Cooling machine for processing Chinese yam noodles

By designing a cooler for yam noodles processing and using the combination of dispersion plates and fans, the problem of poor cooling of multiple noodles in clusters is solved, achieving a more efficient cooling effect.

CN223179126UActive Publication Date: 2025-08-01JIUJIANG FANGRUN AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422296214.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-20
Publication Date
2025-08-01
Estimated Expiration
2034-09-20

AI Technical Summary

Technical Problem

When the dough is extruded and discharged through the forming holes, multiple noodles are clustered together for cooling, resulting in poor cooling effect.

Method used

A cooler for yam surface processing is designed, including a rotating shaft, conveying assembly, cooling pipe, dispersion plate and fan. The clusters of noodles are dispersed through the dispersion blocks and diverting columns on the dispersion plate, and the combined action of the cooling pipe and the fan is used to cool.

Benefits of technology

Improve the heat dissipation effect of the noodles and enhance the cooling effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of production equipment, in particular to a cooling machine for processing Chinese yam noodles. A cooling machine for processing Chinese yam noodles comprises a rack, symmetrically-distributed rotating shafts are rotationally connected to the rack, a conveying assembly is arranged between the symmetrically-distributed rotating shafts, a motor is arranged on the rack, an output shaft of the motor is connected with one rotating shaft, a cooling pipe in contact fit with the conveying assembly is arranged on the rack, and a fixing frame is fixedly connected to the rack. A supporting frame is slidably connected to the fixing frame, a dispersing plate is fixedly connected to the end of the supporting frame, dispersing blocks distributed at equal intervals are fixedly connected to one side in the dispersing plate, and flow dividing columns distributed at equal intervals are fixedly connected to the other side in the dispersing plate. When clustered Chinese yam noodles fall on the dispersing plate, the clustered Chinese yam noodles are dispersed through the dispersing block which moves back and forth in a reciprocating manner, and then are dispersed and guided to the conveying assembly to be conveyed through the flow dividing column, so that heat dissipation of the Chinese yam noodles is facilitated, and the cooling effect is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of production equipment, in particular to a cooler for processing yam noodles. Background Art

[0002] With the enhancement of people's health awareness, various health-care noodles have emerged. Since yam has the effects of invigorating the spleen and lungs, benefiting the stomach and kidneys, consolidating the kidney essence, improving eyesight, assisting the five internal organs, strengthening the muscles and bones, calming the mind, and prolonging life, it is often used to make noodles. In the process of some noodle processing, a cooler is needed for cooling. However, when the dough is extruded and formed through the forming holes and discharged, multiple noodles are clustered together for conveying and cooling, and the clustered noodles are likely to affect heat dissipation, resulting in poor cooling effect. Content of the Utility Model

[0003] The utility model provides a cooler for processing yam noodles to solve the problem that when the dough is extruded and formed through the forming holes and discharged, multiple noodles are clustered together for conveying and cooling, and the clustered noodles are likely to affect heat dissipation, resulting in poor cooling effect.

[0004] Technical Solution: A cooler for processing yam noodles includes a frame. Symmetrically distributed rotating shafts are rotatably connected to the frame. A conveying component is arranged between the symmetrically distributed rotating shafts. A motor is arranged on the frame, and the output shaft of the motor is connected to one of the rotating shafts. A cooling pipe in contact and cooperation with the conveying component is arranged on the frame. A fixing frame is fixedly connected to the frame. A support frame is slidably connected to the fixing frame. A dispersing plate is fixedly connected to the end of the support frame. On one side inside the dispersing plate, equally spaced dispersing blocks are fixedly connected. On the other side inside the dispersing plate, equally spaced flow dividing columns are fixedly connected. A circulating component for circulating and cooling the coolant is arranged on the frame. A reciprocating component for reciprocating movement of the dispersing plate is arranged between the other rotating shaft and the support frame.

[0005] In addition, particularly preferably, the circulating component includes a water tank and a condensation tank. The water tank and the condensation tank are arranged on the frame. A water pump is arranged on the condensation tank. The output end of the water pump is communicated with the condensation tank. The input pipe of the water pump is communicated with one end of the cooling pipe. The other end of the cooling pipe is communicated with the water tank. A connecting pipe is communicated between the water tank and the condensation tank.

[0006] In addition, particularly preferably, the reciprocating component includes centrally symmetrically distributed cams. The centrally symmetrically distributed cams are fixedly connected to the other rotating shaft. Symmetrically distributed contact columns are fixedly connected to the support frame. The contact columns are in contact and cooperation with the cams.

[0007] In addition, particularly preferably, the contact columns are designed in a conical shape.

[0008] In addition, particularly preferably, it further includes a housing. The housing is fixedly connected to the top of the frame. A filter screen is arranged on the top of the housing. A fan is arranged inside the housing.

[0009] Beneficial effects: 1. When the clustered yam noodles fall on the dispersion plate, the clustered yam noodles are first dispersed by the dispersing blocks that reciprocate back and forth, and then dispersed and guided by the shunt columns to the conveying assembly for conveying, thereby facilitating the heat dissipation of the yam noodles and improving the cooling effect;

[0010] 2. The yam noodles are cooled and temperature-reduced by the combined action of the cooling pipe and the fan, improving the cooling effect. Description of the Drawings

[0011] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0012] Figure 2 It is a three-dimensional structural sectional view of the present utility model.

[0013] Figure 3 It is a three-dimensional structural schematic diagram of components such as the dispersion plate, dispersing blocks and shunt columns of the present utility model.

[0014] Figure 4 It is a three-dimensional structural schematic diagram of components such as the housing, filter screen and fan of the present utility model.

[0015] Among them, the above-mentioned drawings include the following reference numerals: 1. Frame, 2. Rotating shaft, 3. Conveying assembly, 4. Motor, 5. Cooling pipe, 51. Water tank, 52. Water pump, 53. Condensation box, 54. Connecting pipe, 6. Dispersion plate, 61. Dispersing blocks, 62. Shunt columns, 63. Fixed frame, 64. Support frame, 65. Contact column, 66. Cam, 7. Housing, 71. Filter screen, 72. Fan. Specific Embodiments

[0016] To make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below in conjunction with specific embodiments and with reference to the drawings. It should be understood that these descriptions are exemplary and are not intended to limit the scope of the present utility model. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present utility model.

[0017] Example 1: A cooler for processing yam noodles, refer to Figures 1 - 3, including a machine frame 1. On the upper part of the left and right sides of the machine frame 1, there are rotatably connected rotating shafts 2. Between the two rotating shafts 2, there is a conveying component 3. The conveying component 3 includes two driving wheels and a conveyor belt. The two driving wheels are respectively arranged on the symmetrically distributed rotating shafts 2, and there is a conveyor belt between the two driving wheels. On the left front side of the machine frame 1, there is a motor 4, and the output shaft of the motor 4 is connected to the left rotating shaft 2. On the machine frame 1, there is a cooling pipe 5 in contact and cooperation with the conveying component 3. On the right side of the machine frame 1, there is a fixed frame 63 fixedly connected. On the fixed frame 63, there is a sliding connection with a support frame 64. At the upper end of the support frame 64, there is a dispersion plate 6 fixedly connected. On the right part of the dispersion plate 6, there are evenly distributed dispersion blocks 61 fixedly connected. On the left part of the dispersion plate 6, there are evenly distributed flow splitting columns 62 fixedly connected. On the machine frame 1, there is a circulation component for circulating and cooling the coolant. Between the right rotating shaft 2 and the support frame 64, there is a reciprocating component for reciprocating movement of the dispersion plate 6.

[0018] The circulation component includes a water tank 51 and a condensation tank 53. The water tank 51 and the condensation tank 53 are arranged on the machine frame 1. On the condensation tank 53, there is a water pump 52. The output end of the water pump 52 is communicated with the condensation tank 53, and the input pipe of the water pump 52 is communicated with one end of the cooling pipe 5. The other end of the cooling pipe 5 is communicated with the water tank 51. Between the water tank 51 and the condensation tank 53, there is a connecting pipe 54 communicated.

[0019] The reciprocating component includes symmetrically distributed cams 66 centered. The symmetrically distributed cams 66 are fixedly connected to the right rotating shaft 2. On the front and rear parts of the support frame 64, there are contact columns 65 fixedly connected. The contact columns 65 are in contact and cooperation with the cams 66, and the contact columns 65 are designed in a conical shape.

[0020] Referring to Figure 1 , it also includes a housing 7. The housing 7 is fixedly connected to the top of the machine frame 1. On the top of the housing 7, there are two filter screens 71. Inside the housing 7, there are two fans 72.

[0021] During use, an appropriate amount of coolant is filled in the water tank 51. The coolant in the water tank 51 enters the condensation tank 53 through the connecting pipe 54 for cooling. The motor 4 is started, and the motor 4 drives the conveying component 3 to operate through the rotating shaft 2. At the same time, the water pump 52 is started, and the water pump 52 pumps the coolant in the condensation tank 53 and conveys it to the cooling pipe 5, and finally returns to the water tank 51 to form a circulation loop. At the same time, the right rotating shaft 2 drives the cam 66 to rotate. The cam 66 and the contact column 65 are in extrusion and pushing cooperation to drive the support frame 64 to reciprocate back and forth. The support frame 64 drives the dispersion plate 6 to reciprocate back and forth. The dispersion plate 6 drives the dispersion blocks 61 and the flow splitting columns 62 to reciprocate back and forth. When the clustered yam noodles fall on the dispersion plate 6, first, the clustered yam noodles are dispersed by the reciprocating dispersion blocks 61 back and forth, and then they are dispersed and guided by the flow splitting columns 62 to the conveying component 3 for conveying, and then they are cooled and cooled by the combined action of the cooling pipe 5 and the fan 72.

[0022] It should be understood that this embodiment is only used to illustrate the present invention and not to limit the scope of the present invention. In addition, it should be understood that after reading the content taught by the present invention, those skilled in the art can make various changes or modifications to the present invention, and these equivalent forms also fall within the scope defined by the appended claims of this application.

Claims

1. A cooler for processing yam noodles, characterized in that, It includes a machine frame (1), on which symmetrically distributed rotating shafts (2) are rotatably connected. A conveying component (3) is arranged between the symmetrically distributed rotating shafts (2). A motor (4) is arranged on the machine frame (1), and the output shaft of the motor (4) is connected to one of the rotating shafts (2). A cooling pipe (5) which is in contact and cooperation with the conveying component (3) is arranged on the machine frame (1). A fixing frame (63) is fixedly connected to the machine frame (1), and a supporting frame (64) is slidably connected to the fixing frame (63). A dispersing plate (6) is fixedly connected to the end of the supporting frame (64). On one side inside the dispersing plate (6), equally spaced dispersing blocks (61) are fixedly connected. On the other side inside the dispersing plate (6), equally spaced flow dividing columns (62) are fixedly connected. A circulating component for circulating and cooling the coolant is arranged on the machine frame (1). A reciprocating component for reciprocating movement of the dispersing plate (6) is arranged between the other rotating shaft (2) and the supporting frame (64).

2. The cooler for processing yam noodles according to claim 1, characterized in that, The circulating component includes a water tank (51) and a condensation tank (53). The water tank (51) and the condensation tank (53) are arranged on the machine frame (1). A water pump (52) is arranged on the condensation tank (53). The output end of the water pump (52) is communicated with the condensation tank (53). The input pipe of the water pump (52) is communicated with one end of the cooling pipe (5). The other end of the cooling pipe (5) is communicated with the water tank (51). A connecting pipe (54) is communicated between the water tank (51) and the condensation tank (53).

3. The cooler for processing yam noodles according to claim 2, characterized in that it reciprocates The component includes centrally symmetrically distributed cams (66). The centrally symmetrically distributed cams (66) are fixedly connected to the other rotating shaft (2). Symmetrically distributed contact columns (65) are fixedly connected to the supporting frame (64). The contact columns (65) are in contact and cooperation with the cams (66).

4. A cooler for processing yam noodles according to claim 3, characterized in that, The contact column (65) is designed in a conical shape.

5. The cooler for processing yam noodles according to claim 4, characterized in that, It also includes a housing (7). The housing (7) is fixedly connected to the top of the machine frame (1). A filter screen (71) is arranged on the top of the housing (7). A fan (72) is arranged inside the housing (7).