Food crushing device

By introducing odor detection and deodorization structures into the food crushing device, and using electrolysis components to generate a strong oxidizing electrolyte and ultraviolet lamp components for intelligent cleaning, the problem of low efficiency and incomplete cleaning methods in traditional methods is solved, achieving highly efficient odor removal and sterilization effects.

CN224441151UActive Publication Date: 2026-07-03GREE ELECTRIC APPLIANCE INC OF ZHUHAI

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GREE ELECTRIC APPLIANCE INC OF ZHUHAI
Filing Date
2025-07-25
Publication Date
2026-07-03

AI Technical Summary

Technical Problem

Traditional food shredders are inefficient and incomplete to clean, often leaving unpleasant odors after cleaning.

Method used

An odor detection structure is used to detect the odor in the crushing chamber in real time, and intelligent cleaning is carried out through an odor removal structure and a crushing blade structure, including an electrolysis component to generate a strong oxidizing electrolyte and an ultraviolet lamp component for sterilization and disinfection.

Benefits of technology

It achieves efficient and thorough cleaning and sterilization, significantly improving the hygiene performance of the equipment and the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224441151U_ABST
    Figure CN224441151U_ABST
Patent Text Reader

Abstract

This utility model relates to the technical field of food crushing devices, and discloses a food crushing device including a crusher body, a crushing blade structure, a crusher head, an odor detection structure, and a deodorizing structure. The crusher body has a crushing chamber inside; the crushing blade structure is rotatably connected to the crushing chamber; the crusher head is connected to the crusher body and used to drive the crushing blade structure to rotate; the odor detection structure has a communication position communicating with the crushing chamber; and the deodorizing structure is disposed on the crusher body and located within the crushing chamber. The food crushing device provided by this utility model controls the cleaning process of the food crushing device based on the detection results of the odor detection structure, so as to intelligently clean and deodorize the crushing chamber through the deodorizing structure and the crushing blade structure.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of food crushing devices, specifically to food crushing devices. Background Technology

[0002] After use, food shredders and other similar appliances often produce an unpleasant odor due to the presence of residual meat scraps and juices that can easily breed bacteria. Traditional cleaning methods typically involve manual cleaning by the user, which is inefficient and incomplete, leaving the food shredder with lingering odors even after cleaning. Utility Model Content

[0003] In view of this, the present invention provides a food crushing device to solve the problem that traditional cleaning methods are inefficient and not thorough enough, resulting in food crushing devices still easily retaining odors after cleaning.

[0004] In a first aspect, this utility model provides a food crushing device, comprising:

[0005] The crusher body has a crushing chamber inside;

[0006] The crushing blade structure is rotatably connected within the crushing chamber;

[0007] The crusher head is connected to the crusher body and is used to drive the crusher blade structure to rotate.

[0008] The odor detection structure has a communication position that communicates with the crushing chamber;

[0009] The deodorization structure is installed on the crusher body and located inside the crushing chamber.

[0010] Beneficial effects: The odor detection structure detects the odor in the crushing chamber. The food crushing device controls its cleaning process based on the detection results. The crushing chamber is intelligently cleaned and deodorized through the deodorizing structure and the crushing blade structure. The cleaning efficiency is high and the cleaning is thorough. It achieves automatic removal of odors and sterilization in the crushing chamber, which significantly improves the hygiene performance of the equipment and the user experience.

[0011] In one alternative embodiment, the deodorizing structure is disposed on the crushing blade structure and electrically connected to the crusher head through the crushing blade structure.

[0012] Beneficial effects: The deodorizing structure is set on the crushing blade structure, which can realize the electrical connection between the deodorizing structure and the crushing head while the crushing blade structure is connected to the crushing head, and then control the deodorizing structure through the crushing head.

[0013] In one optional embodiment, the crusher body is provided with a first through hole communicating with the crushing chamber; the crushing blade structure includes:

[0014] The crusher blade housing is rotatably connected to the crusher body at both ends. One end of the crusher blade housing is an electrical connection end, and the electrical connection end is provided with a connection contact point. The electrical connection end is disposed through the first through hole and is electrically connected to the crusher head through the connection contact point.

[0015] The drive motherboard is located inside the crusher housing, and the deodorizing structure is located outside the crusher housing and is electrically connected to the drive motherboard; the drive motherboard is electrically connected to the electrical connection terminal.

[0016] Beneficial effects: The deodorizing structure is located on the outside of the crusher housing, which facilitates deodorization of the crushing chamber; the drive motherboard is located inside the crusher housing, which not only facilitates the protection of the drive motherboard, but also facilitates the electrical connection between the deodorizing structure and the connection contact points.

[0017] In one optional embodiment, the deodorizing structure includes an electrolysis component, and the crushing blade structure further includes a first blade and a second blade, both of which are made of conductive material. The first blade forms a first electrode of the electrolysis component, and the second blade forms a second electrode of the electrolysis component. The first electrode and the second electrode have opposite polarities.

[0018] Beneficial effects: The first cutter head of the crushing blade structure forms the first electrode of the electrolysis component, and the second cutter head forms the second electrode. This allows the first cutter head to both rotate and cut the food during the crushing process of the food crushing device, and also to electrolyze the water in the crushing chamber during the cleaning process, effectively generating a highly oxidizing electrolyte. This electrolyte then cleans and sterilizes the crushing chamber, improving the cleaning effect and achieving deodorization. Furthermore, it avoids the excessive space occupied by separate first and second electrodes within the crushing chamber, the impact on the crushing process of the food crushing device caused by separate first and second electrodes, and the cleaning dead zones for food residue that would result from separate first and second electrodes. Simultaneously, the first cutter head forming the first electrode and the second cutter head forming the second electrode also increases the electrolysis area, thereby improving the electrolysis speed.

[0019] In one alternative embodiment, the deodorization structure further includes an ultraviolet lamp assembly disposed on the crushing blade structure.

[0020] Beneficial effects: The ultraviolet lamp assembly can irradiate the crushing chamber with ultraviolet light, thereby achieving sterilization and disinfection, and further improving the deodorization effect.

[0021] In one optional embodiment, the crusher body is provided with a second through hole communicating with the crushing chamber, and the odor detection structure is disposed on the crusher head, extending into the crushing chamber through the second through hole.

[0022] Beneficial effects: By setting the second through hole, the odor detection structure can be connected to the crushing chamber, ensuring that the odor detection structure can accurately detect the odor in the crushing chamber.

[0023] In one alternative implementation, the food crushing device is a meat grinder.

[0024] Secondly, this utility model also provides a control method for a food crushing device, used in the aforementioned food crushing device, comprising:

[0025] Obtain the operating program of the food crushing device;

[0026] If the program is a cleaning program, the odor detection results of the odor detection structure are acquired in real time;

[0027] Based on the odor detection results, the deodorizing structure and the crushing blade structure are controlled to clean the crushing chamber of the food crushing device.

[0028] Beneficial effects: When the control module receives the instruction from the food crushing device to enter the cleaning program, the control module controls the odor detection structure to detect the odor in the crushing chamber in real time. Then, based on the odor detection results, the control module controls the deodorizing structure and the crushing blade structure to clean and deodorize the crushing chamber. The deodorizing structure and the crushing blade structure can intelligently clean and deodorize the crushing chamber, which is highly efficient and thorough. It can automatically remove odors and sterilize and disinfect the crushing chamber, significantly improving the hygiene performance of the equipment and the user experience.

[0029] In one optional implementation, the step of controlling the deodorizing structure and the crushing blade structure to clean the crushing chamber of the food crushing device based on the odor detection result includes:

[0030] Controlling the preparation of electrolyte using electrolysis components;

[0031] The control blade structure rotates for cleaning after the electrolyte preparation is completed.

[0032] Beneficial effects: The electrolyte with strong oxidizing properties cleans and sterilizes the crushing chamber, improving the cleaning effect and achieving the purpose of deodorization; the rotating structure of the crushing blade drives the electrolyte to flow, which can flush the crushing chamber, thereby achieving a better sterilization effect while cleaning the crushing chamber, thus achieving a very good cleaning and deodorization effect.

[0033] In one optional embodiment, the step of controlling the deodorizing structure and the crushing blade structure to clean the crushing chamber of the food crushing device based on the odor detection result further includes:

[0034] Control the ultraviolet lamp assembly for sterilization.

[0035] Beneficial effects: The ultraviolet lamp assembly can irradiate the crushing chamber with ultraviolet light, thereby achieving sterilization and disinfection, and further improving the deodorization effect.

[0036] In one alternative implementation, a self-learning program is further included before the cleaning procedure is executed, the self-learning program comprising:

[0037] Get the cleaning program set by the user;

[0038] The cleaning program preset by the user and the adaptive algorithm are optimized for the food crushing device.

[0039] Beneficial effects: Through a self-learning program, the cleaning process can be optimized, making it more intelligent and accurate, thereby significantly improving the cleaning and deodorizing effects.

[0040] In one alternative implementation, after the cleaning procedure has finished running, a prediction procedure is further included, the prediction procedure comprising:

[0041] Record and analyze the running data of the cleaning program after the self-learning program is optimized;

[0042] Based on the analysis results, the cleaning reminder system is controlled to provide predictive cleaning reminders.

[0043] Thirdly, this utility model also provides a computer-readable storage medium storing computer instructions, which, when executed, implement the control method of the food crushing device described above.

[0044] Beneficial effects: The computer-readable storage medium provided by this utility model, through the control method of the food crushing device using the above-described implementation method, has all the technical effects of the control method of the food crushing device described above. Attached Figure Description

[0045] To more clearly illustrate the technical solutions in the specific embodiments or related technologies of this utility model, the drawings used in the description of the specific embodiments or related technologies will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0046] Figure 1 This is a cross-sectional view of a food crushing device according to an embodiment of the present invention;

[0047] Figure 2 This is a cross-sectional view of the crushing blade structure and deodorizing structure of a food crushing device according to an embodiment of the present invention;

[0048] Figure 3 This is a cross-sectional view of the crushing cover of a food crushing device according to an embodiment of the present utility model;

[0049] Figure 4 This is a top view of the crushing cover of a food crushing device according to an embodiment of the present invention;

[0050] Figure 5 This is a bottom view of the crusher head of a food crushing device according to an embodiment of the present invention;

[0051] Figure 6 This is a schematic diagram of the crusher head of a food crushing device according to an embodiment of the present utility model;

[0052] Figure 7 This is a first flowchart of a control method for a food crushing device according to an embodiment of the present invention;

[0053] Figure 8 This is a second flowchart of a control method for a food crushing device according to an embodiment of the present invention;

[0054] Figure 9 This is a third flowchart of a control method for a food crushing device according to an embodiment of the present invention;

[0055] Figure 10 This is a fourth flowchart of a control method for a food crushing device according to an embodiment of the present invention;

[0056] Figure 11 This is a fifth flowchart of a control method for a food crushing device according to an embodiment of the present invention.

[0057] Explanation of reference numerals in the attached figures:

[0058] 1. Crusher body; 11. Crushing chamber; 12. First through hole; 13. Second through hole; 14. Crushing bowl; 15. Crushing cover;

[0059] 2. Crusher blade structure; 21. Crusher blade housing; 22. Driver main board; 23. First cutter head; 24. Second cutter head; 25. First connecting wire; 26. Second connecting wire; 27. Third connecting wire;

[0060] 3. Crusher head; 31. Crusher head housing; 32. Operation module; 33. Control module; 34. Drive mechanism; 35. Power supply structure; 36. Communication connection components;

[0061] 4. Odor detection structure;

[0062] 5. Odor removal structure; 51. Electrolysis component; 52. Ultraviolet lamp component. Detailed Implementation

[0063] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0064] The following is combined Figures 1 to 11 The following describes embodiments of the present invention.

[0065] According to an embodiment of the present invention, a food crushing device is provided, comprising a crusher body 1, a crushing blade structure 2, a crusher head 3, an odor detection structure 4, and an odor removal structure 5: the crusher body 1 has a crushing chamber 11 inside; the crushing blade structure 2 is rotatably connected to the crushing chamber 11; the crusher head 3 is connected to the crusher body 1 and is used to drive the crushing blade structure 2 to rotate; the odor detection structure 4 has a communication position communicating with the crushing chamber 11; the odor removal structure 5 is disposed on the crusher body 1 and located inside the crushing chamber 11.

[0066] Odor detection structure 4 detects the odor in the crushing chamber 11 in real time. The food crushing device controls the cleaning program of the food crushing device according to the detection results of odor detection structure 4. The crushing chamber 11 is intelligently cleaned and deodorized by deodorization structure 5 and crushing blade structure 2. The cleaning efficiency is high and the cleaning is thorough. It realizes automatic removal of odors and sterilization in the crushing chamber 11, which significantly improves the hygiene performance of the equipment and the user experience.

[0067] In a specific implementation, when crushing food, the food to be crushed is first placed into the crushing chamber 11, and then the crushing head 3 drives the crushing blade structure 2 to rotate to crush the food.

[0068] Specifically, the odor detection structure 4 can be a gas sensor.

[0069] In a further embodiment, the crusher body 1 includes a crushing bowl 14 and a crushing cover 15. The crushing cover 15 is detachably connected to the rim of the crushing bowl 14, and the crushing cover 15 and the crushing bowl 14 form a crushing chamber 11. The two ends of the crushing blade structure 2 are rotatably connected to the bottom of the crushing bowl 14 and the crushing cover 15, respectively. The crusher head 3 is connected to the crushing cover 15. The detachable connection of the crushing cover 15 to the rim of the crushing bowl 14 facilitates both placing the food to be crushed into the crushing chamber 11 and removing the crushed food from the crushing chamber 11. The crusher head 3 is equipped with a drive mechanism 34, the power output end of which is connected to the crushing blade structure 2 to drive the crushing blade structure 2 to rotate, thereby crushing food or cleaning the crushing chamber 11.

[0070] In one embodiment, the deodorizing structure 5 is disposed on the crushing blade structure 2 and is electrically connected to the crusher head 3 through the crushing blade structure 2.

[0071] The deodorizing structure 5 is set on the crushing blade structure 2, which can achieve electrical connection between the deodorizing structure 5 and the crushing head 3 while the crushing blade structure 2 is connected to the crushing head 3, so that the deodorizing structure 5 can be controlled by the crushing head 3; at the same time, it can avoid the deodorizing structure 5 occupying other space in the crushing chamber 11, thus avoiding cleaning dead corners caused by the deodorizing structure 5 being set in other positions in the crushing chamber 11.

[0072] Since the crusher body 1 typically includes a detachably connected crushing bowl 14 and crushing cover 15, and the crusher head 3 is typically connected to the crushing cover 15, the deodorizing structure 5 located inside the crushing bowl 14 is not convenient to connect with the crusher head 3, and the deodorizing structure 5 located on the crushing cover 15 may result in poor deodorizing effect. Therefore, by setting the deodorizing structure 5 on the crushing blade structure 2, it is convenient to achieve electrical connection with the crusher head 3 through the crushing blade structure 2.

[0073] As an alternative implementation, the deodorizing structure 5 may also be disposed at the bottom or side wall of the crushing chamber 11 and spaced apart from the crushing blade structure 2.

[0074] In one embodiment, the crusher body 1 is provided with a first through hole 12 communicating with the crushing chamber 11; the crushing blade structure 2 includes a crushing blade shell 21 and a drive main board 22; both ends of the crushing blade shell 21 are rotatably connected to the crusher body 1, one end of the crushing blade shell 21 is an electrical connection end, and the electrical connection end is provided with a connection contact point; the electrical connection end is disposed through the first through hole 12 and is electrically connected to the crusher head 3 through the connection contact point; the drive main board 22 is disposed inside the crushing blade shell 21, and the deodorizing structure 5 is disposed outside the crushing blade shell 21 and is electrically connected to the drive main board 22; the drive main board 22 is electrically connected to the electrical connection end.

[0075] The deodorizing structure 5 is located on the outside of the crusher housing 21, which facilitates deodorization of the crushing chamber 11; the drive motherboard 22 is located inside the crusher housing 21, which facilitates better sealing and protection of the drive motherboard 22, and also facilitates the electrical connection between the deodorizing structure 5 and the connecting contact point.

[0076] In a further embodiment, the crusher structure 2 also includes a first connecting line 25 and a second connecting line 26. The deodorizing structure 5 is connected to the drive motherboard 22 via the first connecting line 25, and the drive motherboard 22 is connected to the connection contact point via the second connecting line 26. By setting the first connecting line 25 and the second connecting line 26, the position of the drive motherboard 22 can be avoided too much, and the connection can be made convenient while occupying less space inside the crusher housing 21.

[0077] In a further embodiment, a sealing structure is provided at the position where the deodorizing structure 5 connects to the drive motherboard 22 in the crusher housing 21, so as to achieve better sealing treatment of the crusher housing 21 and prevent liquid from seeping into the crusher housing 21 during the operation of the food crushing device and affecting the internal circuit.

[0078] In one embodiment, the deodorizing structure 5 includes an electrolysis component 51, and the crushing blade structure 2 further includes a first blade 23 and a second blade 24. Both the first blade 23 and the second blade 24 are made of conductive material. The first blade 23 forms the first electrode of the electrolysis component 51, and the second blade 24 forms the second electrode of the electrolysis component 51. The first electrode and the second electrode have opposite polarities.

[0079] The first cutter head 23 of the crushing blade structure 2 forms the first electrode of the electrolysis component 51, and the second cutter head 24 forms the second electrode of the electrolysis component 51. This allows the first cutter head 23 to both rotate and cut food during the crushing process of the food crushing device and electrolyze the water in the crushing chamber 11 during the cleaning process of the food crushing device to effectively generate a highly oxidizing electrolyte. This electrolyte then cleans and sterilizes the crushing chamber 11, improving the cleaning effect and achieving deodorization. Furthermore, it avoids the excessive space occupied by the separate first and second electrodes within the crushing chamber 11, prevents the impact on the crushing process of the food crushing device caused by separate first and second electrodes, and avoids cleaning dead zones for food residue caused by separate first and second electrodes. Simultaneously, the formation of the first electrode by the first cutter head 23 and the second electrode by the second cutter head 24 also increases the electrolysis area, thereby improving the electrolysis speed.

[0080] In a specific implementation, the chemical equation corresponding to the electrolysis performed by the electrolysis component 51 is as follows:

[0081] Overall reaction formula:

[0082] 2H₂O→2H₂+O₂.

[0083] Anodic reaction (oxidation reaction):

[0084] 4OH - →O2 + 2H2O + 4e - .

[0085] Cathode reaction formula (reduction reaction):

[0086] 2H2O+2e - →H2+2OH - .

[0087] The overall reaction equation combines the anodic and cathode reactions:

[0088] 2H₂O→2H₂+O₂.

[0089] In addition, byproducts such as ozone (O) and reactive oxygen species (O) are generated during the electrolysis process. These substances have strong oxidizing properties and can be used to sterilize and remove odors.

[0090] Through the above chemical reactions, the food crusher can effectively generate a solution with strong oxidizing properties, helping users to clean and sterilize, and improving the user experience.

[0091] In a further embodiment, at least one first cutter head 23 and at least one second cutter head 24 may be provided, with the first cutter head 23 and the second cutter head 24 respectively disposed on both sides of the crusher housing 21. When there are at least two first cutter heads 23, the at least two first cutter heads 23 may be distributed at intervals along the vertical direction. When there are at least two second cutter heads 24, the at least two second cutter heads 24 may be distributed at intervals along the vertical direction. In the vertical direction, the first cutter heads 23 and the second cutter heads 24 may also be staggered from each other. Each first cutter head 23 may be a first electrode, and each second cutter head 24 may be a second electrode.

[0092] In a specific embodiment, the crusher structure 2 further includes a first connecting line 25 and a second connecting line 26. The first cutter head 23 and the second cutter head 24 are connected to the drive motherboard 22 through different first connecting lines 25. The connection points include first contacts and second contacts with different polarities. The drive motherboard 22 is connected to the first contacts and the second contacts respectively through different second connecting lines 26. By setting the first connecting lines 25 and the second connecting lines 26, the position of the drive motherboard 22 can be avoided by limiting it too much, and the connection can be made more convenient while occupying less space inside the crusher housing 21.

[0093] In one embodiment, the deodorizing structure 5 further includes an ultraviolet lamp assembly 52, which is disposed on the crushing blade structure 2.

[0094] The ultraviolet lamp assembly 52 can irradiate the crushing chamber 11 with ultraviolet light, thereby achieving sterilization and disinfection, and further improving the deodorization effect.

[0095] In a specific implementation, the breaker structure 2 also includes a third connecting line 27, through which the ultraviolet lamp assembly 52 is connected to the drive motherboard 22.

[0096] In a preferred embodiment, the crusher housing 21 is provided with a mounting groove, and the ultraviolet lamp assembly 52 is embedded in the mounting groove. The ultraviolet lamp assembly 52 may have at least three sets, which are spaced apart along the axial direction of the crusher housing 21, and may also be spaced apart along the circumferential direction of the crusher housing 21.

[0097] In a further embodiment, the crusher head 3 includes a head housing 31, an operation module 32, a control module 33, a drive mechanism 34, and a power supply structure 35. The power output end of the drive mechanism 34 is connected to a communication connection component 36, which is connected to the crushing blade structure 2 and the electrical connection contacts. The operation module 32 is located on the top of the head housing 31, allowing the user to control the food crushing device. The control module 33 is connected to the operation module 32, the drive mechanism 34, the power supply structure 35, and the odor detection structure 4. The deodorization structure 5 is connected to the control module 33 and the power supply module via the crushing blade structure 2 and the communication connection component 36.

[0098] In one embodiment, the crusher body 1 is provided with a second through hole 13 communicating with the crushing chamber 11, and the odor detection structure 4 is disposed on the crusher head 3, extending into the crushing chamber 11 through the second through hole 13.

[0099] The second through hole 13 allows for communication between the odor detection structure 4 and the crushing chamber 11, ensuring that the odor detection structure 4 can accurately detect the odor within the crushing chamber 11. The odor detection structure 4 is mounted on the crusher head 3, facilitating detection under the control of the crusher head 3 and enabling the transmission of detection results to the control module 33.

[0100] In a preferred embodiment, the odor detection structure 4 is a gas sensor.

[0101] In a specific embodiment, the odor detection structure 4 may have at least two, and the second through hole 13 is also provided with at least two, with at least two odor detection structures 4 distributed circumferentially on the crusher head 3.

[0102] In one embodiment, the food crushing device is a meat grinder.

[0103] According to an embodiment of the present invention, in another aspect, a control method for a food crushing device is also provided, for use in the aforementioned food crushing device, comprising:

[0104] S1. Obtain the operating program of the food crushing device.

[0105] Food crushing devices typically include a crushing program and a cleaning program. The crushing program is the process of crushing food. When the crushing program is executed, the crusher head 3 controls the crushing blade structure 2 to rotate to cut and crush the food in the crushing chamber 11.

[0106] S2. If the running program is a cleaning program, the odor detection result of the odor detection structure 4 is obtained in real time.

[0107] The degree of dirtiness in the crushing chamber 11 can be determined by the odor detection results, which in turn facilitates the control of the deodorizing structure 5 and the crushing blade structure 2 that perform cleaning operations in the cleaning process.

[0108] S3. Based on the odor detection results, control the deodorizing structure 5 and the crushing blade structure 2 to clean the crushing chamber 11 of the food crushing device.

[0109] When the control module 33 receives the instruction from the food crushing device to enter the cleaning program, the control module 33 controls the odor detection structure 4 to detect the odor in the crushing chamber 11 in real time. Then, based on the odor detection result of the odor detection structure 4, the control module 33 controls the deodorization structure 5 and the crushing blade structure 2 to clean and deodorize the crushing chamber 11. The deodorization structure 5 and the crushing blade structure 2 perform intelligent cleaning and deodorization of the crushing chamber 11, which is highly efficient and thorough. It realizes the automatic removal of odors and sterilization and disinfection in the crushing chamber 11, which significantly improves the hygiene performance of the equipment and the user experience.

[0110] In a further embodiment, based on the odor detection results, the operating parameters of the odor removal structure 5 and the crushing blade structure 2 can be adaptively adjusted to ensure good cleaning and odor removal effects for different levels of dirt. Operating parameters include operating frequency, operating speed, and operating duration.

[0111] In one embodiment, controlling the deodorizing structure 5 and the crushing blade structure 2 to clean the crushing chamber 11 of the food crushing device based on the odor detection result includes:

[0112] S31, control the preparation of electrolyte by electrolysis component 51.

[0113] Before the electrolysis unit 51 prepares the electrolyte, the cleaning reminder system prompts the user to add water to the crushing chamber 11, or, if the food crusher has an automatic water-adding function, it automatically adds water to the crushing chamber 11 first. After the user adds water, the electrolysis unit 51 is then controlled to electrolyze the water in the crushing chamber 11 to form the electrolyte.

[0114] S32. Control the crushing blade structure 2 to rotate and clean after the electrolyte preparation is completed.

[0115] By controlling the rotation of the crushing blade structure 2, the prepared electrolyte in the crushing chamber 11 can be driven to flow, thereby flushing the crushing chamber 11 and cleaning it.

[0116] The electrolyte with strong oxidizing properties cleans and sterilizes the crushing chamber 11, improving the cleaning effect and achieving the purpose of deodorization. The rotation of the crushing blade structure 2 drives the electrolyte to flow, which can flush the crushing chamber 11, thereby achieving both cleaning and better sterilization while achieving a good cleaning and deodorization effect.

[0117] In one embodiment, controlling the deodorizing structure 5 and the crushing blade structure 2 to clean the crushing chamber 11 of the food crushing device based on the odor detection result further includes:

[0118] S33, Control the ultraviolet lamp assembly 52 to perform sterilization.

[0119] The ultraviolet lamp assembly 52 can irradiate the crushing chamber 11 with ultraviolet light, thereby achieving sterilization and disinfection, and further improving the deodorization effect.

[0120] In a specific implementation, before the ultraviolet lamp assembly 52 is controlled to sterilize, the user is reminded to drain the electrolyte through a cleaning reminder system; or when the food crushing device has an automatic drainage function, the electrolyte is automatically drained.

[0121] In one embodiment, a self-learning program is included before the cleaning procedure. Specifically, the self-learning program can be executed before the first use after leaving the factory, or after the food crusher has been used. The self-learning program includes:

[0122] S10. Obtain the cleaning program set by the user.

[0123] S20. Optimize the cleaning program preset by the user and the adaptive algorithm for the food crushing device.

[0124] Through a self-learning program, the cleaning process can be optimized, making it more intelligent and accurate, thereby significantly improving the cleaning and deodorizing effects.

[0125] In one embodiment, after the cleaning procedure has finished running, a prediction procedure is also included, the prediction procedure comprising:

[0126] S100. Record and analyze the running data of the cleaning program after the self-learning program is optimized.

[0127] S200, and based on the analysis results, control the cleaning reminder system to provide predictive cleaning reminders.

[0128] By recording the running data after the cleaning process, the cleaning reminder system can be controlled to provide predictive cleaning reminders after analyzing the results, so as to remind users to clean in advance and provide them with better cleaning suggestions and cleaning plans.

[0129] In a further embodiment, after the prediction procedure, the following is also included:

[0130] S300: Records whether the user cleans according to the predictive cleaning reminder.

[0131] S400, and optimizes predictive cleaning reminder strategies based on recorded data.

[0132] In this embodiment, when a user uses an application (APP) on a mobile terminal such as a mobile phone, the application will display cleaning data and maintenance records. The user can use the application to provide feedback and prediction, synchronize the data to the food crushing device, and then select an optimization scheme to adjust the reminder strategy.

[0133] According to an embodiment of the present invention, in another aspect, a computer-readable storage medium is also provided, the computer-readable storage medium storing computer instructions, which, when executed, implement the control method of the food crushing device described above.

[0134] The computer-readable storage medium provided in this embodiment, through the control method of the food crushing device using the above-described implementation method, has all the technical effects of the control method of the food crushing device described above.

[0135] Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by this application.

Claims

1. A food breaking device, characterized in that, include: The crusher body (1) has a crushing chamber (11) inside; The crushing blade structure (2) is rotatably connected inside the crushing chamber (11); The crusher head (3) is connected to the crusher body (1) and is used to drive the crusher blade structure (2) to rotate. The odor detection structure (4) has a communication position that communicates with the crushing chamber (11); The deodorization structure (5) is provided on the crusher body (1) and located in the crushing chamber (11).

2. The food breaking device according to claim 1, characterized in that The deodorizing structure (5) is disposed on the crushing blade structure (2) and is electrically connected to the crusher head (3) through the crushing blade structure (2).

3. The food breaking device according to claim 2, characterized in that The crusher body (1) is provided with a first through hole (12) communicating with the crushing chamber (11); the crushing blade structure (2) includes: The crusher blade housing (21) is rotatably connected to the crusher body (1) at both ends. One end of the crusher blade housing (21) is an electrical connection end, and the electrical connection end is provided with a connection contact point. The electrical connection end is provided through the first through hole (12) and is electrically connected to the crusher head (3) through the connection contact point. The drive motherboard (22) is located inside the crusher housing (21), and the deodorizing structure (5) is located outside the crusher housing (21) and is electrically connected to the drive motherboard (22); the drive motherboard (22) is electrically connected to the electrical connection terminal.

4. Food breaking device according to claim 2 or 3, characterized in that The deodorizing structure (5) includes an electrolytic component (51), and the crushing blade structure (2) further includes a first blade (23) and a second blade (24). Both the first blade (23) and the second blade (24) are made of conductive material. The first blade (23) forms the first electrode of the electrolytic component (51), and the second blade (24) forms the second electrode of the electrolytic component (51). The first electrode and the second electrode have opposite polarities.

5. A food breaking device according to claim 2 or 3, characterized in that The deodorizing structure (5) also includes an ultraviolet lamp assembly (52), which is disposed on the crushing blade structure (2).

6. The food breaking device according to any one of claims 1 to 3, characterized in that, The crusher body (1) is provided with a second through hole (13) that connects to the crushing chamber (11). The odor detection structure (4) is provided on the crusher head (3). The odor detection structure (4) extends into the crushing chamber (11) through the second through hole (13).

7. The food breaking device according to any one of claims 1 to 3, characterized in that, The food crushing device is a meat grinder.