A dough sheet cutting device for noodle production
Patent Information
- Application Number
- CN202522383364.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-10
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-10
AI Technical Summary
[0003]现有的面条机在面条生产时,需要使用内置刀具对面片进行裁切,而常规的裁切装置在裁切面片时一般面片需要经过输送到刀具上方,在输送过程中,面片上会存在一定量的碎面,而这些碎面会进入裁切刀具中,导致最终的面条中存在碎面,影响面条质量,另外一般裁切装置由多组刀具架组成,而当需要生产不同规格的面条时,常规的裁切装置一般为更换不同的刀具架,这一操作较为复杂,且大多为需要停机操作,从而影响面条的生产效率
1、该用于面条生产的面片裁切装置,通过采用电动推杆以及碎面接料板的设置,可防止面片输送过程中碎面掉落在刀具架以及转动接料盘上,具备提高面条生产质量的目的。
Smart Images

Figure CN224775925U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of noodle machine technology, specifically to a noodle sheet cutting device for noodle production. Background Technology
[0002] An automatic noodle maker is a kitchen appliance that automates the processes of kneading, pressing, and cutting noodles. Suitable for homes or small restaurants, it quickly produces fresh noodles, saving time and labor. Its main functions include: automatic kneading: a built-in mixer mixes flour and water in a precise ratio, eliminating the need for manual kneading; multi-level pressing: pressing dough sheets using molds or rollers allows for adjustable thickness (e.g., 1mm-5mm) to meet different texture preferences; multiple noodle shapes: changing molds allows for the production of thin noodles, wide noodles, hollow noodles, pasta, etc., and some models support dough wrappers (wonton wrappers, dumpling wrappers); one-button operation: an intelligent control panel with preset programs to complete the entire process from kneading to noodle production. Key advantages include: time and labor saving: noodles can be produced in 15-30 minutes, suitable for busy modern lifestyles; healthy and additive-free: homemade noodles avoid preservatives in commercially available products, and the ingredients are controllable; multi-functionality: some models are compatible with making steamed bun dough, vegetable noodles (with spinach / carrot juice), etc.; and easy cleaning: detachable parts design, usually allowing for rinsing with water.
[0003] Existing noodle machines require built-in cutters to cut the dough sheets during noodle production. However, conventional cutting devices typically convey the dough sheets above the cutters, during which a certain amount of broken dough accumulates and enters the cutting blades, resulting in broken dough in the final noodles and affecting their quality. Furthermore, conventional cutting devices usually consist of multiple cutter holders, and when producing noodles of different specifications, conventional cutting devices generally require changing different cutter holders. This operation is quite complex and often requires machine downtime, thus impacting noodle production efficiency. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a noodle sheet cutting device for noodle production, which solves the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a noodle sheet cutting device for noodle production, comprising a fixed support, a horizontal support, and a first transfer component, a second transfer component, a first cutter holder, and a second cutter holder installed on the fixed support. The horizontal support is installed on the inner side of the fixed support, and a conveyor frame is installed on the inner wall of the fixed support. The conveyor frame is located on one side of the first transfer component, and the first transfer component is disposed between the conveyor frame and the second transfer component. A cutter drive wheel is disposed below the first cutter holder and the second cutter holder, and a feeding hopper is disposed between the first cutter holder and the first transfer component. The first tool holder and the second tool holder are connected at their ends by a transmission assembly, which consists of a drive motor, a drive sprocket, a transmission chain and a tool transmission wheel. A baffle assembly is provided between the tail of the conveyor frame and the end of the first transfer assembly. A crushed material receiving assembly is provided below the first transfer assembly and the second transfer assembly.
[0006] Optionally, the first transfer assembly and the second transfer assembly have the same structure. The first transfer assembly consists of a first motor, a first drive shaft, a first driven shaft, and a first drive belt. The first motor is installed on the outside of the fixed bracket. The first drive shaft is connected to the first motor. The first driven shaft is installed on the inside of the first transfer assembly and is arranged parallel to the first drive shaft. The first drive belt is installed on the first drive shaft and the first driven shaft.
[0007] Optionally, the baffle assembly consists of a one-way damping top plate, a first swing arm, a second swing arm, and a connecting stop. The one-way damping top plate is installed on the inner side of the first swing arm, the first swing arm is installed on the end of the first drive shaft, the one-way damping top plate abuts against the end of the first drive shaft, the top of the first swing arm is hinged to one side of the connecting stop, the second swing arm is installed on the tail drive shaft of the conveyor frame, and the top of the second swing arm is hinged to the other side of the connecting stop.
[0008] Optionally, the crushed flour receiving assembly is located directly above the hopper. The crushed flour receiving assembly consists of an electric push rod and a crushed flour receiving plate. A groove is provided on the horizontal support, which is located directly below the first and second transfer components. The crushed flour receiving plate is located below the groove, and the bottom of the crushed flour receiving plate is connected to the end of the electric push rod. The electric push rod is installed at the bottom of the horizontal support, and the crushed flour receiving plate moves laterally.
[0009] Optionally, the transmission assembly consists of a drive motor, a drive sprocket, a transmission chain, and a tool transmission wheel. The drive motor is installed on the bottom inner side of the fixed bracket, and the output end of the drive motor is connected to the drive sprocket. There are two sets of tool transmission wheels, which are respectively connected to the first tool holder and the second tool holder. The drive sprocket and the tool transmission wheel are connected by a transmission chain.
[0010] Optionally, a rotating receiving plate is provided below the first tool holder and the second tool holder. A transmission box is connected to the lower part of the rotating receiving plate. The input end of the transmission box is connected to the receiving plate transmission wheel, which is connected to the transmission chain.
[0011] This utility model provides a dough sheet cutting device for noodle production, which has the following advantages: 1. This noodle sheet cutting device for noodle production, by adopting an electric push rod and a broken noodle receiving plate, can prevent broken noodles from falling onto the cutter holder and rotating receiving plate during the noodle sheet conveying process, thereby improving the quality of noodle production.
[0012] 2. The noodle sheet cutting device for noodle production, through the setting of the first transfer component and the second transfer component, allows both sets of transfer components to be reversed during use. The forward and reverse rotation of the first transfer component and the second transfer component can be selected according to the required cutter, thereby achieving the effect of the noodle sheet entering different cutter holders. The switching process is simple and efficient, and no machine stoppage is required, thereby improving the noodle production efficiency. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the transmission component of this utility model; Figure 3 This is a schematic diagram of the installation structure of the feeding hopper of this utility model; Figure 4 This is a schematic diagram of the internal cross-sectional structure of this utility model.
[0014] In the diagram: 1. Fixed bracket; 2. Horizontal bracket; 3. First transfer assembly; 301. First motor; 302. First drive shaft; 303. First driven shaft; 304. First drive belt; 4. Second transfer assembly; 6. Baffle assembly; 7. One-way damping top plate; 8. First swing arm; 9. Second swing arm; 10. Connecting stop bar; 11. First tool holder; 12. Second tool holder; 13. Feed hopper; 14. Drive motor; 15. Drive sprocket; 16. Drive chain; 17. Tool drive wheel; 18. Rotating receiving plate; 19. Transmission box; 20. Receiving plate drive wheel; 21. Electric push rod; 22. Crushed material receiving plate; 23. Conveyor frame. Detailed Implementation
[0015] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0016] Example 1 Please see Figures 1 to 4The present invention provides a technical solution for a noodle sheet cutting device for noodle production, comprising a fixed support 1, a horizontal support 2, and a first transfer component 3, a second transfer component 4, a first cutter holder 11, and a second cutter holder 12 mounted on the fixed support 1. The horizontal support 2 is mounted on the inner side of the fixed support 1, and a conveyor frame 23 is mounted on the inner wall of the fixed support 1. The conveyor frame 23 is located on one side of the first transfer component 3. The first transfer component 3 is disposed between the conveyor frame 23 and the second transfer component 4. A cutter drive wheel 17 is disposed below the first cutter holder 11 and the second cutter holder 12. A feeding hopper 13 is disposed between the first cutter holder 11 and the first transfer component 3. The first tool holder 11 and the second tool holder 12 are connected to a transmission assembly at their ends. The transmission assembly consists of a drive motor 14, a drive sprocket 15, a transmission chain 16, and a tool transmission wheel 17. A baffle assembly 6 is provided between the tail of the conveyor frame 23 and the end of the first transfer assembly 3. A crushed material receiving assembly is provided below the first transfer assembly 3 and the second transfer assembly 4.
[0017] The baffle assembly 6 consists of a one-way damping top plate 7, a first swing rod 8, a second swing rod 9, and a connecting stop bar 10. The one-way damping top plate 7 is installed inside the first swing rod 8, which is installed at the end of the first drive shaft 302. The one-way damping top plate 7 abuts against the end of the first drive shaft 302. The top of the first swing rod 8 is hinged to one side of the connecting stop bar 10. The second swing rod 9 is installed on the tail drive shaft of the conveyor frame 23, and the top of the second swing rod 9 is hinged to the other side of the connecting stop bar 10.
[0018] Specifically, the device is installed inside the noodle machine. The fixed bracket 1 and the horizontal bracket 2 are fixedly installed on the inner wall frame of the noodle machine. The device is located below the dough pressing device. Before the dough is cut, the dough needs to go through the extrusion, conveying and re-pressing process. During this process, the dough passes from the conveyor frame 23 through the first transfer component 3 and the second transfer component 4. The first transfer component 3 and the second transfer component 4 are synchronously driven in the forward direction, which can convey the dough in one direction. After the re-pressing is completed, the dough sheet needs to be cut. At this time, the appropriate cutter is selected according to the required noodle specifications. Through the external control panel of the noodle machine, when the first cutter holder 11 is needed, the first motor 301 on the first transfer assembly 3 starts in reverse, causing the first transmission belt 304 to rotate in reverse. During the reverse rotation of the first transmission shaft 302, the damping is enhanced by the one-way damping top plate 7 on the baffle assembly 6, thereby driving the first swing arm 8 to rotate. Under the transmission of the second swing arm 9, the connecting stop 10 swings, so that the connecting stop 10 changes from a horizontal setting to a downward tilting setting. This causes the dough sheet conveyed by the conveyor frame 23 to be blocked when it passes the connecting stop 10. And through the reverse rotation of the first transmission belt 304, the dough sheet can enter the first cutter holder 11 from the feed hopper 13. Through the transmission assembly, the cutter roller inside the first cutter holder 11 rotates, cutting the dough sheet into noodles that fall into the rotating receiving tray 18 for easy noodle collection.
[0019] When the second cutter holder 12 is needed, the first transfer component 3 rotates in the forward direction, the baffle component 6 is raised, and the second transfer component 4 rotates in the reverse direction. At this time, the dough sheet falls into the second cutter holder 12 through the hopper 13 through the gap between the first transfer component 3 and the second transfer component 4. Then the dough sheet is cut into noodles of different specifications, and the noodles still fall into the rotating receiving tray 18.
[0020] When in use, the first transfer component 3 and the second transfer component 4 are designed to be able to rotate in both directions, allowing for free switching of the tool holder without stopping the machine, thus improving production efficiency.
[0021] Example 2 Please see Figures 1 to 4 The present invention provides a technical solution for a noodle sheet cutting device for noodle production. Based on embodiment 1, it further includes a noodle break receiving assembly disposed above the feeding hopper 13. The noodle break receiving assembly consists of an electric push rod 21 and a noodle break receiving plate 22. A groove is provided on the horizontal support 2, which is located directly below the first transfer assembly 3 and the second transfer assembly 4. The noodle break receiving plate 22 is located below the groove, and the bottom of the noodle break receiving plate 22 is connected to the end of the electric push rod 21. The electric push rod 21 is installed at the bottom of the horizontal support 2, and the noodle break receiving plate 22 moves laterally. The transmission assembly consists of a drive motor 14, a drive sprocket 15, a transmission chain 16, and a tool transmission wheel 17. The drive motor 14 is installed on the bottom inner side of the fixed bracket 1. The output end of the drive motor 14 is connected to the drive sprocket 15. Two sets of tool transmission wheels 17 are provided and are respectively connected to the first tool holder 11 and the second tool holder 12. The drive sprocket 15 and the tool transmission wheels 17 are connected by the transmission chain 16. A rotating receiving plate 18 is provided below the first tool holder 11 and the second tool holder 12. A transmission box 19 is connected to the bottom of the rotating receiving plate 18. The input end of the transmission box 19 is connected to the receiving plate transmission wheel 20, which is connected to the transmission chain 16.
[0022] Specifically, during the pressing, conveying, and re-pressing process, some dough fragments will be present. These fragments will be conveyed into the cutter holder and rotating receiving tray 18, affecting the final noodle quality. Therefore, they need to be removed. At this time, an electric push rod 21 and a dough fragment receiving plate 22 are installed. During the pressing, conveying, and re-pressing process, the electric push rod 21 pushes the dough fragment receiving plate 22 below the first transfer component 3 and the second transfer component 4, so that the fragments fall into the dough fragment receiving plate 22. After the re-pressing is completed, when the dough is cut, the electric push rod 21 moves the dough fragment receiving plate 22 away from directly below the first transfer component 3 and the second transfer component 4. At this time, it does not affect the dough entering the feed hopper 13, thus achieving a better effect of removing dough fragments.
[0023] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A noodle sheet cutting device for noodle production, comprising a fixed support (1), a horizontal support (2), and a first transfer assembly (3), a second transfer assembly (4), a first cutter holder (11), and a second cutter holder (12) mounted on the fixed support (1), characterized in that: A horizontal support (2) is installed on the inner side of a fixed support (1). A conveyor frame (23) is installed on the inner wall of the fixed support (1). The conveyor frame (23) is located on one side of the first transfer assembly (3). The first transfer assembly (3) is located between the conveyor frame (23) and the second transfer assembly (4). A tool drive wheel (17) is provided below the first tool holder (11) and the second tool holder (12). A hopper (13) is provided between the first tool holder (11) and the first transfer assembly (3). The first tool holder (11) and the second tool holder (12) are connected by a transmission assembly at their ends. The transmission assembly consists of an active motor (14), an active sprocket (15), a transmission chain (16), and a tool transmission wheel (17). A baffle assembly (6) is provided between the tail of the conveyor frame (23) and the end of the first transfer assembly (3). A crushed material receiving assembly is provided below the first transfer assembly (3) and the second transfer assembly (4).
2. The noodle sheet cutting device for noodle production according to claim 1, characterized in that: The first transfer assembly (3) has the same structure as the second transfer assembly (4). The first transfer assembly (3) consists of a first motor (301), a first drive shaft (302), a first driven shaft (303), and a first drive belt (304). The first motor (301) is installed on the outside of the fixed bracket (1). The first drive shaft (302) is connected to the first motor (301) for transmission. The first driven shaft (303) is installed on the inside of the first transfer assembly (3) and is arranged parallel to the first drive shaft (302). The first drive belt (304) is installed on the first drive shaft (302) and the first driven shaft (303).
3. A noodle sheet cutting device for noodle production according to claim 2, characterized in that: The baffle assembly (6) consists of a one-way damping top plate (7), a first swing rod (8), a second swing rod (9), and a connecting stop (10). The one-way damping top plate (7) is installed on the inner side of the first swing rod (8). The first swing rod (8) is installed at the end of the first drive shaft (302). The one-way damping top plate (7) abuts against the end of the first drive shaft (302). The top of the first swing rod (8) is hinged to one side of the connecting stop (10). The second swing rod (9) is installed on the tail drive shaft of the conveyor frame (23). The top of the second swing rod (9) is hinged to the other side of the connecting stop (10).
4. A noodle sheet cutting device for noodle production according to claim 3, characterized in that: The crushed noodle receiving assembly is located directly above the feed hopper (13). The crushed noodle receiving assembly consists of an electric push rod (21) and a crushed noodle receiving plate (22). A groove is provided on the horizontal support (2). The groove is located directly below the first transfer assembly (3) and the second transfer assembly (4). The crushed noodle receiving plate (22) is located below the groove. The bottom of the crushed noodle receiving plate (22) is connected to the end of the electric push rod (21). The electric push rod (21) is installed at the bottom of the horizontal support (2). The crushed noodle receiving plate (22) moves laterally.
5. A sheet cutting device for noodle production according to claim 4, characterized in that: The transmission assembly consists of an active motor (14), an active sprocket (15), a transmission chain (16), and a tool transmission wheel (17). The active motor (14) is installed on the bottom inner side of the fixed bracket (1). The output end of the active motor (14) is connected to the active sprocket (15). There are two sets of tool transmission wheels (17), which are connected to the first tool holder (11) and the second tool holder (12) respectively. The active sprocket (15) and the tool transmission wheel (17) are connected by a transmission chain (16).
6. A sheet cutting device for noodle production according to claim 5, characterized in that: A rotating receiving plate (18) is provided below the first tool holder (11) and the second tool holder (12). A transmission box (19) is connected to the bottom of the rotating receiving plate (18). The input end of the transmission box (19) is connected to the receiving plate transmission wheel (20). The receiving plate transmission wheel (20) is connected to the transmission chain (16).