Food processor capable of working stably
By incorporating two output terminals and a motor offset design in the food processor, the problem of center of gravity shift caused by the weight of the meat cutting component is solved, achieving stable vegetable and meat cutting functions and improving user experience and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-03-13
AI Technical Summary
Existing food processing machines suffer from excessive vibration and even tipping over due to the large weight of the meat cutting components, causing the machine's center of gravity to shift to one side.
The food processing machine is equipped with two output ends. The vegetable cutting component and the meat cutting component are installed in different mounting slots. The motor is offset to the lower part of the output end to optimize weight distribution. At the same time, a guide structure is set between the meat cutting component and the output end to improve installation accuracy and stability.
This machine enables simultaneous vegetable and meat cutting, avoiding machine vibration and tipping, improving processing efficiency and safety, reducing noise, and ensuring the hygiene and safety of food processing.
Smart Images

Figure CN223987817U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliance technology, specifically to a food processing machine that operates stably. Background Technology
[0002] Most existing food processing machines can only process one type of ingredient. For example, a vegetable cutter can only cut vegetables, and a dough mixer can only mix dough. However, users have diverse needs, requiring the purchase of different machines to process different ingredients, which leads to excessively high operating costs. To expand the functionality of individual machines, Chinese utility model patent CN202120202617.7 discloses a multi-functional pasta machine. This machine has two output terminals on the main unit, both connected to a motor. The first output terminal is connected to a kneading component to form a first combined use state of the multi-functional pasta machine. The second output terminal is connected to a dough pressing component to form a second combined use state of the multi-functional pasta machine. When combined in the first combined use state, the drive component can drive the kneading component to work, realizing the function of automatically turning flour into dough. When combined in the second combined use state, the drive component can drive the dough pressing component to work, realizing the function of automatically turning dough into pasta. This frees up the user's hands and improves the user experience.
[0003] Existing vegetable or meat cutters typically include a main unit with a built-in motor and a detachable vegetable or meat cutting component mounted on the main unit. When processing food, the user places the food into the vegetable or meat cutting component, and the motor drives the blades to rotate to process the food. However, the above two models can only process one type of food. In order to realize the function of processing two types of food simultaneously, the applicant has made corresponding improvements before this application by integrating the vegetable and meat cutting components into the same main unit. By connecting one of the vegetable or meat cutting components to the output head of the main unit, different food can be processed. However, this type of machine has high structural requirements for the vegetable and meat cutting components. They need to be of the same shape and size, and the connectors must also be the same, resulting in a higher manufacturing cost for the whole machine. To address the aforementioned issues, when improving vegetable and meat cutters, those skilled in the art might readily conceive of applying the aforementioned dough mixer solution to vegetable and meat cutters: connecting the first output end to the vegetable cutting component and the second output end to the meat cutting component, thereby achieving the function of cutting both vegetables and meat, which is convenient for users. However, the weight of the meat cutting component is much greater than that of the vegetable cutting component. When both components are installed on the main unit at the same time, the center of gravity of the entire machine is biased towards the meat cutting component. Furthermore, meat is heavier than vegetables, which will cause the center of gravity of the entire machine to shift towards the meat cutting component during food processing, resulting in excessive machine vibration or even tipping over, seriously affecting the user experience. Utility Model Content
[0004] The purpose of this utility model is to provide a stable food processing machine. Under the premise of setting two output ends to enhance the function of existing food processing machines, how to solve the problem that the center of gravity of the whole machine is biased to the meat cutting component side due to the heavier weight of the meat cutting component, resulting in excessive machine vibration or even tipping.
[0005] To achieve the above objectives, this utility model provides a stable food processing machine, including a main unit with a motor inside. The main unit includes a body portion that houses the motor and an output portion located above the middle of the body portion. The width of the output portion is smaller than the width of the body portion, so that a first mounting groove with a first output end is formed on one side of the output portion, and a second mounting groove with a second output end is formed on the other side. The food processing machine also includes a vegetable cutting component and a meat cutting component that is heavier than the vegetable cutting component. The vegetable cutting component can be installed into the first mounting groove and connected to the first output end, and the meat cutting component can be installed into the second mounting groove and connected to the second output end. The motor is located inside the body portion and is offset to the lower side of the output portion and close to the first mounting groove.
[0006] This application reduces the width of the output section relative to the width of the main body, forming a first mounting groove with a first output end on one side of the output section and a second mounting groove with a second output end on the other side. The vegetable cutting component can be installed in the first mounting groove and connected to the first output end, while the meat cutting component can be installed in the second mounting groove and connected to the second output end. This allows users to cut vegetables using the vegetable cutting component and meat using the meat cutting component simultaneously, enabling the processing of two types of ingredients in one machine. This dual-purpose design improves the machine's practicality and functionality, and avoids cross-contamination when using the same component to process vegetables after cutting meat, ensuring the hygiene and safety of food processing. Furthermore, users can simultaneously cut meat and vegetables, increasing processing efficiency. In addition, the fact that both the vegetable cutting and meat cutting components are located within the mounting grooves significantly improves their stability. This not only enhances the stability of the transmission between the output end and the two components but also reduces noise generated by severe vibrations during food processing, achieving a noise reduction effect.
[0007] Meanwhile, the motor is located inside the main body. Given that the weight of the meat cutting component is greater than that of the vegetable cutting component, by positioning the motor diagonally below the output section and close to the first mounting slot, the weight distribution is optimized by utilizing the weight of the motor. This allows the center of gravity of the entire machine to be balanced or slightly biased towards the vegetable cutting component. This effectively avoids situations where the center of gravity shifts to the meat cutting component during food processing due to the greater weight of the meat and meat components compared to the vegetable cutting component, which could cause excessive machine vibration or even tipping over. This ensures a stable processing process and improves the user experience.
[0008] In a preferred embodiment of a stable food processing machine, a gear assembly is vertically mounted below the center of the output section and is connected to the first output end and the second output end. The input end of the gear assembly is connected to the motor, which is horizontally positioned and extends below the first mounting slot.
[0009] By placing the motor horizontally and extending it below the first mounting slot, the vertical height of the entire machine can be reduced, thereby lowering the weight of the machine's center of gravity and further improving the stability of the machine. On the other hand, the weight of the motor can be brought closer to the first mounting slot, further optimizing the weight distribution, reducing the center of gravity shift caused by the large weight of the meat cutting component, ensuring that the machine remains stable when operating at high speed, and improving operational safety.
[0010] In a preferred embodiment of a stable food processing machine, the meat cutting assembly includes a processing chamber, and the main body is further provided with a receiving groove located below the second mounting groove. The receiving groove is provided with a receiving box for receiving materials, and the open end of the receiving box is configured to conform to the bottom of the processing chamber.
[0011] By incorporating a receiving box within the receiving slot to collect materials, users can centrally collect processed ingredients, preventing spillage and improving operational convenience. Furthermore, the open end of the receiving box is contoured to the bottom of the processing chamber, allowing users to guide and align the meat-cutting component when assembling it with the second mounting slot. This enhances installation convenience, improves assembly efficiency, and ensures the accuracy of the assembled component, thereby improving its operational stability.
[0012] In a preferred embodiment of a stable food processing machine, the bottom of the main body is provided with an outwardly extending support base, and the receiving box is placed above the support base.
[0013] By providing an outwardly extending support base at the bottom of the main body and placing the receiving box above the support base, the contact area between the main body and the worktable is greatly increased, thereby further enhancing the support for the whole machine, further distributing the weight of the machine, achieving stable support, and further avoiding large vibrations or even tipping during operation.
[0014] In a preferred embodiment of a stable food processing machine, the receiving box includes a meat receiving box and a vegetable receiving box, and the meat receiving box and the vegetable receiving box can be stacked.
[0015] By including both a meat receiving box and a vegetable receiving box, users can place the meat receiving box under the meat cutting component to collect meat ingredients centrally, and place the vegetable receiving box under the vegetable cutting component to collect vegetables centrally. This facilitates the categorization and collection of different ingredients, further improving operational efficiency and the convenience of ingredient management. Furthermore, the meat and vegetable receiving boxes can be stacked, saving storage space and making them convenient for users to store.
[0016] In a preferred embodiment of a stable food processing machine, the projections of the centers of gravity of the vegetable cutting component and the meat cutting component onto the horizontal plane both fall within the body.
[0017] By ensuring that the center of gravity projections of the vegetable cutting and meat cutting components on the horizontal plane fall within the main body, the center of gravity of the entire machine is located within the main body, thereby effectively avoiding tilting or shaking caused by uneven weight distribution of components, further improving the stability and operational safety of the machine, and ensuring the stability of the processing process.
[0018] In a preferred embodiment of a stable food processing machine, a guide structure is provided between the meat cutting assembly and the output section, arranged along the axial direction of the meat cutting assembly.
[0019] By providing a guide structure along the axial direction of the meat cutting assembly between the meat cutting assembly and the output section, the guide structure enables users to align the meat cutting assembly and the output section more accurately, which helps to improve the installation efficiency of the meat cutting assembly. On the other hand, the guide structure can provide stable support and limit the movement of the meat cutting assembly, reduce vibration caused by improper assembly, and further improve the stability of the whole machine operation.
[0020] In a preferred embodiment of a stable food processing machine, the meat cutting assembly includes a processing chamber, a feeding cylinder at the top of the processing chamber, and a rotary cutting blade assembly disposed within the processing chamber. The output section has a slot with an opening facing the side of the meat cutting assembly. The end of the processing chamber facing the output section has a reinforcing rib that is inserted into the slot. The guide structure includes the slot and the reinforcing rib.
[0021] By setting the guide structure to include slots and inserts, the forming of the guide structure is simplified, and the precise fit of the slots and inserts ensures a tight connection between the meat cutting component and the output part, reducing assembly errors, enhancing structural stability, further optimizing the operating experience, and improving work efficiency.
[0022] In a preferred embodiment of a stable food processing machine, the bottom wall of the second mounting groove is further provided with a sliding groove extending along the installation direction of the meat cutting assembly, and the bottom wall of the meat cutting assembly is provided with a sliding rail that cooperates with the sliding groove.
[0023] By providing a sliding groove extending along the installation direction of the meat cutting component on the bottom wall of the second mounting slot, and a slide rail that mates with the sliding groove on the bottom wall of the meat cutting component, users can achieve precise positioning when installing the meat cutting component through the cooperation of the sliding groove and the slide rail, which helps to improve assembly efficiency. At the same time, the cooperation of the sliding groove and the slide rail can improve the stability of the meat cutting component and the second mounting slot, reduce vibration caused by installation errors, further ensure the smooth operation of the whole machine, and improve the user experience.
[0024] In a preferred embodiment of a stable food processing machine, a power switch for controlling the on / off state of the motor is provided at the top of the output section; or,
[0025] Both the meat cutting component and the vegetable cutting component are equipped with feeding cylinders, and the top of the output section has fixing grooves on both sides that mate with the feeding cylinders; or,
[0026] The top-view length of the feeding cylinder of the vegetable cutting component is greater than that of the feeding cylinder of the meat cutting component, and the top-view width of the feeding cylinder of the vegetable cutting component is greater than that of the feeding cylinder of the meat cutting component.
[0027] With a power button at the top of the output section to control the motor's on / off state, users can directly observe and control the motor's start and stop, which is more in line with users' operating habits.
[0028] By providing fixing grooves on both sides of the top of the output section to cooperate with the feeding cylinder, the feeding cylinder is limited, which helps to further enhance the limiting effect of the main unit on the meat cutting component and vegetable cutting component, thereby further improving the stability of the whole machine. Attached Figure Description
[0029] The accompanying drawings, which are included to provide a further understanding of the present invention and constitute a part of this invention, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0030] Figure 1 This is a schematic diagram of the structure of a food processing machine in one embodiment of the present invention;
[0031] Figure 2 This is an exploded view of a food processing machine according to one embodiment of the present invention;
[0032] Figure 3 for Figure 2 Enlarged view of section A in the middle;
[0033] Figure 4 This is a cross-sectional view of a food processing machine according to one embodiment of the present invention;
[0034] Figure 5 This is a schematic diagram of the structure of a food processing machine in one embodiment of the present invention;
[0035] Figure 6 This is a schematic diagram of the structure of the food processing machine in another working state according to one embodiment of the present invention.
[0036] List of components and reference numerals:
[0037] 1-Main unit, 11-Body unit, 111-Support base, 12-Output unit, 121-Slot, 122-Fixing slot, 13-First mounting slot, 14-Second mounting slot, 141-Slide groove, 1411-Guide slope; 2-Vegetable cutting assembly; 3-Meat cutting assembly, 31-Processing chamber, 311-Feeding cylinder, 312-Insertion rib, 313-Slide rail, 32-Rolling cutter assembly; 4-Receiving box, 41-Meat receiving box, 42-Vegetable receiving box; 5-First output end; 6-Second output end; 7-Motor; 8-Gear assembly; 9-Power button. Detailed Implementation
[0038] To more clearly illustrate the overall concept of this utility model, a detailed description will be provided below with reference to the accompanying drawings.
[0039] It should be noted that many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0040] like Figures 1 to 6 As shown, this utility model provides a stable food processing machine, including a main unit 1 with a motor 7 inside. The main unit 1 includes a body part 11 for accommodating the motor 7 and an output part 12 located above the middle of the body part 11. The width of the output part 12 is smaller than that of the body part 11, so that a first mounting groove 13 with a first output end 5 is formed on one side of the output part 12, and a second mounting groove 14 with a second output end 6 is formed on the other side. The food processing machine also includes a vegetable cutting component 2 and a meat cutting component 3 with a weight greater than that of the vegetable cutting component 2. The vegetable cutting component 2 can be installed into the first mounting groove 13 and connected to the first output end 5. The meat cutting component 3 can be installed into the second mounting groove 14 and connected to the second output end 6. The motor 7 is located inside the body part 11 and is offset to the lower side of the output part 12 and close to the first mounting groove 13.
[0041] This application reduces the width of the output section 12 relative to the width of the main body 11, forming a first mounting groove 13 with a first output end 5 on one side of the output section 12 and a second mounting groove 14 with a second output end 6 on the other side. The vegetable cutting component 2 can be installed into the first mounting groove 13 and connected to the first output end 5, and the meat cutting component 3 can be installed into the second mounting groove 14 and connected to the second output end 6. This allows the user to cut vegetables using the vegetable cutting component 2 and meat using the meat cutting component 3 when using the food processor. This enables the processing of two types of ingredients in one food processor, making it a dual-purpose machine. This improves the practicality and functionality of the machine and avoids cross-contamination when the user processes vegetables using the same component after cutting meat, ensuring the hygiene and safety of food processing. At the same time, the user can cut meat and vegetables simultaneously during food processing, improving the processing efficiency of the food. In addition, both the vegetable cutting component 2 and the meat cutting component 3 are located in the mounting slot, which can greatly improve the stability of the vegetable cutting component 2 and the meat cutting component 3. This not only improves the stability of the output end and the transmission of the two components, but also reduces the noise generated by violent vibration during food processing, thus achieving a noise reduction effect.
[0042] Meanwhile, the motor 7 is located inside the main body 11. Given that the weight of the meat cutting component 3 is greater than that of the vegetable cutting component 2, by positioning the motor 7 diagonally below the output part 12 and close to the first mounting slot 13, the weight distribution is optimized by utilizing the weight of the motor 7. This allows the center of gravity of the entire machine to be balanced or slightly biased towards the vegetable cutting component 2. This effectively avoids the situation where the center of gravity of the meat cutting component 3 and the meat are too large compared to the vegetable cutting component 2, causing the center of gravity to be biased towards the meat cutting component 3 during food processing, resulting in excessive machine vibration or even tipping over. This ensures a stable processing process and improves the user experience.
[0043] It should be noted that this application does not specifically limit the placement of the motor 7. As one preferred embodiment of this application, such as... Figure 4 As shown, a gear assembly 8 is vertically mounted below the middle of the output section 12 and is connected to the first output end 5 and the second output end 6. The input end of the gear assembly 8 is connected to the motor 7, which is horizontally positioned and extends to the bottom of the first mounting groove 13.
[0044] By placing the motor 7 horizontally and extending it below the first mounting slot 13, the vertical height of the entire machine can be reduced, thereby lowering the weight of the machine's center of gravity and further improving the stability of the machine. On the other hand, the weight of the motor 7 can be brought closer to the first mounting slot 13, further optimizing the weight distribution, reducing the center of gravity shift caused by the large weight of the meat cutting component 3, ensuring that the machine remains stable when operating at high speed, and improving operational safety.
[0045] As a preferred embodiment of this application, such as Figure 4As shown, the meat cutting assembly 3 includes a processing cavity 31, and the main body 11 is also provided with a receiving groove located below the second mounting groove 14. The receiving groove is provided with a receiving box 4 for receiving materials, and the open end of the receiving box 4 is set in the same shape as the bottom of the processing cavity 31.
[0046] By providing a receiving box 4 within the receiving slot to collect materials, users can centrally collect processed ingredients, preventing spillage and improving operational convenience. Simultaneously, the open end of the receiving box 4 is contoured to the bottom of the processing cavity 31, allowing the user to guide and straighten the meat cutting component 3 when assembling it with the second mounting slot 14. This improves the ease of installation, increases assembly efficiency, and ensures the accuracy of the assembled meat cutting component 3, enhancing its operational stability. More preferably, the open end of the receiving box 4 can abut against the processing cavity 31 to support the meat cutting component 3, further improving its stability.
[0047] Furthermore, such as Figure 4 As shown, the bottom of the main body 11 is provided with an outwardly extending support base 111, and the receiving box 4 is placed above the support base 111.
[0048] By providing an outwardly extending support base 111 at the bottom of the main body 11 and placing the receiving box 4 above the support base 111, the contact area between the main body 11 and the worktable is greatly increased, thereby further enhancing the support for the whole machine, further dispersing the weight of the machine, achieving stable support, and further avoiding large vibrations or even tipping during operation.
[0049] It should be noted that the structure of the receiving box 4 is not specifically limited in this application. As a preferred embodiment of this application, the receiving box 4 includes a meat receiving box 41 and a vegetable receiving box 42, and the meat receiving box 41 and the vegetable receiving box 42 can be stacked.
[0050] By including a meat receiving box 41 and a vegetable receiving box 42 in the receiving box 4, users can place the meat receiving box 41 under the meat cutting component 3 to collect meat ingredients centrally, and place the vegetable receiving box 42 under the vegetable cutting component 2 to collect vegetables centrally. This facilitates the classification and collection of different ingredients, further improving operational efficiency and the convenience of ingredient management. Furthermore, the meat receiving box 41 and the vegetable receiving box 42 can be stacked, saving storage space and making them convenient for users to store.
[0051] Preferably, such as Figure 6As shown, when a user is processing ingredients in the food processor, if only the vegetable cutting component 2 or the meat cutting component 3 is used, the user can stack the meat receiving box 41 and the vegetable receiving box 42 together and place them under the vegetable cutting component 2 or the meat cutting component 3; when the user uses both the vegetable cutting component 2 and the meat cutting component 3 simultaneously, such as Figure 5 As shown, the vegetable receiving box 42 and the meat receiving box 41 can be placed below the vegetable cutting component 2 and the meat cutting component 3, respectively.
[0052] As a preferred embodiment of this application, such as Figure 4 As shown, the projections of the centers of gravity of the vegetable cutting component 2 and the meat cutting component 3 onto the horizontal plane both fall within the body part 11.
[0053] By ensuring that the center of gravity projections of the vegetable cutting component 2 and the meat cutting component 3 on the horizontal plane fall within the main body 11, the center of gravity of the entire machine is located within the main body 11, thereby effectively avoiding tilting or shaking caused by uneven weight distribution of components, further improving the stability and operational safety of the machine, and ensuring the stability of the processing process.
[0054] As a preferred embodiment of this application, such as Figure 2 , Figure 3 As shown, a guide structure is provided between the meat cutting assembly 3 and the output part 12, arranged along the axial direction of the meat cutting assembly 3.
[0055] By providing a guide structure arranged along the axial direction of the meat cutting assembly 3 between the meat cutting assembly 3 and the output part 12, the guide structure enables the user to more accurately align the meat cutting assembly 3 with the output part 12 when assembling them, which helps to improve the installation efficiency of the meat cutting assembly 3. On the other hand, the guide structure can provide stable support and limit the meat cutting assembly 3, reduce vibration caused by improper assembly, and further improve the stability of the whole machine operation.
[0056] It should be noted that this application does not specifically limit the guiding structure; as one preferred embodiment of this application, such as... Figure 3 As shown, the meat cutting assembly 3 includes a processing chamber 31, a feeding cylinder 311 on the top of the processing chamber 31, and a rotary cutter assembly 32 disposed in the processing chamber 31. The output part 12 is provided with a slot 121 with an opening facing the side of the meat cutting assembly 3. The end of the processing chamber 31 facing the output part 12 is provided with a reinforcing rib 312 that is inserted into the slot 121. The guide structure includes the slot 121 and the reinforcing rib 312.
[0057] By setting the guide structure to include slot 121 and insert rib 312, the forming of the guide structure is simplified, and the precise fit between slot 121 and insert rib 312 ensures a tight connection between the meat cutting component 3 and the output part 12, reduces assembly errors, enhances structural stability, further optimizes the operating experience, and improves work efficiency.
[0058] As a preferred embodiment of this application, such as Figure 3 As shown, the bottom wall of the second mounting groove 14 is also provided with a sliding groove 141 extending along the mounting direction of the meat cutting assembly 3, and the bottom wall of the meat cutting assembly 3 is provided with a sliding rail 313 that cooperates with the sliding groove 141.
[0059] By providing a sliding groove 141 extending along the installation direction of the meat-cutting assembly 3 on the bottom wall of the second mounting slot 14, and a slide rail 313 cooperating with the sliding groove 141 on the bottom wall of the meat-cutting assembly 3, users can achieve precise positioning during installation of the meat-cutting assembly 3 through the cooperation of the sliding groove 141 and the slide rail 313, which helps improve assembly efficiency. Simultaneously, the cooperation of the sliding groove 141 and the slide rail 313 enhances the stability of the meat-cutting assembly 3's fit with the second mounting slot 14, reducing vibration caused by installation errors, further ensuring the smooth operation of the entire machine, and improving the user experience. More preferably, such as Figure 3 As shown, the slide 141 has a guide slope 1411 at the port facing the meat cutting component 3, which makes it easier to insert the slide rail 313 and helps to further improve assembly efficiency.
[0060] As a preferred embodiment of this application, such as Figure 1 As shown, the top of the output section 12 is equipped with a power button 9 for controlling the on / off state of the motor 7.
[0061] With a power button 9 at the top of the output section 12 to control the on / off state of the motor 7, the user can directly observe and control the start and stop of the motor 7, which is more in line with the user's operating habits.
[0062] As a preferred embodiment of this application, such as Figure 3 As shown, both the meat cutting component 3 and the vegetable cutting component 2 are equipped with feeding cylinders 311, and the top sides of the output section 12 are provided with fixing grooves 122 that cooperate with the feeding cylinders 311.
[0063] By providing fixing grooves 122 on both sides of the top of the output section 12 to cooperate with the feeding cylinder 311, the feeding cylinder 311 is limited, which helps to further enhance the limiting effect of the host machine 1 on the meat cutting component 3 and the vegetable cutting component 2, thereby further improving the stability of the whole machine.
[0064] As a preferred embodiment of this application, such as Figure 2 As shown, the top-view length of the feeding cylinder of the vegetable cutting component 2 is greater than the top-view length of the feeding cylinder 311 of the meat cutting component 3, and the top-view width of the feeding cylinder of the vegetable cutting component 2 is greater than the top-view width of the feeding cylinder 311 of the meat cutting component 3.
[0065] By making the top-view length of the feeding cylinder of the vegetable cutting component 2 greater than the top-view length of the feeding cylinder 311 of the meat cutting component 3, and the top-view width of the feeding cylinder of the vegetable cutting component 2 greater than the top-view width of the feeding cylinder 311 of the meat cutting component 3, users can directly put larger ingredients into the feeding cylinder of the vegetable cutting component 2 when adding vegetables, and can let relatively smaller pieces of meat in and process them when adding meat into the feeding cylinder 311 of the meat cutting component 3. This allows different feeding cylinders to be matched with different types of ingredients, improving the user experience.
[0066] The technical solutions protected by this utility model are not limited to the above embodiments. It should be noted that any combination of the technical solutions of any embodiment with one or more other embodiments is within the protection scope of this utility model. Although this utility model has been described in detail above with general descriptions and specific embodiments, some modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, all such modifications or improvements made without departing from the spirit of this utility model are within the scope of protection claimed by this utility model.
Claims
1. A food processor with stable operation, comprising a main body with a motor arranged therein, characterized in that, The host includes a body part containing the motor and an output part arranged above the middle part of the body part, the width of the output part is reduced relative to the width of the body part, so as to form a first installation slot provided with a first output end on one side of the output part, and a second installation slot provided with a second output end on the other side, the food processor further includes a vegetable cutting assembly and a meat cutting assembly with a weight greater than the vegetable cutting assembly, the vegetable cutting assembly can be installed to the first installation slot and connected with the first output end, the meat cutting assembly can be installed to the second installation slot and connected with the second output end, the motor is arranged in the body part, and the motor is offset to the oblique lower side of the output part and arranged close to the first installation slot.
2. A food processor as claimed in claim 1, wherein A gear assembly is vertically arranged below the middle part of the output part and in transmission connection with the first output end and the second output end, the input end of the gear assembly is in transmission connection with the motor, and the motor is transversely arranged and extends below the first installation slot.
3. The food processor of claim 1, wherein the food processor is configured to operate at a constant speed. The meat cutting assembly includes a processing cavity, the body part is further provided with a containing groove below the second installation slot, a receiving box for receiving materials is arranged in the containing groove, and the open end of the receiving box is shaped with the bottom of the processing cavity.
4. A food processor as claimed in claim 3, wherein the motor is mounted on the base and the bowl is mounted on the motor. The bottom end of the body part is provided with an outwardly extending support seat, and the receiving box is placed above the support seat.
5. A food processor as claimed in claim 3, wherein the motor is mounted on the base and the bowl is mounted on the motor. The receiving box includes a meat receiving box and a vegetable receiving box, and the meat receiving box and the vegetable receiving box can be stacked and placed.
6. The workably stable food processor of claim 1, wherein, The projections of the centers of gravity of the vegetable cutting assembly and the meat cutting assembly on the horizontal plane all fall within the body part.
7. The workably stable food processor of claim 1, wherein, A guide structure is arranged along the axial direction of the meat cutting assembly between the meat cutting assembly and the output part.
8. A food processor as claimed in claim 7, wherein the food processor is configured to operate in a stable manner. The meat cutting assembly includes a processing cavity, a feeding cylinder arranged at the top of the processing cavity, and a rolling cutter assembly arranged in the processing cavity, the output part is provided with a slot with an opening facing one side of the meat cutting assembly, the end of the processing cavity facing the output part is provided with a plug rib inserted into the slot, and the guide structure includes the slot and the plug rib.
9. A working stable food processor as claimed in claim 1 or 7 or 8, wherein, The bottom wall of the second installation slot is further provided with a sliding groove extending along the installation direction of the meat cutting assembly, and the bottom wall of the meat cutting assembly is provided with a sliding rail matched with the sliding groove.
10. The workably stable food processor of claim 1, wherein, The top end of the output part is provided with a power key for controlling the on-off of the motor; or The meat cutting assembly and the vegetable cutting assembly are both provided with a feeding cylinder, and the top of the output part is provided with a fixing groove matched with the feeding cylinder; or The feeding cylinder of the vegetable cutting assembly has a length greater than the length of the feeding cylinder of the meat cutting assembly in plan view, and the feeding cylinder of the vegetable cutting assembly has a width greater than the width of the feeding cylinder of the meat cutting assembly in plan view.
Citation Information
Patent Citations
Multifunctional cooked wheaten food machine
CN214431407U