An extrusion forming device for noodle production

By designing an extrusion molding device for noodle production that includes a machine body, a forming cylinder, and an electric push rod, the problem of poor flexibility in multi-port extrusion was solved. This device enables flexible adjustment and simplified operation of multi-port extrusion, thereby improving production efficiency and reducing costs.

CN224291140UActive Publication Date: 2026-05-29JINGMEN ZHENHAO NOODLE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINGMEN ZHENHAO NOODLE CO LTD
Filing Date
2025-07-15
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing extrusion molding equipment for noodle production has poor multi-port extrusion flexibility, making it difficult to meet the needs of large-scale and diversified production. Furthermore, the port switching and adjustment operations are complex, increasing production costs and maintenance difficulties.

Method used

An extrusion molding device for noodle production was designed, comprising a body, forming cylinder, electric push rod, top block, fixed plate, adjustment component, and drive component. Through the cooperation of the swing plate and push plate, flexible extrusion at single or multiple ports is achieved, simplifying the operation process.

Benefits of technology

It enables flexible adjustment of the multi-port extrusion effect, improves production efficiency, simplifies the operation process, and reduces production costs and maintenance difficulty.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224291140U_ABST
    Figure CN224291140U_ABST
Patent Text Reader

Abstract

The utility model relates to food processing technical field, concretely is a kind of extrusion forming device for noodle production, including machine body, two groups of forming cylinder, the forming cylinder is arranged in one side of machine body, electric push rod, the electric push rod is arranged in one side of machine body, top block, the top block key connection is in the output end of electric push rod, two groups of fixed plate, the fixed plate is arranged in one side of machine body.This extrusion forming device for noodle production, through the cooperation between swing plate and push plate, and then when swing plate pushes push plate transverse, movable plate will be moved to the bottom of top block, the down of top block will be driven movable plate enters forming cylinder and extrudes dough in the way of jacking movable plate, and when movable plate does not move, top block will not jacking movable plate, so single port extrusion can be carried out, and multiple ports extrusion can be carried out, the effect of the device multi-port extrusion is flexibly adjusted, and the device is simple to operate, improve the convenience for the use of operator.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of food processing technology, specifically to an extrusion molding device for noodle production. Background Technology

[0002] As we all know, noodles are a healthy food that is simple to make, convenient to eat, and rich in nutrients. They can be used as a staple food or a fast food and have long been accepted and loved by people all over the world. Noodles are made by grinding flour from grains or beans with water into dough, which is then pressed, rolled, stretched into sheets and cut or pressed, or made into strips (narrow or wide, flat or round) or small pieces by rubbing, pulling, or pinching. Finally, they are cooked by boiling, stir-frying, braising, or deep-frying.

[0003] Most existing extrusion molding devices for noodle production only support extrusion operations at a single port. This means that even if multiple ports are provided, different specifications of noodles can only be produced sequentially during the production process, which limits production efficiency and makes it difficult to meet the needs of large-scale and diversified production. At the same time, existing devices also have problems such as complicated operation during port switching and adjustment, which further increases production costs and maintenance difficulty. Summary of the Invention

[0004] Technical problems to be solved

[0005] In order to overcome the problem of poor multi-port extrusion flexibility in existing noodle production extrusion molding devices, this utility model provides an extrusion molding device for noodle production with flexible adjustment of multi-port extrusion effect.

[0006] Technical solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: an extrusion molding device for noodle production, comprising a machine body, two molding cylinders disposed on one side of the machine body, an electric push rod disposed on one side of the machine body, a top block keyed to the output end of the electric push rod, two sets of fixed plates disposed on one side of the machine body, two sets of adjusting components for adjusting the position of the pressure plate, each adjusting component including a horizontal plate disposed on one side of the fixed plate, a slider slidably disposed inside the horizontal plate, a connecting rod slidably disposed inside the slider, a pressure plate disposed at one end of the connecting rod, the pressure plate extruding the dough inside the molding cylinder after entering it, and a movable plate disposed on the outside of the connecting rod, the movable plate cooperating with the top block, the pressure plate moving downward into the molding cylinder when the top block pushes the movable plate, a push plate disposed on one side of the slider, a swing plate rotatably disposed on one side of the push plate, the swing plate being inclined, and two sets of driving components disposed on one side of the fixed plate.

[0008] Preferably, a second connecting frame and two sets of first connecting frames are provided on one side of the machine body, the forming cylinder is disposed between the second connecting frame and the first connecting frame, and the electric push rod is disposed on one side of the second connecting frame.

[0009] Furthermore, a placement plate is provided on the outer side of the connecting rod, a spring is provided on one side of the placement plate, and a movable plate is provided at the end of the spring away from the placement plate, with one side of the movable plate in contact with one side of the horizontal plate.

[0010] Furthermore, a fixed shaft is provided on one side of the push plate, and one side of the swing plate is rotatably disposed outside the fixed shaft. A movable shaft is rotatably disposed on the side of the swing plate away from the fixed shaft, and the movable shaft is disposed on one side of the fixed plate.

[0011] In a further embodiment, the drive assembly includes a rotary motor, which is disposed on one side of a fixed plate. The output end of the rotary motor is key-connected to a threaded pipe, and a sleeve is screwed onto the outer side of the threaded pipe. A support plate is disposed on one side of the sleeve, and a central shaft is disposed on the side of the support plate away from the sleeve. A pulley is rotatably disposed on the outer side of the central shaft, and the pulley is slidably disposed inside the swing plate.

[0012] Based on the aforementioned scheme, the sleeve has a threaded hole inside, and the thread on the inner wall of the threaded hole matches the thread on the outer side of the threaded tube.

[0013] Furthermore, based on the aforementioned scheme, two sets of discs are arranged on the outer side of the central shaft, and the two sets of discs are located on both sides of the pulley.

[0014] Furthermore, based on the aforementioned solution, a protective cover is provided on one side of the fixing plate, and the protective cover is located outside the rotary motor and the threaded tube.

[0015] Beneficial effects

[0016] This noodle extrusion forming device, through the cooperation between the swing plate and the push plate, allows the movable plate to move to the bottom of the top block when the swing plate pushes the push plate laterally. At this time, the downward movement of the top block will drive the pressure plate into the forming cylinder to extrude the dough by pushing the movable plate. When the movable plate does not move, the top block cannot push the movable plate. Thus, extrusion can be performed at a single port or at multiple ports, flexibly adjusting the effect of multi-port extrusion. Moreover, the device is simple to operate, improving the convenience for operators. Attached Figure Description

[0017] Figure 1 This is a side view of the structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the structure of the adjustment component of this utility model;

[0019] Figure 3 This is a cross-sectional view of the horizontal plate of this utility model;

[0020] Figure 4 This is a schematic diagram of the structure of the swing plate of this utility model;

[0021] Figure 5 This is a cross-sectional view of the protective cover of this utility model;

[0022] Figure 6 This is a schematic diagram of the structure of the drive component of this utility model;

[0023] Figure 7 This is a schematic diagram of the structure of the first connecting frame and the second connecting frame of this utility model.

[0024] In the diagram: 1. Body; 2. Adjustment assembly; 201. Horizontal plate; 202. Movable plate; 203. Connecting rod; 204. Pressure plate; 205. Placement plate; 206. Spring; 207. Moving plate; 208. Slider; 209. Push plate; 210. Fixed shaft; 211. Swing plate; 212. Movable shaft; 3. Drive assembly; 301. Rotary motor; 302. Sleeve; 303. Threaded pipe; 304. Support plate; 305. Central shaft; 306. Pulley; 4. Protective cover; 5. Storage box; 6. Fixed plate; 7. Forming cylinder; 8. First connecting frame; 9. Second connecting frame; 10. Top block; 11. Electric push rod. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] See Figures 1-7 An extrusion molding device for noodle production includes a machine body 1. Two sets of storage boxes 5 are slidably connected inside the machine body 1 for storing shaped noodles. A second connecting frame 9 and two sets of first connecting frames 8 are welded to the top of the machine body 1, with the second connecting frame 9 located between the two sets of first connecting frames 8. A forming cylinder 7 is bolted between the first connecting frames 8 and the second connecting frame 9. An electric push rod 11 is provided on the top of the second connecting frame 9, and a top block 10 is keyed to the output end of the electric push rod 11. Fixing plates 6 are welded to both sides of the machine body 1. A drive assembly 3 is provided on one side of the fixing plate 6, and an adjustment assembly 2 is provided on the top of the fixing plate 6.

[0027] First, refer to Figures 1 to 4In this embodiment, the adjusting component 2 includes a horizontal plate 201, which is welded to the top of the fixed plate 6. A slider 208 is slidably connected inside the horizontal plate 201, and a connecting rod 203 is slidably connected inside the slider 208. A pressure plate 204 is fixedly connected to the bottom end of the connecting rod 203. A movable plate 202 is welded to the outside of the connecting rod 203 and is located below the horizontal plate 201. A push plate 209 is welded to one side of the slider 208. The side of the push plate 209 away from the slider 208 passes through the horizontal plate 201. A fixed shaft 210 is welded to the bottom of the push plate 209. A swing plate 211 is rotatably connected to the outside of the fixed shaft 210. The swing plate 211 is inclined. A movable shaft 212 is rotatably connected to the bottom of the swing plate 211, and a drive component 3 is slidably connected to one side inside the swing plate 211.

[0028] Specifically, in order to enable the pressure plate 204 to move back quickly, a placement plate 205 is welded to the outside of the connecting rod 203. A spring 206 is fixedly connected to the bottom of the placement plate 205, and a moving plate 207 is fixedly connected to the bottom of the spring 206. The bottom of the moving plate 207 is in contact with the top of the horizontal plate 201. Thus, when the pressure plate 204 is pushed, the spring 206 will be squeezed by the placement plate 205. When the pressure plate 204 is no longer pushed, the spring 206 will drive the pressure plate 204 to move back by bouncing the placement plate 205, so that the pressure plate 204 can quickly return to the initial position.

[0029] When the swing plate 211 is pushed, the swing plate 211 will swing around the movable shaft 212. At this time, the top of the swing plate 211 will drive the push plate 209 to move laterally by pushing the fixed shaft 210 to move laterally. The movement of the push plate 209 will drive the slider 208 to move laterally. The movement of the slider 208 will drive the connecting rod 203 to move laterally. The movement of the connecting rod 203 will drive the pressure plate 204 and the movable plate 202 to move laterally. At this time, the pressure plate 204 will be located above the forming cylinder 7, and the movable plate 202 will be located at the bottom of the top block 10. After the electric push rod 11 is turned on, the output end of the electric push rod 11 will drive the top block 10 to move down. The movement of the top block 10 will drive the connecting rod 203 to move down by pushing the movable plate 202. The movement of the connecting rod 203 will drive the pressure plate 204 to move down into the forming cylinder 7 and squeeze the dough.

[0030] Finally, see Figure 1 , Figure 5 and Figure 6In this embodiment, the drive assembly 3 includes a rotary motor 301, which is disposed on one side of the fixed plate 6. The rotary motor 301 is a bidirectional motor, and its output end can rotate forward or backward. The output end of the rotary motor 301 is key-connected to a threaded tube 303. A sleeve 302 is screwed onto the outer side of the threaded tube 303. A threaded hole is opened inside the sleeve 302, and the thread on the inner wall of the threaded hole is compatible with the thread on the outer side of the threaded tube 303. When the threaded tube 303 rotates, it will drive the sleeve 302 to move linearly. A support plate 304 is disposed on one side of the sleeve 302. A central shaft 305 is disposed on the side of the support plate 304 away from the sleeve 302. A pulley 306 is rotatably disposed on the outer side of the central shaft 305. The pulley 306 is slidably disposed inside the swing plate 211. Two sets of... Two discs are located on either side of the pulley 306. The discs can block the movement of the pulley 306 to prevent the pulley 306 from becoming misaligned and detaching from the swing plate 211. A protective cover 4 is provided on one side of the fixed plate 6. The protective cover 4 is located outside the rotary motor 301 and the threaded tube 303. Thus, the protective cover 4 can protect the rotary motor 301 and the threaded tube 303 to prevent damage to them. After the rotary motor 301 is turned on, the output end of the rotary motor 301 will drive the threaded tube 303 to rotate. The rotation of the threaded tube 303 will drive the sleeve 302 to move linearly. The movement of the sleeve 302 will drive the central shaft 305 to move by driving the support plate 304. The movement of the central shaft 305 will drive the pulley 306 to move longitudinally and push the swing plate 211.

[0031] This noodle production extrusion molding device, through the cooperation between the swing plate 211 and the push plate 209, allows the movable plate 202 to move to the bottom of the top block 10 when the swing plate 211 pushes the push plate 209 to move laterally. At this time, the downward movement of the top block 10 will drive the pressure plate 204 into the molding cylinder 7 to extrude the dough by pushing the movable plate 202. When the movable plate 202 is not moving, the top block 10 will not be able to push the movable plate 202. Thus, extrusion can be performed at a single port or at multiple ports, flexibly adjusting the effect of multi-port extrusion. Moreover, the device is simple to operate, improving the convenience for operators.

[0032] Working principle:

[0033] In operation, the extrusion molding device for noodle production is first placed in the desired position. Then, the dough is extruded. Specifically, the dough is placed into the molding cylinder 7, and the rotary motor 301 is turned on, causing its output end to rotate the threaded tube 303. The rotation of the threaded tube 303 causes the sleeve 302 to move linearly. This movement of the sleeve 302, in turn, drives the central shaft 305 to move via the support plate 304. The movement of the central shaft 305 then causes the pulley 306 to move longitudinally and push the swing plate 211. When the swing plate 211 is pushed, it swings around the movable shaft 212. At this time, the top of the swing plate 211... The push plate 209 will be moved laterally by pushing the fixed shaft 210 to move laterally. The movement of the push plate 209 will cause the slider 208 to move laterally. The movement of the slider 208 will push the connecting rod 203 to move laterally. The movement of the connecting rod 203 will cause the pressure plate 204 and the movable plate 202 to move laterally. At this time, the pressure plate 204 will be located above the forming cylinder 7, and the movable plate 202 will be located at the bottom of the top block 10. After the electric push rod 11 is turned on, the output end of the electric push rod 11 will cause the top block 10 to move down. The movement of the top block 10 will cause the connecting rod 203 to move down by pushing the movable plate 202. The movement of the connecting rod 203 will cause the pressure plate 204 to move down into the forming cylinder 7 and squeeze the dough.

[0034] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An extrusion molding device for noodle production, characterized in that, include: Body (1); Two forming cylinders (7) are arranged on one side of the machine body (1); An electric push rod (11) is provided on one side of the body (1); Top block (10), which is keyed to the output end of electric push rod (11); Two sets of fixing plates (6) are provided on one side of the body (1); Two sets of adjustment components (2), each adjustment component (2) includes a horizontal plate (201), the horizontal plate (201) being disposed on one side of a fixed plate (6), a slider (208) being slidably disposed inside the horizontal plate (201), a connecting rod (203) being slidably disposed inside the slider (208), a pressure plate (204) being disposed at one end of the connecting rod (203), and a movable plate (202) being disposed on the outer side of the connecting rod (203), a push plate (209) being disposed on one side of the slider (208), and a swing plate (211) being rotatably disposed on one side of the push plate (209); and Two sets of drive components (3) are disposed on one side of the fixed plate (6).

2. The extrusion molding device for noodle production according to claim 1, characterized in that, The machine body (1) is provided with a second connecting frame (9) and two sets of first connecting frames (8) on one side. The forming cylinder (7) is located between the second connecting frame (9) and the first connecting frame (8), and the electric push rod (11) is located on one side of the second connecting frame (9).

3. The extrusion molding apparatus for noodle production according to claim 1, characterized in that, A placement plate (205) is provided on the outside of the connecting rod (203). A spring (206) is provided on one side of the placement plate (205). A movable plate (207) is provided at the end of the spring (206) away from the placement plate (205). One side of the movable plate (207) is in contact with one side of the horizontal plate (201).

4. The extrusion molding apparatus for noodle production according to claim 1, characterized in that, A fixed shaft (210) is provided on one side of the push plate (209), and a swing plate (211) is rotatably provided on one side outside the fixed shaft (210). A movable shaft (212) is rotatably provided on the side of the swing plate (211) away from the fixed shaft (210), and the movable shaft (212) is provided on one side of the fixed plate (6).

5. The extrusion molding apparatus for noodle production according to claim 1, characterized in that, The drive assembly (3) includes a rotary motor (301), which is disposed on one side of the fixed plate (6). The output end of the rotary motor (301) is key-connected to a threaded tube (303). A sleeve (302) is screwed onto the outside of the threaded tube (303). A support plate (304) is disposed on one side of the sleeve (302). A central shaft (305) is disposed on the side of the support plate (304) away from the sleeve (302). A pulley (306) is rotatably disposed on the outside of the central shaft (305). The pulley (306) is slidably disposed inside the swing plate (211).

6. The extrusion molding apparatus for noodle production according to claim 5, characterized in that, The sleeve (302) has a threaded hole inside, and the thread on the inner wall of the threaded hole is compatible with the thread on the outer side of the threaded tube (303).

7. The extrusion molding apparatus for noodle production according to claim 5, characterized in that, Two sets of discs are provided on the outer side of the central shaft (305), and the two sets of discs are located on both sides of the pulley (306).

8. The extrusion molding apparatus for noodle production according to claim 5, characterized in that, A protective cover (4) is provided on one side of the fixing plate (6), and the protective cover (4) is located outside the rotary motor (301) and the threaded pipe (303).