Food processor

By adopting a detachable rotor and stator assembly structure in the food processor, the problems of excessive height and weight of the mixing cup and hard-to-clean areas are solved, resulting in a lighter and easier-to-clean design.

CN223585801UActive Publication Date: 2025-11-25ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202423170590.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-25
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing food processors have large mixing cups that are both tall and heavy, and the blade assembly has hard-to-clean hard-to-reach areas.

Method used

It adopts a detachable rotor and stator assembly structure, with the rotor assembly sleeved on the part of the stator assembly that extends into the receiving assembly, reducing the height of the receiving assembly and simplifying the cleaning process through the detachable design.

Benefits of technology

The overall height and weight of the mixing cup have been reduced, simplifying the cleaning process, reducing hard-to-clean areas, and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a food processor. The food processor comprises a main machine assembly, a containing assembly and a motor assembly. The containing assembly is used for containing food to be processed, and the main machine assembly is detachably connected with the containing assembly. The motor assembly comprises a stator assembly and a rotor assembly, the stator assembly is arranged on the main machine assembly, and at least part of the stator assembly extends into the containing assembly; the rotor assembly sleeves the part, extending into the accommodating assembly, of the stator assembly and is detachably connected with the accommodating assembly; the rotor assembly comprises a grinding part, and the stator assembly is used for driving the rotor assembly to rotate and driving the grinding part to rotate so as to smash food. Through the arrangement, the overall height of the containing assembly is reduced, and the weight of the containing assembly is reduced; the rotor assembly can be independently cleaned after being detached relative to the containing assembly, and cleaning dead angles between the rotor assembly and the containing assembly are reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of small household appliances, in particular to a food processor. BACKGROUND

[0002] In the related art, a food processor, such as a blender, is usually provided with a direct drive structure to solve the problems of noise and high main body, i.e. the motor is directly assembled in the stirring cup, and the motor shaft is directly connected to the knife assembly to drive the knife assembly to cut or grind food. This arrangement can reduce transmission noise; in addition, the motor is installed on the cup seat of the stirring cup, so that the main body of the stirring cup can be made thinner and more lightweight. However, at the same time, the motor is arranged on the cup seat of the stirring cup, which increases the height of the stirring cup seat and makes the overall height of the stirring cup too high; the overall weight of the stirring cup is increased, which is not convenient for cleaning; the knife assembly is connected with the motor and cannot be disassembled, and the knife assembly has a cleaning dead angle. SUMMARY

[0003] The present application provides a food processor which reduces the overall height and weight of the stirring cup and avoids the cleaning dead angle of the knife assembly.

[0004] The present application provides a food processor, which comprises a main machine assembly, a containing assembly and a motor assembly, the containing assembly is used for containing food to be processed, and the main machine assembly is detachably connected with the containing assembly.

[0005] The motor assembly comprises a stator assembly and a rotor assembly, the stator assembly is arranged on the main machine assembly, and at least part of the stator assembly extends into the containing assembly; the rotor assembly is sleeved on the part of the stator assembly extending into the containing assembly and is detachably connected with the containing assembly; the rotor assembly comprises a grinding part, and the stator assembly is used for driving the rotor assembly to rotate to drive the grinding part to rotate to crush food.

[0006] The rotor assembly is sleeved on the part of the stator assembly extending into the containing assembly, and there is an overlapping part between the rotor assembly and the stator assembly in the height direction, so that the containing assembly does not need to contain the entire motor assembly, thereby reducing the overall height of the containing assembly. In the rotating process of the rotor assembly, the grinding part rotates with the rotor assembly, and the grinding part can crush food to be processed in the rotating process. The rotor part of the motor assembly is connected with the containing assembly, and when the food processor needs to be cleaned, only the containing assembly and the rotor assembly need to be disassembled relative to the main machine assembly and the motor assembly, thereby reducing the weight of the containing assembly after disassembly and facilitating the cleaning of the food processor. At the same time, the rotor assembly can be disassembled relative to the containing assembly and cleaned separately, which reduces the cleaning dead angle between the rotor assembly and the containing assembly, facilitates the cleaning and maintenance of the food processor, and is beneficial to the use experience of the food processor.

[0007] Optionally, the accommodating assembly comprises a first cavity and a cutter disc assembly, the cutter disc assembly comprises a boss, the first cavity is used for accommodating food to be processed, the cutter disc assembly is arranged at the bottom of the first cavity, the boss extends into the first cavity in the direction of the first cavity, and the rotor assembly is detachably sleeved on the boss.

[0008] The side of the boss away from the first cavity is enclosed to form a second cavity, and at least part of the stator assembly extends into the second cavity.

[0009] The boss is connected with the rotor assembly, the rotor assembly rotates around the boss relative to the stator assembly, the connection structure between the accommodating assembly and the rotor assembly is simplified, and the risk of deviation of the rotor assembly relative to the stator assembly is reduced. The bottom of the accommodating assembly is sealed by the above arrangement, thereby avoiding the risk of food leakage from the bottom of the accommodating assembly. The side of the boss away from the first cavity is enclosed to form a second cavity, and at least part of the stator assembly extends into the second cavity. In the height direction, the rotor assembly and the stator assembly have an overlapping part, thereby reducing the overall height of the accommodating assembly.

[0010] Optionally, the rotor assembly comprises a dynamic grinding support, a magnet and a dynamic grinding tooth sleeve, the dynamic grinding support and the dynamic grinding tooth sleeve are both hollow structures, the dynamic grinding support is sleeved outside the dynamic grinding tooth sleeve, and the magnet is arranged between the dynamic grinding support and the dynamic grinding tooth sleeve, and the magnet is used to cooperate with the stator assembly to drive the rotor assembly to rotate.

[0011] The grinding part comprises first grinding teeth arranged on the inner surface of the dynamic grinding tooth sleeve, the outer surface of the boss is provided with second grinding teeth matched with the first grinding teeth, the dynamic grinding support is detachably sleeved on the boss, and the part of the boss provided with the second grinding teeth extends into the dynamic grinding tooth sleeve.

[0012] The magnet is used to cooperate with the stator assembly, and the dynamic grinding support and the dynamic grinding tooth sleeve are connected to the magnet respectively, so that when the magnet rotates relative to the stator assembly, the dynamic grinding support and the dynamic grinding tooth sleeve rotate relative to the stator assembly. When the dynamic grinding tooth sleeve rotates relative to the stator assembly, the first grinding teeth of the grinding part and the second grinding teeth on the outer surface of the boss move relatively, thereby grinding the food between the first grinding teeth and the second grinding teeth.

[0013] Optionally, the outer side of the dynamic grinding support is provided with a flow guide opening, and the inner side of the dynamic grinding support is provided with a flow guide rib, the flow guide rib extends from the flow guide opening to the dynamic grinding tooth sleeve, and is used to guide the food on the outer side of the dynamic grinding support into the dynamic grinding tooth sleeve from the flow guide opening.

[0014] Through the above arrangement, when the dynamic grinding support rotates relative to the stator assembly, the food passes through the guide opening and enters the space between the dynamic grinding tooth sleeve and the boss along the guide fin, the relative movement between the first grinding tooth of the grinding part and the second grinding tooth of the outer surface of the boss is generated, and the food between the first grinding tooth and the second grinding tooth is ground. Through the above arrangement, the food to be processed is made to flow during the rotation of the rotor assembly, thereby facilitating the processing efficiency of the food.

[0015] Optionally, the guide opening is arranged at the bottom of the dynamic grinding support, and the guide fin spirally rises in the first spiral direction along the circumference of the support.

[0016] Through the above arrangement, the food to be processed moves upward along the guide fin through the guide opening at the bottom of the dynamic grinding support and is ground between the first grinding tooth and the second grinding tooth, promoting the flow of the food to be processed and facilitating the full grinding of the food, thereby facilitating the processing efficiency of the food.

[0017] Optionally, the outer side of the dynamic grinding support is further provided with a blade, which is a circular arc and extends outward along the circumference of the support. The blade is provided with a cutting edge, which can cut the food to be processed to a size that can be ground. Larger particles of food will not enter between the first grinding tooth and the second grinding tooth through the guide opening, thereby protecting the first grinding tooth and the second grinding tooth. When the food is of a size that can be ground, the rotor assembly rotates in the opposite direction, at which time the food enters between the first grinding tooth and the second grinding tooth through the guide opening and is ground. Through the above arrangement, the service life of the food processor is facilitated, and the processing needs of different foods can be met, thereby improving the use experience of the food processor.

[0018] Optionally, the outer side of the dynamic grinding support is further provided with a turbulence fin, which is arranged above the blade and spirally rises in the first spiral direction, and the cutting edge of the turbulence fin is arranged at the top of the turbulence fin.

[0019] The turbulence rib is provided with a cutting edge, and the turbulence rib can guide food to the position of the blade to cut the food to be processed, and cut the food of larger particles to the size that can be ground. The turbulence rib is arranged above the blade and spirally rises in the first spiral direction. When the rotor assembly rotates and cuts the food through the blade and the turbulence rib, the food of larger particles cannot enter between the first grinding tooth and the second grinding tooth through the guide opening, thereby protecting the first grinding tooth and the second grinding tooth. When the food is of a size that can be ground, the rotor assembly rotates in the opposite direction, and at this time, the food enters between the first grinding tooth and the second grinding tooth through the guide opening and is ground. Through the above arrangement, the service life of the food processor is beneficial, and the processing needs of different foods can be met, and the use experience of the food processor is beneficial.

[0020] Optionally, one of the blade assembly and the rotor assembly is provided with a positioning column in the rotation axis direction of the rotor assembly, and the other is provided with a positioning groove in the rotation axis direction of the rotor assembly, and the positioning column extends into the positioning groove.

[0021] Through the above arrangement, the connection reliability between the rotor assembly and the blade assembly is beneficial, the risk of the rotor assembly deviating from the rotation axis during rotation relative to the stator assembly is reduced, the risk of food blocking between the rotor assembly and the boss assembly is reduced, the uniform grinding and processing of food is beneficial, and the use experience of the food processor is beneficial.

[0022] Optionally, the main machine assembly includes a base and a cover arranged on the upper cover of the base, and the base and the upper cover form a third cavity; the upper cover includes an opening portion, the stator assembly is arranged in the third cavity, and at least part of the stator assembly extends out of the upper cover through the opening portion.

[0023] The stator assembly extends into the containing assembly through the opening portion, and in the height direction, the rotor assembly and the stator assembly have an overlapping portion, and the containing assembly does not need to contain the entire motor assembly, thereby reducing the overall height of the containing assembly.

[0024] Optionally, the stator assembly includes a fixed cover and a stator core, and the fixed cover is sleeved on the outer side of the stator core.

[0025] Part of the fixed cover and the stator core is located in the third cavity, and the other part extends out of the upper cover through the opening portion.

[0026] The fixed cover protects the stator core. The stator core generates a magnetic field when passing through a current, which is used to cooperate with the rotor assembly to drive the rotor assembly to rotate. Through the above arrangement, in the height direction, the rotor assembly and the stator assembly have an overlapping portion, and the containing assembly does not need to contain the entire motor assembly, thereby reducing the overall height of the containing assembly.

[0027] Optionally, the food processor further comprises a control board, which is arranged in the third cavity and electrically connected with the stator assembly.

[0028] The control board is used to be electrically connected with other electronic components on the food processor and control the electronic components to be turned on or off according to the specific needs of the user. Through the above arrangement, the installation of the control board is facilitated, the third cavity is protected by the main assembly, and the electronic components arranged in the containing assembly are reduced, thereby reducing the overall height and weight of the containing assembly.

[0029] Optionally, the food processor further comprises a first coupler and a second coupler matched with the first coupler, wherein the first coupler is arranged in the third cavity and located at one side of the stator assembly.

[0030] The second coupler is arranged at the bottom of the containing assembly corresponding to the first coupler.

[0031] Through the connection between the first coupler and the second coupler, the electronic components inside the containing assembly are powered, which is conducive to arranging heating and temperature measuring electronic components inside the containing assembly, thereby increasing the functions of the food processor and improving the use experience of the food processor.

[0032] Optionally, the containing assembly comprises a handle, and the second coupler is arranged at the bottom of the handle.

[0033] Through the above arrangement, the space at the bottom of the handle is utilized, and there is an overlapping part between the motor assembly and the second coupler in the height direction, thereby reducing the overall height of the containing assembly. BRIEF DESCRIPTION OF DRAWINGS

[0034] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and serve to explain the principles of the present disclosure together with the specification.

[0035] Figure 1 The schematic diagram of one embodiment of the food processor of the present application is shown.

[0036] Figure 2 The schematic diagram of another embodiment of the food processor of the present application is shown.

[0037] Figure 3 The cross-sectional schematic diagram of another embodiment of the food processor of the present application is shown.

[0038] Figure 4 The schematic diagram of one embodiment of the containing assembly of the food processor of the present application is shown.

[0039] Figure 5 Fig. 6 shows a schematic view of another embodiment of the food processor of the present application.

[0040] Figure 6 Fig. 7 shows a schematic view of an embodiment of the main assembly of the food processor of the present application.

[0041] Figure 7 Fig. 8 shows a schematic view of another embodiment of the main assembly of the food processor of the present application.

[0042] Figure 8 Fig. 9 shows a schematic view of an embodiment of the rotor assembly of the food processor of the present application.

[0043] Figure 9 Fig. 10 shows a schematic view of another embodiment of the rotor assembly of the food processor of the present application.

[0044] Figure 10 Fig. 11 shows a schematic view of an embodiment of the rotor assembly of the food processor of the present application disposed in the knife disc assembly.

[0045] Figure 11 Fig. 12 shows a schematic view of another embodiment of the food processor of the present application.

[0046] BRIEF DESCRIPTION OF THE DRAWINGS

[0047] 100, the containing assembly; 110, the shell; 120, the cup seat; 130, the locking seat; 140, the first cavity; 150, the knife disc assembly; 151, the boss; 152, the second grinding tooth; 153, the positioning column; 160, the knife disc sealing ring; 170, the cover; 181, the handle; 182, the handle cover; 183, the shock pad; 190, the cup seat sealing ring;

[0048] 200, the main assembly; 210, the base; 220, the upper cover; 221, the opening part; 230, the third cavity;

[0049] 300, the motor assembly; 310, the stator assembly; 311, the fixed cover; 312, the stator core; 313, the upper end cover; 314, the lower end cover; 320, the rotor assembly; 321, the dynamic grinding support; 3211, the flow guide opening; 3212, the flow guide rib; 3213, the blade; 3214, the turbulence rib; 322, the magnet; 323, the dynamic grinding tooth sleeve; 324, the first grinding tooth; 325, the positioning groove;

[0050] 400, the control board; 500, the light guide plate; 600, the first coupler; 700, the second coupler; 800, the temperature detector. DETAILED DESCRIPTION

[0051] The technical solutions in the embodiments (or modes) of the present application will be described clearly and completely in combination with the accompanying drawings. When the following description refers to the accompanying drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated.

[0052] If the present application embodiments involve directional indications or positional relationships (for example, up, down, left, right, front, back, inner, outer, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationship, movement, etc. between the components in a certain posture (as shown in the drawings); if the posture changes, the directional indication or positional relationship will also change accordingly. In addition, the terms "first", "second", etc. in the present application embodiments are only used for convenience of description, and cannot be understood as indicating or implying relative importance.

[0053] The present application provides a food processor. The food processor of the present application will be described in detail below in combination with the accompanying drawings. The features in the following embodiments and modes can be combined with each other without conflict.

[0054] The present application provides a food processor, see Figures 1-7As shown, the food processor includes a main assembly 200, a containing assembly 100 and a motor assembly 300. The containing assembly 100 is used to contain food to be processed. The main assembly 200 is detachably connected with the containing assembly 100. The motor assembly 300 includes a stator assembly 310 and a rotor assembly 320. The stator assembly 310 is arranged on the main assembly 200, and at least part of the stator assembly 310 extends into the containing assembly 100. In some embodiments, the electronic assembly can be an external rotor brushless motor. In the height direction, the rotor assembly 320 and the stator assembly 310 have an overlapping part, and the containing assembly 100 does not need to contain the entire motor assembly 300, thereby reducing the overall height of the containing assembly 100. The rotor assembly 320 is sleeved on the part of the stator assembly 310 extending into the containing assembly 100, and is detachably connected with the containing assembly 100. The rotor assembly 320 includes a grinding part. The stator assembly 310 is used to drive the rotation of the rotor assembly 320. The rotor assembly 320 drives the rotation of the grinding part. The grinding part can grind and crush the food to be processed during rotation. The rotor part of the motor assembly 300 is connected with the containing assembly 100. When it is necessary to clean the food processor, only the containing assembly 100 and the rotor assembly 320 need to be detached relative to the main assembly 200 and the motor assembly 300, thereby reducing the weight of the containing assembly 100 after detachment, and facilitating the cleaning of the food processor. At the same time, the rotor assembly 320 can be detached from the containing assembly 100 for separate cleaning, thereby reducing the cleaning dead angle between the rotor assembly 320 and the containing assembly 100, facilitating the cleaning and maintenance of the food processor, and being beneficial to the use experience of the food processor.

[0055] In optional embodiments, referring to Figures 3-5 As shown, the containing assembly 100 includes a housing 110, a cover 170, a cup seat 120, a locking seat 130, a first cavity 140 and a cutter disc assembly 150. The cover 170 is detachably connected to the housing 110, and is used to seal the first cavity 140. The cutter disc assembly 150 is locked and fixedly sealed by the locking seat 130 and the lock of the housing 110. The cutter disc assembly 150 is provided with a cutter disc sealing ring 160 on the outside. The cutter disc sealing ring 160 is used to seal the cutter disc, the housing 110 and the locking seat 130. The locking seat 130 and the cup seat 120 are provided with a cup seat 120 sealing ring. The first cavity 140 is used to contain food to be processed. Through the above arrangement, the sealing structure of the bottom of the containing assembly 100 is realized, thereby reducing the risk of food leakage. The cutter disc assembly 150 includes a boss 151. The cutter disc assembly 150 is arranged at the bottom of the first cavity 140. The boss 151 extends into the first cavity 140 in the direction of the first cavity 140. The rotor assembly 320 is detachably sleeved on the boss 151. The side of the boss 151 away from the first cavity 140 is enclosed to form a second cavity. At least part of the stator assembly 310 extends into the second cavity.

[0056] The rotor assembly 320 is connected with the boss 151, and rotates around the boss 151 relative to the stator assembly 310, which simplifies the connection structure between the containing assembly 100 and the rotor assembly 320, and reduces the risk of the rotor assembly 320 deviating relative to the stator assembly 310. The bottom of the containing assembly 100 is sealed by the above arrangement, which avoids the risk of food leaking from the bottom of the containing assembly 100. The side of the boss 151 away from the first cavity 140 is enclosed to form a second cavity, and at least part of the stator assembly 310 extends into the second cavity. In the height direction, the rotor assembly 320 and the stator assembly 310 have an overlapping part, which reduces the overall height of the containing assembly 100.

[0057] In optional embodiments, as shown in Figure 8 and Figure 9 The rotor assembly 320 includes a dynamic grinding support 321, a magnet 322, and a dynamic grinding tooth sleeve 323. The dynamic grinding support 321 and the dynamic grinding tooth sleeve 323 are both hollow structures, the dynamic grinding support 321 is sleeved outside the dynamic grinding tooth sleeve 323, and the magnet 322 is arranged between the dynamic grinding support 321 and the dynamic grinding tooth sleeve 323. The magnet 322 is used to cooperate with the stator assembly 310 to drive the rotor assembly 320 to rotate. The dynamic grinding support 321 and the dynamic grinding tooth sleeve 323 are respectively connected to the magnet 322, and when the magnet 322 rotates relative to the stator assembly 310, the dynamic grinding support 321 and the dynamic grinding tooth sleeve 323 rotate relative to the stator assembly 310. The dynamic grinding tooth sleeve 323 is used to be sleeved on the boss 151. The inner surface of the dynamic grinding tooth sleeve 323 is provided with a first grinding tooth 324, the outer surface of the boss 151 is provided with a second grinding tooth 152 matched with the first grinding tooth 324, the dynamic grinding support 321 is detachably sleeved on the boss 151, and the part of the boss 151 provided with the second grinding tooth 152 extends into the dynamic grinding tooth sleeve 323. In some embodiments, when the rotor assembly 320 is sleeved on the boss 151, the first grinding tooth 324 and the second grinding tooth 152 at least partially overlap in the height direction. In other embodiments, the food processor can only provide the first grinding tooth 324 on the side of the dynamic grinding tooth sleeve 323 facing the boss 151, or only provide the second grinding tooth 152 on the side of the boss 151 facing the dynamic grinding tooth sleeve 323. When the dynamic grinding tooth sleeve 323 rotates relative to the stator assembly 310, the first grinding tooth 324 of the grinding part and the second grinding tooth 152 on the outer surface of the boss 151 move relatively, and the food between the first grinding tooth 324 and the second grinding tooth 152 is ground.

[0058] In optional embodiments, as shown in Figure 8 and Figure 9As shown, the outer side of the dynamic grinder support 321 is provided with a flow guide opening 3211 penetrating the dynamic grinder support 321 along the thickness direction of the dynamic grinder support 321. The inner side of the dynamic grinder support 321 is provided with a flow guide rib 3212 extending from the flow guide opening 3211 to the dynamic grinder tooth sleeve 323, for guiding the food material on the outer side of the dynamic grinder support 321 into the dynamic grinder tooth sleeve 323 from the flow guide opening 3211.

[0059] Through the above arrangement, when the dynamic grinder support 321 rotates relative to the stator assembly 310, the food passes through the flow guide opening 3211 and enters the space between the dynamic grinder tooth sleeve 323 and the boss 151 along the flow guide rib 3212, and the first grinding tooth 324 of the grinding part and the second grinding tooth 152 on the outer surface of the boss 151 move relatively, grinding the food between the first grinding tooth 324 and the second grinding tooth 152. Through the above arrangement, the food to be processed is made to flow during the rotation of the rotor assembly 320, thereby facilitating the processing efficiency of the food.

[0060] In an optional embodiment, referring to Figure 8 As shown, the flow guide opening 3211 is arranged at the bottom of the dynamic grinder support 321, and the flow guide rib 3212 spirally rises in the first spiral direction along the circumferential direction of the support. Correspondingly, the first grinding tooth 324 is arranged at the top of the side of the dynamic grinder tooth sleeve 323 facing the boss 151; and the second grinding tooth 152 is arranged at the top of the side of the boss 151 facing the dynamic grinder tooth sleeve 323.

[0061] Referring to Figure 10 As shown, through the above arrangement, the food to be processed moves upward along the flow guide rib 3212 spirally from the flow guide opening 3211 at the bottom of the dynamic grinder support 321 and is ground between the first grinding tooth 324 and the second grinding tooth 152, promoting the food to be processed to flow, and facilitating the full grinding of the food, thereby facilitating the processing efficiency of the food.

[0062] In an optional embodiment, referring to Figure 8 As shown, the outer side of the dynamic grinder support 321 is further provided with a blade 3213, which is arc-shaped and extends outward along the circumferential direction of the support.

[0063] In an optional embodiment, referring to Figure 8 As shown, the outer side of the dynamic grinder support 321 is further provided with a turbulence rib 3214 arranged above the blade 3213 and spirally rising in the first spiral direction, and the edge of the turbulence rib 3214 is arranged at the top of the turbulence rib 3214. In some embodiments, the blade 3213 and the turbulence rib 3214 are integrally formed with the dynamic grinder support 321.

[0064] The outer side edge of the blade 3213 and the spoiler rib 3214 are provided with a cutting edge, and the spoiler rib 3214 can guide the food to the position of the blade 3213 to cut the food to be processed to a size that can be ground. The spoiler rib 3214 is arranged above the blade 3213 and spirally rises in the first spiral direction. When the rotor assembly 320 rotates and cuts the food through the blade 3213 and the spoiler rib 3214, the larger particles of food will not enter between the first grinding teeth 324 and the second grinding teeth 152 through the guide port 3211, thereby protecting the first grinding teeth 324 and the second grinding teeth 152. When the food is of a size that can be ground, the rotor assembly 320 rotates in the opposite direction, and at this time the food enters between the first grinding teeth 324 and the second grinding teeth 152 through the guide port 3211 and is ground. Through the above arrangement, it is beneficial to the service life of the food processor, and can meet the processing needs of different foods, and is beneficial to the use experience of the food processor.

[0065] In some embodiments, referring to 8- Figure 10 The first spiral direction is spirally rising in the counterclockwise direction. When the rotor assembly 320 rotates in the clockwise direction, the food enters through the guide port 3211, flows upward under the action of the guide rib 3212, and is ground between the first grinding teeth 324 and the second grinding teeth 152. The ground food flows out from the top of the rotor assembly and the boss assembly, thereby realizing the circulation flow process of the food between the rotor assembly 320 and the boss 151. And through the continuous rotation of the rotor assembly 320, thereby realizing the food being processed to the expected particle size. When the rotor assembly 320 rotates in the counterclockwise direction, the food flows downward along the extension direction of the spoiler rib 3214 along the top of the spoiler rib 3214. The blade 3213 is arranged at the bottom of the spoiler rib 3214 and is used to cut the food flowing below the spoiler rib 3214.

[0066] In specific implementation, when the larger particles of food are put into the containing assembly 100, the rotor assembly 320 can be first controlled to rotate in the counterclockwise direction, and the food is cut by the spoiler rib 3214 and the blade 3213 to process the food to a size that can be ground. Then the rotor assembly 320 is controlled to rotate in the clockwise direction, and at this time the food flows from the guide port 3211 along the guide rib 3212 to between the first grinding teeth 324 and the second grinding teeth 152, and is ground by the food between the first grinding teeth 324 and the second grinding teeth 152.

[0067] In some embodiments, the first spiral direction can also be the clockwise direction, which is not limited in the present application. As long as the turbulence ribs 3214 and the blades 3213 for cutting food and the first grinding teeth 324 and the second grinding teeth 152 for grinding food can process food respectively when the rotor assembly 320 rotates in the clockwise direction and the counterclockwise direction respectively.

[0068] In optional embodiments, as shown in Figure 11 One of the blade disc assembly 150 and the rotor assembly 320 is provided with a positioning column 153 in the rotation axis direction of the rotor assembly 320, and the other is provided with a positioning groove 325 in the rotation axis direction of the rotor assembly 320, and the positioning column 153 extends into the positioning groove 325.

[0069] In some embodiments, the top of the boss 151 of the blade disc assembly 150 is provided with a cylindrical positioning column 153 extending upward; and the top of the rotor assembly 320 is provided with a positioning groove 325 matched with the positioning column 153.

[0070] In other embodiments, the positioning column 153 is not limited to be cylindrical, but can also be circular ring-shaped, and the center of the positioning column 153 coincides with the rotation center of the rotor assembly 320 relative to the blade disc assembly 150.

[0071] Through the above arrangement, the connection reliability between the rotor assembly 320 and the blade disc assembly 150 is improved, the risk of the rotor assembly 320 deviating from the rotation axis during rotation relative to the stator assembly 310 is reduced, the risk of food blocking between the rotor assembly 320 and the boss 151 assembly is reduced, the uniform grinding of food is facilitated, and the use experience of the food processor is improved.

[0072] In optional embodiments, as shown in Figures 6-7 The main machine assembly 200 includes a base 210 and an upper cover 220 arranged on the base 210. The base 210 and the upper cover 220 enclose a third cavity 230. The upper cover 220 includes an opening portion 221, and the stator assembly 310 is arranged in the third cavity 230, and at least part of the stator assembly 310 extends out of the upper cover 220 through the opening portion 221. Through the above arrangement, the stator assembly 310 extends into the containing assembly 100 through the opening portion 221, and the rotor assembly 320 and the stator assembly 310 have an overlapping portion in the height direction, and the containing assembly 100 does not need to contain the entire motor assembly 300, thereby reducing the overall height of the containing assembly 100.

[0073] In some embodiments, the main assembly 200 further comprises a damping member arranged on the side of the upper cover 220 facing the containing assembly 100. When the containing assembly 100 is mounted on the main assembly 200 and the rotor assembly 320 rotates relative to the stator assembly 310, the damping member reduces the vibration generated by the containing assembly 100 relative to the main assembly 200, which helps to reduce the noise during the operation of the food processor.

[0074] In optional embodiments, referring to Figures 6-7 The stator assembly 310 comprises a fixed cover 311, an upper end cover 313, a stator core 312 and a lower end cover 314. The fixed cover 311 is arranged on the outside of the stator core 312 and protects the stator core 312. The upper end cover 313 and the lower end cover 314 are arranged on the top and bottom of the stator core 312, respectively. The stator core 312 generates a magnetic field when current passes through it, which is used to drive the rotor assembly 320 to rotate in cooperation with the rotor assembly 320. Part of the fixed cover 311 and the stator core 312 is located in the third cavity 230, and the other part extends out of the upper cover 220 through the opening 221. In the height direction, there is an overlapping part between the rotor assembly 320 and the stator assembly 310, so the containing assembly 100 does not need to contain the entire motor assembly 300, thereby reducing the overall height of the containing assembly 100.

[0075] In optional embodiments, the food processor further comprises a control board 400. The control board 400 is arranged in the third cavity 230 and is used to electrically connect with other electronic components on the food processor, such as the stator assembly 310, the display lamp assembly and the timing assembly, etc., and control the electronic components to be turned on or off according to the specific needs of the user. The food processor further comprises a light guide plate 500 arranged above the control board 400 and inside the third cavity 230. The light guide plate 500 is used for light guide of the control board 400. Through the above arrangement, the installation of the control board 400 is facilitated, the third cavity 230 is protected by the main assembly 200, and the overall height and weight of the containing assembly 100 are reduced by reducing the electronic components arranged in the containing assembly 100.

[0076] In optional embodiments, referring to Figures 4-7 The food processor further comprises a first coupler 600 and a second coupler 700 cooperating with the first coupler 600. The first coupler 600 is arranged in the third cavity 230 and located on one side of the stator assembly 310. The second coupler 700 is arranged on the bottom of the containing assembly 100 corresponding to the first coupler 600.

[0077] The electronic components inside the containing assembly 100 are powered through the connection between the first coupler 600 and the second coupler 700. The containing assembly 100 can be provided with a heater, a temperature sensor 800 and other electronic components, thereby increasing the functionality of the food processor and improving the user experience of the food processor.

[0078] In an optional embodiment, referring to Figure 5 The handle 181 is provided with a handle cover 182 on the outer side to increase the comfort of holding the handle 181. The handle 181 is connected to one side of the housing 110, and a shock-absorbing pad 183 is arranged between the structure connecting the handle 181 and the housing 110. The second coupler 700 is arranged at the bottom of the handle 181. Through the above arrangement, the space at the bottom of the handle 181 is utilized, and there is an overlapping part between the motor assembly 300 and the second coupler 700 in the height direction, thereby reducing the overall height of the containing assembly 100.

[0079] It should be noted that the technical solutions or technical features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of the present application is not limited to the precise structures described in the above embodiments and shown in the accompanying drawings; any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. A food processor, characterized in that, The application relates to a food processor, which comprises a main component (200), a containing component (100) for containing food to be processed, and a motor component (300); the main component (200) is detachably connected with the containing component (100); the motor component (300) comprises a stator component (310) and a rotor component (320); the stator component (310) is arranged in the main component (200) and at least a part of the stator component (310) extends into the containing component (100); the rotor component (320) is sleeved on the part of the stator component (310) extending into the containing component (100) and is detachably connected with the containing component (100); the rotor component (320) comprises a grinding part; the stator component (310) is used for driving the rotor component (320) to rotate and driving the grinding part to rotate to crush food. The containing component (100) comprises a first cavity (140) and a cutter disc component (150); the cutter disc component (150) comprises a boss (151); the first cavity (140) is used for containing food to be processed; the cutter disc component (150) is arranged at the bottom of the first cavity (140); the boss (151) extends into the first cavity (140) in the direction of the first cavity (140); and the rotor component (320) is detachably sleeved on the boss (151).

2. The food processor of claim 1, wherein, The side of the boss (151) away from the first cavity (140) is enclosed to form a second cavity; and at least a part of the stator component (310) extends into the second cavity. The rotor component (320) comprises a movable grinding support (321), a magnet (322) and a movable grinding tooth sleeve (323); the movable grinding support (321) and the movable grinding tooth sleeve (323) are both hollow structures; the movable grinding support (321) is sleeved on the outside of the movable grinding tooth sleeve (323); and the magnet (322) is arranged between the movable grinding support (321) and the movable grinding tooth sleeve (323); the magnet (322) is used for cooperating with the stator component (310) to drive the rotor component (320) to rotate.

3. The food processor of claim 2, wherein, The grinding part comprises first grinding teeth (324) arranged on the inner surface of the movable grinding tooth sleeve (323); the outer surface of the boss (151) is provided with second grinding teeth (152) matched with the first grinding teeth (324); the movable grinding support (321) is detachably sleeved on the boss (151); and the part of the boss (151) provided with the second grinding teeth (152) extends into the movable grinding tooth sleeve (323). The outer side of the movable grinding support (321) is provided with a flow guide opening (3211); the inner side of the movable grinding support (321) is provided with a flow guide rib (3212); the flow guide rib (3212) extends from the flow guide opening (3211) to the movable grinding tooth sleeve (323); and the flow guide rib (3212) is used for guiding food materials outside the movable grinding support (321) into the movable grinding tooth sleeve (323) from the flow guide opening (3211).

4. The food processor of claim 3, wherein, ​ 5. The food processor of claim 4, wherein, The flow guide hole (3211) is arranged at the bottom of the moving mill support (321), and the flow guide rib (3212) spirally rises in a first spiral direction along the circumference of the support.

6. The food processor of claim 5, wherein, The outer side of the moving mill support (321) is further provided with a blade (3213) which is in the shape of a circular arc and extends outward along the circumference of the support. The outer side of the moving mill support (321) is further provided with a spoiler rib (3214) which is arranged above the blade (3213) and spirally rises in the first spiral direction, and the cutting edge of the spoiler rib (3214) is arranged at the top of the spoiler rib (3214).

7. The food processor of claim 2, wherein, One of the cutter head assembly (150) and the rotor assembly (320) is provided with a positioning column (153) in the rotation axis direction of the rotor assembly (320), and the other is provided with a positioning groove (325) in the rotation axis direction of the rotor assembly (320), and the positioning column (153) extends into the positioning groove (325).

8. The food processor of claim 1, wherein, The main machine assembly (200) includes a base (210) and an upper cover (220) arranged on the base (210), and the base (210) and the upper cover (220) form a third cavity (230); the upper cover (220) includes an opening part (221), the stator assembly (310) is arranged in the third cavity (230), and at least part of the stator assembly (310) extends out of the upper cover (220) through the opening part (221).

9. The food processor of claim 8, wherein, The stator assembly (310) includes a fixed cover (311) and a stator core (312), and the fixed cover (311) is arranged outside the stator core (312). Part of the fixed cover (311) and the stator core (312) is located in the third cavity (230), and the other part extends out of the upper cover (220) through the opening part (221).

10. The food processor of claim 8, wherein, Further comprising a control board (400) arranged in the third cavity (230) and electrically connected with the stator assembly (310).

11. The food processor of claim 8, wherein, Further comprising a first coupler (600) and a second coupler (700) matched with the first coupler (600), the first coupler (600) is arranged in the third cavity (230) and located at one side of the stator assembly (310). The second coupler (700) is arranged at the bottom of the containing assembly (100) corresponding to the first coupler (600).

12. The food processor of claim 11, wherein, The containing assembly (100) includes a handle (181), and the second coupler (700) is arranged at the bottom of the handle (181).