Slicing tool and noodles

By designing a cutting blade with an 8-shaped cavity, the problem of monotonous chewiness and poor flavor absorption caused by the single cross-section of existing cutting blades is solved, thus achieving diversification of noodle cross-sectional shapes and improved flavor absorption.

CN224306660UActive Publication Date: 2026-06-02KANGSHI (SHANGHAI) FOOD SCIENCE & TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KANGSHI (SHANGHAI) FOOD SCIENCE & TECHNOLOGY CO LTD
Filing Date
2025-04-29
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The noodles cut by existing noodle-cutting tools have a uniform cross-sectional shape, resulting in a monotonous chewy texture and poor flavor absorption.

Method used

Design a noodle cutting tool in which the annular cutting teeth of the first and second cutting rollers form a horizontal 8-shaped cavity with the cutting groove, and the cross-section of the cut noodles is also horizontal 8-shaped, increasing the surface area to improve the flavor absorption and enriching the chewiness through the interlocking structure.

Benefits of technology

It enriches the chewiness of the noodles, increases their surface area, enhances their flavor absorption, and ensures a variety of textures and a rich chewiness.

✦ Generated by Eureka AI based on patent content.

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Abstract

A noodle cutting tool and noodles. The noodle cutting tool comprises: a first cutter roll and a second cutter roll which can be engaged; a plurality of first annular cutter grooves are arranged on the first cutter roll, and a first annular cutter tooth is formed between any two adjacent first annular cutter grooves; a second annular cutter groove is arranged on the second cutter roll, and a second annular cutter tooth is formed between any two adjacent second annular cutter grooves; in the engaged state, the first annular cutter tooth is inserted into the corresponding second annular cutter groove, and a first cavity is formed between the first annular cutter tooth and the bottom of the inserted second annular cutter groove; the second annular cutter tooth is inserted into the corresponding first annular cutter groove, and a second cavity is formed between the second annular cutter tooth and the bottom of the inserted first annular cutter groove; the cross-sectional shape of at least one of the first cavity and the second cavity is in the shape of a horizontal 8. By using the above scheme, the chewiness of the noodles can be enriched.
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Description

Technical Field

[0001] This utility model relates to the field of food processing technology, specifically to a noodle cutting tool and noodles. Background Technology

[0002] In recent years, with the acceleration of the pace of life and the rise of tourism, the demand for convenience food has been growing. Instant noodles are very popular because they are convenient to eat, easy to carry, and inexpensive.

[0003] Currently, the processing of commercially available instant noodles can include: kneading dough, rolling, shredding, waving, separating, steaming, cutting, and drying. Among these processes, the shredding process involves cutting the noodles into shredded strands using a noodle-cutting tool.

[0004] However, the cross-sectional shape of noodles cut by existing noodle-cutting tools is uniform, either rectangular or circular, resulting in a monotonous chewiness and poor flavor absorption. Utility Model Content

[0005] The problem this invention aims to solve is: how to enrich the chewiness of noodles and make them more flavorful.

[0006] To address the above problems, this utility model provides a face-cutting tool, which includes:

[0007] A first cutter roller and a second cutter roller that can mesh;

[0008] The first cutter roller is provided with a plurality of first annular cutter grooves, and a first annular cutter tooth is formed between any two adjacent first annular cutter grooves;

[0009] The second cutter roller is provided with a second annular cutter groove, and a second annular cutter tooth is formed between any two adjacent second annular cutter grooves;

[0010] In the meshing state, the first annular cutter tooth is inserted into the corresponding second annular cutter groove, and a first cavity is formed between the first annular cutter groove and the bottom of the inserted second annular cutter groove; the second annular cutter tooth is inserted into the corresponding first annular cutter groove, and a second cavity is formed between the second annular cutter groove and the bottom of the inserted first annular cutter groove.

[0011] The cross-sectional shape of at least one of the first cavity and the second cavity is transversely shaped.

[0012] In one possible embodiment, the first cutter roller includes a first half-horizontal structure 8, and the corresponding second cutter roller includes a second half-horizontal structure 8, wherein the first half-horizontal structure 8 meshes with the second half-horizontal structure 8.

[0013] In one possible embodiment, the first semi-horizontal structure includes: a first arc-shaped groove, a second arc-shaped groove, and a first connecting portion connecting the first arc-shaped groove and the second arc-shaped groove.

[0014] In one possible embodiment, the second semi-horizontal 8 structure includes: a third arc-shaped groove, a fourth arc-shaped groove, and a second connecting portion connecting the third arc-shaped groove and the fourth arc-shaped groove.

[0015] In one possible embodiment, the second semi-horizontal 8 structure further includes: a first groove communicating with the third arcuate groove, and a second groove communicating with the fourth arcuate groove.

[0016] In one possible embodiment, the top surface of the first annular cutter tooth and the top surface of the corresponding second annular cutter groove have a first preset staggered height, the first preset staggered height being greater than or equal to zero.

[0017] In one possible embodiment, the first preset stagger height is adjustable.

[0018] In one possible embodiment, in the meshing state, the width of the first annular cutter tooth is less than the width of the corresponding second annular cutter groove, and the width of the second annular cutter tooth is less than the width of the corresponding first annular cutter groove.

[0019] In one possible embodiment, the first cavity and the second cavity are centrally symmetrical about their critical point.

[0020] In one possible embodiment, the cutting tool further includes a face comb connected to the first cutter roller and the second cutter roller.

[0021] This utility model embodiment also provides a noodle, which is cut using any of the above-mentioned cutting tools.

[0022] Compared with the prior art, the technical solution of this utility model embodiment has the following advantages:

[0023] By applying the solution of this utility model, since at least one of the first and second cavities has a cross-sectional shape of 8, the cross-sectional shape of the cut noodles can also be similar to that of 8. Noodles with a cross-sectional shape of 8 can have various thicknesses, thereby enriching the chewiness of the noodles. Furthermore, 8-shaped noodles also have the firm texture of round noodles, making them more elastic and resilient. Therefore, the solution of this utility model can enrich the layers of noodle thickness while ensuring good taste, thus enriching the chewiness of the noodles. In addition, the increased surface area of ​​8-shaped noodles makes them easier to absorb sauce, resulting in better flavor absorption. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of a cutting tool;

[0025] Figure 2 This is a schematic diagram of a structure in which the first cutter roller and the second cutter roller are in an unengaged state;

[0026] Figure 3 This is a schematic diagram of another structure in which the first cutter roller and the second cutter roller are in an engaged state;

[0027] Figure 4 This is a partial cross-sectional structural diagram of a first cutter roller in an embodiment of this utility model;

[0028] Figure 5 This is a partial cross-sectional structural diagram of another second cutter roller in an embodiment of this utility model;

[0029] Figure 6 This is a partial cross-sectional structural diagram of the first cutter roller and the second cutter roller in the meshing state in an embodiment of this utility model;

[0030] Wherein: 11-base, 121-first cutter roller, 122-second cutter roller, 121a-first annular cutter groove, 121b-first annular cutter tooth, 122a-second annular cutter groove, 122b-second annular cutter tooth, 123-cavity.

[0031] 41-First cutter roller, 411-First annular cutter groove, 412-First annular cutter tooth, 42-Second cutter roller, 421-Second annular cutter groove, 422-Second annular cutter tooth, 412a-First arc groove, 412b-Second arc groove, 421a-Third arc groove, 421b-Fourth arc groove, 421d-First groove, 421e-Second groove. Detailed Implementation

[0032] Figure 1 This is a schematic diagram of the structure of an existing cutting tool. (Refer to...) Figure 1 The cutting tool may include: a base 11, a first cutter roller 121 and a second cutter roller 122 mounted on the base 11. The first cutter roller 121 and the second cutter roller 122 are meshed.

[0033] Figure 2 This is a schematic diagram showing the first cutter roller 121 and the second cutter roller 122 in an unengaged state. Figure 3 This is a schematic diagram showing the first cutter roller 121 and the second cutter roller 122 in an engaged state. Figure 2 and Figure 3As shown, the surface of the first cutter roller 121 is provided with a plurality of first annular cutter grooves 121a, and a first annular cutter tooth 121b is formed between any two adjacent first annular cutter grooves 121a, the first annular cutter tooth 121b protruding from the surface of the first annular cutter groove 121a. The surface of the second cutter roller 122 is provided with a plurality of second annular cutter grooves 122a, and a second annular cutter tooth 122b is formed between any two adjacent second annular cutter grooves 122a, the second annular cutter tooth 122b protruding from the surface of the second annular cutter groove 122a.

[0034] In the engaged state, the first annular cutter tooth 121b is inserted into the corresponding second annular cutter groove 122a, and the second annular cutter tooth 122b is inserted into the corresponding first annular cutter groove 121a. Cavities 123 are formed between the bottom of the first annular cutter tooth 121b and the corresponding second annular cutter groove 122a, and between the second annular cutter tooth 122b and the corresponding first annular cutter groove 121a.

[0035] In practical applications, the dough is conveyed between the first cutter roller 121 and the second cutter roller 122. As the first cutter roller 121 and the second cutter roller 122 rotate in opposite directions, the dough passes through the first cutter roller 121 and the second cutter roller 122 and is evenly squeezed into the cavity 123 between the bottom of the first annular cutter tooth 121b and the corresponding bottom of the second annular cutter groove 122a, and between the bottom of the second annular cutter tooth 122b and the corresponding bottom of the first annular cutter groove 121a, thereby cutting the noodles into the corresponding shapes. The cross-sectional shape of the noodles is basically the same as the cross-sectional shape of the cavity 123.

[0036] In the above-mentioned cutting tool, the cross-sectional shape of the cavity 123 is rectangular, and the cross-sectional shape of the noodles cut is also rectangular.

[0037] There are also existing cutting tools with a circular cavity cross-section, in which the cut noodles have a circular cross-section.

[0038] However, regardless of whether the noodles have a rectangular or circular cross-section, their uniform thickness results in a monotonous chewy texture. Furthermore, their small surface area makes them difficult to absorb sauce, leading to poor flavor absorption.

[0039] To address this problem, this utility model provides a noodle-cutting tool. The cross-sectional shape of the cavity formed between the annular blade teeth and the corresponding annular groove in the noodle-cutting tool is shaped like a horizontal 8. Thus, the noodle-cutting tool can be used to obtain noodles with a cross-sectional shape similar to a horizontal 8. These noodles have various thicknesses, which can enrich the chewiness of the noodles while ensuring their texture, and can also increase the surface area of ​​the noodles and improve their flavor absorption.

[0040] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0041] This utility model embodiment provides a cutting tool, which may include: a first cutting roller and a second cutting roller that can mesh with each other. Wherein:

[0042] The first cutter roller is provided with a plurality of first annular cutter grooves, and a first annular cutter tooth is formed between any two adjacent first annular cutter grooves;

[0043] The second cutter roller is provided with a second annular cutter groove, and a second annular cutter tooth is formed between any two adjacent second annular cutter grooves;

[0044] In the engaged state, the first annular cutter tooth is inserted into the corresponding second annular cutter groove, and a first cavity is formed between the first annular cutter tooth and the bottom of the inserted second annular cutter groove; the second annular cutter tooth is inserted into the corresponding first annular cutter groove, and a second cavity is formed between the second annular cutter groove and the bottom of the inserted first annular cutter groove.

[0045] Unlike existing technologies, in embodiments of this invention, at least one of the first cavity and the second cavity has a cross-sectional shape of 8. That is, the solution of this invention can be such that only the first cavity formed between the first annular cutting tooth and the bottom of the inserted second annular cutting groove is 8-shaped, or only the second cavity formed between the second annular cutting tooth and the bottom of the inserted first annular cutting groove is 8-shaped, or both the first cavity formed between the first annular cutting tooth and the bottom of the inserted second annular cutting groove, and the second cavity formed between the second annular cutting tooth and the bottom of the inserted first annular cutting groove, are 8-shaped.

[0046] The so-called "horizontal 8 shape" refers to the fact that, when viewed from the direction where the dough enters the cutting blade, the cross-sectional shape of the cavity resembles the Arabic numeral "8" horizontally (i.e., parallel to the axial direction of the first and second cutting rollers). The two sides of the cavity are semi-circular arcs, and the middle is straight, which results in noodles with various thicknesses.

[0047] In specific implementations, the first cutter roller and the second cutter roller can have various structures, such that the cross-sectional shape of at least one of the first cavity and the second cavity is horizontally shaped.

[0048] In one embodiment of the present invention, the first cutter roller includes a first half-horizontal structure 8, and the corresponding second cutter roller includes a second half-horizontal structure 8, wherein the first half-horizontal structure 8 and the second half-horizontal structure 8 mesh with each other.

[0049] Specifically, when the cross-sectional shape of the first cavity is horizontally shaped (e.g., 8), the first annular cutter tooth includes a first half-horizontal 8 structure, and the corresponding second annular cutter groove includes a second half-horizontal 8 structure. When the second cavity is horizontally shaped (e.g., 8), the second annular cutter tooth includes a second half-horizontal 8 structure, and the corresponding first annular cutter groove includes a first half-horizontal 8 structure.

[0050] The structures of the first cavity and the second cavity are described in detail below with reference to the accompanying drawings:

[0051] Figure 4 This is a partial cross-sectional structural diagram of the first cutter roller 41 in one embodiment of the present invention. (Refer to...) Figure 4 The first cutter roller 41 may include a first annular cutter groove 411 and a first annular cutter tooth 412. Each first annular cutter groove 411 extends circumferentially along the first cutter roller 41 and forms a closed annulus. Each first annular cutter tooth 412 also extends circumferentially along the first cutter roller 41 and forms a closed annulus. In the circumferential direction of the first cutter roller 41, the top surface of the first annular cutter tooth 412 protrudes beyond the top surface of the first annular cutter groove 411. The first annular cutter grooves 411 and the first annular cutter teeth 412 are staggered along the axial direction of the first cutter roller 41, with no gap between them.

[0052] Figure 5 This is a partial cross-sectional structural diagram of the second cutter roller 42 in one embodiment of the present invention. (Refer to...) Figure 5 The second cutter roller 42 may include a second annular cutter groove 421 and a second annular cutter tooth 422. Each second annular cutter groove 421 extends circumferentially along the second cutter roller 42 and forms a closed annulus. Each second annular cutter tooth 422 also extends circumferentially along the second cutter roller 42 and forms a closed annulus. In the circumferential direction of the second cutter roller 42, the top surface of the second annular cutter tooth 422 protrudes beyond the top surface of the second annular cutter groove 421. The second annular cutter grooves 421 and the second annular cutter teeth 422 are staggered along the axial direction of the second cutter roller 42, with no gap between them.

[0053] When the first cavity is shaped like a horizontal 8, the first annular cutter tooth 412 includes a first half-horizontal 8 structure, and the corresponding second annular cutter groove 421 includes a second half-horizontal 8 structure.

[0054] When the second cavity is in the shape of a horizontal 8, the second annular cutter tooth 422 includes a second half-horizontal 8 structure, and the corresponding first annular cutter groove 411 includes a first half-horizontal 8 structure.

[0055] Specifically, refer to Figure 4 and Figure 5Both the first cavity and the second cavity are saucer-shaped. Taking the first annular cutter groove 411 as an example, the first semi-horizontal structure includes: a first arc-shaped groove 412a, a second arc-shaped groove 412b, and a first connecting portion 412c connecting the first arc-shaped groove 412a and the second arc-shaped groove 412b. Both the first arc-shaped groove 412a and the second arc-shaped groove 412b are recessed in a direction away from the second cutter roller.

[0056] Accordingly, refer to Figure 5 The second semi-horizontal structure 8 may include: a third arc-shaped groove 421a, a fourth arc-shaped groove 421b, and a second connecting portion 421c connecting the third arc-shaped groove 421a and the fourth arc-shaped groove 421b. Both the third arc-shaped groove 421a and the fourth arc-shaped groove 421b are recessed in a direction away from the first cutter roller.

[0057] In practice, the curvature of the first arc groove 412a, the second arc groove 412b, the third arc groove 421a, and the fourth arc groove 421b can be set according to the actual shape of the noodles.

[0058] In some embodiments, the cross-sectional shapes of the first arc-shaped groove 412a and the second arc-shaped groove 412b can be semi-circular with the same radius, and the cross-sectional shapes of the third arc-shaped groove 421a and the fourth arc-shaped groove 421b can also be circular with the same radius. The radius of the circle containing the third arc-shaped groove 421a can be slightly larger than the radius of the circle containing the first arc-shaped groove 412a, and the radius of the circle containing the fourth arc-shaped groove 421b can be slightly larger than the radius of the circle containing the second arc-shaped groove 412b. This allows the first annular cutting tooth 412 to be inserted into the second annular cutting groove 421, thereby achieving meshing between the first annular cutting tooth 412 and the second annular cutting groove 421.

[0059] In the meshing state, the third arc-shaped groove 421a and the first arc-shaped groove 412a form a first sub-cavity with a cross-sectional shape that is close to a circle or an ellipse. The second arc-shaped groove 412b and the fourth arc-shaped groove 421b form a second sub-cavity with a cross-sectional shape that is close to a circle or an ellipse. The first connecting part 412c and the second connecting part 421c form a third sub-cavity with a cross-sectional shape that is close to a rectangle or a square. The first sub-cavity, the second sub-cavity and the third sub-cavity are connected to form a first cavity structure with a cross-sectional shape of 8.

[0060] The noodles cut from the first cavity have a thickness that increases and then decreases from the middle area towards the two edges, and the thickness may differ from that of the middle area. This gives the noodles a variety of thickness characteristics, resulting in a multi-layered chewy texture. Furthermore, the increased surface area of ​​the noodles allows them to absorb flavors better.

[0061] In specific implementations, the cross-sectional shapes of the first connecting portion 412c and the second connecting portion 421c can be straight or curved. The lengths of the first connecting portion 412c and the second connecting portion 421c can be greater than 0 but less than or equal to the radius of the circle containing the third arc-shaped groove 421a (or the radius of the fourth arc-shaped groove 421b, the first arc-shaped groove 412a, or the second arc-shaped groove 412b), thereby allowing the middle area of ​​the noodles to also have various thickness characteristics, thus further enriching the chewiness of the noodles.

[0062] In some embodiments, refer to Figure 5 The second semi-horizontal structure may further include: a first groove 421d communicating with the third arc-shaped groove 421a, and a second groove 421e communicating with the fourth arc-shaped groove 421b. The connected third arc-shaped groove 421a and the first groove 421d can form a first Y-shaped groove, and the connected fourth arc-shaped groove 421b and the second groove 421e can form a second Y-shaped groove.

[0063] In specific implementations, the depth and width of the first groove 421d can be the same as or different from the depth and width of the second groove 421e. When the depth and width of the first groove 421d are the same as the depth and width of the second groove 421e, the first Y-shaped groove and the second Y-shaped groove are connected by the second connecting part 421c, forming a second annular groove with a cross-sectional shape similar to a symmetrical trouser leg, thereby accommodating more space for excess noodles and accommodating different noodle thicknesses. Wherein, the...

[0064] Preferably, the width of the first groove 421d can be 80% to 120% of the radius of the third arc groove 421a, and the width of the second groove 421e can be 80% to 120% of the radius of the fourth arc groove 421b.

[0065] In specific implementation, under meshing conditions, the width w1 of the first annular cutter tooth 412 is smaller than the width w2 of the corresponding second annular cutter groove 421. This allows the first annular cutter tooth 412 to intersect with, or contact with, the second annular cutter groove 421, thus achieving meshing between the first annular cutter tooth 412 and the second annular cutter groove 421 (e.g., Figure 6 As shown in the figure, this allows the dough to be squeezed into the first cavity.

[0066] In specific implementation, in the meshing state, the width w3 of the second annular cutter tooth 422 is smaller than the width w4 of the corresponding first annular cutter groove 411. This allows the second annular cutter tooth 422 to intersect with, or contact with, the first annular cutter groove 411, thus achieving meshing between the second annular cutter tooth 422 and the first annular cutter groove 411 (e.g., Figure 6 As shown in the figure, this allows the dough to be squeezed into the second cavity.

[0067] In practical implementation, in the engaged state, the first half-horizontal structure 8 can be inserted into the second half-horizontal structure 8, or it can remain uninserted. In the embodiments of this utility model, the overlap dimension between the first half-horizontal structure 8 and the second half-horizontal structure 8 is referred to as the first preset staggered height. The first preset staggered height affects the thickness of the noodle edge.

[0068] In some embodiments, in the meshing state, the first preset staggered height can be greater than zero and less than or equal to the height difference h0 between the top surface of the first annular cutter tooth 412 and the first annular cutter groove 411. At this time, the first half-horizontal structure 8 is inserted into the second half-horizontal structure 8.

[0069] Preferably, the first preset staggered height can be equal to the height difference h0 between the top surfaces of the first annular blade 412 and the first annular groove 411. At this time, the first half-horizontal structure 8 is completely inserted into the second half-horizontal structure 8, and the edge of the resulting noodle is the thinnest.

[0070] In other embodiments, in the meshing state, the first preset staggered height can also be zero. In this case, the first half-horizontal structure 8 is not inserted into the second half-horizontal structure 8, but there is point contact with the free end of the second half-horizontal structure 8. The edge thickness of the formed noodle is equal to the height difference h0 between the top surface of the first annular blade tooth 412 and the first annular groove 411.

[0071] In some embodiments, the first preset staggered height is adjustable. Specifically, the cutting tool may further include a base, on which the first and second cutting rollers are fixed. The first preset staggered height can be adjusted by adjusting the positions of the first and second cutting rollers on the base, thereby adjusting the distance between them. When the distance between the first and second cutting rollers increases, the first preset staggered height also increases. When the distance between the first and second cutting rollers decreases, the first preset staggered height also decreases. By adjusting the first preset staggered height, not only can the thickness of the noodle edges be adjusted, but also the formation of noodles sticking together can be avoided.

[0072] In specific implementation, when the cross-sections of both the first and second cavities are horizontally shaped (8-shaped), on the first cutter roller 41, the first annular cutter groove 411 and the first annular cutter tooth 412 are alternately connected without gaps. Similarly, on the second cutter roller 42, the second annular cutter groove 421 and the second annular cutter tooth 422 are alternately connected without gaps. Thus, the first and second cavities have a centrally symmetrical structure with their critical point as the center. The critical point between the first and second cavities is the contact point between the first and second cavities; the first cavity can coincide with the second cavity after rotating 180° around this critical point. This staggered tooth distribution of the first and second cutter rollers effectively avoids the problem of sliver shearing.

[0073] In a specific implementation, the cutting tool may also include a transmission component, which may be fixed at one end of the base and connected to the first cutter roller and the second cutter roller, thereby driving the first cutter roller and the second cutter roller to rotate.

[0074] In some embodiments, the cutting tool may further include a face comb, which is connected to the first cutting roller and the second cutting roller. Specifically, the cutting tool may include a first face comb and a second face comb. The first face comb may have a first tooth, and the second face comb may have a second tooth. The first tooth of the first face comb may be embedded in a first annular cutting groove and extend outward from the bottom of the first annular cutting groove. The second face comb may be embedded in a second annular cutting groove and extend outward from the bottom of the second annular cutting groove.

[0075] In practical applications, the dough strip is squeezed into the first and second cavities, thereby cutting the dough strip into two sets of noodles with a cross-sectional shape of 8. One set of noodles is located in the first annular cutter groove and rotates with the first cutter roller until it contacts the teeth of the first face comb embedded in the first annular cutter groove. Then, under the action of the teeth of the first face comb and the weight of the noodles themselves, it falls from the glass of the first annular cutter groove onto the noodle separator below the cutting blade. The other set of noodles is located in the second annular cutter groove and rotates with the second cutter roller until it contacts the teeth of the second face comb embedded in the second annular cutter groove. Then, under the action of the teeth of the second face comb and the weight of the noodles themselves, it falls from the glass of the second annular cutter groove onto the noodle separator below the cutting blade.

[0076] In some embodiments, the cutting tool may further include a scraper. Specifically, the scraper may include a first scraper and a second scraper, the first scraper being located between the first cutter roller and the base, and the second scraper being located between the second cutter roller and the base. The first scraper can be used to remove dough residue from the surface of the first cutter roller, and the second scraper can be used to remove dough residue from the surface of the second cutter roller.

[0077] As can be seen from the above, in the embodiment of this utility model, the cross-sectional shape of the cavity formed between the annular blade teeth and the corresponding annular blade groove is horizontally 8-shaped. Therefore, the cross-sectional shape of the noodles can be obtained by using the cutting tool, which can enrich the chewiness of the noodles while ensuring the taste of the noodles and improve the flavor absorption of the noodles.

[0078] This embodiment of the invention also provides a type of noodle, which is formed using the cutting tool described in the above embodiment. This noodle not only has a better taste and a richer chewiness, but it is also easier to rehydrate and has a firmer texture compared to plain wide noodles.

[0079] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the present invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A cutting tool, characterized in that, include: A first cutter roller and a second cutter roller that can mesh; The first cutter roller is provided with a plurality of first annular cutter grooves, and a first annular cutter tooth is formed between any two adjacent first annular cutter grooves; The second cutter roller is provided with a second annular cutter groove, and a second annular cutter tooth is formed between any two adjacent second annular cutter grooves; In the meshing state, the first annular cutter tooth is inserted into the corresponding second annular cutter groove, and a first cavity is formed between the first annular cutter tooth and the bottom of the inserted second annular cutter groove; The second annular cutter tooth is inserted into the corresponding first annular cutter groove, and a second cavity is formed between the tooth and the bottom of the inserted first annular cutter groove. The cross-sectional shape of at least one of the first cavity and the second cavity is transversely shaped.

2. The cutting tool as described in claim 1, characterized in that, The first cutter roller includes a first half-horizontal structure 8, and the corresponding second cutter roller includes a second half-horizontal structure 8, with the first half-horizontal structure 8 meshing with the second half-horizontal structure 8.

3. The cutting tool as described in claim 2, characterized in that, The first semi-horizontal 8 structure includes: a first arc-shaped groove, a second arc-shaped groove, and a first connecting part connecting the first arc-shaped groove and the second arc-shaped groove.

4. The cutting tool as described in claim 2, characterized in that, The second semi-horizontal 8 structure includes: a third arc-shaped groove, a fourth arc-shaped groove, and a second connecting part connecting the third arc-shaped groove and the fourth arc-shaped groove.

5. The cutting tool as described in claim 4, characterized in that, The second semi-horizontal 8 structure further includes: a first groove communicating with the third arc-shaped groove, and a second groove communicating with the fourth arc-shaped groove.

6. The cutting tool as described in claim 1, characterized in that, The top surface of the first annular cutter tooth and the top surface of the corresponding second annular cutter groove have a first preset stagger height, which is greater than or equal to zero.

7. The cutting tool as described in claim 6, characterized in that, The first preset stagger height is adjustable.

8. The cutting tool according to claim 6, characterized in that, In the meshing state, the width of the first annular cutter tooth is less than the width of the corresponding second annular cutter groove, and the width of the second annular cutter tooth is less than the width of the corresponding first annular cutter groove.

9. The cutting tool according to claim 1, characterized in that, The first cavity and the second cavity have a centrally symmetrical structure with their critical point as the center.

10. The cutting tool as described in claim 1, characterized in that, Also includes: A face comb connected to the first and second cutter rollers.

11. A type of noodle, characterized in that, The noodles are cut using the cutting tool described in any one of claims 1 to 10.