Movable noodle supporting device for noodle production workshop
By designing a mobile noodle-supporting device, which utilizes the staggered movement of upper and lower noodle rollers on a flexible conveying mechanism, the problems of low production efficiency and uneven quality in noodle production are solved. This achieves uniform noodle spreading and efficient conveying, thereby improving the workshop's production efficiency and noodle quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-03-17
AI Technical Summary
The existing noodle-stretching equipment in noodle production workshops suffers from low production efficiency and uneven noodle thickness, especially when stretched vertically, the quality is easily reduced due to the weight of the noodles.
A mobile noodle-spreading device is adopted, in which the upper and lower noodle rollers move alternately on a flexible conveying mechanism. The continuous conveying and spreading of noodles is achieved through the flexible conveying mechanism and sprocket system. Combined with the design of scraper and guide roller, it is ensured that the noodles are spread evenly during the conveying process.
It improves the automation and quality of noodle production, increases production efficiency, avoids the problem of uneven noodle thickness, and is suitable for large-scale promotion.
Smart Images

Figure CN223994302U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of noodle processing equipment, and in particular relates to a mobile noodle-supporting device in a noodle production workshop. Background Technology
[0002] The noodle processing flow in a noodle workshop generally includes raw material selection, ingredient mixing, maturation, rolling, cutting, drying, slicing, and packaging. For ramen, a stretching / stretching step is usually required to obtain the appropriate fineness and length.
[0003] Currently, many noodle production workshops use stretchable structures for vertical stretching when stretching noodles, such as the noodle-opening frame disclosed in CN202322899992.3 that enhances the toughness of pulled noodles. Although this device can achieve the action of supporting the noodles, the noodle rollers cannot be continuously conveyed on this equipment, which affects the production efficiency of the workshop. Furthermore, this vertical stretching method is prone to uneven thickness between the upper and lower sections due to the weight of the noodles, which directly affects the quality of the finished noodles. Utility Model Content
[0004] This utility model addresses the technical problems existing in the aforementioned noodle-supporting equipment by proposing a mobile noodle-supporting device for noodle production workshops that is rationally designed, highly automated, and conducive to ensuring noodle quality and improving workshop production efficiency.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A mobile noodle-supporting device for a noodle production workshop is provided, comprising a frame, an upper noodle-hanging roller and a lower noodle-hanging roller. A support panel is provided on the inner side of the frame. Two symmetrically distributed flexible conveying mechanisms are arranged above the support panel. A geared motor is provided at the power input end of each flexible conveying mechanism. Several scrapers are evenly distributed along the conveying direction on each flexible conveying mechanism. Each flexible conveying mechanism includes an upper inlet and a lower inlet, which are staggered vertically. A feeding guide rod is provided at the end of the upper inlet, connecting to the upper noodle-hanging roller conveyed towards the frame. A lifting roller guide rod is provided at the end of the lower inlet, connecting to the lower noodle-hanging roller conveyed along the support panel. A discharge guide rod is provided at the end of the flexible conveying mechanism away from the feeding guide rod.
[0006] Preferably, the flexible conveying mechanism includes a feed end sprocket and a discharge end sprocket distributed in an inclined direction. An upper tensioning sprocket is arranged below the feed end sprocket and the discharge end sprocket. A lower tensioning sprocket is arranged below the upper tensioning sprocket and is staggered with it. A transmission chain is arranged on the transmission side of the feed end sprocket, the discharge end sprocket, the upper tensioning sprocket and the lower tensioning sprocket. The scrapers are arranged in pairs on the side of the transmission chain.
[0007] Preferably, a conveying guard plate is provided on the conveying path of the upper tensioning sprocket, the feed end sprocket and the discharge end sprocket, and the upper inlet and the lower inlet are both provided on the conveying guard plate.
[0008] Preferably, the frame is provided with a mounting base for mounting the roller guide rod. The mounting base includes a base plate, a vertical rod is provided on the base plate, a horizontal rod is provided on the vertical rod, and a hinge joint is provided at the end of the horizontal rod. The hinge joint is rotatably engaged with the roller guide rod, and the inclination angle of the roller guide rod is greater than the inclination angle of the support plate.
[0009] Preferably, a feeding conveyor and a receiving conveyor are respectively provided on both sides of the frame. Both the feeding conveyor and the receiving conveyor are chain drive mechanisms. The chain drive mechanism is provided with multiple partitions evenly distributed along its conveying direction. The distribution density of the partitions on the chain drive mechanism is greater than the distribution density of the scraper on the flexible conveying mechanism.
[0010] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0011] This utility model provides a mobile noodle-supporting device for a noodle production workshop. The upper noodle-hanging roller enters the conveying path of the flexible conveying mechanism from the upper roller inlet. The noodles, dragged by the lower noodle-hanging roller, move along the support panel and are spread out for a certain length. After the upper noodle-hanging roller has traveled a certain length along the conveying path, the lower noodle-hanging roller enters the conveying path of the flexible conveying mechanism from the lower roller inlet. At the turning point of the conveying path, the lower noodle-hanging roller, in conjunction with the upper noodle-hanging roller, further spreads the noodles, thereby achieving the purpose of supporting the noodles. This device is rationally designed, highly automated, helps ensure noodle quality, and improves workshop production efficiency, making it suitable for large-scale promotion. Attached Figure Description
[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0013] Figure 1 A cross-sectional view of a mobile noodle-supporting device in a noodle production workshop;
[0014] Figure 2 An isometric drawing of a mobile noodle-supporting device (without a material-receiving conveyor) in a noodle production workshop;
[0015] Figure 3 This is a working diagram of a mobile noodle-supporting device (without a material receiving and conveying device) in a noodle production workshop.
[0016] Figure 4 This is a front view of a mobile noodle-supporting device (without a material receiving and conveying device) in a noodle production workshop.
[0017] Figure 5 for Figure 1 Enlarged schematic diagram of structure A in the middle;
[0018] Figure 6 for Figure 1 Enlarged schematic diagram of the B-structure;
[0019] In the above figures:
[0020] 1. Frame; 2. Upper hanging roller; 3. Lower hanging roller; 4. Support plate; 5. Flexible conveying mechanism; 51. Scraper; 52. Upper inlet roller; 53. Lower inlet roller; 54. Feeding end sprocket; 55. Discharge end sprocket; 56. Upper tension sprocket; 57. Lower tension sprocket; 58. Drive chain; 59. Conveyor guard plate; 6. Feeding guide rod; 7. Picking roller guide rod; 8. Discharge guide rod; 9. Mounting base; 91. Seat plate; 92. Vertical rod; 93. Horizontal rod; 94. Hinge joint; 10. Feeding conveying device; 11. Receiving conveying device; 12. Noodles. Detailed Implementation
[0021] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other. For ease of description, the terms "upper," "lower," "left," and "right" appearing below only indicate that they correspond to the upper, lower, left, and right directions in the accompanying drawings and do not limit the structure.
[0022] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.
[0023] Examples, such as Figures 1-6As shown, the present invention provides a mobile noodle-supporting device for a noodle production workshop, including a frame 1, an upper noodle-hanging roller 2 and a lower noodle-hanging roller 3 for hanging noodles. A support panel 4 is provided on the inner side of the frame 1. Two symmetrically distributed flexible conveying mechanisms 5 are provided above the support panel 4. A geared motor is provided at the power input end of the flexible conveying mechanism 5. Several scrapers 51 are evenly distributed along its conveying direction on the flexible conveying mechanism 5. The flexible conveying mechanism 5 includes an upper roller inlet 52 and a lower roller inlet 53 that are staggered. A feeding guide rod 6 is provided at the opening end of the upper roller inlet 52. The feeding guide rod 6 is used to connect the upper noodle-hanging roller 2 that is conveyed towards the frame 1. A lifting roller guide rod 7 is provided at the opening end of the lower roller inlet 53. The lifting roller guide rod 7 is used to connect the lower noodle-hanging roller 3 that is conveyed along the support panel 4. A discharge guide rod 8 is provided at the end of the flexible conveying mechanism 5 away from the feeding guide rod 6.
[0024] Specifically, the upper hanging roller 2 is located at the top of the noodle 12, and the lower hanging roller 3 is located at the bottom of the noodle 12. The noodle 12 is looped around the upper hanging roller 2 and the lower hanging roller 3 in a U-shape. The upper hanging roller 2 and the lower hanging roller 3 are arranged vertically before entering the flexible conveying mechanism 5. As the upper hanging roller 2 and the lower hanging roller 3 move, the upper hanging roller 2 can first enter the conveying path of the flexible conveying mechanism 5 from the upper roller inlet 52. The noodle 12 drags the lower hanging roller 3 along the support plate 4 and is stretched out for a certain length. After the upper hanging roller 2 has traveled a certain length along the conveying path, the lower hanging roller 3 is guided into the conveying path of the flexible conveying mechanism 5 from the lower roller inlet 53 by the roller guide rod 7. Furthermore, as the lower noodle roller 3 moves from the lower inlet roller 53 through the turning point of the conveying path to the upper half of the conveying path, its straight-line distance from the upper noodle roller 2 changes. This allows it to work in conjunction with the upper noodle roller 2 to further spread the noodles 12, thus achieving the purpose of spreading the noodles. Therefore, the upper noodle roller 2 and lower noodle roller 3 provided by this device can spread the noodles at the workstation section of the flexible conveying mechanism 5 by moving, which not only has a high degree of automation but also helps to ensure the quality of the noodles 12 and improves workshop production efficiency.
[0025] To improve the conveying performance of the flexible conveying mechanism 5 for the upper and lower dough rollers 2 and 3, the flexible conveying mechanism 5 provided by the present invention includes a feed end sprocket 54 and a discharge end sprocket 55 distributed in an inclined direction. An upper tension sprocket 56 is arranged below the feed end sprocket 54 and the discharge end sprocket 55. A lower tension sprocket 57 is arranged below the upper tension sprocket 56 and is staggered with it. A transmission chain 58 is arranged on the transmission side of the feed end sprocket 54, the discharge end sprocket 55, the upper tension sprocket 56 and the lower tension sprocket 57. Scrapers 51 are arranged in pairs on the side of the transmission chain 58. The upper tension sprocket 56 and the lower tension sprocket 57 are used to ensure the tension performance of the transmission chain 58 on the conveying path and to prevent the transmission chain 58 from jumping. The feed end sprocket 54 and the discharge end sprocket 55 are designed with an inclined distribution, which allows for a relatively obvious change in the straight distance between the lower hanging roll 3 and the upper hanging roll 2 before the lower hanging roll 3 enters the flexible conveying mechanism 5, which is beneficial to obtaining a certain supporting / opening effect. The scraper 51 is designed in pairs, which on the one hand ensures that it can effectively and smoothly pass through all the sprockets, especially the upper tension sprocket 56, and on the other hand, it is beneficial to ensure the feeding effect on both ends of the upper hanging roll 2 and the lower hanging roll 3, and to prevent the rolls from slipping off.
[0026] Furthermore, the conveying path of the upper tension sprocket 56, the feed end sprocket 54, and the discharge end sprocket 55 provided by this utility model is provided with a conveying guard plate 59, and the upper inlet roller 52 and the lower inlet roller 53 are both provided on the conveying guard plate 59. The vertical gap between the conveying guard plate 59 and the scraper 51 is maintained at 0.5 to 1.5 cm, which is smaller than the roller diameter of the upper hanging roller 2 and the lower hanging roller 3. By using the conveying guard plate 59, the occurrence of the upper hanging roller 2 and the lower hanging roller 3 falling off can be reduced, especially ensuring that the upper hanging roller 2 and the lower hanging roller 3 can pass smoothly through the turning point of the conveying path, and ensuring that the noodles 12 can smoothly enter the conveying direction of the conveying path.
[0027] To improve the efficiency of the lower hanging roller 3 entering the lower inlet 53 from the lifting roller guide rod 7, this utility model provides a mounting seat 9 on the frame 1 for mounting the lifting roller guide rod 7. The mounting seat 9 includes a seat plate 91, a vertical rod 92 on the seat plate 91, a horizontal rod 93 on the vertical rod 92, and a hinge joint 94 at the end of the horizontal rod 93. The hinge joint 94 is rotatably engaged with the lifting roller guide rod 7, and the inclination angle of the lifting roller guide rod 7 is greater than the inclination angle of the support plate 4. Among them, the hinge joint 94 adopts an elastic hinge joint, which has a certain pressure bearing capacity and recovery capacity. As the lower hanging roller 3 is pulled by the noodle 12 and gradually rises from the lifting roller guide rod 7, the torque borne by the elastic hinge joint changes from large to small. When the lower hanging roller 3 moves to a position close to the torque center, the angle between the lifting roller guide rod 7 and the horizontal rod 93 basically returns to its original position, thereby lifting the lower hanging roller 3 from the lower roller inlet 53 to the moving direction of the scraper 51, and then into the conveying path of the flexible conveying mechanism 5 to realize the subsequent further supporting / opening of the noodles.
[0028] To improve the production efficiency of the noodle production workshop, the frame 1 provided by this utility model is equipped with a feeding conveyor 10 and a receiving conveyor 11 on both sides. Both the feeding conveyor 10 and the receiving conveyor 11 are chain drive mechanisms. The chain drive mechanism is provided with multiple partitions evenly distributed along its conveying direction. The distribution density of the partitions on the chain drive mechanism is greater than the distribution density of the scraper 51 on the flexible conveying mechanism 5. Regarding the feeding conveyor 10, in the upper half of its conveying path, an upper hanging noodle roller 2 is placed between each adjacent partition. The upper hanging noodle roller 2 moves by the movement of the partition until it falls on the feeding guide rod 6 and slides into the flexible conveying mechanism 5. Regarding the receiving and conveying device 11, in the upper half of its conveying path, each adjacent partition is either engaged with an upper hanging roller 2 or a lower hanging roller 3. For example, if the upper hanging roller 2 slides from the discharge guide rod 8 to between a pair of partitions first, and the lower hanging roller 3 slides from the discharge guide rod 8 to between a pair of adjacent partitions, then both ends of the stretched noodles 12, namely the upper hanging roller 2 and the lower hanging roller 3, are effectively hung on the receiving and conveying device 11. The noodles 12 will not drag on the ground and will be conveyed in an orderly manner. This also makes it easier for other equipment to transfer the stretched noodles 12 away.
[0029] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.
Claims
1. A mobile noodle-supporting device for a noodle production workshop, comprising a frame, an upper noodle-hanging roller, and a lower noodle-hanging roller, characterized in that, The inner side of the frame is provided with a support panel. Above the support panel are two symmetrically distributed flexible conveying mechanisms. The power input end of the flexible conveying mechanism is provided with a geared motor. The flexible conveying mechanism is provided with several scrapers evenly distributed along its conveying direction. The flexible conveying mechanism includes an upper inlet and a lower inlet that are staggered vertically. The upper inlet is provided with a feed guide rod at its opening end. The feed guide rod is used to connect the upper hanging roll conveyed towards the frame. The lower inlet is provided with a lifting roller guide rod at its opening end. The lifting roller guide rod is used to connect the lower hanging roll conveyed along the support panel. The flexible conveying mechanism is provided with a discharge guide rod at its end away from the feed guide rod.
2. The mobile noodle-supporting device for a noodle production workshop according to claim 1, characterized in that, The flexible conveying mechanism includes a feed end sprocket and a discharge end sprocket distributed in an inclined direction. An upper tensioning sprocket is arranged below the feed end sprocket and the discharge end sprocket. A lower tensioning sprocket is arranged below the upper tensioning sprocket and is staggered with it. A transmission chain is arranged on the transmission side of the feed end sprocket, the discharge end sprocket, the upper tensioning sprocket and the lower tensioning sprocket. The scrapers are arranged in pairs on the side of the transmission chain.
3. The mobile noodle-supporting device for a noodle production workshop according to claim 2, characterized in that, Conveying guard plates are provided on the conveying paths of the upper tensioning sprocket, the feed end sprocket, and the discharge end sprocket, and the upper inlet and the lower inlet are both located on the conveying guard plates.
4. A mobile noodle-supporting device for a noodle production workshop according to claim 3, characterized in that, The frame is provided with a mounting base for mounting the roller guide rod. The mounting base includes a base plate, a vertical rod on the base plate, a horizontal rod on the vertical rod, and a hinge joint at the end of the horizontal rod. The hinge joint is rotatably engaged with the roller guide rod, and the inclination angle of the roller guide rod is greater than the inclination angle of the support plate.
5. A mobile noodle-supporting device for a noodle production workshop according to claim 1, characterized in that, The frame is provided with a feeding conveyor and a receiving conveyor on both sides. Both the feeding conveyor and the receiving conveyor are chain drive mechanisms. The chain drive mechanism is provided with multiple partitions that are evenly distributed along its conveying direction. The distribution density of the partitions on the chain drive mechanism is greater than the distribution density of the scraper on the flexible conveying mechanism.
Citation Information
Patent Citations
Noodle opening frame for enhancing toughness of stretched noodles
CN221203915U