A cutting device for processing highland barley noodles

By using a servo motor and cylinder-driven cutting device, combined with a guide plate and pressing roller, the problem of unstable position of barley flour during the cutting process was solved, achieving stable extrusion and efficient cutting of barley flour skin, thus improving the cutting processing efficiency.

CN224539307UActive Publication Date: 2026-07-24西藏达娃曲珍实业有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
西藏达娃曲珍实业有限公司
Filing Date
2025-06-19
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Existing cutting devices are not convenient for the quick and easy transport and cutting of barley flour. The position of the barley flour is prone to change when it moves, which can lead to insufficient compression and affect the cutting efficiency.

Method used

The lower and upper cutting shafts driven by servo motors, along with a gear system, and a pressing roller and guide plate controlled by a stepper motor and cylinder, are used to limit and guide the flow of barley dough and extrude it into shape. Through the cooperation of a conveyor, a feeding electric roller, and an infeed electric roller, a production line-style strip conveying is achieved.

Benefits of technology

It improves the efficiency of cutting highland barley flour into strips, ensures the stability of the highland barley flour skin during the cutting process, realizes convenient extrusion molding, and improves the overall processing efficiency of the cutting device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of cutting device of highland barley noodle processing belong to cutting device technical field.It includes bottom plate and conveyer, the top end of bottom plate is equipped with conveyer, both sides outer wall of conveyer are equipped with support block, support block is equipped with press frame between both sides, the top end of bottom plate of conveyer side is equipped with support frame, the top end of support frame is equipped with cutting frame, the top end of cutting frame is equipped with servo motor, the output of servo motor is equipped with lower cutting surface shaft, and lower cutting surface shaft extends to the outside of cutting frame.The utility model not only realizes that cutting device is conveniently and quickly transported cutting strip operation to highland barley noodle, facilitates that cutting device is conveniently and quickly cutting strip conveying to highland barley noodle assembly line, and avoid that position change when highland barley noodle moves leads to unable to extrude fully, facilitates that highland barley noodle skin is extruded quickly into shape, improves the efficiency of cutting strip processing of cutting device to highland barley noodle.
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Description

Technical Field

[0001] This utility model relates to the technical field of cutting devices, specifically a cutting device for processing highland barley flour. Background Technology

[0002] Barley is an annual herbaceous plant with an erect, smooth stem. The leaf sheaths are smooth, mostly shorter than the internodes, or the basal ones longer than the internodes, with auricles on both sides of the apex that clasp the stem; the ligule is membranous, and the leaf blades are slightly rough. The spike-like inflorescence turns yellowish-brown or purplish-brown when mature; the spikelets have linear-lanceolate glumes covered with short hairs, and the apex is acuminate and awn-like. The lemma extends to an awn at the apex and has fine bristles on both sides. The caryopsis easily detaches from the pod when mature. It is commonly cultivated in the northwestern and southwestern provinces of China. It thrives in cool, high-altitude climates. It is highly cold-hardy, has a short growing season, is high-yielding, early-maturing, and widely adaptable.

[0003] As disclosed in the patent announcement number CN222284513U, a strip cutting device includes a frame, a roller assembly, a cutter assembly, and a drive assembly. The roller assembly is mounted on the frame, the cutter assembly is mounted on the frame, the cutter assembly has multiple spaced blades, and the drive assembly is mounted on the frame and is drively connected to both the roller assembly and the cutter assembly. The roller assembly is configured to feed dough blanks to the cutter assembly, and the cutter assembly is configured to cut the transported dough blanks into multiple strips along the width direction of the dough blanks.

[0004] Although it allows for easy installation on production lines and quick and convenient slicing, it does not solve the problem that existing slicing devices are generally not conducive to the convenient and rapid conveying and slicing of barley flour. They are not convenient for the slicing device to transport barley flour in a streamlined manner, and the position of the barley flour is prone to change when it moves, resulting in insufficient compression. This makes it difficult to quickly compress and shape the barley flour skin, thus affecting the efficiency of the slicing device in processing barley flour. Utility Model Content

[0005] The purpose of this utility model is to provide a barley flour cutting device to solve the problems mentioned in the background art, such as the inconvenience of convenient and fast conveying and cutting of barley flour, the inconvenience of the convenient assembly line-style cutting and conveying of barley flour, the easy change of position of barley flour during movement leading to insufficient compression, and the inconvenience of rapid extrusion and shaping of barley flour skin, which affect the efficiency of barley flour cutting processing.

[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution:

[0007] A barley flour slicing device includes a base plate and a conveyor. The conveyor is mounted on the top of the base plate. Support blocks are mounted on both outer walls of the conveyor. A dough pressing frame is mounted between the two sides of the support blocks. A support frame is mounted on the top of the base plate on one side of the conveyor. A slicing frame is mounted on the top of the support frame. A servo motor is mounted on the top of the slicing frame. A lower cutting shaft is mounted on the output end of the servo motor and extends to the outside of the slicing frame. The lower cutting shaft is movably connected to the slicing frame. A drive gear is fitted on the surface of the lower cutting shaft on one side of the servo motor. An upper cutting shaft is movably mounted inside the slicing frame above the drive gear and extends to the outside of the slicing frame. A driven gear is fitted on the surface of the upper cutting shaft near the drive gear, and the driven gear meshes with the drive gear.

[0008] Optionally, multiple sets of equally spaced electric feeding rollers are movably installed at the bottom of the cutting frame, and the electric feeding rollers extend to the outside of the cutting frame.

[0009] Optionally, a feeding electric roller is movably installed inside the slicing frame below the upper cutting axis, and the feeding electric roller extends to the outside of the slicing frame.

[0010] Optionally, connecting blocks are installed on both outer walls of the dough pressing frame, and a stepper motor is installed on the outer wall of a set of connecting blocks. The output end of the stepper motor is equipped with a bidirectional threaded rod, and the bidirectional threaded rod extends to the outside of the connecting block.

[0011] Optionally, the surface of the bidirectional threaded rod is symmetrically fitted with bidirectional threaded sleeves, and the surface of each bidirectional threaded sleeve is fitted with a guide plate.

[0012] Optionally, limit rods are symmetrically installed between the two sides of the connecting block, and limit sleeves are symmetrically slidably fitted on the surfaces of the limit rods, with the limit sleeves connected to the guide plate.

[0013] Optionally, the top of the dough press frame is equipped with three sets of cylinders at equal intervals, and each cylinder has a push rod installed at its output end, with the push rod extending into the interior of the dough press frame.

[0014] Optionally, a connecting plate is installed at the end of the push rod away from the cylinder, and a bearing seat is symmetrically installed at the bottom end of the connecting plate. A rotating shaft is movably installed between the two sides of the bearing seat.

[0015] Optionally, the surface of the rotating shaft is fitted with pressing rollers, and the top of the pressing frame on one side of the cylinder is symmetrically slidably mounted with sliding rods, which extend into the interior of the pressing frame and are connected to the connecting plate.

[0016] Optionally, the sliding rod surface on one side of the dough press is slidably fitted with a sliding sleeve, and the sliding sleeve is connected to the dough press.

[0017] Compared with the prior art, the beneficial effects of this utility model are: the cutting device not only realizes the convenient and fast conveying and cutting of barley flour, facilitating the assembly line-style convenient cutting and conveying of barley flour, but also avoids the inability to fully compress due to changes in the position of the barley flour during movement, facilitating the rapid extrusion and shaping of the barley flour skin, and improving the efficiency of the cutting device in processing barley flour into strips.

[0018] The conveyor moves the barley flour. When the barley flour reaches one side of the guide plate, a stepper motor moves the guide plates on both sides to limit and guide the flow of the barley flour, facilitating its entry into the dough press. Once inside the dough press, a cylinder drives three sets of pressing rollers to extrude the barley flour. When the extruded barley flour reaches the side of the feeding electric roller, the feeding electric roller moves the barley flour to the surface of the cutting frame, where a servo motor drives the lower cutting shaft to rotate. The lower cutting shaft drives the drive gear to rotate, which in turn drives the driven gear to rotate. The driven gear then drives the upper cutting shaft to rotate. With the cooperation of the upper and lower cutting shafts, the barley flour husks are easily cut into strips. The feeding electric roller is then turned on to transport the cut barley flour husks to the next process. This enables the cutting device to quickly and easily transport and cut barley flour, facilitating a streamlined and convenient cutting and transport process and improving the efficiency of the barley flour cutting device.

[0019] A stepper motor drives a bidirectional threaded rod to rotate, which in turn drives two sets of bidirectional threaded sleeves to move. These sleeves then move a guide plate. A limiting sleeve slides on the surface of the limiting rod to provide sliding support for the guide plate. The two sets of guide plates conveniently limit and guide the flow of the barley flour, enabling the cutting device to conveniently limit the conveyed barley flour. This prevents the barley flour from changing position during movement, which could lead to insufficient compression. Insufficiently compressed barley flour can easily affect the cutting effect.

[0020] The cylinder drives the connecting plate to move via the push rod. The sliding rod slides inside the sliding sleeve to provide sliding support for the connecting plate. The connecting plate drives two sets of bearing seats to move. The bearing seats drive the rotating shaft and the pressing roller to move to the surface of the barley flour. Under the movable support of the bearing seats, the rotating shaft drives the pressing roller to squeeze the moving barley flour. This realizes the convenient adjustable extrusion of barley flour by the cutting device, which facilitates the rapid extrusion and shaping of barley flour and improves the cutting effect of the cutting device on barley flour. Attached Figure Description

[0021] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments of the present invention and, together with the specification, further serve to explain the principles of the present invention and enable those skilled in the art to implement and use the present invention.

[0022] Figure 1 This is a front view structural diagram of the present utility model;

[0023] Figure 2 This is a three-dimensional structural diagram of the present invention;

[0024] Figure 3 This is a three-dimensional structural diagram of the connecting block of this utility model;

[0025] Figure 4 This is a three-dimensional structural diagram of the guide plate of this utility model;

[0026] Figure 5 This is a three-dimensional structural diagram of the connecting plate of this utility model;

[0027] Figure 6 This is a three-dimensional structural diagram of the slitting frame of this utility model;

[0028] Figure 7 This is a three-dimensional structural diagram of the electric feed roller of this utility model;

[0029] Figure 8 This is a three-dimensional structural diagram of the pressing roller of this utility model.

[0030] Figure label:

[0031] 1. Base plate; 2. Conveyor; 3. Support block; 4. Pressing frame; 5. Support frame; 6. Cutting frame; 7. Servo motor; 8. Lower cutting shaft; 9. Drive gear; 10. Upper cutting shaft; 11. Driven gear; 12. Feeding electric roller; 13. Feeding electric roller; 14. Stepper motor; 15. Connecting block; 16. Guide plate; 17. Bidirectional threaded rod; 18. Limiting rod; 19. Bidirectional threaded sleeve; 20. Limiting sleeve; 21. Cylinder; 22. Push rod; 23. Connecting plate; 24. Rotating shaft; 25. Pressing roller; 26. Sliding rod; 27. Sliding sleeve; 28. Shaft seat.

[0032] As shown in the figure, specific structures and devices are marked in the figure to clearly illustrate the structure of the embodiment of this utility model. However, this is only for illustrative purposes and is not intended to limit this utility model to this specific structure, device and environment. Those skilled in the art can adjust or modify these devices and environments according to specific needs. Detailed Implementation

[0033] The following is a detailed description of a barley flour cutting device for processing provided by this utility model, with reference to the accompanying drawings and specific embodiments. It should be noted that, to make the embodiments more detailed, the following embodiments are the best and preferred embodiments; those skilled in the art can also use other alternative methods to implement some known technologies. Furthermore, the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit this utility model.

[0034] It should be noted that the use of terms such as "an embodiment," "an embodiment," "an exemplary embodiment," and "some embodiments" in the specification indicates that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments (whether explicitly described or not) should be within the knowledge of those skilled in the art.

[0035] Generally, terms can be understood at least partly from their use in context. For example, depending at least partly on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in a singular sense, or a combination of features, structures, or characteristics in a plural sense. Additionally, the term "based on" can be understood not necessarily to convey an exclusive set of factors, but rather, alternatively, depending at least partly on the context, to allow for the presence of other factors that are not necessarily explicitly described.

[0036] It is understood that the meanings of “on”, “above”, and “above” in this utility model should be interpreted in the broadest manner, such that “on” not only means “directly on” something, but also includes the meaning of being “on” something with an intervening feature or layer, and that “above” or “above” not only means “on” something, but also includes the meaning of being “on” something without an intervening feature or layer.

[0037] Furthermore, spatially related terms such as “below,” “under,” “lower,” “above,” and “upper” are used herein for convenience to describe the relationship of one element or feature to one or more other elements or features, as illustrated in the accompanying drawings. Spatially related terms are intended to cover different orientations in the use or operation of the device other than those depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially related descriptive terms used herein can be interpreted similarly.

[0038] like Figures 1 to 8As shown, an embodiment of this utility model provides a strip-cutting device for processing highland barley flour, including a base plate 1 and a conveyor 2. The conveyor 2 is mounted on the top of the base plate 1. Support blocks 3 are mounted on both outer walls of the conveyor 2. A dough pressing frame 4 is mounted between the two sides of the support blocks 3. A support frame 5 is mounted on the top of the base plate 1 on one side of the conveyor 2. A strip-cutting frame 6 is mounted on the top of the support frame 5. A servo motor 7 is mounted on the top of the strip-cutting frame 6. A lower cutting shaft 8 is mounted on the output end of the servo motor 7, and the lower cutting shaft 8 extends to the outside of the strip-cutting frame 6. The lower cutting shaft 8 is movably connected to the strip-cutting frame 6. The servo motor 7... A drive gear 9 is fitted on the surface of the lower cutting shaft 8 on the side. An upper cutting shaft 10 is movably installed inside the cutting frame 6 above the drive gear 9, and the upper cutting shaft 10 extends to the outside of the cutting frame 6. A driven gear 11 is fitted on the surface of the upper cutting shaft 10 near the drive gear 9, and the driven gear 11 meshes with the drive gear 9. Multiple sets of feeding electric rollers 12 with equal spacing are movably installed at the bottom of the cutting frame 6, and the feeding electric rollers 12 extend to the outside of the cutting frame 6. A feeding electric roller 13 is movably installed inside the cutting frame 6 below the upper cutting shaft 10, and the feeding electric roller 13 extends to the outside of the cutting frame 6.

[0039] The barley flour is placed on the surface of conveyor 2. Conveyor 2 is turned on, and supported by the base plate 1, it moves the barley flour. When the barley flour moves to one side of the guide plate 16, stepper motor 14 is activated. Stepper motor 14 moves the guide plates 16 on both sides to limit and guide the flow of the barley flour, facilitating its entry into the dough press 4. When the barley flour enters the dough press 4, cylinder 21 is activated, driving three sets of pressing rollers 25 to extrude the barley flour. When the extruded barley flour moves to one side of the feeding electric roller 13, the feeding electric roller 13 is activated. Supported by the cutting frame 6, the feeding electric roller 13 moves the barley flour to the cutting frame. On the surface of frame 6, servo motor 7 is turned on. Supported by the cutting frame 6, servo motor 7 drives the lower cutting shaft 8 to rotate. The lower cutting shaft 8 drives the drive gear 9 to rotate. Under the meshing of drive gear 9 and driven gear 11, drive gear 9 drives driven gear 11 to rotate. Driven gear 11 drives upper cutting shaft 10 to rotate. With the cooperation of upper cutting shaft 10 and lower cutting shaft 8, the barley flour is conveniently cut into strips. The feeding electric roller 12 is turned on to transport the cut barley flour to the next process. This realizes the convenient and fast conveying and cutting operation of barley flour by the cutting device, which facilitates the convenient and efficient cutting and conveying of barley flour in a production line and improves the efficiency of barley flour cutting processing.

[0040] Connecting blocks 15 are installed on both outer walls of the noodle press 4, and a stepper motor 14 is installed on the outer wall of a set of connecting blocks 15. A bidirectional threaded rod 17 is installed at the output end of the stepper motor 14, and the bidirectional threaded rod 17 extends to the outside of the connecting block 15. A bidirectional threaded sleeve 19 is symmetrically fitted on the surface of the bidirectional threaded rod 17, and a guide plate 16 is fitted on the surface of each bidirectional threaded sleeve 19. Limiting rods 18 are symmetrically installed between the two sides of the connecting block 15, and limiting sleeves 20 are symmetrically slidably fitted on the surface of each limiting rod 18, and the limiting sleeves 20 are connected to the guide plate 16.

[0041] When the stepper motor 14 is turned on, it drives the bidirectional threaded rod 17 to rotate under the support of the connecting block 15. With the threaded connection between the bidirectional threaded rod 17 and the bidirectional threaded sleeve 19, the bidirectional threaded rod 17 drives the two sets of bidirectional threaded sleeves 19 to move. The bidirectional threaded sleeves 19 drive the guide plate 16 to move. The limiting sleeve 20 slides on the surface of the limiting rod 18 to provide sliding support for the guide plate 16. The two sets of guide plates 16 conveniently limit and guide the barley flour, realizing convenient limiting of the barley flour conveyed by the cutting device. This avoids the barley flour changing position when moving, which would result in insufficient compression. Insufficiently compressed barley flour can easily affect the cutting effect.

[0042] Three sets of cylinders 21 with equal spacing are installed at the top of the dough press frame 4. Each cylinder 21 has a push rod 22 installed at its output end, and the push rod 22 extends into the interior of the dough press frame 4. A connecting plate 23 is installed at the end of the push rod 22 away from the cylinder 21. A bearing seat 28 is symmetrically installed at the bottom of the connecting plate 23. A rotating shaft 24 is movably installed between the two sides of the bearing seat 28. A dough press roller 25 is fitted on the surface of the rotating shaft 24. A sliding rod 26 is symmetrically slidably installed at the top of the dough press frame 4 on one side of the cylinder 21, and the sliding rod 26 extends into the interior of the dough press frame 4. The sliding rod 26 is connected to the connecting plate 23. A sliding sleeve 27 is slidably fitted on the surface of the sliding rod 26 on one side of the dough press frame 4, and the sliding sleeve 27 is connected to the dough press frame 4.

[0043] When cylinder 21 is opened, supported by the pressing frame 4, cylinder 21 drives connecting plate 23 to move via push rod 22. Sliding rod 26 slides inside sliding sleeve 27 to provide sliding support for connecting plate 23. Connecting plate 23 drives two sets of bearing seats 28 to move. Bearing seats 28 drive rotating shaft 24 and pressing roller 25 to move to the surface of barley flour. Under the movable support of bearing seats 28, rotating shaft 24 drives pressing roller 25 to squeeze the moving barley flour. Cylinder 21 is used to adjust the height of pressing roller 25. Different pressing roller heights are used to press barley flour of different thicknesses. The cooperation of multiple sets of pressing rollers 25 facilitates and quickly forms barley flour, realizing convenient adjustable extrusion of barley flour by the cutting device, facilitating the rapid extrusion and forming of barley flour, and improving the cutting effect of the cutting device on barley flour.

[0044] The working principle of the technical solution provided by this utility model is as follows: The conveyor 2 drives the barley flour to move. When the barley flour moves to one side of the guide plate 16, the stepper motor 14 drives the guide plates 16 on both sides to move, thereby limiting and guiding the barley flour to facilitate its entry into the pressing frame 4. When the barley flour enters the pressing frame 4, the cylinder 21 drives the three sets of pressing rollers 25 to move, thereby facilitating the extrusion of the barley flour. When the extruded barley flour moves to one side of the feeding electric roller 13, the feeding electric roller 13 drives the barley flour to move to the surface of the cutting frame 6. The servo motor 7 drives the lower cutting shaft 8 to rotate, the lower cutting shaft 8 drives the drive gear 9 to rotate, the drive gear 9 drives the driven gear 11 to rotate, and the driven gear 11 drives the upper cutting shaft 10 to rotate. With the cooperation of the upper cutting shaft 10 and the lower cutting shaft 8, the barley flour is easily and conveniently... The barley flour is cut into strips. The feeding electric roller 12 is turned on to transport the cut barley flour to the next process. The stepper motor 14 drives the bidirectional threaded rod 17 to rotate. The bidirectional threaded rod 17 drives the two sets of bidirectional threaded sleeves 19 to move. The bidirectional threaded sleeves 19 drive the guide plate 16 to move. The limiting sleeve 20 slides on the surface of the limiting rod 18 to provide sliding support for the guide plate 16. The two sets of guide plates 16 conveniently limit and guide the barley flour. The cylinder 21 drives the connecting plate 23 to move through the push rod 22. The sliding rod 26 slides inside the sliding sleeve 27 to provide sliding support for the connecting plate 23. The connecting plate 23 drives the two sets of bearing seats 28 to move. The bearing seats 28 drive the rotating shaft 24 and the pressing roller 25 to move to the surface of the barley flour. Under the movable support of the bearing seats 28, the rotating shaft 24 drives the pressing roller 25 to squeeze the moving barley flour to complete the operation of the strip cutting device.

[0045] This utility model encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this utility model. To provide the public with a thorough understanding of this utility model, specific details are described in detail in the following preferred embodiments; however, those skilled in the art will fully understand this utility model even without these detailed descriptions. Furthermore, to avoid unnecessary confusion regarding the essence of this utility model, well-known methods, processes, procedures, components, and circuits are not described in detail.

[0046] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A strip-cutting device for processing highland barley flour, characterized in that: The device includes a base plate and a conveyor. The conveyor is mounted on the top of the base plate. Support blocks are mounted on both outer walls of the conveyor. A pressing frame is mounted between the two sides of the support blocks. A support frame is mounted on the top of the base plate on one side of the conveyor. A slicing frame is mounted on the top of the support frame. A servo motor is mounted on the top of the slicing frame. A lower cutting shaft is mounted on the output end of the servo motor and extends to the outside of the slicing frame. The lower cutting shaft is movably connected to the slicing frame. A drive gear is fitted on the surface of the lower cutting shaft on one side of the servo motor. An upper cutting shaft is movably mounted inside the slicing frame above the drive gear and extends to the outside of the slicing frame. A driven gear is fitted on the surface of the upper cutting shaft near the drive gear and meshes with the drive gear.

2. The barley flour cutting device according to claim 1, characterized in that: The bottom end of the cutting frame is movably equipped with multiple sets of equally spaced electric feeding rollers, which extend to the outside of the cutting frame.

3. The barley flour cutting device according to claim 2, characterized in that: An electric feed roller is movably installed inside the slicing frame below the upper cutting axis, and the electric feed roller extends to the outside of the slicing frame.

4. The barley flour cutting device according to claim 3, characterized in that: Connecting blocks are installed on both outer walls of the dough pressing frame, and a stepper motor is installed on the outer wall of a set of connecting blocks. The output end of the stepper motor is equipped with a bidirectional threaded rod, which extends to the outside of the connecting block.

5. The barley flour cutting device according to claim 4, characterized in that: The surface of the bidirectional threaded rod is symmetrically fitted with bidirectional threaded sleeves, and the surface of each bidirectional threaded sleeve is fitted with a guide plate.

6. The barley flour cutting device according to claim 5, characterized in that: Limiting rods are symmetrically installed between the two sides of the connecting block. Limiting sleeves are symmetrically slidably fitted on the surfaces of the limiting rods, and the limiting sleeves are connected to the guide plate.

7. The barley flour cutting device according to claim 6, characterized in that: The top of the dough press is equipped with three sets of cylinders at equal intervals. Each cylinder has a push rod at its output end, and the push rod extends into the interior of the dough press.

8. The barley flour cutting device according to claim 7, characterized in that: Each push rod has a connecting plate installed at the end away from the cylinder, and each connecting plate has a symmetrical bearing seat installed at its bottom. A rotating shaft is movably installed between the two sides of each bearing seat.

9. The barley flour cutting device according to claim 8, characterized in that: The surface of each rotating shaft is fitted with a pressing roller, and sliding rods are symmetrically slidably installed on the top of the pressing frame on one side of the cylinder. The sliding rods extend into the interior of the pressing frame and are connected to the connecting plate.

10. The barley flour cutting device according to claim 9, characterized in that: The sliding rods on one side of the dough press are all fitted with sliding sleeves, and the sliding sleeves are connected to the dough press.