Noodle conveying mechanism for fine dried noodle drying room

By designing a noodle conveying mechanism for the noodle drying room, utilizing sprocket and chain drive and guide plate pusher structure, the problems of frequent start-up of drying equipment and manual handling were solved, achieving efficient and stable noodle conveying and uniform drying, thus improving production efficiency and product quality.

CN224065867UActive Publication Date: 2026-03-31ANHUI FOZILING FLOUR IND
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In the process of drying noodles, existing technology causes the drying equipment to start and stop frequently, resulting in low production efficiency. It also requires frequent manual handling of the noodles, which increases labor costs and affects product quality.

Method used

A noodle conveying mechanism was designed, comprising a main body, a placement box, sprockets, chains, sprockets, and grooved belts. The sprockets and chains are driven by a motor to achieve stable noodle conveying, and the guide plate and push plate structure are used to avoid accumulation and tangling, ensuring uniform drying.

Benefits of technology

It improves the production efficiency of drying equipment, reduces manual intervention, enhances the quality and yield of noodles, ensures the uniformity and stability of drying, and reduces the risk of production interruption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of fine dried noodle conveying equipment, and discloses a noodle conveying mechanism for a fine dried noodle drying room, which comprises a main body, the left side wall of the main body is fixedly connected with a placing box, the upper side wall of the placing box is fixedly connected with a blanking plate, and the right side of the top of the main body is fixedly connected with two first support plates; two protection boxes are fixedly connected to the front side wall of the main body, and first motors are arranged in the two protection boxes. Through the arrangement of the first motor, the first chain wheel and the second chain wheel, the problems that drying equipment needs to be started and stopped frequently to adjust the temperature, and the production efficiency is greatly reduced can be solved, when the noodle airing rods are conveyed to the right side of the top along with the groove belt, intermittent pause during manual carrying is effectively avoided, and the production efficiency is improved. The problems of non-uniform dryness and wetness, easy breakage and the like of the noodles caused by non-uniform drying are reduced, and the quality and taste of the fine dried noodles are improved.
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Description

Technical Field

[0001] This utility model relates to the field of noodle conveying equipment, and in particular to a noodle conveying mechanism for use in a noodle drying room. Background Technology

[0002] As a convenient and durable food, dried noodles are in ever-increasing market demand. During processing, the noodles need to be heated and dried evenly in a drying room to ensure that each noodle gets a good drying effect and reduce quality problems such as brittle noodles, broken noodles, and sour noodles.

[0003] In noodle production, freshly made noodles need to be promptly transported to a drying room for drying. If the noodles are manually moved in and out of the drying room, manual operation can lead to the mixing of sweat, hair, and other foreign matter from the operators into the noodles, posing a food safety hazard. It can also cause the drying equipment to be frequently started and stopped to adjust the temperature, significantly reducing production efficiency. During the transport process, noodles may accumulate or become tangled for various reasons. Once accumulated, this can easily cause blockages, affecting the entire transport process and requiring frequent manual cleaning, further reducing production efficiency. The need for constant manual sorting and pushing of the noodles not only increases labor costs but also makes the production process cumbersome and affects product quality. Utility Model Content

[0004] The main purpose of this invention is to provide a noodle conveying mechanism for a noodle drying room, which can effectively solve the problems that cause the drying equipment to need to be frequently started and stopped to adjust the temperature, resulting in a significant reduction in production efficiency, and the need for manual labor to constantly sort and push the noodles. This not only increases labor costs but also makes the production process cumbersome and affects product quality.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a noodle conveying mechanism for a noodle drying room, comprising a main body, a placement box fixedly connected to the left side wall of the main body, a feeding plate fixedly connected to the upper side wall of the placement box, two first support plates fixedly connected to the top right side of the main body, two protective boxes fixedly connected to the front side wall of the main body, a first motor installed inside each of the two protective boxes, a rotating rod fixedly connected to the output end of each of the two first motors, a first connecting column fixedly connected to the outer rear end of the left rotating rod, the front and rear ends of the first connecting column rotatably connected to the interior of the main body, a first sprocket fixedly connected to the outer sides of the front and rear ends of the first connecting column, first chains installed on the front and rear sides of the interior of the main body, a second connecting column fixedly connected to the rear end of the right rotating rod, the left and right ends of the second connecting column rotatably connected to the right side of the interior of the main body, a first connecting ring rotatably connected to the outer sides of the left and right ends of the second connecting column, a second sprocket fixedly connected to the outer sides of each of the two first connecting rings, the outer sides of the two first sprockets meshing with the inner left side of the two first chains, and the inner right side of the two first chains meshing with the outer sides of the two second sprockets.

[0006] Furthermore, a first sprocket is fixedly connected to the outer sides of the left and right ends of the second connecting column, a support column is fixedly connected to the inside of each of the two first support plates, a second sprocket is rotatably connected to the outer sides of the two support columns, a second chain is provided inside the two first support plates, the outer sides of the two first sprockets and the second sprockets mesh with the inside of the two second chains, and a grooved belt is fixedly connected to the outer sides of the two first chains and the second chain.

[0007] Furthermore, a guide plate is fixedly connected to the right side wall of the feeding plate, a control panel is fixedly connected to the front side wall of the main body, and bases are fixedly connected to the bottom of both the main body and the placement box. A chassis is fixedly connected to the inner wall of each of the six bases.

[0008] Furthermore, a second support plate is fixedly connected to the top right side of the two first support plates, a first guide plate is fixedly connected to the inner left side of the two second support plates, the left side of the two first guide plates is located on the right side of the two top groove belts, a placement plate is fixedly connected to the inside of the two second support plates, a second guide plate is fixedly connected to the right side wall of the two placement plates, and a guide rail box is provided on the top of the two second support plates.

[0009] Furthermore, connecting blocks are fixedly connected to both the front and rear sides of the guide rail box, and four connecting blocks are fixedly connected to the upper sidewalls of the two second support plates. A slider is slidably connected inside the guide rail box, and a first hinge frame is fixedly connected to the top of the slider. A support frame is fixedly connected to the rear top of the guide rail box.

[0010] Furthermore, a base plate is fixedly connected to the rear side wall of the support frame, a second motor is provided on the upper side wall of the base plate, a connecting shaft is fixedly connected to the output end of the second motor, a connecting rod is fixedly connected to the outer front end of the connecting shaft through the front side wall of the support frame, a support rod is rotatably connected to the front side wall of the connecting rod, and the right side of the support rod is rotatably connected to the inside of the first hinge frame.

[0011] Furthermore, a connecting plate is fixedly connected to the bottom of the slider, and a second hinge frame is fixedly connected to both the front and rear sides of the bottom of the connecting plate. A limit post is fixedly connected inside each second hinge frame, and a second connecting ring is rotatably connected inside each second hinge frame. A push plate is fixedly connected to the bottom of each second connecting ring, and a connecting rod is fixedly connected to the top of each second connecting ring. Each connecting rod is correspondingly set with the limit post.

[0012] Furthermore, drying rods are provided in the grooves of the grooved belt and the slots of the placement plate. Each drying rod is fixedly connected to a retaining ring at both ends, and the interior of every two retaining rings corresponds to the push plate.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. This utility model, through the design of a first motor, first sprocket, second sprocket, support column, second sprocket, second sprocket, and grooved belt, solves the problem of frequent start-ups and stops required to adjust temperature in drying equipment, resulting in a significant reduction in production efficiency. When the drying rod is conveyed to the top right side by the grooved belt, it encounters a first guide plate fixed inside the left side of the second support plate. The first guide plate guides the drying rod, ensuring a precise transition from the grooved belt to the placement plate. A second guide plate on the right side wall of the placement plate further guides the drying rod to maintain a suitable position and conveying direction, effectively avoiding intermittent stops during manual handling. This reduces problems such as uneven drying leading to inconsistent noodle moisture levels and breakage, thus improving the quality and taste of the noodles.

[0015] 2. By using a second support plate, second guide plate, guide rail box, support frame, second motor, connecting rod, support rod, push plate, and limit post, the problem of needing to manually constantly sort and push the noodles can be solved. This not only increases labor costs but also makes the production process cumbersome and affects product quality. The right side of the support rod is rotatably connected to the inside of the first hinge frame, so that the slider fixedly connected to the first hinge frame can slide back and forth in the guide rail box. The connecting plate at the bottom of the slider moves with the slider, and the second hinge frames on the front and rear sides of the bottom of the connecting plate also move synchronously. This effectively avoids over-drying or under-drying, ensures the stability of drying quality, improves the product yield, ensures the stability and reliability of the conveying process, and reduces the risk of production interruption due to conveying problems.

[0016] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of a noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0018] Figure 2 This is a right-side structural diagram of a noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0019] Figure 3 This is an internal cross-sectional view of a noodle conveying mechanism for a dried noodle drying room proposed in this utility model.

[0020] Figure 4 This is a structural diagram of the first connecting column of a noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0021] Figure 5 This is a structural diagram of the second sprocket of a noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0022] Figure 6 This is a bottom view of the noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0023] Figure 7 This is a schematic diagram of the first guide plate of a noodle conveying mechanism for a noodle drying room proposed in this utility model;

[0024] Figure 8 This utility model provides a structural diagram of a connecting block for a noodle conveying mechanism used in a noodle drying room.

[0025] Figure 9 This utility model provides a structural diagram of a connecting plate for a noodle conveying mechanism used in a noodle drying room.

[0026] Figure 10 This is a structural diagram of the second connecting ring of a noodle conveying mechanism for a noodle drying room proposed in this utility model.

[0027] Legend:

[0028] 1. Main body; 2. Placement box; 3. Feeding plate; 4. First support plate; 5. First motor; 6. Rotating rod; 7. First connecting column; 8. First sprocket; 9. First chain; 10. Second connecting column; 11. First connecting ring; 12. Second sprocket; 13. First sprocket gear; 14. Support column; 15. Second sprocket gear; 16. Second chain; 17. Grooved belt; 18. Drying rod; 19. Retaining ring; 20. Guide plate; 21. Control panel; 22. Base; 23. Chassis; 24. Second support plate; 25. First guide plate; 26. Placement plate; 27. Second guide plate; 28. Guide rail box; 29. ​​Connecting block; 30. Slider; 31. First hinge frame; 32. Support frame; 33. Base plate; 34. Second motor; 35. Connecting shaft; 36. Connecting rod; 37. Support rod; 38. Connecting plate; 39. Second hinge frame; 40. Second connecting ring; 41. Push plate; 42. Connecting rod; 43. Limiting post; 44. Protective box. Detailed Implementation

[0029] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0030] like Figure 1 - Figure 8 As shown: A noodle conveying mechanism for a noodle drying room includes a main body 1. The main body 1 is characterized by a placement box 2 fixedly connected to the left side wall of the main body 1, through which the noodle drying rods 18 are placed and collected. The upper side wall of the placement box 2 is fixedly connected to a feeding plate 3, through which the freshly made noodles are guided. Before cutting, the noodles are particularly long. Before conveying, when half of the noodles flow into the interior of the main body 1 and contact the chassis 23, the noodle drying rods 18 inside the placement box 2 will slide into the interior of the main body 1, so that the noodles are placed on the outside of the noodle drying rods 18 and the noodles are moved.

[0031] Two first support plates 4 are fixedly connected to the top right side of the main body 1, and two protective boxes 44 are fixedly connected to the front side wall of the main body 1. Each of the two protective boxes 44 houses a first motor 5, providing external protection for the two first motors 5. Rotating rods 6 are fixedly connected to the output ends of the two first motors 5. A first connecting column 7 is fixedly connected to the outer rear end of the left rotating rod 6. The front and rear ends of the first connecting column 7 are rotatably connected to the interior of the main body 1. First sprockets 8 are fixedly connected to the outer sides of both the front and rear ends of the first connecting column 7. The rotating rod 6 on the output end of the left first motor 5 drives the first connecting column 7 to rotate. When the first connecting column 7 rotates, its front and rear ends rotate on the left side inside the main body 1, thus supporting the main body 1. When the first connecting column 7 rotates, the two first sprockets 8 on the outer sides of its front and rear ends rotate synchronously.

[0032] The main body 1 has first chains 9 on both the front and rear sides inside. The rear end of the right rotating rod 6 is fixedly connected to a second connecting post 10. The left and right ends of the second connecting post 10 are rotatably connected to the right side inside the main body 1. The left and right outer ends of the second connecting post 10 are rotatably connected to first connecting rings 11. The outer sides of the two first connecting rings 11 are fixedly connected to second sprockets 12. The outer sides of the two first sprockets 8 mesh with the inner left side of the two first chains 9. The inner right side of the two first chains 9 meshes with the outer sides of the two second sprockets 12. The first connecting rings 11 on the outer side of the second connecting post 10 connect to the second sprockets 12. When the left first connecting post 7 is driven, the outer first sprockets 8 and second sprockets 12 mesh with the inner side of the first chains 9, and the power is transmitted to the second sprockets 12 through the first chains 9, so that the second sprockets 12 and the first connecting rings 11 rotate on the outer side of the second connecting post 10.

[0033] The left and right ends of the second connecting column 10 are fixedly connected to the outer sides of the first sprockets 13. The first motor 5 on the right side and the rotating rod 6 drive the second connecting column 10 to rotate on the right side of the main body 1. At the same time as the rotation, the first sprockets 13 fixed to the outer sides of the second connecting column 10 also rotate synchronously. When the first connecting ring 11 and the second connecting column 10 rotate, the two structures rotate in opposite directions. The two first support plates 4 are fixedly connected to the interior of the first support plates 4, and the outer sides of the two support columns 14 are rotatably connected to the second sprockets 15. The support columns 14 fixed inside the first support plates 4 support the two second sprockets 15. The two first support plates 4 are equipped with second chains 16 inside. The outer sides of the two first sprockets 13 and the second sprocket 15 mesh with the inner sides of the two second chains 16. The outer sides of the two first chains 9 and the second chains 16 are fixedly connected with grooved belts 17. Through the meshing of the first sprockets 13, the second sprockets 15 and the second chains 16, the first sprockets 13 drive the second sprockets 15 to rotate through the second chains 16. The grooved belts 17 on the outer sides of the first chains 9 and the second chains 16 place the drying rod 18 in the slot. When the drying rod 18 slides out of the placement box 2, the drying rod 18 will fall precisely into the slot of the grooved belt 17 and move.

[0034] As shown above, when the drying rod 18 is transported to the right side via the grooved belt 17 on the first chain 9, the retaining rings 19 on both ends of the drying rod 18 will contact the grooved belt 17 on the second chain 16. When the inner groove of the grooved belt 17 on the outer side of the second chain 16 contacts the drying rod 18, the drying rod 18 enters the groove of the second grooved belt 17 and is driven to slide upward by the second chain 16.

[0035] like Figure 1 - Figure 8As shown, a guide plate 20 is fixedly connected to the right side wall of the feeding plate 3. The guide plate 20 guides the noodles to prevent them from remaining in the feeding plate 3. A control panel 21 is fixedly connected to the front side wall of the main body 1. The control panel 21 is used to control and operate the equipment. Bases 22 are fixedly connected to the bottom of both the main body 1 and the placement box 2. A chassis 23 is fixedly connected to the inner wall of the six bases 22. The bases 22 support and fix the bottom of the device. The chassis 23 prevent the noodles from contacting the ground, thus preventing them from falling due to gravity imbalance during transportation and facilitating collection from the bottom. Both the grooved belt 17 and the placement plate 26 are equipped with drying rods 18. Each drying rod 18 has a retaining ring 19 fixedly connected to both ends. The retaining rings 19 can restrict the area of ​​the dried noodles to prevent them from falling out through the ends, and also ensure that the drying rod 18 can be stably placed in the groove of the grooved belt 17. The interior of every two retaining rings 19 corresponds to the push plate 41. When the drying rod 18 is conveyed to the top, the push plate 41 contacts the interior of the retaining ring 19, which drives the retaining ring 19 to move forward.

[0036] like Figure 1 - Figure 8 As shown, a second support plate 24 is fixedly connected to the top right side of the two first support plates 4. A first guide plate 25 is fixedly connected to the inner left side of each of the two second support plates 24. The left side of each of the two first guide plates 25 is located on the right side of the two top groove belts 17. A placement plate 26 is fixedly connected to the inside of each of the two second support plates 24. When the drying rod 18 is transported to the top right side by the groove belt 17, it will encounter the first guide plate 25 fixed to the inner left side of the second support plate 24. The drying rod 18 will slide from the first guide plate 25 into the placement plate 26 and enter the groove to place the drying rod 18.

[0037] A second guide plate 27 is fixedly connected to the right side wall of each of the two placement plates 26. The second guide plate 27 on the right side of the placement plate 26 guides the drying rod 18 again, allowing it to enter the next piece of equipment for processing. A guide rail box 28 is provided on the top of each of the two second support plates 24. Connecting blocks 29 are fixedly connected to the front and rear sides of the guide rail box 28. The four connecting blocks 29 are fixedly connected to the upper side wall of the two second support plates 24. The guide rail box 28 is supported and fixed by the connecting blocks 29 on the left and right sides of the guide rail box 28. A slider 30 is slidably connected inside the guide rail box 28. A first hinge frame 31 is fixedly connected to the top of the slider 30. After the guide rail box 28 is fixed, the slider 30 can slide inside the guide rail box 28. The first hinge frame 31 on the top of the slider 30 connects to the device on top, thereby driving the slider 30 to slide inside the guide rail box 28. A support frame 32 is fixedly connected to the top rear side of the guide rail box 28.

[0038] like Figure 1 - Figure 8 As shown, a base plate 33 is fixedly connected to the rear side wall of the support frame 32, and a second motor 34 is provided on the upper side wall of the base plate 33. The support frame 32 serves as a support, and the base plate 33 on the rear side is used to fix and support the second motor 34.

[0039] The output end of the second motor 34 is fixedly connected to a connecting shaft 35. The outer front end of the connecting shaft 35 passes through the front side wall of the support frame 32 and is fixedly connected to a connecting rod 36. The front side wall of the connecting rod 36 is rotatably connected to a support rod 37. The right side of the support rod 37 is rotatably connected to the inside of the first hinge frame 31. It is connected to the connecting rod 36 through the connecting shaft 35 on the output end of the second motor 34 and drives the connecting rod 36 to rotate. It is connected to the support rod 37 through the connecting rod 36 and drives the support rod 37 to rotate. The other side of the support rod 37 is rotatably connected to the inside of the first hinge frame 31, thereby changing the movement trajectory of the support rod 37. Thus, the slider 30 is driven to slide left and right inside the guide rail box 28 through the first hinge frame 31.

[0040] A connecting plate 38 is fixedly connected to the bottom of the slider 30. A second hinge frame 39 is fixedly connected to both the front and rear sides of the bottom of the connecting plate 38. A limit post 43 is fixedly connected inside each second hinge frame 39. A second connecting ring 40 is rotatably connected inside each second hinge frame 39. A push plate 41 is fixedly connected to the bottom of each second connecting ring 40. A connecting rod 42 is fixedly connected to the top of each second connecting ring 40. Each connecting rod 42 is correspondingly set with the limit post 43. The second connecting ring 40 inside the second hinge frame 39 can rotate around the limit post 43. When the slider 30 slides forward, the push plate 41 pushes the drying rod 18 forward under the drive of the second connecting ring 40. Since the interior of each pair of retaining rings 19 corresponds to the push plate 41, the push plate 41 can accurately act on the drying rod 18, pushing it to continue forward along the groove of the placement plate 26, ensuring that the drying rod 18 and the noodles on it can smoothly enter the drying stage. When it is necessary to push the next drying rod 18, the rear side of the push plate 41 will contact the front side of the next drying rod 18, causing the push plate 41 to rotate forward. When it rotates to a certain position, the connecting rod 42 at the top of the second connecting ring 40 will contact the limiting post 43 to limit the second connecting ring 40. At the same time, the angle of the push plate 41 reaches the rear side of the next drying rod 18, pushing the drying rod 18 forward again.

[0041] It should be noted that this utility model is a noodle conveying mechanism for a noodle drying room. First, the two first motors 5, the second motor 34, and the control panel 21 are connected to an external power source to supply power to the device.

[0042] When the conveyor mechanism is started, the operator turns on the first motor 5, which is located inside the protective box 44. After being powered on, the motor starts running and outputs power, driving the rotating rod 6, which is fixedly connected to it, to rotate.

[0043] The rotation of the left rotating rod 6 directly drives the first connecting post 7, which is fixedly connected to its rear outer side, to rotate. The first connecting post 7 is rotatably connected at both ends inside the main body 1, and the first sprocket 8 fixed at both ends outside also rotates synchronously. The right rotating rod 6 drives the second connecting post 10 to rotate on the right side inside the main body 1.

[0044] Since the first sprocket 8 meshes with the inner left side of the first chain 9, and the second sprocket 12 meshes with the inner right side of the first chain 9, the rotation of the first sprocket 8 and the second sprocket 12 drives the first chain 9 to rotate cyclically on both sides inside the main body 1 through the meshing of their teeth. The rotation of the first chain 9 provides the basic power and transmission support for subsequent conveying. At the same time, the first connecting ring 11 on the outer side of the second connecting post 10 drives the outer second sprocket 12 to rotate through the first sprocket 8 and the first chain 9, and drives the first connecting ring 11 to rotate on the outer side of the second connecting post 10.

[0045] When the second connecting column 10 rotates, the first sprocket 13, which is fixedly connected to the outer sides of its left and right ends, also begins to rotate. Inside the first support plate 4 on the top right side of the main body 1, the second sprocket 15 is rotatably connected to the outer side of the support column 14. The first sprocket 13 and the second sprocket 15 cooperate with each other and work together on the second chain 16. The outer sides of the first sprocket 13 and the second sprocket 15 mesh with the inside of the second chain 16. When the first sprocket 13 rotates, it drives the second chain 16 to rotate through the cooperation of the first sprocket 13 and the second sprocket 15.

[0046] Before drying the noodles, operators hang them on drying rods 18. The retaining rings 19 at both ends of the drying rods 18 play a crucial role, preventing the noodles from slipping off during hanging and ensuring they remain stably attached. The dried rods 18 with the noodles attached are then placed orderly in the placement box 2. From there, the drying rods 18 slide one by one into the grooves of the grooved belt 17 via the feed plate 3. The grooves are designed to fit the drying rods 18 precisely, ensuring their stability during transport. When the first chain 9 and the second chain 16 rotate, the grooved belt 17, which is fixedly connected to them, moves accordingly, causing the drying rods 18 placed in the grooves and the noodles suspended on them to move together.

[0047] As the drying rod 18 is conveyed to the top right side by the grooved belt 17, it encounters a first guide plate 25 fixed inside the left side of the second support plate 24. The first guide plate 25 guides the drying rod 18, allowing it to accurately transition from the grooved belt 17 onto the placement plate 26. The second guide plate 27 on the right side wall of the placement plate 26 further guides the drying rod 18 to maintain a proper position and conveying direction on the placement plate 26.

[0048] The second motor 34, mounted on the base plate 33, is activated, and its output power drives the connecting shaft 35 to rotate. The connecting rod 36 at the front end of the connecting shaft 35 rotates accordingly, causing the support rod 37, which is rotatably connected to it, to move. The right side of the support rod 37 is rotatably connected inside the first hinge frame 31, causing the slider 30, which is fixedly connected to the first hinge frame 31, to reciprocate within the guide rail box 28. The connecting plate 38 at the bottom of the slider 30 moves along with the slider 30, and the second hinge frames 39 on the front and rear sides of the bottom of the connecting plate 38 also move synchronously.

[0049] The second connecting ring 40 inside the second hinge frame 39 can rotate around the limiting post 43. When the slider 30 slides forward, the push plate 41 pushes the drying rod 18 forward under the drive of the second connecting ring 40. Since the interior of each pair of retaining rings 19 is correspondingly set with the push plate 41, the push plate 41 can accurately act on the drying rod 18, pushing it to continue to be conveyed into the drying room along the placement plate 26, ensuring that the drying rod 18 and the noodles on it can smoothly enter the drying process.

[0050] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A noodle conveying mechanism for a noodle drying room, comprising a main body (1), characterized in that: The left side wall of the main body (1) is fixedly connected with a placing box (2), the upper side wall of the placing box (2) is fixedly connected with a discharging plate (3), the top right side of the main body (1) is fixedly connected with two first support plates (4), the front side wall of the main body (1) is fixedly connected with two protection boxes (44), the interiors of the two protection boxes (44) are both provided with first motors (5), the output ends of the two first motors (5) are both fixedly connected with rotating rods (6), the rear end outer side of the left rotating rod (6) is fixedly connected with a first connecting column (7), the front and rear ends of the first connecting column (7) are rotatably connected in the interior of the main body (1), the front and rear end outer sides of the first connecting column (7) are both fixedly connected with first chain wheels (8), the interiors of the front and rear sides of the main body (1) are both provided with first chains (9), the rear end of the right rotating rod (6) is fixedly connected with a second connecting column (10), the left and right ends of the second connecting column (10) are rotatably connected to the interior right side of the main body (1), the left and right end outer sides of the second connecting column (10) are rotatably connected with first connecting rings (11), the outer sides of the two first connecting rings (11) are both fixedly connected with second chain wheels (12), the outer sides of the two first chain wheels (8) are engaged with the interior left sides of the two first chains (9), the interior right sides of the two first chains (9) are engaged with the outer sides of the two second chain wheels (12).

2. The noodle conveying mechanism for a dried noodle factory according to claim 1, wherein: The left and right end outer sides of the second connecting column (10) are fixedly connected with first chain gears (13), the interiors of the two first support plates (4) are both fixedly connected with support columns (14), the outer sides of the two support columns (14) are rotatably connected with second chain gears (15), the interiors of the two first support plates (4) are provided with second chains (16), the outer sides of the two first chain gears (13) and second chain gears (15) are engaged with the interiors of the two second chains (16), the outer sides of the two first chains (9) and second chains (16) are fixedly connected with recessed belt (17).

3. The noodle conveying mechanism for a dried noodle factory according to claim 1, wherein: The right side wall of the discharging plate (3) is fixedly connected with a guide plate (20), the front side wall of the main body (1) is fixedly connected with a control panel (21), the bottoms of the main body (1) and the placing box (2) are both fixedly connected with bases (22), the inner walls of the six bases (22) are fixedly connected with bottoms (23).

4. The noodle conveying mechanism for a dried noodle factory according to claim 1, wherein: The top right sides of the two first support plates (4) are fixedly connected with second support plates (24), the interior left sides of the two second support plates (24) are both fixedly connected with first guide plates (25), the left sides of the two first guide plates (25) are both arranged on the right sides of the two top recessed belts (17), the interiors of the two second support plates (24) are both fixedly connected with placing plates (26), the right side walls of the two placing plates (26) are both fixedly connected with second guide plates (27), the tops of the two second support plates (24) are provided with guide rail boxes (28).

5. The noodle conveying mechanism for a dried noodle factory according to claim 4, wherein: Both sides of the guide rail box (28) are fixedly connected with connecting blocks (29), four connecting blocks (29) are fixedly connected to the upper side walls of the two second supporting plates (24), the guide rail box (28) is slidably connected with a sliding block (30), the top of the sliding block (30) is fixedly connected with a first hinged frame (31), and the top rear side of the guide rail box (28) is fixedly connected with a supporting frame (32).

6. The noodle conveying mechanism for a dried noodle factory according to claim 5, wherein: The rear side wall of the supporting frame (32) is fixedly connected with a bottom plate (33), the upper side wall of the bottom plate (33) is provided with a second motor (34), the output end of the second motor (34) is fixedly connected with a connecting shaft (35), the front end outer side of the connecting shaft (35) is fixedly connected with a connecting rod (36) penetrating through the front side wall of the supporting frame (32), the front side wall of the connecting rod (36) is rotatably connected with a supporting rod (37), and the right side of the supporting rod (37) is rotatably connected in the first hinged frame (31).

7. The noodle conveying mechanism for a dried noodle factory according to claim 5, wherein: The bottom of the sliding block (30) is fixedly connected with a connecting plate (38), the bottom of the connecting plate (38) is fixedly connected with a second hinged frame (39) on both sides, the inside of each second hinged frame (39) is fixedly connected with a limiting column (43), the inside of each second hinged frame (39) is rotatably connected with a second connecting ring (40), the bottom of each second connecting ring (40) is fixedly connected with a push plate (41), the top of each second connecting ring (40) is fixedly connected with a connecting rod (42), and each connecting rod (42) is correspondingly arranged with the limiting column (43).

8. The noodle conveying mechanism for a dried noodle factory according to claim 4, wherein: The recessed belt (17) and the hole slot of the placing plate (26) are both provided with air surface rods (18), the front and rear ends of each air surface rod (18) are fixedly connected with stop rings (19), and the inside of each two stop rings (19) is correspondingly arranged with the push plate (41).