Dough flour wrapping machine

By designing a dough coating machine, the dough coating operation was automated, solving the problems of low efficiency and high workload in the existing technology, improving work efficiency and extending the service life of the device.

CN223830270UActive Publication Date: 2026-01-27XIANG FAN SHI NIU NIU SHI PIN YOU XIAN ZE REN GONG SI
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Patent Information

Application Number
CN202423070589.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-01-27
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing technologies have low efficiency in dough coating operations, high workload for workers, and difficulty in handling multiple doughs simultaneously.

Method used

Design a dough coating machine, comprising a receiving box, a support plate and a blocking frame, to automate the dough coating operation through a drive component and a rotating component. The operator only needs to load and unload the dough to complete the coating of multiple doughs.

Benefits of technology

It improves the efficiency of dough coating, reduces the labor intensity of workers, and the device is detachable for easy cleaning and maintenance, thus extending its service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The dough flour wrapping machine comprises a containing box, a bearing plate and a blocking frame, an opening is formed in the upper end of the containing box, supporting legs are arranged at the bottom end of the containing box, the bearing plate is located in the containing box, the blocking frame is arranged on the bearing plate, and a plurality of first through holes allowing flour to penetrate through are formed in the bearing plate and the blocking frame. A driving assembly used for driving the bearing plate to move in the vertical direction is arranged in the containing box, the driving assembly is detachably and rotationally connected with the bearing plate, a rotating assembly used for driving the bearing plate to rotate is arranged in the containing box, and the bearing plate is detachably connected with the rotating assembly. According to the flour wrapping device, a worker can effectively and uniformly wrap flour on dough only by completing feeding and discharging operation, so that the working intensity of the worker can be effectively reduced, the flour wrapping operation can be carried out on multiple pieces of dough at a time, and the working efficiency when the flour wrapping is carried out on the dough can be effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of dough processing technology, and in particular to a dough coating machine. Background Technology

[0002] Dough is made by kneading flour and other ingredients (liquid). The mixture of flour and other ingredients has sufficient firmness to be kneaded or rolled. After being shaped, the dough needs to be coated with flour before further processing.

[0003] Currently, when coating dough with flour, workers often hold the dough and place it into a container that holds flour. By moving the dough, the flour is coated onto it. However, since workers can only coat one dough at a time, the work efficiency is low, and when there are too many doughs to coat, the workload for workers becomes too heavy. Utility Model Content

[0004] (I) Purpose of the utility model

[0005] To address the technical problems existing in the background art, this utility model proposes a dough coating machine. With this device, the operator only needs to complete the loading and unloading operations to effectively coat the dough evenly with flour, thereby effectively reducing the workload of the operator. Furthermore, the device can coat multiple doughs at once, thereby effectively improving the work efficiency when coating dough. In addition, the device can also disassemble the support plate, so that it can be cleaned or maintained after a period of use, thereby improving the service life of the device.

[0006] (II) Technical Solution

[0007] This utility model provides a dough coating machine, including a receiving box, a support plate, and a blocking frame. The receiving box has an opening at its upper end and a support leg at its bottom end. The support plate is located in the receiving box, and the blocking frame is provided on the support plate. Both the support plate and the blocking frame have multiple first through holes for flour to pass through. The receiving box contains a driving assembly for driving the support plate to move in the vertical direction. The driving assembly is detachably rotatably connected to the support plate. The receiving box also contains a rotating assembly for driving the support plate to rotate. The support plate is detachably connected to the rotating assembly.

[0008] Preferably, the rotating assembly includes a first mounting bracket, a motor, a rotating shaft, and a transmission block. The first mounting bracket is connected to the bottom end of the receiving box. The bottom end of the receiving box has a first opening. The rotating shaft is rotatably disposed within the first opening. The motor is connected to the first mounting bracket. One end of the rotating shaft is coaxially connected to the output shaft of the motor. The other end of the rotating shaft passes through the first opening and is connected to the transmission block. The transmission block is rotatably connected to the inner wall of the receiving box. The bearing plate has a second through hole for the transmission block to pass through. The transmission block passes through the second through hole and slides against its inner wall.

[0009] Preferably, the driving assembly includes a slider, a cylinder, and a second mounting bracket. The slider is slidably disposed within the receiving box and slides against its inner wall. The slider is detachably rotatably connected to the support plate via a connecting unit. The receiving box has a second opening at the bottom end of the slider. The second mounting bracket is connected to the bottom end of the receiving box. The fixed end of the cylinder is connected to the second mounting bracket. The telescopic rod of the cylinder passes through the second opening and is connected to the slider. The telescopic rod of the cylinder slides against the inner wall of the second opening.

[0010] Preferably, the connecting unit includes a mounting plate, a first clamping plate, a second clamping plate, and a clamping block. One end of the mounting plate is connected to the slider, and the other end of the mounting plate is provided with the first clamping plate and the second clamping plate spaced vertically. The second clamping plate is slidably disposed on the mounting plate. The ends of the first clamping plate and the second clamping plate that are close to each other are provided with clamping blocks. The upper and lower ends of the bearing plate are provided with mounting grooves, and the clamping blocks can extend into the mounting grooves and slide against their inner walls.

[0011] Preferably, it also includes a screw, the second clamping plate is provided with a first threaded through hole, the screw is vertically arranged, one end of which rotates with the first clamping plate, and the other end of which passes through the first threaded through hole and is provided with a handle on the same axis, and the screw is threadedly connected to the second clamping plate.

[0012] Compared with the prior art, the above-mentioned technical solution of this utility model has the following beneficial technical effects:

[0013] In this invention, the operator only needs to complete the loading and unloading operations to effectively coat the dough with flour evenly, thereby reducing the workload of the operator. Furthermore, the device can coat multiple doughs at once, thus improving the efficiency of coating dough. The device also has a detachable support plate, which can be cleaned or maintained after a period of use, thereby extending the service life of the device. Attached Figure Description

[0014] Figure 1This is a schematic diagram of the structure of a dough coating machine proposed in this utility model.

[0015] Figure 2 This is a side view of the structure of a dough coating machine proposed in this utility model.

[0016] Figure 3 This is a schematic diagram of the internal structure of a dough coating machine proposed in this utility model.

[0017] Reference numerals: 1. Receiving box; 2. Support leg; 3. Bearing plate; 4. Blocking frame; 5. First mounting bracket; 6. Motor; 7. Rotating shaft; 8. Transmission block; 9. Slider; 10. Cylinder; 11. Second mounting bracket; 12. Mounting plate; 13. First clamping plate; 14. Second clamping plate; 15. Clamping block; 16. Screw. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.

[0019] In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used solely for the convenience of describing this utility model and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0020] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," and "connected," etc., should be interpreted broadly. For example, "connected" can be a fixed connection, such as welding, riveting, or bonding; it can also be a detachable connection, such as threaded connection, keyed connection, or pin connection; or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; or it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0021] like Figure 1-3As shown, the present invention proposes a dough coating machine, comprising a receiving box 1, a support plate 3, and a blocking frame 4. The receiving box 1 has an opening at its upper end and a support leg 2 at its bottom end. The support plate 3 is located in the receiving box 1, and the blocking frame 4 is provided on the support plate 3. Both the support plate 3 and the blocking frame 4 have multiple first through holes for flour to pass through. The receiving box 1 contains a driving assembly for driving the support plate 3 to move in the vertical direction. The driving assembly is detachably rotatably connected to the support plate 3. The receiving box 1 also contains a rotating assembly for driving the support plate 3 to rotate. The support plate 3 is detachably connected to the rotating assembly.

[0022] In this invention, when the device is needed, the dough to be coated with flour can be placed on the support plate 3 and positioned within the blocking frame 4. Flour is then placed into the receiving box 1. The drive assembly can move the support plate 3 upwards, facilitating loading and unloading operations. After loading, the drive assembly can move the support plate 3 downwards until it contacts the flour. The rotation assembly then rotates the support plate 3, causing the dough on it to rotate along with it. This rotation also causes the flour in the receiving box 1 to slide, ensuring the dough is evenly coated with flour. After coating, the drive assembly moves the support plate 3 up and down to the top of the receiving box 1, allowing the worker to unload the dough. This device effectively coats the dough evenly with flour by simply loading and unloading, reducing workload. Furthermore, the device can coat multiple doughs at once, improving efficiency. The support plate 3 can also be disassembled for cleaning or maintenance after a period of use, extending the device's lifespan.

[0023] In an optional embodiment, the rotating assembly includes a first mounting bracket 5, a motor 6, a rotating shaft 7, and a transmission block 8. The first mounting bracket 5 is connected to the bottom end of the receiving box 1, and the bottom end of the receiving box 1 has a first opening. The rotating shaft 7 is rotatably disposed within the first opening. The motor 6 is connected to the first mounting bracket 5. One end of the rotating shaft 7 is coaxially connected to the output shaft of the motor 6, and the other end of the rotating shaft 7 passes through the first opening and is connected to the transmission block 8. The transmission block 8 is rotatably connected to the inner wall of the receiving box 1. The support plate 3 has a second through hole through which the transmission block 8 passes. The transmission block 8 passes through the second through hole and slides against its inner wall. The motor 6 drives the rotating shaft 7 to rotate, and the rotating shaft 7 drives the transmission block 8 to rotate. Thus, the transmission block 8 drives the inner wall of the second through hole to rotate, thereby driving the support plate 3 to rotate. Furthermore, the drive unit drives the support plate 3 to move upward, so that the second through hole can be moved upward until the transmission block 8 moves out of the second through hole, thereby completing the detachable arrangement of the support plate 3 and the rotating assembly.

[0024] In an optional embodiment, the driving assembly includes a slider 9, a cylinder 10, and a second mounting bracket 11. The slider 9 is slidably disposed within the receiving box 1 and slides against its inner wall. The slider 9 is detachably rotatably connected to the support plate 3 via a connecting unit. The receiving box 1 has a second opening at the bottom end of the slider 9. The second mounting bracket 11 is connected to the bottom end of the receiving box 1. The fixed end of the cylinder 10 is connected to the second mounting bracket 11. The telescopic rod of the cylinder 10 passes through the second opening and is connected to the slider 9. The telescopic rod of the cylinder 10 slides against the inner wall of the second opening. The cylinder 10 can effectively drive the slider 9 to move, and the slider 9 can effectively drive the support plate 3 to move in the vertical direction via the connecting unit.

[0025] In an optional embodiment, the connecting unit includes a mounting plate 12, a first clamping plate 13, a second clamping plate 14, and clamping blocks 15. One end of the mounting plate 12 is connected to the slider 9, and the other end of the mounting plate 12 is provided with the first clamping plate 13 and the second clamping plate 14 spaced vertically. The second clamping plate 14 is slidably disposed on the mounting plate 12. Clamping blocks 15 are provided at the ends of the first clamping plate 13 and the second clamping plate 14 that are close to each other. The upper and lower ends of the bearing plate 3 are provided with mounting grooves, and the clamping blocks 15 can extend into the mounting grooves and slide against their inner walls. By using the sliding second clamping plate 14 and the clamping block 15 connected thereto, when installing the support plate 3, the support plate 3 can be placed between the first clamping plate 13 and the second clamping plate 14, with the mounting groove located at the clamping block 15. By moving the support plate 3 downward, the clamping block 15 on the first clamping plate 13 can enter the mounting groove. Furthermore, by moving the second clamping plate 14, the movement of the second clamping plate 14 causes the clamping block 15 to move and enter the mounting groove above the support plate 3. The clamping block 15 slides against the inner wall of the mounting groove, thereby enabling the rotational setting of the support plate 3 and the connecting unit.

[0026] In an optional embodiment, a screw 16 is further included. The second clamping plate 14 is provided with a first threaded through hole. The screw 16 is vertically arranged, with one end rotating with the first clamping plate 13, and the other end passing through the first threaded through hole and coaxially provided with a handle. The screw 16 is threadedly connected to the second clamping plate 14. The screw 16 can be easily rotated through the handle. The rotation of the screw 16 can effectively drive the second clamping plate 14 to move. The movement of the second clamping plate 14 can drive the clamping block 15 to move, thereby driving the clamping block 15 to move out of the mounting groove. Thus, the operator can move the bearing plate 3 upward, so that the bearing plate 3 moves upward until the clamping blocks 15 of both the upper and lower plates are not located in the mounting groove, thereby completing the disassembly of the bearing plate 3.

[0027] It should be understood that the specific embodiments described above are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within its protection scope. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.

Claims

1. A dough coating machine, characterized in that, The container includes a receiving box (1), a support plate (3), and a blocking frame (4). The receiving box (1) has an opening at its upper end and a support leg (2) at its bottom end. The support plate (3) is located on the receiving box (1), and the blocking frame (4) is provided on the support plate (3). Both the support plate (3) and the blocking frame (4) have multiple first through holes for flour to pass through. The receiving box (1) contains a driving assembly for driving the support plate (3) to move vertically. The driving assembly is detachably rotatably connected to the support plate (3). The receiving box (1) also contains a rotating assembly for driving the support plate (3) to rotate. The support plate (3) is detachably connected to the rotating assembly. The rotating assembly includes... The device includes a first mounting bracket (5), a motor (6), a rotating shaft (7), and a transmission block (8). The first mounting bracket (5) is connected to the bottom end of the housing (1). The bottom end of the housing (1) is provided with a first opening. The rotating shaft (7) is rotatably disposed in the first opening. The motor (6) is connected to the first mounting bracket (5). One end of the rotating shaft (7) is coaxially connected to the output shaft of the motor (6). The other end of the rotating shaft (7) passes through the first opening and is connected to the transmission block (8). The transmission block (8) is rotatably connected to the inner wall of the housing (1). The bearing plate (3) is provided with a second through hole for the transmission block (8) to pass through. The transmission block (8) passes through the second through hole and slides against its inner wall.

2. The dough coating machine according to claim 1, characterized in that, The driving assembly includes a slider (9), a cylinder (10), and a second mounting bracket (11). The slider (9) is slidably disposed in the housing (1) and slides against its inner wall. The slider (9) is detachably rotatably connected to the support plate (3) through a connecting unit. The housing (1) has a second opening at the bottom end of the slider (9). The second mounting bracket (11) is connected to the bottom end of the housing (1). The fixed end of the cylinder (10) is connected to the second mounting bracket (11). The telescopic rod of the cylinder (10) passes through the second opening and is connected to the slider (9). The telescopic rod of the cylinder (10) slides against the inner wall of the second opening.

3. A dough coating machine according to claim 2, characterized in that, The connecting unit includes a mounting plate (12), a first clamping plate (13), a second clamping plate (14), and a clamping block (15). One end of the mounting plate (12) is connected to the slider (9). The other end of the mounting plate (12) is provided with the first clamping plate (13) and the second clamping plate (14) spaced apart vertically. The second clamping plate (14) is slidably disposed on the mounting plate (12). The first clamping plate (13) and the second clamping plate (14) are each provided with a clamping block (15) at their respective ends close to each other. The upper and lower ends of the bearing plate (3) are provided with mounting grooves. The clamping block (15) can extend into the mounting groove and slide against its inner wall.

4. A dough coating machine according to claim 3, characterized in that, It also includes a screw (16), the second clamping plate (14) is provided with a first threaded through hole, the screw (16) is vertically arranged, one end of which rotates with the first clamping plate (13), and the other end of which passes through the first threaded through hole and is provided with a handle on the same axis. The screw (16) is threadedly connected to the second clamping plate (14).