Premixed flour mixing device for milk white mochi bread

The mixed twisted dragon structure driven by the guide roller and a dual-axis drive motor combined with cleaning sponge strips is solved, and the temperature rise and uneven mixing of the premixed powder stirring device is achieved, achieving efficient and uniform mixing and convenient cleaning of the premixed powder.

CN223144531UActive Publication Date: 2025-07-25GUANGDONG JIABAKE FOOD CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422056021.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-07-25
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The existing premixed powder mixing device heats up during long-term stirring and affects the taste and nutritional content of the food, and the bottom powder is unevenly stirred, making it difficult to clean up the premixed powder easily adhere to the mixing structure.

Method used

A mixing device for premixed milky mochi bread is designed, using a guide roller guide and a dual-axis drive motor to drive a mixing twister, combined with cleaning sponge strips to achieve uniform stirring and guide.

Benefits of technology

It effectively solves the problem of heating of the stirring leaves, improves mixing efficiency and uniformity, and facilitates cleaning of the mixing structure to ensure food quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223144531U_ABST
    Figure CN223144531U_ABST
Patent Text Reader

Abstract

The utility model discloses a milk white mochi bread premixed flour mixing device, and relates to the premixed flour mixing technical field, the milk white mochi bread premixed flour mixing device comprises a mixing box and a material guiding cavity, the material guiding cavity is installed at the upper end of the front side of the mixing box, a material guiding assembly is arranged on the inner wall of the material guiding cavity, and the premixed flour can be guided through rotation of a material guiding roller; the premixed flour mixing device is simple in structure and convenient to use, an arranged double-shaft driving motor can simultaneously drive two input shafts and two output shafts for use, the mixing effect is improved, an arranged transmission shaft drives a second rotating shaft to rotate, and the second rotating shaft drives a first mixing auger, a first mixing disc, a second mixing auger and a second mixing disc to rotate to stir and mix premixed flour; cleaning sponge strip blocks arranged on the outer walls of the first mixing auger and the second mixing auger can clean the outer walls of the first mixing auger and the second mixing auger during stirring, and stirring blocks can accelerate the stirring work of the premixed flour, so that uniform mixing is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of premix mixing, in particular to a premix mixing device for milk-white mochi bread. Background Technique

[0002] At present, when mixing premix foods in the market, generally, in the mixing barrel, the powder foods are transversely mixed by mixing blades. When this mixing device mixes for a long time, the mixing blades will heat up, and after heating up, they keep mixing with the powder and cannot be cooled in time. At this time, the powder will be scalded and cooked, affecting the taste and nutritional components of the powder foods. At the same time, if the mixing blades keep mixing in one direction, the powder falling to the bottom of the mixing barrel will not be mixed.

[0003] In the patent with the publication number CN214261685U, a premix food mixing device is proposed. In this patent, it includes a mixing barrel, a primary mixing tank, a primary mixing sleeve, a spring plug, a telescopic spring, a pneumatic telescopic rod, a heat dissipation air box, a mixing rotating shaft, a primary mixing blade, a main mixing blade, and a mixing rod. By setting devices such as a heat dissipation air box, a ventilation pipe, and a mixing rotating shaft, specifically, the powder raw materials are put into the mixing barrel from the primary mixing tank, and then the switch of the servo motor is turned on to drive the mixing rotating shaft to start rotating, so as to mix the powder foods falling into the mixing barrel. Then, when there is too much food powder in the mixing barrel, a blowing pipe is connected to the right end of the ventilation pipe, and a filter layer is arranged inside the blowing pipe to prevent dust from entering the mixing barrel. Then, by blowing air upward from the bottom of the mixing barrel, the gap between the food powders is increased, so as to facilitate the heat dissipation and cooling of the mixing blades, and at the same time, it is also convenient for the main mixing blade to mix the food powders in the mixing barrel, thus solving the problem that the existing powder mixing device in the above background technology cannot cool the mixing blades. By setting devices such as a primary mixing tank, a primary mixing blade, and a primary mixing sleeve, specifically, after the powder raw materials are loaded into the primary mixing tank, the raw materials in the tank are preliminarily blocked by the spring plug. Then, by turning on the servo motor, the primary mixing blade fixedly connected to the outer surface of the mixing rotating shaft mixes the raw materials put into the primary mixing tank. Then, when the gravity reaches the upper limit that the spring plug can bear, the spring plug can be pressed downward, and then it falls into the mixing barrel. Then, through the spiral rising main mixing blade, the raw materials at the bottom of the mixing barrel can be driven to the top of the raw materials in the barrel, and then the raw materials in the mixing barrel are fully mixed by the mixing rod, achieving the effect of improving the mixing efficiency in the mixing barrel, thus solving the problem that the existing powder mixing device in the above background technology cannot mix the powder falling from the bottom. However, there are still the following problems in this patent:

[0004] When premix is currently mixed, the premix easily adheres to the mixing structure, is difficult to clean and use, and it is not convenient for guiding the material during the mixing of the premix.

[0005] In view of the above problems, it is necessary to design a premixed powder mixing device for milk white mochi bread to overcome the above problems. Summary of the Utility Model

[0006] The main purpose of the present utility model is to provide a premixed powder mixing device for milk white mochi bread, which can effectively solve the problems in the background technology.

[0007] To achieve the above purpose, the technical solution adopted by the present utility model is as follows:

[0008] A premixed powder mixing device for milk white mochi bread includes a mixing box and a material guiding cavity. The upper end of the front surface of the mixing box is provided with a material guiding cavity, and a material guiding component is arranged on the inner wall of the material guiding cavity;

[0009] The material guiding component includes a coupling arranged on the left side surface of the inner wall of the material guiding cavity. The right side surface of the coupling is provided with a first rotating shaft, the right side surface of the first rotating shaft is provided with a material guiding roller, and the left side surface of the coupling penetrates through the left side surface of the material guiding cavity and is provided with a driving motor;

[0010] A stirring and mixing component is arranged inside the mixing box. The stirring and mixing component includes a locking seat arranged at the upper middle part of the rear inside of the mixing box. A locking rod is installed on the front surface of the locking seat, a support seat is installed on the front surface of the locking rod, a double-shaft driving motor is arranged on the top of the support seat, input shafts are arranged on the left and right side surfaces of the double-shaft driving motor, output shafts are arranged at one ends of the two input shafts, transmission shafts are arranged at the bottoms of the two output shafts, second rotating shafts are arranged at the bottoms of the two transmission shafts, mounting blocks are arranged at the bottoms of the two second rotating shafts, first mixing augers are arranged at the bottoms of the mounting blocks, a first connecting shaft is arranged at the bottom of the two first mixing augers, a first mixing tray is arranged at the bottom of the first connecting shaft, a second mixing auger is arranged at the bottom of the first mixing tray, cleaning sponge strips are arranged on the outer walls of the first mixing auger and the second mixing auger, a second connecting shaft is arranged at the bottom of the second mixing auger, a second mixing tray is arranged at the bottom of the second connecting shaft, and a plurality of stirring blocks are arranged on the tops of the first mixing tray and the second mixing tray.

[0011] As a preferred solution of the present utility model, the driving motor is in transmission connection with the first rotating shaft through a coupling, and the first rotating shaft and the material guiding roller are detachably connected.

[0012] As a preferred solution of the present utility model, the support seat and the two locking rods are detachably connected, the locking rod and the locking seat are detachably connected, and the locking seat and the rear inside of the mixing box are detachably connected.

[0013] As a preferred embodiment of the present utility model, the dual-axis drive motor is drivingly connected to the output shaft through the two input shafts, the two output shafts are drivingly connected to the transmission shaft, and the transmission shaft is detachably connected to the second rotating shaft.

[0014] As a preferred embodiment of the present utility model, the second rotating shaft is detachably connected to the mounting block, the mounting block is detachably connected to the first mixing auger, and both the first mixing auger and the second mixing auger are detachably connected to the plurality of cleaning sponge strips.

[0015] As a preferred embodiment of the present utility model, the first mixing auger is detachably connected to the first connecting shaft, the first connecting shaft is detachably connected to the first mixing tray, the first mixing tray is detachably connected to the second mixing auger, the second mixing auger is detachably connected to the second connecting shaft, the second connecting shaft is detachably connected to the second mixing tray, and both the first mixing tray and the second mixing tray are detachably connected to the plurality of stirring blocks. Beneficial effects

[0016] Compared with the prior art, the present utility model has the following beneficial effects:

[0017] 1. For the pre-mixed powder mixing device for milk-white mochi bread, the rotation of the guiding roller can guide the pre-mixed powder, which is convenient to use. The dual-axis drive motor can drive the two input shafts and the output shaft simultaneously, improving the mixing effect. The transmission shaft drives the second rotating shaft to rotate, which drives the first mixing auger, the first mixing tray, the second mixing auger, and the second mixing tray to rotate to mix the pre-mixed powder. The cleaning sponge strips arranged on the outer walls of the first mixing auger and the second mixing auger can clean the outer walls of the first mixing auger and the second mixing auger during stirring. The arranged stirring blocks can accelerate the stirring of the pre-mixed powder, facilitating uniform mixing. Description of the drawings

[0018] Figure 1 is the overall structural schematic diagram of the present utility model;

[0019] Figure 2 is the structural schematic diagram of the guiding component of the present utility model;

[0020] Figure 3 is the structural schematic diagram of the stirring and mixing component of the present utility model;

[0021] Figure 4 is the structural schematic diagram of the stirring block of the present utility model.

[0022] In the figure: 1. Mixing box; 2. Feeding cavity; 3. Feeding component; 4. Stirring and mixing component; 301. Driving motor; 302. Coupling; 303. First rotating shaft; 304. Feeding roller; 401. Support seat; 402. Biaxial driving motor; 403. Locking rod; 404. Locking seat; 405. Input shaft; 406. Output shaft; 407. Transmission shaft; 408. Second rotating shaft; 409. Mounting block; 410. First mixing auger; 411. Cleaning sponge strip; 412. First connecting shaft; 413. First mixing tray; 414. Second mixing auger; 415. Second connecting shaft; 416. Second mixing tray; 417. Stirring block. Detailed implementation manners

[0023] In order to make the technical means, creative features, achieved purposes and functions of the present utility model easy to understand, the present utility model will be further described below in conjunction with the detailed implementation manners.

[0024] As Figures 1-4 shown, a premixed powder mixing device for milk white mochi bread includes a mixing box 1 and a feeding cavity 2. The feeding cavity 2 is installed at the upper end of the front surface of the mixing box 1, and a feeding component 3 is arranged on the inner wall of the feeding cavity 2;

[0025] The feeding component 3 includes a coupling 302 arranged on the left side surface of the inner wall of the feeding cavity 2. The right side surface of the coupling 302 is provided with a first rotating shaft 303, the right side surface of the first rotating shaft 303 is provided with a feeding roller 304, and the left side surface of the coupling 302 penetrates through the left side surface of the feeding cavity 2 and is provided with a driving motor 301;

[0026] Inside the mixing box 1, there is a stirring and mixing assembly 4. The stirring and mixing assembly 4 includes a locking seat 404 arranged at the upper middle part of the rear inside of the mixing box 1. A locking rod 403 is installed on the front of the locking seat 404. A support seat 401 is installed on the front of the locking rod 403. A double-shaft drive motor 402 is arranged at the top of the support seat 401. Input shafts 405 are arranged on both the left and right sides of the double-shaft drive motor 402. Output shafts 406 are arranged at one ends of the two input shafts 405. A transmission shaft 407 is arranged at the bottom of the two output shafts 406. A second rotating shaft 408 is arranged at the bottom of the two transmission shafts 407. Mounting blocks 409 are arranged at the bottom of the two second rotating shafts 408. First mixing augers 410 are arranged at the bottom of the mounting blocks 409. A first connecting shaft 412 is arranged at the bottom of the two first mixing augers 410. A first mixing tray 413 is arranged at the bottom of the first connecting shaft 412. A second mixing auger 414 is arranged at the bottom of the first mixing tray 413. Cleaning sponge strips 411 are arranged on the outer walls of the first mixing auger 410 and the second mixing auger 414. A second connecting shaft 415 is arranged at the bottom of the second mixing auger 414. A second mixing tray 416 is arranged at the bottom of the second connecting shaft 415. Multiple stirring blocks 417 are arranged on the tops of the first mixing tray 413 and the second mixing tray 416;

[0027] The drive motor 301 is in transmission connection with the first rotating shaft 303 through a coupling 302. The first rotating shaft 303 is detachably connected to the material guiding roller 304. The support seat 401 is detachably connected to the two locking rods 403. The locking rod 403 is detachably connected to the locking seat 404. The locking seat 404 is detachably connected to the rear inside of the mixing box 1. The double-shaft drive motor 402 is in transmission connection with the output shafts 406 through the two input shafts 405. The two output shafts 406 are in transmission connection with the transmission shaft 407. The transmission shaft 407 is detachably connected to the second rotating shaft 408. The second rotating shaft 408 is detachably connected to the mounting block 409. The mounting block 409 is detachably connected to the first mixing auger 410. Both the first mixing auger 410 and the second mixing auger 414 are detachably connected to the multiple cleaning sponge strips 411. The first mixing auger 410 is detachably connected to the first connecting shaft 412. The first connecting shaft 412 is detachably connected to the first mixing tray 413. The first mixing tray 413 is detachably connected to the second mixing auger 414. The second mixing auger 414 is detachably connected to the second connecting shaft 415. The second connecting shaft 415 is detachably connected to the second mixing tray 416. Both the first mixing tray 413 and the second mixing tray 416 are detachably connected to the multiple stirring blocks 417;

[0028] Among them, the rotation of the feeding roller 304 is set to perform the feeding work on the premixed powder, which is convenient for use. The double-shaft drive motor 402 is set to drive the two input shafts 405 and the output shaft 406 at the same time, improving the mixing effect. The transmission shaft 407 drives the second rotating shaft 408 to rotate, which drives the first mixing auger 410, the first mixing tray 413, the second mixing auger 414, and the second mixing tray 416 to rotate to perform the stirring and mixing work on the premixed powder. The cleaning sponge strips 411 arranged on the outer walls of the first mixing auger 410 and the second mixing auger 414 can clean the outer walls of the first mixing auger 410 and the second mixing auger 414 during stirring. The stirring blocks 417 are set to accelerate the stirring work on the premixed powder, facilitating uniform mixing.

[0029] It should be noted that the present utility model is a mixing device for milk-white mochi bread premixed powder. When in use, the premixed powder is placed in the feeding cavity 2, and the drive motor 301 drives the coupling 302 to drive the first rotating shaft 303 to rotate. The first rotating shaft 303 drives the feeding roller 304 to rotate to feed the premixed powder into the mixing box 1. The double-shaft drive motor 402 drives the two input shafts 405 to drive the output shaft 406 to operate, so that the output shaft 406 drives the second rotating shaft 408 at the bottom of the transmission shaft 407 to rotate. The second rotating shaft 408 drives the first mixing auger 410, the first mixing tray 413, the second mixing auger 414, and the second mixing tray 416 to rotate to perform the mixing work on the premixed powder. The first connecting shaft 412 and the second connecting shaft 415 are used to facilitate connection and installation. The first mixing tray 413 and the second mixing tray 416 rotate to perform the uniform mixing work on the premixed powder by using a plurality of stirring blocks 417.

[0030] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A premixed powder mixing device for milk white mochi bread, comprising a mixing box (1) and a feeding cavity (2), characterized in that: At the upper end of the front surface of the mixing box (1), a material guiding cavity (2) is installed, and a material guiding component (3) is arranged on the inner wall of the material guiding cavity (2); The material guiding component (3) includes a coupling (302) arranged on the left side surface of the inner wall of the material guiding cavity (2), a first rotating shaft (303) is arranged on the right side surface of the coupling (302), a material guiding roller (304) is arranged on the right side surface of the first rotating shaft (303), and a driving motor (301) is arranged on the left side surface of the coupling (302) and penetrates through the left side surface of the material guiding cavity (2); A stirring and mixing component (4) is arranged inside the mixing box (1). The stirring and mixing component (4) includes a locking seat (404) arranged at the upper middle part of the rear surface inside the mixing box (1), a locking rod (403) is installed on the front surface of the locking seat (404), a support seat (401) is installed on the front surface of the locking rod (403), a double-shaft driving motor (402) is arranged on the top of the support seat (401), input shafts (405) are arranged on the left and right side surfaces of the double-shaft driving motor (402), output shafts (406) are arranged at one ends of the two input shafts (405), transmission shafts (407) are arranged at the bottoms of the two output shafts (406), second rotating shafts (408) are arranged at the bottoms of the two transmission shafts (407), mounting blocks (409) are arranged at the bottoms of the two second rotating shafts (408), first mixing augers (410) are arranged at the bottoms of the mounting blocks (409), a first connecting shaft (412) is arranged at the bottom of the two first mixing augers (410), a first mixing tray (413) is arranged at the bottom of the first connecting shaft (412), a second mixing auger (414) is arranged at the bottom of the first mixing tray (413), cleaning sponge strips (411) are arranged on the outer walls of the first mixing auger (410) and the second mixing auger (414), a second connecting shaft (415) is arranged at the bottom of the second mixing auger (414), a second mixing tray (416) is arranged at the bottom of the second connecting shaft (415), and a plurality of stirring blocks (417) are arranged on the tops of the first mixing tray (413) and the second mixing tray (416).

2. A premix mixing device for milk white mochi bread according to claim 1, characterized in that: The driving motor (301) is in transmission connection with the first rotating shaft (303) through the coupling (302), and the first rotating shaft (303) is detachably connected with the material guiding roller (304).

3. A premix mixing device for milk white mochi bread according to claim 1, characterized in that: The support seat (401) is detachably connected with the two locking rods (403), the locking rod (403) is detachably connected with the locking seat (404), and the locking seat (404) is detachably connected with the rear surface inside the mixing box (1).

4. A premix mixing device for milk white mochi bread according to claim 1, characterized in that: The double-shaft driving motor (402) is in transmission connection with the output shafts (406) through the two input shafts (405), the two output shafts (406) are in transmission connection with the transmission shafts (407), and the transmission shafts (407) are detachably connected with the second rotating shafts (408).

5. A premix mixing device for milk white mochi bread according to claim 1, characterized in that: The second rotating shaft (408) and the mounting block (409) are detachably connected, the mounting block (409) and the first mixing auger (410) are detachably connected, and the first mixing auger (410) and the second mixing auger (414) are both detachably connected to a plurality of the cleaning sponge strip blocks (411).

6. A premix mixing device for milk white mochi bread according to claim 1, characterized in that: The first mixing auger (410) and the first connecting shaft (412) are detachably connected, the first connecting shaft (412) and the first mixing tray (413) are detachably connected, the first mixing tray (413) and the second mixing auger (414) are detachably connected, the second mixing auger (414) and the second connecting shaft (415) are detachably connected, the second connecting shaft (415) and the second mixing tray (416) are detachably connected, and the first mixing tray (413) and the second mixing tray (416) are both detachably connected to a plurality of the stirring blocks (417).

Citation Information

Patent Citations

  • Premixed flour food mixing device

    CN214261685U