Rice noodle processing and cooling device
By using a cooling device that agitates the rice noodles in cold water, the problem of sticking caused by the inability to cool the extruded rice noodles in time is solved, thus achieving rapid cooling and high-quality production of rice noodles.
Patent Information
- Application Number
- CN202520305418.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-25
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-25
AI Technical Summary
The rice noodles extruded by existing rice noodle machines are at a high temperature and cannot be cooled in time when they come into direct contact with the transport mechanism, causing the rice noodles to stick together and affecting the quality of the finished product.
Design a rice noodle processing cooling device that uses cold water to make full contact with the rice noodles, thereby accelerating cooling and preventing them from sticking together.
It effectively speeds up the cooling process of rice noodles, improves the quality of rice noodle production, and prevents the rice noodles from sticking together.
Smart Images

Figure CN223814856U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to rice line processing technical field, concretely is a rice line processing cooling device. BACKGROUND
[0002] Rice line is traditional characteristic food, usually adopts rice flour to make, specifically, usually is with the rice paste that adds water and mixes even into rice line machine shaping into a root root rice line, so rice line machine is the link that must be made rice line, in the prior art, since rice line machine adopts hot pressure technology to press the rice paste, then extrudes the rice paste from the discharge hole, thereby realizing the shaping of rice line.
[0003] For the discharge hole of rice line, since the spacing between each other is close, and the extruded rice line temperature is high, when it directly contacts with the surface of the transportation mechanism, since the extruded rice line cannot be cooled in time, therefore, the mutual adhesion between rice lines is prone to occur, thereby affecting the quality of rice line finished product quality. For this reason, we propose a rice line processing cooling device. UTILITY MODEL CONTENTS
[0004] In view of the above-mentioned problems in the prior art, the utility model provides a rice line processing cooling device, which has the advantages of driving the rice line to reciprocate in cold water, enabling the rice line to be fully contacted with the cold water, accelerating the cooling speed, and improving the quality of rice line production.
[0005] The technical scheme of the utility model is as follows: a rice line processing cooling device, comprising an operation table, a transportation mechanism and a mounting box are arranged on the operation table, a discharge mechanism is fastened to the top of the operation table through a mounting frame, and the discharge mechanism is located directly above the box; a support hole plate is arranged between the discharge mechanism and the box, the bottom of the support hole plate is bent downward to form a bending part, one end of the support hole plate extends horizontally above the transportation mechanism, a plurality of partition hole plates are arranged on the top of the support hole plate at equal intervals and are fastened to the top surface of the support hole plate, a containing cavity for containing rice lines is formed between adjacent partition hole plates; the side walls of the partition hole plates at the end of the support hole plate are all rotationally connected to mounting seats through shafts, a first motor is mounted on one of the mounting seats and is fastened to the shaft, and the bottom of the mounting seat is connected to the operation table through a lifting mechanism.
[0006] Optionally, the lifting mechanism comprises a through slot formed in the top of the operation table, a support frame is slidably connected in the through slot, the top of the support frame is fastened to the bottom of the mounting seat, and an electric push rod is vertically connected between the lower end of the support frame and the bottom of the operation table.
[0007] Optionally, a vertical connecting guide rod is arranged between the support frame and the lower end of the mounting seat, and the guide rod penetrates the operation table.
[0008] Optionally, a water level gauge is connected in the box, and a plurality of first connecting pipes are connected to the side wall of the box.
[0009] Optionally, the conveying mechanism comprises a plurality of rotating rollers rotatably connected to the operation table, a conveying belt connected to the rotating rollers, and a second motor connected to the operation table and arranged on the rotating roller at one end, wherein the support hole plate horizontally extends above the conveying belt.
[0010] The operation table is provided with a control switch, and the water level gauge, the second motor and the first motor are connected to the control switch.
[0011] Optionally, a plurality of annular partitions are connected to the surface of the conveying belt at equal intervals in the circumferential direction, and a conveying channel is formed between adjacent annular partitions, the number of the conveying channels corresponds to the number of the accommodating cavities.
[0012] Optionally, an inclined surface for guiding material is arranged on the side of the conveying belt away from the box, and the inclined surface is located below the conveying belt.
[0013] Optionally, a collecting box is arranged below the conveying belt and is fastened to the bottom surface of the operation table, and the collecting box is communicated with the box through the second connecting pipe.
[0014] Compared with the prior art, after the rice noodles fall into the accommodating cavities, the support hole plate and the partition hole plate are controlled to move downward into the box and contact with cold water, and at the same time, the first motor is controlled to drive the support hole plate and the partition hole plate to reciprocating rotate, so that the rice noodles are driven to reciprocating shake in the cold water, the rice noodles can be fully contacted with the cold water, the cooling speed is effectively accelerated, the adhesion of the rice noodles is greatly avoided, and the quality of the rice noodle production is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0016] Figure 1 Structure of the present application Figure 1 .
[0017] Figure 2 Structure of the present application Figure 2 .
[0018] Figure 3This is a schematic diagram showing the connection between the support plate and the partition plate of this utility model.
[0019] Figure 4 This is a schematic diagram showing the connection between the second connecting pipe and the housing of this utility model.
[0020] In the diagram: 1. Discharge mechanism; 2. Mounting frame; 3. First motor; 4. Control switch; 5. Electric push rod; 6. Support frame; 7. Guide rod; 8. Box body; 9. Operating table; 10. Second motor; 11. Inclined surface; 12. Conveyor belt; 13. Annular partition; 14. Support perforated plate; 15. Dividing perforated plate; 16. Mounting base; 17. Water level gauge; 18. First connecting pipe; 19. Through groove; 20. Collection box; 21. Bending part; 22. Second connecting pipe; 23. Receiving cavity; 24. Rotating roller. Detailed Implementation
[0021] The technical solution of this utility model will be clearly and completely described below with reference to its embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0022] Reference Figures 1 to 4 This utility model provides a technical solution: a rice noodle processing cooling device, including an operating table 9, a mounting box 8 on the operating table 9, and multiple first connecting pipes 18 connected to the side wall of the box 8. The number of first connecting pipes 18 is at least two, and the ends of the first connecting pipes 18 are connected to a circulating water pump device to realize the circulation and transportation of cold water in the box 8, ensuring that there is always cold water in the box 8 for cooling the rice noodles. At the same time, a water level gauge 17 for water level detection is connected in the box 8 to prevent water from overflowing from the top of the box 8 too quickly. In use, the top of the operating table 9 is fixed to the discharge mechanism 1 by the mounting bracket 2, and the discharge port of the discharge mechanism 1 is located directly above the box 8, so that the extruded rice noodles can directly contact the cold water in the box 8 for cooling.
[0023] like Figure 1 , 2 As shown, a support perforated plate 14 for receiving rice noodles is provided between the discharge mechanism 1 and the box body 8. The bottom of the support perforated plate 14 is bent downward to form a bent part 21. Multiple partition perforated plates 15 are provided at equal intervals on the top of the support perforated plate 14 and are fastened to its top surface. A receiving cavity 23 for holding rice noodles is formed between adjacent partition perforated plates 15. The extruded rice noodles fall into the receiving cavity 23. At the same time, the perforated plates of the support perforated plate 14 and the partition perforated plates 15 allow cold water to quickly come into contact with the rice noodles in the receiving cavity 23, thereby accelerating the cooling of the rice noodles.
[0024] As shown in Figure 3 , 4 , the side wall of the partition hole plate 15 located at the end of the support hole plate 14 is rotatably connected with the mounting seat 16 through a rotating shaft, a first motor 3 is mounted on one of the mounting seats 16 and is fastened with the rotating shaft, a through slot 19 is formed on the top of the operation table 9, a support frame 6 is slidably connected in the through slot 19, the top of the support frame 6 is fastened with the bottom of the mounting seat 16, an electric push rod 5 is perpendicularly connected between the lower end of the support frame 6 and the bottom of the operation table 9, a guide rod 7 is perpendicularly connected between the support frame 6 and the lower end of the mounting seat 16, and the guide rod 7 penetrates through the operation table 9. After the rice noodles fall into the accommodating cavity 23, the electric push rod 5 drives the support hole plate 14 and the partition hole plate 15 to move downward to contact with the cold water in the box 8, and at the same time, the first motor 3 drives the support hole plate 14 and the partition hole plate 15 to reciprocatingly rotate, so as to drive the rice noodles to reciprocatingly shake in the cold water, so that the rice noodles can be fully contacted with the cold water, and the cooling speed is effectively increased.
[0025] As shown in Figure 3 , 4 , a rotating roller 24 is rotatably connected to the side of the operation table 9 away from the mounting box 8, the rotating roller 24 is connected with a conveying belt 12, one end of the support hole plate 14 extends horizontally above the conveying belt 12, and a second motor 10 is connected to the rotating roller 24 at the one end and is fastened with the operation table 9. The top of the operation table 9 is connected with a control switch 4, the water level meter 17, the second motor 10 and the first motor 3 are connected with the control switch 4. After the cooling of the rice noodles is completed, the rice noodles are moved upward under the action of the electric push rod 5 and are driven to rotate by the first motor 3, so that the rice noodles fall from the end of the support hole plate 14 to the top of the conveying belt 12 and are transported to the next processing station.
[0026] In summary, the rice noodle processing and cooling device. In use, in order to avoid the rice noodles from being scattered on the top of the conveying belt 12, a plurality of annular partitions 13 are connected on the surface of the conveying belt 12 in a circumferential direction at equal intervals, a conveying channel is formed between adjacent annular partitions 13, the number of the conveying channels corresponds to the number of the accommodating cavities 23 and is equal to the number of the accommodating cavities 23, so that the falling rice noodles are located in the conveying channels, an inclined surface 11 for guiding the material is arranged on the side of the conveying belt 12 away from the box 8, and the inclined surface 11 is located below the conveying belt 12, so as to facilitate the discharging of the rice noodles. A plurality of water leakage holes are arranged on the surface of the conveying belt 12 in use, a collecting box 20 is arranged below the conveying belt 12 and is fastened with the bottom surface of the operation table 9, the collecting box 20 is communicated with the box 8 through a second connecting pipe 22, after the rice noodles are cooled by the cold water, the rice noodles fall to the top of the conveying belt 12, because the water is not drained, the water of the cold water can fall into the collecting box 20 through the water leakage holes, and the cold water is transported into the box 8 through the second connecting pipe 22, so as to realize the recycling.
[0027] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A rice processing and cooling device comprising an operating table (9), characterized in that, The conveying mechanism and the box body (8) are arranged on the operation table (9), the top of the operation table (9) is fastened with the discharging mechanism (1) through the mounting frame (2), and the discharging mechanism (1) is located directly above the box body (8); A support hole plate (14) is arranged between the discharging mechanism (1) and the box body (8), the bottom of the support hole plate (14) is bent downward to form a bending portion (21), one end of the support hole plate (14) extends horizontally to above the conveying mechanism, a plurality of partition hole plates (15) are arranged equidistantly on the top of the support hole plate (14) and are fastened with the top surface of the support hole plate (14), and a containing cavity (23) for containing rice lines is formed between adjacent partition hole plates (15); The side walls of the partition hole plates (15) located at the end of the support hole plate (14) are rotationally connected with the mounting seats (16) through rotating shafts, and a first motor (3) is mounted on one of the mounting seats (16) and is fastened with the rotating shaft, and the bottom of the mounting seat (16) is connected with the operation table (9) through a lifting mechanism.
2. The rice noodle processing and cooling apparatus as claimed in claim 1, wherein, The lifting mechanism comprises a through groove (19) formed in the top of the operation table (9), and a support frame (6) is slidably connected in the through groove (19), the top of the support frame (6) is fastened with the bottom of the mounting seat (16), and an electric push rod (5) is perpendicularly connected between the lower end of the support frame (6) and the bottom of the operation table (9).
3. The rice noodle processing and cooling apparatus as claimed in claim 2, wherein, A guide rod (7) is perpendicularly connected between the support frame (6) and the lower end of the mounting seat (16), and the guide rod (7) penetrates through the operation table (9).
4. The rice processing cooling apparatus according to claim 1, wherein A water level meter (17) is connected in the box body (8), and a plurality of first connecting pipes (18) are connected on the side wall of the box body (8).
5. The rice processing cooling apparatus according to any one of claims 1 to 4, wherein The conveying mechanism comprises a plurality of rotating rollers (24) rotationally connected with the operation table (9), a conveying belt (12) is connected on the rotating rollers (24), one end of the support hole plate (14) extends horizontally to above the conveying belt (12), and a second motor (10) is connected on the rotating roller (24) located at the one end and is fastened with the operation table (9); The top of the operation table (9) is connected with a control switch (4), and the water level meter (17), the second motor (10) and the first motor (3) are connected with the control switch (4).
6. The rice processing cooling apparatus according to claim 5, wherein A plurality of annular partitions (13) are connected equidistantly in the circumferential direction on the surface of the conveying belt (12), and a conveying channel is formed between adjacent annular partitions (13), the number of the conveying channels corresponds to the positions of the containing cavities (23) and is equal to the number of the containing cavities (23).
7. The rice processing cooling device according to claim 5, wherein An inclined surface (11) for guiding materials is arranged on the side of the conveying belt (12) away from the box body (8), and the inclined surface (11) is located below the conveying belt (12).
8. The rice processing cooling device according to claim 5, wherein A collecting box (20) is fastened with the bottom surface of the operation table (9) and is arranged below the conveying belt (12), and the collecting box (20) is communicated with the box body (8) through a second connecting pipe (22).