Noodle press with movable auxiliary noodle pressing rollers

By incorporating moving and following components into the dough press, and utilizing electric push rods and guide blocks, the secondary dough pressing roller can be easily moved and rotated. This solves the problem in existing technologies where belt tension needs to be adjusted after the secondary dough pressing roller's position is adjusted, thus improving operational efficiency.

CN223987612UActive Publication Date: 2026-03-13YONGKANG HAOWEI TRADING CO LTD
View PDF 1 Cites 0 Cited by

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

Technical Problem

In the prior art, the secondary pressure roller needs to have its belt tension adjusted after it moves in order to rotate, which makes the driving process complicated after the position is adjusted.

Method used

The machine employs a design that incorporates moving parts, follower parts, and drive parts within the frame. The movement and rotation of the secondary pressure roller are achieved via an electric push rod and guide block. The convenient rotation of the secondary pressure roller is realized through the cooperation of the drive wheel and the driven wheel.

Benefits of technology

The process of moving and rotating the auxiliary pressing roller has been simplified, making its rotation more convenient and improving operating efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223987612U_ABST
    Figure CN223987612U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of noodle pressing machines, and discloses a noodle pressing machine with a movable auxiliary noodle pressing roller, which comprises a rack, and a main noodle pressing roller and an auxiliary noodle pressing roller which are horizontally arranged in the rack at an interval, a driving part for driving the main dough pressing roller to rotate, a moving part for driving the auxiliary dough pressing roller to be close to or far away from the main dough pressing roller, and a follow-up part for driving the auxiliary dough pressing roller to rotate along with the main dough pressing roller when the auxiliary dough pressing roller is close to the main dough pressing roller are arranged in the rack; the follow-up component comprises a first driving wheel which is arranged at one end, far away from the driving component, of the main dough pressing roller and a first driven wheel which is arranged on the auxiliary dough pressing roller and is driven by the first driving wheel to drive the auxiliary dough pressing roller to rotate when the moving component drives the auxiliary dough pressing roller to approach the main dough pressing roller; according to the mechanism, when the moving part drives the auxiliary dough pressing roller to approach the main dough pressing roller, the first driving wheel on the main dough pressing roller can drive the first driven wheel on the auxiliary dough pressing roller to rotate, so that the auxiliary dough pressing roller rotates, and the moved auxiliary dough pressing roller rotates more conveniently.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of noodle presses, and more particularly to a noodle press with a movable auxiliary noodle press roller. Background Technology

[0002] Chinese Patent No. CN215346720U discloses a dough pressing mechanism for a dough press machine with width adjustment function. The mechanism includes a worktable, a main baffle fixedly connected to one side of the top of the worktable, and a secondary baffle slidably connected to the other side of the top of the worktable. A dual-axis motor is fixedly connected to one side of the main baffle. A main dough pressing roller and a secondary dough pressing roller are slidably connected to the secondary baffle. The extension end of the main dough pressing roller is connected to the dual-axis motor. One end of the secondary dough pressing roller is provided with a secondary gear, and the extension end of the secondary dough pressing roller is provided with a short shaft. A main gear that cooperates with the secondary gear is sleeved on the short shaft. The two output shafts of the dual-axis motor are positioned relative to the main dough pressing roller. One output shaft is connected to the short shaft by a belt winding. The end of the secondary pressure roller near the secondary baffle is provided with a position adjustment component for adjusting the position of the secondary pressure roller. The position adjustment component includes a threaded cylinder provided at the end of the secondary pressure roller near the secondary baffle and a threaded rod for the threaded cylinder to move on it. A tension adjustment component is provided on the belt to adjust the tension of the belt when the position adjustment component adjusts the position of the secondary pressure roller. The tension adjustment component includes rollers and pulleys provided on the inner walls of both sides of the belt and in contact with the inner walls of the belt. A telescopic rod and a compression spring for adjusting the distance between the pulley and the roller are provided between the pulley and the roller.

[0003] When the distance between the main pressing roller and the auxiliary pressing roller in the above structure needs to be adjusted, the movable threaded cylinder can drive the auxiliary pressing roller to move, thereby moving the auxiliary pressing roller closer to or away from the main pressing roller. While the auxiliary pressing roller is moving, the tension of the belt also needs to be adjusted by the tension adjustment component to keep the belt taut. Only then can the belt drive the main gear on the short shaft and the auxiliary gear meshing with it to rotate. When the auxiliary gear rotates, the auxiliary pressing roller can rotate. This makes the process of driving the auxiliary pressing roller to rotate after the position adjustment relatively complicated. Utility Model Content

[0004] This invention addresses the shortcomings of existing technologies where the secondary pressing roller requires belt tension adjustment after movement before the main pressing roller can drive it to rotate, resulting in a complex process for driving the secondary pressing roller to rotate after position adjustment. It provides a noodle press with a movable secondary pressing roller that facilitates rotation after movement.

[0005] To solve the above-mentioned technical problems, the present invention provides a solution through the following technical method:

[0006] A dough press with a movable auxiliary pressing roller includes a frame, a main pressing roller and an auxiliary pressing roller horizontally spaced within the frame. Within the frame are a driving component for rotating the main pressing roller, a moving component for moving the auxiliary pressing roller closer to or away from the main pressing roller, and a follower component for rotating the auxiliary pressing roller along with the main pressing roller when the auxiliary pressing roller approaches the main pressing roller. The follower component includes a first driving wheel located at the end of the main pressing roller away from the driving component and a first driven wheel located on the auxiliary pressing roller that rotates when the moving component moves the auxiliary pressing roller closer to the main pressing roller, driven by the first driving wheel.

[0007] Using the above scheme, the movable component set in the frame can drive the secondary pressing roller to move. When the movable component drives the secondary pressing roller to approach the main pressing roller, the first driving wheel on the main pressing roller can drive the first driven wheel on the secondary pressing roller to rotate. At this time, the moved secondary pressing roller can rotate. The rotation of the moved secondary pressing roller can be achieved simply by the cooperation of the driving wheel and the driven wheel, which makes the rotation of the moved secondary pressing roller more convenient.

[0008] Preferably, the moving component includes an electric push rod disposed within the frame, and a push rod is disposed on the telescopic end of the electric push rod, which can push the auxiliary pressure roller to move when the telescopic end of the electric push rod extends or retracts.

[0009] Using the above scheme, the electric push rod installed in the frame can drive the push rod to move. When the push rod moves, it can push the auxiliary pressure rod closer to or away from the column pressure roller.

[0010] Preferably, a guide component is provided between the frame and the auxiliary pressing roller to guide the movement of the auxiliary pressing roller.

[0011] Preferably, the guiding component includes guide blocks respectively provided at both ends of the secondary pressing roller and guide grooves provided on the inner wall of the frame, extending along the moving direction of the secondary pressing roller and allowing the guide blocks to move therein. The two ends of the secondary pressing roller are inserted into the middle of the guide blocks and can rotate inside the guide blocks. The end of the push rod away from the electric push rod is fixed to the guide block.

[0012] With the above solution, since one end of the push rod is fixed to the guide block on the secondary pressure roller, when the push rod moves, it will drive the guide block to move within the guide groove, thereby causing the secondary pressure roller to move closer to or further away from the main pressure roller.

[0013] Preferably, a gear set is provided between the first driving wheel and the first driven wheel, which can move together with the first driven wheel. The gear set includes a second driving wheel that meshes with the first driven wheel, a second driven wheel that can mesh with the first driving wheel after moving, and a first transmission shaft. The second driving wheel and the second driven wheel are coaxially arranged on the first transmission shaft.

[0014] With the above scheme, the second driven wheel set on the first drive shaft can mesh with the first driving wheel when the auxiliary pressing roller moves towards the main pressing roller. At this time, the first driving wheel can drive the second driven wheel to rotate. When the second driven wheel rotates, it will drive the second driving wheel, which is coaxial with it, to rotate through the first drive shaft. When the second driving wheel rotates, it can drive the first driven wheel to rotate, thereby realizing the rotation of the auxiliary pressing roller.

[0015] Preferably, a slider is provided at one end of the first drive shaft, and a sliding groove is provided in the frame for the slider to move therein, with the first drive shaft rotatably located in the middle of the slider.

[0016] Using the above scheme, the slider on the first drive shaft can move in the sliding groove when the gear set moves. At the same time, the slider on the first drive shaft can also support the first drive shaft to prevent the first driven wheel from disengaging from the second driving wheel.

[0017] Preferably, the driving component includes a third driven wheel disposed at the end of the main pressing roller away from the first driving wheel, a driving motor disposed within the frame, and a third driving wheel that meshes with the third driven wheel and rotates with the drive motor.

[0018] Using the above scheme, the drive motor installed in the frame can drive the third drive wheel to rotate, thereby driving the third driven wheel meshing with it to rotate. Since the third driven wheel is located at one end of the main pressing roller, when the third driven wheel rotates, it will drive the main pressing machine to rotate, thereby performing the pressing operation.

[0019] Preferably, a second drive shaft that can rotate together with the third drive wheel is provided in the middle of the third drive wheel, and a speed reduction component for reducing the transmission ratio between the drive motor and the third drive wheel is provided between the end of the second drive shaft away from the third drive wheel and the output shaft of the drive motor.

[0020] Preferably, the speed reduction component includes a driving pulley disposed on the output shaft of the drive motor, a driven pulley disposed at the end of the second transmission shaft away from the third driving pulley, and a transmission belt that drives the driving pulley to rotate the driven pulley. The diameter of the driving pulley is smaller than the diameter of the driven pulley.

[0021] Using the above scheme, the drive pulley on the output shaft of the drive motor can rotate under the drive of the drive motor. When the drive pulley rotates, it drives the driven pulley to rotate through the transmission belt. Since the driven pulley is set on the second transmission shaft, when the driven pulley rotates, it drives the second transmission shaft to rotate. At this time, the third drive pulley set on the second transmission shaft will rotate, thereby driving the third driven pulley meshing with it to rotate. Since the third driven pulley is set on the main pressing roller, when the third driven pulley rotates, it drives the main pressing roller to rotate. Because the diameter of the drive pulley is smaller than that of the driven pulley, the transmission ratio transmitted from the drive motor to the second transmission shaft will be reduced, thereby achieving the effect of reducing [damage / loss].

[0022] This utility model, by adopting the above technical solution, has significant technical effects: the movable component set in the frame can drive the secondary pressing roller to move. When the movable component drives the secondary pressing roller to approach the main pressing roller, the first driving wheel on the main pressing roller can drive the first driven wheel on the secondary pressing roller to rotate. At this time, the moved secondary pressing roller can rotate. The rotation of the moved secondary pressing roller can be achieved simply by the cooperation of the driving wheel and the driven wheel, thus making the rotation of the moved secondary pressing roller more convenient. Attached Figure Description

[0023] Figure 1 This is an isometric view of a noodle press with a movable auxiliary pressing roller in this embodiment;

[0024] Figure 2 This is an isometric view of a noodle press with a movable auxiliary pressing roller in this embodiment;

[0025] Figure 3 This is an isometric view of the frame and moving parts in this embodiment;

[0026] Figure 4 This is an isometric view of the frame and gear set in this embodiment.

[0027] The parts referred to by the numbers in the above attached diagrams are as follows: 1. Frame; 2. Main pressing roller; 3. Secondary pressing roller; 401. First driving roller; 402. First driven roller; 5. Push rod; 6. Electric push rod; 7. Guide block; 8. Guide groove; 901. Second driving roller; 902. Second driven roller; 903. First drive shaft; 10. Slider; 11. Sliding groove; 1201. Third driving roller; 1202. Third driven roller; 1203. Second drive shaft; 13. Driving pulley; 14. Driven pulley; 15. Drive motor; 16. Transmission belt. Detailed Implementation

[0028] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments.

[0029] Example

[0030] A dough press with a movable auxiliary pressing roller, reference Figure 1 The machine includes a frame 1, a main pressing roller 2 and a secondary pressing roller 3 horizontally spaced within the frame 1. The frame 1 is provided with a driving component that drives the main pressing roller 2 to rotate, a moving component that drives the secondary pressing roller 3 to move closer to or away from the main pressing roller 2, and a follower component that drives the secondary pressing roller 3 to rotate with the main pressing roller 2 when it moves closer to the main pressing roller 2. The follower component includes a first driving wheel 401 located at the end of the main pressing roller 2 away from the driving component and a first driven wheel 402 located on the secondary pressing roller 3 that is driven by the first driving wheel 401 to rotate when the moving component drives the secondary pressing roller 3 to move closer to the main pressing roller 2.

[0031] refer to Figures 2-3 The moving component includes an electric push rod 6 installed inside the frame 1. The telescopic end of the electric push rod 6 is provided with a push rod that can push the auxiliary pressing roller 3 to move when the telescopic end of the electric push rod 6 is extended or retracted. A guide component is provided between the frame 1 and the auxiliary pressing roller 3 to guide the movement of the auxiliary pressing roller 3. The guide component includes guide blocks 7 respectively installed at both ends of the auxiliary pressing roller 3 and guide grooves 8 installed on the inner wall of the frame 1 that extend along the moving direction of the auxiliary pressing roller 3 and allow the guide blocks 7 to move therein. Both ends of the auxiliary pressing roller 3 are inserted into the middle of the guide blocks 7 and can rotate inside the guide blocks 7. The end of the push rod away from the electric push rod 6 is fixed to the guide block 7.

[0032] refer to Figure 1 , Figure 4 A gear set is provided between the first driving wheel 401 and the first driven wheel 402, which can move together with the first driven wheel 402. The gear set includes a second driving wheel 901 that meshes with the first driven wheel 402, a second driven wheel 902 that can mesh with the first driving wheel 401 after moving, and a first transmission shaft 903. The second driving wheel 901 and the second driven wheel 902 are coaxially arranged on the first transmission shaft 903. A slider 10 is provided at one end of the first transmission shaft 903. A sliding groove 11 is provided in the frame 1 for the slider 10 to move therein. The first transmission shaft 903 is rotatably arranged in the middle of the slider 10.

[0033] refer to Figures 1-2The driving component includes a third driven wheel 1202 disposed at the end of the main pressing roller 2 away from the first driving wheel 401, a driving motor 15 disposed in the frame 1, and a third driving wheel 1201 meshing with the third driven wheel 1202 and rotating with the driving motor 15. A second transmission shaft 1203 is disposed in the middle of the third driving wheel 1201 and can rotate together with the third driving wheel 1201. A speed reduction component for reducing the transmission ratio between the driving motor 15 and the third driving wheel 1201 is disposed between the end of the second transmission shaft 1203 away from the third driving wheel 1201 and the output shaft of the driving motor 15. The speed reduction component includes a driving pulley 13 disposed on the output shaft of the driving motor 15, a driven pulley disposed at the end of the second transmission shaft 1203 away from the third driving wheel 1201, and a transmission belt 16 that drives the driving pulley 13 to drive the driven pulley 14 to rotate. The diameter of the driving pulley 13 is smaller than the diameter of the driven pulley 14.

[0034] Specific driving process: When the dough press needs to press dough, firstly, the drive motor 15 is started, causing the drive motor 15 to drive the drive pulley 13 to rotate. The rotation of the drive pulley 13 will drive the driven pulley 14 to rotate through the transmission belt 16. Since the driven pulley 14 is set on the second transmission shaft 1203, when the driven pulley 14 rotates, it will drive the third drive wheel 1201 to rotate through the second transmission shaft 1203. At this time, the third drive wheel 1201 will drive the third driven wheel 1202, which meshes with it, to rotate. At this time, the main pressing roller 2 will rotate, and the main pressing roller 2 can perform preliminary pressing of the dough. After the dough has been initially pressed, the electric push rod 6 can be started, causing the electric push rod 6 to push the push rod 5 to move. Since the end of the push rod 5 away from the electric push rod 6 is fixed on the guide block 7, when the push rod 5 moves, it will drive the guide block 7 to move in the guide groove 8. Since the guide block 7 is set on the auxiliary pressing roller 3 Therefore, when the guide block 7 moves on the secondary pressing roller 3, the secondary pressing roller 3 will move together, thus approaching the main pressing roller 2. During the process of the secondary pressing roller 3 approaching the main pressing roller 2, the gear set will move together with the secondary pressing roller 3. At this time, the second driven wheel 902 in the gear set will mesh with the first driving wheel 401 located at the end of the main pressing roller 2 away from the third driven wheel 1202. Since the main pressing roller 2 is driven by the drive motor 15 to rotate, the first driving wheel 401 will drive the second driven wheel 902 to rotate. Since the second driven wheel 902 is located on the first transmission shaft 903, when the second driven wheel 902 rotates, it will drive the second driving wheel 901 on the first transmission shaft 903 to rotate. Since the second driving wheel 901 meshes with the first driven wheel 402 located on the secondary pressing roller 3, when the second driving wheel 901 rotates, it will drive the secondary pressing roller 3 to rotate, thus performing the pressing operation.

[0035] 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 noodle press with a movable secondary noodle press roller, comprising a frame (1), a primary noodle press roller (2) and a secondary noodle press roller (3) arranged horizontally and spaced apart in the frame (1), a drive member arranged in the frame (1) for rotating the primary noodle press roller (2), a movement member arranged in the frame (1) for moving the secondary noodle press roller (3) towards and away from the primary noodle press roller (2), and a follower member arranged in the frame (1) for rotating the secondary noodle press roller (3) with the primary noodle press roller (2) when the secondary noodle press roller (3) is moved towards the primary noodle press roller (2), characterized in that: The follower component comprises a first driving wheel (401) arranged at one end of the main pressing roller (2) away from the driving component and a first driven wheel (402) arranged on the auxiliary pressing roller (3) and driven by the first driving wheel (401) to rotate the auxiliary pressing roller (3) when the moving component drives the auxiliary pressing roller (3) to approach the main pressing roller (2).

2. A paratella machine according to claim 1 wherein: The moving component comprises an electric push rod (6) arranged in the frame (1), and a pushing rod (5) arranged at the telescopic end of the electric push rod (6) and capable of pushing the auxiliary pressing roller (3) to move when the telescopic end of the electric push rod (6) is telescoped.

3. A paratella machine according to claim 2 wherein: A guide component is arranged between the frame (1) and the auxiliary pressing roller (3) to guide the movement of the auxiliary pressing roller (3).

4. A paratella machine according to claim 3 wherein: The guide component comprises guide blocks (7) arranged at both ends of the auxiliary pressing roller (3) and guide grooves (8) arranged on the inner wall of the frame (1) and extending along the moving direction of the auxiliary pressing roller (3) and allowing the guide blocks (7) to move therein, and the auxiliary pressing roller (3) is inserted into the middle part of the guide blocks (7) and can rotate inside the guide blocks (7), and one end of the pushing rod (5) away from the electric push rod (6) is fixed to the guide blocks (7).

5. A paratha roller movable paratha maker as claimed in claim 1 wherein: A gear set capable of moving with the first driven wheel (402) is arranged between the first driving wheel (401) and the first driven wheel (402), and the gear set comprises a second driving wheel (901) engaged with the first driven wheel (402), a second driven wheel (902) capable of engaging with the first driving wheel (401) after moving, and a first transmission shaft (903), and the second driving wheel (901) and the second driven wheel (902) are coaxially arranged on the first transmission shaft (903).

6. A paratella machine according to claim 5 wherein: A sliding block (10) is arranged at one end of the first transmission shaft (903), and a sliding groove (11) allowing the sliding block (10) to move therein is arranged in the frame (1), and the first transmission shaft (903) is rotatably arranged in the middle part of the sliding block (10).

7. A paratha roller movable paratha maker as claimed in claim 1 wherein: The driving component comprises a third driven wheel (1202) arranged at one end of the main pressing roller (2) away from the first driving wheel (401), a driving motor (15) arranged in the frame (1), and a third driving wheel (1201) engaged with the third driven wheel (1202) and rotated by the driving of the driving motor (15).

8. A paratella machine according to claim 7 wherein: A second transmission shaft (1203) capable of rotating with the third driving wheel (1201) is arranged in the middle part of the third driving wheel (1201), and a speed reduction component for reducing the transmission ratio between the driving motor (15) and the third driving wheel (1201) is arranged between one end of the second transmission shaft (1203) away from the third driving wheel (1201) and the output shaft of the driving motor (15).

9. A pasta press according to claim 8, wherein: The speed reduction component comprises a driving pulley (13) arranged on the output shaft of the driving motor (15), a driven pulley arranged at one end of the second transmission shaft (1203) away from the third driving wheel (1201), and a transmission belt (16) for driving the driven pulley (14) to rotate by the driving of the driving pulley (13), and the diameter of the driving pulley (13) is smaller than the diameter of the driven pulley (14).

Citation Information

Patent Citations

  • Noodle pressing mechanism with width adjusting function for noodle pressing machine

    CN215346720U