Noodle press convenient for switching between noodle pressing and noodle cutting
By introducing idler wheels and rotating components into the noodle press, the problem of frequent stops required for pressing and cutting noodles in existing technologies has been solved, achieving more efficient noodle production and convenient switching operations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-03-13
AI Technical Summary
Existing noodle presses require frequent motor shutdowns and waiting for the rollers to stop during the pressing and cutting processes, resulting in a complex and inefficient noodle production process.
By setting up an idler wheel and rotating components, the idler wheel can be separated from or engaged with the driven wheel, allowing the pressing roller group to rotate independently or simultaneously with the cutting roller group, thus simplifying the operation process.
It improves the efficiency and ease of operation of noodle production, and simplifies the switching process between pressing and cutting noodles.
Smart Images

Figure CN223987613U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of dough press machines, and in particular to a dough press machine that allows for easy switching between pressing and cutting dough. Background Technology
[0002] Chinese Patent CN204292076U discloses a dough press machine, including a base, side plates, a transmission device, a dough pressing roller group, a dough cutting roller group, and a cover plate. The side plates are fixed to the base. The two ends of the dough pressing roller group are pivotally connected to the upper part of the side plates, and the two ends of the dough cutting roller group are snapped to the lower part of the side plates. The dough cutting roller group is located below the dough pressing roller group. The transmission device is connected to the dough pressing roller group and the dough cutting roller group respectively to drive them to rotate. A cover plate is provided between the dough pressing roller group and the dough cutting roller group. A sliding groove is provided on the side plates, and the cover plate is connected to the side plates through the sliding groove. The transmission device is provided with a synchronous belt and gears. The dough pressing roller group and the dough cutting roller group are provided with gears. The gears on the dough pressing roller group and the dough cutting roller group mesh with the gears on the transmission device through the synchronous belt. The transmission device is a motor.
[0003] In the above structure, the gears on the motor mesh with the gears on the pressing roller group and the cutting roller group. The pressing roller group and the cutting roller group are separated by a cover plate. If you want to press or cut the dough, you need to move the position of the cover plate. When moving the cover plate, you also need to turn off the motor and wait for the pressing roller group and the cutting roller group to stop rotating. This reduces the probability of the operator being injured when moving the cover plate. However, when pressing the dough, you need to turn off the motor and move the cover plate after the pressing roller group and the cutting roller group have stopped rotating. When cutting the dough, you also need to turn off the motor and move the cover plate after the pressing roller group and the cutting roller group have stopped rotating. This makes the noodle production process more complicated and less efficient. Utility Model Content
[0004] This invention addresses the shortcomings of existing noodle presses, which require the motor to be turned off and the pressing and cutting rollers to stop rotating before the cover plate can be moved to perform the pressing or cutting work. This results in a complex and inefficient noodle production process. The invention provides a noodle press that improves noodle production efficiency and facilitates the switching between pressing and cutting.
[0005] To solve the above-mentioned technical problems, the present invention provides a solution through the following technical method:
[0006] A dough press machine with convenient switching between pressing and cutting dough includes a frame, a dough pressing roller group disposed within the frame, a cutting roller group disposed within the frame and below the dough pressing roller group, and a drive component for driving the dough pressing roller group to rotate. A switching component is disposed within the frame to either drive the cutting roller group to rotate along with the dough pressing roller group when the drive component drives the dough pressing roller group to rotate, or to prevent the cutting roller group from rotating along with the dough pressing roller group. The switching component includes a first driving wheel that rotates under the drive of the drive component, a first driven wheel disposed at one end of the cutting roller group and rotated by the first driving wheel, an idler wheel disposed between the first driving wheel and the first driven wheel and meshing with the first driving wheel, and a rotating component that drives the idler wheel to rotate and simultaneously meshes with both the first driving wheel and the first driven wheel.
[0007] Using the above scheme, the position of the idler wheel can be adjusted by rotating the component. When the idler wheel is separated from the first driven wheel, the drive component can only drive the dough pressing roller group to rotate, and the operator can then press the dough. When the idler wheel is engaged with the first driven wheel, the drive component can simultaneously drive the dough pressing roller group and the cutting roller group to rotate, and the cutting roller group can then cut the dough after it has been pressed by the dough pressing roller group. This makes the dough pressing machine more convenient to use and improves the production efficiency of noodles.
[0008] Preferably, the rotating component includes an electric push rod disposed within the frame, a push rod disposed at the telescopic end of the electric push rod, and a follower component disposed between the push rod and the first driving wheel, which drives the idler wheel to rotate around the center of the first driving wheel or away from the first driven wheel when the electric push rod drives the push rod to move.
[0009] Using the above scheme, the electric push rod installed in the frame can drive the push rod installed on the telescopic end to move when its extended end extends and retracts. When the push rod moves, the follower component installed between the push rod and the first driving wheel will drive the idler wheel to rotate around the center of the first driving wheel, so that the idler wheel gets close to the first driven wheel and meshes with the first driven wheel or moves away from the first driven wheel to prevent the cutting roller group from rotating together with the pressing roller group.
[0010] Preferably, the follower component includes a connecting rod disposed between the push rod and the first drive wheel, the two ends of the connecting rod being hinged to the rotation shafts of the push rod and the first drive wheel, respectively, the idler wheel being disposed on the connecting rod, and a clearance component being disposed on the push rod or between the push rod and the connecting rod to clearance when the push rod pushes the connecting rod to rotate, so that the connecting rod can rotate around the center of the first drive wheel.
[0011] With the above scheme, the connecting rod set between the push rod and the first driving wheel can rotate around the center of the first driving wheel when the electric push rod drives the push rod to move. Since the idler wheel is set on the connecting rod, when the connecting rod rotates around the center of the first driving wheel, the idler wheel will also rotate around the center of the first driving wheel. As the idler wheel rotates, it will move closer to the first driven wheel and mesh with it or move away from it.
[0012] Preferably, the avoidance component includes a flexible connecting section disposed at the location of the push rod away from the electric push rod.
[0013] Using the above scheme, the flexible connecting section set on the push rod can deform when the push rod pushes the connecting rod to rotate, so that the connecting rod can rotate smoothly around the center of the first driving wheel, thereby making the idler wheel move closer to or away from the first driven wheel.
[0014] Preferably, the avoidance component includes an avoidance groove provided on the connecting rod along the extension direction of the connecting rod, and a hinge shaft for hinged connection between the pushing rod and the connecting rod is provided, the hinge shaft being slidably disposed in the avoidance groove.
[0015] By adopting the above scheme, by adding a clearance groove on the connecting rod and sliding the hinge shaft in the clearance groove, the connecting rod can be smoothly rotated around the center of the first driving wheel under the push of the push rod.
[0016] Preferably, the slicing roller assembly includes a main slicing roller and a secondary slicing roller arranged parallel to each other within the frame. The first driven wheel is disposed on the main slicing roller, and a second driving wheel coaxial with the first driven wheel is disposed on the main slicing roller. The secondary slicing roller is disposed on a second driven wheel that meshes with the second driving wheel.
[0017] Using the above scheme, when the idler wheel meshes with the first driven wheel, the first driven wheel can rotate with the idler wheel. Since the main cutting roller is equipped with a second driving wheel coaxial with the first driven wheel, the rotation of the first driven wheel will drive the second driving wheel to rotate. Since the second driven wheel meshes with the second driving wheel, when the second driving wheel rotates, the second driven wheel set on the auxiliary cutting roller will rotate. At this time, the two cutting rollers can rotate to cut the dough.
[0018] This utility model, by adopting the above technical solution, has significant technical effects: the position of the idler wheel can be adjusted by rotating the component. When the idler wheel is separated from the first driven wheel, the driving component can only drive the dough pressing roller group to rotate, and the operator can then press the dough. When the idler wheel is engaged with the first driven wheel, the driving component can simultaneously drive the dough pressing roller group and the cutting roller group to rotate, and the cutting roller group can then cut the dough after it has been pressed by the dough pressing roller group. This makes the dough pressing machine more convenient to use and improves the production efficiency of noodles. Attached Figure Description
[0019] Figure 1 This is an isometric view of a noodle press machine with convenient noodle cutting and pressing face switching in this embodiment 1;
[0020] Figure 2 This is an isometric view of the cutting roller assembly in Embodiment 1;
[0021] Figure 3 yes Figure 2 Enlarged view of point A in the middle;
[0022] Figure 4 This is an isometric view of the frame and drive components in Embodiment 1;
[0023] Figure 5 This is an isometric view of the frame and drive components in Embodiment 1.
[0024] Figure 6 This is an isometric view of a noodle press machine with convenient noodle cutting and pressing face switching in this embodiment 1;
[0025] Figure 7 yes Figure 6 Enlarged view of point B in the middle;
[0026] Figure 8 This is an isometric view of a noodle press machine with convenient noodle cutting and pressing face switching in this embodiment 2;
[0027] Figure 9 yes Figure 8 Enlarged view of point C in the middle;
[0028] The parts referred to by the numbers in the above attached diagrams are as follows: 1. Frame; 2. Pressing roller group; 3. Cutting roller group; 301. Main cutting roller; 302. Secondary cutting roller; 401. First driving roller; 402. First driven roller; 403. Idler roller; 5. Electric push rod; 6. Push rod; 7. Connecting rod; 8. Clearance groove; 9. Hinge shaft; 1001. Second driving roller; 1002. Second driven roller; 11. Drive motor; 1201. Third driving roller; 1202. Third driven roller; 13. Driving pulley; 14. Driven pulley; 15. Drive shaft; 16. Drive belt. Detailed Implementation
[0029] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.
[0030] Example 1
[0031] A dough sheeting machine with convenient switching between pressing and cutting surfaces, see reference. Figure 1 The machine includes a frame 1, a pressing roller group 2 disposed within the frame 1, a cutting roller group 3 disposed within the frame 1 and located below the pressing roller group 2, and a drive component for driving the pressing roller group 2 to rotate. A switching component is disposed within the frame 1 to drive the cutting roller group 3 to rotate together when the drive component drives the pressing roller group 2 to rotate, or to prevent the cutting roller group 3 from rotating together with the pressing roller group 2. The switching component includes a first driving wheel 401 that rotates under the drive of the drive component, a first driven wheel 402 disposed at one end of the cutting roller group 3 and rotated by the drive of the first driving wheel 401, an idler wheel 403 disposed between the first driving wheel 401 and the first driven wheel 402 and meshing with the first driving wheel 401, and a rotating component that drives the idler wheel 403 to rotate and simultaneously meshes with the first driving wheel 401 and the first driven wheel 402.
[0032] refer to Figures 2-3 The slicing roller group 3 includes a main slicing roller 301 and a secondary slicing roller 302 arranged parallel to each other within the frame 1. A first driven wheel 402 is disposed on the main slicing roller 301, and a second driving wheel 1001 coaxial with the first driven wheel 402 is disposed on the main slicing roller 301. A second driven wheel 1002 meshing with the second driving wheel 1001 is disposed on the secondary slicing roller 302.
[0033] refer to Figures 4-5 The driving component includes a drive motor 11 installed in the frame 1, a third driven wheel 1202 that meshes with the first drive wheel 401 and can drive the pressing roller group 2 to rotate when rotated, a third drive wheel 1201 that meshes with the third driven wheel 1202, and a reduction component installed between the drive motor 11 and the third drive wheel 1201 to reduce the transmission ratio between the third drive wheel 1201 and the drive motor 11. The reduction component includes a drive pulley 13 installed on the output end of the drive motor 11 and a driven pulley 14 installed in the frame 1. The drive pulley 13 drives the driven pulley 14 to rotate through a transmission belt 16, and the diameter of the drive pulley 13 is smaller than the diameter of the driven pulley 14. The driven pulley 14 and the third drive wheel 1201 are coaxially connected through a transmission shaft 15.
[0034] refer to Figure 1 , Figures 6-7The rotating component includes an electric push rod 5 disposed within the frame 1, a push rod 6 disposed at the telescopic end of the electric push rod 5, and a follower component disposed between the push rod 6 and the first driving wheel 401. When the electric push rod 5 drives the push rod 6 to move, the follower component drives the idler wheel 403 to rotate around the center of the first driving wheel 401, moving closer to or away from the first driven wheel 402. The follower component includes a connecting rod 7 disposed between the push rod 6 and the first driving wheel 401. The two ends of the connecting rod 7 are respectively hinged to the rotation shafts of the push rod 6 and the first driving wheel 401. The idler wheel 403 is disposed on the connecting rod 7. A clearance component is disposed on the push rod 6 or between the push rod 6 and the connecting rod 7 to avoid the connecting rod 7 when the push rod 6 pushes the connecting rod 7 to rotate, so that the connecting rod 7 can rotate around the center of the first driving wheel 401. The clearance component includes a flexible connecting section (e.g., a universal joint, not shown in the figure) disposed on the push rod 6 away from the electric push rod 5.
[0035] Specific operating procedure: When the dough needs to be pressed, firstly, start the drive motor 11, causing the drive motor 11 to drive the drive pulley 13 on its output shaft to rotate. When the drive pulley 13 rotates, it will drive the driven pulley 14 to rotate through the transmission belt 16. Since the driven pulley 14 and the third drive pulley 1201 are coaxially connected through the transmission shaft 15, when the driven pulley 14 rotates, the third drive pulley 1201 will rotate together. At this time, the third drive pulley 1201 will drive the third driven pulley 14 to rotate. When the driving wheel 1202 rotates, the third driven wheel 1202 rotates, which in turn drives the dough pressing roller assembly 2 to rotate. This rotation of the third driven wheel 1202, in turn, drives the first driving wheel 401, which in turn drives the idler wheel 403 to rotate. Because the electric push rod 5 moves the idler wheel 403 away from the first driven wheel 402 during dough pressing, the idler wheel 403 cannot drive the first driven wheel 402 to rotate. Therefore, the cutting roller assembly 3 cannot rotate together with the dough pressing roller assembly 2. This allows for the pressing of the dough. When the dough needs to be cut, the electric push rod 5 is activated, causing the push rod 6 to move. As the push rod 6 moves, it drives the connecting rod 7, which is hinged to it, to rotate around the center of the first drive wheel 401. When the push rod 6 pushes the connecting rod 7 to rotate, the flexible connecting section on the push rod 6 undergoes elastic deformation, allowing the connecting rod 7 to rotate smoothly around the center of the first drive wheel 401. Since the idler wheel 403 is located on the connecting rod 7, it also rotates with the connecting rod 7 when it rotates, engaging with the first driven wheel 402. The first driven wheel 402 then drives the second drive wheel 1001 on the main cutting roller 301 to rotate. When the second drive wheel 1001 rotates, it drives the second driven wheel 1002 on the auxiliary cutting roller 302, which meshes with the second drive wheel 1001, to rotate, thus causing both cutting rollers to rotate and cut the dough.
[0036] Example 2
[0037] The difference between this embodiment and Embodiment 1 is that, referring to... Figures 8-9 The clearance component includes a clearance groove 8 provided on the connecting rod 7 along the extension direction of the connecting rod 7, and a hinge shaft 9 for hinged connection between the push rod 6 and the connecting rod 7, the hinge shaft 9 being slidably disposed in the clearance groove 8.
[0038] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A dough pressing machine with convenient switching between pressing and cutting, comprising a frame (1), a dough pressing roller group (2) disposed within the frame (1), a cutting roller group (3) disposed within the frame (1) and below the dough pressing roller group (2), and a drive component for driving the dough pressing roller group (2) to rotate, characterized in that: The switching component is arranged in the frame (1) to rotate the cutting roller set (3) with the pressing roller set (2) or prevent the cutting roller set (3) from rotating with the pressing roller set (2) when the driving component drives the pressing roller set (2) to rotate, and comprises a first driving wheel (401) rotating under the driving of the driving component, a first driven wheel (402) rotating under the driving of the first driving wheel (401) and arranged at one end of the cutting roller set (3), an idler wheel (403) engaged with the first driving wheel (401) and arranged between the first driving wheel (401) and the first driven wheel (402), and a rotating component engaging with the first driving wheel (401) and the first driven wheel (402) after driving the idler wheel (403) to rotate.
2. The noodle maker with a switchable noodle and noodle sheet according to claim 1, characterized in that: The rotating component comprises an electric push rod (5) arranged in the frame (1), a push rod (6) arranged at the extension end of the electric push rod (5), and a following component driving the idler wheel (403) to rotate around the center of the first driving wheel (401) to approach or move away from the first driven wheel (402) when the electric push rod (5) drives the push rod (6) to move.
3. The noodle maker with a switchable noodle and noodle sheet according to claim 2, characterized in that: The following component comprises a connecting rod (7) arranged between the push rod (6) and the first driving wheel (401), both ends of the connecting rod (7) are hingedly connected with the rotating shaft of the push rod (6) and the first driving wheel (401) respectively, and the idler wheel (403) is arranged on the connecting rod (7). An avoiding component is arranged on the push rod (6) or between the push rod (6) and the connecting rod (7) to avoid the connecting rod (7) rotating around the center of the first driving wheel (401) when the push rod (6) drives the connecting rod (7) to rotate.
4. The noodle maker with a noodle and a slice switching function according to claim 3, characterized in that: The avoiding component comprises a flexible connecting section arranged away from the electric push rod (5) on the push rod (6).
5. The noodle maker with a noodle and a slice switching function according to claim 3, characterized in that: The avoiding component comprises an avoiding groove (8) arranged on the connecting rod (7) along the extension direction of the connecting rod (7), a hinging shaft (9) is arranged between the push rod (6) and the connecting rod (7) to hinge them together, and the hinging shaft (9) is slidingly arranged in the avoiding groove (8).
6. The noodle maker with a switchable noodle and noodle sheet according to claim 1, characterized in that: The cutting roller set (3) comprises a main cutting roller (301) and a secondary cutting roller (302) arranged in parallel and at intervals in the frame (1), the first driven wheel (402) is arranged on the main cutting roller (301), and a second driving wheel (1001) coaxial with the first driven wheel (402) is arranged on the main cutting roller (301), and the secondary cutting roller (302) is provided with a second driven wheel (1002) engaged with the second driving wheel (1001).
Citation Information
Patent Citations
Noodle press
CN204292076U