Split type cushioning milk shaker
The problem of existing breast shaker shaking is solved by setting the drive on the connecting plate in the breast shaker and movably connecting the connecting plate to the base, improving the user experience.
Patent Information
- Application Number
- CN202421982918.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing breast shaker motor is installed on the base, causing the base to shake when the breast shaker rotates, which is easy to roll over, and the user experiences poorly.
A split cushioned breast shaker is designed, by setting the drive on the connecting plate, which is movably connected to the base and rotatably connected to the milk shaker. In this way, the connecting plate can move relative to the base when the milk shaker rotates, preventing the base from shaking.
It effectively avoids the shaking and tilting of the base when the shaking base rotates, and enhances the user's experience of using it.
Smart Images

Figure CN222942216U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of milk shakers, in particular to a split-type shock-absorbing milk shaker. Background Art
[0002] A milk shaker is a small household appliance that can make a milk bottle reciprocate to prepare milk powder. The existing milk shaker includes a base, a milk shake seat and a motor. The motor is arranged on the base, and the milk shake seat is rotatably connected to the base and driven by the motor to rotate relative to the base. When the motor drives the milk shake seat to rotate, the motor will produce a certain degree of shaking. Since the motor is arranged on the base, the base will shake when the milk shake seat rotates, or even tip over, which makes consumers feel bad when using it. Utility Model Content
[0003] The utility model aims to provide a split-type shock-absorbing milk shaker to solve the problem that the motor of the existing milk shaker is arranged on the base, the base shakes when the milk shaker seat rotates, and it is easy to cause overturning, which makes the user feel bad.
[0004] The utility model is realized by the following technical solutions:
[0005] A split-type cushioning milk shaker comprises a base, a milk shaking seat and a connecting plate, wherein the base has an assembly cavity and a connecting port, the assembly cavity is connected to the outside through the connecting port, the connecting plate is movably connected to the base at the connecting port and partially extends into the assembly cavity from the connecting port, a driver is provided at one end of the connecting plate extending into the assembly cavity, the milk shaking seat is rotatably connected to the connecting plate and driven by the driver, and the connecting plate moves relative to the base when the milk shaking seat rotates.
[0006] Furthermore, one end of the connection disk extending into the assembly cavity is surrounded by the base to form a buffer cavity, and an elastic member is provided in the buffer cavity. The elastic member respectively resists the connection disk and the base to make the connection disk have a movement tendency to move away from the assembly cavity.
[0007] Furthermore, a positioning column for inserting the elastic member is provided on the connection disk and / or the base; and / or the elastic member is a plurality of elastic members, and the plurality of elastic members are spaced apart in the circumferential direction of the communication port.
[0008] Further, the connecting disk has an outer ring portion and an inner ring portion, the outer ring portion is connected to the base at the connecting port, the inner ring portion extends from the outer ring portion into the assembly cavity, and the driver is provided on the inner ring portion; the base has a stop portion, the outer ring portion and the inner ring portion are spaced apart in the radial direction of the connecting port and together with the stop portion form the buffer cavity, and the stop portion has a clearance hole for the inner ring portion to pass through.
[0009] Furthermore, the inner ring portion is provided with a receiving hole for the driver to be placed therein.
[0010] Furthermore, the base has a positioning strip extending from the connecting port toward the assembly cavity, the positioning strip extends circumferentially around the connecting port, and one end of the connecting disk extending into the assembly cavity is formed with a positioning groove for inserting the positioning strip, and the positioning strip is spaced apart from the positioning groove wall in the radial direction of the connecting port.
[0011] Furthermore, a guide hole is provided on one of the base and the connecting plate, and a guide bar plugged into and matched with the guide hole is provided on the other of the two, and the guide bar moves along the guide hole in the circumferential direction of the connecting port when the milk shaker rotates.
[0012] Furthermore, the axial direction of the base is defined as the up and down direction, the base, the connecting plate and the milk shaking seat are connected in sequence from bottom to top, the milk shaking seat has a milk shaking cavity opening upward, the milk shaking seat is provided with a stop frame which at least partially extends into the milk shaking cavity, the stop frame has a plurality of stop strips arranged at intervals in the circumferential direction of the milk shaking seat, the stop strips are inclined inwardly from top to bottom and can swing in the radial direction of the milk shaking seat, and the wall of the milk shaking cavity is provided with a push portion which can be extended and retracted in the radial direction of the milk shaking seat.
[0013] Furthermore, the base is provided with a shell which encloses and forms a heat preservation cavity, the milk shaking seat and the connecting plate are accommodated in the heat preservation cavity, and the connecting plate is provided with a heating element for heating the heat preservation cavity.
[0014] The advantage of this technical solution is that by configuring the milk shaker into a base, a milk shaking seat, a connecting disk and a driver, since the driver is arranged on the connecting disk, the connecting disk is movably connected to the base and is rotatably connected to the milk shaking seat, the connecting disk can release energy relative to the base when the milk shaking seat rotates, thereby preventing the base from shaking or tipping over when the milk shaking seat rotates, and providing a good user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.
[0017] Figure 1 is a three-dimensional diagram of a split-type shock-absorbing milk shaker disclosed in an embodiment;
[0018] Figure 2 is an exploded view of a split-type cushioning milk shaker disclosed in an embodiment;
[0019] Figure 3 is a cross-sectional view of a split-type shock-absorbing milk shaker disclosed in an embodiment;
[0020] Figure 4 yes Figure 3 A partial enlarged view of the middle A;
[0021] Figure 5 is a three-dimensional diagram of a base in an embodiment;
[0022] Figure 6 The three-dimensional structure of the connecting plate in the embodiment Figure 1 ;
[0023] Figure 7 The three-dimensional structure of the connecting plate in the embodiment Figure 2 . DETAILED DESCRIPTION
[0024] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0025] Example: Figure 1-7 As shown, the split-type slow-vibration milk shaker includes a base 1, a milk shaking seat 2 and a connecting plate 3. The base 1 has an assembly cavity 101 and a connecting port 102. The assembly cavity 101 is connected to the outside through the connecting port 102. The connecting plate 3 is movably connected to the base 1 at the connecting port 102 and partially extends from the connecting port 102 into the assembly cavity 101. A driver 4 is provided at one end of the connecting plate 3 extending into the assembly cavity 101. The milk shaking seat 2 is rotatably connected to the connecting plate 3 and driven by the driver 4. The connecting plate 3 moves relative to the base 1 when the milk shaking seat 2 rotates. Among them, the axial direction of the base 1 is defined as the up and down direction. The base 1, the connecting plate 3 and the milk shaking seat 2 are connected in sequence from bottom to top, and the driver 4 is an electric motor. The present embodiment provides a split-type shock-absorbing milk shaker to solve the problem that the motor of the existing milk shaker is arranged on the base, the base shakes when the milk shake seat rotates, and it is easy to cause tipping, which results in a poor user experience. The milk shaker is mainly configured into a base 1, a milk shake seat 2, a connecting disk 3 and a driver 4. Since the driver 4 is arranged on the connecting disk 3, the connecting disk 3 is movably connected to the base 1 and is rotatably connected to the milk shake seat 2. Therefore, when the milk shake seat 2 rotates, the connecting disk 3 can release energy relative to the base 1, thereby preventing the base 1 from shaking or tipping over when the milk shake seat 2 rotates, and providing a good user experience.
[0026] It should be noted that the connecting plate 3 moves relative to the base 1 when the milk shaking seat 2 rotates, including but not limited to rotating slightly in the circumferential direction of the base 1 and swinging slightly in the axial direction of the base 1 relative to the base 1 .
[0027] In the embodiment of the utility model, one end of the connecting disk 3 extending into the assembly cavity 101 is surrounded by the base 1 to form a buffer cavity 5, and an elastic member 6 is provided in the buffer cavity 5. The elastic member 6 is respectively against the connecting disk 3 and the base 1 so that the connecting disk 3 has a movement tendency to move away from the assembly cavity 101. Among them, the elastic member 6 is a spring. The elastic member 6 plays a buffering role when the milk shaking seat 2 rotates and the connecting disk 3 moves relative to the base 1. Since one end of the connecting disk 3 extending into the assembly cavity 101 is surrounded by the base 1 to form the buffer cavity 5, and the elastic member 6 is provided in the buffer cavity 5, the amplitude of the up and down swinging of the connecting disk 3 and the amplitude of the circumferential rotation when the milk shaking seat 2 rotates are reduced, thereby reducing the influence of the connecting disk 3 on the base 1 when it moves, and avoiding the shaking of the base 1.
[0028] In the embodiment of the utility model, the connection disk 3 and / or the base 1 are provided with positioning posts 7 for inserting the elastic member 6. Preferably, there are multiple elastic members 6 and positioning posts 7, which correspond to each other, and the multiple elastic members 6 are arranged at intervals in the circumferential direction of the communication port 102. The above arrangement is provided on the connection disk 3 and / or the base 1 to provide the positioning posts 7 for inserting the elastic member 6, so that the elastic member 6 is stably assembled with the connection disk 3 and / or the base 1.
[0029] In an embodiment of the utility model, the connecting disk 3 has an outer ring portion 301 and an inner ring portion 302. The outer ring portion 301 is connected to the base 1 at the connecting port 102. The inner ring portion 302 extends from the outer ring portion 301 into the assembly cavity 101. A driver 4 is provided on the inner ring portion 302. The base 1 has a stop portion 103. The outer ring portion 301 and the inner ring portion 302 are spaced apart in the radial direction of the connecting port 102 and are surrounded by the stop portion 103 to form a buffer cavity 5. The stop portion 103 has a clearance hole 104 for the inner ring portion 302 to pass through. The above-mentioned arrangement is achieved by configuring the connecting disk 3 into an outer ring portion 301 connected to the base 1 at the connecting port 102 and an inner ring portion 302 extending from the outer ring portion 301 into the assembly cavity 101. The outer ring portion 301 and the inner ring portion 302 are spaced apart in the radial direction of the connecting port 102 and enclosed with the stop portion 103 to form a buffer cavity 5, thereby making the connecting disk 3 and the base 1 reasonably arranged and having a high space utilization rate.
[0030] In the embodiment of the utility model, the inner ring portion 302 is provided with a receiving hole 303 for the driver 4 to be placed in. Since the inner ring portion 302 is provided with the receiving hole 303 for the driver 4 to be placed in, the driver 4 and the inner ring portion 302 are assembled stably.
[0031] In the embodiment of the utility model, the base 1 has a positioning strip 106 extending from the communication port 102 toward the assembly cavity 101, and the positioning strip 106 extends circumferentially around the communication port 102. One end of the connection disk 3 extending into the assembly cavity 101 is formed with a positioning groove 305 for inserting the positioning strip 106, and the positioning strip 106 is spaced apart from the groove wall of the positioning groove 305 in the radial direction of the communication port 102. The above arrangement is configured by configuring the positioning strip 106 on the base 1 and the positioning groove 305 on the connection disk 3, so that the connection disk 3 is connected to the base 1 at the communication port 102, and the connection disk 3 can release energy relative to the base 1 in the circumferential or radial direction of the base 1 when the milk shaking seat 2 rotates, so as to prevent the base 1 from shaking.
[0032] In the embodiment of the utility model, one of the base 1 and the connecting plate 3 is provided with a guide hole 105, and the other of the two is provided with a guide strip 304 plugged with the guide hole 105, and the guide strip 304 moves along the guide hole 105 in the circumferential direction of the connecting port 102 when the milk shaking seat 2 rotates. Specifically, the base 1 has an inner stop portion 100 extending upward from the stop portion 103, the inner stop portion 100 is located between the outer ring portion 301 and the inner ring portion 302, the guide strip 304 is provided on the outer ring portion 301, and the guide hole 105 is provided on the inner stop portion 100. The above arrangement is provided by providing the guide strip 304 on the outer ring portion 301 and the guide hole 105 on the inner stop portion 100, and the guide strip 304 moves along the guide hole 105 in the circumferential direction of the connecting port 102 when the milk shaking seat 2 rotates, so that the connecting plate 3 can rotate slightly relative to the base 1 in the circumferential direction of the base 1 when the milk shaking seat 2 rotates.
[0033] In the embodiment of the utility model, the milk-shaking seat 2 has a milk-shaking cavity 201 with an opening upward, and a stop frame 8 at least partially extending into the milk-shaking cavity 201 is provided on the milk-shaking seat 2. The stop frame 8 has a plurality of stop bars 801 arranged at intervals in the circumferential direction of the milk-shaking seat 2. The stop bars 801 are inclined inward from top to bottom and can swing in the radial direction of the milk-shaking seat 2. The wall of the milk-shaking cavity 201 is provided with a push portion 202 that can be extended and retracted in the radial direction of the milk-shaking seat 2. The milk-shaking cavity 201 is provided with a push portion 202 that can be extended and retracted in the radial direction of the milk-shaking seat 2. The milk-shaking cavity 201 is for placing a milk bottle, and the stop frame 8 and the push portion 202 are used to fix the milk bottle placed in the milk-shaking cavity 201. The stop frame 8 and the push portion 202 can be used together to fix the milk bottle, and the stop frame 8 can be detached from the milk-shaking seat 2.
[0034] In the embodiment of the utility model, the base 1 is provided with a shell 9 which encloses and forms a heat preservation chamber 10, the milk shaking seat 2 and the connecting plate 3 are accommodated in the heat preservation chamber 10, and the connecting plate 3 is provided with a heating element 11 for heating the heat preservation chamber 10. Specifically, the heating element 11 is an electric heating element 11, such as a heating wire or a heating tube. The above arrangement provides the milk shaking device with a heat preservation function by providing the shell 9 on the base 1 and the heating element 11 on the connecting plate 3, and is convenient to use.
[0035] In the embodiment of the utility model, a plurality of suction cups 12 are provided on the bottom surface of the base 1, and the plurality of suction cups 12 are arranged at intervals in the circumferential direction of the base 1. The above arrangement provides the base 1 with good ground gripping ability by arranging the suction cups 12 on the bottom surface of the base 1, and is not easy to shake and fall.
[0036] It should be understood that the terms "first", "second", etc. are used in the present invention to describe various information, but such information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present invention, the "first" information may also be referred to as the "second" information, and similarly, the "second" information may also be referred to as the "first" information. In addition, the terms "center of a circle", "up", "down", "left", "right", "vertical", "horizontal", "inside", "outside", etc. indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0037] As described above, one or more implementation methods are provided in combination with specific contents, and the specific implementation of the utility model is not limited to these descriptions. Any method, structure, etc. similar to or identical to the method, structure, etc. of the utility model, or some technical deductions or replacements made on the premise of the concept of the utility model should be regarded as the protection of the utility model.
Claims
1. A split-type shock-absorbing milk shaker, characterized in that: The invention comprises a base, a milk-shaking seat and a connecting plate, wherein the base comprises an assembly cavity and a connecting port, wherein the assembly cavity is connected with the outside through the connecting port, the connecting plate is movably connected with the base at the connecting port and partially extends into the assembly cavity from the connecting port, a driver is provided at one end of the connecting plate extending into the assembly cavity, the milk-shaking seat is rotatably connected to the connecting plate and driven by the driver, and the connecting plate moves relative to the base when the milk-shaking seat rotates.
2. The split-type shock-absorbing milk shaker according to claim 1, characterized in that: One end of the connection disk extending into the assembly cavity is surrounded by the base to form a buffer cavity, and an elastic member is arranged in the buffer cavity. The elastic member respectively resists the connection disk and the base to make the connection disk have a movement tendency to move away from the assembly cavity.
3. The split-type shock-absorbing milk shaker according to claim 2, characterized in that: The connection disk and / or the base are provided with a positioning column for the elastic member to be inserted; and / or there are a plurality of elastic members, and the plurality of elastic members are arranged at intervals in the circumferential direction of the communication port.
4. The split-type shock-absorbing milk shaker according to claim 2, characterized in that: The connecting disk has an outer ring portion and an inner ring portion, the outer ring portion is connected to the base at the communicating port, the inner ring portion extends from the outer ring portion into the assembly cavity, and the driver is arranged on the inner ring portion; The base has a stopper, the outer ring portion and the inner ring portion are spaced apart in the radial direction of the communication port and enclosed with the stopper to form the buffer cavity, and the stopper has a clearance hole for the inner ring portion to pass through.
5. The split-type shock-absorbing milk shaker according to claim 4, characterized in that: The inner ring portion is provided with a receiving hole for the driver to be placed therein.
6. The split-type shock-absorbing milk shaker according to claim 1, characterized in that: The base has a positioning strip extending from the connecting port toward the assembly cavity, the positioning strip extends circumferentially around the connecting port, one end of the connecting disk extending into the assembly cavity is formed with a positioning groove for inserting the positioning strip, and the positioning strip is spaced apart from the positioning groove wall in the radial direction of the connecting port.
7. The split-type shock-absorbing milk shaker according to claim 1, characterized in that: A guide hole is provided on one of the base and the connecting plate, and a guide bar plugged and matched with the guide hole is provided on the other of the base and the connecting plate. When the milk shaker rotates, the guide bar moves along the guide hole in the circumferential direction of the connecting port.
8. The split-type shock-absorbing milk shaker according to claim 1, characterized in that: The axial direction of the base is defined as the up and down direction, the base, the connecting plate and the milk-shaking seat are connected in sequence from bottom to top, the milk-shaking seat has a milk-shaking cavity opening upward, the milk-shaking seat is provided with a stop frame at least partially extending into the milk-shaking cavity, the stop frame has a plurality of stop bars arranged at intervals in the circumferential direction of the milk-shaking seat, the stop bars are inclined inwardly from top to bottom and can swing in the radial direction of the milk-shaking seat, and the wall of the milk-shaking cavity is provided with a push portion which can be extended and retracted in the radial direction of the milk-shaking seat.
9. The split-type shock-absorbing milk shaker according to claim 1, characterized in that: The base is provided with a shell which encloses and forms a heat preservation cavity, the milk shaking seat and the connecting plate are accommodated in the heat preservation cavity, and the connecting plate is provided with a heating element for heating the heat preservation cavity.