the power supply duration of the motor 21, for example, the timing modes are set to 1, 2, 6, and 12 minutes, and the power supply is terminated after the corresponding timing duration is reached. Therefore, different modes can be selected for combination according to the dissolution characteristics of different milk powder, so that the milk powder can be uniformly dissolved, and the generation of bubbles is reduced to the maximum extent.
It should be noted that the controller may be implemented by a single chip microcomputer in the prior art, or the motor may be a stepping motor in the prior art, and the rotation speed or the working time of the stepping motor may be directly set.
Further, the power mechanism 40 is disposed inside the casing 10, the power mechanism 40 is used for supplying power to the driving mechanism 20, the power mechanism 40 may be a rechargeable battery such as a lithium battery, a lead-acid battery or a nickel-metal hydride battery, the power mechanism may also include a power line, and the power line is externally connected to the commercial power and can also normally work.
Further, the bottom of the shell 10 is provided with a plurality of suckers 12 at intervals, so that the device has strong adsorption force on a flat plane, and is stable in the using process, and the phenomenon that the device is displaced or accidentally touched to fall is avoided.
Various other modifications and changes may be made by those skilled in the art based on the above-described technical solutions and concepts, and all such modifications and changes should fall within the scope of the claims of the present invention.

Claims (10)

1. A milk shaker comprises a shell, a driving mechanism and a rotating mechanism, and is characterized in that the driving mechanism is positioned at the bottom in the shell and used for driving the rotating mechanism to rotate in the shell, the rotating mechanism comprises a positioning sleeve and a plurality of clamping arms, and the clamping arms are arranged on the inner wall of the positioning sleeve; one end of each clamping arm is connected to the positioning sleeve, and the other end of each clamping arm and the inner wall of the positioning sleeve are arranged at intervals to form a clamping end; the clamping end is used for approaching or departing from the inner wall of the positioning sleeve when stressed; the driving mechanism is used for driving the positioning sleeve to rotate.
2. The milk shaker as in claim 1 wherein the clamp arm is made of an elastic material.
3. The milk shaker as in claim 1, wherein the rotating mechanism comprises a rotating disc, the positioning sleeve is arranged on the rotating disc, the driving mechanism is connected to the bottom of the rotating disc in a shaft mode, and the clamping arms are arranged on the inner wall of the positioning sleeve at intervals and extend towards the bottom of the positioning sleeve in an umbrella shape.
4. The milk shaker as in claim 3, wherein the rotating mechanism further comprises an open-shaped fixing frame, a plurality of fixing pieces are arranged on the open-shaped fixing frame at intervals, and the open-shaped fixing frame is sleeved on the outer wall of the top end of the rotating disc.
5. The milk shaker as in claim 4, wherein the rotating mechanism further comprises a securing sleeve, the securing sleeve being sleeved on an outer wall of the open-ended securing frame.
6. The milk shaker as in claim 1, wherein the driving mechanism comprises a motor, a rotating shaft and a bearing, the motor is used for driving the rotating shaft to rotate, and the rotating shaft is pivoted to the bottom of the rotating mechanism through the bearing.
7. The milk shaker as in claim 6 wherein the drive mechanism further comprises a worm gear drive, the motor driving the shaft to rotate via the worm gear drive.
8. The breast pump as set forth in claim 1 further comprising a controller electrically connected to the drive mechanism.
9. The milk shaker as claimed in claim 1 wherein a power supply mechanism is provided inside the housing for supplying power to the drive mechanism.
10. The milk shaker as in claim 1 wherein the bottom of the housing is spaced apart with a plurality of suction cups.
CN202121714163.8U 2021-07-26 2021-07-26 Milk shaker Active CN215533760U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121714163.8U CN215533760U (en) 2021-07-26 2021-07-26 Milk shaker

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121714163.8U CN215533760U (en) 2021-07-26 2021-07-26 Milk shaker

Publications (1)

Publication Number Publication Date
CN215533760U true CN215533760U (en) 2022-01-18

Family

ID=79828585

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121714163.8U Active CN215533760U (en) 2021-07-26 2021-07-26 Milk shaker

Country Status (1)

Country Link
CN (1) CN215533760U (en)

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