Food processor capable of working stably
By setting up slide chutes and guide grooves in the food processor, independent disassembly and sliding cooperation between the cutting assembly and the cutting plate assembly is achieved, which solves the slip and wear problems of cutting assembly, and improves user safety and processing stability.
Patent Information
- Application Number
- CN202421879855.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-05
AI Technical Summary
In existing food processing machines, the cutting components and the cutting plate components need to be disassembled on their own machine, but the cutting components can slip relative to the cutting plate components, resulting in a risk of slippage, and will be seriously worn after long-term use, affecting normal processing.
A food processor is designed to allow the cutting assembly to be independently disassembled from the cutting plate assembly by setting a slide groove and a convex rib in the storage groove, and to provide a guide groove and a guide rib in the storage groove to achieve a sliding fit of the cutting assembly to avoid slippage and wear.
Effectively avoid slipping and dislocation of cutting components, reduce wear, ensure smooth movement of cutting components, improve user safety and processing stability, simplify cleaning and maintenance, and enhance the stability and functional diversity of the entire machine.
Smart Images

Figure CN223115402U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household appliances, and particularly relates to a food processor with stable operation. Background Art
[0002] Existing food processors such as reciprocating vegetable cutters generally include a main body, a motor assembly provided on the main body, a cutter head assembly, and a cutting assembly provided above the cutter head assembly and drivingly connected to the motor assembly. When a user uses the food processor, the reciprocating motion of the cutting assembly is used to cut food materials. In order to be able to cut food materials into different shapes, such as cutting food materials into slices or filaments, the cutter head is usually set to be detachable relative to the main body. For example, Chinese invention patent CN103878802B discloses a structure of a reciprocating vegetable cutter, which discloses that a reciprocating cutting tool (cutting assembly) is slidably connected to a complementary cutting tool (cutter head assembly) to cut vegetables. At the same time, the cutter head assembly can be detached relative to the main body, so as to realize the replacement of different cutter head assemblies. However, in this solution, when the user replaces the cutter head assembly, the cutting assembly and the cutter head assembly must be taken out together. However, after being taken out, there is relative sliding between the two. Especially when placed obliquely, there is a situation where the cutting assembly slides out and causes injury to the user. In addition, after long-term use, the two wear each other, which will cause the offset gap between the two to increase. If the trajectory is not a straight line, it may also cause the problem of sliding jamming, and further cause the food materials to not be processed normally. Summary of the Utility Model
[0003] The purpose of the utility model is to provide a food processor with stable operation, so as to solve the problems in the existing food processor that the cutting assembly and the cutter head assembly need to be detached from the main body together, but the cutting assembly can slide relative to the cutter head assembly, resulting in the cutting assembly being easily slipped out and causing injury to the user, and the cutter head assembly and the cutting assembly are severely worn and cannot slide normally.
[0004] To achieve the above purpose, the utility model provides a food processor with stable operation, including a main body, a motor assembly provided on the main body, a cutter head assembly, and a cutting assembly provided above the cutter head assembly and drivingly connected to the motor assembly. A receiving groove for receiving the cutter head assembly and the cutting assembly is provided at the top of the main body. A material discharging port is provided at the bottom wall of the receiving groove. The cutter head assembly is detachably installed above the material discharging port. One of the inner side wall of the receiving groove and the cutting assembly is provided with a sliding groove extending along the reciprocating motion direction of the cutting assembly, and the other of the two is provided with a rib adapted to the sliding groove.
[0005] In this application, the cutter head assembly is detachably installed above the material discharge opening. After the user finishes using the food processor, the cutter head assembly can be disassembled from the main body, so as to achieve deep cleaning of the cutter head assembly, making the cleaning of the cutter head assembly more convenient and fast, improving the cleanliness of the cutter head assembly, and avoiding the situation that the cutter head assembly remains with residual food for a long time, resulting in peculiar smell or even mildew. At the same time, the user can also process the food by replacing different cutter head assemblies, meeting the user's usage requirements and enhancing the diversity of the functions of the food processor. And one of the inner side wall of the receiving groove and the cutting component is provided with a sliding groove extending along the reciprocating movement direction of the cutting component, and the other of the two is provided with a rib adapted to the sliding groove, realizing the sliding fit between the cutting component and the main body. Compared with the existing way of sliding connection between the cutting component and the cutter head assembly, on the one hand, the independent disassembly of the cutting component and the cutter head assembly is realized, effectively avoiding the situation that the cutting component and the cutter head assembly need to be disassembled from the main body together, but the cutting component can slide relative to the cutter head assembly, resulting in the cutting component being easily slipped out and causing injury to the user, improving the user experience; on the other hand, compared with the existing situation where the cutting component needs to cooperate with the cutter head assembly to realize sliding and also press down the cutter head assembly when the cutting component and the cutter head assembly are slidingly matched, resulting in relatively large wear of the two, in this application, the cutting component does not contact the cutter head assembly, and there is only a sliding fit force between the cutting component and the receiving groove, greatly reducing the wear of the cutting component, avoiding the situation that a large gap is generated after the cutter head assembly and the cutting component are used for a long time, resulting in jamming or even inability to slide when the cutting component slides, ensuring the smoothness of the reciprocating movement of the cutting component, and further ensuring the smooth progress of food processing.
[0006] In a preferred implementation of a food processor with stable operation, a base is further provided in the receiving groove. The base is provided with an avoidance opening axially aligned with the material discharge opening. The cutter head assembly is arranged on the avoidance opening, and the sliding groove is formed on the inner side wall of the base.
[0007] By further providing a base in the receiving groove, it helps to improve the overall strength of the main body, so that the main body can still maintain the stability of the overall structure when cutting relatively hard food, and avoid the situation that the main body is deformed or even damaged.
[0008] In a preferred implementation of a food processor with stable operation, the base is detachably connected to the main body.
[0009] By setting the base to be detachably connected to the main body, no matter whether the sliding groove or the rib is severely worn after long-term use, the smoothness of the sliding of the cutting component can be ensured by replacing the cutting component or the base, which helps to further improve the stability of food processing, and at the same time realizes low-cost maintenance and improves the user experience.
[0010] In a preferred implementation of a food processor with stable operation, a guide groove extending along the reciprocating movement direction of the cutting assembly and having an open top is provided on the bottom wall of the receiving groove, and the cutting assembly is provided with a guide rib adapted to the guide groove.
[0011] By providing a guide groove extending along the reciprocating movement direction of the cutting assembly and having an open top on the bottom wall of the receiving groove, and the cutting assembly is provided with a guide rib adapted to the guide groove, the cutting assembly and the main body can not only achieve reciprocating movement through the cooperation of the sliding groove and the convex rib, but also further achieve sliding cooperation through the cooperation of the guide rib and the guide groove, realizing a dual guiding effect on the cutting assembly, which helps to further improve the stability of the sliding cooperation between the cutting assembly and the main body, and thus ensure the stability of the cutting assembly for food processing.
[0012] In a preferred implementation of a food processor with stable operation, a base is further provided in the receiving groove, and the food processor further includes an upper cover covering the upper part of the receiving groove, and the base is clamped between the upper cover and the main body.
[0013] By arranging the base to be clamped between the upper cover and the main body, when the upper cover realizes cooperation with the main body, it can also synchronously realize the clamping and fixing of the base, further improving the assembly efficiency, eliminating the structural components for connecting the two, being able to simplify the components of the whole machine, and thus reducing the occupied space of the whole machine, realizing the miniaturization of the food processor.
[0014] In a preferred implementation of a food processor with stable operation, the upper cover is provided with a first groove with an open bottom side, and the receiving groove is provided with a second groove with an open top side, and the first groove and the second groove are butted to form a sliding groove.
[0015] By setting the sliding groove to be formed by the butting of the first groove and the second groove, the forming of the sliding groove is more convenient, facilitating the demolding of the upper cover and the main body, helping to improve the production efficiency of the upper cover and the main body, and at the same time reducing the production cost of the two.
[0016] In a preferred implementation of a food processor with stable operation, the sliding groove is formed on the inner side wall of the receiving groove, and the cutting assembly includes a cutting knife and a transmission member connecting the cutting knife and the motor assembly to enable the cutting knife to reciprocate along the extending direction of the receiving groove.
[0017] By setting the sliding groove to be formed on the inner side wall of the receiving groove, the forming method of the sliding groove is simplified, and at the same time the structural components of the whole machine are simplified, which can improve the compactness of the whole machine structure and provide conditions for the miniaturization of the food processor. At the same time, the cutting assembly includes a cutting knife and a transmission member connecting the cutting knife and the motor assembly to enable the cutting knife to reciprocate along the extending direction of the receiving groove, so that the cutting knife can realize lateral sliding assembly along the sliding groove during assembly, and at the same time the transmission member can realize vertical assembly connection with the motor assembly, ensuring the effective assembly of the cutting assembly.
[0018] In a preferred implementation of a food processor with stable operation, a base is further provided in the accommodating groove. The base is provided with an avoidance opening axially aligned with the material discharging opening. The cutter head assembly is detachably arranged in the avoidance opening, and a baffle plate fixed below the base is provided at the avoidance opening near the front side of the main body.
[0019] By providing a baffle plate fixed below the base at the avoidance opening near the front side of the main body, the food materials cut by the cutting assembly can be prevented from further moving forward under the blocking of the baffle plate, thereby avoiding the situation that the food materials enter the interior of the main body through the gap between the base and the main body, resulting in residual dirt in the main body, generating peculiar smell or even mildew, and ensuring the cleanliness of the main body.
[0020] In a preferred implementation of a food processor with stable operation, the base is provided with a first stud, and the first stud is connected to the baffle plate.
[0021] By providing a first stud on the base and connecting the first stud to the baffle plate, the connection and fixation between the base and the baffle plate are realized, and the stability of the connection and cooperation between the two is improved. Compared with the traditional way of fixing by clamping, the connection and fixation between the two are more reliable and stable, avoiding the situation that the connection between the baffle plate and the base is unstable or even the baffle plate is separated from the base, resulting in the baffle plate being unable to block the food materials.
[0022] In a preferred implementation of a food processor with stable operation, a limiting member is fastened to the end of the first stud, and a spring is further sleeved outside the first stud. One end of the spring abuts against the baffle plate, and the other end abuts against the limiting member; or,
[0023] The base is further provided with a second stud connected to the main body, and the second stud is arranged side by side and spaced apart from the first stud.
[0024] By further sleeving a spring outside the first stud, with one end of the spring abutting against the baffle plate and the other end abutting against the limiting member, the baffle plate can achieve elastic cooperation with the base, enabling it to have a certain amount of movement space. When the food materials impact the baffle plate, the baffle plate can generate displacement, and at the same time, after the food materials are separated from the baffle plate, it can return to the original position by means of the elastic force of the spring, avoiding the situation that when the food materials have a large impact on the baffle plate, the torque transmitted by the baffle plate to the first stud is large, causing the first stud to deform or even break, and further leading to the inability to connect the baffle plate and the base, and further improving the stability of the connection and cooperation between the baffle plate and the base. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. In the drawings:
[0026] Figure 1 A cross-sectional view of a food processor in an embodiment of the present utility model;
[0027] Figure 2 A structural schematic diagram of a main body in an embodiment of the present utility model;
[0028] Figure 3 A cross-sectional view of a base and a cutter head assembly in an embodiment of the present utility model;
[0029] Figure 4 An exploded view of a base and a baffle plate in an embodiment of the present utility model;
[0030] Figure 5 A cross-sectional view of a base and a baffle plate in an embodiment of the present utility model;
[0031] Figure 6 A structural schematic diagram of a food processor in another embodiment of the present utility model;
[0032] Figure 7 A cross-sectional view of a food processor in an embodiment of the present utility model.
[0033] List of components and reference numerals:
[0034] 1 - Main body, 11 - Accommodating groove, 111 - Material discharge port; 2 - Motor assembly; 3 - Cutter head assembly; 4 - Cutting assembly, 41 - Cutting knife, 411 - Rib, 42 - Transmission member, 43 - Guide rib; 5 - Upper cover; 6 - Base, 61 - Sliding groove, 62 - Guide groove, 63 - Avoidance opening, 64 - First stud, 65 - Second stud; 7 - Baffle plate; 8 - Limiting member; 9 - Spring. Detailed implementation manners
[0035] For a clearer explanation of the overall concept of the present utility model, the following will be further described in detail by way of examples in conjunction with the accompanying drawings of the specification.
[0036] It should be noted that many specific details are set forth in the following description to facilitate a full understanding of the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present utility model is not limited by the specific implementation manners disclosed below.
[0037] Such as Figures 1 to 7As shown in the figure, the utility model provides a food processor with stable operation, which includes a main body 1, a motor assembly 2 arranged on the main body 1, a cutter head assembly 3, and a cutting assembly 4 arranged above the cutter head assembly 3 and drivingly connected with the motor assembly 2. A receiving groove 11 for accommodating the cutter head assembly 3 and the cutting assembly 4 is provided at the top of the main body 1. A material discharging opening 111 is provided at the bottom wall of the receiving groove 11. The cutter head assembly 3 is detachably installed above the material discharging opening 111. One of the inner side wall of the receiving groove 11 and the cutting assembly 4 is provided with a sliding groove 61 extending along the reciprocating movement direction of the cutting assembly 4, and the other of the two is provided with a rib 411 adapted to the sliding groove 61.
[0038] In this application, by detachably installing the cutter head assembly 3 above the material discharging opening 111, after the user finishes using the food processor, the cutter head assembly 3 can be disassembled from the main body 1, so as to achieve deep cleaning of the cutter head assembly 3, making the cleaning of the cutter head assembly 3 more convenient and fast, improving the cleanliness of the cutter head assembly 3, and avoiding the situation that the cutter head assembly 3 remains with residual food materials for a long time, resulting in peculiar smell or even mildew. At the same time, the user can also process food materials by replacing different cutter head assemblies 3, meeting the user's usage requirements and improving the diversity of the functions of the food processor. And one of the inner side wall of the receiving groove 11 and the cutting assembly 4 is provided with a sliding groove 61 extending along the reciprocating movement direction of the cutting assembly 4, and the other of the two is provided with a rib 411 adapted to the sliding groove 61, realizing the sliding fit between the cutting assembly 4 and the main body 1. Compared with the existing way of sliding connection between the cutting assembly 4 and the cutter head assembly 3, on the one hand, the independent disassembly of the cutting assembly 4 and the cutter head assembly 3 is realized, effectively avoiding the situation that when the cutting assembly 4 and the cutter head assembly 3 need to be disassembled from the main body 1 together but the cutting assembly 4 can slide relative to the cutter head assembly 3, resulting in the cutting assembly 4 being easily slipped out and causing injury to the user, improving the user experience; on the other hand, compared with the existing situation where when the cutting assembly 4 and the cutter head assembly 3 are in sliding fit, the cutting assembly 4 not only needs to cooperate with the cutter head assembly 3 to achieve sliding, but also needs to press down the cutter head assembly 3, resulting in relatively large wear of the two, in this application, the cutting assembly 4 does not contact the cutter head assembly 3, and there is only a sliding fit force between the cutting assembly 4 and the receiving groove 11, greatly reducing the wear of the cutting assembly 4, avoiding the situation that after the cutter head assembly 3 and the cutting assembly 4 are used for a long time, relatively large wear occurs and a relatively large gap is generated, resulting in jamming or even inability to slide when the cutting assembly 4 slides, ensuring the smooth reciprocating movement of the cutting assembly 4, and thus ensuring the smooth progress of food material processing.
[0039] Specifically, the cutter head assembly 3 can be a wire cutting disc, a slicing disc, a dicing disc, etc., which will not be elaborated here.
[0040] It should be noted that this application does not make specific limitations on the setting positions of the sliding groove 61 and the rib 411, and it can be any one of the following embodiments:
[0041] Embodiment 1: As shown in Figure 1 , Figure 3 , Figure 4 , in this embodiment, a base 6 is further provided in the receiving groove 11. The base 6 is provided with an avoidance opening 63 axially aligned with the material discharge opening 111. The cutter head assembly 3 is disposed on the avoidance opening 63, and the sliding groove 61 is formed on the inner side wall of the base 6. It can be understood that in this embodiment, the base 6 belongs to a part of the receiving groove 11. In the present application, the sliding groove 61 is provided on the receiving groove 11. The entire sliding groove 61 may be formed in the receiving groove 11, or part of it may be formed in the receiving groove 11 and part of it may be formed on the inner side wall of the base 6; it may also be entirely formed on the base 6, which will not be elaborated here.
[0042] By further providing the base 6 in the receiving groove 11, it helps to improve the overall strength of the main machine 1, so that the main machine 1 can still maintain the stability of the overall structure when cutting relatively hard food materials, and avoid the situation that the main machine 1 is deformed or even damaged.
[0043] It should be further noted that the present application does not specifically limit the relative relationship between the base 6 and the main machine 1, and it can be any one of the following embodiments:
[0044] Embodiment 1: In this embodiment, the base 6 and the main machine 1 are integrally formed.
[0045] By integrally forming the base 6 and the main machine 1, the assembly steps of connecting the base 6 and the main machine 1 into one body are omitted, which helps to improve the assembly efficiency. At the same time, the structural components for connecting the two are omitted, which can simplify the components of the whole machine, and further reduce the occupied space of the whole machine, realizing the miniaturization of the food processor.
[0046] Embodiment 2: As shown in Figure 1 , in this embodiment, the base 6 is detachably connected to the main machine 1.
[0047] By detachably connecting the base 6 to the main machine 1, no matter whether the sliding groove 61 or the rib 411 is severely worn after long-term use, the sliding smoothness of the cutting component 4 can be ensured by replacing the cutting component 4 or the base 6, which helps to further improve the stability of food material processing, and at the same time realizes low-cost maintenance and improves the user experience.
[0048] Furthermore, as shown in Figure 1 , the food processor further includes an upper cover 5 covering the upper part of the receiving groove 11, and the base 6 is clamped between the upper cover 5 and the main machine 1.
[0049] By clamping the base 6 between the upper cover 5 and the main body 1, when the upper cover 5 is fitted with the main body 1, it can simultaneously clamp and fix the base 6, further improving the assembly efficiency, eliminating the structural components for connecting the two, simplifying the components of the whole machine, thus reducing the occupied space of the whole machine and realizing the miniaturization of the food processor.
[0050] As a preference in this embodiment, a guide groove 62 extending along the reciprocating movement direction of the cutting assembly 4 and having an open top is provided on the bottom wall of the receiving groove 11, and the cutting assembly 4 is provided with a guide rib 43 adapted to the guide groove 62.
[0051] By providing a guide groove 62 extending along the reciprocating movement direction of the cutting assembly 4 and having an open top on the bottom wall of the receiving groove, and the cutting assembly 4 is provided with a guide rib 43 adapted to the guide groove 62, the cutting assembly 4 and the main body can not only reciprocate through the cooperation of the sliding groove 61 and the convex rib 411, but also further achieve a sliding fit through the cooperation of the guide rib 43 and the guide groove 62, realizing a double guiding effect on the cutting assembly 4, which helps to further improve the stability of the sliding fit between the cutting assembly 4 and the main body, and thus ensure the stability of the cutting assembly 4 for processing food materials.
[0052] As a preference in this embodiment, as Figure 1 、 Figure 3 、 Figure 4 、 Figure 5 shown, the base 6 is provided with an avoidance opening 63 axially aligned with the blanking port 111, the cutter head assembly 3 is detachably arranged in the avoidance opening 63, and a baffle plate 7 fixed below the base 6 is provided at the avoidance opening 63 near the front side of the main body 1.
[0053] By providing a baffle plate 7 fixed below the base 6 at the avoidance opening 63 near the front side of the main body 1, the food materials cut by the cutting assembly 4 can be prevented from further moving forward under the block of the baffle plate 7, thus avoiding the situation that the food materials enter the inside of the main body 1 through the gap between the base 6 and the main body 1, resulting in residual dirt in the main body 1, generating peculiar smell or even mildew, and ensuring the cleanliness of the main body 1.
[0054] Furthermore, as Figure 5 shown, the base 6 is provided with a first stud 64, and the first stud 64 is connected to the baffle plate 7.
[0055] By providing a first stud 64 on the base 6 and connecting the first stud 64 to the baffle plate 7, the connection and fixation between the base 6 and the baffle plate 7 are realized, improving the stability of their connection and cooperation. Compared with the traditional way of fixing by clamping, the connection and fixation between the two are more reliable and stable, avoiding the situation that the baffle plate 7 is not stably connected to the base 6 or even separated from the base 6, resulting in the baffle plate 7 being unable to block the food materials.
[0056] Furthermore, as Figure 5 shown, a limiting member 8 is fastened to the end of the first stud 64, and a spring 9 is sleeved outside the first stud 64. One end of the spring 9 abuts against the baffle 7, and the other end abuts against the limiting member 8.
[0057] By sleeving a spring 9 outside the first stud 64, with one end of the spring 9 abutting against the baffle 7 and the other end abutting against the limiting member 8, the baffle 7 can achieve elastic cooperation with the base 6, enabling it to have a certain amount of movement space. When the food ingredient impacts the baffle 7, the baffle 7 can generate displacement. At the same time, after the food ingredient separates from the baffle 7, it can return to its original position by means of the elastic force of the spring 9, avoiding the situation where when the food ingredient has a large impact on the baffle 7, the moment transmitted by the baffle 7 to the first stud 64 is too large, causing deformation or even fracture of the first stud 64, and further leading to the inability to connect the baffle 7 and the base 6, thus further enhancing the stability of the connection and cooperation between the baffle 7 and the base 6.
[0058] As a preference in this embodiment, as Figure 5 shown, the base 6 is further provided with a second stud 65 connected to the main body 1, and the second stud 65 is arranged side by side and at intervals with the first stud 64.
[0059] It should be noted that in this embodiment, the fixing method of the base 6 is not limited to the above, and it can also be integrally connected to the upper cover 5 through connecting pieces or hooks, etc., which will not be elaborated here.
[0060] Embodiment 2: In this embodiment, the upper cover 5 is provided with a first groove body with an open bottom side, and the receiving groove 11 is provided with a second groove body with an open top side. The first groove body and the second groove body are butted to form a sliding groove 61.
[0061] By setting the sliding groove 61 to be formed by butting the first groove body and the second groove body, the forming of the sliding groove 61 is more convenient, facilitating the demolding of the upper cover 5 and the main body 1, helping to improve the production efficiency of the upper cover 5 and the main body 1, and at the same time reducing the production costs of both.
[0062] Furthermore, it should be noted that the present application does not specifically limit the relative relationship between the cutter head assembly 3 and the base 6 in this embodiment. It can be integrally formed and relatively independently detachable, or integrally formed, and replaced together with the base 6 when replacing different cutter head assemblies 3.
[0063] Embodiment 3: As Figure 6 、 Figure 7 shown, in this embodiment, the sliding groove 61 is formed on the inner side wall of the receiving groove 11, and the cutting assembly 4 includes a cutting tool 41 and a transmission member 42 that connects the cutting tool 41 and the motor assembly 2 to enable the cutting tool 41 to reciprocate along the extending direction of the receiving groove 11.
[0064] By forming the sliding groove 61 on the inner side wall of the receiving groove 11, the forming method of the sliding groove 61 is simplified. At the same time, the structural components of the whole machine are simplified, which can improve the compactness of the whole machine structure and provide conditions for the miniaturization of the food processor. At the same time, the cutting assembly 4 includes a cutting knife 41 and a transmission member 42 connecting the cutting knife 41 and the motor assembly 2 to enable the cutting knife 41 to reciprocate along the extending direction of the receiving groove 11. So that the cutting knife 41 can achieve lateral sliding assembly along the sliding groove 61 during assembly, and at the same time, the transmission member 42 can achieve vertical assembly connection with the motor assembly 2, ensuring that the cutting assembly 4 can be effectively assembled.
[0065] It should be noted that the structure of the transmission member is not specifically limited in this application. As a preferred embodiment of this application, as Figure 6 、 Figure 7 shown, the transmission member 42 is a disc and a transmission plate connected to the disc. The center of the bottom surface of the disc is connected to the output shaft of the motor, and a protrusion extending upward and eccentrically arranged is provided on the top surface of the disc. The protrusion is connected to the transmission plate, and the other end of the transmission plate is connected to the cutting knife 41. When the motor works, it drives the disc to rotate. Due to the eccentric arrangement of the protrusion, the disc can drive the transmission plate to reciprocate, and then drive the cutting knife 41 to reciprocate.
[0066] The technical solution protected by the present utility model is not limited to the above embodiments. It should be pointed out that the combination of the technical solution of any one embodiment with the technical solution of one or more other embodiments is within the protection scope of the present utility model. Although the present utility model has been described in detail with general descriptions and specific embodiments above, on the basis of the present utility model, some modifications or improvements can be made, which are obvious to those skilled in the art. Therefore, these modifications or improvements made without departing from the spirit of the present utility model all belong to the scope required to be protected by the present utility model.
Claims
1. A food processing machine with stable operation, comprising a main machine, a motor assembly arranged on the main machine, a knife disc assembly, and a cutting assembly arranged above the knife disc assembly and drivingly connected to the motor assembly, characterized in that: A receiving groove for receiving the cutter head assembly and the cutting assembly is provided at the top of the host. A material discharge port is provided at the bottom wall of the receiving groove. The cutter head assembly is detachably installed above the material discharge port. A sliding groove extending along the reciprocating movement direction of the cutting assembly is provided on one of the inner side walls of the receiving groove and the cutting assembly, and a rib matching the sliding groove is provided on the other one.
2. The food processor with stable operation according to claim 1, characterized in that, A base is further provided in the receiving groove. The base is provided with an avoidance port axially aligned with the material discharge port. The cutter head assembly is arranged on the avoidance port, and the sliding groove is formed on the inner side wall of the base.
3. A food processor with stable operation according to claim 2, characterized in that, The base is detachably connected to the host.
4. A food processor with stable operation according to claim 1, wherein, A guiding groove extending along the reciprocating movement direction of the cutting assembly and having an open top end is provided at the bottom wall of the receiving groove. The cutting assembly is provided with a guiding rib matching the guiding groove.
5. A food processor with stable operation according to claim 1, characterized in that, A base is further provided in the receiving groove. The food processor further includes an upper cover covering above the receiving groove. The base is clamped between the upper cover and the host.
6. A food processor with stable operation according to claim 5, characterized in that, The upper cover is provided with a first groove body with an open bottom side, and the receiving groove is provided with a second groove body with an open top side. The first groove body and the second groove body are docked to form the sliding groove.
7. A food processor with stable operation according to claim 1, characterized in that, The sliding groove is formed on the inner side wall of the receiving groove. The cutting assembly includes a cutting knife and a transmission member connecting the cutting knife and the motor assembly so that the cutting knife can reciprocate along the extending direction of the receiving groove.
8. A food processor with stable operation according to claim 1, characterized in that, A base is further provided in the receiving groove. The base is provided with an avoidance port axially aligned with the material discharge port. The cutter head assembly is detachably arranged on the avoidance port. A material blocking plate fixed below the base is provided at the avoidance port near the front side of the host.
9. A food processor with stable operation according to claim 8, characterized in that, The base is provided with a first stud, and the first stud is connected to the material blocking plate.
10. A food processor with stable operation according to claim 9, characterized in that, A limiting member is fastened to the end of the first stud. A spring is further sleeved on the outer side of the first stud. One end of the spring abuts against the material blocking plate, and the other end abuts against the limiting member; or The base is further provided with a second stud connected to the host, and the second stud is arranged side by side and spaced apart from the first stud.
Citation Information
Patent Citations
Food cutting device for cutting food into thin slices, sticks, cubes or filaments
CN103878802B