Safe and reliable shredding and slicing food processor

Through the integrated cutter plate design and snap connection, the problem of missing blade installation of the wire cutting and slice cooking machine is solved, safe and reliable installation and convenient replacement are achieved, and the safety and convenience of use are improved.

CN223081539UActive Publication Date: 2025-07-11NINGBO JUSTICE ENG PLASTIC MOULD CO LTD
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Patent Information

Application Number
CN202421689021.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-07-11
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The existing shredded slicer is prone to missed when replacing the blade, which leads to safety hazards and affects the safety of use.

Method used

It adopts an integrated cutting board design, which is connected to the motor shaft snap-on by connecting the shaft sleeve. The roller disc assembly is an integrated structure, the blade and the support frame are injection molded, and ultrasonic welding is integrated to ensure that there is no missed installation during the installation process and can be replaced quickly.

Benefits of technology

It realizes safe and reliable blade installation, avoids the risk of missing installation, improves the safety of use, and facilitates blade replacement and cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a safe and reliable shredding and slicing food processer, and aims to provide the safe and reliable shredding and slicing food processer in which a cutter is arranged to be an integrated cutter head for installation. The automatic feeding device comprises a main machine shell, a motor, a feeding barrel and a rolling disc assembly, the motor is installed on the main machine shell, a connecting shaft sleeve is installed on a motor shaft of the motor, one end of the feeding barrel is connected with the motor, the connecting shaft sleeve is arranged in the feeding barrel, the rolling disc assembly is arranged in the feeding barrel and connected with the connecting shaft sleeve in a buckled mode, and the rolling disc assembly is connected with the feeding barrel. And a material pushing rod is arranged at the upper end of the feeding barrel. The cutter has the advantages that the cutter is arranged to be the integrated cutter head for installation, the rotating cup is convenient to disassemble, the blades are convenient to replace, different blades can be selected, materials are convenient to collect, and safety can be guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a safe and reliable shredding and slicing food processor. Background Art

[0002] With the development of society and the improvement of living standards, people's pursuit of dietary diversification and dietary health is constantly increasing. Therefore, various food processors have gradually become miniaturized and entered thousands of households. For example, juice extractors, wall breakers, multi-functional food processors, etc. not only meet people's needs for dietary health and nutrition, but also greatly improve people's quality of life, so they are loved by people. The existing multi-functional food processor adds a shredding and slicing function. The shredding and slicing assembly is buckled on the main body and is a detachable structure; the shredding and slicing assembly includes a main body, a cutting knife, and a rotating disk; the cutting knife is installed in the rotating disk, and the rotating disk is then installed in the main body to assemble the shredding and slicing assembly; the assembly is then buckled on the main body, and the rotating disk is connected to the motor in the main body. During operation, the motor drives the rotating disk in the assembly to rotate. The food material enters from the feeding port of the main body, and the cutting knife in the rotating disk rotates and shears the food material at the feeding port to achieve the cutting function; by replacing different cutting knives, the shredding and slicing functions can be achieved; however, during the experience process of this structure, a safety problem is found. When the cutting knife is missing or under-installed, there will be large missing holes in the rotating disk. During operation, fingers can penetrate through the holes, and when the rotating disk rotates and shears, it will cause cutting and finger injury, resulting in a safety accident, thus affecting the safety and reliability of the shredding and slicing food processor. Summary of the Utility Model

[0003] The utility model aims to overcome the deficiency that it is easy to miss the installation when replacing different blades, and provides a safe and reliable shredding and slicing food processor with a cutting knife installed as an integrated cutter head.

[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0005] A safe and reliable shredding and slicing food processor includes a main body housing, a motor, a feeding barrel, and a rolling disk assembly. The motor is installed on the main body housing. One end of the feeding barrel is connected to the motor. The rolling disk assembly is placed in the feeding barrel. A connecting shaft sleeve is installed on the rolling disk assembly. The rolling disk assembly is snap-connected to the motor shaft of the motor through the connecting shaft sleeve. A pushing rod is provided at the upper end of the feeding barrel.

[0006] The main body housing is the base. A motor is installed on the main body housing, and the motor enables the rotation of the food processor. A feeding bucket is installed on the motor, and the motor shaft of the motor is connected to a connecting bushing inside the feeding bucket. The rolling disc assembly is connected to the connecting bushing inside the feeding bucket. After connection, the motor can drive the rolling disc assembly to rotate through the connecting bushing. When rotating, the material can be pushed into the feeding bucket by a pusher rod for cutting. The rolling disc assembly is snap-connected to the connecting bushing, and the rolling disc assembly can be replaced. Different blades can be replaced in sequence for cutting. The rolling disc assembly is made into one body, making the installation process more convenient, and there will be no missing installation during installation, which is safer. At the same time, because the rolling disc assembly is detachable, it can be quickly replaced when damaged, achieving the purpose of installing the cutting knife as an integrated cutter head.

[0007] Preferably, the rolling disc assembly includes a rotating cup and a cutter head. The shape of the rotating cup is frustum-shaped with the larger-diameter end open. The smaller-diameter end of the rotating cup is snap-connected to the connecting bushing. Installation holes are provided on both sides of the rotating cup, and the cutter head is placed in the installation holes and connected to the rotating cup. The rotating cup is snap-connected to the connecting bushing and rotates following the motor shaft of the motor. Installation holes for installing the cutter head are provided on both sides of the rotating cup. The rotating cup drives the cutter head to rotate to cut the material. The cut material enters the rotating cup. The rotating cup is frustum-shaped, and under the action of centrifugal force, the cut material moves towards the larger-diameter end until it is output from the open end of the rotating cup, completing the cutting of the material. Such a design facilitates the disassembly of the rotating cup.

[0008] Preferably, the cutter head includes a support frame and blades. The support frame is placed in the installation hole and connected to the rotating cup, and the blades are installed on the support frame. The cutter head is also composed of a support frame and blades. The support frame and the blades are integrated. After disassembling the rotating cup, the entire rolling disc assembly can be replaced. After disassembly, different cutter heads with different blades can be used to cut materials of different shapes, and it is also convenient to clean the inside of the feeding bucket after disassembly. The presence of the support frame makes the assembly process more convenient, and at the same time, it ensures that the integrated blades will not be missing during installation. Such a design facilitates the replacement of the blades.

[0009] Preferably, the rolling disc assembly is an integrated structure. The cutter head is welded to the rotating cup, and the blades are injection-molded with the support frame. The connection method between the blades and the support frame is injection molding, and the connection method between the cutter head and the rotating cup is ultrasonic welding process, ensuring that the rolling disc assembly is an integrated structure, making the installation process faster, and also ensuring that the blades will not be missing during installation. Such a design can ensure that the rolling disc is an integrated structure.

[0010] Preferably, the blades include slicing blades, corrugated blades, thick strip blades, thin strip blades and shredding blades, and the slicing blades, corrugated blades, thick strip blades, thin strip blades and shredding blades are respectively installed on different support frames. The blades that can be installed on the support frame include slicing blades, corrugated blades, thick strip blades, thin strip blades and shredding blades. Different blades can cut the material into different shapes. Different blades can be selected for installation according to different needs. Such a design allows for the selection of different blades.

[0011] Preferably, a discharge baffle is provided on the feeding barrel. The discharge baffle is placed at one end of the opening of the rotating cup, and the discharge baffle is rotatably and snap-connected to the feeding barrel. The discharge baffle is installed at one end of the outlet of the feeding barrel. After the cut material is thrown out of the feeding barrel, it enters the collector under the guidance of the discharge baffle to prevent splashing. The discharge baffle is detachably installed on the feeding barrel for easy cleaning. Such a design facilitates the collection of materials.

[0012] Preferably, an extrusion pipe is installed above the feeding barrel. The extrusion pipe is communicated with the feeding barrel, and a pushing rod is placed inside the extrusion pipe. An extrusion pipe is installed above the feeding barrel. Materials are placed into the extrusion pipe. The materials enter the feeding barrel from the extrusion pipe and are cut by the rolling disc assembly. At the same time, there is a pushing rod inside the extrusion pipe. The pushing rod squeezes the materials downward, which is beneficial for cutting. Instead of directly pushing the materials by hand, the safety factor can be improved. Such a design can ensure safety.

[0013] The beneficial effects of the present utility model are as follows: The cutting knife is installed as an integrated cutter head, which facilitates the disassembly of the rotating cup, facilitates the replacement of the blades, can ensure that the rolling disc is an integral structure, can select different blades, facilitates the collection of materials, and can ensure safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is an exploded view of the present utility model;

[0015] Figure 2 is Figure 1 a schematic structural diagram of the rolling disc assembly in

[0016] Figure 3 is Figure 2 a schematic structural diagram of the slicing blade of the blade in

[0017] Figure 4 is Figure 2 a schematic structural diagram of the corrugated blade of the blade in

[0018] Figure 5 is Figure 2 a schematic structural diagram of the thick strip blade of the blade in

[0019] Figure 6 isFigure 2 Schematic structural diagram of the thin blade of the middle blade

[0020] Figure 7 is Figure 2 Schematic structural diagram of the shredding blade of the middle blade

[0021] In the figure: 1, main machine housing; 2, motor; 3, feeding barrel; 4, rolling disc assembly; 5, connecting bushing; 6, pushing rod; 7, rotating cup; 8, cutter disc; 9, mounting hole; 10, support frame; 11, blade; 12, slicing blade; 13, corrugated blade; 14, thick strip blade; 15, thin strip blade; 16, shredding blade; 17, discharge baffle; 18, extrusion tube Specific implementation mode

[0022] The following further describes the present utility model in conjunction with the accompanying drawings and specific implementation modes

[0023] As Figure 1 shown in the embodiment, a safe and reliable shredding and slicing cooking machine includes a main machine housing 1, a motor 2, a feeding barrel 3 and a rolling disc assembly 4. The motor 2 is installed on the main machine housing 1. One end of the feeding barrel 3 is connected to the motor 2. The rolling disc assembly 4 is placed in the feeding barrel 3. A connecting bushing 5 is installed on the rolling disc assembly 4. The rolling disc assembly 4 is snap-connected to the motor shaft of the motor 2 through the connecting bushing 5. A pushing rod 6 is provided at the upper end of the feeding barrel 3

[0024] As Figure 2 shown, the rolling disc assembly 4 includes a rotating cup 7 and a cutter disc 8. The rotating cup 7 is in the shape of a frustum of a cone with the larger diameter end open. The smaller diameter end of the rotating cup 7 is snap-connected to the connecting bushing 5. Mounting holes 9 are provided on both sides of the rotating cup 7. The cutter disc 8 is placed in the mounting holes 9 and is connected to the rotating cup 7

[0025] The cutter disc 8 includes a support frame 10 and a blade 11. The support frame 10 is placed in the mounting hole 9 and is snap-connected to the rotating cup 7. The blade 11 is installed on the support frame 10

[0026] The rolling disc assembly 4 is an integral structure. The cutter disc 8 is welded to the rotating cup 7. The blade 11 and the support frame 10 are injection-molded

[0027] As Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 shown, the blade 11 includes a slicing blade 12, a corrugated blade 13, a thick strip blade 14, a thin strip blade 15 and a shredding blade 16. The slicing blade 12, the corrugated blade 13, the thick strip blade 14, the thin strip blade 15 and the shredding blade 16 are respectively installed on different support frames 10

[0028] The charging bucket 3 is provided with a discharge baffle 17, the discharge baffle 17 is placed at one end of the opening of the rotating cup 7, and the discharge baffle 17 is rotationally and snap-connected to the charging bucket 3.

[0029] An extrusion pipe 18 is installed above the charging bucket 3, the extrusion pipe 18 is communicated with the charging bucket 3, and the pushing rod 6 is placed inside the extrusion pipe 18.

[0030] During use, a corresponding cutter head 8 is installed on the support frame 10, cutter heads are installed in the mounting holes 9 on both sides of the rotating cup 7, and the assembled rolling disc assembly 4 is connected to the connecting bushing inside the charging bucket 3. After the installation is completed, the motor 2 rotates, and the motor 2 drives the rolling disc assembly 4 to rotate through the connecting bushing 5. During rotation, materials are added from the extrusion pipe 18 and enter the charging bucket 3 under the extrusion of the pushing rod 6, and are cut by the rolling disc assembly 4 inside the charging bucket 3. The cut materials are thrown out from the outlet of the rotating cup 7 under the action of centrifugal force. When the blade 11 needs to be replaced, the rolling disc assembly 4 can be directly removed from the connecting bushing 5 and then replaced directly.

[0031] The rolling disc assembly 4 is an integrated structure. The connection method between the blade 11 and the support frame 10 is injection molding, and the connection method between the cutter head 8 and the rotating cup 7 is ultrasonic welding to form an integral structure that cannot be disassembled. When the blade 11 needs to be replaced, only by replacing the entire rolling disc assembly 4, separating the rolling disc assembly 4 from the connecting bushing 5 and then replacing it.

Claims

1. A safe and reliable shredding and slicing food processor, characterized in that It includes a main body housing (1), a motor (2), a feeding barrel (3) and a rolling disc assembly (4). The motor (2) is installed on the main body housing (1). One end of the feeding barrel (3) is connected to the motor (2). The rolling disc assembly (4) is placed inside the feeding barrel (3). A connecting bushing (5) is installed on the rolling disc assembly (4). The rolling disc assembly (4) is snap-connected to the motor shaft of the motor (2) through the connecting bushing (5). A pushing rod (6) is provided at the upper end of the feeding barrel (3). The rolling disc assembly (4) includes a rotating cup (7) and a cutter disc (8). The rotating cup (7) is frustum-shaped with the larger-diameter end open. The smaller-diameter end of the rotating cup (7) is snap-connected to the connecting bushing (5). Mounting holes (9) are provided on both sides of the rotating cup (7). The cutter disc (8) is placed inside the mounting holes (9) and is connected to the rotating cup (7). The cutter disc (8) includes a support frame (10) and blades (11). The support frame (10) is placed inside the mounting holes (9) and is connected to the rotating cup (7). The blades (11) are installed on the support frame (10). The rolling disc assembly (4) is an integral structure. The cutter disc (8) is welded to the rotating cup (7). The blades (11) and the support frame (10) are injection-molded.

2. A safe and reliable slicing and shredding food processor according to claim 1, characterized in that, The blades (11) include slicing blades (12), corrugated blades (13), thick-strip blades (14), thin-strip blades (15) and shredding blades (16). The slicing blades (12), corrugated blades (13), thick-strip blades (14), thin-strip blades (15) and shredding blades (16) are respectively installed on different support frames (10).

3. A safe and reliable slicing and shredding food processor according to claim 1, characterized in that, A discharge baffle (17) is provided on the feeding barrel (3). The discharge baffle (17) is placed at the open end of the rotating cup (7). The discharge baffle (17) is rotationally snap-connected to the feeding barrel (3).

4. A safe and reliable slicing and shredding food processor according to claim 1, wherein An extrusion pipe (18) is installed above the feeding barrel (3). The extrusion pipe (18) is communicated with the feeding barrel (3). The pushing rod (6) is placed inside the extrusion pipe (18).