Stirring device

By designing a support assembly and an integrated control stirring device, the instability problem caused by hand-held stirring was solved, achieving automation and precise control, and improving the stirring effect and experimental accuracy.

CN224009702UActive Publication Date: 2026-03-20中山市新威贸易有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing stirring devices require hand operation, which leads to instability in the stirring process and affects the food preparation results and the accuracy of experimental results.

Method used

A stirring device is designed, comprising a support assembly, a stirring mounting housing, a motor assembly, a stirrer, and a control assembly. The support assembly provides a stable support structure, the stirring mounting housing has a sealed mounting cavity for the motor assembly to achieve automated stirring, and the control assembly precisely controls the motor speed.

Benefits of technology

It achieves stability and uniformity in the mixing process, reduces operator fatigue, and improves the accuracy and reliability of food preparation and experiments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a stirring device and belongs to the field of stirring. A stirring device comprises: a support assembly; the stirring mounting shell is arranged on the bracket assembly; the motor assembly is arranged on the stirring mounting shell; the stirrer is in transmission connection with a motor shaft of the motor assembly and extends towards the supporting part; and the control assembly is arranged on the stirring mounting shell. According to the stirring device, the supporting part at one end of the bracket assembly and the mounting part at the other end are arranged at intervals, so that a stable supporting structure is provided for the stirring device. The supporting part can be firmly placed on a working plane, and it is guaranteed that the whole device does not shake or topple over in the operation process. After being placed on a working plane, the stirring device can automatically work.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of stirring, in particular to a kind of stirring device. BACKGROUND

[0002] In many industrial production and daily life scenes, stirring operation is extremely common. From mixing food materials in food processing industry, to fusing various raw materials in chemical industry, to dispensing chemical reagents in laboratory, stirring device plays a key role. However, current many stirring devices have a obvious disadvantage, that is, stirring process needs to be handheld by operator.

[0003] Taking food cooking scene as an example, when making cake batter, stirring salad sauce, chef needs to hold stirrer for a long time, arm continuously forces, not only easy to produce fatigue, and in long time stirring process, hand shaking is difficult to avoid completely, which will affect the uniformity and stability of stirring, and then affect the production effect of food. In laboratory environment, when carrying out high-precision experiment, scientific researcher requires high precision of stirring. But handheld stirring device is greatly influenced by human factors, it is difficult to guarantee that the intensity, speed and direction of stirring are completely consistent every time, which may cause deviation of experimental results, affect the accuracy and reliability of scientific research data. SUMMARY

[0004] Therefore, it is necessary to provide a stirring device for the problem that stirring needs to be handheld and stirring process stability is not good.

[0005] A kind of stirring device, comprising:

[0006] Support assembly, one end of the support assembly is support part, the other end of the support assembly is mounting part, the support part is arranged at interval with the mounting part;

[0007] Stirring installation shell, the stirring installation shell is arranged on the mounting part of the support assembly, the stirring installation shell is equipped with installation cavity, and the stirring installation shell is provided with through hole;

[0008] Motor assembly, the motor assembly is arranged on the stirring installation shell and located in the installation cavity, and the motor shaft of the motor assembly extends towards the through hole;

[0009] Stirrer, the stirrer is drivingly connected with the motor shaft of the motor assembly and extends towards the support part;

[0010] Control assembly, the control assembly is arranged on the stirring installation shell, and the control assembly is electrically connected with the motor assembly.

[0011] The disclosed stirring device provides a stable support structure by spacing the support portion at one end of the support assembly and the mounting portion at the other end. The support portion can be firmly placed on the work surface, ensuring that the entire device does not shake or tip over during operation. After being placed on the work surface, the stirring device can automatically work. The stirring installation housing is provided on the mounting portion of the support assembly, and an installation cavity is provided inside. The installation cavity provides a safe and stable installation space for the motor assembly, enclosing the motor assembly therein, which can effectively prevent external impurities such as dust, water vapor, etc. from causing damage to the motor, prolonging the service life of the motor. At the same time, the structural design of the installation cavity can play a certain buffering and isolation role for the vibration and noise generated during the operation of the motor, reducing the impact on the surrounding environment, making the stirring device more quiet and stable during operation. The motor assembly is arranged in the installation cavity of the stirring installation housing, and the motor shaft extends towards the through hole and is connected with the stirrer. This design ensures that the power generated by the motor can be accurately transmitted to the stirrer, reducing energy loss during power transmission. For example, when stirring high-viscosity materials, accurate power transmission can provide the stirrer with sufficient torque, achieving efficient stirring and ensuring the uniformity and quality of material stirring. The provision of the through hole facilitates the connection of the motor shaft and the stirrer, while also avoiding interference between the motor shaft and the stirring installation housing during rotation. The control assembly is arranged on the stirring installation housing and is electrically connected with the motor assembly, realizing integrated control of the stirring device. The operator can conveniently start, stop, and adjust the speed of the motor assembly through the control assembly. For example, when conducting small-scale stirring experiments in the laboratory, researchers can accurately adjust the speed of the motor according to experimental requirements through the control assembly, thereby controlling the intensity and speed of stirring and improving the accuracy and repeatability of experiments. The integrated control design also makes the operation of the equipment more simple and easy to understand, reducing the learning cost of the operator.

[0012] In one of the embodiments, the support assembly comprises a support base, a support column and a limiting ring, the support column is arranged on the support base, the limiting ring is arranged on the support column and located at the end of the support column away from the support base, and the stirring installation shell is adaptively installed with the limiting ring. The support base as the part of the support assembly in contact with the working plane provides a stable support foundation for the entire stirring device. The support base usually has a large bottom area, which can evenly distribute the weight of the device and prevent the stirring device from shaking or toppling due to unstable center of gravity during operation. The support column is arranged on the support base to lift the stirring installation shell to a suitable working height. The support column has a certain strength and rigidity, which can bear the weight of the stirring installation shell and the internal motor assembly, stirrer and other components, and at the same time provide stable support in the vertical direction. The limiting ring is arranged at the end of the support column away from the support base and adaptively installed with the stirring installation shell, which further enhances the stability of the stirring installation shell. The limiting ring can limit the displacement of the stirring installation shell in the horizontal direction, prevent it from deviating due to vibration or external force during stirring, and ensure that the stirrer is always in the accurate stirring position, improving the stability and reliability of the stirring effect. The adaptive installation design of the limiting ring and the stirring installation shell provides accurate positioning for the installation of the stirring installation shell. During installation, only the stirring installation shell needs to be aligned with the limiting ring and fixed, which greatly simplifies the installation process. Compared with other complex installation methods, this design reduces the adjustment and calibration steps in the installation process, improving the installation efficiency.

[0013] In one of the embodiments, the stirring installation shell and the support assembly are detachably connected. The detachable connection of the stirring installation shell and the support assembly makes the use more convenient.

[0014] In one of the embodiments, the installation cavity includes a control installation cavity, a motor installation cavity, and a stirrer limiting cavity, which are sequentially arranged from top to bottom along the height direction of the stirring installation shell, the through hole is in communication with the stirrer limiting cavity, the motor installation cavity and the stirrer limiting cavity are in communication through a shaft hole, the motor assembly is located in the motor installation cavity, the motor shaft of the motor assembly extends into the stirrer limiting cavity through the shaft hole, and at least part of the control assembly is located in the control installation cavity. By subdividing the installation cavity into the control installation cavity, the motor installation cavity, and the stirrer limiting cavity, and sequentially arranging them from top to bottom along the height direction of the stirring installation shell, the reasonable division of the functional areas is realized. At least part of the control assembly is located in the control installation cavity, which facilitates the operator to approach and operate the control components and accurately control the motor assembly. The motor assembly is located in the motor installation cavity, which provides a special installation space for the motor and effectively isolates the heat and vibration generated during the operation of the motor, thereby protecting the control assembly. The stirrer limiting cavity is used for installing and limiting the stirrer, thereby ensuring the stability of the stirrer during the working process. The installation cavity structure with the layered arrangement fully utilizes the internal space of the stirring installation shell. The cavities are designed according to the size and functional requirements of the components, thereby avoiding the waste of space. The running stability of the equipment is improved. The independent arrangement of the control installation cavity, the motor installation cavity, and the stirrer limiting cavity effectively reduces the interference between the components.

[0015] In one of the embodiments, the stirring installation shell includes a first installation shell and a second installation shell, the second installation shell is arranged on the first installation shell, the second installation shell and the first installation shell enclose to form the installation cavity, the motor assembly is clamped between the first installation shell and the second installation shell, and the support assembly is adaptively installed with the first installation shell and the second installation shell. By clamping the motor assembly between the first installation shell and the second installation shell, this design provides a stable installation method for the motor assembly. The first installation shell and the second installation shell cooperate with each other to clamp the motor assembly from both sides, thereby ensuring that the motor does not shift or shake during operation. For example, when the stirring device is running, the motor rotates at high speed to generate a large vibration and torque, and the tightly clamped structure can effectively absorb and disperse these forces, thereby ensuring that the motor is always in a stable working state, avoiding the loosening of the connection between the motor shaft and the stirrer due to the shift of the motor, and further ensuring the stability and accuracy of the stirring work. The support assembly is adaptively installed with the first installation shell and the second installation shell, so that the stirring installation shell and the support assembly form a stable overall frame structure.

[0016] In one of the embodiments, the first mounting shell comprises a first mounting shell body, a first limiting plate and a first supporting plate, the first limiting plate and the first supporting plate are arranged on the first mounting shell body and inside the first mounting shell body, the second mounting shell comprises a second mounting shell body, a second limiting plate and a second supporting plate, the second limiting plate and the second supporting plate are arranged on the second mounting shell body, the second limiting plate and the first limiting plate are arranged oppositely, the second supporting plate and the first supporting plate are arranged oppositely, the motor assembly is arranged on the second supporting plate and the first supporting plate, and the side of the motor assembly away from the second supporting plate and the first supporting plate is in abutment with the second limiting plate and the first limiting plate. By arranging the first supporting plate inside the first mounting shell body and the second supporting plate on the second mounting shell body and oppositely, the motor assembly is arranged on the two supporting plates. This design provides reliable horizontal support for the motor assembly and can evenly bear the weight of the motor. By arranging the first limiting plate inside the first mounting shell body and the second limiting plate on the second mounting shell body and oppositely, the side of the motor assembly away from the supporting plates is in abutment with the two limiting plates. This limiting structure can effectively prevent the motor from moving axially during operation. When the motor rotates at high speed, axial force may be generated due to its own electromagnetic force or mechanical imbalance. If there is no limiting, the motor may move along the axial direction, causing the connection between the motor shaft and the stirrer to loosen or even detach. The arrangement of the first limiting plate and the second limiting plate ensures that the motor is always in the correct axial position, ensuring the stability and reliability of power transmission. For example, in high-precision stirring operations, accurate motor limiting can ensure the consistency of stirring effect.

[0017] In one of the embodiments, the first mounting shell further comprises a plurality of buckling plates arranged on the first mounting shell body, and the second mounting shell further comprises a plurality of limiting plates arranged on the second mounting shell body, and the plurality of buckling plates and the plurality of limiting plates are one-to-one corresponding and buckling mounted. By arranging the plurality of buckling plates on the first mounting shell body and the plurality of limiting plates on the second mounting shell body and one-to-one corresponding and buckling mounted, this buckling connection provides a tight and stable connection between the first mounting shell and the second mounting shell. During the operation of the stirring device, the vibration and torque generated by the motor assembly may affect the connection part of the mounting shell, and the buckling structure of the buckling plate and the limiting plate can effectively resist these forces to prevent the first mounting shell and the second mounting shell from loosening or separating.

[0018] In one of the embodiments, the second mounting shell further comprises a mounting bracket, the mounting bracket is arranged on the second mounting shell body, and the control assembly is in abutment with the mounting bracket. By arranging the mounting bracket on the second mounting shell body, a stable support and accurate positioning are provided for the control assembly. The control assembly in abutment with the mounting bracket can ensure that the control assembly does not shake or deviate due to factors such as vibration and displacement during the operation of the stirring device. By connecting the control assembly and the second mounting shell body through the mounting bracket, the control assembly is relatively independent of other components, reducing the interference between them. When the stirring device is running, components such as the motor assembly and the stirrer may generate magnetic fields, heat and other interference factors. The mounting bracket can isolate these interferences to a certain extent, protecting the normal operation of the control assembly. For example, the magnetic field generated by the operation of the motor may affect the signal transmission of the circuit board in the control assembly. The arrangement of the mounting bracket can reduce such influence, ensure the accuracy and stability of the control signal, and improve the control precision and reliability of the equipment.

[0019] In one of the embodiments, the control assembly comprises a circuit board assembly and a battery, the circuit board assembly is arranged on the stirring mounting shell, and the battery is arranged on the circuit board assembly and / or the stirring mounting shell. By arranging the battery on the circuit board assembly and / or the stirring mounting shell, an independent power supply is provided for the stirring device. The battery can ensure the continuous operation of the stirring device. The close arrangement of the battery and the circuit board assembly helps to achieve stable power transmission. Since the battery is close to the circuit board assembly, the line loss and interference in the power transmission process are reduced. When the motor assembly is running, stable power supply is needed to ensure the stability of the rotating speed and the uniformity of the stirring. The reasonable layout of the battery and the circuit board assembly can ensure that the motor assembly obtains stable power, avoid abnormal operation of the stirring device caused by power fluctuation, and protect the stability and reliability of the stirring work.

[0020] In one of the embodiments, the circuit board assembly comprises a circuit board and a control button, the circuit board is arranged on the stirring mounting shell, the stirring mounting shell is provided with a control port, and the control assembly is located at the control port and in abutment with the circuit board. By providing the control port on the stirring mounting shell, the control button is located at the control port and in abutment with the circuit board, which provides an intuitive and convenient operation mode for the operator. The operator does not need a complex operation process, and can directly press, rotate or control the button at the control port position of the stirring mounting shell to accurately control the functions of the motor assembly and other equipment

[0021] In one of the embodiments, the outer wall of the stirring installation shell is provided with a limiting ring groove, and further comprises a limiting ring arranged on the installation shell at the limiting ring groove, and the limiting ring is clamped between the installation shell and the support assembly to achieve interference fit. By arranging the limiting ring at the limiting ring groove of the stirring installation shell and clamping it between the installation shell and the support assembly to achieve interference fit, a tight and reliable connection mode is provided for the stirring installation shell and the support assembly. The limiting ring is in interference fit with the support assembly at the limiting ring groove, and can uniformly disperse various forces generated during the operation of the stirring device to the entire connection part. Compared with the single-point or few-point connection mode, the multi-point contact interference fit mode avoids the problem of excessive local stress. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a first perspective view of the stirring device.

[0023] Figure 2 It is an exploded view of the stirring device.

[0024] Figure 3 It is a sectional view of the stirring device.

[0025] Figure 4 It is a sectional view of the stirring installation shell.

[0026] Figure 5 It is a first exploded view of the stirring installation shell.

[0027] Figure 6 It is a second exploded view of the stirring installation shell.

[0028] Figure 7 It is a perspective view of the support assembly.

[0029] Figure 8 It is a second perspective view of the stirring device.

[0030] Wherein, the correspondence between the reference signs and the component names is:

[0031] 1 support assembly, 11 support seat, 12 support column, 13 limiting ring;

[0032] 2 stirring installation shell, 21 first installation shell, 211 first installation shell body, 212 first limiting plate, 213 first support plate, 214 lock plate, 22 second installation shell, 221 second installation shell body, 222 second limiting plate, 223 second support plate, 224 limiting plate, 225 installation support, 201 installation cavity, 2011 control installation cavity, 2012 motor installation cavity, 2013 stirrer limiting cavity, 202 through hole, 203 shaft hole, 204 limiting ring groove

[0033] 3 motor assembly;

[0034] 4 control assembly, 41 circuit board assembly, 42 battery;

[0035] 5 stirrer. DETAILED DESCRIPTION

[0036] In order to enable the above-mentioned objects, features and advantages of the present application to be more clearly understood, the following will further describe the present application with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0037] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in other ways different from those described herein, and therefore, the scope of the present application is not limited to the specific embodiments disclosed below.

[0038] Some embodiments of the present application are described below with reference to the accompanying drawings.

[0039] As shown in the drawings, the present embodiment discloses a stirring device, comprising: Figures 1 to 7

[0040] A support assembly 1, one end of the support assembly 1 is a support portion, the other end of the support assembly 1 is a mounting portion, and the support portion and the mounting portion are spaced apart;

[0041] A stirring mounting shell 2 is arranged on the mounting portion of the support assembly 1, the stirring mounting shell 2 is provided with a mounting cavity 201, and the stirring mounting shell 2 is provided with a through hole 202;

[0042] A motor assembly 3 is arranged on the stirring mounting shell 2 and located in the mounting cavity 201, and the motor shaft of the motor assembly 3 extends towards the through hole 202;

[0043] A stirrer 5 is drivingly connected with the motor shaft of the motor assembly 3 and extends towards the support portion;

[0044] A control assembly 4 is arranged on the stirring mounting shell 2, and the control assembly 4 is electrically connected with the motor assembly 3.

[0045] ​The stirring device disclosed in the application is provided with a stable support structure through the spacing arrangement of the support part at one end of the support assembly 1 and the mounting part at the other end. The support part can be firmly placed on the working plane, ensuring that the entire device will not shake or tip over during operation. The stirring mounting shell 2 is arranged on the mounting part of the support assembly 1, and an installation cavity 201 is arranged in the interior thereof. The installation cavity 201 provides a safe and stable installation space for the motor assembly 3, which is enclosed therein, so as to effectively prevent external impurities such as dust, water vapor and the like from causing damage to the motor, thereby prolonging the service life of the motor. At the same time, the structural design of the installation cavity 201 can play a certain buffering and isolation role for the vibration and noise generated during the operation of the motor, reduce the influence on the surrounding environment, and make the stirring device more quiet and stable during operation. The motor assembly 3 is arranged in the installation cavity 201 of the stirring mounting shell 2, and the motor shaft extends towards the through hole 202 and is in transmission connection with the stirrer 5. This design ensures that the power generated by the motor can be accurately transmitted to the stirrer 5, reducing energy loss during power transmission. For example, when high-viscosity materials are stirred, accurate power transmission can enable the stirrer 5 to obtain sufficient torque, realize efficient stirring, and ensure the uniformity and quality of material stirring. The arrangement of the through hole 202 provides convenience for the connection of the motor shaft and the stirrer 5, and also avoids interference between the motor shaft and the stirring mounting shell 2 during rotation. The control assembly 4 is arranged on the stirring mounting shell 2 and is in electrical connection with the motor assembly 3, realizing integrated control of the stirring device. The operator can conveniently start, stop and adjust the speed of the motor assembly 3 through the control assembly 4. For example, when small-scale stirring experiments are carried out in the laboratory, researchers can accurately adjust the speed of the motor through the control assembly 4 according to the experimental requirements, so as to control the intensity and speed of stirring, improve the accuracy and repeatability of experiments. The integrated control design also makes the operation of the equipment more simple and easy to understand, reducing the learning cost of the operator.

[0046] As Figure 1 and Figure 7As shown, in addition to the features of the above embodiments, this embodiment is further limited in that: the support assembly 1 includes a support base 11, a support column 12, and a limiting ring 13, the support column 12 is arranged on the support base 11, the limiting ring 13 is arranged on the support column 12 and located at the end of the support column 12 away from the support base 11, and the stirring installation shell 2 is adaptively installed with the limiting ring 13. The support base 11 serves as the part of the support assembly 1 that contacts the working plane, providing a stable support foundation for the entire stirring device. The support base 11 usually has a large bottom surface area, which can evenly distribute the weight of the device and prevent the stirring device from shaking or tipping over due to unstable center of gravity during operation. The support column 12 is arranged on the support base 11 to raise the stirring installation shell 2 to an appropriate working height. The support column 12 has a certain strength and rigidity, which can withstand the weight of the stirring installation shell 2 and the internal motor assembly 3, the stirrer 5, and other components, while providing stable support in the vertical direction. The limiting ring 13 is arranged at the end of the support column 12 away from the support base 11 and is adaptively installed with the stirring installation shell 2, further enhancing the stability of the stirring installation shell 2. The limiting ring 13 can limit the displacement of the stirring installation shell 2 in the horizontal direction, preventing it from shifting due to vibration or external forces during stirring, ensuring that the stirrer 5 is always in the correct stirring position, and improving the stability and reliability of the stirring effect. The adaptive installation design of the limiting ring 13 and the stirring installation shell 2 provides precise positioning for the installation of the stirring installation shell 2. During installation, the stirring installation shell 2 only needs to be aligned with the limiting ring 13 and fixed, greatly simplifying the installation process. Compared with other complex installation methods, this design reduces the adjustment and calibration steps during installation, improving installation efficiency.

[0047] In addition to the features of the above embodiments, this embodiment is further limited in that: the stirring installation shell 2 is detachably connected with the support assembly 1. The detachable connection of the stirring installation shell 2 with the support assembly 1 makes it more convenient to use.

[0048] As Figure 4As shown, in addition to the features of the above embodiments, this embodiment is further defined as: the installation cavity 201 includes a control installation cavity 2011, a motor installation cavity 2012, and a stirrer limiting cavity 2013, the control installation cavity 2011, the motor installation cavity 2012, and the stirrer limiting cavity 2013 are sequentially arranged from top to bottom along the height direction of the stirring installation shell, the through hole 202 communicates with the stirrer limiting cavity 2013, the motor installation cavity 2012 and the stirrer limiting cavity 2013 are communicated through the shaft hole 203, the motor assembly 3 is located in the motor installation cavity 2012, and the motor shaft of the motor assembly 3 extends into the stirrer limiting cavity 2013 through the shaft hole 203, and at least part of the control assembly 4 is located in the control installation cavity 2011. By subdividing the installation cavity 201 into the control installation cavity 2011, the motor installation cavity 2012, and the stirrer limiting cavity 2013, and sequentially arranging them from top to bottom along the height direction of the stirring installation shell 2, the reasonable division of the functional areas is realized. At least part of the control assembly 4 is located in the control installation cavity 2011, which facilitates the operator to approach and operate the control components and accurately control the motor assembly 3. The motor assembly 3 is located in the motor installation cavity 2012, which provides a special installation space for the motor and effectively isolates the heat and vibration generated during the operation of the motor, protecting the control assembly 4 from being affected. The stirrer limiting cavity 2013 is used to install and limit the stirrer, ensuring the stability of the stirrer during the working process. This layered installation cavity structure makes full use of the internal space of the stirring installation shell 2. Each cavity is designed according to the size and functional requirements of the components, avoiding waste of space. 2. Improve the stability of the equipment operation. The independent arrangement of the control installation cavity 2011, the motor installation cavity 2012, and the stirrer limiting cavity 2013 effectively reduces the interference between the components.

[0049] As Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment is further limited in that: the stirring mounting shell 2 comprises a first mounting shell 21 and a second mounting shell 22, the second mounting shell 22 is arranged on the first mounting shell 21, the second mounting shell 22 and the first mounting shell 21 enclose a mounting cavity 201, the motor assembly 3 is clamped between the first mounting shell 21 and the second mounting shell 22, and the support assembly 1 is adaptively mounted with the first mounting shell 21 and the second mounting shell 22. By clamping the motor assembly 3 between the first mounting shell 21 and the second mounting shell 22, this design provides a stable mounting method for the motor assembly 3. The first mounting shell 21 and the second mounting shell 22 cooperate with each other to clamp the motor assembly 3 from both sides, ensuring that the motor does not shift or shake during operation. For example, when the stirring device is running, the motor runs at high speed and generates a large vibration and torque. The tightly clamped structure can effectively absorb and disperse these forces, ensuring that the motor is always in a stable working state, avoiding the loosening of the motor shaft and the stirrer connection due to the motor shift, and thus ensuring the stability and accuracy of the stirring work. The support assembly 1 is adaptively mounted with the first mounting shell 21 and the second mounting shell 22, so that the stirring mounting shell 2 and the support assembly 1 form a stable overall frame structure.

[0050] As Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment is further defined as: the first mounting shell 21 comprises a first mounting shell body 211, a first limiting plate 212 and a first support plate 213, the first limiting plate 212 and the first support plate 213 are arranged on the first mounting shell body 211 and inside the first mounting shell body 211, the second mounting shell 22 comprises a second mounting shell body 221, a second limiting plate 222 and a second support plate 223, the second limiting plate 222 and the second support plate 223 are arranged on the second mounting shell body 221, the second limiting plate 222 and the first limiting plate 212 are arranged oppositely, the second support plate 223 and the first support plate 213 are arranged oppositely, the motor assembly 3 is arranged on the second support plate 223 and the first support plate 213, and the side of the motor assembly 3 away from the second support plate 223 and the first support plate 213 is in abutment with the second limiting plate 222 and the first limiting plate 212. By arranging the first support plate 213 inside the first mounting shell body 211 and the second support plate 223 on the second mounting shell body 221 and oppositely, the motor assembly 3 is arranged on the two support plates. This design provides reliable horizontal support for the motor assembly 3 and can evenly bear the weight of the motor. By arranging the first limiting plate 212 inside the first mounting shell body 211 and the second limiting plate 222 on the second mounting shell body 221 and oppositely, the side of the motor assembly 3 away from the support plates is in abutment with the two limiting plates. This limiting structure can effectively prevent the motor from moving axially during operation. When the motor rotates at high speed, it may generate axial force due to its own electromagnetic force or mechanical imbalance. If there is no limiting, the motor may move along the axial direction, causing the connection between the motor shaft and the stirrer to loosen or even detach. The arrangement of the first limiting plate 212 and the second limiting plate 222 ensures that the motor is always in the correct axial position, ensuring the stability and reliability of power transmission. For example, in high-precision stirring operations, precise motor limiting can ensure the consistency of stirring effect.

[0051] As Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment is further defined as: the first mounting shell 21 further comprises a plurality of buckling plates 214, the plurality of buckling plates 214 are arranged on the first mounting shell body 211, and the second mounting shell 22 further comprises a plurality of limiting plates 224, the plurality of limiting plates 224 and the plurality of buckling plates 214 are one-to-one corresponding and buckling mounted. By arranging the plurality of buckling plates 214 on the first mounting shell body 211, the plurality of limiting plates 224 are arranged on the second mounting shell 22, and they are one-to-one buckling mounted. This buckling connection mode provides a tight and stable connection for the first mounting shell 21 and the second mounting shell 22. During the operation of the stirring device, the vibration and torque generated by the motor assembly 3 may affect the connection part of the mounting shell, and the buckling structure of the buckling plate 214 and the limiting plate 224 can effectively resist these forces to prevent the first mounting shell 21 and the second mounting shell 22 from loosening or separating.

[0052] As shown in Figure 6 , in addition to the features of the above embodiments, this embodiment is further defined as: the second mounting shell 22 further comprises a mounting bracket 225, the mounting bracket 225 is arranged on the second mounting shell body 221, and the control assembly 4 abuts against the mounting bracket 225. By arranging the mounting bracket 225 on the second mounting shell body 221, a stable support and accurate positioning are provided for the control assembly 4. The control assembly 4 abuts against the mounting bracket 225, which can ensure that the control assembly 4 does not shake or deviate due to factors such as vibration and displacement during the operation of the stirring device. By connecting the control assembly 4 and the second mounting shell body 221 through the mounting bracket 225, the control assembly 4 is relatively independent of other components, reducing interference between them. When the stirring device is running, the motor assembly 3, the stirrer and other components may generate magnetic field, heat and other interference factors. The mounting bracket 225 can isolate these interferences to a certain extent to protect the normal work of the control assembly 4. For example, the magnetic field generated by the motor operation may affect the signal transmission of the circuit board in the control assembly 4. The arrangement of the mounting bracket 225 can reduce this influence, ensure the accuracy and stability of the control signal, and improve the control precision and reliability of the equipment.

[0053] As shown in Figure 2 and Figure 3As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the control component 4 includes a circuit board assembly 41 and a battery 42. The circuit board assembly 41 is disposed on the stirring mounting housing 2, and the battery 42 is disposed on the circuit board assembly 41 and / or the stirring mounting housing 2. By disposing of the battery 42 on the circuit board assembly 41 and / or the stirring mounting housing 2, an independent energy supply is provided for the stirring device. The battery 42 ensures continuous operation of the stirring device. The close arrangement of the battery 42 and the circuit board assembly 41 helps to achieve stable power transmission. Because the battery 42 is close to the circuit board assembly 41, line loss and interference during power transmission are reduced. When the motor assembly 3 is running, a stable power supply is required to ensure stable rotation speed and uniform stirring. The reasonable arrangement of the battery 42 and the circuit board assembly 41 ensures that the motor assembly 3 receives stable power, avoids abnormal operation of the stirring device due to power fluctuations, and ensures the stability and reliability of the stirring operation.

[0054] In addition to the features of the above embodiments, this embodiment further specifies that: the circuit board assembly 41 includes a circuit board and a control button. The circuit board is disposed on the stirring mounting housing 2, and the stirring mounting housing 2 has a control port. The control component is located at the control port and abuts against the circuit board. This design, with the control port on the stirring mounting housing 2 and the control button located at the control port and abutting against the circuit board, provides operators with an intuitive and convenient operating method. Operators do not need complicated operating procedures; they can directly and precisely control the functions of equipment such as the motor assembly 3 by pressing, rotating, or operating the control button at the control port position of the stirring mounting housing 2.

[0055] like Figure 3 As shown, in addition to the features of the above embodiments, this embodiment further specifies that: the outer wall of the stirring mounting housing 2 is provided with a limiting ring groove 204, and a limiting ring is also included. The limiting ring is disposed on the mounting housing 2 and located at the limiting ring groove 204, and the limiting ring is sandwiched between the mounting housing 2 and the support assembly 1 to achieve an interference fit between the two. By setting the limiting ring at the limiting ring groove 204 of the stirring mounting housing 2 and sandwiching it between the mounting housing 2 and the support assembly 1 to achieve an interference fit, a tight and reliable connection method is provided for the stirring mounting housing 2 and the support assembly 1. The interference fit between the limiting ring and the support assembly 1 at the limiting ring groove 204 can evenly distribute the various forces generated during the operation of the stirring device to the entire connection part. Compared with the connection method with a single point or a few connection points, this multi-point contact interference fit method avoids the problem of excessive local stress.

[0056] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0057] The above embodiments only express several implementation manners of the utility model, the description is more specific and detailed, but can not therefore be understood as the limitation of the utility model patent range. It should be pointed out that for ordinary skilled person in the art, without departing from the utility model concept, several modifications and improvements can be made, which belong to the protection range of the utility model. Therefore, the protection range of the utility model patent should be subject to the appended claims.

Claims

1. A stirring device, characterized in that, The stirring device includes: A bracket assembly (1), one end of which is a support part and the other end of which is a mounting part, wherein the support part and the mounting part are spaced apart; A stirring mounting housing (2) is disposed on the mounting part of the bracket assembly (1). The stirring mounting housing (2) is provided with a mounting cavity (201) and a through hole (202) is provided on the stirring mounting housing (2). Motor assembly (3), the motor assembly (3) is disposed on the stirring mounting housing (2) and located in the mounting cavity (201), the motor shaft of the motor assembly (3) extends toward the through hole (202); A stirrer (5) is connected to the motor shaft of the motor assembly (3) and extends toward the support. A control component (4) is disposed on the stirring mounting housing (2) and is electrically connected to the motor assembly (3).

2. The stirring device according to claim 1, characterized in that, The support assembly (1) includes a support base (11), a support column (12), and a limiting ring (13). The support column (12) is disposed on the support base (11), and the limiting ring (13) is disposed on the support column (12) and located at the end of the support column (12) away from the support base (11). The stirring mounting housing (2) is adapted to be installed with the limiting ring (13). And / or the stirring mounting housing (2) is detachably connected to the support assembly (1).

3. The stirring device according to claim 1, characterized in that, The mounting cavity (201) includes a control mounting cavity (2011), a motor mounting cavity (2012), and a stirrer limiting cavity (2013). The control mounting cavity (2011), the motor mounting cavity (2012), and the stirrer limiting cavity (2013) are arranged sequentially from top to bottom along the height direction of the stirring mounting housing. The through hole (202) communicates with the stirrer limiting cavity (2013). The motor mounting cavity (2012) and the stirrer limiting cavity (2013) are connected by a shaft hole (203). The motor assembly (3) is located in the motor mounting cavity (2012), and the motor shaft of the motor assembly (3) extends through the shaft hole (203) into the stirrer limiting cavity (2013). At least a portion of the control assembly (4) is located in the control mounting cavity (2011).

4. The stirring device according to claim 1, characterized in that, The stirring mounting housing (2) includes a first mounting housing (21) and a second mounting housing (22). The second mounting housing (22) is disposed on the first mounting housing (21). The second mounting housing (22) and the first mounting housing (21) enclose the mounting cavity (201). The motor assembly (3) is sandwiched between the first mounting housing (21) and the second mounting housing (22). The bracket assembly (1) is adapted to be installed with the first mounting housing (21) and the second mounting housing (22).

5. The stirring device according to claim 4, characterized in that, The first mounting shell (21) includes a first mounting shell body (211), a first limiting plate (212), and a first support plate (213). The first limiting plate (212) and the first support plate (213) are disposed on the first mounting shell body (211) and located inside the first mounting shell body (211). The second mounting shell (22) includes a second mounting shell body (221), a second limiting plate (222), and a second support plate (223). The second limiting plate (222) and the second support plate (223) are disposed on the first mounting shell body (211) and located inside the first mounting shell body (211). The second mounting housing body (221) is placed on the second mounting housing body (222), the second limiting plate (222) and the first limiting plate (212) are arranged opposite to each other, the second support plate (223) and the first support plate (213) are arranged opposite to each other, the motor assembly (3) is mounted on the second support plate (223) and the first support plate (213), and the side of the motor assembly (3) away from the second support plate (223) and the first support plate (213) abuts against the second limiting plate (222) and the first limiting plate (212).

6. The stirring device according to claim 5, characterized in that, The first mounting shell (21) further includes a buckle plate (214), and there are multiple buckle plates (214). The multiple buckle plates (214) are disposed on the body (211) of the first mounting shell. The second mounting shell (22) further includes a limiting plate (224), and there are multiple limiting plates (224). The multiple limiting plates (224) and the multiple buckle plates (214) correspond one-to-one and are snapped together.

7. The stirring device according to claim 5, characterized in that, The second mounting housing (22) further includes a mounting bracket (225), which is disposed on the body of the second mounting housing (221), and the control component (4) abuts against the mounting bracket (225).

8. The stirring device according to claim 1, characterized in that, The control component (4) includes a circuit board assembly (41) and a battery (42). The circuit board assembly (41) is disposed on the stirring mounting housing (2), and the battery (42) is disposed on the circuit board assembly (41) and / or the stirring mounting housing (2).

9. The stirring device according to claim 8, characterized in that, The circuit board assembly (41) includes a circuit board and a control button. The circuit board is disposed on the stirring mounting housing (2). The stirring mounting housing (2) has a control port. The control component is located at the control port and abuts against the circuit board.

10. The stirring device according to claim 1, characterized in that, The outer wall of the stirring installation housing (2) is provided with a limiting ring groove (204), and also includes a limiting ring. The limiting ring is disposed on the installation housing (2) and located at the limiting ring groove (204). The limiting ring is sandwiched between the installation housing (2) and the bracket assembly (1) so that the two are interference fit.