Feeding device for industrial processing and packaging extension of fine dried noodles
By designing an inclined conveyor belt and partitions, and utilizing the locking mechanism of gravity and spring components, the noodles can be precisely positioned and the ends can be leveled, solving the problem of uneven and loose noodles and improving the stability of noodle production and packaging quality.
Patent Information
- Application Number
- CN202510809033.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing noodle feeding device causes the noodles to not be naturally flush after falling into the partition, resulting in uneven stacking, affecting packaging quality and production efficiency, and easily causing the noodles to break and get stuck.
An inclined conveyor belt is used in conjunction with partitions, and gravity is used to make the noodles naturally fit the partitions. The locking and release mechanism of the one-way bearing, limit gear and spring assembly is used to achieve precise positioning and holding functions of the moving roller. Combined with the end leveling mechanism, the ends of the noodles are aligned and the shaping rods are extended synchronously to gather the loose noodles.
It significantly improves the neatness and production efficiency of noodles, avoids problems such as loose noodles, uneven width and uneven ends, and ensures the stability and packaging quality of noodles during transportation.
Smart Images

Figure CN120621799A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of food industrial processing and feeding, in particular to a feeding device for an industrial processing and packaging sub-machine of fine dried noodles. Background Art
[0002] Vermicelli noodles are made from wheat flour, eggs, and grain flours, with appropriate amounts of salt and baking soda. The noodles are then kneaded with water, cooked, rolled, cut into strips, and dried. The resulting product is a rectangular or round dried noodle product. After decades of development, my country's modern vermicelli noodle industry has become relatively mature. Automated production has replaced early manual processes and is evolving towards intelligent manufacturing. As living standards improve, consumers are increasingly appreciating the nutritional and health benefits of vermicelli. Vermicelli has evolved from a simple, convenient, and quick-service food to a staple food that combines speed, nutrition, health, and deliciousness.
[0003] After being cut, noodles need to be divided into several equal portions to facilitate subsequent automated packaging. However, the feeding device used in the prior art has certain defects: because the spacing between the partitions is much larger than the length of a single noodle, the noodles cannot be naturally flushed after falling into the partitions. This uneven stacking state will cause multiple problems: 1. During the subsequent packaging and plastic sealing process, the uneven ends of the noodles are easily mechanically squeezed, causing some noodles to break; 2. The irregular shape of the noodle pile makes it difficult to control the overall shape, seriously affecting the consistency of packaging quality; 3. When the feeding device and the packaging device are docked during the process, if the noodle pile exceeds the width due to loose stacking, the noodles at the edge are easily stuck outside the conveying channel, which not only causes a large number of noodles to break and be damaged, but also causes significant deviations in the packaging positioning accuracy. These technical defects not only affect the product qualification rate, but also increase the loss of raw materials. Therefore, a feeding device for the industrial processing and packaging sub-machine is proposed to solve the above-mentioned problems. Summary of the Invention
[0004] The purpose of the present invention is to solve the problems in the background technology and to propose a feeding device for an industrial processing and packaging sub-machine of dried noodles.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A feeding device for an industrial processing and packaging sub-machine for dried noodles includes a feeding frame, a feeding motor is fixedly connected to the outer wall of the feeding frame, two transmission wheels are rotatably connected to the inner wall of the feeding frame, the output shaft of the feeding motor is fixedly connected to one of the transmission wheels, the outer walls of the two transmission wheels are sleeved with a common conveyor belt, the outer wall of the conveyor belt is fixedly connected to a plurality of partitions, the outer wall of the feeding frame is fixedly connected to two symmetrically distributed mounting frames, the inner wall of the mounting frame is slidably connected to a rectangular slider, the inner wall of the rectangular slider is slidably connected to a square slider, the two square sliders are fixedly connected to the same moving roller, and further includes:
[0007] The partition driving mechanism includes a toggle rod, the outer wall of the toggle rod is fixedly connected to a first slider, the first slider is slidably connected to the outer wall of the feeding frame through a limiting slide rail, the outer wall of the toggle rod is fixedly connected to a connecting plate, the outer wall of the connecting plate is slidably connected to a connecting block 1, a clockwork spring assembly is provided above the connecting block 1, the connecting block 1 is fixedly connected to the clockwork spring inside the clockwork spring assembly, the outer wall of the clockwork spring assembly is fixedly connected to a first slide, the inner wall of the first slide is slidably connected to a fixed block, the outer wall of the fixed block is fixedly connected to a traction rope, and the other end of the traction rope is fixedly connected to the rectangular slider;
[0008] The shaping mechanism comprises a shaping rod, an outer wall of the shaping rod is fixedly connected with a second sliding rod, the other end of the second sliding rod is slidably connected with a limiting sliding rod, and the limiting sliding rod is fixedly connected with the installation frame.
[0009] Preferably, a return slide rail is provided on the outer wall of the feeding frame, a gear block group is fixedly connected to the inner wall of the return slide rail, and the outer wall of the gear block group is engaged with a limit gear.
[0010] Preferably, the one-way bearing on the outer wall of the limiting gear has a second shaft, and the other end of the second shaft is fixedly connected to the outer wall of the clockwork spring assembly.
[0011] Preferably, the end of the clockwork spring inside the clockwork spring assembly away from the connecting block is fixedly connected to an internal shaft rod, the end of the internal shaft rod is slidably connected to a limiting plug rod, and a number of evenly distributed second springs are fixedly connected between the limiting plug rod and the internal shaft rod.
[0012] Preferably, a second resistance rod and a first resistance rod are fixedly connected to the bottom outer wall of the installation frame, and the second resistance rod and the first resistance rod are aligned with the circular slide rail.
[0013] Preferably, the outer wall of one of the transmission wheels is provided with an end flushing mechanism, and the end flushing mechanism includes a transmission rod 2, and the transmission rod 2 is fixedly connected to the transmission wheel, the outer wall of the transmission rod 2 is fixedly connected to a transmission gear, the outer wall of the transmission gear is engaged with another transmission gear, the outer wall of the other transmission gear is fixedly connected to the transmission rod 1, and the outer wall of the transmission rod 1 is fixedly connected to two push rods.
[0014] Preferably, a connecting rod is fixedly connected to a side of the square slider away from the moving roller, and a fixing rod is fixedly connected to an outer wall of the connecting rod.
[0015] Preferably, two evenly distributed first springs are fixedly connected between the rectangular slider and the mounting frame, a third spring is fixedly connected between the square slider and the rectangular slider, three evenly distributed horizontal conveying rollers are fixedly connected between the two mounting frames, and two symmetrically distributed limiting plates are fixedly connected to the outer walls of the three horizontal conveying rollers.
[0016] Compared with the existing technology, the present invention has the following beneficial effects:
[0017] The present invention cooperates with the inclined conveyor belt and the partition, uses gravity to make the noodles naturally fit the partition, and adopts the locking and releasing mechanism of the one-way bearing, the limit gear and the spring assembly to realize the precise positioning and holding function of the moving roller. When the end of the noodles leaves the conveyor belt, the moving roller automatically moves to the end to take over. The end leveling mechanism makes the intermittent lifting and lowering of the moving roller increase the inclination angle of the noodle pile to ensure the end alignment. The shaping rods are extended synchronously to gather the loose noodles, effectively solving the problems of excessive width and protruding noodles, and significantly improving the neatness. Through the innovative design of gravity utilization, the problems of looseness, uneven width and uneven ends in noodle transportation are solved, and the assembly line operation of noodle sorting, calibration and transportation is realized, which greatly improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;
[0019] Figure 2 Schematic diagram of the partition and conveyor belt structure of the present invention;
[0020] Figure 3 This invention Figure 2 A schematic diagram of the partially enlarged structure at center A;
[0021] Figure 4 It is a structural diagram of the installation frame of the present invention;
[0022] Figure 5 This invention Figure 4 A schematic diagram of the partially enlarged structure at point B in the middle;
[0023] Figure 6 It is a structural schematic diagram of the return slide rail of the present invention;
[0024] Figure 7 This invention Figure 6 A schematic diagram of the partially enlarged structure at point C in the middle;
[0025] Figure 8 It is a structural schematic diagram of the connecting plate of the present invention;
[0026] Figure 9 It is a structural schematic diagram of the movable roller of the present invention;
[0027] Figure 10 It is a schematic structural diagram of the end flush mechanism of the present invention.
[0028] In the figure: 1. Feeding frame; 2. Feeding motor; 3. Partition; 4. Conveyor belt; 5. Mounting frame; 6. Horizontal conveyor roller; 7. Moving roller; 8. Transmission wheel; 9. Limiting plate; 10. Interference rod 1; 11. Traction rope; 12. Rectangular slider; 13. Square slider; 14. Limiting slide; 15. First spring; 16. Shaping rod; 17. Interference rod 2; 18. Toggle rod; 19. Connecting plate; 20. First slider; 21. First slide; 22. Tooth block assembly; 23. Limiting slide rail ; 24. Limit gear; 25. Fixed block; 26. Clockwork spring assembly; 27. Connecting block 1; 28. Second shaft; 29. Internal shaft; 30. Limiting rod; 31. Second spring; 32. Third spring; 33. Return slide rail; 34. Second slide; 35. Connecting rod; 36. Fixed rod; 37. Transmission rod 1; 38. Push rod; 39. Transmission rod 2; 40. Transmission gear; 101. Partition drive mechanism; 202. Shaping mechanism; 303. End leveling mechanism. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0030] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.
[0031] Reference Figures 1-10 A feeding device for an industrial processing and packaging sub-machine for dried noodles includes a feeding frame 1, a feeding motor 2 being fixedly connected to the outer wall of the feeding frame 1, two transmission wheels 8 being rotatably connected to the inner wall of the feeding frame 1, the output shaft of the feeding motor 2 being fixedly connected to one of the transmission wheels 8, the outer walls of the two transmission wheels 8 being sleeved with a common conveyor belt 4, the outer wall of the conveyor belt 4 being fixedly connected to a plurality of partitions 3, the outer wall of the feeding frame 1 being fixedly connected to two symmetrically distributed mounting frames 5, the inner wall of the mounting frames 5 being slidably connected to a rectangular slider 12, the inner wall of the rectangular slider 12 being slidably connected to a square slider 13, the two square sliders 13 being fixedly connected to a common moving roller 7, and further comprising:
[0032] The partition driving mechanism 101 includes a toggle rod 18, the outer wall of the toggle rod 18 is fixedly connected to a first slider 20, the first slider 20 is slidably connected to the outer wall of the feeding frame 1 through a limiting slide rail 23, the outer wall of the toggle rod 18 is fixedly connected to a connecting plate 19, the outer wall of the connecting plate 19 is slidably connected to a connecting block 27, a spring assembly 26 is provided above the connecting block 27, the connecting block 27 is fixedly connected to the spring inside the spring assembly 26, the outer wall of the spring assembly 26 is fixedly connected to a first slide 21, the inner wall of the first slide 21 is slidably connected to a fixed block 25, the outer wall of the fixed block 25 is fixedly connected to a traction rope 11, and the other end of the traction rope 11 is fixedly connected to the rectangular slider 12;
[0033] In this embodiment, when in use, the cut noodles fall onto the conveyor belt 4 in batches. Since the conveyor belt 4 is arranged to be inclined, most of the noodles will be affected by gravity and thus conflict with the partition 3 below during the process of conveying the noodles. When the upper partition 3 moves to the upper portion, the noodles will be cut off. Figure 4 In the position shown, the movable roller 7 is still in place and does not affect the normal movement of the partition 3 around the transmission wheel 8. When the partition 3 conflicts with the toggle rod 18, the toggle rod 18 is pushed by the partition 3 and slides along the limiting slide rail 23 with the first slider 20.
[0034] The shaping mechanism 202 includes a shaping rod 16 , an outer wall of which is fixedly connected to a second slide bar 34 , and the other end of the second slide bar 34 is slidably connected to a limit slide bar 14 , which is fixedly connected to the mounting frame 5 .
[0035] The outer wall of the feeding frame 1 is provided with a circular slide rail 33 , the inner wall of the circular slide rail 33 is fixedly connected with a gear block set 22 , and the outer wall of the gear block set 22 is engaged with a limit gear 24 .
[0036] The outer wall of the limiting gear 24 has a one-way bearing with a second shaft 28 , and the other end of the second shaft 28 is fixedly connected to the outer wall of the clockwork spring assembly 26 .
[0037] Among them, the end of the clockwork spring inside the clockwork spring assembly 26 away from the connecting block 27 is fixedly connected to the internal shaft rod 29, the end of the internal shaft rod 29 is slidably connected to the limiting rod 30, and a number of evenly distributed second springs 31 are fixedly connected between the limiting rod 30 and the internal shaft rod 29.
[0038] Among them, the bottom outer wall of the installation frame 5 is fixedly connected with the second resistance rod 17 and the first resistance rod 10, and the second resistance rod 17 and the first resistance rod 10 are aligned with the circular slide rail 33.
[0039] In this embodiment, since the second shaft 28 and the limiting gear 24 are connected by a one-way bearing, when the toggle rod 18 moves with the connecting plate 19 and the connecting block 1 27, the spring assembly 26, the second shaft 28 and the limiting gear 24, the limiting gear 24 will move around the circular slide rail 33 as shown in FIG. Figure 7 As shown, it moves clockwise. At this time, the limiting rod 30 is always squeezed by the resistance rod 10 and inserted into the internal shaft 29, so that the internal shaft 29 cannot rotate. That is, the clockwork spring assembly 26 is in a locked state at this time.
[0040] Therefore, the clockwork spring assembly 26 pulls the traction rope 11 and the rectangular slider 12 through the first slide 21 and the fixed block 25 to move, and the rectangular slider 12 moves with the moving roller 7 to the end of the installation frame 5 close to the conveyor belt 4, so that the moving roller 7 can now receive the end of the noodles that are gradually detached from the conveyor belt 4. At the same time, the shaping rod 16 moves along the limiting slide rod 14 through the second slide rod 34, so that the shaping rod 16 extends from the inside of the installation frame 5 to gather the loosely stacked noodles that exceed the width.
[0041] Among them, the outer wall of one of the transmission wheels 8 is provided with an end flushing mechanism 303, and the end flushing mechanism 303 includes a transmission rod 2 39, which is fixedly connected to the transmission wheel 8, and the outer wall of the transmission rod 2 39 is fixedly connected to a transmission gear 40, and the outer wall of the transmission gear 40 is meshed with another transmission gear 40, and the outer wall of the other transmission gear 40 is fixedly connected to a transmission rod 1 37, and the outer wall of the transmission rod 1 37 is fixedly connected to two push rods 38.
[0042] A connecting rod 35 is fixedly connected to one side of the square slider 13 away from the moving roller 7 , and a fixing rod 36 is fixedly connected to the outer wall of the connecting rod 35 .
[0043] Among them, two evenly distributed first springs 15 are fixedly connected between the rectangular slider 12 and the mounting frame 5, a third spring 32 is fixedly connected between the square slider 13 and the rectangular slider 12, and three evenly distributed horizontal conveying rollers 6 are fixedly connected between the two mounting frames 5. The outer walls of the three horizontal conveying rollers 6 are fixedly connected to two symmetrically distributed limit plates 9.
[0044] In this embodiment, when the rectangular slider 12 is close to the inner wall of the mounting frame 5, the limiting rod 30 is disengaged from the squeezing of the resistance rod 10 and is disengaged from the inner shaft 29 by the elastic force of the second spring 31, so that the partition 3 can still drive the toggle rod 18 to move downward. At this time, the spring inside the spring assembly 26 is stretched, but the position of the rectangular slider 12 does not change, so that the rectangular slider 12 stays at the end of the mounting frame 5. At this time, the connecting rod 35 and the fixing rod 36 on the back of the square slider 13 are located in the necessary path of the push rod 38. The transmission wheel 8 drives the transmission rod 2 39 and the transmission gear in the process of rotation. 40 rotates, causing the transmission rod 37 to drive the push rod 38 to rotate, and the push rod 38 intermittently lifts the fixed rod 36, so that the fixed rod 36 drives the moving roller 7 on the square slider 13 to intermittently move up and down through the connecting rod 35. The upward movement of the moving roller 7 can increase the inclination angle of the noodles, so that individual protruding noodles fall on the partition 3 for unified end calibration. Then, when the first slider 20 moves to the tail end of the limiting slide rail 23, the first slider 20 retracts with the toggle rod 18, and the toggle rod 18 no longer hinders the partition 3. The device is reset, and the sorted noodles will fall on the horizontal conveying roller 6, and the two ends are limited by the limiting plate 9.
[0045] The noodles being conveyed will no longer be loose, the width will not exceed the standard, and there will be no individual protruding noodles.
[0046] The specific working principle and use method of the present invention are explained in detail below: When in use, the cut noodles fall onto the conveyor belt 4 in batches. Since the conveyor belt 4 is set to be inclined, most of the noodles will be affected by gravity and thus collide with the partition 3 below during the process of conveying the noodles. When the upper partition 3 moves to the upper part, the noodles will be cut off and the noodles will fall on the conveyor belt 4 in batches. Figure 4 When the position is shown, the movable roller 7 is still in place and does not affect the normal movement of the partition 3 around the transmission wheel 8. When the partition 3 contacts the toggle rod 18, the toggle rod 18 is pushed by the partition 3 and slides along the limit slide rail 23 with the first slider 20. At the same time, since the second shaft 28 and the limit gear 24 are connected by a one-way bearing, when the toggle rod 18 moves with the connecting plate 19 and the connecting block 1 27, the spring assembly 26, the second shaft 28 and the limit gear 24, the limit gear 24 will move around the circular slide rail 33 as shown. Figure 7 As shown, it moves clockwise. At this time, the limiting rod 30 is always squeezed by the resistance rod 10 and inserted into the internal shaft 29, so that the internal shaft 29 cannot rotate. That is, the clockwork spring assembly 26 is in a locked state at this time.
[0047] Therefore, the clockwork spring assembly 26 pulls the traction rope 11 and the rectangular slider 12 through the first slide 21 and the fixed block 25 to move, and the rectangular slider 12 moves with the moving roller 7 to the end of the installation frame 5 close to the conveyor belt 4, so that the moving roller 7 can now receive the end of the noodles that are gradually detached from the conveyor belt 4. At the same time, the shaping rod 16 moves along the limiting slide rod 14 through the second slide rod 34, so that the shaping rod 16 extends from the inside of the installation frame 5 to gather the loosely stacked noodles that exceed the width.
[0048] When the rectangular slider 12 is close to the inner wall of the mounting frame 5, the limiting rod 30 is disengaged from the squeezing of the contact rod 10 and is disengaged from the inner shaft rod 29 by the elastic force of the second spring 31, so that the partition 3 can still drive the toggle rod 18 to move downward. At this time, the spring inside the spring assembly 26 is stretched, but the position of the rectangular slider 12 does not change, so that the rectangular slider 12 stays at the end of the mounting frame 5. At this time, the connecting rod 35 and the fixing rod 36 on the back of the square slider 13 are located in the path of the push rod 38. The transmission wheel 8 rotates and drives the transmission rod 2 39 and the transmission gear 40 to rotate. , so that the transmission rod 37 drives the push rod 38 to rotate, and the push rod 38 intermittently lifts the fixed rod 36, so that the fixed rod 36 drives the moving roller 7 on the square slider 13 to move up and down intermittently through the connecting rod 35. The upward movement of the moving roller 7 can increase the inclination angle of the noodles, so that individual protruding noodles fall on the partition 3 for unified end calibration. Then, when the first slider 20 moves to the tail end of the limiting slide rail 23, the first slider 20 retracts with the toggle rod 18, and the toggle rod 18 no longer hinders the partition 3. The device is reset, and the sorted noodles will fall on the horizontal conveying roller 6, and the two ends are limited by the limiting plate 9.
[0049] The noodles being conveyed will no longer be loose, the width will not exceed the standard, and there will be no individual protruding noodles.
[0050] It is further explained that the above-mentioned fixed connection should be understood in a broad sense unless otherwise clearly specified and limited. For example, it can be welding, gluing, or one-piece molding, etc., which are common means well known to those skilled in the art.
[0051] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A feeding device for an industrial processing and packaging sub-machine of fine noodles, comprising a feeding frame (1), the outer wall of the feeding frame (1) is fixedly connected to a feeding motor (2), the inner wall of the feeding frame (1) is rotatably connected to two transmission wheels (8), the output shaft of the feeding motor (2) is fixedly connected to one of the transmission wheels (8), the outer walls of the two transmission wheels (8) are sleeved with a same conveyor belt (4), the outer wall of the conveyor belt (4) is fixedly connected to a plurality of partitions (3), the outer wall of the feeding frame (1) is fixedly connected to two symmetrically distributed mounting frames (5), the inner wall of the mounting frame (5) is slidably connected to a rectangular slider (12), the inner wall of the rectangular slider (12) is slidably connected to a square slider (13), the two square sliders (13) are fixedly connected to the same moving roller (7), characterized in that Also includes: The partition driving mechanism (101) comprises a toggle rod (18), the outer wall of the toggle rod (18) is fixedly connected with a first slider (20), the first slider (20) is slidably connected to the outer wall of the feeding frame (1) through a limiting slide rail (23), the outer wall of the toggle rod (18) is fixedly connected with a connecting plate (19), the outer wall of the connecting plate (19) is slidably connected with a connecting block (27), a spring assembly (26) is provided above the connecting block (27), the connecting block (27) is fixedly connected to the spring inside the spring assembly (26), the outer wall of the spring assembly (26) is fixedly connected with a first slide seat (21), the inner wall of the first slide seat (21) is slidably connected with a fixed block (25), the outer wall of the fixed block (25) is fixedly connected with a traction rope (11), and the other end of the traction rope (11) is fixedly connected to the rectangular slider (12); The shaping mechanism (202) includes a shaping rod (16), the outer wall of the shaping rod (16) is fixedly connected with a second slide rod (34), the other end of the second slide rod (34) is slidably connected with a limit slide rod (14), and the limit slide rod (14) is fixedly connected to the installation frame (5).
2. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: The outer wall of the feeding frame (1) is provided with a circular slide rail (33), the inner wall of the circular slide rail (33) is fixedly connected with a tooth block group (22), and the outer wall of the tooth block group (22) is engaged with a limit gear (24).
3. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: The outer wall one-way bearing of the limiting gear (24) is provided with a second shaft rod (28), and the other end of the second shaft rod (28) is fixedly connected to the outer wall of the spring assembly (26).
4. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: One end of the spring inside the spring assembly (26) away from the connecting block (27) is fixedly connected to an internal shaft (29), the end of the internal shaft (29) is slidably connected to a limiting rod (30), and a plurality of evenly distributed second springs (31) are fixedly connected between the limiting rod (30) and the internal shaft (29).
5. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: The bottom outer wall of the installation frame (5) is fixedly connected with a second resistance rod (17) and a first resistance rod (10), and the second resistance rod (17) and the first resistance rod (10) are aligned with the circular slide rail (33).
6. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: An end flush mechanism (303) is provided on the outer wall of one of the transmission wheels (8), and the end flush mechanism (303) includes a second transmission rod (39), the second transmission rod (39) is fixedly connected to the transmission wheel (8), the outer wall of the second transmission rod (39) is fixedly connected to a transmission gear (40), the outer wall of the transmission gear (40) is meshed with another transmission gear (40), the outer wall of the other transmission gear (40) is fixedly connected to a first transmission rod (37), and the outer wall of the first transmission rod (37) is fixedly connected to two push rods (38).
7. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: A connecting rod (35) is fixedly connected to the side of the square slider (13) away from the moving roller (7), and a fixing rod (36) is fixedly connected to the outer wall of the connecting rod (35).
8. The feeding device of the sub-machine for industrial processing and packaging of fine dried noodles according to claim 1, characterized in that: Two evenly distributed first springs (15) are fixedly connected between the rectangular slider (12) and the mounting frame (5); a third spring (32) is fixedly connected between the square slider (13) and the rectangular slider (12); three evenly distributed horizontal conveying rollers (6) are fixedly connected between the two mounting frames (5); and two symmetrically distributed limiting plates (9) are fixedly connected to the outer walls of the three horizontal conveying rollers (6).