Noodle processing and drying device

By introducing heating components and filter components into the noodles drying device, the problem of low energy utilization in the prior art is solved, efficient recycling and cleaning treatment of airflow are achieved, and the energy efficiency of the drying process is improved.

CN222964352UActive Publication Date: 2025-06-10LINGSHAN COUNTY JINBAIXIAN FOOD CO LTD
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Patent Information

Application Number
CN202421677738.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-06-10
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

In the existing noodles drying technology, high-temperature and high-speed airflow cannot effectively recycle the high-temperature airflow when the noodles are dry, resulting in the heater repeatedly heating the gas with a lower temperature and low energy utilization rate.

Method used

A noodle processing and drying device is designed, including a heating assembly and a filtration assembly. The heating assembly heats and pressurizes the gas in the ventilation duct through a heating wire. The filter assembly filters the flour and moisture in the gas through the filter plate, and the filtered gas can be reused.

Benefits of technology

By recycling high-temperature airflow, energy utilization is improved, heating is reduced, and energy consumption is reduced. At the same time, the use of filter components ensures clean and efficient utilization of airflow.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a noodle processing and drying device, which relates to the technical field of noodle manufacturing and comprises two support plates, a transmission shaft is rotatably mounted between the two support plates, a conveyor belt is sleeved on the outer surface of the transmission shaft, and a plurality of ventilation slots are formed in the surface of the conveyor belt in a penetrating manner. The multiple ventilation grooves are evenly distributed relative to the surface of the conveying belt, multiple ventilation pipes are arranged in the conveying belt and linearly distributed in the length direction of the conveying belt, and a top plate is fixedly installed above the supporting plate corresponding to the ventilation pipes. According to the utility model, the heating assembly and the filtering assembly are arranged, the heating assembly is used for heating the gas in the equipment while accelerating the flow rate of the gas in the equipment, the filtering assembly is used for filtering the gas passing through the bent pipe, the temperature of the filtered gas is still higher than the external temperature, and the filtered gas can be reused, so that the energy utilization rate is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of noodle manufacturing, in particular to a noodle processing and drying device. Background Art

[0002] Noodles are a common food. Originated in China, they have a history of more than 4,000 years of production and consumption. They are the staple food in the Yellow River Basin in the north and the areas to the north. Noodles are a healthy food that is easy to make, easy to eat, and rich in nutrition. They can be used as both a staple food and a fast food. They have long been accepted and loved by people all over the world. When making noodles, flour from grains or beans is ground into dough with water, and then pressed or rolled or stretched into slices and then cut or pressed, or rubbed, pulled, pinched, etc. to make strips (narrow or wide, flat or round) or small slices, and finally boiled, fried, stewed, or deep-fried. There are many varieties and varieties. There are extremely rich local characteristics, such as the longevity noodles eaten when celebrating birthdays and the fragrant Italian noodles abroad. Delicious noodles are almost always mild and chewy, bringing the flavor of pasta to the extreme.

[0003] The existing technology has the following problems: when drying noodles, the noodles are dried by high-temperature and high-speed airflow. During the process of drying the noodles by the high-speed airflow, the airflow carrying flour and moisture is directly removed from the equipment by an exhaust fan, and the high-temperature airflow cannot be recycled. The heater needs to repeatedly heat the gas with a lower temperature, resulting in low energy utilization. Utility Model Content

[0004] In order to solve the above technical problems, a noodle processing and drying device is provided to solve the above problem of low energy utilization rate.

[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is:

[0006] A noodle processing and drying device comprises two support plates, a transmission shaft is rotatably installed between the two support plates, a conveyor belt is sleeved on the outer surface of the transmission shaft, a plurality of ventilation slots are opened through the surface of the conveyor belt, the plurality of ventilation slots are evenly distributed with respect to the surface of the conveyor belt, a plurality of ventilation pipes are arranged inside the conveyor belt, the plurality of ventilation pipes are linearly distributed along the length direction of the conveyor belt, a top plate is fixedly installed above the support plate corresponding to the ventilation pipe, a first conical pipe is fixedly installed on the upper surface of the top plate, an end of the first conical pipe away from the top plate is connected to a bent pipe, a filter assembly is fixedly installed on the outer surface of the bent pipe, the other end of the bent pipe is connected to a heating assembly, and the heating assembly is connected to the ventilation pipe through a connecting pipe.

[0007] Preferably, a rotating rod is provided above the conveyor belt. Both ends of the rotating rod are rotatably connected to the support plate. A plurality of cutting tools are fixedly installed on the outer surface of the rotating rod. The plurality of cutting tools are circumferentially distributed about the center line of the rotating rod. A material receiving assembly is provided on the side of the conveyor belt away from the rotating rod. A support rod is rotatably installed inside the support plate between the conveyor belt and the material receiving assembly.

[0008] Preferably, the filtering assembly includes a filtering box. A plurality of sliding grooves are penetratingly formed inside the filtering box. The plurality of sliding grooves are linearly distributed along the height direction of the filtering box. A filtering plate is provided inside the sliding groove. A sealing ring is fixedly installed on the inner wall of the filtering box corresponding to the filtering plate.

[0009] Preferably, the heating assembly includes a through pipe. A fixing frame is fixedly installed on the inner wall of the through pipe. A rotating shaft is rotatably installed inside the fixing frame. A plurality of blades are fixedly installed on the outer surface of the rotating shaft. The plurality of blades are circumferentially distributed about the center line of the rotating shaft. A heating box is fixedly installed on the outer surface of the through pipe. A heating wire is sleeved on the outer surface of the through pipe, and the heating wire is fixedly connected to the heating box.

[0010] Preferably, the material receiving assembly includes a material receiving box. A plurality of guide rods are fixedly installed on the bottom of the inner wall of the material receiving box. The plurality of guide rods are symmetrically distributed about the center line of the material receiving box. A sliding plate is provided inside the material receiving box. The sliding plate is slidably connected to the plurality of guide rods. A spring is sleeved on the outer surface of the guide rod. Both ends of the spring are fixedly connected to the bottom surface of the sliding plate and the inner wall of the material receiving box respectively.

[0011] Preferably, a plurality of sleeves are fixedly installed on the bottom surface of the material receiving box. The plurality of sleeves are symmetrically distributed about the center line of the material receiving box. A push rod is rotatably installed at the top of the inner wall of the sleeve. A moving plate corresponding to the inner wall of the sleeve is fixedly installed at the lower end of the push rod. Two side plates are fixedly installed on the lower surface of the moving plate. The two side plates are symmetrically distributed about the center line of the moving plate. A roller is rotatably installed on one side of the two side plates close to each other.

[0012] Preferably, a plurality of second conical pipes are fixedly installed on the outer surface of the ventilation pipe. The plurality of second conical pipes are linearly distributed along the center line of the ventilation pipe. The second conical pipes are communicated with the ventilation pipe.

[0013] Compared with the prior art, the advantages of the present utility model are as follows: By setting a heating component and a filtering component, the heating component heats the gas inside the equipment while accelerating the gas flow rate inside the equipment. The filtering component filters the gas passing through the elbow pipe. The temperature of the filtered gas is still higher than the external temperature, and the filtered gas can be reused, thereby improving the energy utilization rate. By setting a material receiving component, the dried noodles enter the material receiving component, and the spring and the sliding plate cooperate with each other to keep the height of the surface of the noodle sliding plate always consistent, thus reducing the probability of damage to the noodles. Description of the Drawings

[0014] Figure 1 It is a three-dimensional structure schematic diagram of the present utility model;

[0015] Figure 2 It is a three-dimensional structure schematic diagram of the present utility model from another perspective;

[0016] Figure 3 It is an internal structure schematic diagram of the present utility model;

[0017] Figure 4 It is an internal structure schematic diagram of the filtering component in the present utility model;

[0018] Figure 5 It is an internal structure schematic diagram of the heating component in the present utility model;

[0019] Figure 6 It is an internal structure schematic diagram of the material receiving component in the present utility model;

[0020] Figure 7 It is a three-dimensional structure schematic diagram of the ventilation pipe in the present utility model.

[0021] The reference numerals in the drawings are: 1, support plate; 2, transmission shaft; 3, conveyor belt; 4, ventilation groove; 5, ventilation pipe; 6, top plate; 7, first conical pipe; 8, elbow pipe; 9, filtering component; 10, heating component; 11, rotating rod; 12, cutter; 13, material receiving component; 14, support rod; 15, filtering box; 16, chute; 17, filter plate; 18, sealing ring; 19, through pipe; 20, fixing frame; 21, rotating shaft; 22, blade; 23, heating box; 24, heating wire; 25, material receiving box; 26, guide rod; 27, sliding plate; 28, spring; 29, sleeve; 30, push rod; 31, moving plate; 32, side plate; 33, roller; 34, second conical pipe. Detailed Embodiments

[0022] The following description is used to disclose the present utility model so that those skilled in the art can implement the present utility model. The preferred embodiments described below are only examples, and those skilled in the art can think of other obvious variations.

[0023] Refer to Figure 1-7 As shown in the figure, a noodle processing and drying device includes two support plates 1. A transmission shaft 2 is rotatably installed between the two support plates 1. A conveyor belt 3 is sleeved on the outer surface of the transmission shaft 2. The transmission shaft 2 drives the conveyor belt 3 to convey the freshly produced noodles. A number of ventilation slots 4 are formed through the surface of the conveyor belt 3. The number of ventilation slots 4 is evenly distributed on the surface of the conveyor belt 3. A number of ventilation pipes 5 are arranged inside the conveyor belt 3. The number of ventilation pipes 5 is linearly distributed along the length direction of the conveyor belt 3. High-speed and high-temperature gas impacts the wet noodles through the through pipes and ventilation slots 4. Above the support plate 1 corresponding to the ventilation pipe 5, a top plate 6 is fixedly installed. On the upper surface of the top plate 6, a first conical pipe 7 is fixedly installed. One end of the first conical pipe 7 away from the top plate 6 is connected to an elbow 8. A filter assembly 9 is fixedly installed on the outer surface of the elbow 8. The other end of the elbow 8 is connected to a heating assembly 10. The heating assembly 10 is connected to the ventilation pipe 5 through a connecting pipe. The gas carrying part of the flour and moisture passes through the first conical plate, the elbow 8 and the filter assembly 9 in sequence. The filter assembly 9 filters the flour and moisture in the gas. The filtered gas passes through the heating assembly 10 and the connecting pipe and then enters the ventilation pipe 5. The heating assembly 10 heats and pressurizes the gas.

[0024] As Figure 3 shown in the figure, a rotating rod 11 is arranged above the conveyor belt 3. Both ends of the rotating rod 11 are rotatably connected to the support plate 1. A number of cutters 12 are fixedly installed on the outer surface of the rotating rod 11. The number of cutters 12 is circumferentially distributed about the center line of the rotating rod 11. The rotating rod 11 drives the cutters 12 to cut the noodles. On the side of the conveyor belt 3 away from the rotating rod 11, a material receiving assembly 13 is arranged. Inside the support plate 1 between the conveyor belt 3 and the material receiving assembly 13, a support rod 14 is rotatably installed. The dried noodles enter the material receiving assembly 13 through the support rod 14.

[0025] As Figure 4 shown in the figure, the filter assembly 9 includes a filter box 15. A number of sliding grooves 16 are formed through the inside of the filter box 15. The number of sliding grooves 16 is linearly distributed along the height direction of the filter box 15. A filter plate 17 is arranged inside the sliding groove 16. The filter plate 17 filters the flour and moisture in the gas entering the filter box 15. At the same time, the filter plate 17 can be taken out through the sliding groove 16 during operation. A sealing ring 18 is fixedly installed on the inner wall of the filter box 15 corresponding to the filter plate 17. The sealing ring 18 prevents the gas from leaving the device through the gap between the sliding groove 16 and the filter plate 17.

[0026] As Figure 5As shown in the figure, the heating component 10 includes a through pipe 19. A fixing frame 20 is fixedly installed on the inner wall of the through pipe 19. A rotating shaft 21 is rotatably installed inside the fixing frame 20. A plurality of blades 22 are fixedly installed on the outer surface of the rotating shaft 21. The plurality of blades 22 are circumferentially distributed around the center line of the rotating shaft 21. The rotating shaft 21 drives the blades 22 to rotate at high speed, accelerating the gas flow rate inside the device. A heating box 23 is fixedly installed on the outer surface of the through pipe 19. A heating wire 24 is sleeved on the outer surface of the through pipe 19, and the heating wire 24 is fixedly connected to the heating box 23. The heating wire 24 heats the gas inside the through pipe 19.

[0027] As Figure 6 shown in the figure, the material receiving component 13 includes a material receiving box 25. A plurality of guide rods 26 are fixedly installed at the bottom of the inner wall of the material receiving box 25. The plurality of guide rods 26 are symmetrically distributed about the center line of the material receiving box 25. A sliding plate 27 is arranged inside the material receiving box 25. The sliding plate 27 is slidably connected to the plurality of guide rods 26. A spring 28 is sleeved on the outer surface of the guide rod 26. Both ends of the spring 28 are fixedly connected to the bottom surface of the sliding plate 27 and the inner wall of the material receiving box 25 respectively. The dried noodles enter the surface of the sliding plate 27 through the support rod 14. When reaching a certain weight, the spring 28 contracts, keeping the height of the noodles entering the material receiving box 25 consistent all the time, thereby reducing the probability of material damage.

[0028] As Figure 6 shown in the figure, a plurality of sleeves 29 are fixedly installed on the bottom surface of the material receiving box 25. The plurality of sleeves 29 are symmetrically distributed about the center line of the material receiving box 25. A push rod 30 is rotatably installed at the top of the inner wall of the sleeve 29. A moving plate 31 corresponding to the inner wall of the sleeve 29 is fixedly installed at the lower end of the push rod 30. Two side plates 32 are fixedly installed on the lower surface of the moving plate 31. The two side plates 32 are symmetrically distributed about the center line of the moving plate 31. A roller 33 is rotatably installed on one side where the two side plates 32 are close to each other. When the material receiving box 25 is full, the push rod 30 pushes the roller 33 to contact the ground while the sleeve 29 leaves the ground, thereby facilitating the replacement of the material receiving component 13 by the staff.

[0029] As Figure 7 shown in the figure, a plurality of second conical pipes 34 are fixedly installed on the outer surface of the ventilation pipe 5. The plurality of second conical pipes 34 are linearly distributed along the center line of the ventilation pipe 5. The second conical pipes 34 are communicated with the ventilation pipe 5. The high-temperature and high-pressure gas impacts on the surface of the material through the second conical pipes 34. The second conical pipes 34 reduce the flow rate of the gas entering the ventilation groove 4. The multiple second conical pipes 34 can ensure that the noodles above the entire conveyor belt 3 can be evenly blown by the hot air.

[0030] Working principle: The freshly produced noodles enter the surface of conveyor belt 3. The rotating rod 11 drives the cutter 12 to cut the noodles to an appropriate length. At the same time, the rotating shaft 21 drives the blade 22 to rotate at high speed, increasing the gas flow rate in the through pipe 19. The heating wire 24 heats the temperature of the gas in the through pipe 19. The high-temperature and high-speed gas passes through the connecting pipe, ventilation pipe 5, second conical pipe 34, and ventilation groove 4 in sequence and impacts on the surface of the noodles, enabling the noodles to be quickly dried. At the same time, the gas containing flour and moisture passes through the first conical pipe 7 and elbow 8 and enters the filtering assembly 9 in sequence. The filter plate 17 in the filtering assembly 9 filters the gas containing flour and moisture. The filtered gas enters the heating assembly 10, thereby achieving the reuse of the gas. The dried noodles enter the surface of the slide plate 27 through the support rod 14. When reaching a certain weight, the spring 28 contracts, keeping the height of the noodles entering the receiving box 25 consistent all the time, thereby reducing the probability of material damage. When the receiving box 25 is full, the push rod 30 pushes the roller 33 to contact the ground while the sleeve 29 leaves the ground, thereby facilitating the replacement of the receiving component 13 by the staff.

[0031] The above shows and describes the basic principle, main features, and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification is only the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A noodle processing and drying device, comprising two support plates (1), characterized in that: A transmission shaft (2) is rotatably mounted between the two support plates (1); a conveyor belt (3) is sleeved on the outer surface of the transmission shaft (2); a plurality of ventilation slots (4) are provided through the surface of the conveyor belt (3); the plurality of ventilation slots (4) are evenly distributed on the surface of the conveyor belt (3); a plurality of ventilation pipes (5) are provided inside the conveyor belt (3); the plurality of ventilation pipes (5) are linearly distributed along the length direction of the conveyor belt (3); a top plate (6) is fixedly mounted above the support plate (1) corresponding to the ventilation pipe (5); a first conical pipe (7) is fixedly mounted on the upper surface of the top plate (6); an end of the first conical pipe (7) away from the top plate (6) is connected to a bend pipe (8); a filter assembly (9) is fixedly mounted on the outer surface of the bend pipe (8); the other end of the bend pipe (8) is connected to a heating assembly (10); the heating assembly (10) is connected to the ventilation pipe (5) through a connecting pipe.

2. A noodle processing and drying device according to claim 1, characterized in that: A rotating rod (11) is provided above the conveyor belt (3), both ends of the rotating rod (11) are rotatably connected to the support plate (1), a plurality of knives (12) are fixedly mounted on the outer surface of the rotating rod (11), and the plurality of knives (12) are distributed circumferentially about the center line of the rotating rod (11), a material receiving assembly (13) is provided on the side of the conveyor belt (3) away from the rotating rod (11), and a support rod (14) is rotatably mounted on the inner side of the support plate (1) between the conveyor belt (3) and the material receiving assembly (13).

3. The noodle processing and drying device according to claim 1, characterized in that: The filter assembly (9) comprises a filter box (15), a plurality of slide grooves (16) are provided through the interior of the filter box (15), the plurality of slide grooves (16) are linearly distributed along the height direction of the filter box (15), a filter plate (17) is provided inside the slide groove (16), and a sealing ring (18) is fixedly installed on the inner wall of the filter box (15) corresponding to the filter plate (17).

4. The noodle processing and drying device according to claim 1, characterized in that: The heating component (10) comprises a through pipe (19), a fixing frame (20) is fixedly mounted on the inner wall of the through pipe (19), a rotating shaft (21) is rotatably mounted inside the fixing frame (20), a plurality of blades (22) are fixedly mounted on the outer surface of the rotating shaft (21), and the plurality of blades (22) are circumferentially distributed around the center line of the rotating shaft (21), a heating box (23) is fixedly mounted on the outer surface of the through pipe (19), a heating wire (24) is sleeved on the outer surface of the through pipe (19), and the heating wire (24) is fixedly connected to the heating box (23).

5. The noodle processing and drying device according to claim 2, characterized in that: The material receiving assembly (13) comprises a material receiving box (25), a plurality of guide rods (26) are fixedly mounted on the bottom of the inner wall of the material receiving box (25), the plurality of guide rods (26) are symmetrically distributed about the center line of the material receiving box (25), a slide plate (27) is provided inside the material receiving box (25), the slide plate (27) is slidably connected to the plurality of guide rods (26), a spring (28) is sleeved on the outer surface of the guide rod (26), and two ends of the spring (28) are respectively fixedly connected to the bottom surface of the slide plate (27) and the inner wall of the material receiving box (25).

6. A noodle processing and drying device according to claim 5, characterized in that: A plurality of sleeves (29) are fixedly mounted on the bottom surface of the material receiving box (25), and the plurality of sleeves (29) are symmetrically distributed about the center line of the material receiving box (25). A push rod (30) is rotatably mounted on the top of the inner wall of the sleeve (29), and a movable plate (31) corresponding to the inner wall of the sleeve (29) is fixedly mounted on the lower end of the push rod (30). Two side plates (32) are fixedly mounted on the lower surface of the movable plate (31), and the two side plates (32) are symmetrically distributed about the center line of the movable plate (31), and a roller (33) is rotatably mounted on the side of the two side plates (32) close to each other.

7. The noodle processing and drying device according to claim 1, characterized in that: A plurality of second conical tubes (34) are fixedly mounted on the outer surface of the ventilation tube (5); the plurality of second conical tubes (34) are linearly distributed along the center line of the ventilation tube (5); and the second conical tubes (34) are in communication with the ventilation tube (5).