Konjac vegetarian fish skin preparation device

By combining a precisely designed extrusion wheel with a rotary cutting blade, the problems of low stamping efficiency and insufficient cutting precision in konjac fish skin preparation equipment have been solved, achieving efficient production and high-quality konjac fish skin preparation.

CN224059936UActive Publication Date: 2026-03-31SICHUAN WANLIANG FOOD TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing konjac fish skin preparation equipment suffers from problems such as low printing efficiency, complex operation, limited production speed, insufficient cutting precision, and insufficient equipment stability, resulting in low production efficiency and poor product quality.

Method used

The device uses a precision-designed combination of extrusion rollers and rotary cutting blades. The extrusion rollers imprint fish patterns, while the rotary cutting blades cut the konjac raw material to form a uniform thickness of konjac fish skin. The component structure is compact and easy to adjust and maintain.

Benefits of technology

It improves the realism and overall quality of konjac fish skin, enhances production efficiency and product quality, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a konjak vegetarian fish skin preparation device, which belongs to the technical field of food processing, and comprises a moving table and an impressing and cutting assembly, the impressing and cutting assembly is arranged at the top of the outer wall of the moving table, the impressing and cutting assembly comprises a mounting frame, a feeding conveyor belt, a processing conveyor belt, a pressing plate, a first extrusion wheel, a second extrusion wheel, a mounting seat, a bolt, a mounting cylinder and a rotary cutting blade, the mounting frame is fixedly arranged on one side of the top of the outer wall of the moving table through a support, and the feeding conveying belt and the machining conveying belt are rotationally embedded in the inner wall of the mounting frame. By means of the precisely-designed extrusion wheel and the rotary cutting blade, konjac raw materials can be efficiently and continuously processed, fine and smooth fish lines are impressed, the simulation degree of products is enhanced, it is ensured that the fish skin thickness is uniform through the rotary cutting technology, the overall quality is improved, and in addition, the assembly is compact in structure, easy to adjust and maintain and suitable for popularization and application. And the production efficiency and the product quality are greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the food processing technical field, concretely relates to a konjac fish skin preparation device. BACKGROUND

[0002] Food processing refers to the process of making various processed foods by taking agricultural, forestry, animal husbandry and fishery products as raw materials and through different processing, blending and other processes. This process not only changes the original form and taste of the food, but also improves the sanitary quality and nutritional value of the food and prolongs the shelf life of the food, providing consumers with more convenient, safe and diversified food choices.

[0003] Konjac, also known as jujube and devil's yam, is a perennial herbaceous plant belonging to the Araceae family. Konjac is famous for its tubers, which are rich in glucomannan (a soluble dietary fiber) and have multiple uses.

[0004] The efficiency of the embossed fish pattern is low, and the design of the equipment is limited: the design of the embossing device of some equipment is not reasonable, such as the material and surface texture design of the embossing roller, which does not meet the characteristics of the konjac fish skin, resulting in poor embossing of the fish pattern on the konjac fish skin during the embossing process, the operation complexity: during the embossing process, the thickness, humidity and other parameters of the konjac fish skin need to be accurately controlled, and the pressure and speed of the embossing roller also need to be adjusted, the operation process is relatively complex, and any mistake will affect the embossing effect, the production speed is limited: in order to ensure the embossing quality, the production speed of the equipment cannot be too fast, otherwise it is easy to cause the fish pattern to be blurred or unevenly embossed, thereby reducing the overall production efficiency, the cutting accuracy is insufficient, the material characteristics affect: the konjac fish skin has certain elasticity and toughness, which is easy to deform or shift during cutting, resulting in inaccurate cutting size, the cutting tool problem: the cutting tool used by some equipment is not sharp enough or is severely worn, which cannot completely cut the konjac fish skin at one time, and is easy to cause incomplete cutting or rough edges, the stability of the equipment is insufficient: during cutting, the stability of the equipment also affects the cutting accuracy, if the vibration of the equipment is large or the positioning of the cutting mechanism is inaccurate, it will cause cutting position deviation. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a konjac fish skin preparation device, which aims to solve the problems raised in the background art.

[0006] A konjac fish skin preparation device, comprising,

[0007] A mobile station;

[0008] The imprinted cutting assembly is arranged at the top of the outer wall of the moving table, wherein: the imprinted cutting assembly comprises a mounting frame, a feeding conveyor belt, a processing conveyor belt, a pressing plate, a first extrusion wheel, a second extrusion wheel, a mounting seat, a bolt, a mounting cylinder and a rotary cutting blade; the mounting frame is fixedly arranged at one side of the top of the outer wall of the moving table through a support; the feeding conveyor belt and the processing conveyor belt are rotationally embedded in the inner wall of the mounting frame; the pressing plate is rotationally embedded in the slotted inner wall of the mounting frame through a rotating shaft and a torsional spring; the first extrusion wheel and the second extrusion wheel are rotationally embedded in the inner wall of the mounting frame; the mounting seat is slidingly embedded in the slotted inner wall of one end of the mounting frame; the bolt is threadedly connected to the inner wall of the mounting seat; the mounting cylinder is rotationally embedded in the inner wall of the mounting seat; the rotary cutting blade is clampedly arranged at the opening of the outer wall of the mounting cylinder; and the inner wall of the mounting frame is fixedly provided with a partition plate, and the partition plate, the first extrusion wheel and the second extrusion wheel are matched with each other.

[0009] Further, the inner wall of the mounting frame is rotationally embedded with two first rollers, the two first rollers are respectively embedded in the inner walls of two ends of the feeding conveyor belt, the two first rollers are rotationally embedded in the inner walls of the two tensioning frames, the two tensioning frames are slidingly embedded in the slots of the mounting frame, the inner walls of the two tensioning frames are threadedly connected with fine adjustment rods, the inner wall of the mounting frame is rotationally embedded with two second rollers, and the two second rollers are respectively rotationally embedded in the inner walls of two ends of the processing conveyor belt.

[0010] Further, the outer walls of the mounting frame are fixedly provided with a first separation strip and a second separation strip on the two sides, the first separation strip is matched with the processing conveyor belt, and the second separation strip is matched with the feeding conveyor belt.

[0011] Further, one side of the outer wall of the moving table is fixedly provided with an electrical cabinet.

[0012] Further, the outer walls of the mounting frame are hingedly provided with two cover plates on the two sides through hinges.

[0013] Further, the first extrusion wheel and the second extrusion wheel are drivingly connected to an external motor through a sprocket and a chain, and the mounting cylinder is drivingly connected to the external motor through a sprocket and a chain.

[0014] Compared with the prior art, the imprinted cutting assembly has the following beneficial effects:

[0015] Through the precisely designed extrusion wheel and rotary cutting blade, the konjac raw materials can be efficiently and continuously processed, not only the delicate fish lines are imprinted to enhance the simulation degree of the products, but also the fish skin thickness is ensured to be uniform through the rotary cutting technology to improve the overall quality; in addition, the component structure is compact, easy to adjust and maintain, and the production efficiency and product quality are greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings are used to provide further understanding of the present application and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation to the present application. In the drawings:

[0017] Figure 1 It is a perspective view of the present application;

[0018] Figure 2 It is a perspective view of the present application;

[0019] Figure 3 It is a perspective view of the second extrusion wheel of the present application;

[0020] Figure 4 It is a perspective view of the first extrusion wheel of the present application;

[0021] Figure 5 It is an enlarged schematic view of the present application A.

[0022] In the drawings: 1, mobile station; 2, mounting frame; 3, feeding conveyor belt; 4, processing conveyor belt; 5, pressing plate; 6, tensioning frame; 7, first roller; 8, fine adjustment rod; 9, second roller; 10, first extrusion wheel; 11, second extrusion wheel; 12, first separation strip; 13, second separation strip; 14, isolation plate; 15, mounting seat; 16, bolt; 17, mounting cylinder; 18, rotary cutting blade; 101, electrical cabinet; 201, cover plate. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings of the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0024] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "top / bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation to the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0025] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0026] Please see Figures 1-5 The technical solution provided in this embodiment is as follows:

[0027] A konjac fish skin preparation device, comprising,

[0028] Mobile station 1;

[0029] The embossing and cutting assembly is located at the top of the outer wall of the moving table 1. The embossing and cutting assembly includes a mounting frame 2, a feeding conveyor belt 3, a processing conveyor belt 4, a pressure plate 5, a first extrusion roller 10, a second extrusion roller 11, a mounting base 15, bolts 16, a mounting cylinder 17, and a rotary cutting blade 18. The mounting frame 2 is fixedly mounted on one side of the top of the outer wall of the moving table 1 via a bracket. The feeding conveyor belt 3 and the processing conveyor belt 4 are rotatably embedded in the inner wall of the mounting frame 2. The pressure plate 5 is rotatably embedded in the mounting frame via a rotating shaft and a torsion spring. At the grooved inner wall of the mounting frame 2, the first extrusion wheel 10 and the second extrusion wheel 11 are rotatably embedded in the inner wall of the mounting frame 2. The mounting base 15 is slidably embedded in the grooved inner wall of one end of the mounting frame 2. The bolt 16 is threadedly connected to the inner wall of the mounting base 15. The mounting cylinder 17 is rotatably embedded in the inner wall of the mounting base 15. The rotary cutting blade 18 is snapped into the opening on the outer wall of the mounting cylinder 17. The inner wall of the mounting frame 2 is fixedly provided with an isolation plate 14, and the isolation plate 14, the first extrusion wheel 10 and the second extrusion wheel 11 are matched with each other.

[0030] In a specific embodiment of this utility model, the precisely designed extrusion wheel and rotary cutting blade 18 enable efficient and continuous processing of konjac raw materials. This not only imprints delicate fish patterns, enhancing the product's realism, but also ensures uniform fish skin thickness through rotary cutting technology, improving overall quality. Furthermore, the compact component structure facilitates adjustment and maintenance, significantly improving production efficiency and product quality. First, the operator opens the electrical cabinet 101, starts the device power supply, and enables the external motor to start working. The external motor drives the first extrusion roller 10, the second extrusion roller 11, the first roller 7, the second roller 9, and the mounting cylinder 17 to rotate via sprockets and chains. The konjac raw material is placed on the feeding conveyor belt 3, which is driven by two first rollers 7. These two rollers are embedded in the tension frame 6. The tension frame 6 can adjust the tension of the conveyor belt via the fine-tuning rod 8 to ensure smooth material transport. As the feeding conveyor belt 3 moves, the konjac raw material enters between the first extrusion roller 10 and the second extrusion roller 11. These two extrusion rollers squeeze the raw material by rotating, simultaneously imprinting fish-patterned patterns on the surface of the raw material. The partition plate 14 ensures... The stability and directionality of the raw material during the extrusion process are ensured. The konjac raw material after extrusion and imprinting is transferred to the processing conveyor belt 4, which is driven by two second rollers 9. Appropriate tension is maintained through fine-tuning. When the raw material reaches the position of the rotary cutting blade 18, the mounting cylinder 17 drives the rotary cutting blade 18 to rotate, precisely cutting the raw material to form the shape of konjac fish skin. This ensures the purity of the finished product and the convenience of subsequent processing. After a batch is processed, the operator can turn off the power and easily enter the mounting frame 2 for cleaning and maintenance by opening the cover plate 201 to prepare for the next batch of production. The outer walls of the first extrusion roller 10 and the second extrusion roller 11 are provided with fish patterns to facilitate the imprinting process.

[0031] Specifically, two first rollers 7 are rotatably embedded in the inner wall of the mounting frame 2. The two first rollers 7 are respectively embedded in the inner walls of both ends of the feeding conveyor belt 3. Both first rollers 7 are rotatably embedded in the inner wall of the tensioning frame 6. Both tensioning frames 6 are slidably embedded in the slot of the mounting frame 2. The inner walls of the two tensioning frames 6 are threaded with fine adjustment rods 8. Two second rollers 9 are rotatably embedded in the inner wall of the mounting frame 2, and the two second rollers 9 are respectively rotatably embedded in the inner walls of both ends of the processing conveyor belt 4.

[0032] In a specific embodiment of this utility model, the first roller 7 and the second roller 9 complete the transmission of the feeding conveyor belt 3 and the processing conveyor belt 4.

[0033] Specifically, a first separation bar 12 and a second separation bar 13 are fixedly installed on both sides of the outer wall of the mounting frame 2. The first separation bar 12 is matched with the processing conveyor belt 4, and the second separation bar 13 is matched with the feeding conveyor belt 3.

[0034] In a specific embodiment of this utility model, the second separating bar 13 is matched with the feeding conveyor belt 3 to ensure stable transportation of raw materials.

[0035] Specifically, an electrical cabinet 101 is fixedly installed on one side of the outer wall of the mobile station 1.

[0036] In specific embodiments of this utility model, power distribution and electrical connections are facilitated.

[0037] Specifically, two cover plates 201 are hinged to each other on both sides of the outer wall of the mounting bracket 2.

[0038] In a specific embodiment of this utility model, a semi-sealed mounting bracket 2 can be easily installed to avoid accidental contact.

[0039] Specifically, the first extrusion wheel 10 and the second extrusion wheel 11 are connected to an external motor via a sprocket and chain drive, and the mounting cylinder 17 is connected to an external motor via a sprocket and chain drive.

[0040] In a specific embodiment of this utility model, the mounting cylinder 17 is connected to an external motor via a sprocket and chain drive, which can ensure high-speed rotation transmission.

[0041] Working principle:

[0042] Through the precisely designed extrusion rollers and rotary cutting blades 18, konjac raw materials can be processed efficiently and continuously. This not only imprints delicate fish-like patterns, enhancing the product's realism, but also ensures uniform fish skin thickness through rotary cutting technology, improving overall quality. Furthermore, the compact component structure is easy to adjust and maintain, significantly improving production efficiency and product quality. First, the operator opens the electrical cabinet 101 and starts the device power supply, enabling the external motor to operate. The external motor drives the first extrusion roller 10, the second extrusion roller 11, the first roller 7, the second roller 9, and the mounting cylinder 17 to rotate via sprockets and chains. The konjac raw material is placed on the feeding conveyor belt 3, which is driven by two first rollers 7. These rollers are mounted within the tensioning frame 6, which adjusts the belt tension via fine-tuning rods 8 to ensure smooth material transport. As the feeding conveyor belt 3 moves, the konjac raw material enters between the first extrusion roller 10 and the second extrusion roller 11. These two extrusion rollers squeeze the raw material through rotation, simultaneously pressing it onto the surface of the material. The fish pattern is imprinted, and the isolation plate 14 ensures the stability and directionality of the raw material during the extrusion process. The konjac raw material after extrusion and imprinting is transferred to the processing conveyor belt 4, which is driven by two second rollers 9. The belt is also finely adjusted to maintain appropriate tension. When the raw material reaches the position of the rotary cutting blade 18, the mounting cylinder 17 drives the rotary cutting blade 18 to rotate, precisely cutting the raw material to form the shape of konjac fish skin. This ensures the purity of the finished product and the convenience of subsequent processing. After a batch is processed, the operator can turn off the power and easily enter the mounting frame 2 for cleaning and maintenance by opening the cover plate 201, preparing for the next batch of production.

[0043] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A konjac-derived fish skin preparation device, characterized by, The utility model relates to a mobile platform (1) of cutting and embossing device, including, The mobile platform (1) is provided with a cutting and embossing device, and the cutting and embossing device is arranged at the top of the outer wall of the mobile platform (1). The cutting and embossing device comprises a mounting frame (2), a feeding conveyor belt (3), a processing conveyor belt (4), a pressing plate (5), a first extrusion wheel (10), a second extrusion wheel (11), a mounting seat (15), a bolt (16), a mounting cylinder (17) and a rotary cutting blade (18).

2. The device for preparing konjac fish skin according to claim 1, characterized in that, The mounting frame (2) is fixedly arranged at one side of the top of the outer wall of the mobile platform (1) through a support.

3. The device for preparing konjac fish skin according to claim 1, characterized in that, The feeding conveyor belt (3) and the processing conveyor belt (4) are rotatably embedded in the inner wall of the mounting frame (2).

4. The device for preparing konjac fish skin according to claim 1, characterized in that, The pressing plate (5) is rotatably embedded in the slotted inner wall of the mounting frame (2) through a rotating shaft and a torsional spring.

5. The device for preparing konjac fish skin according to claim 1, characterized in that, The first extrusion wheel (10) and the second extrusion wheel (11) are rotatably embedded in the inner wall of the mounting frame (2).

6. The device for preparing konjac fish skin according to claim 1, characterized in that, The mounting seat (15) is slidably embedded in the slotted inner wall of one end of the mounting frame (2). The bolt (16) is threadedly connected to the inner wall of the mounting seat (15). The mounting cylinder (17) is rotatably embedded in the inner wall of the mounting seat (15). The rotary cutting blade (18) is clamped and arranged at the opening of the outer wall of the mounting cylinder (17). The inner wall of the mounting frame (2) is fixedly provided with a partition plate (14), and the partition plate (14), the first extrusion wheel (10) and the second extrusion wheel (11) are matched with each other. The inner wall of the mounting frame (2) is rotatably provided with two first rollers (7). The two first rollers (7) are respectively embedded in the inner walls of the two ends of the feeding conveyor belt (3). The two first rollers (7) are rotatably embedded in the inner wall of the tensioning frame (6). The two tensioning frames (6) are slidably embedded in the slots of the mounting frame (2). The inner walls of the two tensioning frames (6) are threadedly connected with fine adjustment rods (8). The inner wall of the mounting frame (2) is rotatably provided with two second rollers (9), and the two second rollers (9) are respectively rotatably embedded in the inner walls of the two ends of the processing conveyor belt (4). The outer walls of the two sides of the mounting frame (2) are fixedly provided with a first separation strip (12) and a second separation strip (13). The first separation strip (12) is matched with the processing conveyor belt (4), and the second separation strip (13) is matched with the feeding conveyor belt (3). One side of the outer wall of the mobile platform (1) is fixedly provided with an electrical cabinet (101). The outer walls of the two sides of the mounting frame (2) are hingedly provided with two cover plates (201) through hinges. The first extrusion wheel (10) and the second extrusion wheel (11) are drivingly connected to an external motor through a sprocket and a chain. The mounting cylinder (17) is drivingly connected to the external motor through a sprocket and a chain.