Vegetable cutter with cleaning mechanism
By introducing bubble generation components and mixing trays into the vegetable cutter, the problem of incomplete cleaning of the existing vegetable cutter is solved, and efficient cleaning of the vegetable surface is achieved, especially the cleaning effect of tiny cracks and hidden gaps.
Patent Information
- Application Number
- CN202422050568.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-23
AI Technical Summary
It is difficult for existing vegetable cutting machines to thoroughly clean tiny cracks and hidden gaps during the cleaning process, resulting in bacteria and dirt residues that harm human health.
Design bubble generation components and stirring trays to generate bubbles in water through the bubble generation components, and combine the rotation of the stirring tray to enhance the cleaning effect of vegetable surfaces, especially difficult-to-reach corners and gaps.
It improves the thoroughness and efficiency of cleaning, and can better remove dirt, residues and bacteria from the surface of vegetables, ensuring more convenient and efficient cleaning.
Smart Images

Figure CN223130896U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of vegetable cutters, and specifically relates to a vegetable cutter with a self - cleaning mechanism. Background Art
[0002] There are various types of vegetable cutters, which can be divided into commercial vegetable cutters and household vegetable cutters, and are collectively referred to as vegetable cutters for vegetarian dishes. According to different cutting types, they can be divided into leafy vegetable cutters, bulb vegetable cutters, and commercial vegetable cutters.
[0003] For example, the patent document with the application number 201821859350.3 discloses a vegetable cutter with a self - cleaning mechanism, including a workbench and a cutting knife. A control switch is embedded on the front surface of the workbench. A fixing frame is bolt - fixed on the top of the workbench. A material box is bolt - fixed on the top of the fixing frame. An electric push rod is bolt - fixed on the outer side of one side of the material box. A push plate is bolt - fixed at the telescopic end of the electric push rod inside the material box. An outlet is opened on one side of the push plate inside the material box. In this utility model, vegetables can be put into the material box through the feeding port. By pressing the control switch, the electric push rod can push the vegetables horizontally and uniformly to the right towards the outlet through the push plate. At the same time, the servo motor can drive the cutting knife to rotate uniformly, so as to slice the vegetables passing through the outlet. This structure can automatically complete the vegetable cutting process, thus improving the efficiency of vegetable cutting.
[0004] For similar vegetable cutters, during cleaning, there are usually some tiny cracks, hidden crevices or uneven surfaces. These small cracks and hidden crevices are places where bacteria and dirt hide. During the cleaning process, these places are often not thoroughly cleaned, resulting in residues that pose a hazard to human health.
[0005] Therefore, in view of this, research and improvement are carried out on the existing structural deficiencies, and a vegetable cutter with a self - cleaning mechanism is proposed. Content of the Utility Model
[0006] The purpose of the present utility model is to provide a problem of a vegetable cutter with a self - cleaning mechanism. During cleaning, there are usually some tiny cracks, hidden crevices or uneven surfaces. These small cracks and hidden crevices are places where bacteria and dirt hide. During the cleaning process, these places are often not thoroughly cleaned, resulting in residues that pose a hazard to human health.
[0007] To achieve the above object, the present utility model provides the following technical solutions: A vegetable cutter with a self-cleaning mechanism, comprising a housing, a bubble generating assembly and a stirring disk. At the upper end of the left side of the housing, there is a feeding pipe. On the left side of the feeding pipe, there is a second electric push rod. On the upper surface of the feeding pipe, there is a feeding port. On the right side of the feeding port, there is a fixing bracket. On the upper surface of the fixing bracket, there is a first electric push rod. At the output end of the first electric push rod, there is a cutting knife. On the upper surface of the housing, there is a discharge port. On the upper surface of the discharge port, there is a cover plate. The bubble generating assembly is arranged at the lower ends of both sides of the housing. At the center of the lower surface of the housing, there is a motor. And on the left side of the lower surface of the housing, there is a drain pipe. The stirring disk is arranged on the lower surface of the inner cavity of the housing.
[0008] Further, the bubble generating assembly includes an air pump, an air delivery pipe, an underwater exhaust box and a bubble microporous plate. The air pump is arranged at the lower end of one side of the housing. On the side wall of the inner cavity of the housing, there is an underwater exhaust box. At the lower surface of the underwater exhaust box, there is an air delivery pipe. On one side of the underwater exhaust box, there is a bubble microporous plate installed.
[0009] Further, the output end of the first electric push rod penetrates through the fixing bracket and is connected to the cutting knife. The second electric push rod is connected with a vegetable push plate through penetrating the feeding pipe.
[0010] Further, the air delivery pipe is connected with the output end of the air pump through penetrating the housing. The positions of the two groups of bubble generating assemblies are mirror-symmetrically corresponding.
[0011] Further, the output end of the motor is connected to the stirring disk through penetrating the housing. The shape of the stirring disk is a circular structure.
[0012] Further, the surface of the bubble microporous plate is arranged with a number of holes spaced at equal intervals. The underwater exhaust box is connected with the bubble microporous plate.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: By designing a bubble cleaning function, the bubble generating assembly can generate bubbles in water, effectively cleaning and removing dirt, residues and bacteria, improving the cleaning effect, so that it can be easier to clean the hard-to-reach corners and crevices. By driving the water tank to rotate with the stirring disk, the water source can be fully contacted with the vegetables and stirred, and the contact area between the bubbles and the surface to be cleaned can be increased, making the cleaning of the vegetable cutter more thorough, convenient and efficient. The specific content is as follows:
[0014] It is provided with a housing and a bubble generating component. After the air pump generates air flow and sends it into the underwater exhaust box through the air delivery pipe, it is discharged through several micropores on the surface of the bubble microporous plate, so that a large number of tiny and evenly distributed bubbles can be generated in the water, forming a large surface area underwater, effectively cleaning the dirt, residues and bacteria on the surface of vegetables, making it easier to clean the corners and crevices of the vegetable surface that are difficult to reach, thereby improving the cleaning effect.
[0015] It is provided with a motor and a stirring disk. The stirring disk is driven by the motor to rotate and stir at the bottom of the water pool in the inner cavity of the housing. Through stirring, it can help the water source fully cover the surface of the vegetables, enabling the water to effectively remove the dirt, soil and other impurities on the surface of the vegetables, improving the cleanliness of the vegetables. Moreover, the rotation of the water driven by the stirring disk can increase the stirring intensity, promoting the generation and release of bubbles by the bubble generating component, thus improving the efficiency of bubble generation and making the bubbles more fully and evenly distributed in the water. Brief Description of the Drawings
[0016] Figure 1 It is a front sectional structure schematic diagram of a vegetable cutting machine with a self - contained cleaning mechanism according to the present utility model;
[0017] Figure 2 It is a top - view structure schematic diagram of the stirring disk of a vegetable cutting machine with a self - contained cleaning mechanism according to the present utility model;
[0018] Figure 3 It is for the Figure 1 partial enlarged structure schematic diagram at A of the tray frame of a vegetable cutting machine with a self - contained cleaning mechanism according to the present utility model;
[0019] Figure 4 It is a top - view structure schematic diagram of a vegetable cutting machine with a self - contained cleaning mechanism according to the present utility model.
[0020] In the figure: 1. Housing; 2. Feeding pipe; 3. Feeding port; 4. Fixed frame; 5. First electric push rod; 6. Cutting knife; 7. Second electric push rod; 71. Vegetable pushing plate; 8. Bubble generating component; 801. Air pump; 802. Air delivery pipe; 803. Underwater exhaust box; 804. Bubble microporous plate; 9. Discharge port; 10. Cover plate; 11. Motor; 12. Stirring disk; 13. Drain pipe. Detailed Description of the Embodiment
[0021] The following further describes in detail the embodiments of the present utility model in conjunction with the drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.
[0022] As Figures 1 to 4As shown in the figure, a vegetable cutter with a self-cleaning mechanism includes a housing 1, a bubble generating assembly 8 and a stirring disk 12. At the upper end of the left side of the housing 1, there is a feeding pipe 2. The housing 1 bears and supports other components, protecting the internal mechanism from external interference. The feeding pipe 2 is used to place the materials to be processed. On the left side of the feeding pipe 2, there is a second electric push rod 7. The second electric push rod 7 is connected with a vegetable pushing plate 71 through the feeding pipe 2. On the upper end surface of the feeding pipe 2, there is a feeding port 3. The second electric push rod 7 drives the vegetable pushing plate 71 in the inner cavity of the feeding pipe 2 through the output end, sending the vegetables at the feeding port 3 to the cutter 6. On the right side of the feeding port 3, there is a fixing frame 4. On the upper end surface of the fixing frame 4, there is a first electric push rod 5. The first electric push rod 5 is fixed through the fixing frame 4. The output end of the first electric push rod 5 is provided with a cutter 6. The output end of the first electric push rod 5 penetrates through the fixing frame 4 and is connected with the cutter 6. The first electric push rod 5 controls the movement of the cutter 6 by adjusting the telescopic length of the output end, cutting the vegetables at the end where the feeding pipe 2 discharges the vegetables. On the upper end surface of the housing 1, there is a discharge port 9. On the upper end surface of the discharge port 9, there is a cover plate 10. The discharge port 9 is covered by the cover plate 10 on the surface, so as to carry out the cleaning and cutting process, and then the processed materials will be taken out through the discharge port 9;
[0023] The bubble generating assembly 8 is arranged at the lower ends on both sides of the housing 1. The positions of the two groups of bubble generating assemblies 8 are mirror-symmetrical. The two groups of bubble generating assemblies 8 provide the function of generating bubbles in the underwater environment. The bubble generating assembly 8 includes an air pump 801, an air delivery pipe 802, an underwater exhaust box 803 and a bubble microporous plate 804. The air pump 801 is arranged at the lower end of one side of the housing 1, providing air flow output. On the side wall of the inner cavity of the housing 1, there is an underwater exhaust box 803. On the lower end surface of the underwater exhaust box 803, there is an air delivery pipe 802. The air delivery pipe 802 is connected with the output end of the air pump 801 through penetrating the housing 1. The air pump 801 transmits the air flow to the underwater exhaust box 803 through the air delivery pipe 802. On one side of the underwater exhaust box 803, there is a bubble microporous plate 804. The surface of the bubble microporous plate 804 is arranged with a number of holes at equal intervals. The underwater exhaust box 803 is connected with the bubble microporous plate 804. Then, the air flow in the underwater exhaust box 803 is discharged into the water through the bubble microporous plate 804, releasing the air flow from the underwater exhaust box 803 and generating bubbles. Subsequently, by using the surface arranged with a number of holes at equal intervals, the effect of uniform distribution of bubbles in the water is achieved;
[0024] At the center of the lower end face of the outer shell 1, a motor 11 is provided. The motor 11 is used to drive the stirring disc 12 for stirring and cleaning. The output end of the motor 11 is connected to the stirring disc 12 through the outer shell 1. The motor 11 enables the stirring disc 12 to rotate, thereby realizing the stirring or agitation of the material. And on the left side of the lower end face of the outer shell 1, a drain pipe 13 is provided. The drain pipe 13 discharges the liquid after cleaning treatment to keep the inside of the equipment clean and dry. The stirring disc 12 is arranged on the lower end face of the inner cavity of the outer shell 1. The shape of the stirring disc 12 is a circular structure, which is used to rotate the water tank, drive the water in the water tank to rotate, and generate a spiral vortex to ensure uniform mixing of the material.
[0025] In summary, as Figures 1 to 4 shown, for the vegetable cutter with a self-cleaning mechanism, the material to be processed enters the feeding pipe 2 through the feeding port 3. Under the action of the second electric push rod 7, it is pushed by the vegetable push plate 71 to the cutting knife 6 area in the inner cavity of the outer shell 1. The first electric push rod 5 at the upper end of the fixing frame 4 controls the action of the cutting knife 6, and the output end pushes downward, so as to perform intermittent vegetable cutting on the vegetables pushed out by the feeding pipe 2. Subsequently, the motor 11 is started, and the force at the output end is transferred to the stirring disc 12 to make it rotate. During the rotation of the stirring disc 12, a spiral vortex is generated to drive the water flow, thereby driving the vegetables to rotate and stir. At the same time, two groups of bubble generating components 8 send the air flow from the air pump 801 to the underwater exhaust box 803 through the air delivery pipe 802, and then release it into the water through the bubble microporous plate 804. The micropores on the bubble microporous plate 804 make the bubbles evenly distributed and released. The small-sized bubbles can better penetrate into the fine cracks and inaccessible parts on the surface of the vegetables, so as to clean the surface of the vegetables. After cleaning, the vegetables are taken out from the discharge port 9 by opening the cover plate 10. The drainage is controlled by the valve on the drain pipe 13.
Claims
1. A vegetable cutter with a self - cleaning mechanism, comprising a housing (1), a bubble - generating component (8) and a stirring disk (12), characterized in that: At the upper end of the left side of the outer shell (1), a feeding pipe (2) is provided. On the left side of the feeding pipe (2), a second electric push rod (7) is provided. On the upper end surface of the feeding pipe (2), a feeding port (3) is provided. On the right side of the feeding port (3), a fixing frame (4) is provided. On the upper end surface of the fixing frame (4), a first electric push rod (5) is provided. At the output end of the first electric push rod (5), a cutting knife (6) is provided. On the upper end surface of the outer shell (1), a discharge port (9) is opened. On the upper end surface of the discharge port (9), a cover plate (10) is provided. The bubble generating assembly (8) is arranged at the lower ends on both sides of the outer shell (1). At the center of the lower end surface of the outer shell (1), a motor (11) is provided. And on the left side of the lower end surface of the outer shell (1), a drain pipe (13) is opened. The stirring disc (12) is arranged on the lower end surface of the inner cavity of the outer shell (1).
2. The vegetable cutter with a self - cleaning mechanism according to claim 1, wherein: The bubble generating assembly (8) includes an air pump (801), an air delivery pipe (802), an underwater exhaust box (803) and a bubble microporous plate (804). The air pump (801) is arranged at the lower end of one side of the outer shell (1). On the side wall of the inner cavity of the outer shell (1), the underwater exhaust box (803) is provided. On the lower end surface of the underwater exhaust box (803), the air delivery pipe (802) is provided. On one side of the underwater exhaust box (803), a bubble microporous plate (804) is installed.
3. The vegetable slicer with a self - cleaning mechanism according to claim 1, wherein: The output end of the first electric push rod (5) passes through the fixing frame (4) and is connected to the cutting knife (6). The second electric push rod (7) is connected to a vegetable push plate (71) by passing through the feeding pipe (2).
4. The vegetable slicer with a self - cleaning mechanism according to claim 2, characterized in that: The air delivery pipe (802) passes through the outer shell (1) and is connected to the output end of the air pump (801). The positions of the two groups of bubble generating assemblies (8) are mirror-image corresponding.
5. The vegetable cutter with a self-cleaning mechanism according to claim 2, characterized in that: The output end of the motor (11) passes through the outer shell (1) and is connected to the stirring disc (12). The shape of the stirring disc (12) is a circular structure.
6. The vegetable slicer with a self - cleaning mechanism according to claim 2, wherein: The surface of the bubble microporous plate (804) is arranged with a number of holes at equal intervals. The underwater exhaust box (803) is connected to the bubble microporous plate (804).
Citation Information
Patent Citations
Vegetable cutter with cleaning mechanism
CN208962102U