Automatic cake stirring device

Through the combination of the dual stirring system and the automatic water-adding mechanism, the problem of low efficiency of traditional cake mixers is solved, and the flour is evenly mixed, which improves the beauty and taste of the cake.

CN223247408UActive Publication Date: 2025-08-22DONGGUAN BOKERUI FOOD TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422646260.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-08-22
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

Traditional cake mixers have low mixing efficiency and insufficient automation, resulting in uneven mixing of flour, affecting the beauty and taste of the cake.

Method used

A dual stirring system is adopted, including a first stirring system for the outer edge of the stirring barrel and a second stirring system for the middle of the stirring barrel. Combined with an automatic water addition mechanism, the stirring and water injection are controlled by controlling the host to achieve efficient mixing.

Benefits of technology

Improves mixing efficiency and automation, ensures even mixing of flour, and improves the beauty and taste of the cake.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic cake stirring device which comprises a cabin, a control main machine and a machine base connected with the cabin, the cabin is provided with a first stirring system and an automatic water adding mechanism, the machine base is provided with a mixing mechanism and a second stirring system, and the top of the cabin is provided with a machine cover used for being connected with the first stirring system. Wherein the mixing mechanism comprises a stirring barrel. The double stirring systems are adopted to accelerate the stirring efficiency, the first stirring system is used for stirring the outer edge of the stirring barrel, the second stirring system is arranged in the middle of the stirring barrel, materials in the middle of the stirring barrel are mixed in an accelerated mode, adjustment is conducted through the control panel according to needs, water adding is not needed after shutdown, the automation degree is high, and reliability is high. Wherein the stirring barrel can be pushed into the notch through the first connecting structure, and starts to operate after reaching a specified position and passing through the sensor. The structure synchronously rotates clockwise and anticlockwise, so that materials in the stirring barrel are quickly mixed, and the stirring efficiency is higher.
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Description

Technical Field

[0001] The utility model relates to the technical field of stirring devices, in particular to an automatic cake stirring device. Background Art

[0002] Cake is a type of wheaten food, usually sweet. Cakes are typically baked. Cake ingredients primarily include flour, sweeteners, binders, shortening, milk, flavorings, and leavening agents. During the cake production process, eggs and cream are often added, requiring mixing. This process is crucial for creating a delicious cake. Flour is difficult to mix, and uneven mixing can affect the cake's appearance and create unevenly sized bubbles. The resulting cake can also feel grainy and unpalatable. Traditional cake mixers, however, suffer from low mixing efficiency, insufficient automation, and poor reliability. Utility Model Content

[0003] In order to overcome the deficiencies of the existing technical solutions, the utility model provides an automatic cake stirring device, which can effectively solve the problems raised by the background technology.

[0004] The technical solution adopted by the utility model to solve its technical problems is:

[0005] An automatic cake mixing device comprises a cabin, a control host, and a base connected to the cabin, wherein the cabin is provided with a first mixing system and an automatic water adding mechanism, the base is provided with a mixing mechanism and a second mixing system, and the top of the cabin is provided with a cover for connecting to the first mixing system, wherein the mixing mechanism includes a mixing barrel;

[0006] The control host is provided with a sensor, and the control host is respectively connected to the first stirring system, the second stirring system and the automatic water adding mechanism, the first stirring system includes a first stirring structure and a first driving module, the second stirring system is arranged in the stirring barrel, the second stirring system includes a second stirring structure, a second driving module and a lifting structure, the connection between the stirring barrel and the machine base is provided with a first connecting structure, the connection between the machine cover and the cabin is provided with a second connecting structure, the stirring barrel is movably connected to the machine base through the first connecting structure, and the machine cover is movably connected to the cabin through the second connecting structure;

[0007] The automatic water adding mechanism includes a water tank and a water pump connected to the water tank. A control valve and a nozzle are provided at the bottom of the water tank. A slot for installing a mixing bucket is formed between the cabin and the base. The mixing bucket is embedded in the slot through a first connecting structure. The machine cover is connected to the lifting structure. The lifting structure is connected to the second stirring structure. The second stirring structure has a movable angle with the cabin through the second connecting structure.

[0008] As a further description of the above technical solution, the cabin is provided with two transparent doors, and the connection between the doors and the cabin is provided with movable hinges. The cabin is also provided with a frame for installing a first stirring structure, and the first stirring structure includes a mixer arm and a whisk connected to the mixer arm. The mixer arm is connected to a first driving module, and the mixer arm rotates clockwise along the circumferential direction of the mixing barrel through the first driving module. The mixer arm is connected to the lifting structure.

[0009] As a further description of the above technical solution, the first drive module includes a transmission structure and a motor, the transmission structure includes a first gear, a second gear and a transmission shaft, the motor is connected to the transmission shaft, wherein the transmission shaft is meshed with the first gear, the edge of the first gear is a tooth with an inclined surface, the first gear is meshed with the second gear, the second gear is fixed on the mixer arm, and the mixer arm is mounted on the frame, and the mixer arm has an inclination angle between the frame.

[0010] As a further description of the above technical solution, the bottom of the mixing barrel is formed with a circular guide groove, the depth of the guide groove is 5cm-15cm, and the width of the guide groove is 3cm-17cm.

[0011] As a further description of the above technical solution, the first connecting structure includes a first guide seat and a first movable shaft passing through the first guide seat, the first guide seat is connected to the mixing barrel, the second connecting structure includes a second guide seat and a second movable shaft passing through the second guide seat, the machine cover is connected to the cabin through the second guide seat, and a control panel is also provided on the machine cover, wherein a starter and stop device is provided on the side of the mixing barrel close to the sensor, and the starter and stop device is connected to the control host.

[0012] As a further description of the above technical solution, an installation cavity is provided at the bottom of the mixing barrel, wherein the second driving module is arranged in the installation cavity, the second mixing structure includes a driving shaft and a plurality of mixing spiral blades, the mixing spiral blades are connected to the driving shaft, the driving shaft is connected to the second driving module, and the second driving module includes a motor.

[0013] As a further description of the above technical solution, the lifting structure includes a lifting arm and a mounting shaft, the lifting arm is connected to the mounting shaft, wherein a shaft sleeve is provided on the lifting arm, and the shaft sleeve is sleeved on the mixer arm.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] The automatic cake stirring device of the utility model has at least one of the following beneficial effects during use:

[0016] A dual stirring system accelerates mixing efficiency. The first stirring system is used to stir the outer edge of the mixing barrel, while the second stirring system is located in the middle of the barrel, accelerating the mixing of materials in the middle of the barrel. The water injection volume can be controlled by the main unit and adjusted according to demand through the control panel, without stopping the machine for water addition, resulting in a high degree of automation and strong reliability. The mixing barrel can be pushed into the slot through the first connecting structure and begins operation after reaching the specified position and passing the sensor. This structure rotates synchronously in clockwise and counterclockwise directions, rapidly mixing the materials in the mixing barrel and improving mixing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall structure of an automatic cake stirring device of the present invention;

[0018] Figure 2 This is a schematic structural diagram of a first side surface of an automatic cake stirring device according to the present invention;

[0019] Figure 3 This is a second side structural diagram of an automatic cake stirring device according to the present invention;

[0020] Figure 4 The utility model is a perspective structural diagram of an automatic cake stirring device.

[0021] Numbers in the figure:

[0022] 1. Cabin; 101. Cabin door; 102. Water tank; 103. Water pump; 104. Control valve; 105. Machine cover; 106. Control panel; 2. Machine base; 201. Mixing mechanism; 202. Mixing barrel; 203. First connecting structure; 204. Guide groove; 3. Control host; 301. Sensor; 4. First mixing system; 401. Motor; 402. First mixing structure; 403. Drive shaft; 404. First gear; 405. Second gear; 406. Lifting structure; 407. Mixer arm; 408. Whisk; 5. Second mixing system; 501. Motor; 502. Mixing spiral blade. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] like Figure 1-4 As shown, the utility model provides an automatic cake mixing device, including a cabin 1, a control host 3 and a base 2 connected to the cabin 1, the cabin 1 is provided with a first mixing system 4 and an automatic water adding mechanism, the base 2 is provided with a mixing mechanism 201 and a second mixing system 5, and the top of the cabin 1 is provided with a machine cover 105 for connecting the first mixing system 4, wherein the mixing mechanism 201 contains a mixing barrel 202.

[0025] The control host 3 is provided with a sensor 301, and the control host 3 is respectively connected to the first stirring system 4, the second stirring system 5 and the automatic water adding mechanism, the first stirring system 4 includes a first stirring structure 402 and a first driving module, the second stirring system 5 is arranged in the stirring barrel 202, the second stirring system 5 includes a second stirring structure, a second driving module and a lifting structure 406, the connection between the stirring barrel 202 and the machine base 2 is provided with a first connecting structure 203, the connection between the machine cover 105 and the cabin 1 is provided at the second connecting structure, the stirring barrel 202 is movably connected to the machine base 2 through the first connecting structure 203, and the machine cover 105 is movably connected to the cabin 1 through the second connecting structure.

[0026] This embodiment utilizes a dual stirring system to accelerate stirring efficiency. The first stirring system 4 is used to stir the outer edge of the mixing barrel 202, while the second stirring system 5 is located in the middle of the mixing barrel 202, accelerating the mixing of materials in the middle of the mixing barrel 202. An automatic water-adding mechanism is also installed within the engine compartment 1. This mechanism controls the water injection volume via the control unit 3 and adjusts it according to demand via the control panel 106. This eliminates the need to stop the machine for water addition, resulting in a high degree of automation and reliability. The mixing barrel 202 can be pushed into the slot via the first connecting structure 203 and begins operation after reaching the designated position and passing through the sensor 301.

[0027] The automatic water adding mechanism includes a water tank 102 and a water pump 103 connected to the water tank 102. A control valve 104 and a nozzle are provided at the bottom of the water tank 102. A slot for installing a mixing barrel 202 is formed between the cabin 1 and the base 2. The mixing barrel 202 is embedded in the slot through a first connecting structure 203. The machine cover 105 is connected to a lifting structure 406. The lifting structure 406 is connected to a second stirring structure. The second stirring structure has a movable angle with the cabin 1 through the second connecting structure.

[0028] The first stirring system in this embodiment comprises a first gear 404 and a second gear 405, which mesh with each other. A drive shaft 403 is connected to the motor 401, driving the first gear 404 to rotate. The second gear 405 is connected to the edge of the first gear 404 and rotates along the edge of the first gear 404, causing the stirring arm 407 to move in an inclined manner within the stirring barrel 202. The whisk 408 provided on the stirring arm 407 moves along the guide groove 204 of the stirring barrel 202. Simultaneously, the second stirring system 5 disposed within the stirring barrel 202 rotates the stirring spiral blade 502 via the drive shaft. The stirring spiral blade 502 rotates in a counterclockwise direction. In the above structure, the simultaneous clockwise and counterclockwise rotations allow the materials in the stirring barrel 202 to be mixed rapidly, achieving higher stirring efficiency.

[0029] It is further explained that the cabin 1 is provided with two transparent doors 101, and the connection between the doors 101 and the cabin 1 is provided with a movable hinge. The cabin 1 is also provided with a frame for installing a first stirring structure 402. The first stirring structure 402 includes a mixer arm 407 and a whisk 408 connected to the mixer arm 407. The mixer arm 407 is connected to the first driving module. The mixer arm 407 rotates clockwise along the circumferential direction of the stirring barrel 202 through the first driving module. The mixer arm 407 is connected to the lifting structure 406.

[0030] It is further explained that the first drive module includes a transmission structure and a motor 401, the transmission structure includes a first gear 404, a second gear 405 and a transmission shaft 403, the motor 401 is connected to the transmission shaft 403, wherein the transmission shaft 403 is meshed with the first gear 404, the edge of the first gear 404 is a tooth with an inclined surface, the first gear 404 is meshed with the second gear 405, the second gear 405 is fixed on the mixer arm 407, and the mixer arm 407 is mounted on the frame, and the mixer arm 407 has an inclination angle between the frame.

[0031] It is further explained that a circular guide groove 204 is formed on the bottom of the mixing barrel 202. The depth of the guide groove 204 is 5 cm-15 cm, and the width of the guide groove 204 is 3 cm-17 cm.

[0032] It is further explained that the first connecting structure 203 includes a first guide seat and a first movable shaft passing through the first guide seat, the first guide seat is connected to the mixing barrel 202, the second connecting structure includes a second guide seat and a second movable shaft passing through the second guide seat, the machine cover 105 is connected to the cabin 1 through the second guide seat, and the machine cover 105 is also provided with a control panel 106, wherein a starter and stop device is provided on the side of the mixing barrel 202 close to the sensor 301, and the starter and stop device is connected to the control host 3.

[0033] It is further explained that an installation cavity is provided at the bottom of the mixing barrel 202, wherein the second driving module is arranged in the installation cavity, the second mixing structure includes a driving shaft and a plurality of mixing spiral blades 502, the mixing spiral blades 502 are connected to the driving shaft, the driving shaft is connected to the second driving module, and the second driving module includes a motor 501.

[0034] It is further explained that the lifting structure 406 includes a lifting arm and a mounting shaft, the lifting arm is connected to the mounting shaft, wherein a shaft sleeve is provided on the lifting arm, and the shaft sleeve is sleeved on the mixer arm 407.

[0035] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. An automatic cake stirring device, characterized in that: It includes a cabin, a control host and a base connected to the cabin, the cabin is provided with a first stirring system and an automatic water adding mechanism, the base is provided with a mixing mechanism and a second stirring system, the top of the cabin is provided with a cover for connecting to the first stirring system, wherein the mixing mechanism includes a stirring barrel; The control host is provided with a sensor, and the control host is respectively connected to the first stirring system, the second stirring system and the automatic water adding mechanism, the first stirring system includes a first stirring structure and a first driving module, the second stirring system is arranged in the stirring barrel, the second stirring system includes a second stirring structure, a second driving module and a lifting structure, the connection between the stirring barrel and the machine base is provided with a first connecting structure, the connection between the machine cover and the cabin is provided with a second connecting structure, the stirring barrel is movably connected to the machine base through the first connecting structure, and the machine cover is movably connected to the cabin through the second connecting structure; The automatic water adding mechanism includes a water tank and a water pump connected to the water tank. A control valve and a nozzle are provided at the bottom of the water tank. A slot for installing a mixing bucket is formed between the cabin and the base. The mixing bucket is embedded in the slot through a first connecting structure. The machine cover is connected to the lifting structure. The lifting structure is connected to the second stirring structure. The second stirring structure has a movable angle with the cabin through the second connecting structure.

2. The automatic cake stirring device according to claim 1, characterized in that: The cabin is provided with two transparent doors, and the connection between the doors and the cabin is provided with movable hinges. The cabin is also provided with a frame for installing a first stirring structure, and the first stirring structure includes a stirrer arm and a whisk connected to the stirrer arm. The stirrer arm is connected to a first driving module, and the stirrer arm rotates clockwise along the circumferential direction of the stirring barrel through the first driving module. The stirrer arm is connected to a lifting structure.

3. The automatic cake stirring device according to claim 2, characterized in that: The first drive module includes a transmission structure and a motor, and the transmission structure includes a first gear, a second gear and a transmission shaft. The motor is connected to the transmission shaft, wherein the transmission shaft is meshed with the first gear, the edge of the first gear is a tooth with an inclined surface, the first gear is meshed with the second gear, and the second gear is fixed on the mixer arm, and the mixer arm is mounted on the frame, and the mixer arm has an inclination angle between the frame.

4. An automatic cake stirring device according to claim 1 or 2, characterized in that: The bottom of the mixing barrel is formed with a circular guide groove, the depth of the guide groove is 5cm-15cm, and the width of the guide groove is 3cm-17cm.

5. The automatic cake stirring device according to claim 1, characterized in that: The first connecting structure includes a first guide seat and a first movable shaft passing through the first guide seat, the first guide seat is connected to the mixing barrel, the second connecting structure includes a second guide seat and a second movable shaft passing through the second guide seat, the machine cover is connected to the cabin through the second guide seat, and a control panel is also provided on the machine cover, wherein a starter and stop device is provided on the side of the mixing barrel close to the sensor, and the starter and stop device is connected to the control host.

6. The automatic cake stirring device according to claim 1, characterized in that: An installation cavity is provided at the bottom of the mixing barrel, wherein the second driving module is provided in the installation cavity, the second stirring structure includes a driving shaft and a plurality of stirring spiral blades, the stirring spiral blades are connected to the driving shaft, the driving shaft is connected to the second driving module, and the second driving module includes a motor.

7. The automatic cake stirring device according to claim 2, characterized in that: The lifting structure includes a lifting arm and a mounting shaft, wherein the lifting arm is connected to the mounting shaft, wherein a shaft sleeve is provided on the lifting arm, and the shaft sleeve is sleeved on the mixer arm.