Minced meat grinding cutter cylinder with double-structure minced meat grinding cutter teeth

By using a dual-structure grinding blade with circular and polygonal grinding nozzles, combined with staggered distribution, the problem of existing grinding blades being unable to grind finely is solved, achieving efficient and uniform grinding of ingredients, and making it suitable for processing a variety of ingredients.

CN223627393UActive Publication Date: 2025-12-05DONGGUAN TAILIS METAL TECH CO LTD
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Patent Information

Application Number
CN202423057113.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-12-05
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

Existing grating blades, due to their simple blade structure, are unable to fully and finely grind ingredients into a grater, making them inefficient, especially when processing high-end dishes or tough ingredients, and failing to meet texture requirements.

Method used

It adopts a dual-structure grinding blade barrel design, including circular and polygonal grinding nozzles, combined with staggered grinding nozzles and grinding teeth, to improve the grinding effect through diverse cutting methods.

Benefits of technology

It achieves finer and more uniform grinding of ingredients, improves processing efficiency and finished product quality, adapts to the texture and fiber structure of different ingredients, and meets the texture requirements of high-end dishes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fluffy mushroom grinding knife cylinders, in particular to a fluffy mushroom grinding knife cylinder with double-structure fluffy mushroom grinding knife teeth, which comprises a knife cylinder main body and a knife edge part, the knife cylinder main body is of a cylindrical structure with two through ends, and an inner blocking ring is arranged at one end of the knife cylinder main body in a surrounding manner; the cutting edge part is provided with a plurality of first fluffy mushroom grinding openings and a plurality of second fluffy mushroom grinding openings which are formed in the wall surface of the knife cylinder main body, the first fluffy mushroom grinding openings are of circular structures, the second fluffy mushroom grinding openings are of polygonal structures, and fluffy mushroom grinding teeth extending out of the outer wall of the knife cylinder main body are formed on the edges of the first fluffy mushroom grinding openings and the second fluffy mushroom grinding openings; by arranging the first minced meat grinding opening of the circular structure and the second minced meat grinding opening of the polygonal structure on the minced meat grinding knife cylinder, the double-structure design breaks through the limitation that a traditional minced meat grinding knife cylinder is single in structure, and the minced meat grinding openings of different shapes can achieve diversified cutting modes on food materials when the knife cylinder rotates; the circular grinding opening enables food materials to be subjected to uniform circumferential cutting force when the food materials pass through, and is suitable for preliminarily scattering and refining the food materials.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a deer grinding cutter barrel technical field especially a kind of double-structure deer grinding cutter barrel of deer grinding cutter tooth. BACKGROUND

[0002] In today's kitchen and food processing field, as a kind of commonly used tool components, deer grinding cutter barrel plays an important role, and its main components include cutter barrel main body and blade part arranged on the wall surface of cutter barrel main body. Cutter barrel main body is usually cylindrical metal shell, and food-grade metal materials such as stainless steel are usually selected, which has good corrosion resistance and certain strength, so as to ensure stability and durability during use. The blade part is designed in various ways, which is arranged in spiral on the inner wall of the cutter barrel, or arranged in a specific geometric shape at one end of the cutter barrel, aiming to realize cutting and grinding of food materials through rotation, so as to make them into deer shape.

[0003] However, the existing deer grinding cutter barrel has many deficiencies. As for the blade part, it basically adopts single structure, lacks flexibility and diversity. In the processing process, the cutter barrel mainly relies on single rotation power to drive the blade to work. This single power mode and blade structure make the blade only cut food into strips, and it is difficult to grind food materials into ideal deer shape. For example, when making some high-grade dishes or fine food, such as fish deer and shrimp deer, extremely delicate and uniform deer-shaped food materials are needed to ensure the taste and quality of dishes. However, the existing deer grinding cutter barrel cannot meet this demand well. Moreover, when processing some food materials with relatively tough fibers, the single-structure blade and single-rotation power are difficult to effectively grind them into deer shape, resulting in low processing efficiency and poor product quality. Therefore, it is necessary to propose an improved technical scheme to solve the above problems. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at providing a technical scheme that can solve the above problems.

[0005] A kind of double-structure deer grinding cutter barrel of deer grinding cutter tooth, including cutter barrel main body and blade part, cutter barrel main body is the through-and-through cylinder structure in both ends, and there is inner blocking ring around the one end of cutter barrel main body;

[0006] The blade part has a plurality of first deer grinding ports and a plurality of second deer grinding ports opened on the wall surface of the cutter barrel main body. The first deer grinding port is a circular structure, and the second deer grinding port is a polygonal structure. The edge of the first deer grinding port and the second deer grinding port is formed with a deer grinding tooth extending outside the outer wall of the cutter barrel main body.

[0007] Preferably, the first deer grinding port and the second deer grinding port are divided into two groups, each group of first deer grinding ports and each group of second deer grinding ports have a plurality of uniform arrangements, and the two groups of first deer grinding ports and the two groups of second deer grinding ports are staggered around the wall surface of the cutter barrel main body.

[0008] Preferably, the plurality of first grinding teeth and the plurality of second grinding teeth are distributed in a staggered manner and uniformly surround the wall surface of the cutter barrel body.

[0009] Preferably, the second grinding teeth are in a quadrilateral or hexagonal structure.

[0010] Preferably, the second grinding teeth are in a hexagonal structure, two edges of the second grinding teeth are parallel to the rotation direction of the cutter barrel body, and the other four edges of the second grinding teeth are divided into two groups of edges corresponding to the front and back by the two edges parallel to the rotation direction of the cutter barrel body, and the grinding teeth are arranged on the two groups of edges.

[0011] Preferably, the grinding teeth on the two groups of edges are arranged in a staggered manner.

[0012] Preferably, the inner blocking ring comprises a plurality of blocking pieces formed around one end of the cutter barrel body, and the plurality of blocking pieces are bent inward and abut against each other to form the structure of the inner blocking ring.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] The first grinding teeth in a circular structure and the second grinding teeth in a polygonal structure are arranged on the grinding cutter barrel, the double-structure design breaks the limitation of the single structure of the traditional grinding cutter barrel, the grinding teeth of different shapes can realize diversified cutting modes of the food materials when the cutter barrel rotates, the circular grinding teeth can make the food materials be subjected to relatively uniform circumferential cutting force when passing through, and are suitable for preliminarily dispersing and refining the food materials, the polygonal grinding teeth can cut the food materials from multiple angles due to the irregular shape, further break the fibers of the food materials, and the two can be used in cooperation to make the food materials be ground more finely and uniformly, effectively improve the grinding effect, and meet the food material texture requirement of dish making.

[0015] Additional aspects and advantages of the utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying the creative labor.

[0017] Figure 1 It is a three-dimensional structure schematic view of one view of the utility model;

[0018] Figure 2is another perspective view of the three-dimensional structure of the utility model;

[0019] Figure 3 is a structure schematic view of one embodiment of the utility model;

[0020] Figure 4 is a structure schematic view of another embodiment of the utility model.

[0021] The reference signs and names in the drawing are as follows:

[0022] The knife barrel main body 10, the inner blocking ring 11, the blocking piece 111, the blade part 20, the first fur grinding port 21, the second fur grinding port 22, the fur grinding tooth 23. Specific embodiments

[0023] The technical solutions in the embodiments of the utility model will be described clearly and completely below, obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0024] Please refer to Figures 1-4 In the embodiments of the utility model, a fur grinding knife barrel with double structure is provided, which comprises a knife barrel main body 10 and a blade part 20, the knife barrel main body 10 is a through barrel structure, and an inner blocking ring 11 is arranged around one end of the knife barrel main body 10.

[0025] The blade part 20 is provided with a plurality of first fur grinding ports 21 and a plurality of second fur grinding ports 22 on the wall surface of the knife barrel main body 10, the first fur grinding port 21 is a circular structure, the second fur grinding port 22 is a polygonal structure, and the fur grinding tooth 23 extending to the outer wall of the knife barrel main body 10 is formed on the edge of the first fur grinding port 21 and the second fur grinding port 22.

[0026] The fur grinding knife barrel is installed in a hand-operated or electrically driven rotary drum vegetable cutter, so that the fur grinding knife barrel rotates, the fur grinding food is ground and enters the inside of the fur grinding knife barrel after passing through the first fur grinding port 21 and the second fur grinding port 22 along the outer wall of the rotating fur grinding knife barrel, and finally comes out along the end of the fur grinding knife barrel without the inner blocking ring 11.

[0027] In the above technical scheme, the first grinding mouth 21 with a circular structure and the second grinding mouth 22 with a polygonal structure are arranged on the grinding knife cylinder, which breaks the limitation of the single structure of the traditional grinding knife cylinder. When the grinding knife cylinder rotates, the different shapes of the grinding mouths can realize diversified cutting modes of the food materials. The circular grinding mouth can make the food materials be subjected to relatively uniform circumferential cutting force when passing through, which is suitable for preliminarily dispersing and refining the food materials. The polygonal grinding mouth can cut the food materials from multiple angles due to the irregular shape, further crushing the fiber of the food materials. The cooperation of the two can make the food materials be ground more finely and uniformly, effectively improve the grinding effect, and meet the food material texture requirement of dish making.

[0028] The grinding teeth 23 extending out of the outer wall of the knife cylinder body 10 are formed on the edges of the first grinding mouth 21 and the second grinding mouth 22. When the knife cylinder rotates, the grinding teeth 23 act as additional small cutting blades, which not only increase the contact area with the food materials, but also cut and scrape the food materials more deeply when the food materials pass through the grinding mouths. For some food materials with relatively tough fibers, the grinding teeth 23 can better cut into the interior of the food materials, more thoroughly crush the fiber organization, and make the finally ground food materials more delicate, avoiding the situation that the fiber of the food materials is not fully ground and affects the taste.

[0029] Please refer to Figure 3 In an embodiment of the utility model, the first grinding mouth 21 and the second grinding mouth 22 are divided into two groups, each group of the first grinding mouth 21 and each group of the second grinding mouth 22 has a plurality of uniform arrangements, and the two groups of the first grinding mouth 21 and the two groups of the second grinding mouth 22 are arranged in a staggered manner around the wall surface of the knife cylinder body 10. This design makes the food materials experience a more complex cutting path during the movement along the outer wall of the knife cylinder and entering the grinding mouth. Compared with the single arrangement of the grinding mouth, the staggered arrangement structure makes the food materials pass through the grinding mouths of different groups and positions in turn, which can be subjected to cutting force from different angles and different levels. For example, the food materials can be subjected to preliminary cutting of a group of the first grinding mouth 21 first, and then subjected to further crushing of another group of the second grinding mouth 22 arranged in a staggered manner during the movement. Through such repeated processes, the fiber organization of the food materials can be more fully crushed, the food materials can be ground more finely, and the final grinding quality is greatly improved.

[0030] Please refer to Figure 4In another embodiment of the utility model, multiple first grinding ports 21 and multiple second grinding ports 22 are distributed in a staggered manner and uniformly surround the wall surface of the cutter barrel main body 10. When the food material moves along the outer wall of the cutter barrel and attempts to enter the grinding port, it will experience cutting force from different angles, that is, the food material may first contact a first grinding port 21 and be cut from a certain direction, and then, during continuous movement, it will encounter a second grinding port 22 arranged in a staggered manner, thereby being cut from another different direction. This process is repeated, and the food material is broken by cutting from different angles, which can more effectively destroy the fiber organization of the food material and grind the food material more finely, greatly improving the final grinding quality.

[0031] In addition, since the grinding ports are uniformly surrounded and distributed in a staggered manner, when the cutter barrel continuously rotates, the food material is almost not in contact with the grinding port for a long time, which means that the food material can continuously be cut by the grinding port, making the grinding process more compact and efficient.

[0032] Moreover, this structure has different textures and fiber structures for different food materials. Some food materials have coarse and tough fibers, and some are relatively fine and soft. The staggered and uniformly surrounded grinding port design can flexibly grind various food materials according to their different characteristics through cutting from different angles and levels. Whether it is meat, vegetables, or other food materials, they can all obtain an ideal grinding effect under the action of the grinding cutter barrel, further embodying its versatility and practicality in food processing.

[0033] Please refer to Figures 1-4 The utility model embodiment further proposes that the second grinding port 22 is a quadrilateral or hexagonal structure. When the second grinding port 22 adopts a quadrilateral structure, it has four sides, which can provide different cutting angles for the food material compared with a circular structure. During the rotation of the cutter barrel, the food material will be cut from different directions by the four sides when passing through the quadrilateral grinding port. This multi-angle cutting method helps to more comprehensively break the fiber organization of the food material, especially for some food materials with relatively tough fibers. The quadrilateral grinding port can better cut into and tear and refine the food material, making the finally ground food material more fine and uniform. The second grinding port 22 with a hexagonal structure further increases the diversity of cutting angles. The hexagonal structure has six sides, which means that the food material will be cut from six different directions when passing through, which makes the fiber organization of the food material be broken more fully. Compared with the quadrilateral structure, it may exhibit better grinding effect when processing some food materials with harder texture and more complex fibers, and can grind the food material to a finer degree, better meeting the food processing demand of higher requirement for food material texture.

[0034] Please refer to Figures 1-4The utility model discloses embodiments preferably propose that the second grinding mouth 22 is hexagonal structure, in two edges of second grinding mouth 22 with the rotation direction parallel of cutter barrel main part 10, in the other four edges of second grinding mouth 22 are divided into the two groups of edges corresponding to front and back through the two edges parallel to the rotation direction of cutter barrel main part 10, and the grinding tooth 23 is arranged on the two groups of edges. When cutter barrel continues rotating, each second grinding mouth 22 can carry out the cutting of continuous two times and the long horizontal sweep range to food material through the grinding tooth 23 on two groups of edges, thereby can carry out the depth cutting and scraping to food material, and the two groups of edges of the other four edges still have different angles, so that the food material after grinding can reach better level in the texture and uniformity. In addition, the grinding tooth 23 on two groups of edges is in the arrangement relation of front and back staggered distribution. Because the grinding tooth 23 is in the front and back staggered distribution, food material almost does not contact the grinding tooth 23 for a long time when moving along the cutter barrel outer wall and trying to enter the grinding mouth, and food material can continuously be subjected to the cutting effect of the grinding tooth 23 in the process of cutter barrel continuous rotation, so that the grinding process is more compact and efficient.

[0035] Please refer to Figure 2 The utility model discloses embodiments further propose that the inner blocking ring 11 includes the blocking piece 111 that surrounds the forming in the one end of cutter barrel main part 10, and the blocking piece 111 is bent to each other after multiple pieces and forms the structure of inner blocking ring 11 with mutual abutment;The blocking piece 111 is bent to each other after multiple pieces and forms the inner blocking ring 11 with mutual abutment, and this mutual abutment makes the inner blocking ring 11 have better structural stability, and in the process of cutter barrel main part 10 rotation, the inner blocking ring 11 needs to bear the impact and pressure of food material, and through the mutual abutment between blocking piece 111, these external forces can be evenly dispersed, avoid the situation that the inner blocking ring 11 is deformed or damaged due to local excessive stress, ensure that the inner blocking ring 11 can continuously and effectively play the role of blocking and guiding food material flow in the grinding process.

[0036] For those skilled in the art, it is obvious that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model.

Claims

1. A grinding blade barrel with dual-structure grinding teeth, characterized in that, The utility model relates to a cutting tool, including sword cylinder main part (10) and cutting edge part (20), sword cylinder main part (10) is the through and through cylinder structure of two ends, is provided with the inner blocking ring (11) in the one end of sword cylinder main part (10) around; Cutting edge part (20) has multiple first burr mouth (21) and multiple second burr mouth (22) that set up on the wall of sword cylinder main part (10), first burr mouth (21) is circular structure, second burr mouth (22) is polygonal structure, and the burr tooth (23) extending to the outer wall of sword cylinder main part (10) is formed on the edge of first burr mouth (21) and second burr mouth (22).

2. A double structure shaving cartridge according to claim 1, characterized in that, First burr mouth (21) and second burr mouth (22) are divided into two groups, and each group of first burr mouth (21) and each group of second burr mouth (22) have multiple uniform arrangement, and two groups of first burr mouth (21) and two groups of second burr mouth (22) are located in the wall of sword cylinder main part (10).

3. A double structure shaving cartridge as claimed in claim 1, wherein, Multiple first burr mouth (21) and multiple second burr mouth (22) are located and uniformly circled in the wall of sword cylinder main part (10).

4. The double structure shaving cartridge of claim 1, wherein, Second burr mouth (22) is quadrilateral or hexagonal structure.

5. A double structure shaving cartridge according to claim 1, characterized in that, Second burr mouth (22) is hexagonal structure, and two edges of second burr mouth (22) are parallel to the rotation direction of sword cylinder main part (10), and the other four edges of second burr mouth (22) are divided into two groups of edges corresponding to front and back through the two edges parallel to the rotation direction of sword cylinder main part (10), and burr tooth (23) is arranged on the two groups of edges.

6. A double profile shaving cutter cartridge according to claim 5 wherein, The burr tooth (23) on the two groups of edges is in front and back staggered distribution arrangement relationship.

7. A double structure shaving cartridge according to claim 1, wherein The inner blocking ring (11) includes multiple blocking pieces (111) that are formed around in one end of the sword cylinder main part (10), and the multiple blocking pieces (111) are bent inward and abut against each other to form the structure of the inner blocking ring (11).