Net knife for cutting filaments
By using a 15° angled cutting blade and a well-designed food leakage hole in the shredding device, the problems of unstable assembly and uneven shredding in existing shredding devices are solved, achieving efficient and stable shredding results and a simplified maintenance process.
Patent Information
- Application Number
- CN202423189391.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing shredding devices lack effective positioning mechanisms, resulting in low assembly efficiency and instability. They are also difficult to adapt to ingredients of different shapes and textures, and the shredding effect is uneven, prone to clogging, and has high maintenance costs.
The first and second cutting blades are set on the motherboard at a 15° angle and are equipped with positioning holes, connecting posts, rubber rings and assembly pieces to ensure that the blades are stably assembled. The food leakage hole is designed reasonably to avoid clogging.
It improves the uniformity and efficiency of shredding, simplifies the assembly process, reduces maintenance difficulty and cost, and ensures the reliability and service life of the equipment.
Smart Images

Figure CN223746246U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to technical field, concretely relates to a net cutter for cutting filament. BACKGROUND
[0002] In the cooking process, cutting filament is a delicate food processing work, and special tools are needed to ensure uniform and delicate filament. As a professional filament tool, the net cutter is widely used for fine cutting of food materials due to its unique net design and sharp blade, to meet the needs of food filament in cooking.
[0003] For example, the Chinese patent network authorized publication No. CN212489657U discloses a netted fancy filament cutter. The existing device adopts a three-dimensional tooth-shaped tip, which is more sharp, can plane out corrugated sheet materials with levels, and cross planing can form netted three-dimensional pattern sheet materials. However, in the prior art, due to the lack of effective positioning device, the filament cutter and the machine body are difficult to quickly and accurately determine the position during assembly, resulting in low assembly efficiency and prone to errors. On the other hand, the connection between the filament cutter and the machine body is often not stable, and is prone to looseness or falling off, thereby affecting the normal operation of the equipment and the filament effect. In addition, once the cutter appears to be rolled or other faults, due to the difficulty in disassembling the filament cutter, complex maintenance operations are often required, which not only increases the maintenance cost, but also reduces the reliability and service life of the equipment. At the same time, the existing device also has obvious deficiencies in filament effect and avoiding blockage. On the one hand, the cutting blade of the cutting tool is arranged in a straight line, which can only be used for filament operation on food materials with relatively smooth outer surface, and is difficult to adapt to food materials with different shapes and textures, resulting in uneven filament, low efficiency and high energy consumption. On the other hand, the food leakage hole of the existing device lacks optimization, and is prone to blockage or food accumulation, which not only affects the filament quality, but also increases the failure rate and maintenance cost of the equipment. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a net cutter for cutting filament, which is set on the main plate at an angle of 15° through the first cutting knife and the second cutting knife. This design makes the cutter better adapt to the shape and texture of food materials, thereby improving the uniformity and efficiency of filament.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a net cutter for cutting filament, which is assembled into a machine for cutting food materials, comprising a main plate, the main plate is provided with a filament unit for cutting food materials.
[0006] The filament unit comprises a cutting part for cutting food materials and a food leakage part for leaking food materials after filament.
[0007] The cutting part comprises a plurality of groups of first cutting knives and second cutting knives for cutting noodles.
[0008] The food leakage part comprises a plurality of groups of first food leakage holes corresponding to the first cutting knives and second food leakage holes corresponding to the second cutting knives.
[0009] Preferably, the main plate is arranged in an arc shape, the first food leakage holes and the second food leakage holes are both arranged in the main plate, each group of the first food leakage holes corresponds to a group of the first cutting knives, and each group of the second food leakage holes corresponds to a group of the second cutting knives.
[0010] Preferably, an odd number of the first food leakage holes are arranged, an even number of the second food leakage holes are arranged, the plurality of groups of the first food leakage holes and the second food leakage holes are linearly distributed along the length direction of the main plate, and the hole positions of one group of the first food leakage holes are aligned with the positions between two groups of the second food leakage holes.
[0011] Preferably, the included angle between each group of the first cutting knives and the second cutting knives and the main plate is 15°, and the thickness of the first cutting knives and the second cutting knives is 0.5 mm.
[0012] Preferably, the openings of the first food leakage holes and the second food leakage holes are both arranged in a "U" shape.
[0013] Preferably, the main plate, the plurality of groups of the first cutting knives and the second cutting knives are all made of food-grade stainless steel material.
[0014] Preferably, the main plate further comprises an assembling unit for facilitating assembly with a machine, the assembling unit comprises a positioning hole arranged in the main plate and an assembling piece arranged on the side of the main plate for assembly with the machine, and the assembling piece is provided with an assembling groove.
[0015] Preferably, the assembling unit further comprises a connecting column arranged on the side of the main plate away from the first cutting knives, at least four rubber rings for improving assembly stability are arranged outside the connecting column, and a positioning plug is arranged outside the connecting column away from the main plate and is inserted into a jack of the machine.
[0016] Compared with the prior art, the utility model provides a net cutter for cutting noodles, which has the following beneficial effects:
[0017] 1. The net cutter for cutting noodles, the first cutting knives and the second cutting knives are arranged on the main plate at an angle of 15°, which makes the cutter better adapt to the shape and texture of food materials, thereby improving the uniformity and efficiency of cutting noodles. Meanwhile, the hole positions of one group of the first food leakage holes are aligned with the positions of two groups of the second food leakage holes, which ensures that the cut food materials can be smoothly leaked out, avoiding the problems of some cutters being difficult to cut noodles or food materials being blocked due to synchronous arrangement.
[0018] 2、The net cutter for cutting fine wires, by the cooperation of the positioning hole, the connecting column, the rubber ring, the positioning insert and the assembly piece and the assembly groove, realizes the stable assembly of the main plate and the machine. This design not only improves the convenience and stability of assembly, but also enables the quick disassembly and maintenance of the main plate by pulling the positioning hole to make the connecting column slide when the cutter appears the blade winding failure in the cutting process, improves the maintenance efficiency and reliability of the equipment. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 A net cutter for cutting fine wires of the utility model Figure One .
[0020] Figure 2 A net cutter for cutting fine wires of the utility model Figure Two .
[0021] Figure 3 A net cutter for cutting fine wires of the utility model Figure Three .
[0022] Figure 4 A net cutter for cutting fine wires of the utility model Figure One .
[0023] Figure 5 A net cutter for cutting fine wires of the utility model Figure Two .
[0024] In the figure: 1, main plate; 2, fine cutting unit; 21, cutting part; 211, first cutting knife; 212, second cutting knife; 22, food leakage part; 221, first food leakage hole; 222, second food leakage hole; 3, assembly unit; 31, positioning hole; 32, assembly piece; 33, assembly groove; 34, connecting column; 35, rubber ring; 36, positioning insert. DETAILED DESCRIPTION
[0025] In order to further understand the characteristics, technical means and specific purposes and functions achieved by the utility model, the utility model will be further described in detail in combination with the drawings and specific embodiments.
[0026] Embodiment one: please refer to Figures 1-5 The utility model provides a technical scheme: a net cutter for cutting fine wires is assembled into a machine for cutting food materials, including main plate 1, the main plate 1 is provided with fine cutting unit 2 for cutting food materials.
[0027] The shredding unit 2 includes a cutting part 21 for shredding food materials and a food discharge part 22 for discharging shredded food materials. The shredding speed and uniformity are improved, and the shredding unit is suitable for food materials of different hardness and thickness.
[0028] The cutting part 21 includes multiple sets of first cutting knives 211 and second cutting knives 212 for shredding. This ensures that the shredded food materials can be smoothly discharged, avoiding accumulation and waste of food materials.
[0029] The food discharge part 22 includes multiple sets of first food discharge holes 221 corresponding to the first cutting knives 211 and second food discharge holes 222 corresponding to the second cutting knives 212. This ensures that the shredding and food discharge are guaranteed.
[0030] Furthermore, the main plate 1 is arc-shaped, the first food discharge holes 221 and the second food discharge holes 222 are both provided in the main plate 1, and each set of first food discharge holes 221 corresponds to a set of first cutting knives 211, and each set of second food discharge holes 222 corresponds to a set of second cutting knives 212. The arc-shaped arrangement of the main plate 1 and the corresponding relationship between the first food discharge holes 221, the second food discharge holes 222, and the first cutting knives 211, the second cutting knives 212 improve the uniformity of shredding and the discharge efficiency of food materials.
[0031] Furthermore, the first food discharge holes 221 are provided with an odd number, the second food discharge holes 222 are provided with an even number, multiple sets of first food discharge holes 221 and second food discharge holes 222 are linearly distributed along the length direction of the main plate 1, and the positions of a set of first food discharge holes 221 and two sets of second food discharge holes 222 are aligned. This ensures that the shredded food materials can be evenly distributed and smoothly discharged, avoiding blockage and waste of food materials.
[0032] Furthermore, the included angle between each set of first cutting knives 211 and second cutting knives 212 and the main plate 1 is 15°, and the thickness of the first cutting knives 211 and the second cutting knives 212 is 0.5 mm. The included angle and thickness design of the first cutting knives 211, the second cutting knives 212, and the main plate 1 ensures the precision and uniformity of shredding, while improving the service life of the first cutting knives 211 and the second cutting knives 212.
[0033] Furthermore, the openings of the first food discharge holes 221 and the second food discharge holes 222 are both "U"-shaped. The "U"-shaped opening design helps the shredded food materials to be smoothly discharged, reducing the risk of food blockage.
[0034] Furthermore, the main plate 1, multiple sets of first cutting knives 211, and second cutting knives 212 are all made of food-grade stainless steel material. The use of food-grade stainless steel material ensures the safety and durability of the product, meeting the food safety standards.
[0035] Embodiment Two: Please refer to Figures 4-5 In combination with Embodiment One, it is further obtained that the main plate 1 is further provided with an assembling unit 3 for facilitating assembly with the machine, the assembling unit 3 comprising a positioning hole 31 opened in the main plate 1 and an assembling piece 32 provided at the side of the main plate 1 for assembly with the machine, the assembling piece 32 being provided with an assembling groove 33. The assembling unit 3 simplifies the assembly process of the main plate 1 with the machine and improves the assembly efficiency and stability.
[0036] Further, the assembling unit 3 further comprises a connecting column 34 provided at the side of the main plate 1 away from the first cutting knife 211, the connecting column 34 being provided with at least four groups of rubber rings 35 for improving the assembly stability, and the connecting column 34 being provided with a positioning plug 36 at the side away from the main plate 1, the positioning plug 36 being inserted into the jack of the machine. The cooperation of the connecting column 34, the rubber rings 35 and the positioning plug 36 further improves the assembly stability and firmness of the main plate 1 with the machine and ensures the smooth progress of the shredding process.
[0037] In actual operation, when the main plate 1 needs to be assembled into the machine, the operation steps are as follows:
[0038] Firstly, the position of the main plate 1 is preliminarily determined by the positioning hole 31. Then, the main plate 1 is pressed so that the connecting column 34 moves towards the mounting hole of the machine until the rubber rings 35 are completely inserted into the mounting hole. The rubber rings 35 increase the friction to ensure the stable assembly of the main plate 1 with the machine. With the further deepening of the connecting column 34, the positioning plug 36 is inserted into the jack of the machine, further consolidating the assembly stability of the main plate 1. Finally, the assembling piece 32 and the assembling groove 33 are matched with the corresponding positions of the machine to complete the entire assembly process.
[0039] After the assembly is completed, the machine can start to operate for shredding work. The first cutting knife 211 and the second cutting knife 212 are arranged at an angle of 15° on the main plate 1 to ensure that different convex food materials can be effectively shredded. At the same time, the hole positions of one group of first food leakage holes 221 are aligned with the positions of two groups of second food leakage holes 222 to ensure that the shredded food can be smoothly leaked out, avoiding the problem that part of the knives are difficult to shred due to synchronous arrangement.
[0040] During the shredding process, if the first cutting knife 211 or the second cutting knife 212 appears to be wound, the machine can be closed, and the connecting column 34 is slid in the mounting hole by pulling the positioning hole 31. This action will separate the positioning plug 36 from the jack, and the rubber rings 35 will also move, thereby facilitating the removal of the main plate 1 from the machine for necessary maintenance.
[0041] The above embodiment only expresses one or several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.
Claims
1. A web knife for cutting filaments, assembled into a machine for the julienne of food products, comprising a main plate (1), characterized in that, The main plate (1) is provided with a shredding unit (2) for shredding food materials; The shredding unit (2) includes a cutting part (21) for shredding food materials and a food discharge part (22) for discharging shredded food materials; The cutting part (21) includes a plurality of first cutting knives (211) and second cutting knives (212) for shredding; The food discharge part (22) includes a plurality of first food discharge holes (221) corresponding to the first cutting knives (211) and a plurality of second food discharge holes (222) corresponding to the second cutting knives (212).
2. A web knife for cutting filaments as defined in claim 1, wherein: The main plate (1) is arranged in an arc shape, the first food discharge holes (221) and the second food discharge holes (222) are arranged in the main plate (1), and each group of first food discharge holes (221) corresponds to a group of first cutting knives (211), and each group of second food discharge holes (222) corresponds to a group of second cutting knives (212).
3. A web knife for cutting filaments as defined in claim 2, wherein: The first food discharge holes (221) are arranged in an odd number, the second food discharge holes (222) are arranged in an even number, and a plurality of groups of first food discharge holes (221) and second food discharge holes (222) are linearly distributed along the length direction of the main plate (1), and the hole positions of a group of first food discharge holes (221) are aligned with the positions between two groups of second food discharge holes (222).
4. A web knife for cutting filaments as defined in claim 2, wherein: The included angle between each group of first cutting knives (211) and second cutting knives (212) and the main plate (1) is 15°, and the thickness of the first cutting knives (211) and the second cutting knives (212) is 0.5mm.
5. A web knife for cutting filaments according to claim 1, wherein: The openings of the first food discharge holes (221) and the second food discharge holes (222) are arranged in a "U" shape.
6. A web knife for cutting filaments according to claim 1, wherein: The main plate (1), a plurality of groups of first cutting knives (211) and second cutting knives (212) are made of food-grade stainless steel material.
7. A web knife for cutting filaments as defined in claim 1, wherein: The main plate (1) is further provided with an assembly unit (3) for facilitating assembly with a machine, the assembly unit (3) includes a positioning hole (31) arranged in the main plate (1) and an assembly piece (32) arranged beside the main plate (1) for assembly with the machine, and the assembly piece (32) is provided with an assembly groove (33).
8. A web knife for cutting filaments according to claim 7, wherein: The assembly unit (3) further includes a connecting column (34) arranged on the side of the main plate (1) away from the first cutting knives (211), the connecting column (34) is provided with at least four groups of rubber rings (35) for improving assembly stability, and the side of the connecting column (34) away from the main plate (1) is provided with a positioning plug (36) inserted into a jack of the machine.
Citation Information
Patent Citations
Net-shaped fancy shredding cutter
CN212489657U