Dough kneading device with stirring structure for frozen wheaten food processing

By introducing a multi-rotating stirring structure and a limit fixing structure into the pasta noodle kneading device, the problem of insufficient flour stirring is solved, and the effect of efficient stirring and cleaning is achieved, which improves the overall performance of the dough kneading device.

CN223067844UActive Publication Date: 2025-07-08SHANGHAI LIANGQUAN QIMEI FOOD TECH CO LTD
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Patent Information

Application Number
CN202422307062.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-07-08
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

The existing pasta and noodle equipment has insufficient flour stirring due to a single stirring structure, which is difficult to meet the efficiency and effect requirements of assembly line production.

Method used

Multiple rotary stirring structures and limit fixing structures are adopted to drive the stirring assembly for rotary stirring through the movable assembly, and the drive assembly realizes double stirring in different directions, and cooperates with the support assembly to prevent the device from pouring.

Benefits of technology

It realizes multi-directional efficient stirring of flour, improves stirring efficiency and effect, and facilitates the cleaning of the mixing tank, improving the overall efficiency and safety of the dough device.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223067844U_ABST
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Abstract

The utility model relates to the field of wheaten food processing, in particular to a dough kneading device with a stirring structure for frozen wheaten food processing, and aims to solve the technical problem that flour is difficult to efficiently and fully stir when the dough kneading device is used in daily life. According to the technical scheme, the dough kneading device with the stirring structure for frozen wheaten food processing comprises a supporting assembly, a bearing assembly, a stirring assembly, a tank body assembly, a movable assembly and a driving assembly; the movable assembly is matched with the stirring assembly to perform rotary stirring on flour, the stirring efficiency and effect can be improved, the driving assembly drives the main body to rotate, the stirring assembly and the movable assembly are matched to achieve the effect of performing double rotary stirring on the flour in different directions, and the problem that in daily use of the dough kneading device, the dough kneading efficiency is high is solved. And flour is difficult to efficiently and fully stir.
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Description

Technical Field

[0001] The utility model belongs to the field of pasta processing, and particularly relates to a dough mixing device for frozen pasta processing with a stirring structure. Background Art

[0002] The dough mixing device for frozen pasta processing has a stirring structure, which can mix flour and other raw materials to form dough. This device can greatly improve the efficiency and quality of pasta processing, and enhance its efficacy and quality. Most of such dough mixing devices complete the dough mixing work through the mutual cooperation of a stirring structure and a feeding structure.

[0003] Most of the existing pasta dough mixing devices adopt a single stirring structure. During the use of the single stirring structure, since its angle and position are fixed, it is difficult to stir the flour in the mixing tank in all directions and sufficiently, which easily causes residue and precipitation of the flour. Moreover, the single stirring structure has poor stirring efficiency for the flour, and it is difficult to meet the needs of the assembly line structure, thus affecting the efficiency and effect of the dough mixing device in mixing the flour.

[0004] Therefore, aiming at the problem that it is difficult to stir the flour in all directions and sufficiently when the above-mentioned pasta dough mixing device is in use, and the stirring efficiency of the stirring structure is poor, thus affecting the efficiency and effect of the dough mixing device in mixing the flour, a dough mixing device for frozen pasta processing with a stirring structure is developed. By adding multiple rotating stirring structures and limit fixing structures to the dough mixing device, the flour in the mixing tank can be stirred in all directions and efficiently, and it is convenient for users to clean the mixing tank, improving the mixing efficiency and effect of the stirring structure, thereby enhancing the dough mixing efficiency and effect of the dough mixing device. Summary of the Utility Model

[0005] In order to overcome the problem that it is difficult to stir the flour efficiently and sufficiently when the dough mixing device is in daily use.

[0006] The technical solution of the utility model is: a dough mixing device for frozen pasta processing with a stirring structure, which includes a support assembly, a bearing assembly, a stirring assembly, a tank body assembly, and also includes a movable assembly and a driving assembly. A bearing assembly for limiting and supporting the driving assembly is arranged at the upper end of the support assembly. A movable assembly with a driving rotation structure is arranged at the upper end of the bearing assembly. Two stirring assemblies driven by motors are arranged on the movable assembly. A driving assembly with a buckle-fixed rotation structure is arranged inside the bearing assembly. A tank body assembly with limit fixing is arranged at the upper end of the driving assembly.

[0007] Preferably, the two support frames on the support component cooperate with each other to prevent the base from tipping over. The bearing component can limit and fix the driving component through multiple slots, which is convenient for the user to maintain the driving component. The movable component can drive the stirring component to rotate and stir, which can improve the stirring efficiency. The stirring component drives the stirring blades to rotate and stir along the inner wall of the main body through two stirring rotating shafts, which can improve the stirring effect. The driving component drives the main body to rotate, and cooperating with the stirring component can achieve the effect of double stirring in different directions. The tank body component can quickly remove the main body from the driving disc for cleaning through the handle and cooperating with the clamping block and the clamping groove.

[0008] Preferably, the support component includes a base, support frames, and cushion blocks. The support frames are fixedly connected to the front and rear ends of the base, and the cushion blocks are fixedly connected to the lower ends of the support frames. When in use, the base is supported by the support frames in cooperation with the cushion blocks, which can effectively prevent the base from tipping over.

[0009] Preferably, the bearing component includes a bearing platform, a first slot, an electric telescopic rod, a second slot, and a third slot. Symmetrical bases are fixedly connected to the lower end of the bearing platform. Symmetrical first slots are opened at the upper end of the bearing platform. The electric telescopic rod is fixedly connected to the inner wall of the first slot. A second slot is opened at the upper end of the bearing platform, and a third slot is opened at the lower inner wall of the second slot. When in use, the bearing platform limits and fixes the electric telescopic rod through the first slot, and uses the second slot and the third slot to limit and fix the third motor and the driving disc.

[0010] Preferably, the movable component includes a movable platform, a fourth slot, a fifth slot, and a driving and rotating structure. The driving and rotating structure consists of a first motor, a connecting shaft, and a turntable. The upper end of the electric telescopic rod is fixedly connected to the movable platform. The fourth slot runs through the upper and lower ends of the movable platform. The first motor is fixedly connected to the inner wall of the fourth slot. The lower end of the output shaft of the first motor is fixedly connected to the connecting shaft. The lower end of the connecting shaft is fixedly connected to the turntable. The fifth slot runs through the upper and lower ends of the turntable. When in use, the first motor on the movable platform can drive the connecting shaft to rotate, and the rotation of the connecting shaft makes the turntable rotate, which can drive the stirring component to rotate and stir along the inner wall of the main body.

[0011] Preferably, the stirring component includes a second motor, a rotating shaft, and stirring blades. The second motor is fixedly connected to the inner wall of the fifth slot. The lower end of the output shaft of the second motor is fixedly connected to the rotating shaft. The stirring blades are fixedly connected to the outer wall of the rotating shaft in a uniformly distributed manner. When in use, the second motor drives the rotating shaft to rotate, so that the stirring blades stir the flour in the main body.

[0012] Preferably, the driving component includes a driving disk and a snap - fixed rotating structure. The snap - fixed rotating structure consists of a clamping block and a third motor. The inner wall of the third groove body is fixedly connected with the third motor. The upper end of the output shaft of the third motor is fixedly connected with the driving disk. Uniformly distributed clamping blocks are fixedly connected to the upper - end edge of the driving disk. During use, the third motor drives the driving disk to rotate, causing the driving disk to drive the clamping blocks to rotate. The clamping blocks cooperate with the clamping grooves to drive the main body to rotate.

[0013] Preferably, the tank body component includes a main body, a handle, and clamping grooves. Handles are fixedly connected to the front and rear ends of the main body. Uniformly distributed clamping grooves are formed at the lower end of the main body. The clamping grooves are adapted to the clamping blocks. During use, the handle, in cooperation with the clamping grooves and the clamping blocks, can quickly remove the main body from the upper end of the driving disk for maintenance.

[0014] The beneficial effects of the present utility model are as follows:

[0015] 1. The movable component can drive the stirring component to rotate and stir, which can improve the stirring efficiency. The stirring component drives the stirring blades to rotate along the inner wall of the main body through two stirring rotating shafts, which can improve the stirring effect. The driving component drives the main body to rotate, and in cooperation with the stirring component, it can achieve the effect of double - direction stirring in different directions.

[0016] 2. The support frame cooperates with the cushion blocks to assist in supporting the base, which can effectively prevent the base from tipping over and improve the safety of the device.

[0017] 3. The handle, in cooperation with the clamping grooves and the clamping blocks, can quickly remove the main body from the upper end of the driving disk for maintenance, which is convenient for users to maintain it. Description of the Drawings

[0018] Figure 1 Shown is a three - dimensional structural schematic diagram of a dough - kneading device for processing frozen pasta with a stirring structure according to the present utility model;

[0019] Figure 2 Shown is a disassembled three - dimensional structural schematic diagram of the bearing component of a dough - kneading device for processing frozen pasta with a stirring structure according to the present utility model;

[0020] Figure 3 Shown is a disassembled three - dimensional structural schematic diagram of the support component and the bearing component of a dough - kneading device for processing frozen pasta with a stirring structure according to the present utility model;

[0021] Figure 4 Shown is a disassembled three - dimensional structural schematic diagram of the stirring component, the tank body component, and the driving component of a dough - kneading device for processing frozen pasta with a stirring structure according to the present utility model;

[0022] Figure 5The figure shows a three-dimensional structural exploded view of the tank body assembly and the drive assembly of a dough mixing device for processing frozen pasta with a stirring structure according to the present utility model;

[0023] Figure 6 The figure shows a three-dimensional structural exploded view of the movable assembly of a dough mixing device for processing frozen pasta with a stirring structure according to the present utility model.

[0024] Explanation of reference numerals: 1 - support assembly, 101 - base, 102 - support frame, 103 - cushion block, 2 - bearing assembly, 201 - bearing table, 202 - first tank, 203 - electric telescopic rod, 204 - second tank, 205 - third tank, 3 - movable assembly, 301 - movable table, 302 - fourth tank, 303 - first motor, 304 - connecting shaft, 305 - fifth tank, 306 - turntable, 4 - stirring assembly, 401 - second motor, 402 - rotating shaft, 403 - stirring blade, 5 - tank body assembly, 501 - main body, 502 - handle, 503 - clamping groove, 6 - drive assembly, 601 - drive disk, 602 - clamping block, 603 - third motor. Detailed implementation manners

[0025] The present utility model will be further described below in conjunction with the drawings and embodiments.

[0026] Please refer to Figure 1-2 , the present utility model provides an embodiment: a dough mixing device for processing frozen pasta with a stirring structure, including a support assembly 1, a bearing assembly 2, a stirring assembly 4, a tank body assembly 5, and further including a movable assembly 3 and a drive assembly 6. A bearing assembly 2 for limiting and supporting the drive assembly 6 is provided at the upper end of the support assembly 1. A movable assembly 3 with a drive rotation structure is provided at the upper end of the bearing assembly 2. Two motor-driven stirring assemblies 4 are provided on the movable assembly 3. A drive assembly 6 with a snap-fastening and rotating structure is provided inside the bearing assembly 2. A tank body assembly 5 with limit fixation is provided at the upper end of the drive assembly 6. The movable assembly 3 can drive the stirring assembly 4 to rotate and stir, which can improve the stirring efficiency. The stirring assembly 4 drives the stirring blades 403 to rotate and stir along the inner wall of the main body 501 through two stirring rotating shafts 402, which can improve the stirring effect. The drive assembly 6 drives the main body 501 to rotate, and cooperating with the stirring assembly 4 can achieve the effect of double stirring in different directions.

[0027] Please refer to Figure 3, in this embodiment, the support assembly 1 includes a base 101, a support frame 102, and a cushion block 103. The front and rear ends of the base 101 are fixedly connected with the support frame 102, and the lower end of the support frame 102 is fixedly connected with the cushion block 103. During use, the base 101 is assisted in support by the cooperation of the support frame 102 and the cushion block 103, which can effectively prevent the base 101 from tipping over. The bearing assembly 2 includes a bearing platform 201, a first groove body 202, an electric telescopic rod 203, a second groove body 204, and a third groove body 205. The lower end of the bearing platform 201 is fixedly connected with symmetric bases 101. The upper end of the bearing platform 201 is provided with symmetric first groove bodies 202. The inner wall of the first groove body 202 is fixedly connected with the electric telescopic rod 203. The upper end of the bearing platform 201 is provided with a second groove body 204, and the lower inner wall of the second groove body 204 is provided with a third groove body 205. During use, the bearing platform 201 limits and fixes the electric telescopic rod 203 through the first groove body 202, and uses the second groove body 204 and the third groove body 205 to limit and fix the third motor 603 and the driving disc 601.

[0028] Please refer to Figure 4-5 , in this embodiment, the stirring assembly 4 includes a second motor 401, a rotating shaft 402, and stirring blades 403. The inner wall of the fifth groove body 305 is fixedly connected with the second motor 401. The lower end of the output shaft of the second motor 401 is fixedly connected with the rotating shaft 402. The outer wall of the rotating shaft 402 is fixedly connected with uniformly distributed stirring blades 403. During use, the second motor 401 drives the rotating shaft 402 to rotate, so that the stirring blades 403 stir the flour in the main body 501. The driving assembly 6 includes a driving disc 601 and a snap-fixed rotating structure. The snap-fixed rotating structure is composed of a clamping block 602 and a third motor 603. The inner wall of the third groove body 205 is fixedly connected with the third motor 603. The upper end of the output shaft of the third motor 603 is fixedly connected with the driving disc 601. The upper end edge of the driving disc 601 is fixedly connected with uniformly distributed clamping blocks 602. During use, the third motor 603 drives the driving disc 601 to rotate, so that the driving disc 601 drives the clamping blocks 602 to rotate. The clamping blocks 602 cooperate with the clamping grooves 503 to drive the main body 501 to rotate. The tank assembly 5 includes a main body 501, a handle 502, and clamping grooves 503. The front and rear ends of the main body 501 are fixedly connected with the handle 502. The lower end of the main body 501 is provided with uniformly distributed clamping grooves 503. The clamping grooves 503 are adapted to the clamping blocks 602. During use, the handle 502, in cooperation with the clamping grooves 503 and the clamping blocks 602, can quickly remove the main body 501 from the upper end of the driving disc 601 for maintenance.

[0029] Please refer to Figure 6, in this embodiment, the movable component 3 includes a movable table 301, a fourth groove 302, a fifth groove 305, and a driving and rotating structure. The driving and rotating structure is composed of a first motor 303, a connecting shaft 304, and a turntable 306. The upper end of the electric telescopic rod 203 is fixedly connected to the movable table 301. The upper and lower ends of the movable table 301 are penetrated and provided with the fourth groove 302. The inner wall of the fourth groove 302 is fixedly connected with the first motor 303. The lower end of the output shaft of the first motor 303 is fixedly connected with the connecting shaft 304. The lower end of the connecting shaft 304 is fixedly connected with the turntable 306. The upper and lower ends of the turntable 306 are penetrated and provided with the fifth groove 305. When in use, the first motor 303 on the movable table 301 can drive the connecting shaft 304 to rotate. The rotation of the connecting shaft 304 causes the turntable 306 to rotate, which can drive the stirring component 4 to rotate and stir along the inner wall of the main body 501.

[0030] When working, first, put flour and water into the inner wall of the main body 501. Then, by starting the electric telescopic rod 203, the electric telescopic rod 203 drives the movable table 301 to adjust the height, and the lower end of the rotating shaft 402 is attached to the lower inner wall of the main body 501.

[0031] Next, start the first motor 303, the second motor 401, and the third motor 603. The first motor 303 drives the connecting shaft 304 to rotate, so that the turntable 306 drives the second motor 401 to rotate. The second motor 401 drives the rotating shaft 402 to rotate and the stirring blades 403 to rotate and stir along the inner wall of the main body 501. Then, in cooperation with the third motor 603 driving the driving disk 601 to rotate, the main body 501 rotates, thereby realizing double rotating stirring of the flour in different directions.

[0032] Then, when in use, the support frame 102 cooperates with the cushion block 103 to assist in supporting the base 101, which can effectively prevent the base 101 from tipping over and improve the safety of the device. Using the handle 502, the card slot 503, and the clamping block 602, the main body 501 can be quickly removed from the upper end of the driving disk 601 for maintenance, which is convenient for the user to maintain it.

[0033] Through the above steps, the movable component 3 cooperates with the stirring component 4 to rotate and stir the flour, which can improve the stirring efficiency and effect. The driving component 6 drives the main body 501 to rotate, and in cooperation with the stirring component 4 and the movable component 3, the effect of double rotating stirring of the flour in different directions can be realized, solving the problem that it is difficult to stir the flour efficiently and sufficiently during the daily use of the dough mixing device.

[0034] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.

Claims

1. A dough mixing device for processing frozen pasta with a stirring structure, comprising a support assembly (1), a bearing assembly (2), a stirring assembly (4), and a tank body assembly (5), characterized in that: It also includes a movable component (3) and a driving component (6). A bearing component (2) for limiting and supporting the driving component (6) is provided at the upper end of the supporting component (1). An active component (3) with a driving rotation structure is provided at the upper end of the bearing component (2). Two motor-driven stirring components (4) are provided on the active component (3). A driving component (6) with a snap-fastening rotation structure is provided inside the bearing component (2). A tank component (5) with a card slot limit fixation is provided at the upper end of the driving component (6).

2. The dough mixing device for processing frozen pasta with a stirring structure according to claim 1, characterized in that: The supporting component (1) includes a base (101), a support frame (102), and a cushion block (103). The front and rear ends of the base (101) are fixedly connected with the support frame (102), and the lower end of the support frame (102) is fixedly connected with the cushion block (103).

3. The dough kneading device for processing frozen pasta with a stirring structure according to claim 2, characterized in that: The bearing component (2) includes a bearing platform (201), a first groove body (202), an electric telescopic rod (203), a second groove body (204), and a third groove body (205). Symmetrical bases (101) are fixedly connected to the lower end of the bearing platform (201). Symmetrical first groove bodies (202) are opened at the upper end of the bearing platform (201). The inner wall of the first groove body (202) is fixedly connected with the electric telescopic rod (203). A second groove body (204) is opened at the upper end of the bearing platform (201), and a third groove body (205) is opened at the lower inner wall of the second groove body (204).

4. A dough mixing device for processing frozen pasta with a stirring structure according to claim 3, characterized in that: The active component (3) includes an active platform (301), a fourth groove body (302), a fifth groove body (305), and a driving rotation structure. The driving rotation structure is composed of a first motor (303), a connecting shaft (304), and a turntable (306). The upper end of the electric telescopic rod (203) is fixedly connected with the active platform (301). The fourth groove body (302) runs through the upper and lower ends of the active platform (301). The inner wall of the fourth groove body (302) is fixedly connected with the first motor (303). The lower end of the output shaft of the first motor (303) is fixedly connected with the connecting shaft (304). The lower end of the connecting shaft (304) is fixedly connected with the turntable (306). The fifth groove body (305) runs through the upper and lower ends of the turntable (306).

5. The dough mixing device for processing frozen pasta with a stirring structure according to claim 4, characterized in that: The stirring component (4) includes a second motor (401), a rotating shaft (402), and stirring blades (403). The inner wall of the fifth groove body (305) is fixedly connected with the second motor (401). The lower end of the output shaft of the second motor (401) is fixedly connected with the rotating shaft (402). Uniformly distributed stirring blades (403) are fixedly connected to the outer wall of the rotating shaft (402).

6. A dough mixing device for processing frozen pasta with a stirring structure according to claim 3, characterized in that: The driving component (6) includes a driving disc (601) and a snap-fastening rotation structure. The snap-fastening rotation structure is composed of a clamping block (602) and a third motor (603). The inner wall of the third groove body (205) is fixedly connected with the third motor (603). The upper end of the output shaft of the third motor (603) is fixedly connected with the driving disc (601). Uniformly distributed clamping blocks (602) are fixedly connected to the upper edge of the driving disc (601).

7. A dough kneading device for processing frozen pasta with a stirring structure according to claim 6, characterized in that: The tank body assembly (5) includes a main body (501), a handle (502), and a card slot (503). Handles (502) are fixedly connected to the front and rear ends of the main body (501). Uniformly distributed card slots (503) are provided at the lower end of the main body (501), and the card slots (503) are adapted to the card blocks (602).