Novel mold structure of rice noodle forming device
By combining the moving and stationary mold components of the new mold structure, the problems of inconvenient adjustment of rice noodle thickness and uneven surface in the rice noodle forming device are solved, realizing convenient adjustment and high-quality production of rice noodle forming process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-04-07
AI Technical Summary
Traditional rice noodle forming equipment molds are inconvenient to adjust the thickness of rice noodles, cumbersome to operate, and easily lead to uneven rice noodle surfaces, making it difficult to adapt to diverse market demands.
A novel mold structure, comprising a feeding component, a moving mold component, and a fixed mold component, is adopted. Through precise adjustment of the feeding hole of the moving mold and the discharge hole of the fixed mold, the thickness of the rice noodles can be easily controlled, ensuring the smoothness of the rice noodle surface.
It enables convenient adjustment of the thickness of rice noodles during the forming process, improving production flexibility and product quality, reducing raw material waste, and lowering equipment complexity and maintenance difficulty.
Smart Images

Figure CN224084631U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a rice noodle processing equipment, and more particularly to a novel mold structure for a rice noodle forming device. Background Technology
[0002] Traditional rice noodle forming equipment molds have many defects. Adjusting the thickness of the rice noodles is inconvenient, often relying on mold replacement or complex mechanical structures, making operation cumbersome, time-consuming, and labor-intensive, and difficult to adapt to diverse market demands. Furthermore, some mold structures easily lead to uneven rice noodle surfaces and warping, affecting product quality and limiting the efficient development of the rice noodle processing industry. There is an urgent need for innovative mold structures to overcome these problems. Utility Model Content
[0003] The purpose of this invention is to provide a novel mold structure for a rice noodle forming device.
[0004] To achieve the above objectives, this utility model is implemented according to the following technical solution:
[0005] This utility model includes a feeding assembly, a moving mold assembly, a fixed mold assembly, and a mold support assembly. The fixed mold assembly and the moving mold assembly are internally connected to the mold support assembly. The mold support assembly has a feeding port and a discharging port. The feeding port of the mold support assembly is connected to the discharging port of the feeding assembly. The feeding port of the feeding assembly is connected to the discharging port of the rice noodle forming device.
[0006] Furthermore, the feeding assembly includes a feeding shell and an extruder connection feeding port. One end of the feeding shell is connected to the discharge port of the extruder connection feeding port, and the other end of the extruder connection feeding port is connected to the discharge port of the rice noodle forming device. The other end of the feeding shell has a rectangular structure and is connected to the feeding end of the mold support assembly.
[0007] The mold support assembly includes a mold adjustment housing and a moving mold plate support base. The mold adjustment housing has openings at both ends. The moving mold assembly and the fixed mold assembly are located inside the mold adjustment housing. One side of the mold adjustment housing is detachably connected to the outlet of the feed housing. The other end of the mold adjustment housing is detachably connected to the moving mold plate support base. The moving mold assembly and the fixed mold assembly are located between the mold adjustment housing and the moving mold plate support base.
[0008] The moving mold assembly includes a moving mold plate, a moving mold feed hole, a first moving mold adjusting screw, and a second moving mold adjusting screw. Multiple moving mold feed holes are evenly distributed on the moving mold plate; each feed hole is an elongated through-hole. The moving mold plate is located within the mold adjusting housing and is slidable. The first and second moving mold adjusting screws pass through both sides of the mold adjusting housing and are threaded together. The ends of the first and second moving mold adjusting screws contact both sides of the moving mold plate. The fixed mold assembly is located on the outlet side of the moving mold plate.
[0009] The fixed mold assembly includes a stationary mold and a stationary mold discharge hole. The stationary mold is provided with a plurality of stationary mold discharge holes. The number and shape of the stationary mold discharge holes match the number and shape of the moving mold feed holes. The stationary mold is detachably and fixedly installed in the mold adjustment housing. The stationary mold is located on the discharge side of the moving mold plate. The moving mold plate and the stationary mold are fixed in the mold adjustment housing by a moving mold plate support base. The position of the moving mold feed hole corresponds to the position of the stationary mold discharge hole.
[0010] As an improvement, a mold discharge hole adjustment block is provided on the discharge side of the moving mold inlet hole of the moving mold plate. One end of the mold discharge hole adjustment block is fixedly connected to the moving mold plate, and the other end of the mold discharge hole adjustment block is located in the discharge hole of the stationary mold and can slide.
[0011] The beneficial effects of this utility model are:
[0012] This invention relates to a novel mold structure for a rice noodle forming device. Compared with existing technologies, this invention enables convenient adjustment of the rice noodle thickness during the forming process, improving production flexibility and adapting to different market demands. By precisely adjusting the alignment of the feed hole of the moving mold and the discharge hole of the stationary mold, the thickness of the rice noodles output is controlled, effectively improving the surface smoothness of the rice noodles, enhancing product quality, reducing raw material waste, and increasing production economic efficiency. Its simple adjustment mechanism reduces equipment complexity and maintenance difficulty, facilitating widespread application. Attached Figure Description
[0013] Figure 1 This is a cross-sectional structural diagram of the present invention;
[0014] Figure 2 This is an exploded view of one side of the present invention;
[0015] Figure 3 This is an exploded structural diagram of the other side of this utility model;
[0016] Figure 4 This is a schematic diagram of the external structure of this utility model;
[0017] Figure 5 This is a schematic diagram of the external structure on the other side of this utility model.
[0018] In the diagram: 1. Feed housing; 2. Extruder connection feed port; 3. Die adjustment housing; 4. Moving die plate; 5. Moving die feed hole; 6. Stationary die; 7. Stationary die discharge hole; 8. Die discharge hole adjustment block; 9. Moving die first adjustment screw; 10. Moving die second adjustment screw; 11. Moving die platen support base. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. The illustrative embodiments and descriptions of the present invention are used to explain the present invention, but are not intended to limit the present invention.
[0020] like Figure 1-5 As shown: This utility model includes a feeding assembly, a moving mold assembly, a fixed mold assembly, and a mold support assembly. The fixed mold assembly and the moving mold assembly are internally connected to the mold support assembly. The mold support assembly has a feeding port and a discharging port. The feeding port of the mold support assembly is connected to the discharging port of the feeding assembly. The feeding port of the feeding assembly is connected to the discharging port of the rice noodle forming device.
[0021] Furthermore, the feeding assembly includes a feeding housing 1 and an extruder connection feeding port 2. One end of the feeding housing 1 is connected to the outlet of the extruder connection feeding port 2, and the other end of the extruder connection feeding port 2 is connected to the outlet of the rice noodle forming device. The other end of the feeding housing 1 has a rectangular structure and is connected to the feeding end of the mold support assembly.
[0022] The mold support assembly includes a mold adjustment housing 3 and a moving mold plate support base 11. The mold adjustment housing 3 has openings at both ends. The moving mold assembly and the fixed mold assembly are located inside the mold adjustment housing 3. One side of the mold adjustment housing 3 is detachably connected to the outlet of the feeding housing 1, and the other end of the mold adjustment housing 3 is detachably connected to the moving mold plate support base 11. The moving mold assembly and the fixed mold assembly are located between the mold adjustment housing 3 and the moving mold plate support base 11.
[0023] The moving mold assembly includes a moving mold plate 4, a moving mold feed hole 5, a moving mold first adjusting screw 9, and a moving mold second adjusting screw 10. Multiple moving mold feed holes 5 are evenly arranged on the moving mold plate 4. Each moving mold feed hole 5 is an elongated through hole. The moving mold plate 4 is located inside the mold adjusting housing 3 and is slidable. The moving mold first adjusting screw 9 and the moving mold second adjusting screw 10 pass through both sides of the mold adjusting housing 3 and are threaded together. The ends of the moving mold first adjusting screw 9 and the moving mold second adjusting screw 10 contact both sides of the moving mold plate 4. The fixed mold assembly is located on the outlet side of the moving mold plate 4.
[0024] The fixed mold assembly includes a static mold 6 and a static mold discharge hole 7. The static mold 6 is provided with a plurality of static mold discharge holes 7. The number and shape of the static mold discharge holes 7 match the number and shape of the moving mold feed holes 5. The static mold 6 is detachably and fixedly installed in the mold adjustment housing 3. The static mold 6 is located on the discharge side of the moving mold plate 4. The moving mold plate 4 and the static mold 6 are fixed in the mold adjustment housing 3 by a moving mold plate support base 11. The position of the moving mold feed hole 5 corresponds to the position of the static mold discharge hole 7.
[0025] As an improvement, a mold discharge hole adjustment block 8 is provided on the discharge side of the moving mold inlet hole 5 of the moving mold plate 4. One end of the mold discharge hole adjustment block 8 is fixedly connected to the moving mold plate 4, and the other end of the mold discharge hole adjustment block 8 is located in the stationary mold discharge hole 7 and can slide.
[0026] The working principle of this utility model is as follows:
[0027] In use, the extruder is connected to the feed inlet 2 of the extruder and then to the discharge outlet of the rice noodle forming device. The rice noodle raw material, after being steamed, is placed into the rice noodle forming device for extrusion. The material enters the feed housing 1 from the extruder feed inlet 2 and exits as strips through the moving mold feed hole 5 and the stationary mold discharge hole 7. When adjusting the thickness of the rice noodles, the mold discharge hole adjusting block 8 can be moved outwards, and the first adjusting screw 9 of the moving mold can be rotated inwards, moving the moving mold plate 4 and causing the moving mold feed hole 5 and the stationary mold discharge hole 7 to be misaligned, thereby narrowing the discharge opening and extruding finer rice noodles. When thickening is required, the first adjusting screw 9 of the moving mold and the second adjusting screw 8 of the moving mold are operated in reverse. Adjusting screw 10 allows for arbitrary adjustment of the thickness of the rice noodles output. The function of setting mold discharge hole adjustment block 8 is to make the outlet side of the stationary mold discharge hole 7 flat. If mold discharge hole adjustment block 8 is not set, the surface of the output rice noodles will be uneven or wavy. In essence, the mold discharge hole adjustment block 8 is used to change the outlet size of the stationary mold discharge hole 7. The shape of the stationary mold discharge hole 7 can be adjusted according to actual needs, such as ellipse or circle. The side of the stationary mold discharge hole 7 is set as the edge, and the side of the mold discharge hole adjustment block 8 is also set as a semi-circle. The smallest size can form a round rice noodle, and the largest size can form a thicker elliptical rice noodle. The adjustment is convenient.
[0028] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A novel mold structure for a rice noodle forming device, characterized in that: It includes a feeding assembly, a moving mold assembly, a fixed mold assembly, and a mold support assembly. The fixed mold assembly and the moving mold assembly are internally connected to the mold support assembly. The mold support assembly has a feeding port and a discharging port. The feeding port of the mold support assembly is connected to the discharging port of the feeding assembly. The feeding port of the feeding assembly is connected to the discharging port of the rice noodle forming device.
2. The novel mold structure of the rice noodle forming device according to claim 1, characterized in that: The feeding assembly includes a feeding housing (1) and an extruder connection feeding port (2). One end of the feeding housing (1) is connected to the discharge port of the extruder connection feeding port (2), and the other end of the extruder connection feeding port (2) is connected to the discharge port of the rice noodle forming device. The other end of the feeding housing (1) is a rectangular structure and is connected to the feeding end of the mold support assembly.
3. The novel mold structure of the rice noodle forming device according to claim 2, characterized in that: The mold support assembly includes a mold adjustment housing (3) and a moving mold support base (11). The mold adjustment housing (3) has openings at both ends. The moving mold assembly and the fixed mold assembly are located inside the mold adjustment housing (3). One side of the mold adjustment housing (3) is detachably connected to the outlet of the feed housing (1). The other end of the mold adjustment housing (3) is detachably connected to the moving mold support base (11). The moving mold assembly and the fixed mold assembly are located between the mold adjustment housing (3) and the moving mold support base (11).
4. The novel mold structure of the rice noodle forming device according to claim 3, characterized in that: The moving mold assembly includes a moving mold plate (4), a moving mold feed hole (5), a moving mold first adjusting screw (9), and a moving mold second adjusting screw (10). The moving mold plate (4) is evenly provided with a plurality of moving mold feed holes (5). The moving mold feed holes (5) are elongated through holes. The moving mold plate (4) is located inside the mold adjusting housing (3) and can slide. The moving mold first adjusting screw (9) and the moving mold second adjusting screw (10) pass through both sides of the mold adjusting housing (3) and are threaded together. The ends of the moving mold first adjusting screw (9) and the moving mold second adjusting screw (10) are in contact with both sides of the moving mold plate (4). The fixed mold assembly is provided on the outlet side of the moving mold plate (4).
5. The novel mold structure of the rice noodle forming device according to claim 4, characterized in that: The fixed mold assembly includes a static mold (6) and a static mold discharge hole (7). The static mold (6) is provided with a plurality of static mold discharge holes (7). The number and shape of the static mold discharge holes (7) match the number and shape of the moving mold feed holes (5). The static mold (6) is detachably and fixedly installed in the mold adjustment housing (3). The static mold (6) is located on the discharge side of the moving mold plate (4). The moving mold plate (4) and the static mold (6) are fixed in the mold adjustment housing (3) by a moving mold plate support base (11). The position of the moving mold feed hole (5) corresponds to the position of the static mold discharge hole (7).
6. The novel mold structure of the rice noodle forming device according to claim 5, characterized in that: The moving mold plate (4) has a mold discharge hole adjustment block (8) on the discharge side of the moving mold feed hole (5). One end of the mold discharge hole adjustment block (8) is fixedly connected to the moving mold plate (4), and the other end of the mold discharge hole adjustment block (8) is located in the stationary mold discharge hole (7) and can slide.