An automatic adjustable dough sheeter

The automatic adjustable dough press machine solves the problem of dough breakage during the pressing process by using layer-by-layer pressing and automatic powder replenishment technology, thus achieving efficient and stable dough pressing and noodle production.

CN224268038UActive Publication Date: 2026-05-26QINGDAO YIERJIA FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINGDAO YIERJIA FOOD CO LTD
Filing Date
2025-07-09
Publication Date
2026-05-26

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Abstract

This utility model discloses an automatic adjustable dough press machine, comprising: a track, with a limiting plate fixedly connected to the track, and the limiting plate fixedly connected to each pressing roller fixing system; a coarse pressing roller housing, with a No. 3 motor fixedly connected to the coarse pressing roller housing; a fine pressing roller fixing frame, with a No. 2 motor fixedly connected to the upper surface of the fine pressing roller fixing frame, the No. 2 motor fixedly connected to a telescopic system, and a No. 6 motor fixedly connected to the fine pressing roller fixing frame; a toothed pressing roller fixing frame, the toothed pressing roller having the same motion structure as the fine pressing roller, and pressing teeth fixedly connected to the side surface of the toothed pressing roller; and a powder spraying system, with a powder spraying system fixedly connected to various locations by a connecting frame, the connecting frame fixedly connected to a flour cylinder, and an air pump fixedly connected to the lower surface of the flour cylinder. Through the above device, the dough is pressed thinner layer by layer on the track according to the required thickness, with flour continuously added, greatly reducing the probability of dough sticking and breaking or dough becoming too large and getting stuck, and improving the stability of the entire device.
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Description

Technical Field

[0001] This utility model relates to the field of food processing, and in particular to an automatic adjustable noodle press. Background Technology

[0002] With the continuous development of the times, society's demand for the food processing industry is increasing. As a traditional staple food in my country and even worldwide, noodles have a very large consumer market. To make noodles, it is essential to process the dough. Among these processes, pressing the dough is fundamental. Early dough presses were mostly manual, requiring manual adjustment of the roller spacing to control the dough thickness and manual cranks to press the dough. Even with automatic dough presses on the market, manual adjustment of the roller spacing is still necessary. Traditional roller structures also frequently result in dough breakage during pressing. If there is a need to make noodles, the dough needs to be transported to an additional noodle machine, which is very time-consuming and labor-intensive. Therefore, an automatic adjustable dough press that can significantly reduce the probability of dough breakage and integrate multiple functions is particularly important. Utility Model Content

[0003] The purpose of this invention is to at least solve one of the technical problems existing in the prior art, and to provide an automatic adjustable dough press machine. This machine can protect the integrity of the dough during the pressing process by pressing it layer by layer and automatically replenishing the powder, which greatly reduces the probability of the dough breaking during the process. At the same time, the telescopic rod system makes it easier to repress the dough, and the coarse pressure roller shell greatly reduces the possibility of the operator's hand being caught in it during the repressing process.

[0004] This utility model also provides an automatic adjustable dough press machine, comprising: a track, wherein limit plates are fixedly connected to both the left and right surfaces of the track; a coarse pressure roller housing is fixedly connected to the outer surface of the limit plates; multiple fine pressure roller fixing frames are fixedly connected to the outer surface of the limit plates; and a toothed pressure roller fixing frame is fixedly connected to the outer surface of the limit plates; a coarse pressure roller housing, wherein a No. 3 motor is fixedly connected to the side surface of the coarse pressure roller housing; the output end of the No. 3 motor passes through the coarse pressure roller housing and is rotatably connected to the coarse pressure roller; the coarse pressure roller is rotatably connected to the inner surface of the coarse pressure roller housing in the horizontal direction; and a connecting frame is fixedly connected to the side surface of the coarse pressure roller housing along the track movement direction; a fine pressure roller fixing frame, wherein a No. 2 motor is fixedly connected to the upper surface of the fine pressure roller fixing frame; a telescopic rod is movably connected to the output end of the No. 2 motor passing through the upper surface of the fine pressure roller fixing frame; a push plate is fixedly connected to the end of the telescopic rod away from the No. 2 motor; and a fine pressure roller is rotatably connected to the inner side surface of the push plate; and a toothed pressure roller fixing frame. A toothed roller fixing frame has a No. 4 motor fixedly connected to its upper surface. A telescopic rod is movably connected to the output end of the No. 4 motor, passing through the upper surface of the toothed roller fixing frame. A push plate is fixedly connected to the end of the telescopic rod away from the No. 4 motor. A No. 5 motor is fixedly connected to the side surface of the push plate. A rotating rod is rotatably connected to the output end of the No. 5 motor, passing through the side surface of the push plate and rotatably connected to the outer surface of the push plate. A toothed roller is fixedly connected to the side surface of the rotating rod, and the toothed roller is rotatably connected to the inner side surface of the push plate. Pressing teeth are fixedly connected to the side surface of the toothed roller. A base plate has a support frame fixedly connected to its upper surface, and a connecting frame is fixedly connected to its upper surface. A connecting frame has a flour cylinder fixedly connected to its connecting frame. An air pump is fixedly connected to the lower surface of the flour cylinder. The input end of the air pump passes through the lower surface of the flour cylinder to the inside of the flour cylinder, and a nozzle is fixedly connected to the output port of the air pump. The above components allow the processed dough to pass through a track and be initially flattened by a coarse roller. Then, different motors are activated to lower different rollers as needed, achieving the effect of gradually thinning the dough or cutting it into noodles. At the same time, the automatic flour spraying device and the multiple rollers for gradually thinning the dough greatly reduce the probability of dough breakage and ensure that the noodles are dry and do not stick together when they are produced, meeting the needs for dough and noodles of different thicknesses.

[0005] According to the present invention, an automatic adjustable dough press machine includes a No. 1 motor fixedly connected to the outer surface of the limiting plate, and the output end of the No. 1 motor rotatably connected to a track through the limiting plate. These components make the track part of the power system, greatly increasing the power of the dough pressing system.

[0006] According to the present invention, an automatic adjustable dough press machine has a No. 6 motor fixedly connected to the side surface of the push plate, and a rotating rod rotatably connected to the output end of the No. 6 motor through the side surface of the push plate. These components provide power to the rotating rod.

[0007] According to the present invention, an automatic adjustable dough press machine has a rotating rod whose end is away from the No. 6 motor. The rod passes through the side surface of the push plate and is rotatably connected to the outer surface of the push plate. A fine pressure roller is fixedly connected to the side surface of the rotating rod. These components provide an additional power source for the fine pressure roller, greatly increasing the success rate of dough pressing.

[0008] According to the present invention, an automatic adjustable dough sheeting machine has a receiving rail fixedly connected to the upper surface of the base plate, and the receiving rail is located directly below the end of the track's rotation direction. This component prevents dough or noodles from falling off the base plate after dropping from the track.

[0009] According to the present invention, an automatic adjustable dough press machine has a lower rod fixedly connected to the upper surface of the base plate, and the lower rod is fixedly connected to the lower surface of the toothed pressure roller fixing frame. These components allow the output end of the dough press machine to be positioned at a lower level, creating a height difference.

[0010] According to the present invention, an automatic adjustable dough press machine has a height rod fixedly connected to the upper surface of the base plate, and the height rod is fixedly connected to the lower surface of the coarse pressure roller housing. These components create a significant height difference between the input and output ends of the dough press machine, providing additional gravity support to the power system for pressing the dough.

[0011] According to the present invention, an automatic adjustable dough press machine has a lid movably connected to the upper surface of the flour cylinder, and a switch buckle is fixedly connected to the lid. These components allow the flour cylinder to be opened through the lid, and the switch buckle makes opening the lid easier.

[0012] Beneficial effects:

[0013] This automatic adjustable dough press uses a coarse pressure roller with an additional power system to stably press the dough initially. Its automatic flour replenishment system greatly protects the dough from breakage during the pressing process. Since the other pressure rollers are in a retracted state when not in use, it is convenient for the operator to repress the dough multiple times. The outer shell of the coarse pressure roller also reduces the risk of the operator being crushed during the repressing process. When it is necessary to press dough or noodles of different thicknesses, the relevant motor can be activated to lower the relevant thickness pressure rollers along with the previous ones. Each pressure roller can press dough of different thicknesses due to the different lengths of the telescopic rods. By using a layer-by-layer pressing method, the dough can better maintain its shape during pressing. Finally, the toothed pressure roller is used to press it into different types of noodles. At the same time, the track and the power system of motor No. 6 also provide additional power during pressing, greatly increasing the stability of the dough pressing system. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0015] Figure 1 This is an overall structural diagram of the automatic adjustable noodle press of this utility model;

[0016] Figure 2 This is another side view of the automatic adjustable noodle press of this utility model;

[0017] Figure 3 This is a top view of the automatic adjustable dough press of this utility model;

[0018] Figure 4 This is a structural diagram of the powder replenishing machine of the automatic adjustable dough press of this utility model.

[0019] Legend:

[0020] 1. Coarse pressure roller; 2. Fine pressure roller; 3. Toothed pressure roller; 4. Pressure teeth; 5. Motor No. 1; 6. Motor No. 2; 7. Motor No. 3; 8. Fine pressure roller fixing frame; 9. Telescopic rod; 10. Push plate; 11. Rotating rod; 12. Coarse pressure roller housing; 13. Base plate; 14. Receiving rail; 15. Limiting plate; 16. Track; 17. Connecting frame; 18. Flour hopper; 19. Cylinder cover; 20. Air pump; 21. Nozzle; 22. Support frame; 23. Low rod; 24. High rod; 25. Motor No. 4; 26. Motor No. 5; 27. Toothed pressure roller fixing frame; 28. Motor No. 6; 29. ​​Switch buckle. Detailed Implementation

[0021] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.

[0022] Reference Figure 1-4The automatic adjustable dough press machine of the novel embodiment includes: a track 16 for limiting the device; a limit plate 15 is fixedly connected to both the left and right surfaces of the track 16 to prevent the dough being pressed from falling out of the track 16; a first motor 5 is fixedly connected to the outer surface of the limit plate 15 to provide power to the track 16; the output end of the first motor 5 is rotatably connected to the track 16 through the limit plate 15; the output end of the first motor 5 is connected to the rotating device of the track 16; a coarse pressure roller housing 12 is fixedly connected to the outer surface of the limit plate 15 to limit the device and protect the operator's hand from being caught in it; multiple fine pressure roller fixing frames 8 are fixedly connected to the outer surface of the limit plate 15; and a toothed pressure roller fixing frame 27 is fixedly connected to the outer surface of the limit plate 15. When the first motor 5 is started, the track 16 receives power and drives the dough to move along the track 16, pressing the dough layer by layer according to the required thickness of the dough.

[0023] The outer shell 12 of the coarse pressing roller is used to limit the device and protect the operator's hand from being caught in the coarse pressing roller 1 during the pressing operation. A No. 3 motor 7 is fixedly connected to the side surface of the outer shell 12. The No. 3 motor 7 provides a power source for the coarse pressing roller 1. The output end of the No. 3 motor 7 passes through the outer shell 12 and is rotatably connected to the coarse pressing roller 1. The coarse pressing roller 1 is used for coarse pressing and shaping, which can simply shape the dough. The coarse pressing roller 1 is rotatably connected to the inner surface of the coarse pressing roller shell 12 in the horizontal direction. A connecting frame 17 is fixedly connected to the side surface of the coarse pressing roller shell 12 along the movement direction of the track 16. When the dough enters the coarse pressing roller 1, the No. 3 motor 7 provides a power source to drive the coarse pressing roller 1 to rotate. The dough is subjected to initial coarse pressing to shape the dough and make it more suitable for subsequent rolling.

[0024] A fine pressure roller fixing frame 8 is used to limit the device. A second motor 6 is fixedly connected to the upper surface of the fine pressure roller fixing frame 8. The second motor 6 provides power for the extension and retraction of the telescopic rod 9. The output end of the second motor 6 passes through the upper surface of the fine pressure roller fixing frame 8 and is movably connected to the telescopic rod 9. The extension and retraction of the telescopic rod 9 pushes the push plate 10 to move up and down, adjusting the subsequent pressing state of the dough. The end of the telescopic rod 9 away from the second motor 6 is fixedly connected to the push plate 10. The push plate 10 is used to drive the sixth motor 28 to move vertically. The sixth motor 28 is fixedly connected to the side surface of the push plate 10. The sixth motor 28 provides power for the rotating rod 11. The output end of the sixth motor 28 passes through the side surface of the push plate 10 and is rotatably connected to the rotating rod 11. The end of the rotating rod 11 away from the sixth motor 28 passes through the side surface of the push plate 10 and is rotatably connected to the outer surface of the push plate 10. The rotating rod 11 is fixedly connected to the two ends of the push plate 10 through the motor 28. On the side surface, a fine pressure roller 2 is fixedly connected to the side surface of the rotating rod 11. The fine pressure roller 2 is used to press dough of different thicknesses according to the needs. The rotation of the rotating rod 11 drives the fine pressure roller 2 to move. The fine pressure roller 2 is rotatably connected to the inner side surface of the push plate 10. Even if the sixth motor 28 loses power, the dough can be pressed a second time under the push of the track 16 and the coarse pressure roller 1. After the dough shaped by the coarse pressure roller 1 is sent to the fine pressure roller 2, the second motor 6 is started according to the needs to drive the telescopic rod 9 and the sixth motor 28 to drive the fine pressure roller 2. Since the telescopic rod 9 has different extension lengths, the gap between the fine pressure roller 2 and the track 16 is different, resulting in different thicknesses of the pressed dough. At the same time, the extension degree of the telescopic rod 9 is higher as it goes further, resulting in the fine pressure roller 2 being able to press the dough thinner. By using multiple fine pressure rollers 2 to gradually thin the dough, the breakage rate of the dough can be greatly reduced during the pressing process.

[0025] A toothed pressure roller fixing bracket 27 is used to limit the device. A fourth motor 25 is fixedly connected to the upper surface of the toothed pressure roller fixing bracket 27. The fourth motor 25 provides a power source for the telescopic rod 9. The output end of the fourth motor 25 passes through the upper surface of the toothed pressure roller fixing bracket 27 and is movably connected to the telescopic rod 9. The telescopic rod 9 is used to push the push plate 10. The end of the telescopic rod 9 away from the fourth motor 25 is fixedly connected to the push plate 10. A fifth motor 26 is fixedly connected to the side surface of the push plate 10. The fifth motor 26 provides a power source for the rotating rod 11. The output end of the fifth motor 26 passes through the push plate 11. A rotating rod 11 is rotatably connected to the side surface of the push plate 10. The end of the rotating rod 11 away from the No. 5 motor 26 passes through the side surface of the push plate 10 and is rotatably connected to the outer surface of the push plate 10. A toothed pressure roller 3 is fixedly connected to the side surface of the rotating rod 11. The rotating rod 11 drives the toothed pressure roller 3 to rotate by its own rotation. The toothed pressure roller 3 is rotatably connected to the inner side surface of the push plate 10. Pressing teeth 4 are fixedly connected to the side surface of the toothed pressure roller 3. The working principle of the toothed pressure roller 3 is roughly the same as that of the fine pressure roller 2, but the pressing teeth 4 on its side surface can press the processed dough into noodles, increasing the versatility of the device.

[0026] The base plate 13 is used to limit the device. A receiving rail 14 is fixedly connected to the upper surface of the base plate 13. The receiving rail 14 is located directly below the end of the rotation direction of the track 16. The receiving rail 14 allows the pressed dough or noodles to fall into it and prevents them from falling out of the base plate 13. A low rod 23 is fixedly connected to the upper surface of the base plate 13 to limit the height of the device and determine the lower end. The low rod 23 is fixedly connected to the lower surface of the toothed pressure roller fixing frame 27. A high rod 24 is fixedly connected to the upper surface of the base plate 13 and is fixedly connected to the outer shell of the coarse pressure roller. The lower surface of the base plate 12 is used to limit the height of the equipment and determine the high end. The upper surface of the base plate 13 is fixedly connected to the support frame 22. The support frame 22 is used to adjust the angle of the connecting frame 17. The upper surface of the support frame 22 is fixedly connected to the connecting frame 17. The height difference system formed by the high rod 24 and the low rod 23 allows the dough pressing work to be completed under the combined action of the power of each motor, the power of the track 16 and gravity, making the system more stable. When the finished dough or noodles leave the track 16, they will fall into the receiving rail 14.

[0027] A connecting frame 17 is used to limit the device. A flour cylinder 18 is fixedly connected to the connecting frame 17. The flour cylinder 18 is used to load flour. A cylinder cover 19 is movably connected to the upper surface of the flour cylinder 18. The cylinder cover 19 is used to form a sealed space when closed to prevent the flour from being contaminated. A switch buckle 29 is fixedly connected to the cylinder cover 19, which makes it easier for the operator to open the cylinder cover 19. An air pump 20 is fixedly connected to the lower surface of the flour cylinder 18. The air pump 20 provides a power source for replenishing flour to the dough. The input end of the air pump 20 penetrates through the lower surface of the flour cylinder 18 to the inside of the flour cylinder 18 and is used to load flour. A nozzle 21 is fixedly connected to the output port of the air pump 20 for spraying flour in a more concentrated manner. When the flour pressing begins, the air pump 20 is activated to spray the flour in the flour cylinder 18 onto the dough in a regular manner, preventing it from sticking to the pressing rollers due to its high viscosity or the pressed dough from clumping together with the dough in the receiving compartment 14 during the pressing process.

[0028] Working principle: When the operator wants to press dough, the prepared dough can be placed at the highest point of track 16. Motor 7, motor 5, and air pump 20 are started in sequence. First, the coarse pressure roller 1 is used to press the dough multiple times to shape it. The flour replenishment device is used to add flour as needed to prevent sticking. During this process, the outer shell 12 of the coarse pressure roller can effectively prevent the operator's hand from being caught in it. After the dough is shaped, motors 6 and 28 with different pressing thicknesses can be started in sequence as needed. After the telescopic rod 9 and the fine pressure roller 2 are ready, the pressed and shaped dough is put back into track 16 to press it thinner layer by layer. If noodles need to be pressed, motors 25 and 26 can be started to rotate the toothed pressure roller 3 in the pressing position. Under the action of the pressing teeth 4, the dough of the preset thickness is made into noodles. During this process, the two powder spraying devices will greatly protect the dough and noodles from sticking together, and together with the innovative design of pressing thinner layer by layer, protect the integrity of the finished product.

[0029] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. An automatic adjustable dough sheeting machine, characterized in that, include: Track (16), with limiting plates (15) fixedly connected to both the left and right surfaces of the track (16), with a coarse pressure roller housing (12) fixedly connected to the outer surface of the limiting plate (15), with multiple fine pressure roller fixing frames (8) fixedly connected to the outer surface of the limiting plate (15), and with a toothed pressure roller fixing frame (27) fixedly connected to the outer surface of the limiting plate (15); A coarse pressure roller housing (12) is provided. A No. 3 motor (7) is fixedly connected to the side surface of the coarse pressure roller housing (12). The output end of the No. 3 motor (7) passes through the coarse pressure roller housing (12) and is rotatably connected to a coarse pressure roller (1). The coarse pressure roller (1) is rotatably connected to the inner surface of the coarse pressure roller housing (12) in the horizontal direction. A connecting frame (17) is fixedly connected to the side surface of the coarse pressure roller housing (12) along the movement direction of the track (16). A fine pressure roller fixing frame (8) is fixedly connected to a second motor (6) on its upper surface. The output end of the second motor (6) is movably connected to a telescopic rod (9) through the upper surface of the fine pressure roller fixing frame (8). A push plate (10) is fixedly connected to the end of the telescopic rod (9) away from the second motor (6). A fine pressure roller (2) is rotatably connected to the inner side surface of the push plate (10). A toothed pressure roller fixing frame (27) is provided. A No. 4 motor (25) is fixedly connected to the upper surface of the toothed pressure roller fixing frame (27). A telescopic rod (9) is movably connected to the output end of the No. 4 motor (25) through the upper surface of the toothed pressure roller fixing frame (27). A push plate (10) is fixedly connected to the end of the telescopic rod (9) away from the No. 4 motor (25). A No. 5 motor (26) is fixedly connected to the side surface of the push plate (10). A rotating rod (11) is rotatably connected to the output end of the No. 5 motor (26) through the side surface of the push plate (10). A rotating rod (11) is rotatably connected to the outer surface of the push plate (10) through the side surface of the push plate (10). A toothed pressure roller (3) is fixedly connected to the side surface of the rotating rod (11). The toothed pressure roller (3) is rotatably connected to the inner side surface of the push plate (10). A pressure tooth (4) is fixedly connected to the side surface of the toothed pressure roller (3). A base plate (13) is provided, and a support frame (22) is fixedly connected to the upper surface of the base plate (13). A connecting frame (17) is fixedly connected to the upper surface of the support frame (22). A connecting frame (17) is fixedly connected to a flour cylinder (18). A jet pump (20) is fixedly connected to the lower surface of the flour cylinder (18). The input end of the jet pump (20) penetrates the lower surface of the flour cylinder (18) to the inside of the flour cylinder (18). A nozzle (21) is fixedly connected to the output port of the jet pump (20).

2. The automatic adjustable dough sheeting machine according to claim 1, characterized in that, A motor (5) is fixedly connected to the outer surface of the limiting plate (15), and the output end of the motor (5) is rotatably connected to the track (16) through the limiting plate (15).

3. The automatic adjustable dough sheeting machine according to claim 1, characterized in that, A No. 6 motor (28) is fixedly connected to the side surface of the push plate (10), and a rotating rod (11) is rotatably connected to the output end of the No. 6 motor (28) through the side surface of the push plate (10).

4. An automatic adjustable dough sheeting machine according to claim 3, characterized in that, The end of the rotating rod (11) away from the No. 6 motor (28) passes through the side surface of the push plate (10) and is rotatably connected to the outer surface of the push plate (10). A fine pressure roller (2) is fixedly connected to the side surface of the rotating rod (11).

5. An automatic adjustable dough sheeting machine according to claim 1, characterized in that, A receiving rail (14) is fixedly connected to the upper surface of the base plate (13), and the receiving rail (14) is located directly below the end of the rotation direction of the track (16).

6. An automatic adjustable dough sheeting machine according to claim 1, characterized in that, A low rod (23) is fixedly connected to the upper surface of the base plate (13), and the low rod (23) is fixedly connected to the lower surface of the toothed pressure roller fixing frame (27).

7. An automatic adjustable dough sheeting machine according to claim 1, characterized in that, A high rod (24) is fixedly connected to the upper surface of the base plate (13), and the high rod (24) is fixedly connected to the lower surface of the coarse pressure roller housing (12).

8. An automatic adjustable dough sheeting machine according to claim 1, characterized in that, The flour hopper (18) is movably connected to a lid (19), and the lid (19) is fixedly connected to a switch buckle (29).