Food processor
By using a detachable blending cup assembly and an integrated juice spout design, combined with the non-full gear transmission of the valve drive assembly, the problem of difficult cleaning of the juice spout in a food processor is solved, achieving convenient cleaning of the juice spout and blending cup body and effective juice dispensing, suitable for pouring out thick slurries.
Patent Information
- Application Number
- CN202111164203.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-30
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2041-09-30
AI Technical Summary
The juice spout of existing food processors is located on the main unit, making it difficult to clean properly with automatic cleaning, especially for thick liquids that are hard to flow out, resulting in cleaning difficulties.
A food processor has been designed in which the blending cup assembly is detachable, the juice nozzle is integrally formed with the blending cup body, the valve drive assembly is located in the main unit, the valve core is close to the blending cup body, the juice valve assembly includes non-full gear transmission, and the blending cup assembly is detachable for easy cleaning.
It enables easy cleaning of the juice spout and mixing cup, has a simple structure, low cost, good juice output, is suitable for pouring out thick slurries, and the whole blender is easier to clean and hygienic.
Smart Images

Figure CN115868833B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of small household appliances, in particular to a food processor. BACKGROUND
[0002] With the increasing improvement of people's living standards, many different types of food processors appear on the market. The functions of the food processor can mainly include, but are not limited to, making soy milk, juicing, making rice paste, simmering soup, mincing meat, grinding flour, shaving ice, making coffee and / or blending mask, etc.
[0003] The hands-free food processor on the market can be automatically cleaned, which is loved by many users. The food processor includes a main machine, a water tank, a stirring cup and a juice receiving cup. The water tank provides water to the stirring cup. After the food materials in the stirring cup are stirred, the slurry generated flows into the juice receiving cup. However, the juice outlet of some food processors is arranged on the main machine, which is not easy to clean during automatic cleaning. SUMMARY
[0004] The present application provides a food processor which can be easily cleaned.
[0005] The present application provides a food processor which can be easily cleaned.
[0006] The present application provides a food processor which can be easily cleaned.
[0007] The present application provides a food processor which can be easily cleaned.
[0008] The present application provides a food processor which can be easily cleaned.
[0009] The present application provides a food processor which can be easily cleaned.
[0010] The present application provides a food processor which can be easily cleaned.
[0011] The present application provides a food processor which can be easily cleaned.
[0012] In some embodiments of the present application, the stirring cup assembly is detachably arranged in the main machine, the juice outlet nozzle and the stirring cup body are connected, the valve driving assembly is arranged in the main machine, the juice outlet nozzle and the stirring cup body can be taken off from the main machine together, so that the juice outlet nozzle and the stirring cup body can be taken off for cleaning, which is convenient for cleaning, can better clean the juice outlet nozzle, and can be taken off for pouring juice, so that the application scenarios are more, especially for thick and not easy to flow slurry, which can be taken off for pouring. In addition, the valve driving assembly is arranged in the main machine, and the stirring cup assembly can not include electrical components, so that the stirring cup assembly is convenient for cleaning and can be cleaned in whole.
[0013] Further, the juice outlet nozzle and the stirring cup body are integrally formed. In some embodiments, the juice outlet nozzle and the stirring cup body are integrally formed, which solves the problem of water leakage due to loose sealing when being separately arranged, has simple structure, low cost, reduces assembly and processing technology, and makes the valve core closer to the stirring cup body, which is more conducive to juice outlet.
[0014] Further, the valve driving assembly includes a valve motor located in the main machine, the valve motor includes a valve motor shaft connected with the valve core, the valve motor shaft is staggered with the valve core in the length direction of the juice outlet nozzle, and the valve core is closer to the juice outlet in the length direction of the juice outlet nozzle relative to the valve motor shaft. In some embodiments, the valve core can be closer to the stirring cup body, which is conducive to juice outlet.
[0015] Further, the valve driving assembly includes a driving wheel connected with the valve motor shaft, the driving wheel is arranged in the main machine, the juice outlet valve assembly includes a driven wheel connected with the valve core, the driven wheel is arranged in the juice outlet nozzle, and the driven wheel is engaged with the driving wheel. In some embodiments, the driving wheel and the driven wheel can realize the transmission connection of the staggered valve motor shaft and the valve core, so that the valve core can be closer to the stirring cup body, which is conducive to juice outlet, and the structure is simple.
[0016] Further, the driven wheel is a non-full tooth gear, and the tooth back of the driven wheel is towards the stirring cup body. In some embodiments, the driven wheel is a non-full tooth gear, so that the valve core can be as close as possible to the stirring cup body, which is conducive to juice outlet. And / or
[0017] The valve driving assembly includes a transmission shaft, and the transmission shaft connects the valve motor shaft and the driving wheel. In some embodiments, the transmission shaft is arranged to connect the valve motor shaft and the driving wheel, so that the valve motor can be installed more internally in the main machine, the internal space is larger, and the valve motor is more convenient to install. And / or
[0018] The stirring cup assembly is detachably assembled to the main machine, and the driven wheel and the driving wheel are detachably engaged; in some embodiments, the stirring cup assembly can be removed for cleaning, and can be removed for cleaning when automatic cleaning is not clean, so that cleaning is facilitated, the stirring cup assembly can be cleaned more cleanly, the connection between the valve core and the valve motor is facilitated when the stirring cup assembly is disassembled, and the structure is simple and convenient to disassemble. And / or
[0019] The driven wheel is located below the juice outlet nozzle, and the valve driving assembly is located below the juice outlet nozzle. In some embodiments, the structure is compact and the appearance is beautiful.
[0020] Further, the extension direction of the valve motor shaft is inclined relative to the axial direction of the stirring cup assembly, and is inclined away from the juice outlet in the direction from the valve motor to the juice outlet nozzle. In some embodiments, the valve motor shaft is inclined, and the valve motor can be closer to the middle of the main machine in the transverse direction, so that the main machine can be smaller and the structure is more compact.
[0021] Further, the valve driving assembly includes a valve magnetic part connected with the valve motor shaft and a valve inductive magnetic switch fixed relative to the main machine, the valve magnetic part and the valve motor shaft move synchronously, and the valve inductive magnetic switch is used for inducting the magnetic field of the valve magnetic part. In some embodiments, the valve magnetic part and the valve inductive magnetic switch can detect the opening and closing of the valve core, the valve magnetic part is connected with the valve motor shaft and can rotate synchronously with the valve motor shaft, and the detection accuracy is high.
[0022] Further, the valve driving assembly includes a transmission shaft connected with the valve motor shaft, and the valve magnetic part is arranged on the transmission shaft. In some embodiments, the valve magnetic part is arranged on the transmission shaft, which is convenient for installation.
[0023] Further, the juice valve assembly includes a valve sealing part, the valve sealing part is sealed between the juice outlet nozzle and the valve core, and is sealed between the periphery of the juice outlet and the valve core, one end of the valve sealing part close to the juice outlet is provided with a sealing rib, the juice outlet nozzle close to the juice outlet is provided with a juice clamping groove, and the sealing rib is clamped in the juice clamping groove. In some embodiments, the valve sealing part can play a fixed role and can prevent water leakage.
[0024] Further, the main machine comprises a main body and a juice receiving support connected to the main body, the stirring cup assembly is detachably arranged on the main body, the juice receiving support is arranged on the left side or the right side of the main body, the juice receiving cup assembly is detachably arranged on the juice receiving support, and the water tank is arranged on the rear side of the main body; in some embodiments, the juice receiving support and the water tank are arranged on two adjacent sides of the main body, so that the juice receiving cup assembly and the water tank are arranged on two adjacent sides of the main body, so that the length of the food processor can be reduced, the food processor can be placed on an operation table with a smaller width in a manner that the water tank faces away from the user and the juice receiving cup assembly is located on the left hand side or the right hand side of the user, the space occupied in front of the food processor is reduced, and thus the user can conveniently operate the food processor on an operation table with a smaller size. And / or
[0025] The main machine comprises a stirring cup receiving groove and a nozzle receiving groove arranged on the side wall of the stirring cup receiving groove, the bottom of the stirring cup body is located in the stirring cup receiving groove, the upper end of the stirring cup receiving groove supports the stirring cup body, the nozzle receiving groove is upwardly open and communicates with the stirring cup receiving groove, and the juice outlet nozzle is located in the nozzle receiving groove. In some embodiments, the nozzle receiving groove can play a role of assembly positioning, so as to facilitate the user to place the stirring cup assembly on the main machine, and can protect the juice outlet nozzle. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 Fig. 1 shows a perspective view of an embodiment of the food processor of the present application;
[0027] Figure 2 Fig. 2 shows a perspective view of the food processor of Fig. 1 along the line A-A; Figure 1 Fig. 3 shows a sectional view of the food processor of Fig. 1 along the line B-B;
[0028] Figure 3 Fig. 4 shows a perspective view of the food processor of Fig. 1 along the line C-C; Figure 1 Fig. 5 shows a sectional view of the food processor of Fig. 1 along the line D-D;
[0029] Figure 4 Fig. 6 shows a perspective view of the food processor of Fig. 1 along the line E-E; Figure 1 Fig. 7 shows a perspective exploded view of the food processor of Fig. 1;
[0030] Figure 5 Fig. 8 shows a perspective view of the food processor of Fig. 1 along the line F-F; Figure 1 Fig. 9 shows a partial perspective exploded view of the water tank and the main machine of the food processor of Fig. 1;
[0031] Figure 6 Fig. 10 shows a perspective view of the food processor of Fig. 1 from the bottom surface with the base cover removed; Figure 1 Fig. 11 shows a perspective view of the base body of the shell of the main machine of the food processor of Fig. 1 from the bottom surface with the base cover removed;
[0032] Figure 7 Fig. 12 shows a perspective view of the base body of the shell of the main machine of the food processor of Fig. 1 from the bottom surface with the base cover removed; Figure 1 Fig. 13 shows a perspective view of the base body of the shell of the main machine of the food processor of Fig. 1 from the bottom surface with the base cover removed;
[0033] Figure 8Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0034] Figure 9 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 2 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0035] Figure 10 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0036] Figure 11 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0037] Figure 12 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0038] Figure 13 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0039] Figure 14 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0040] Figure 15 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0041] Figure 16 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 1 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0042] Figure 17 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 16 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0043] Figure 18 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0044] Figure 19 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0045] Figure 20 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 17 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0046] Figure 21 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0047] Figure 22 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0048] Figure 23 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 9 Fig. 1 shows a perspective view of a first housing of the housing and a water pump;
[0049] Figure 24 Fig. 1 shows a perspective view of a first housing of the housing and a water pump; Figure 23An enlarged view of a portion of the blender shown;
[0050] Figure 25 A partial exploded view of the main housing is shown;
[0051] Figure 26 Another perspective view of the head assembly is shown;
[0052] Figure 27 A perspective view of the exhaust seal ring is shown;
[0053] Figure 28 A perspective view of Figure 2 Another enlarged view of a portion of the blender shown;
[0054] Figure 29 A perspective exploded view of the exhaust cover assembly is shown;
[0055] Figure 30 A perspective exploded view of the gasket assembly is shown;
[0056] Figure 31 A perspective view of Figure 2 An enlarged view of a portion of the blender shown;
[0057] Figure 32 A cross-sectional view of the gasket assembly is shown;
[0058] Figure 33 A perspective view of Figure 32 An enlarged view of a portion of the gasket assembly shown;
[0059] Figure 34 A perspective view of a portion of the internal structure of the blender cup assembly and main housing is shown;
[0060] Figure 35 A perspective view of Figure 3 An enlarged view of a portion of the blender shown;
[0061] Figure 36 A perspective exploded view of the blender cup assembly and juice outlet valve assembly is shown;
[0062] Figure 37 A perspective view of the blender cup assembly is shown from the bottom;
[0063] Figure 38 A longitudinal cross-sectional view of the blender cup body and juice outlet spout is shown;
[0064] Figure 39 A top view of the blender cup body and juice outlet spout is shown;
[0065] Figure 40 A perspective view of the blender cup assembly is shown;
[0066] Figure 41Fig. 6 shows a perspective view of the blender cup assembly;
[0067] Figure 42 Fig. 7 shows a perspective view of the blender cup body from the bottom;
[0068] Figure 43 Fig. 8 shows a perspective view of the blender blade assembly;
[0069] Figure 44 Fig. 9 shows a perspective view of Figure 35 Fig. 10 shows a partial enlarged view of the food processor;
[0070] Figure 45 Fig. 11 shows a partial perspective view of the main body and the blender cup assembly;
[0071] Figure 46 Fig. 12 shows a partial perspective view of the main body;
[0072] Figure 47 Fig. 13 shows a perspective view of the shock pad;
[0073] Figure 48 Fig. 14 shows a perspective view of Figure 3 Fig. 15 shows another partial enlarged view of the food processor;
[0074] Figure 49 Fig. 16 shows a perspective view of Figure 1 Fig. 17 shows a perspective view of the juice cup body of the juice cup assembly of the food processor;
[0075] Figure 50 Fig. 18 shows a perspective view of the juice cup cover of the juice cup assembly;
[0076] Figure 51 Fig. 19 shows another perspective view of the juice cup cover;
[0077] Figure 52 Fig. 20 shows a perspective view of another embodiment of the food processor of the present application;
[0078] Figure 53 Fig. 21 shows a perspective view of Figure 52 Fig. 22 shows a sectional view of the food processor along line E-E;
[0079] Figure 54 Fig. 23 shows a perspective view of Figure 52 Fig. 24 shows a perspective view of the food processor;
[0080] Figure 55 Fig. 25 shows a perspective view of Figure 52 Fig. 26 shows a partial enlarged view of the food processor;
[0081] Figure 56 Fig. 27 shows a perspective view of another embodiment of the food processor of the present application;
[0082] Figure 57 Fig. 28 shows a perspective view ofFigure 56 A cross-sectional view of the food processor shown along line DD;
[0083] Figure 58 As shown Figure 56 The exploded view of the food processor shown;
[0084] Figure 59 As shown Figure 56 The front view of the food processor shown;
[0085] Figure 60 As shown Figure 56 A 3D representation of the blender cup assembly shown;
[0086] Figure 61 As shown Figure 60 A three-dimensional schematic diagram of the mixing cup assembly from another angle. Detailed Implementation
[0087] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses consistent with some aspects of this application as detailed in the appended claims.
[0088] The terminology used in this application is for the purpose of describing particular embodiments only and is not intended to limit the application. Unless otherwise defined, the technical or scientific terms used in this application should be understood in their ordinary sense by one of ordinary skill in the art to which this application pertains. The terms "first," "second," and similar words used in this application specification and claims do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Similarly, "an" or "a" and similar words do not indicate a quantity limitation, but rather indicate the presence of at least one. "A plurality" or "several" indicates at least two. The terms "comprising" or "including" and similar words mean that the element or object preceding "comprising" or "including" covers the element or object listed following "comprising" or "including" and its equivalents, and does not exclude other elements or objects. The terms "connected" or "linked" and similar words are not limited to physical or mechanical connections and can include electrical connections, whether direct or indirect. The singular forms "a," "the," and "the" used in this application specification and appended claims are also intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the term “and / or” as used herein refers to and includes any or all possible combinations of one or more associated listed items.
[0089] The food processor of some embodiments of this application includes a main unit, a water tank, a blending cup assembly, a juice valve assembly, a water supply assembly, and a juice receiving cup assembly. The water tank is located on one side of the main unit. The blending cup assembly is detachably mounted on the main unit and includes a blending cup body and a juice outlet connected to the blending cup body. The blending cup body includes a juice outlet, and the juice outlet communicates with the juice outlet and extends from the juice outlet in a direction away from the blending cup body. The juice valve assembly includes a valve core housed within the juice outlet and a valve actuation assembly connected to the valve core. The valve actuation assembly is located on the main unit and is used to drive the valve core to move. The water supply assembly is located on the main unit and connected to the water tank, used to supply water from the water tank to the blending cup assembly. The juice receiving cup assembly is located on one side of the main unit and includes a juice receiving port, used to receive the liquid flowing from the juice outlet through the juice receiving port.
[0090] In some embodiments of this application, the mixing cup assembly is detachably mounted on the main unit, with the juice outlet and mixing cup body connected. The valve drive assembly is located on the main unit, allowing the juice outlet and mixing cup body to be removed together for cleaning. This facilitates cleaning, allows for better cleaning of the juice outlet, and enables the pouring of juice, broadening its application scenarios, especially for thick, difficult-to-flow liquids. Furthermore, with the valve drive assembly on the main unit, the mixing cup assembly may not include electrical components, facilitating cleaning of the entire assembly and allowing for complete washing.
[0091] Figure 1 The image shown is a perspective view of one embodiment of the food processor 10 of this application. Figure 2 As shown Figure 1 Cross-sectional view of the food processor 10 along line AA. Figure 3 As shown Figure 1 Cross-sectional view of the food processor 10 along line BB. Figure 4 As shown Figure 1 An exploded 3D view of the food processor 10 shown. (Reference) Figures 1-4 The food processor 10 may include a hands-free food processor, an automatic cleaning blender cup assembly 13, or a hands-free soymilk maker or a hands-free blender. The food processor 10 includes a main unit 11, a water tank 12, a blender cup assembly 13, a water delivery assembly 14, and a juice receiving cup assembly 15.
[0092] The main machine 11 comprises a main body 16 and a juice receiving support 17. The juice receiving support 17 is arranged on the left side or the right side of the main body 16. The juice receiving support 17 extends outward from the left side or the right side of the main body 16. The juice receiving support 17 can be connected to the bottom end of the main body 16 and can be in communication with the interior of the main body 16. In some embodiments, the main machine 11 can comprise a water tank support 23 arranged on the back side of the main body 16. The water tank support 23 extends outward from the back side of the main body 16. The water tank support 23 can be connected to the bottom end of the main body 16 and can be in communication with the interior of the main body 16. The water tank support 23 and the juice receiving support 17 are arranged on two adjacent sides of the main body 16. In some embodiments, the main machine 11 can comprise a housing 20, a motor 21 and a circuit board 22. The housing 20 can comprise the main body 16 and the juice receiving support 17. The housing 20 can comprise the water tank support 23. The motor 21 is arranged in the main body 16. The circuit board 22 can comprise a power supply board and / or a control circuit board, and can be arranged in the main body 16 or partially arranged in the main body 16. The power supply board can provide power to the motor 21 and the like. The control circuit board can control the operation of the motor 21 and the like.
[0093] The water tank 12 is used to hold water and can provide water to the blending cup assembly 13. The water tank 12 is arranged on the back side of the main body 16. In some embodiments, the water tank 12 can be assembled above the water tank support 23.
[0094] In some embodiments, the blending cup assembly 13 is arranged on the main body 16 and comprises a juice outlet 24. The blending cup assembly 13 is assembled on the main body 16. In some embodiments, the blending cup assembly 13 is detachably arranged on the main body 16. The blending cup assembly 13 comprises a blending blade assembly 25, which can beat the food materials and the water injected from the water tank 12 to make a slurry, which flows out of the juice outlet 24. The juice outlet 24 can be directed to the left side or the right side of the main body 16. The blending blade assembly 25 is connected to the motor 21, and the motor 21 drives the blending blade assembly 25 to rotate. In some embodiments, the blending cup assembly 13 is detachably assembled on the main machine 11. The blending cup assembly 13 is detachably assembled on the main body 16. The blending cup assembly 13 can be removed for cleaning. When the automatic cleaning is not clean enough, the blending cup assembly 13 can be removed for cleaning, so that the cleaning is more convenient and cleaner, and the cleanliness of the blending cup assembly 13 is ensured. In addition, the blending cup assembly 13 can be removed for juice pouring, and the application scenarios are more. In some embodiments, a plurality of blending cup assemblies 13 can be provided, and different blending cup assemblies 13 can be replaced for different cooking. In other embodiments, the blending cup assembly 13 is fixedly assembled on the main body 16 and the main machine 11, and the blending cup assembly 13 is not detachable.
[0095] The water delivery assembly 14 is arranged in the main body 11 and is connected with the water tank 12, and is used to deliver water in the water tank 12 to the blending cup assembly 13. In some embodiments, the water delivery assembly 14 is connected with the bottom end of the water tank 12, and water is pumped from the bottom end of the water tank 12. The water delivery assembly 14 can include a water pump 26 connected with the water tank 12 and a quick heating assembly 27 connected with the water pump 26. The water pump 26 pumps water in the water tank 12 to the quick heating assembly 27, and the quick heating assembly 27 heats the water and then outputs the heated water to the blending cup assembly 13. The water delivery assembly 14 is arranged in the main body 16, and the water pump 26 and the quick heating assembly 27 are arranged in the main body 16.
[0096] The juice receiving cup assembly 15 is detachably arranged on the juice receiving support 17 and includes a juice receiving opening 28. The juice receiving cup assembly 15 is detachably arranged on one side of the main body 11. The juice receiving cup assembly 15 is used to receive the slurry flowing out of the juice outlet opening 24 through the juice receiving opening 28. The juice receiving opening 28 can be directed towards the juice outlet opening 24. The juice receiving cup assembly 15 can heat the slurry, and the heated slurry can be poured out. In some embodiments, the juice receiving cup assembly 15 is detachably assembled on the juice receiving support 17, and can be taken off the juice receiving support 17 to pour out the juice. The juice receiving cup assembly 15 includes a juice receiving cup body 29, a heating assembly 30, and a juice receiving cup coupler 31, and the juice receiving cup body 29 includes the juice receiving opening 28. The heating assembly 30 and the juice receiving cup coupler 31 are arranged at the bottom of the juice receiving cup body 29. The heating assembly 30 can heat the slurry. In some embodiments, the heating assembly 30 can include a heating disc. The heating assembly 30 is electrically connected with the juice receiving cup coupler 31. The juice receiving support 17 is provided with a main body coupler 32, and the main body coupler 32 and the juice receiving cup coupler 31 are plug-in connectable. The main body coupler 32 and the juice receiving cup coupler 31 are electrically connected, the main body coupler 32 is electrically connected with the circuit board 22, and the circuit board 22 can supply power to the heating assembly 30. The slurry is heated in the juice receiving cup assembly 15, and the blending cup assembly 13 can not heat the slurry, so that the problem of burnt bottom does not occur, the blending cup assembly 13 is more convenient to clean, is easier to be automatically cleaned, and the blending cup assembly 13 can not be electrified. In some embodiments, the blending cup assembly 13 can be taken off to be cleaned, can be cleaned in whole, and the problem of water entering electrical components during cleaning is avoided.
[0097] In some embodiments of the present application, the juice receiving support portion 17 is arranged on the left side or the right side of the main body portion 16, and the water tank 12 is arranged on the rear side of the main body portion 16. Therefore, the juice receiving cup assembly 15 is arranged on the left side or the right side of the main body portion 16. In this way, the length of the food processor 10 in the front-rear direction can be reduced, and the overall length of the water tank 12, the main body portion 16 and the stirring cup assembly 13 is small. Therefore, the food processor can be placed on a workbench with a small width in such a way that the water tank faces away from the user and the juice receiving cup assembly 15 is located on the left or right side of the user's hand. The footprint of the food processor in front can be reduced, and the user can operate the food processor conveniently on a workbench with a small size in one horizontal direction. The normal projection of the juice receiving support portion 17, the main body portion 16 and the water tank support portion 23 in the horizontal plane is L-shaped, and the juice receiving cup assembly 15, the main body portion 16 and the water tank 12 are arranged in an L shape. In two horizontal directions, the size in one horizontal direction is small, so that the food processor can be placed on a workbench with a small size in one horizontal direction at an angle convenient for the user to operate, and is especially suitable for small kitchens.
[0098] With reference to the drawings Figure 2 In some embodiments, the main machine 11 comprises a control panel assembly 34 arranged on the front side of the main body portion 16. The control panel assembly 34 can interact with the user, can be operated by the user and can display information. The user can operate the control panel assembly 34 to select a cooking function, set a time, and instruct to start, pause or end cooking, etc. The control panel assembly 34 can also display the time, the current state, etc. In some embodiments, the control panel assembly 34 can comprise a controller to control the motor 21, the heating assembly 30, the water pump 26 and the instant heating assembly 27, etc. The control panel assembly 34 is arranged opposite to the water tank 12, and can be close to the user, so that the user can operate the control panel assembly 34 conveniently. The control panel assembly 34 and the juice receiving cup assembly 15 are not arranged on the same side, but on adjacent sides, so that the steam from the juice receiving cup assembly 15 does not easily affect the control panel assembly 34. In some embodiments, the main machine 11 comprises a control mounting portion 35 protruding from the front side of the main body portion 16, and the control panel assembly 34 is assembled in the control mounting portion 35. The control mounting portion 35 can extend outwardly from the front side of the main body portion 16, can be lower than the main body portion 16, and higher than the juice receiving support portion 17. The control panel assembly 34 comprises a control interface 36 facing upward. The control interface 36 can interact with the user, can be operated by the user, and can display information. The control interface 36 facing upward can facilitate the user to operate and view. The juice receiving opening 28 of the juice receiving cup assembly 15 faces the left side or the right side of the main body portion 16, and the control mounting portion 35 protrudes transversely from the front side of the main body portion 16, so as to be staggered with the juice receiving opening 28. In this way, the steam from the juice receiving opening 28 does not easily affect the control panel assembly 34. In some embodiments, the control panel assembly 34 is lower than the juice receiving opening 28, so that the steam from the juice receiving opening 28 does not easily affect the control panel assembly 34.
[0099] Reference is made to Figure 3 In some embodiments, the blending cup assembly 13 includes a blending cup body 37 and a cup handle 38 connected to a sidewall of the blending cup body 37. The blending cup body 37 includes the juice outlet 24. The food material is blended within the blending cup body 37, and the blending blade assembly 25 is assembled within the blending cup body 37. The juice outlet 24 is provided at a bottom of the sidewall of the blending cup body 37. The cup handle 38 is for a user to hold. The blending cup assembly 13 is detachably assembled to the main body portion 16, and the user can hold the cup handle 38 to detach or assemble the blending cup assembly 13. The juice outlet 24 and the cup handle 38 are oppositely provided on the blending cup body 37. In some embodiments, the juice receiving support portion 17 is provided at a left side of the main body portion 16, and the cup handle 38 extends from the blending cup body 37 to a right side of the main body portion 16. The juice outlet 24 and the juice receiving cup assembly 15 are located at the left side of the main body portion 16, and the cup handle 38 is located at the right side, so as to facilitate the user to hold the blending cup assembly 13 with the right hand. In other embodiments, the juice receiving support portion 17 is provided at a right side of the main body portion 16, and the cup handle 38 extends from the blending cup body 37 to a left side of the main body portion 16. The juice outlet 24 and the juice receiving cup assembly 15 are located at the right side of the main body portion 16, so as to facilitate the user to hold the juice receiving cup assembly 15 with the right hand.
[0100] Figure 5 A partial exploded view of the water tank 12 and the main machine 11 is shown. Reference is made to Figure 2 and 5The housing 20 of the host 11 comprises a motor receiving portion 39 and a circuit receiving portion 40 connected with the motor receiving portion 39. The side wall of the motor receiving portion 39 extends longitudinally, the circuit receiving portion 40 extends laterally from the lower end outside of the motor receiving portion 39, and the top wall of the circuit receiving portion 40 is connected with the side wall of the motor receiving portion 39. The motor 21 is received in the motor receiving portion 39, and the circuit board 22 is received in the circuit receiving portion 40. The side wall of the motor receiving portion 39 is annular and surrounds the motor 21. The circuit board 22 is below the top wall of the circuit receiving portion 40 and is surrounded by the circuit receiving portion 40. The bottom end of the motor receiving portion 39 is communicated with the circuit receiving portion 40, and the circuit board 22 is connected with the motor 21 through wires and can supply power to the motor 21. In some embodiments, the circuit board 22 can be a power board, which can supply commercial power to the motor 21 and / or convert commercial power into weak current. The stirring cup assembly 13 is assembled above the motor receiving portion 39 and is connected with the motor 21. The water tank 12 is outside the side wall of the motor receiving portion 39 and above the top wall of the circuit receiving portion 40. The water feeding assembly 14 is connected with the water tank 12, is outside the side wall of the motor receiving portion 39, and is above the top wall of the circuit receiving portion 40. The side wall of the motor receiving portion 39 and the top wall of the circuit receiving portion 40 are integrally formed and have no gap therebetween. The motor receiving portion 39 and the circuit receiving portion 40 separate the circuit board 22 and the motor 21 from the water tank 12 and the water feeding assembly 14, so that when the water feeding assembly 14 and the water tank 12 leak, water is not easy to enter the motor receiving portion 39 and the circuit receiving portion 40, and the circuit board 22 and the motor 21 are not easy to be wetted. Therefore, the top wall of the circuit receiving portion 40 is connected with the side wall of the motor receiving portion 39, the circuit board 22 is received in the circuit receiving portion 40, the water tank 12 and the water feeding assembly 14 are both outside the side wall of the motor receiving portion 39 and above the top wall of the circuit receiving portion 40, so that the housing 20 separates the circuit board 22 from the water tank 12 and the water feeding assembly 14, realizes water and electricity separation, prevents safety problems caused by pipe explosion, and thus improves safety.
[0101] In some embodiments, the motor housing 39 and the circuit housing 40 are staggered in the horizontal direction. The circuit housing 40 and the motor housing 39 are arranged in the front-rear direction of the main body 16. The circuit housing 40 is closer to the rear side of the main body 16 relative to the motor housing 39. In some embodiments, the housing 20 includes a base 41 and a first housing 42 assembled to the base 41, the base 41 including the motor housing 39 and the circuit housing 40. In some embodiments, the base 41 includes a base body 43 and a base cover 44 covering below the base body 43. The base body 43 is open below, the base cover 44 covers the opening, and the base cover 44 and the base body 43 are fixedly assembled. The base body 43 and the base cover 44 jointly form the circuit housing 40, the circuit board 22 is housed between the base body 43 and the base cover 44, and the base body 43 and the base cover 44 cover the upper surface, the lower surface, and the side surface of the circuit board 22, so that the circuit board 22 can be well isolated from the outside world and water can be prevented from entering as much as possible, achieving good water and electricity isolation.
[0102] Figure 6 Fig. 6 shows a perspective view of the food processor 10 with the base cover 44 removed from below. Figure 7 Fig. 7 shows a perspective view of the base body 43 from below. Referring to Figure 6 and 7 , the base body 43 includes an upwardly recessed circuit housing groove 45, and the circuit board 22 is fixedly assembled in the circuit housing groove 45. Referring to Figure 5 , the base body 43 includes the motor housing 39, and the side wall of the motor housing 39 extends upward from the top wall of the circuit housing 40. The base body 43 is provided with a coupler accommodation hole 46, and the main machine coupler 32 is assembled in the coupler accommodation hole 46.
[0103] The housing 20 includes a juice receiving support portion 17, which is provided on the left side or the right side of the motor housing 39, and the circuit housing 40 is at least partially located on the rear side of the motor housing 39. The juice receiving support portion 17 and the circuit housing 40 are provided on the adjacent two sides of the motor housing 39. The water tank 12 is provided above the circuit housing 40, and the circuit housing 40 and the juice receiving support portion 17 are provided on the adjacent two sides of the motor housing 39. In this way, the juice cup assembly 15 is provided on the left side or the right side of the stirring cup assembly 13, and the water tank 12 is provided on the rear side of the stirring cup assembly 13. In this way, the front-rear length of the food processor 10 can be reduced, and the food processor 10 can be placed on a relatively narrow operating table with the water tank 12 facing away from the user and the juice cup assembly 15 located on the left or right side of the user, reducing the front footprint of the food processor 10, so that the user can also operate conveniently on a relatively small operating table. The base body 43 and the base cover 44 jointly form the juice receiving support portion 17, and the coupler accommodation hole 46 is located in the juice receiving support portion 17.
[0104] Referring to Figure 2 and5 In some embodiments, the water pump 26 is located above the top wall of the circuit accommodating portion 40 and outside the side wall of the motor accommodating portion 39, and below the top end of the side wall of the motor accommodating portion 39. The circuit accommodating portion 40 and the motor accommodating portion 39 separate the water pump 26 and the circuit board 22, so that the water pump 26 is isolated from the circuit board 22, thereby preventing safety problems caused by a burst pipe at the water pump 26 and improving safety. In some embodiments, the first shell 42 includes a first fixing portion 47 and a water pump accommodating portion 48 connected to the first fixing portion 47, the first fixing portion 47 is fixedly assembled to the base 41, and the water pump accommodating portion 48 is located outside the motor accommodating portion 39. The water pump 26 is located between the side wall of the water pump accommodating portion 48 and the side wall of the motor accommodating portion 39. In this way, the water pump 26 can be fixed outside the side wall of the motor accommodating portion 39, facilitating the fixation of the water pump 26, the structure is simple, and the water pump 26 is isolated from the circuit board 22, thereby preventing safety problems caused by a burst pipe at the water pump 26 and improving safety. The first fixing portion 47 is in the shape of a frame, is sleeved outside the motor accommodating portion 39 and the circuit accommodating portion 40, and the juice supporting portion 17 is located outside the first fixing portion 47. The first fixing portion 47 can be fixed to the base body 43. The water pump accommodating portion 48 can be open toward the side wall of the motor accommodating portion 39, and there is a space between the side wall of the water pump accommodating portion 48 and the side wall of the motor accommodating portion 39 for accommodating the water pump 26. In some embodiments, the water pump accommodating portion 48 has a top wall covering the water pump 26. The water pump accommodating portion 48 can be in the shape of a football gate.
[0105] In some embodiments, the shell 20 includes a second shell 49, the second shell 49 is fixedly assembled to the base 41, the first shell 42 is clamped between the second shell 49 and the base 41, and the water tank 12 and the stirring cup assembly 13 are assembled to the second shell 49. In this way, the first shell 42 is clamped by being locked by the second shell 49 and the base 41, and the assembly is simple. The stirring cup assembly 13 is assembled to the second shell 49. The second shell 49 includes a stirring cup accommodating groove 50 located above the motor accommodating portion 39, and the bottom of the stirring cup assembly 13 is located in the stirring cup accommodating groove 50. The second shell 49 includes the control mounting portion 35, and the control panel assembly 34 is assembled in the second shell 49. The control panel assembly 34 is arranged on the front side of the motor accommodating portion 39. The control panel assembly 34 and the circuit accommodating portion 40 are arranged on opposite sides of the motor accommodating portion 39. In this way, the control panel assembly 34 and the water tank 12 are arranged opposite to each other, the control panel assembly 34 can be close to the user, thereby facilitating the user to operate, and the steam from the juice cup assembly 15 is not easy to affect the control panel assembly 34.
[0106] The instant heating assembly 27 is assembled in the housing 20, and can be assembled in the second housing 49. The instant heating assembly 27 is located above the top wall of the water pump accommodating portion 48, which separates the water pump 26 and the instant heating assembly 27, reduces or prevents water from flowing to the water pump 26 when the water pipe at the instant heating assembly 27 leaks, and also separates the instant heating assembly 27 and the circuit board 22, effectively separates the water and electricity, and has high safety. The main machine 11 further comprises an instant heating support 51 assembled in the housing 20, and the instant heating assembly 27 is fixed to the instant heating support 51.
[0107] In some embodiments, the housing 20 comprises a water tank seat 52 fixed to the second housing 49, and the instant heating assembly 27 is arranged between the water tank seat 52 and the second housing 49, and the water tank 12 is assembled in the water tank seat 52. In some embodiments, the water tank 12 has a bottom water outlet, and the main machine 11 comprises a water tank valve seat 53 connected to the water tank 12, and the bottom of the water tank 12 is provided with a valve support 54, and the water tank valve seat 53 and the valve support 54 are inserted. The water delivery assembly 14 is connected to the water tank valve seat 53. The water pipe is not shown in the figure. In some embodiments, the bottom end of the water tank 12 is lower than the top end of the side wall of the motor accommodating portion 39, so that when the water leaks at the water tank valve seat 53, the water will not enter the motor 21 and the circuit board 22.
[0108] Figure 8 The first housing 42 and the water pump 26 are shown in a perspective view. The water pump 26 is arranged obliquely relative to the cross section of the food processor 10. The water pump 26 is arranged obliquely relative to the horizontal plane. The central axis of the water pump 26 is inclined to the horizontal plane. This is beneficial for assembling the water pump 26 in a compact space. The water pump 26 can be assembled obliquely in the first housing 42. In some embodiments, the water pump 26 comprises a pump body 55, a water inlet connector 56 arranged on the pump body 55, and a water outlet connector 57 arranged on the pump body 55. The water inlet connector 56 and the water outlet connector 57 are arranged on the same end of the pump body 55 and face downward. The water inlet connector 56 and the water outlet connector 57 face downward, which can prevent water from flowing to the conductive connecting wire, electrical components, etc. of the water pump 26 when the water pipe or connector connected to the water pump 26 leaks, thereby improving safety. The water pump 26 can be a flow pump. The pump body 55 can be electrically connected to the circuit board 22. Water enters the pump body 55 from the water inlet connector 56 and flows out from the water outlet connector 57.
[0109] In some embodiments, the water delivery assembly 14 comprises a pump control board 58 arranged on the water pump 26, which can be electrically connected to the water pump 26 to control the operation of the water pump 26, and can be electrically connected to the circuit board 22 to receive the electricity provided by the circuit board 22. The lowest point of the pump control board 58 is higher than the lowest points of the water inlet connector 56 and the water outlet connector 57, so that the position of the pump control board 58 is higher than the positions of the water inlet connector 56 and the water outlet connector 57, so that water will not flow to the pump control board 58 when the water inlet connector 56 and the water outlet connector 57 leak, thereby preventing the pump control board from being flooded when the pipe bursts.
[0110] Figure 9 Figure 1 shows a cooking machine 10 according to an embodiment of the present application. Figure 2 Figure 2 shows a partial enlarged view of the cooking machine 10. Referring to Figure 2, the cooking machine 10 comprises a main body 11, a water tank 12, a water supply assembly 14, a stirring cup assembly 13, and a heating assembly 27. Figure 2 and 9 In some embodiments, the water inlet of the water supply assembly 14 is in communication with the water tank 12, the water supply assembly 14 extends to the upper end of the stirring cup assembly 13, and the water outlet of the water supply assembly 14 is in communication with the cup opening of the stirring cup assembly 13. The water inlet of the water supply assembly 14 is connected with the water tank valve seat 53. The water supply assembly 14 extends upward from the bottom of the main body 11 to above the stirring cup assembly 13. In this way, water is supplied from above the stirring cup assembly 13, which is different from the case where water is supplied from the bottom of the stirring cup assembly 13. The bottom of the stirring cup assembly 13 of some embodiments of the present application has a simple knife seat structure, which is convenient for cleaning. The instant heating assembly 27 is arranged in the vertical direction, and water is supplied from the lower end and output from the upper end.
[0111] With reference to the drawings, the cooking machine 10 according to an embodiment of the present application will be described in detail. Figure 9 In some embodiments, the main body 11 comprises a turnover cover assembly 59 rotatably connected to the main body 16, and the turnover cover assembly 59 can cover above the cup opening of the stirring cup assembly 13. The turnover cover assembly 59 is connected to the top end of the main body 16 and can be turned, opened or closed. The turnover cover assembly 59 comprises a water inlet pipe 60, and the water outlet of the water supply assembly 14 is connected to the water inlet pipe 60. When the turnover cover assembly 59 is closed, the water outlet of the water supply assembly 14 is in communication with the cup opening of the stirring cup assembly 13 through the water inlet pipe 60. When the turnover cover assembly 59 is closed, the water inlet pipe 60 extends from one side of the stirring cup assembly 13 to the middle of the cup opening and extends to directly above the cup opening, so that water can be supplied into the stirring cup assembly 13. When the turnover cover assembly 59 is opened, the stirring cup assembly 13 can be detached from or assembled to the main body 11. The water inlet pipe 60 of the turnover cover assembly 59 can well connect the water supply assembly 14 and the cup opening of the stirring cup assembly 13, ensuring smooth water supply to the stirring cup assembly 13. The turnover cover assembly 59 can be turned, so that it can be opened and closed relative to the stirring cup assembly 13, and the state of water supply to the stirring cup assembly 13 when the turnover cover assembly 59 is closed and the state of taking out the stirring cup assembly 13 when the turnover cover assembly 59 is opened can be switched. "Closed" in the present text means the closed state, "opened" means the opened state, "in the process of closing" means moving from the opened state to the closed state, and "in the process of opening" means moving from the closed state to the opened state.
[0112] In some embodiments, the turnover cover assembly 59 covers the cup opening of the stirring cup assembly 13 when it is closed and is sealingly assembled with the cup opening of the stirring cup assembly 13. The turnover cover assembly 59 can completely cover the cup opening of the stirring cup assembly 13. The turnover cover assembly 59 can cover the cup opening of the stirring cup assembly 13, which can not only supply water but also serve as a cup cover, so that the cooking machine 10 has fewer components and a simple structure.
[0113] Figure 10 Fig. 6 shows a partial perspective view of the food processor 10 with the flip cover assembly 59 closed. The main machine 11 includes a hinge assembly 61 connecting the main body portion 16 and the flip cover assembly 59. The flip cover assembly 59 is pivotally connected to the main body portion 16 by the hinge assembly 61. The flip cover assembly 59 is pivotable relative to the main body portion 16 by the hinge assembly 61. The hinge assembly 61 includes a pivot hinge mechanism 223 connecting the main body portion 16 and the flip cover assembly 59, and a resilient member 63 connected to the pivot hinge mechanism 223. The pivot hinge mechanism 223 is movable with the flip cover assembly 59 pivoting, and the resilient member 63 is elastically deformed accordingly.
[0114] Figure 11 Fig. 7 shows a side view of the hinge assembly 61 with the flip cover assembly 59 closed. When the flip cover assembly 59 is closed, the resilient member 63 and the pivot hinge mechanism 223 form a triangle, and the pivot hinge mechanism 223 protrudes to one side of the resilient member 63. Figure 12 Fig. 8 shows a partial perspective view of the food processor 10 with the flip cover assembly 59 opened. Figure 13 Fig. 9 shows a side view of the hinge assembly 61 with the flip cover assembly 59 opened. When the flip cover assembly 59 is opened, the resilient member 63 and the pivot hinge mechanism 223 form a triangle, and the pivot hinge mechanism 223 protrudes to the other side of the resilient member 63. During the process of opening or closing the flip cover assembly 59, the pivot hinge mechanism 223 passes through a dead point position from one side of the resilient member 63 to the other side of the resilient member 63. The pivot hinge mechanism 223 is at the dead point position when the extension direction of the pivot hinge mechanism 223 is consistent with the extension direction of the resilient member 63. When the flip cover assembly 59 is closed, the triangle formed by the resilient member 63 and the pivot hinge mechanism 223 and the tension of the resilient member 63 keep the flip cover assembly 59 at the closed position, and the flip cover assembly 59 is tightly closed with the cup opening of the blending cup assembly 13. When the flip cover assembly 59 is opened, the triangle formed by the resilient member 63 and the pivot hinge mechanism 223 and the tension of the resilient member 63 keep the flip cover assembly 59 at the opened position.
[0115] The opening and closing of the flip cover assembly 59 is achieved by rotating the hinge mechanism 223 and the elastic member 63. The flip cover assembly 59 has no button for opening and closing operation. The opening and closing of the flip cover assembly 59 is not limited to one position. The opening and closing operation can be achieved in multiple positions of the flip cover assembly 59. The operation is more convenient, and the use is improved. The structure of the flip cover assembly 59 is more compact and simple. The appearance design can meet higher requirements, and the user has a better operation experience. Moreover, compared with the flip cover opened by the button structure, the flip cover assembly 59 of some embodiments of the application can avoid the problem of dirt accumulation in the opening of the button structure, avoid the risk of key jamming, and the size of the flip cover assembly 59 can be relatively small. In addition, the rotating hinge mechanism 223 and the elastic member 63 make the opening and closing of the flip cover assembly 59 more stable through the triangular relationship, and are well maintained in the open and closed states. In addition, since the flip cover assembly 59 is not independently provided, the problem of loss does not occur.
[0116] Reference Figures 10-13 In some embodiments, the rotating hinge mechanism 223 includes a rotating and sliding conversion mechanism. The rotating and sliding conversion mechanism includes a rotating end 224 and a sliding end 225. The rotating end 224 is connected to the main body part 16 and the flip cover assembly 59. The sliding end 225 is slidable relative to the main body part 16. The elastic member 63 is arranged between the rotating end 224 and the sliding end 225. The rotating end 224 of the rotating and sliding conversion mechanism is connected to the main body part 16 and the flip cover assembly 59. The elastic member 63 is connected to the rotating and sliding conversion mechanism. The rotating end 224 of the rotating and sliding conversion mechanism can rotate with the rotation of the flip cover assembly 59, and the sliding end 225 slides. The rotating and sliding conversion mechanism can convert rotation into sliding. Thus, the rotation of the flip cover assembly 59 can be converted into sliding. The elastic member 63 is arranged between the rotating end 224 and the sliding end 225. Thus, the elastic member 63 can stretch and contract with the sliding of the sliding end, thereby ensuring the stability of the opening and closing cover. The elastic member 63 can stretch and contract in a straight line direction, and the elastic deformation is relatively stable, thereby the opening and closing cover is relatively stable.
[0117] In some embodiments, the rotating and sliding conversion mechanism includes a crank slider mechanism 62. The crank slider mechanism 62 is connected to the main body part 16 and the flip cover assembly 59. The elastic member 63 is connected to the crank slider mechanism 62. The crank slider mechanism 62 can rotate and slide with the rotation of the flip cover assembly 59. The elastic member 63 moves with the movement of the crank slider mechanism 62. The hinge assembly 61 can be located in the main body part 16 and connected to the flip cover assembly 59.
[0118] When the flip cover assembly 59 is closed, the elastic member 63 and the crank slider mechanism 62 form a triangle, and the crank slider mechanism 62 protrudes to one side of the elastic member 63. When the flip cover assembly 59 is opened, the elastic member 63 and the crank slider mechanism 62 form a triangle, and the crank slider mechanism 62 protrudes to the other side of the elastic member 63. During the process of opening or closing the flip cover assembly 59, the crank slider mechanism 62 passes through a dead point position from one side of the elastic member 63 to the other side of the elastic member 63. When the extension direction of the crank slider mechanism 62 is consistent with the extension direction of the elastic member 63, the crank slider mechanism 62 is at the dead point position. When the flip cover assembly 59 is closed, the triangle formed by the elastic member 63 and the crank slider mechanism 62 and the tension of the elastic member 63 keep the flip cover assembly 59 in the closed position, and the cup opening of the stirring cup assembly 13 is tightly closed. When the flip cover assembly 59 is opened, the triangle formed by the elastic member 63 and the crank slider mechanism 62 and the tension of the elastic member 63 keep the flip cover assembly 59 in the open position.
[0119] The opening and closing of the flip cover assembly 59 are realized by the crank slider mechanism 62 and the elastic member 63. The flip cover assembly 59 does not have a button for opening and closing operation. The opening and closing of the flip cover assembly 59 is not limited to one position. The opening and closing operation can be realized in multiple positions of the flip cover assembly 59. The operation is more convenient, and the usability is improved. The structure of the flip cover assembly 59 is more compact and simple. The flip cover assembly 59 can meet higher requirements of industrial design and bring more surprise experience to the user. Compared with the flip cover opened by the button structure, the flip cover assembly 59 of some embodiments of the present application can avoid the problem of dirt accumulation in the opening of the button structure, avoid the risk of key jamming, and the size of the flip cover assembly 59 can be relatively small. In addition, the crank slider mechanism 62 and the elastic member 63 realize the opening and closing of the flip cover assembly 59 through the triangular relationship, which keeps the flip cover assembly 59 in the open and closed state well.
[0120] In some embodiments, the elastic member 63 includes a tension spring. The tension spring can provide a tension force, so that the flip cover assembly 59 can be well kept in the open and closed positions.
[0121] Figure 14 A perspective exploded view of the hinge assembly 61 is shown. Referring to Figures 10-14In some embodiments, the crank-slider mechanism 62 includes a crank 64, a connecting rod 65 rotatably connected to the crank 64, and a slider 66 connected to the connecting rod 65. The slider 66 is located at the end of the connecting rod 65 away from the crank 64. The crank 64 connects the flip-top assembly 59 and the main body 16, and the slider 66 is slidable relative to the main body 16. The end of the crank 64 away from the connecting rod 65 is a rotating end 224, and the end of the connecting rod 65 away from the crank 64 is a sliding end 225, where the slider 66 is located. The crank 64 can serve as a pivot connecting the flip-top assembly 59 and the main body 16. The crank 64 is fixedly connected to the flip-top assembly 59, combining... Figure 15 As shown, the flip-top assembly 59 includes a shaft hole 70, into which a crank 64 is inserted and fixedly assembled. (Continue to refer to...) Figures 10-14 The crank 64 is rotatable relative to the main body 16. When the flip cover assembly 59 rotates, it drives the crank 64 to rotate as well. One end of the crank 64 is connected to the flip cover assembly 59 and the main body 16, and the other end is rotatably connected to the connecting rod 65. The crank 64 can be connected to the connecting rod 65 by bolts 71. The rotation axis of the end of the crank 64 connected to the flip cover assembly 59 is a first axis 67, and the rotation axis of the end connected to the connecting rod 65 is a second axis 68. One end of the connecting rod 65 is rotatably connected to the crank 64, and the other end is connected to the slider 66. In some embodiments, the connecting rod 65 and the slider 66 are fixedly connected. When the crank 64 rotates, it drives the connecting rod 65 to rotate, thereby causing the slider 66 to slide and rotate. In other embodiments, the connecting rod 65 and the slider 66 are rotatably connected. When the connecting rod 65 rotates, the end of the connecting rod 65 connected to the slider 66 rotates relative to the slider 66, and the slider 66 slides. The rotation axis of the end where the connecting rod 65 and the slider 66 are connected is the third axis 69.
[0122] The elastic member 63 is arranged between the slider 66 and the crank 64. The two ends of the elastic member 63 are pulled respectively. One end of the elastic member 63 is connected with the slider 66 and can move with the slider 66, moving away from or approaching the other end of the elastic member 63. The one end of the elastic member 63 can be sleeved on the slider 66. In some embodiments, the slider 66 can rotate relative to the elastic member 63, being hooked with the elastic member 63 in the extension direction of the elastic member 63, cooperating with the elastic member 63 in the extension direction of the elastic member 63, and pulling the elastic member 63. The other end of the elastic member 63 is fixed and the position thereof in the extension direction of the elastic member 63 remains unchanged. The other end of the elastic member 63 can be fixed relative to the main body 16, can be connected with the main body 16, or can be connected with the flip cover assembly 59. The flip cover assembly 59 can rotate relative to the elastic member 63, pulling the elastic member 63 in the extension direction of the elastic member 63, and limiting the cooperation of the elastic member 63 in the extension direction of the elastic member 63. The one end of the elastic member 63 can move and the other end thereof is fixed, so that the elastic member 63 can be stretched and reset. The one end of the elastic member 63 can move with the movement of the crank slider mechanism 62 and the other end thereof is fixed, so that the elastic member 63 can be stretched and reset with the movement of the crank slider mechanism 62, and thus can be stretched and reset with the flipping of the flip cover assembly 59. Therefore, the flip cover assembly 59 can be flipped relative to the main body 16 through the hinge assembly 61.
[0123] When the flip cover assembly 59 is closed, the crank 64, the connecting rod 65 and the elastic member 63 form a triangle, and the joint of the crank 64 and the connecting rod 65 is located at one side of the elastic member 63. When the flip cover assembly 59 is opened, the crank 64, the connecting rod 65 and the elastic member 63 form a triangle, and the joint of the crank 64 and the connecting rod 65 is located at the other side of the elastic member 63. The elastic member 63 extends between the first shaft center 67 and the third shaft center 69, and the first shaft center 67 and the third shaft center 69 are in the extending direction of the elastic member 63. When the flip cover assembly 59 is closed, the joint of the crank 64 and the connecting rod 65 is located at one side of the extending direction of the elastic member 63, and the first shaft center is located at the other side of the extending direction of the elastic member 63 when the flip cover assembly 59 is opened. When the flip cover assembly 59 is closed, the second shaft center 68 is located at one side of the elastic member 63, and the first shaft center 67, the second shaft center 68 and the third shaft center 69 are not in a straight line, forming a virtual triangle, so that a stable tensioning force can be obtained, and the flip cover assembly 59 can be closed tightly. When the flip cover assembly 59 is opened, the second shaft center 68 is located at the other side of the elastic member 63, and the first shaft center 67, the second shaft center 68 and the third shaft center 69 are not in a straight line, forming a virtual triangle, so that a stable tensioning force can be obtained, and the flip cover assembly 59 can be stably kept at an opening angle. During the opening process and the closing process of the flip cover assembly 59, the second shaft center 68 passes through the elastic member 63 from one side of the elastic member 63 to the other side of the elastic member 63. The second shaft center 68 passes through the dead center line 72 from one side of the dead center line 72 to the other side of the dead center line 72, and the dead center line 72 is the central axis of the elastic member 63. The tensioning force of the elastic member 63 can keep the flip cover assembly 59 in the closed state and the opened state.
[0124] Thus, when the flip cover assembly 59 is closed, the crank 64, the connecting rod 65 and the elastic member 63 form a triangle, and the elastic member 63 can provide a stable tensioning force to make the flip cover assembly 59 closed tightly. When the flip cover assembly 59 is opened, the crank 64, the connecting rod 65 and the elastic member 63 form a triangle, and a stable tensioning force can be obtained, and the flip cover assembly 59 can be stably kept at an opening angle by the tensioning force of the elastic member 63, so that the flip cover assembly 59 can be prevented from being automatically rebounded and closed.
[0125] In some embodiments, the resilient member 63 extends in the up-down direction. When the flip lid assembly 59 is closed, the rotating hinge mechanism 223 protrudes toward the side of the resilient member 63 that faces away from the blender cup assembly 13, and when the flip lid assembly 59 is open, the rotating hinge mechanism 223 protrudes toward the side of the resilient member 63 that faces the blender cup assembly 13. In some embodiments, when the flip lid assembly 59 is closed, the toggle linkage mechanism 62 protrudes toward the side of the resilient member 63 that faces away from the blender cup assembly 13, and when the flip lid assembly 59 is open, the toggle linkage mechanism 62 protrudes toward the side of the resilient member 63 that faces the blender cup assembly 13. When the flip lid assembly 59 is closed, the connection between the link 65 and the toggle 64 is located on the side of the resilient member 63 that faces away from the blender cup assembly 13, and the second shaft 68 is located on the side of the resilient member 63 that faces away from the blender cup assembly 13. When the flip lid assembly 59 is open, the connection between the link 65 and the toggle 64 is located on the side of the resilient member 63 that faces the blender cup assembly 13, and the second shaft 68 is located on the side of the resilient member 63 that faces the blender cup assembly 13. During opening, the connection between the link 65 and the toggle 64 moves from the side of the resilient member 63 that faces away from the blender cup assembly 13 toward the side of the resilient member 63 that faces the blender cup assembly 13. The process of closing is the reverse of the process of opening. In other embodiments, when the flip lid assembly 59 is closed, the toggle linkage mechanism 62 protrudes toward the side of the resilient member 63 that faces the blender cup assembly 13, and when the flip lid assembly 59 is open, the toggle linkage mechanism 62 protrudes toward the side of the resilient member 63 that faces away from the blender cup assembly 13.
[0126] In some embodiments, the maximum distance Ll (as shown in FIG. 18) that the rotating hinge mechanism 223 protrudes relative to the resilient member 63 when the flip lid assembly 59 is closed is greater than the maximum distance L2 (as shown in FIG. 18) that the rotating hinge mechanism 223 protrudes relative to the resilient member 63 when the flip lid assembly 59 is open. Figure 11 In some embodiments, the maximum distance Ll (as shown in FIG. 18) that the toggle linkage mechanism 62 protrudes relative to the resilient member 63 when the flip lid assembly 59 is closed is greater than the maximum distance L2 (as shown in FIG. 18) that the toggle linkage mechanism 62 protrudes relative to the resilient member 63 when the flip lid assembly 59 is open. Figure 13 In some embodiments, the maximum distance Ll (as shown in FIG. 18) that the rotating hinge mechanism 223 protrudes relative to the resilient member 63 when the flip lid assembly 59 is closed is greater than the maximum distance L2 (as shown in FIG. 18) that the rotating hinge mechanism 223 protrudes relative to the resilient member 63 when the flip lid assembly 59 is open. Figure 11 In some embodiments, the maximum distance Ll (as shown in FIG. 18) that the toggle linkage mechanism 62 protrudes relative to the resilient member 63 when the flip lid assembly 59 is closed is greater than the maximum distance L2 (as shown in FIG. 18) that the toggle linkage mechanism 62 protrudes relative to the resilient member 63 when the flip lid assembly 59 is open. Figure 13When the flip cover assembly 59 is closed, the distance between the second axis 68 and the central axis of the elastic member 63 is greater than the distance between the second axis 68 and the central axis of the elastic member 63 when the flip cover assembly 59 is open. When the flip cover assembly 59 is closed, the crank slider mechanism 62 protrudes further, and the crank slider mechanism 62 protrudes to the side of the elastic member 63 that faces away from the blending cup assembly 13 when the flip cover assembly 59 is closed. Thus, the space in the main body portion 16 that faces away from the flip cover assembly 59 is utilized, and the structure of the main body portion 16 is compact, which can be designed to be small in size, facilitating the rational use of space and miniaturization. When the flip cover assembly 59 is open, the crank slider mechanism 62 protrudes closer to the side of the elastic member 63 that faces the blending cup assembly 13, and the elastic member 63 can be arranged closer to the blending cup assembly 13. The size of the main body portion 16 in the transverse direction toward the blending cup assembly 13 can be smaller, and thus the front-to-back size of the main body portion 16 can be smaller, and the front-to-back size of the food processor 10 as a whole can be smaller, facilitating miniaturization and facilitating placement on a small-size operation table.
[0127] In some embodiments, the hinge assembly 61 includes a support frame 73 that supports the crank slider mechanism 62. The crank slider mechanism 62 and the elastic member 63 can be assembled on opposite sides of the support frame 73. The crank slider mechanism 62 can be located on the side of the support frame 73 that is closer to the flip cover assembly 59. The support frame 73 is fixedly connected to the main body portion 16 and includes a sliding groove 74. In some embodiments, the crank slider mechanism 62 and the elastic member 63 can be assembled after the support frame 73, and the hinge assembly 61 can be assembled as a whole to the main body portion 16. In other embodiments, the support frame 73 can be integrally formed with the main body portion 16, and the crank slider mechanism 62 and the elastic member 63 are respectively assembled to the support frame 73. One end of the crank 64 is provided with a crank shaft 75, which is fixedly connected to the flip cover assembly 59 and rotatably connected to the main body portion 16. The other end of the crank 64 is rotatably connected to the connecting rod 65. The crank shaft 75 extends in the transverse direction of the food processor 10 and serves as the rotation shaft of the flip cover assembly 59. The crank shaft 75 is rotatably connected to the support frame 73 and passes through the support frame 73, so that it can rotate relative to the support frame 73 and thus be rotatable relative to the main body portion 16 through the support frame 73. In some embodiments, the crank shaft 75 passes through the support frame 73 and is connected to the elastic member 63. One end of the elastic member 63 is connected to the sliding block 66, which is slidably located in the sliding groove 74. When the crank slider mechanism 62 moves, the sliding block 66 slides along the sliding groove 74. In some embodiments, the sliding block 66 and the connecting rod 65 are fixedly connected, and the sliding block 66 can slide and rotate simultaneously in the sliding groove 74. The sliding block 66 slides along the sliding groove 74, so that it can slide along a fixed path, ensuring the stable opening and closing of the flip cover assembly 59.
[0128] In some embodiments, one end of the elastic member 63 is connected to the slider 66, and the other end of the elastic member 63 is connected to the main body 16, the flip cover assembly 59, or other components of the hinge assembly 61. In some embodiments, the other end of the elastic member 63 is connected to the crank shaft 75, the main body 16, or the support frame 73. The elastic member 63 includes a first elastic member end 76 connected to the slider 66 and an opposite second elastic member end 77. The second elastic member end 77 is connected to the main body 16, the flip cover assembly 59, or other components of the hinge assembly 61. One end of the elastic member 63 is fixed to ensure stability of opening and closing. In some embodiments, the second elastic member end 77 of the elastic member 63 is connected to the crank shaft 75, the crank shaft 75 pulls the elastic member 63 in the extension direction of the elastic member 63, and the second elastic member end 77 of the elastic member 63 can be hooked on the crank shaft 75. When the crank shaft 75 rotates, the crank shaft 75 can rotate relative to the elastic member 63, and the second elastic member end 77 of the elastic member 63 connected to the crank shaft 75 remains stationary. In other embodiments, the second elastic member end 77 of the elastic member 63 is connected to the main body 16, and the second elastic member end 77 of the elastic member 63 can be fixedly connected to the main body 16. In yet other embodiments, the second elastic member end 77 of the elastic member 63 can be connected to the support frame 73, and can be fixedly connected to the support frame 73. In other embodiments, the second elastic member end 77 of the elastic member 63 can be connected to the flip cover assembly 59, and when the flip cover assembly 59 rotates, the flip cover assembly 59 can rotate relative to the elastic member 63, and the flip cover assembly 59 pulls the elastic member 63 in the extension direction of the elastic member 63. In other embodiments, the second elastic member end 77 of the elastic member 63 can be connected to other components, so that the position of the second elastic member end 77 remains unchanged.
[0129] In some embodiments, in the orthographic projection in the plane perpendicular to the crank shaft 75, the axis of the crank shaft 75, the central axis of the elastic member 63, and the central axis of the sliding groove 74 are on a straight line. In this way, the stability of opening and closing can be improved. As shown in FIGS. 7 and 8, the axis of the crank shaft 75 is the first axis 67, and in the orthographic projection in the plane perpendicular to the crank shaft 75, the axis of the crank shaft 75 is located on the central axis of the elastic member 63, and the central axis of the sliding groove 74 coincides with the central axis of the elastic member 63. In this way, the structure is stable when closing and opening, and the stable closing and opening of the flip cover assembly 59 is ensured. Figure 11 13 In some embodiments, in the orthographic projection in the plane perpendicular to the crank shaft 75, the axis of the crank shaft 75, the central axis of the elastic member 63, and the central axis of the sliding groove 74 are on a straight line. In this way, the stability of opening and closing can be improved. As shown in FIGS. 7 and 8, the axis of the crank shaft 75 is the first axis 67, and in the orthographic projection in the plane perpendicular to the crank shaft 75, the axis of the crank shaft 75 is located on the central axis of the elastic member 63, and the central axis of the sliding groove 74 coincides with the central axis of the elastic member 63. In this way, the structure is stable when closing and opening, and the stable closing and opening of the flip cover assembly 59 is ensured.
[0130] In some embodiments, when the flip cover assembly 59 is closed and open, the included angle between the elastic element 63 and the connecting rod 65 is less than 90 degrees. When the flip cover assembly 59 is closed and open, in the orthographic projection in the plane perpendicular to the crank shaft 75, the included angle between the central axis of the elastic element 63 and the line connecting the two ends of the connecting rod 65 is less than 90 degrees, and the included angle between the line connecting the first axis 67 and the third axis 69 and the line connecting the second axis 68 and the third axis 69 is less than 90 degrees. Figure 11 The included angle α is less than 90 degrees. Figure 13 The included angle b is less than 90 degrees. The included angle between the elastic element 63 and the connecting rod 65 is less than 90 degrees, making it easy to rotate the flip cover assembly 59.
[0131] Continue to refer to Figure 11 , 13 In some embodiments, the main unit 11 further includes an opening / closing magnetic element 81 and an opening / closing sensing magnetic switch 82. The opening / closing magnetic element 81 is disposed on the hinge assembly 61 and can move relative to the main body 16 when the flip cover assembly 59 rotates. The opening / closing sensing magnetic switch 82 is fixed relative to the main body 16. When the flip cover assembly 59 rotates, the opening / closing magnetic element 81 moves, while the opening / closing sensing magnetic switch 82 remains stationary. When the flip cover assembly 59 is closed, the opening / closing magnetic element 81 is within the sensing range of the opening / closing sensing magnetic switch 82, and the opening / closing sensing magnetic switch 82 is closed. When the flip cover assembly 59 is opened, the opening / closing magnetic element 81 is outside the sensing range of the opening / closing sensing magnetic switch 82, and the opening / closing sensing magnetic switch 82 is open. When the flip cover assembly 59 is closed, the opening / closing magnetic element 81 is close to the opening / closing sensing magnetic switch 82; when the flip cover assembly 59 is opened, the opening / closing magnetic element 81 is far away from the opening / closing sensing magnetic switch 82. The controller (not shown) of the food processor 10 can detect the on / off state of the opening / closing magnetic switch 82 and determine the opening / closing state of the flip-top assembly 59 based on the on / off state of the magnetic switch 82, thereby performing different controls on the food processor 10. For example, when the flip-top assembly 59 is closed, the food processor 10 can be controlled to start food processing; when the flip-top assembly 59 is open, a protection mode can be activated, such as controlling the motor 21 to stop rotating and preventing the mixing blade assembly 25 from rotating, thereby improving safety.
[0132] The opening and closing magnetic component 81 causes the opening and closing sensing magnetic switch 82 to close when the flip cover assembly 59 is closed, and the opening and closing sensing magnetic switch 82 to open when the flip cover assembly 59 is opened. This allows the food processor 10 to operate according to the opening and closing of the opening and closing sensing magnetic switch 82. For example, when the opening and closing sensing magnetic switch 82 is open, a protection mode is activated to improve safety. In addition, the opening and closing magnetic component 81 is located in the hinge assembly 61, which has a compact structure and stable performance.
[0133] In some embodiments, the hinge assembly 61 comprises a hinge transmission mechanism 83 connecting the main body 16 and the flip cover assembly 59, and a support frame 73 supporting the hinge transmission mechanism 83. The flip cover assembly 59 is rotatable relative to the main body 16 through the hinge transmission mechanism 83, and the support frame 73 is fixed to the main body 16. The opening and closing magnetic piece 81 is arranged on the hinge transmission mechanism 83. The hinge transmission mechanism 83 moves when the flip cover assembly 59 flips, and the opening and closing magnetic piece 81 moves together with the hinge transmission mechanism 83. The support frame 73 can assemble the hinge transmission mechanism 83 to the main body 16, facilitating installation. The opening and closing magnetic piece 81 moves together with the hinge transmission mechanism 83, accurately reflecting the movement of the flip cover assembly 59, so that the detection of the opening and closing of the flip cover assembly 59 is accurate. In some embodiments, the opening and closing inductive magnetic switch 82 is arranged on the support frame 73. The support frame 73 is fixed to the main body 16, and the opening and closing inductive magnetic switch 82 is fixed to the main body 16 through the support frame 73, so that the opening and closing inductive magnetic switch 82 is fixed relative to the main body 16. The opening and closing magnetic piece 81 is arranged on the hinge transmission mechanism 83, and the opening and closing inductive magnetic switch 82 is arranged on the support frame 73. Therefore, the opening and closing magnetic piece 81 and the opening and closing inductive magnetic switch 82 are both arranged on the support frame 73, so that the signal stability is good, the structure is compact, and the assembly process is simple. The support frame 73 can be assembled to the main body 16, and the opening and closing magnetic piece 81, the opening and closing inductive magnetic switch 82, and the hinge transmission mechanism 83 are installed on the support frame 73 and then assembled together to the main body 16, facilitating installation.
[0134] In some embodiments, the hinge transmission mechanism 83 comprises a rotating hinge mechanism 223 and a resilient piece 63. In some embodiments, the hinge transmission mechanism 83 comprises a crank slider mechanism 62 and a resilient piece 63, and the opening and closing magnetic piece 81 is arranged on the crank slider mechanism 62. The opening and closing magnetic piece 81 moves with the movement of the crank slider mechanism 62, accurately reflecting the opening and closing state of the flip cover assembly 59, so that the detection is accurate. In some embodiments, the opening and closing magnetic piece 81 is arranged on the slider 66. The opening and closing magnetic piece 81 is arranged on the slider 66, and the slider 66 has a large movement displacement, so that the opening and closing magnetic piece 81 has a large movement displacement relative to the opening and closing inductive magnetic switch 82. The opening and closing magnetic piece 81 moves a large distance between the inductive area and the non-inductive area of the opening and closing inductive magnetic switch 82, can move closer to the opening and closing inductive magnetic switch 82, ensures that the opening and closing inductive magnetic switch 82 is closed, and can move farther away from the opening and closing inductive magnetic switch 82, ensures that the opening and closing inductive magnetic switch 82 is disconnected, so that it can more accurately switch between triggering the opening and closing inductive magnetic switch 82 to close and disconnect, more accurately distinguish the opening and closing state of the flip cover assembly 59, reduce the false triggering condition, and improve the accuracy of the opening and closing judgment of the flip cover assembly 59.
[0135] In some embodiments, the sliding groove 74 extends in the up-down direction, and the sliding block 66 is slidably located in the sliding groove 74. The opening and closing inductive magnetic switch 82 is located above or below the sliding groove 74. When the flip cover assembly 59 is closed, the sliding block 66 is located at one end of the sliding groove 74 in the up-down direction close to the opening and closing inductive magnetic switch 82, and when the flip cover assembly 59 is opened, the sliding block 66 is located at the other end of the sliding groove 74 in the up-down direction. The sliding block 66 slides up and down, the elastic member 63 extends in the up-down direction and deforms in the up-down direction. In some embodiments, the opening and closing inductive magnetic switch 82 is located above the sliding groove 74, when the flip cover assembly 59 is closed, the sliding block 66 is located at the upper end of the sliding groove 74, the sliding groove 74 abuts against the sliding block 66, the opening and closing magnetic member 81 provided on the sliding block 66 is close to the opening and closing inductive magnetic switch 82, and the opening and closing inductive magnetic switch 82 is closed. When the flip cover assembly 59 is opened, the sliding block 66 is located at the lower end of the sliding groove 74, the opening and closing magnetic member 81 provided on the sliding block 66 is away from the opening and closing inductive magnetic switch 82, and the opening and closing inductive magnetic switch 82 is opened. In other embodiments, the opening and closing inductive magnetic switch 82 is located below the sliding groove 74, when the flip cover assembly 59 is closed, the sliding block 66 is located at the lower end of the sliding groove 74, the opening and closing magnetic member 81 is close to the opening and closing inductive magnetic switch 82, and the opening and closing inductive magnetic switch 82 is closed. When the flip cover assembly 59 is opened, the sliding block 66 is located at the upper end of the sliding groove 74, the opening and closing magnetic member 81 is away from the opening and closing inductive magnetic switch 82, and the opening and closing inductive magnetic switch 82 is opened. Such structure is simple and compact, and can more accurately trigger the opening and closing inductive magnetic switch 82, reduce the false triggering condition, and improve the accuracy of the opening and closing judgment of the flip cover assembly 59.
[0136] In some embodiments, the sliding block 66 is fixedly connected to the end of the connecting rod 65 away from the crank 64, and the sliding block 66 can slide and rotate when the flip cover assembly 59 is opened and closed. The axis of the opening and closing magnetic member 81 intersects with the rotation plane of the sliding block 66, and the opening and closing magnetic member 81 is a radially magnetized magnetic member. The opening and closing magnetic member 81 slides and rotates synchronously with the sliding and rotating of the sliding block 66. The radial direction of the opening and closing magnetic member 81 is in the rotation plane of the sliding block 66, and the opening and closing magnetic member 81 extends from one side to the other side of the opening and closing inductive magnetic switch 82. The opening and closing inductive magnetic switch 82 is radially magnetized, and the peripheral wall has magnetic poles in the axial direction. The radial magnetization of the opening and closing inductive magnetic switch 82 can solve the problem of switch opening and closing error caused by angle change when sliding and rotating, and the opening and closing magnetic member 81 can effectively trigger the opening and closing inductive magnetic switch 82 to close when close to the opening and closing inductive magnetic switch 82, preventing the situation of not being triggered, thereby improving the accuracy of the opening and closing judgment of the flip cover assembly 59.
[0137] In some embodiments, the opening and closing inductive magnetic switch 82 can be fixed to the support frame 73 by screws, buckles or glue, etc. In some embodiments, the sliding block 66 can be cylindrical and can rotate in the sliding groove 74. In some embodiments, the opening and closing magnetic member 81 can be circular, square or irregular.
[0138] Figure 16 Fig. 4 shows a partial internal schematic view of the food processor 10 from the rear side of the main body 16. Figure 17 Fig. 5 shows a partial internal schematic view of the food processor 10 from the front side of the main body 16. Figure 16 Fig. 6 shows a partial cross-sectional view of the food processor 10 along line C-C. Figure 18 Fig. 7 shows an exploded perspective view of the flip cover assembly 59. Referring to Fig. 7, Figures 15-18 the flip cover assembly 59 includes a flip cover 84 rotatably connected to the main body 16 and a water inlet pipe 60 fixed to the flip cover 84. The flip cover 84 can cover the cup opening of the blending cup assembly 13, and the water inlet pipe 60 extends to the cup opening of the blending cup assembly 13. The water delivery assembly 14 includes a water delivery pipe 85 connected to the water tank 12 and a shaft pipe 86 connected to the water delivery pipe 85. The shaft pipe 86 is fixedly connected to the main body 16, the water inlet pipe 60 is rotatably connected to the shaft pipe 86, and the flip cover 84 can rotate relative to the main body 16 around the shaft pipe 86. In some embodiments, the flip cover 84 can cover and seal the cup opening of the blending cup assembly 13. The water delivery pipe 85 is connected to the water tank 12, a water pump 26 (as shown in Fig. 8), an instant heating assembly 27, and the shaft pipe 86. The shaft pipe 86 can deliver water to the water inlet pipe 60, and then the water inlet pipe 60 can inject water into the blending cup assembly 13. The shaft pipe 86 is fixedly connected to the main body 16, and the water inlet pipe 60 is rotatably connected to the shaft pipe 86, so that the flip cover 84 rotates relative to the shaft pipe 86 and rotates around the shaft pipe 86. Thus, the shaft pipe 86 can serve as the rotating shaft of the flip cover 84, and the shaft pipe 86 can both deliver water and serve as the rotating shaft. Thus, the water pipe will not be bent during rotation, and neither the shaft pipe 86 nor the water delivery pipe 85 will be bent during rotation, thereby solving the problem of pipe bending caused by the rotation of the flip cover 84, increasing the service life, preventing pipe bending from causing water leakage, and improving safety. In some embodiments, the shaft pipe 86 is inserted into the water inlet pipe 60. In other embodiments, the water inlet pipe 60 is inserted into the shaft pipe 86. Figure 5
[0139] In some embodiments, the rotating shaft pipe 86 extends into the flip cover 84 and is rotatably connected to the flip cover 84. The rotating shaft pipe 86 and the water inlet pipe 60 are mated within the flip cover 84. The rotating shaft pipe 86 extends from the main body 16 and into the flip cover 84. The rotating shaft pipe 86 does not extend beyond the flip cover 84. The extension of the rotating shaft pipe 86 into the flip cover 84 provides a better connection between the flip cover 84 and the main body 16. The mating of the rotating shaft pipe 86 and the water inlet pipe 60 within the flip cover 84 protects the mating area. Furthermore, when the flip cover 84 rotates, both the flip cover 84 and the water inlet pipe 60 move on one side relative to the rotating shaft pipe 86, resulting in friction between the flip cover 84 and the rotating shaft pipe 86, but no friction between the flip cover 84 and the main body 16, thus allowing for smoother rotation. In other embodiments, the water inlet pipe 60 may extend into the main body 16 and be mated with the rotating shaft pipe 86 within the main body 16. The rotating shaft pipe 86 does not extend beyond the main body 16. One side of the water inlet pipe 60 rotates and rubs against the rotating shaft pipe 86, and the other side rotates and rubs against the main body 16.
[0140] Figure 19 The image shown is a three-dimensional schematic diagram of the rotating shaft pipe 86. (Reference) Figure 16 , 17 In some embodiments, the rotating shaft conduit 86 includes a first sub-pipe 88 extending along the rotation axis 87 of the flip cover 84, and a second sub-pipe 89 connected to the first sub-pipe 88. The extension direction of the second sub-pipe 89 intersects the rotation axis 87 of the flip cover 84. The water inlet pipe 60 rotatably connects to the first sub-pipe 88 on the rotation axis 87 of the flip cover 84, and the second sub-pipe 89 connects to the water supply pipe 85. The first sub-pipe 88 and the second sub-pipe 89 are connected. Since the extension directions of the first sub-pipe 88 and the second sub-pipe 89 intersect, the rotating shaft conduit 86 is a bend, which allows for easier connection between the rotating shaft conduit 86 and the water inlet pipe 60 and the water supply pipe 85, resulting in a compact structure and simple assembly. The first sub-pipe 88 acts as a rotating shaft, and the second sub-pipe 89 changes its pipe path and connects to the water supply pipe 85. The second sub-pipe 89 can be perpendicular to the first sub-pipe 88, extending downwards and connecting to the lower instant heating component 27 via the water supply pipe 85. This eliminates the need for bending the water supply pipe 85. The second sub-pipe 89 is fixedly assembled to the main body 16.
[0141] Figure 20 for Figure 17 A magnified view of a portion 10a of the food processor 10 shown. (Reference) Figure 19 and 20In some embodiments, a sealing ring 90 is arranged between the rotating shaft pipe 86 and the water inlet pipe 60. The sealing ring 90 can prevent water leakage. The sealing ring 90 is arranged at the joint between the rotating shaft pipe 86 and the water inlet pipe 60. In some embodiments, the outer side wall of the rotating shaft pipe 86 is recessed to form a sealing groove 91, and the sealing ring 90 is clamped in the sealing groove 91 and sealingly abuts the inner side wall of the water inlet pipe 60. The sealing ring 90 is clamped in the sealing groove 91, which is more stable and less likely to be displaced, and has a better sealing effect. The sealing ring 90 is annular, and the sealing groove 91 is annular. In some embodiments, the sealing groove 91 is recessed in the first sub-pipe 88.
[0142] With reference to Figure 18 and 20 In some embodiments, the water inlet pipe 60 comprises a rotating joint 92 and a water outlet pipe 93 connected to the rotating joint 92. The rotating joint 92 comprises a first rotating pipe 94 and a second rotating pipe 95 connected to the first rotating pipe 94. The first rotating pipe 94 extends along the rotation axis 87 of the turnover cover 84 and is rotationally connected to the rotating shaft pipe 86. The second rotating pipe 95 extends transversely to the rotation axis 87 of the turnover cover 84 and is connected to the water outlet pipe 93, which extends towards the cup opening of the stirring cup assembly 13 when the turnover cover 84 is closed. The second rotating pipe 95 can extend transversely to the rotation axis 87 of the turnover cover 84 and horizontally in the cross section of the food processor 10, and can be perpendicular to the first rotating pipe 94. The second rotating pipe 95 can be perpendicular to the first rotating pipe 94. The rotating joint 92 is bent and extends, which can be well connected to the rotating shaft pipe 86 and connected to the water outlet pipe 93 extending above the stirring cup assembly 13, and can well guide the water coming from the rotating shaft pipe 86 into the stirring cup assembly 13. The structure is simple and compact, and the assembly is simple. The rotating joint 92 and the water outlet pipe 93 can be independent components and can be assembled by insertion.
[0143] With reference to Figure 16 、 18and 20, in some embodiments, the flip cover assembly 59 comprises a hinge portion 78 rotatably connected to the main body portion 16, the hinge portion 78 comprises opposite first and second hinge sides 79 and 80, the first and second hinge sides 79 and 80 both intersect with the rotation axis 87 of the hinge portion 78. The hinge assembly 61 is connected to the first hinge side 79, one end of the water inlet pipe 60 extends to the second hinge side 80 and interfaces with the water delivery assembly 14. The flip cover 84 comprises the hinge portion 78, the first and second hinge sides 79 and 80 are opposite sides of the hinge portion 78 in the direction of the rotation axis 87. The crank slider mechanism 62 of the hinge assembly 61 is connected to the first hinge side 79, the crank 64 of the crank slider mechanism 62 is connected to the first hinge side 79. The adapter 92 of the water inlet pipe 60 extends to the second hinge side 80, the first adapter pipe 94 extends from the middle of the hinge portion 78 to the second hinge side 80. The rotation shaft pipe 86 is located at and connected to the second hinge side 80. In some embodiments, the hinge assembly 61 and the water inlet pipe 60 can be interchanged. The hinge assembly 61 and the water inlet pipe 60 are separately located at the two sides of the hinge portion 78 of the flip cover assembly 59, the hinge assembly 61 can be connected to the flip cover assembly 59 and the main body portion 16 at one side as a rotation shaft, the water inlet pipe 60 can be connected to the flip cover assembly 59 and the main body portion 16 at the other side as a rotation shaft, thus the structure is compact and simple.
[0144] Figure 21 Fig. 6 shows a partial exploded view of the flip cover assembly 59. Figure 22 Fig. 7 shows a bottom view of the flip cover assembly 59. Figure 23 Fig. 8 shows a partial view of the flip cover assembly 59. Figure 9 Fig. 9 shows an enlarged view of the local area 10b of the food processor 10. Reference is made to Fig. 1. Figure 18 21 -23, the flip cover assembly 59 comprises a flip cover body 96 rotatably connected to the main body portion 16, a cover assembly 97 detachably assembled to the flip cover body 96 and a water inlet pipe 60 provided on the flip cover body 96. The flip cover 84 comprises the flip cover body 96 and the cover assembly 97. In some embodiments, the flip cover body 96 comprises a flip upper cover 98 and a flip lower cover 99 fixedly assembled to the flip upper cover 98, the water inlet pipe 60 is assembled between the flip upper cover 98 and the flip lower cover 99. The cover assembly 97 is detachably assembled to the bottom surface of the flip lower cover 99 facing away from the flip upper cover 98. When the flip cover assembly 59 is closed, the cover assembly 97 is located between the flip cover body 96 and the blending cup assembly 13 and is sealingly assembled to the cup opening of the blending cup assembly 13. When the flip cover assembly 59 is closed, the cover assembly 97 separates the flip cover body 96 and the blending cup assembly 13. The cover assembly 97 of the flip cover assembly 59 is detachable, the cover assembly 97 contacts the food materials, it is possible that food materials stick to the cover assembly 97 during whipping, the flip cover body 96 does not contact or substantially does not contact the food materials, thus the cover assembly 97 can be detached for cleaning, thus it is convenient for cleaning.
[0145] In some embodiments, the side of the flip cover 96 facing the cover assembly 97 is provided with a slot 100 and a buckle 101, which are oppositely arranged on the two sides of the flip cover 96. The cover assembly 97 comprises a cover 102 and an elastic buckle 103 movably arranged on the cover 102. The cover 102 is provided with a plug 104, which and the elastic buckle 103 are oppositely arranged on the two sides of the cover 102. When the cover assembly 97 is assembled on the flip cover 96, the plug 104 is inserted into the slot 100, and the elastic buckle 103 is clamped with the buckle 101. In this way, the cover assembly 97 is conveniently disassembled. In some embodiments, the bottom end of the side wall of the flip cover 96 is inwardly provided with a convex strip 105, which has a distance between the convex strip 105 and the bottom surface of the flip cover 96, forming the slot 100. In some embodiments, the edge of the cover 102 forms a step, which serves as the plug 104.
[0146] In some embodiments, the slot 100 is arranged on the side of the flip cover 96 away from the hinge 78, and the buckle 101 is arranged on the hinge 78. The flip cover 96 comprises a cover body part 107 and a cover rotating part 106 connected to one side of the cover body part 107. The cover body part 107 can be covered above the blending cup assembly 13. The cover rotating part 106 is rotationally connected with the main body part 16, the slot 100 is arranged on the cover body part 107, and the buckle 101 is arranged on the cover rotating part 106. The cover 102 comprises a cover body part 108 and a cover rotating part 109 connected to one side of the cover body part 108. The cover body part 108 is assembled with the cover body part 107 and can be covered above the blending cup assembly 13, and the cover rotating part 109 is assembled with the cover rotating part 106. The plug 104 is arranged on the cover body part 108, and the elastic buckle 103 is arranged on the cover rotating part 109. The elastic buckle 103 is arranged on the cover rotating part 109, which has little or no effect on the covering of the flip cover 96. The hinge 78 comprises the cover rotating part 106 and the cover rotating part 109.
[0147] In some embodiments, the elastic buckle 103 comprises a locking buckle 110 and an elastic component 111 elastically abutting between the locking buckle 110 and the cover 102. The locking buckle 110 is movable relative to the cover 102 through the elastic component 111, and the elastic component 111 extends in the direction from the cover rotating part 109 to the cover main body part 108. When the cover assembly 97 is assembled to the flip cover 96, the locking buckle 110 is clamped by the clamping buckle 101. When the cover assembly 97 is disassembled, the locking buckle 110 can be pushed in the direction of the cover main body part 108, the elastic component 111 is elastically deformed, the locking buckle 110 is disengaged from the clamping buckle 101, the pin 104 and the slot 100 are disengaged, so that the cover assembly 97 can be disassembled. When the cover assembly 97 is assembled, the pin 104 is inserted into the slot 100, the locking buckle 110 is pushed in the direction of the cover main body part 108, the elastic component 111 is elastically deformed, the locking buckle 110 is released, the elastic component 111 is reset, and the locking buckle 110 and the clamping buckle 101 are clamped. Thus, the user can operate conveniently, and can operate with one hand.
[0148] In some embodiments, the main body part 16 is provided with a rotating groove 112, which is combined with Figure 5 As shown, the rotating groove 112 is open upward and in the direction of the stirring cup assembly 13, and the cover rotating part 106 and the cover rotating part 109 are located in the rotating groove 112 and are in rotating connection with the side wall of the rotating groove 112. When the flip cover assembly 59 is closed, the clamping buckle 101 and the elastic buckle 103 are located in the rotating groove 112. The clamping buckle 101 and the elastic buckle 103 are located in the rotating groove 112 of the main body part 16, and have little or no effect on the closing of the flip cover 96. In some embodiments, there is a gap between the hinge part 78 of the flip cover assembly 59 and the bottom surface of the rotating groove 112, and there is a gap between the elastic buckle 103 and the cover 102 and the bottom surface of the rotating groove 112, so as not to affect the rotation. The flip cover assembly 59 extends in the direction of the stirring cup assembly 13 from the rotating groove 112 when it is closed.
[0149] In some embodiments, the flip cover 96 comprises a cover bottom wall 113 facing the cover assembly 97 and a cover side wall 114 connected with the cover bottom wall 113. The cover side wall 114 extends beyond the cover bottom wall 113 in the direction of the cover assembly 97. The clamping buckle 101 is protruded on the edge of the cover side wall 114. When the cover assembly 97 is assembled to the flip cover 96, the elastic buckle 103 is clamped between the clamping buckle 101 and the cover bottom wall 113. The clamping buckle 101 is in the form of a rib, which protrudes transversely and inwardly from the bottom edge of the cover side wall 114, and has a distance from the cover bottom wall 113. The clamping buckle 101 has a simple structure, occupies a small space, makes the overall structure compact, and is easy to process and form. The cover assembly 97 is assembled between the cover bottom wall 113 and the bottom edge of the cover side wall 114. In some embodiments, the protruding strip 105 protrudes transversely and inwardly from the bottom edge of the cover side wall 114, and has a distance from the cover bottom wall 113, forming the slot 100.
[0150] In some embodiments, the bottom wall 113 of the cover is concavely recessed in a direction away from the gasket assembly 97 to form a clearance slot 115, and the orthographic projection of the buckle 101 on the bottom wall 113 is located in the clearance slot 115. When the gasket assembly 97 is assembled to the flip cover 96, the elastic buckle 103 is partially located in the clearance slot 115 and clamped between the clearance slot 115 and the buckle 101, and the elastic buckle 103 can move in the clearance slot 115. The clearance slot 115 can reduce the height, so that the height of the connection part of the flip cover assembly 59 and the main body 16 is low, and the height of the hinge part 78 is low, so that the height of the whole machine is low. The buckle 101 extends transversely from the bottom edge of the cover side wall 114 into the clearance slot 115, and the opening area of the clearance slot 115 facing the buckle 101 is larger than the area of the buckle 101, so that the elastic buckle 103 can move in the clearance slot 115, so that the elastic buckle 103 can be clamped with the buckle 101 or can move away from the buckle 101. The clearance slot 115 can extend transversely inward from the cover side wall 114.
[0151] Figure 24 An enlarged view of a partial region 10C is shown. Figure 23 Reference is made to Figure 18 , 21 and 24, in some embodiments, the flip cover 96 includes a cover through hole 116 penetrating the surface of the flip cover 96 facing the gasket assembly 97, and the gasket assembly 97 includes a gasket water inlet hole 117. The position of the gasket water inlet hole 117 corresponds to the position of the cover through hole 116. When the flip cover assembly 59 is closed, the gasket water inlet hole 117 is in communication with the stirring cup assembly 13, and one end of the water inlet pipe 60 penetrates the cover through hole 116 and sealingly abuts the periphery of the gasket water inlet hole 117. The cover through hole 116 penetrates the cover bottom wall 113 of the flip cover 96. The gasket water inlet hole 117 and the cover through hole 116 are in communication, and the gasket water inlet hole 117 is above the cup mouth of the stirring cup assembly 13 when the flip cover assembly 59 is closed. The water inlet pipe 60 penetrates out of the flip cover 96 through the cover through hole 116, and the water inlet pipe 60 abuts the surface of the gasket 102 facing the flip cover 96. The water inlet pipe 60 sealingly abuts the periphery of the gasket water inlet hole 117, which can prevent water leakage when water is filled.
[0152] In some embodiments, one end of the water outlet pipe 93 passes through the cover hole 116 and abuts against the outer periphery of the gasket water inlet hole 117. The water outlet pipe 93 includes a connecting pipe 118 and a sealing head 119 connected to the connecting pipe 118. The connecting pipe 118 is assembled with the adapter 92 and extends from one side of the flip cover 96 to the cover hole 116 in the flip cover 96. The sealing head 119 extends along the thickness direction of the flip cover 96, passes through the cover hole 116 in the flip cover 96, and abuts against the outer periphery of the gasket water inlet hole 117. The water outlet pipe 93 has good sealing effect and simple structure. The connecting pipe 118 connects the adapter 92 and the sealing head 119 to horizontally guide water into the cup opening of the stirring cup assembly 13. The sealing head 119 extends downward to inject water into the stirring cup assembly 13. In some embodiments, the water outlet pipe 93 can be integrally formed and can be made of flexible materials such as rubber. In other embodiments, the connecting pipe 118 and the sealing head 119 can be separately formed and assembled together. The sealing head 119 is made of flexible materials such as rubber, and the connecting pipe 118 can be made of flexible materials such as rubber or other rigid materials.
[0153] In some embodiments, the sealing head 119 includes a water inlet assembly part 120 connected to the connecting pipe 118 and a water inlet sealing part 121 connected to one end of the water inlet assembly part 120 close to the gasket assembly 97. The water inlet assembly part 120 is assembled in the cover hole 116, and the water inlet sealing part 121 is located outside the cover hole 116 and abuts against the outer periphery of the gasket water inlet hole 117. The water inlet assembly part 120 passes through the cover hole 116, and the water inlet sealing part 121 is located outside the flip cover 96 between the flip cover 96 and the gasket 102. The water inlet sealing part 121 includes a first water inlet sealing part 122 connected to the water inlet assembly part 120 and a second water inlet sealing part 123 connected to one end of the first water inlet sealing part 122 close to the gasket assembly 97. The first water inlet sealing part 122 gradually expands radially in the direction from the water inlet assembly part 120 to the gasket assembly 97, and the second water inlet sealing part 123 gradually shrinks radially in the direction from the first water inlet sealing part 122 to the gasket assembly 97. The first water inlet sealing part 122 is trumpet-shaped with a large opening at the bottom, and the second water inlet sealing part 123 is trumpet-shaped with a large opening at the top. The water inlet sealing part 121 has a certain elasticity in the up-down direction. In this way, the sealing effect is good, and good sealing effect can also be ensured during stirring vibration. The second water inlet sealing part 123 has a water guiding effect to guide water to the gasket water inlet hole 117. In some embodiments, the height of the first water inlet sealing part 122 is greater than the height of the second water inlet sealing part 123. The sealing head 119 can be integrally formed.
[0154] Figure 25 A partial exploded view of the host 11 is shown. In some embodiments, the host 11 includes an exhaust cover assembly 124 detachably assembled with the flip cover assembly 59. Figure 26A perspective view of the flip cover assembly 59 is shown. Referring to Figure 18 , 25 and 26, the flip cover assembly 59 includes an exhaust through hole 125 and an exhaust sealing ring 126 assembled to the exhaust through hole 125. Figure 26 The exhaust sealing ring 126 is not shown in FIG. 4. The exhaust cover assembly 124 is assembled to the exhaust through hole 125, and the exhaust sealing ring 126 seals between the exhaust through hole 125 and the exhaust cover assembly 124. The exhaust sealing ring 126 can prevent liquid side leakage and can also serve as a damping function when the exhaust cover assembly 124 is disassembled.
[0155] Figure 27 A perspective view of the exhaust sealing ring 126 is shown. Figure 28 An enlarged view of a partial area 10e of the food processor 10 is shown. Figure 2 The exhaust sealing ring 126 includes an exhaust sealing ring body 127 and a sealing protruding rib 128 protruding from an inner surface of the exhaust sealing ring body 127. The exhaust sealing ring body 127 is assembled to the exhaust through hole 125, and the exhaust cover assembly 124 is assembled to the exhaust sealing ring body 127. The sealing protruding rib 128 abuts against the exhaust cover assembly 124. The sealing protruding rib 128 can prevent liquid side leakage and can also serve as a damping function when the exhaust cover assembly 124 is disassembled. The exhaust sealing ring body 127 is annular and is sleeved in the exhaust through hole 125. The exhaust cover assembly 124 includes an exhaust cover body 129 and an exhaust cover insertion portion 130 protruding downward from the exhaust cover body 129. The exhaust cover body 129 covers above the exhaust through hole 125, the exhaust cover insertion portion 130 is inserted into the exhaust through hole 125, and the exhaust sealing ring 126 is sealed between the exhaust through hole 125 and the exhaust cover insertion portion 130. The exhaust cover insertion portion 130 is inserted into the exhaust sealing ring 126, and an outer side surface of the exhaust cover insertion portion 130 abuts against the sealing protruding rib 128.
[0156] In combination with Figure 21As shown, in some embodiments, the cover body 96 includes a cover body vent hole 131, and the cover gasket assembly 97 includes a cover gasket vent hole 132, which is positioned corresponding to the position of the cover body vent hole 131. The vent hole 125 includes the cover body vent hole 131 and the cover gasket vent hole 132. The vent seal ring 126 is assembled to the cover body vent hole 131 and extends beyond the cover body vent hole 131 to sealingly abut the periphery of the cover gasket vent hole 132. The vent cover assembly 124 is assembled to the cover body vent hole 131 and communicates with the mixing cup assembly 13 through the cover body vent hole 131 and the cover gasket vent hole 132. The vent seal ring 126 seals between the cover body vent hole 131 and the vent cover assembly 124. The vent seal ring 126 sealingly abuts the cover gasket 102 for good sealing effect. The cover gasket 102 is detachable, and the vent seal ring 126 can also ensure good sealing effect. The cover body vent hole 131 penetrates the cover body 96 upward and downward, and the cover gasket vent hole 132 penetrates the cover gasket assembly 97 upward and downward. The vent seal ring 126 extends outward from the cover body vent hole 131, protrudes outward from the bottom surface of the cover body 96, and extends toward the cover gasket assembly 97. The bottom end of the vent seal ring 126 abuts the cover gasket assembly 97 and surrounds the cover gasket vent hole 132.
[0157] In some embodiments, the vent seal ring 126 is detachably assembled to the cover body vent hole 131, which facilitates cleaning of the vent seal ring 126. The vent seal ring 126 can be clamped to the edge of the cover body vent hole 131. In some embodiments, the vent seal ring 126 includes an annular sealing clamping groove 133, and the edge of the cover body vent hole 131 is detachably clamped in the sealing clamping groove 133. The vent seal ring 126 is convenient to disassemble and assemble.
[0158] In some embodiments, the exhaust sealing ring 126 comprises an exhaust assembly part 134 and an exhaust sealing part 135 connected to the exhaust assembly part 134, the exhaust assembly part 134 is assembled in the cover exhaust hole 131, and the exhaust sealing part 135 is located outside the cover exhaust hole 131 and sealingly abuts the periphery of the liner exhaust hole 132. In some embodiments, the exhaust assembly part 134 is detachably assembled in the cover exhaust hole 131. The exhaust assembly part 134 is provided with a sealing clamping groove 133. The exhaust sealing part 135 is connected to one end of the exhaust assembly part 134 facing the liner assembly 97. The exhaust sealing part 135 comprises a first exhaust sealing part 136 connected to the exhaust assembly part 134 and a second exhaust sealing part 137 connected to one end of the first exhaust sealing part 136 close to the liner assembly 97. The first exhaust sealing part 136 gradually expands radially in the direction from the exhaust assembly part 134 to the liner assembly 97, and the second exhaust sealing part 137 gradually contracts radially in the direction from the first exhaust sealing part 136 to the liner assembly 97. The exhaust sealing part 135 is elastic up and down. The first exhaust sealing part 136 is in the shape of a horn with a large opening at the bottom, and the second exhaust sealing part 137 is in the shape of a horn with a large opening at the top. In this way, the sealing effect is good, and the sealing effect can also be guaranteed when the whipping vibration occurs.
[0159] Reference Figure 26 and 28 In some embodiments, the flip cover assembly 59 comprises a flip cover front surface 138, a flip cover back surface 139 opposite to the flip cover front surface 138, and an exhaust cover containing groove 140 recessed from the flip cover front surface 138 to the flip cover back surface 139. When the flip cover assembly 59 is closed, the flip cover back surface 139 faces the whipping cup assembly 13, the exhaust through hole 125 is located in the exhaust cover containing groove 140, and the exhaust cover assembly 124 is contained in the exhaust cover containing groove 140. The exhaust cover assembly 124 is contained in the exhaust cover containing groove 140, which can reduce the height. The flip cover body 96 and the liner assembly 97 are stacked in the direction from the flip cover front surface 138 to the flip cover back surface 139. The side of the flip cover body 96 away from the liner assembly 97 is the flip cover front surface 138, and the side of the liner assembly 97 away from the flip cover body 96 is the flip cover back surface 139.
[0160] In some embodiments, there is a finger space 141 between the sidewall of the exhaust cover assembly 124 and the sidewall of the exhaust cover accommodating groove 140 for accommodating a user's finger. A user's finger can be inserted into the finger space 141 to take out the exhaust cover assembly 124. In this way, the user can easily take out the exhaust cover assembly 124. In some embodiments, the exhaust cover assembly 124 includes an exhaust cover front face 142 opposite the flip cover back face 139, and the exhaust cover front face 142 is lower than or flush with the flip cover front face 138. When the flip cover assembly 59 is closed, the exhaust cover front face 142 of the exhaust cover assembly 124 is the top face of the exhaust cover assembly 124, and the flip cover front face 138 is the top face of the flip cover assembly 59. The top face of the exhaust cover assembly 124 does not exceed the top face of the flip cover assembly 59. In this way, the overall height is low, and the appearance is beautiful. In some embodiments, the thickness of the flip cover assembly 59 ranges from 15 mm to 45 mm. The distance between the flip cover front face 138 and the flip cover back face 139 is the thickness of the flip cover assembly 59. The flip cover assembly 59 is low and thin, and more beautiful.
[0161] Figure 29 An exploded view of the exhaust cover assembly 124 is shown. The exhaust cover assembly 124 includes an exhaust upper cover 143, an exhaust bottom cover 144, a baffle 145, and an exhaust cover spring buckle 146. The exhaust upper cover 143 and the exhaust bottom cover 144 are fixedly assembled. The baffle 145 and the exhaust cover spring buckle 146 are arranged between the exhaust upper cover 143 and the exhaust bottom cover 144. The baffle 145 is movably assembled to the exhaust bottom cover 144 and can be lifted by steam in the cup. The exhaust cover spring buckle 146 can lock the exhaust cover assembly 124 to the flip cover assembly 59. The exhaust cover spring buckle 146 includes an exhaust cover lock 147 and an exhaust cover spring 148, which are assembled to the exhaust bottom cover 144, and the exhaust cover spring 148 abuts between the exhaust cover lock 147 and the exhaust bottom cover 144.
[0162] Figure 30 An exploded view of the cover assembly 97 is shown. Figure 31 An enlarged view of a partial area 10f of the food processor 10 is shown. Figure 2 An enlarged view of a partial area 10f of the food processor 10 is shown. Figure 18 As shown, the flip cover assembly 59 includes a cup mouth sealing ring 149 assembled to the flip cover 84. The cup mouth sealing ring 149 includes a sealing fixed portion 150 and a deformation portion 151 connected to the sealing fixed portion 150, and the sealing fixed portion 150 is fixed to the flip cover 84. The flip cover 84 presses the cup mouth sealing ring 149 downward to the upper edge of the cup mouth of the blending cup assembly 13, and the deformation portion 151 deforms and is in interference fit with the upper edge of the cup mouth of the blending cup assembly 13. The cup mouth sealing ring 149 includes the deformation portion 151, and the flip cover 84 presses the cup mouth sealing ring 149 downward when the flip cover assembly 59 is closed, and the deformation portion 151 deforms and is in interference fit with the upper edge of the cup mouth of the blending cup assembly 13, thereby achieving better sealing effect with the cup mouth.
[0163] Figure 32 Fig. 6 shows a sectional view of the liner assembly 97. Figure 33 Fig. 7 shows a sectional view of the liner assembly 97. Figure 32 Fig. 8 shows an enlarged view of a partial area 10g of the liner assembly 97. Reference is made to Fig. 7 in conjunction with Fig. 8. Figure 32 Fig. 9 shows a sectional view of the liner assembly 97. 33 The deformation 151 includes a first deformation 152 extending from the sealing fixed portion 150 in the thickness direction of the flip cover assembly 59, and a second deformation 153 extending radially outward from the first deformation 152. When the flip cover assembly 59 is closed, the second deformation 153 is in interference fit with the upper edge of the cup mouth of the mixing cup assembly 13. This structure allows a larger interference and a larger interference fit area with the cup mouth, and a more reliable seal. When the flip cover assembly 59 is closed, the second deformation 153 is deformed by being pressed upward. In some embodiments, the deformation 151 includes a third deformation 164 extending from the second deformation 153 to the sealing fixed portion 150. The longitudinal section of the cup mouth sealing ring 149 is C-shaped.
[0164] In some embodiments, the flip cover 84 includes a flip cover body 96 and a liner assembly 97. The liner assembly 97 includes a liner 102 detachably assembled to the flip cover body 96, and a cup mouth sealing ring 149 assembled to the liner 102. The liner 102 is detachable for easy cleaning, and the cup mouth sealing ring 149 allows the liner 102 and the cup mouth to be well sealed. The cup mouth sealing ring 149 is assembled to the liner 102, and can be detached from the flip cover body 96 together with the liner 102 for cleaning. In some embodiments, the liner 102 includes a bracket 154 and a liner plate 155 provided on the bracket 154. The bracket 154 is detachably assembled to the flip cover body 96, and the cup mouth sealing ring 149 is assembled to the bracket 154 and surrounds the edge of the liner plate 155. This structure is simple. When the flip cover assembly 59 is closed, the liner plate 155 is in the cup mouth of the mixing cup assembly 13, and the bracket 154 presses the cup mouth sealing ring 149 against the upper edge of the cup mouth. The liner plate 155 can be made of metal material, which is convenient for cleaning and more hygienic. The bracket 154 can be made of plastic material. An elastic buckle 103 can be provided on the bracket 154. The liner water inlet hole 117 and the liner air exhaust hole 132 are both provided on the liner plate 155.
[0165] In some embodiments, the bracket 154 includes a liner plate mounting hole 156, and the cup mouth sealing ring 149 surrounds the inner side of the liner plate mounting hole 156. The liner plate 155 is mounted in the liner plate mounting hole 156 and fixedly connected with the cup mouth sealing ring 149 and the bracket 154. In this way, the liner plate 155, the cup mouth sealing ring 149 and the bracket 154 are fixedly assembled together, which is simple in structure and convenient to assemble. The liner plate mounting hole 156 is through from top to bottom, and the diameter of the liner plate mounting hole 156 is slightly smaller than the diameter of the liner plate 155, and the edge of the liner plate 155 is fixed to the edge of the liner plate mounting hole 156.
[0166] In some embodiments, the liner 155 comprises a liner body 157 and a liner fixing portion 158 connected to the edge of the liner body 157, the liner body 157 is located in the liner mounting hole 156, and the liner fixing portion 158 is pressed against the sealing fixing portion 150 and fixedly connected with the sealing fixing portion 150 and the support 154. Such structure is simple and easy to assemble. In some embodiments, the liner body 157 can protrude into the stirring cup assembly 13 relative to the liner fixing portion 158. The liner fixing portion 158 and the support 154 clamp the cup opening sealing ring 149.
[0167] In some embodiments, the cup opening sealing ring 149 is provided with a fixing block 159 and a sealing ring screw hole 160, the liner 155 is provided with a fixing hole 161 and a liner screw hole 162. The fixing block 159 is clamped in the fixing hole 161, the support 154 is provided with a support screw hole 163, and the cover assembly 97 comprises a screw (not shown) fixed in the liner screw hole 162, the sealing ring screw hole 160 and the support screw hole 163. In this way, the cup opening sealing ring 149 can be firmly fixed to prevent loosening of the cup opening sealing ring 149. The sealing ring screw hole 160 is located between the liner screw hole 162 and the support screw hole 163. The fixing block 159 can protrude from the sealing fixing portion 150, and the sealing ring screw hole 160 is provided on the sealing fixing portion 150. The fixing hole 161 and the liner screw hole 162 are provided on the liner fixing portion 158. The liner fixing portion 158 and the support 154 clamp the sealing fixing portion 150.
[0168] In some embodiments, the liner fixing portion 158, the first deformation portion 152 and the second deformation portion 153 collectively surround the edge of the liner mounting hole 156, and the second deformation portion 153 has a gap between the support 154 and the side of the support 154 away from the cover body 96. The support 154 can support the cup opening sealing ring 149, and when the deformation portion 151 is deformed, the support 154 can also support the deformation portion 151. The interference amount can be relatively large, so that the sealing is more reliable. When the second deformation portion 153 is deformed, it can abut against the support 154, thereby ensuring reliable sealing effect. The upper part of the first deformation portion 152 is connected with the sealing fixing portion 150 and abuts against the inner side of the liner mounting hole 156 of the support 154, the lower part of the first deformation portion 152 extends downward beyond the bottom surface of the support 154, the second deformation portion 153 extends radially outward from the lower end of the first deformation portion 152 and is located below the bottom surface of the support 154, and has a gap between the bottom surface of the support 154, leaving a certain deformation space.
[0169] In some embodiments, the third deformable portion 164 is located on the side of the support 154 facing away from the flip-top cover 96, and there is a gap between it and the side of the support 154 facing away from the flip-top cover 96. The deformable portion 151 can surround the support 154, and the support 154 can provide good support, allowing for a larger interference fit and a more reliable seal. When the deformable portion 151 deforms, the third deformable portion 164 can abut against the support 154, thereby ensuring the reliability of the seal. The top of the cup mouth sealing ring 149 is fixed, while the bottom is deformable, allowing for an interference fit with the cup mouth of the stirring cup assembly 13 to achieve a better sealing effect.
[0170] Figure 34 The diagram shows a partial internal structure of the mixing cup assembly 13 and the main unit 11. Figure 35 As shown Figure 3 The image shows an enlarged view of a portion 10h of the food processor 10. The blending cup assembly 13 includes a spout 165 connected to the blending cup body 37. The spout 165 communicates with the outlet 24 and extends from the outlet 24 in a direction away from the blending cup body 37. The spout 165 is located at the lower part of the blending cup body 37, extending outward and downward at an angle from the side wall of the blending cup body 37, and extending towards the outlet 28 of the receiving cup assembly 15. The liquid inside the blending cup body 37 enters the spout 165 from the outlet 24 and can flow through the spout 165 to the receiving cup assembly 15.
[0171] The blender 10 includes a juice valve assembly 166, which includes a valve core 167 housed within a juice spout 165 and a valve actuation assembly 168 connected to the valve core 167. The valve actuation assembly 168 drives the valve core 167 to move. The valve core 167 can open and close the juice spout 165. When the juice spout 165 is closed, the puree cannot flow from the blending cup 37 to the juice receiving cup assembly 15; when the juice spout 165 is open, the puree can flow out. The valve actuation assembly 168 can drive the valve core 167 to move within the juice spout 165, opening or closing the juice spout 165. The controller (not shown) of the blender 10 can control the valve actuation assembly 168, thereby driving the valve core 167 to move.
[0172] In some embodiments, the juice outlet 165 is integrally formed with the mixing cup body 37. This integral forming of the juice outlet 165 and the mixing cup body 37 results in a simple structure, low cost, and solves the problem of leakage due to poor sealing when separate components are used. It also reduces assembly and processing steps and allows the valve core 167 to be closer to the mixing cup body 37, which is more conducive to juice dispensing. In other embodiments, the juice outlet 165 can be separately formed from the mixing cup body 37 and then fixedly assembled together.
[0173] In some embodiments, the valve driving assembly 168 is provided in the main machine 11, so that the stirring cup assembly 13 can not include electrical components, so as to facilitate the cleaning of the stirring cup assembly 13, and the stirring cup assembly 13 can be cleaned as a whole. The stirring cup assembly 13 can be taken off the main machine 11 for cleaning, and can be soaked for cleaning.
[0174] The stirring cup assembly 13 is detachably provided in the main machine 11, the juice outlet nozzle 165 and the stirring cup body 37 are connected, and the valve driving assembly 168 is provided in the main machine 11. The juice outlet nozzle 165 and the stirring cup body 37 can be taken off the main machine 11 together. Therefore, the juice outlet nozzle 165 and the stirring cup body 37 can be taken off for cleaning, which facilitates cleaning and can better clean the juice outlet nozzle, especially for some thick slurries that are easy to stick to the inner wall of the juice outlet nozzle 165. The juice outlet nozzle 165 can be taken off for pouring, and the application scenarios are more, especially for thick slurries that are not easy to flow out.
[0175] In some embodiments, the valve driving assembly 168 includes a valve motor 169 located in the main machine 11, and the valve motor 169 includes a valve motor shaft 170 connected with the valve core 167. The valve motor shaft 170 is offset from the valve core 167 in the length direction of the juice outlet nozzle 165, and the valve core 167 is closer to the juice outlet 24 relative to the valve motor shaft 170 in the length direction of the juice outlet nozzle 165. The valve motor 169 drives the valve core 167 to move, the valve motor shaft 170 is connected with the valve core 167, the valve motor shaft 170 rotates to drive the valve core 167 to move. The valve core 167 can rotate in the juice outlet nozzle 165, and can be repeatedly rotated to switch between opening and closing. The valve motor shaft 170 is offset from the valve core 167 in the length direction of the juice outlet nozzle 165 extending away from the juice outlet 24. The valve core 167 is closer to the juice outlet 24, and can be closer to the stirring cup body 37, which is conducive to juice outlet.
[0176] Figure 36 The stirring cup assembly 13 and the juice outlet valve assembly 166 are shown in a perspective exploded view. Referring to Figures 34-36 , the valve driving assembly 168 includes a driving wheel 171 connected with the valve motor shaft 170, and the driving wheel 171 is provided in the main machine 11. The juice outlet valve assembly 166 includes a driven wheel 172 connected with the valve core 167, and the driven wheel 172 is provided in the juice outlet nozzle 165. The driven wheel 172 is engaged with the driving wheel 171. The driven wheel 172 can be connected with the shaft of the valve core 167. The valve motor shaft 170 drives the valve core 167 through the driving wheel 171 and the driven wheel 172. The driving wheel 171 and the driven wheel 172 are offset in the length direction of the juice outlet nozzle 165, and the driven wheel 172 is closer to the juice outlet 24 relative to the driving wheel 171, and is closer to the stirring cup body 37. The driving wheel 171 and the driven wheel 172 can achieve the transmission connection of the offset valve motor shaft 170 and the valve core 167, so that the valve core 167 can be closer to the stirring cup body 37, which is conducive to juice outlet, and the structure is simple.
[0177] In some embodiments, the driven wheel 172 is located below the juice outlet nozzle 165, and the valve driving assembly 168 is located below the juice outlet nozzle 165, so that the structure is compact and the appearance is beautiful. The driven wheel 172 is located outside the juice outlet nozzle 165, and the shaft of the valve core 167 extends out of the juice outlet nozzle 165 and is fixedly connected with the driven wheel 172. The driving wheel 171 is also located below the juice outlet nozzle 165. The driving wheel 171 is arranged outside the main machine 11 and located between the main machine 11 and the juice outlet nozzle 165.
[0178] In some embodiments, the stirring cup assembly 13 is detachably assembled to the main machine 11, and the driven wheel 172 and the driving wheel 171 are detachably engaged. When the stirring cup assembly 13 is detached from the main machine 11, the driven wheel 172 and the driving wheel 171 are separated, and the driven wheel 172 and the stirring cup assembly 13 are detached from the main machine 11 together. When the stirring cup assembly 13 is assembled to the main machine 11, the driven wheel 172 and the driving wheel 171 are engaged. In this way, the connection between the valve core 167 and the valve motor 169 can be facilitated when the stirring cup assembly 13 is disassembled, and the structure is simple and convenient to disassemble.
[0179] In some embodiments, the valve driving assembly 168 includes a transmission shaft 173 connected between the valve motor shaft 170 and the driving wheel 171. The transmission shaft 173 is arranged to connect the valve motor shaft 170 and the driving wheel 171, so that the valve motor 169 can be located farther away from the driving wheel 171, and thus the valve motor 169 can be installed more internally in the main machine 11, so that the internal space is larger, and thus the valve motor 169 is more convenient to install, and the structure of the main machine 11 is more compact.
[0180] In some embodiments, the extension direction of the valve motor shaft 170 is inclined relative to the axial direction of the stirring cup assembly 13, and is inclined away from the juice outlet 24 in the direction from the valve motor 169 to the juice outlet nozzle 165. The valve motor shaft 170 is arranged to be inclined, so that the valve motor 169 can be closer to the middle of the main machine 11 in the transverse direction, and thus the main machine 11 can be more miniaturized and the structure is more compact. The extension direction of the valve motor shaft 170 can be perpendicular to the extension direction (i.e. the length direction) of the juice outlet nozzle 165. The extension direction of the transmission shaft 173 is the same as the extension direction of the valve motor shaft 170. The extension direction of the shaft of the valve core 167 is parallel to the extension direction of the valve motor shaft 170, so that the driving wheel 171 and the driven wheel 172 can be well engaged, and the overall structure is simple.
[0181] In some embodiments, the juice outlet valve assembly 166 comprises a valve seal 174, which seals between the juice outlet nozzle 165 and the valve core 167, and seals between the periphery of the juice outlet 24 and the valve core 167. The valve seal 174 is provided with a sealing rib 175 at one end close to the juice outlet 24, and the juice outlet nozzle 165 is provided with a juice outlet slot 176 at one end close to the juice outlet 24, and the sealing rib 175 is clamped in the juice outlet slot 176. The valve seal 174 can play a role of fixation, and can prevent water leakage. The valve core 167 can be accommodated in the valve seal 174. The shape of the valve seal 174 can be substantially the same as that of the juice outlet nozzle 165, and the valve seal 174 is attached to the inner wall of the juice outlet nozzle 165. In some embodiments, the stirring cup assembly 13 comprises a pressing plate 177, the juice outlet nozzle 165 comprises a valve core mounting hole 178 for mounting the valve core 167, and the pressing plate 177 covers the valve core mounting hole 178 and is fixedly connected with the juice outlet nozzle 165, so that the valve core 167 is kept in the juice outlet nozzle 165. The pressing plate 177 and the valve core 167 are limited in position, and the shaft of the valve core 167 is limited on the inner side of the pressing plate 177 and can rotate relative to the pressing plate 177.
[0182] In some embodiments, the valve drive assembly 168 comprises a valve magnetic part 179 connected with the valve motor shaft 170 and a valve inductive magnetic switch 180 fixed relative to the main machine 11, the valve magnetic part 179 and the valve motor shaft 170 move synchronously, and the valve inductive magnetic switch 180 is used for sensing the magnetic field of the valve magnetic part 179, and the controller can determine the position of the valve magnetic part 179 according to the signal of the valve inductive magnetic switch 180, so as to determine the position of the valve core 167 and determine whether the valve core 167 is in the open position or the closed position. The valve magnetic part 179 and the valve inductive magnetic switch 180 can detect the opening and closing of the valve core 167, the valve magnetic part 179 is connected with the valve motor shaft 170 and can rotate synchronously with the valve motor shaft 170, so the detection accuracy is high. In some embodiments, the valve inductive magnetic switch 180 comprises a reed switch. In some embodiments, two valve inductive magnetic switches 180 are provided, corresponding to the position of the valve magnetic part 179 when the valve core 167 is in the open position, one valve inductive magnetic switch 180 is provided, corresponding to the position of the valve magnetic part 179 when the valve core 167 is in the closed position, and the other valve inductive magnetic switch 180 is provided.
[0183] In some embodiments, the valve magnetic part 179 is arranged on the transmission shaft 173, which facilitates the installation of the valve magnetic part 179. The valve magnetic part 179 is connected with the valve motor shaft 170 through the transmission shaft 173. The valve magnetic part 179 can be fixed on the transmission shaft 173 by means of screws, glue, buckles or the like. The length of the transmission shaft 173 is longer than that of the valve motor shaft 170, and the transmission shaft 173 facilitates the arrangement of the valve magnetic part 179. Moreover, the valve magnetic part 179 is arranged on the transmission shaft 173, and the valve motor 169 can adopt a standard part, which is convenient to purchase, so that the overall cost is relatively low.
[0184] In some embodiments, the juice outlet valve assembly 166 comprises a sensing plate 183 fixed in the main machine 11, and the valve sensing magnetic switch 180 is arranged on the sensing plate 183. In some embodiments, the juice outlet valve assembly 166 comprises a positioning plate 184 fixedly installed on the main machine 11, and the valve motor 169 is assembled on the positioning plate 184.
[0185] Figure 37 Fig. 6 shows a perspective view of the blending cup assembly 13 from the bottom. It is referred to in combination with Fig. 5. Figure 36 In some embodiments, the driven gear 172 is a non-full tooth gear, the back of the teeth of the driven gear 172 faces the blending cup body 37, so that the valve core 167 can be as close as possible to the blending cup body 37, which is conducive to juice outlet. The part of the driven gear 172 without teeth faces the side wall of the blending cup body 37, and the back of the teeth of the driven gear 172 faces the side wall of the blending cup body 37. The valve core 167 can reciprocate between the open and closed positions, reciprocating on a circular arc of a certain angle. The non-full tooth gear can meet the reciprocating movement of the valve core 167, and can be closer to the blending cup assembly 13, so that the valve core 167 is closer to the juice outlet 24, and thus more conducive to juice outlet.
[0186] Figure 38 Fig. 7 shows a longitudinal sectional view of the blending cup body 37 and the juice outlet nozzle 165. Figure 39 Fig. 8 shows a top view of the blending cup body 37 and the juice outlet nozzle 165. The blending cup body 37 comprises a first side wall 181 and a second side wall 182, the second side wall 182 extends obliquely downward from the lower end of the first side wall 181 into the blending cup body 37, and the extending direction of the second side wall 182 from top to bottom is different from that of the first side wall 181. The second side wall 182 is provided with the juice outlet 24, and the juice outlet nozzle 165 communicates with the juice outlet 24 and extends outward from the blending cup body 37. The juice outlet 24 is arranged on the second side wall 182 extending obliquely downward from the lower end of the first side wall 181 into the blending cup body 37, so as to increase the cross-sectional area of the juice outlet 24, and the pulp flows more smoothly. The second side wall 182 extends obliquely relative to the cross section of the blending cup body 37. The juice outlet 24 is arranged on the obliquely extending second side wall 182, so as to increase the cross-sectional area of the juice outlet 24, and the pulp flows more smoothly.
[0187] In some embodiments, the angle c of the second side wall 182 extending obliquely relative to the cross section of the blending cup body 37 is in the range of 95 degrees to 130 degrees, for example, 100 degrees, 110 degrees, or 120 degrees. In this way, the cross-sectional area of the juice outlet 24 can be increased, the pulp flows more smoothly, and the food materials can be gathered to the middle part of the blending cup body 37, which is conducive to whipping. The angle c is the angle between the extending direction of the second side wall 182 from bottom to top and the horizontal direction of the blending cup body 37 from the bottom end of the second side wall 182 into the blending cup body 37 on the longitudinal cross section of the blending cup body 37.
[0188] The height of the second sidewall 182 is less than the height of the first sidewall 181. In some embodiments, the first sidewall 181 extends obliquely relative to the cross section of the blending cup body 37, and the oblique angle of the first sidewall 181 relative to the cross section of the blending cup body 37 is less than the oblique angle of the second sidewall 182 relative to the cross section of the blending cup body 37. The second sidewall 182 has a large oblique angle, so that the juice outlet 24 can be large. The second sidewall 182 is close to the cup bottom, and the large oblique angle can better gather the food materials to the middle, facilitating whipping. In other embodiments, the first sidewall 181 extends vertically, and is perpendicular to the cross section of the blending cup body 37.
[0189] In some embodiments, the blending cup assembly 13 includes a blade seat 186, as shown in Figure 35 The blade seat 186 is connected to the lower end of the second sidewall 182. The second sidewall 182 extends to the blade seat 186, and the second sidewall 182 extends to the cup bottom, so that the juice outlet 24 is arranged at the bottom end of the sidewall, facilitating juice extraction. The blending blade assembly 25 is arranged in the blade seat 186. The juice outlet 24 extends downward to the blade seat 186, thereby facilitating juice extraction. In some embodiments, the upper end of the juice outlet 165 is connected to the upper end of the second sidewall 182, and the first sidewall 181 extends upward from the upper end of the juice outlet 165.
[0190] With continued reference to Figure 35 , the blending cup assembly 13 includes a cup handle 38 arranged on one side of the blending cup body 37, and the blending cup assembly 13 includes a cup magnetic element 190 arranged at the lower part of the cup handle 38. The main machine 11 includes a cup magnetic switch 191. When the blending cup assembly 13 is assembled to the main body 16, the cup magnetic element 190 is located within the sensing range of the cup magnetic switch 191, and the cup magnetic switch 191 is closed. The controller can be connected to the cup magnetic switch 191, and according to the electrical signal of the cup magnetic switch 191, it is determined whether the blending cup assembly 13 is placed in the main machine 11. The cup magnetic switch 191 is arranged at the position of the main body 16 corresponding to the cup handle 38. The cup magnetic element 190 is arranged at the lower part of the cup handle 38, which does not affect the appearance of the blending cup assembly 13, has a simple structure, and the blending cup assembly 13 can not be provided with electrical elements, which can facilitate cleaning.
[0191] Figure 40 Fig. 8 shows a perspective view of the blending cup assembly 13. The blending blade assembly 25 is detachably assembled to the bottom of the blending cup body 37. The blending blade assembly 25 is detachable, which facilitates cleaning. After the blending cup assembly 13 is detached from the main machine 11, the blending blade assembly 25 is detached from the blending cup body 37 for cleaning.
[0192] Figure 41 Fig. 9 shows a perspective exploded view of the blending cup assembly 13. Figure 42 Fig. 10 shows a perspective view of the blending cup body 37 from the bottom, Figure 43 Fig. 11 shows a perspective view of the blending blade assembly 25. With reference toFigures 40-43 In some embodiments, the stirring blade assembly 25 includes a blade holder 186, a stirring blade 187, a blade holder fixing member 188, and a blade holder sealing ring 189. The stirring blade 187 is disposed on the blade holder 186. The blade holder fixing member 188 is detachably assembled with the stirring cup body 37. The blade holder fixing member 188 detachably assembles the blade holder 186 to the stirring cup body 37. The blade holder sealing ring 189 seals between the blade holder 186 and the stirring cup body 37. This structure is simple and easy to assemble and disassemble. The blade holder 186 serves as the blade holder 186. The stirring blade 187 is rotatably disposed on the blade holder 186. The blade holder fixing member 188 can press the blade holder 186 against the bottom of the stirring cup body 37. The blade holder sealing ring 189 seals between the edge of the blade holder 186 and the stirring cup body 37. The blade holder 186, the stirring blade 187, the blade holder fixing member 188, and the blade holder sealing ring 189 can all be detached from the stirring cup body 37.
[0193] In some embodiments, the blade holder fixing member 188 and the blade holder 186 are detachable. When assembling or disassembling the mixing blade assembly 25 to the mixing cup 37, the blade holder 186 remains essentially stationary; disassembly and assembly are achieved by operating the blade holder fixing member 188. This method is less strenuous and easier to install, and the blade holder 186 can be removed for separate cleaning, making cleaning more convenient. The blade holder fixing member 188 can be rotatably assembled to the mixing cup 37. The blade holder fixing member 188 and the blade holder 186 are detachable. During disassembly and assembly, the blade holder 186 does not rotate; disassembly and assembly are achieved by rotating the blade holder fixing member 188. This makes rotating the blade holder fixing member 188 less strenuous and disassembly and assembly easier.
[0194] Figure 44 As shown Figure 35 A magnified view of a local region (10i). Combined with... Figure 44 In some embodiments, the blade holder sealing ring 189 covers the side edge of the blade holder 186, thus providing a good sealing effect. The side edge of the blade holder 186 is held in the blade holder sealing ring 189. In some embodiments, the blade holder sealing ring 189 and the blade holder 186 are integrally formed, facilitating the disassembly and assembly of the stirring blade assembly 25. In other embodiments, the blade holder sealing ring 189 is assembled to the blade holder 186, and the blade holder sealing ring 189 and the blade holder 186 are manufactured separately, simplifying the manufacturing process.
[0195] In some embodiments, the mixing cup 37 comprises a cup sealing wall 185 protruding inwardly and laterally from the inner surface of the mixing cup 37, and the blade holder fixing member 188 comprises a blade holder sealing wall 192 extending laterally. The blade holder sealing wall 192 abuts the blade holder sealing ring 189 against the cup sealing wall 185, and the blade holder 186 is clamped between the blade holder sealing wall 192 and the cup sealing wall 185. The cup sealing wall 185 can serve as a positioning element, and can provide a good sealing effect. When the blade holder fixing member 188 is assembled to the mixing cup 37, the blade holder sealing wall 192 and the cup sealing wall 185 tightly clamp the blade holder sealing ring 189, so as to ensure a good sealing effect. The side edges of the blade holder 186 are also clamped between the blade holder sealing wall 192 and the cup sealing wall 185, so that the blade holder 186 can be assembled to the mixing cup 37. The side edges of the blade holder 186 are covered by the blade holder sealing ring 189, so that the upper edge of the blade holder 186 is sealed against the cup sealing wall 185, and the lower edge of the blade holder 186 is sealed against the blade holder sealing wall 192, thereby providing a good overall sealing effect. The blade holder fixing member 188 is in the shape of a cylinder, and the blade holder sealing wall 192 is arranged at the upper end of the blade holder fixing member 188 and extends laterally into the blade holder fixing member 188, and is in the shape of a ring.
[0196] In some embodiments, the juice outlet 24 is arranged on the side wall of the mixing cup 37, and the upper surface of the blade holder 186 is higher than the lowest point of the juice outlet 24, so as to facilitate smooth flow of the slurry. In some embodiments, the middle portion of the blade holder 186 is upwardly protruding relative to the side edges, and the middle portion of the blade holder 186 extends into the mixing cup 37 and forms a cavity for accommodating food materials with the side wall of the mixing cup 37, and the side edges of the blade holder 186 are located outside the cavity and below the cup sealing wall 185. The food materials are above the middle portion of the blade holder 186, and the side edges of the blade holder 186 do not contact the food materials. The upper surface of the middle portion of the blade holder 186 is higher than the lowest point of the juice outlet 24.
[0197] In some embodiments, the bottom end of the stirring cup body 37 is provided with a locking buckle 193, the knife seat 186 is provided with a locking groove 194 and an emptying groove 195, the emptying groove 195 and the locking groove 194 are arranged in the circumferential direction of the knife seat 186 and correspondingly communicated, and the size of the emptying groove 195 in the circumferential direction of the knife seat 186 is greater than the size of the locking buckle 193 in the circumferential direction of the stirring cup body 37. The locking buckle 193 can be screwed into the locking groove 194 from the emptying groove 195. In this way, the disassembly and assembly are convenient, the structure is simple, and the cost is low. When assembling, the emptying groove 195 is open at the top, the locking groove 194 is closed at the top, and one side of the circumferential direction is open and communicated with the emptying groove 195. The locking buckle 193 enters the emptying groove 195 from the top and bottom directions, reaches the bottom wall of the emptying groove 195, and is then screwed into the locking groove 194 and clamped in the locking groove 194. When disassembling, the locking buckle 193 is rotated in the opposite direction, screwed into the emptying groove 195 from the locking groove 194, and separated from the emptying groove 195 from the top of the emptying groove 195. In some embodiments, the locking buckle 193 is a protruding rib extending transversely and inwardly from the bottom edge of the stirring cup body 37. A plurality of locking buckles 193 can be arranged in the circumferential direction, and a plurality of locking grooves 194 and emptying grooves 195 are correspondingly arranged.
[0198] In some embodiments, the knife seat fixing member 188 includes a knife seat assembly portion 196 and a rotating operation portion 197 arranged below the knife seat assembly portion 196. The knife seat 186 is assembled between the knife seat assembly portion 196 and the stirring cup body 37, the knife seat assembly portion 196 is located in the stirring cup body 37, and the rotating operation portion 197 is located outside the stirring cup body 37, and the outer surface of the rotating operation portion 197 is uneven. The knife seat assembly portion 196 is located in the stirring cup body 37, so that the overall height of the stirring cup assembly 13 is relatively low, the rotating operation portion 197 is located outside the stirring cup body 37, and the rotating operation portion 197 is convenient for the user to grasp and operate. The locking groove 194 and the emptying groove 195 are arranged on the knife seat assembly portion 196, and the knife seat sealing wall 192 is arranged at the upper end of the knife seat assembly portion 196. The knife seat assembly portion 196 abuts against the knife seat sealing ring 189 and the knife seat 186 to the stirring cup body 37. The rotating operation portion 197 is located below the knife seat assembly portion 196 and below the stirring cup body 37. The side wall of the rotating operation portion 197 is in the form of a spaced protrusion. In some embodiments, the rotating operation portion 197 protrudes transversely and outwardly relative to the knife seat assembly portion 196, and the rotating operation portion 197 abuts against the lower edge of the stirring cup body 37. The rotating operation portion 197 protrudes transversely and outwardly relative to the lower edge of the stirring cup body 37. The rotating operation portion 197 plays a positioning role, and when the rotating operation portion 197 abuts against the stirring cup body 37, it indicates that the assembly is in place.
[0199] Figure 45The diagram shows a partial perspective view of the main unit 11 and the mixing cup assembly 13. In some embodiments, the main unit 11 includes a mixing cup receiving groove 50 and a spout receiving groove 198 formed in the side wall of the mixing cup receiving groove 50. The bottom of the mixing cup body 37 is located inside the mixing cup receiving groove 50, and the upper end of the mixing cup receiving groove 50 supports the mixing cup body 37. The spout receiving groove 198 opens upward and communicates with the mixing cup receiving groove 50, and the juice dispensing spout 165 is located inside the spout receiving groove 198. The spout receiving groove 198 can serve as an assembly positioning tool, facilitating quick positioning and allowing the user to easily place the mixing cup assembly 13 on the main unit 11, while also protecting the juice dispensing spout 165. The mixing cup receiving groove 50 and the spout receiving groove 198 are located on the main body portion 16. The spout receiving groove 198 is recessed downward from the upper end of the side wall of the mixing cup receiving groove 50, communicating with the inside and outside of the mixing cup receiving groove 50. The spout receiving groove 198 is located on the side of the main body portion 16 facing the juice receiving support portion 17. The drive wheel 171 is located at the bottom of the nozzle receiving slot 198, and the drive wheel 171 can be a full-tooth gear. The motor 21 is located below the mixing cup receiving slot 50, as shown below. Figure 3 As shown, the motor 21 extends axially upwards into the mixing cup receiving groove 50, so that it can be connected to the mixing cup assembly 13.
[0200] Figure 46 The image shown is a partial 3D schematic diagram of the main unit 11. (Reference) Figure 45 and 46 In some embodiments, the main unit 11 includes a shock-absorbing pad 199 disposed at the upper end of the mixing cup receiving groove 50. The mixing cup assembly 13 includes a mixing cup 203 and a juice outlet 165 connected to the mixing cup 203. The mixing cup 203 includes a mixing cup body 37 and a mixing blade assembly 25. The mixing cup 203 is assembled in the mixing cup receiving groove 50 and includes a lower part 200 of the cup body, a waist part 201 of the cup body located above the lower part 200 of the cup body, and an upper part 202 of the cup body located above the waist part 201 of the cup body.
[0201] Combination Figure 3As shown, the lower cup portion 200 is located in the mixing cup receiving groove 50, the upper end of the mixing cup receiving groove 50 supports the waist portion 201 of the cup, the shock pad 199 is located between the upper end of the mixing cup receiving groove 50 and the waist portion 201 of the cup, and the upper cup portion 202 is located above the mixing cup receiving groove 50. The lower cup portion 200 of the mixing cup 203 is located in the mixing cup receiving groove 50, the upper end of the mixing cup receiving groove 50 supports the waist portion 201 of the cup, the shock pad 199 is located between the upper end of the mixing cup receiving groove 50 and the waist portion 201 of the cup, and the main machine 11 supports the waist portion 201 of the cup, so that the flatness of the bottom surface of the mixing cup receiving groove 50 is not required, which is convenient for manufacturing, and the shock pad 199 is provided to make the mixing cup assembly 13 more stable and can also play a role in reducing noise. In some embodiments, the total height of the lower cup portion 200 and the waist portion 201 is lower than the height of the upper cup portion 202. In some embodiments, the side wall of the upper cup portion 202 is the first side wall 181 described above, the side wall of the waist portion 201 is the second side wall 182 described above, and the lower cup portion 200 can include the lower end of the mixing cup 37 and the blade seat fixing member 188 of the mixing blade assembly 25.
[0202] In some embodiments, the juice outlet 165 extends outward from the waist portion 201 of the cup to the outside of the mixing cup 37, and the juice outlet 165 is located low, which is beneficial for juice extraction. The juice outlet 24 is provided on the waist portion 201 of the cup. In some embodiments, the lower cup portion 200 is suspended relative to the bottom surface of the mixing cup receiving groove 50. The bottom surface of the lower cup portion 200 does not contact the bottom surface of the mixing cup receiving groove 50. The bottom surface of the lower cup portion 200 and the bottom surface of the mixing cup receiving groove 50 do not contact, which is beneficial for noise reduction and shock absorption. In some embodiments, the blade seat fixing member 188 of the mixing blade assembly 25 of the lower cup portion 200 is suspended relative to the bottom surface of the mixing cup receiving groove 50 and does not contact the bottom surface of the mixing cup receiving groove 50. In some embodiments, the outer side surface of the lower cup portion 200 does not contact the inner side surface of the mixing cup receiving groove 50, which can better reduce shock and noise.
[0203] In some embodiments, the waist portion 201 of the cup includes a waist side wall 204 and a positioning portion 205 transversely protruding outward from the waist side wall 204. The upper end of the mixing cup receiving groove 50 supports the positioning portion 205, and the shock pad 199 is provided between the upper end of the mixing cup receiving groove 50 and the positioning portion 205. In this way, the mixing cup assembly 13 can be stably supported. The waist side wall 204 can be the second side wall 182. The positioning portion 205 can be in the form of a ring surrounding the waist side wall 204, and the lower surface is a flat surface that can stably abut above the shock pad 199.
[0204] The shock pad 199 is in the form of a ring surrounding the upper end of the mixing cup receiving groove 50 and is supported on the lower surface of the positioning portion 205. For emphasis Figure 45 and 46In some embodiments, the upper end of the stirring cup receiving groove 50 comprises a limiting wall 206 surrounding the outside of the shock pad 199. The upper surface of the shock pad 199 is lower than the upper edge of the limiting wall 206, and the limiting wall 206 surrounds the outside of the positioning portion 205. The limiting wall 206 can prevent the stirring cup assembly 13 from moving radially. The upper surface of the shock pad 199 is lower than the upper edge of the stirring cup receiving groove 50, and the positioning portion 205 is within the upper edge of the stirring cup receiving groove 50, which can limit the movement of the stirring cup assembly 13 in the radial direction.
[0205] In some embodiments, the upper end of the stirring cup receiving groove 50 is concave downward to form a positioning groove 207, and the shock pad 199 is clamped in the positioning groove 207 to firmly fix the shock pad 199. The shock pad 199 can be in interference fit with the positioning groove 207. The outer side wall of the positioning groove 207 can be the limiting wall 206.
[0206] Figure 47 A perspective view of the shock pad 199 is shown. In combination with Figure 47 In some embodiments, the shock pad 199 comprises a shock support portion 208 and a positioning rib 209 protruding downward from the shock support portion 208. The positioning rib 209 is clamped in the positioning groove 207, and the shock support portion 208 is above the positioning groove 207 to support the cup body waist portion 201, thus achieving good fixing effect and simple structure. The positioning rib 209 is in interference fit with the positioning groove 207. The radial dimension of the shock support portion 208 is greater than that of the positioning rib 209, and the circumferential dimension of the shock support portion 208 is greater than that of the positioning rib 209. The shock support portion 208 covers the upper opening of the positioning groove 207, which can prevent the positioning portion 205 from contacting the stirring cup receiving groove 50, improve the shock-absorbing and noise-reducing effect, and reduce the entry of sundries and dust into the positioning groove 207.
[0207] In some embodiments, the bottom wall of the positioning groove 207 is upwardly protruding to form a positioning protrusion 210, and the positioning rib 209 has a positioning gap 211. The positioning protrusion 210 is clamped in the positioning gap 211 and is in limiting fit with the positioning gap 211 in the circumferential direction of the shock pad 199, thus preventing the shock pad 199 from rotating. The positioning protrusion 210 can be opposite to the mouth receiving groove 198 in the radial direction of the stirring cup receiving groove 50. The stirring cup magnetic switch 191 can be arranged in the top end of the stirring cup receiving groove 50, in combination with Figure 35 As shown, the stirring cup magnetic switch 191 can be arranged in the side wall of the stirring cup receiving groove 50. The stirring cup magnetic switch 191 is arranged in the positioning protrusion 210, which can make the stirring cup magnetic switch 191 closer to the stirring cup magnetic member 190.
[0208] In some embodiments, the damping pad 199 includes a limiting portion 212 radially protruding from the damping support portion 208, a side wall of the positioning groove 207 is radially recessed to form a limiting opening 213, the limiting portion 212 is clamped in the limiting opening 213, the limiting portion 212 and the limiting opening 213 are limitedly matched in the circumferential direction of the damping pad 199, and the limiting portion 212 and the limiting opening 213 can prevent the damping pad 199 from rotating. The limiting opening 213 is arranged to allow the cup handle 38 of the stirring cup assembly 13 to pass through, and the limiting opening 213 is opposite to the spout receiving groove 198 in the radial direction of the stirring cup receiving groove 50. In the circumferential direction of the stirring cup receiving groove 50, the limiting opening 213 is arranged outside the positioning protrusion 210, and the positioning protrusion 210 extends into the limiting opening 213. The cup magnetic switch 191 can be arranged at least partially below the limiting opening 213, so as to be opposite to the cup magnetic element 190 arranged at the lower portion of the cup handle 38.
[0209] In some embodiments, the damping pad 199 is in the shape of a ring with a gap 214, and the gap 214 is arranged above the spout receiving groove 198 to avoid the juice spout 165. In this way, the juice spout 165 can enter the spout receiving groove 198, and the stirring cup assembly 13 can be conveniently assembled to the main machine 11. The damping pad 199 is in the shape of a C. The juice spout 165 enters the spout receiving groove 198 from above. The juice spout 165 extends downward beyond the limiting portion 205.
[0210] Figure 48 An enlarged view of a partial region 10j of the food processor 10 is shown. Figure 3 An enlarged view of a partial region 10j of the food processor 10 is shown. In some embodiments, the juice receiving cup assembly 15 includes a juice receiving cup body 29 and a juice receiving cup cover 215 which can be arranged on the juice receiving cup body 29.
[0211] Figure 49 A perspective view of the juice receiving cup body 29 is shown. Figure 50 A perspective view of the juice receiving cup cover 215 is shown. As shown in Figures 48-50 The juice receiving cup body 29 includes a juice receiving opening 28 which is arranged below the juice spout 165. The juice receiving cup cover 215 extends above the juice receiving opening 28 and is arranged opposite to the juice spout 165 to cover the juice spout 165. The juice receiving cup cover of the juice receiving cup assembly 15 is arranged opposite to the juice spout 165 to cover the juice spout 165, which can reduce or prevent the situation that the slurry splashes out due to too high flow rate, and facilitates the juice receiving cup assembly 15 to be quickly placed in the correct position. The juice receiving cup cover 215 is detachably arranged on the juice receiving cup body 29. The juice receiving cup cover 215 has a distance from the juice receiving opening 28, and the juice spout 165 extends between the juice receiving cup cover 215 and the juice receiving opening 28, so that the slurry can be injected into the juice receiving opening 28.
[0212] In some embodiments, the juice outlet 165 comprises a juice outlet end face 216 facing away from the blending cup body 37, the juice outlet end face 216 is further away from the blending cup body 37 in the horizontal direction relative to the juice inlet 28. In this way, the juice outlet 165 extends into the juice inlet 28 in the horizontal direction, so as to reduce or prevent splashing of the slurry. The juice outlet 165 and the juice inlet 28 partially overlap in the horizontal plane.
[0213] In some embodiments, the horizontal distance L3 between the lowest point of the juice outlet end face 216 and the point of the juice inlet 28 closest to the blending cup body 37 in the horizontal direction ranges from 5mm to 20mm, so as to effectively reduce or prevent splashing of the slurry. The projection of the lowest point of the juice outlet end face 216 in the horizontal plane is located within the juice inlet 28, so as to prevent the slurry from flowing out of the juice inlet 28. The juice outlet end face 216 is inclined downward from top to bottom towards the blending cup assembly 13, the projection of the lowest point of the juice outlet end face 216 in the horizontal plane is located within the juice inlet 28, so that the projection of the juice outlet end face 216 in the horizontal plane is located within the juice inlet 28. In some embodiments, the juice inlet 28 has a gap with the juice outlet 165 in the vertical direction, so as to facilitate the placement and removal of the juice cup assembly 15. The juice inlet 28 and the juice outlet 165 have a certain space in the vertical direction.
[0214] In some embodiments, the juice cup cover 215 comprises a juice cover body 217 and a juice outlet 218 connected to the juice cover body 217, the juice outlet 218 extends laterally outward and upward from the juice cover body 217, covers above the juice outlet 165 and interfaces with the juice outlet 165. When the juice cup assembly 15 is placed on the juice support 17, the juice outlet 218 and the juice outlet 165 are in position and cooperate. The juice outlet 218 can play a role in guiding the flow, reducing or preventing the situation of splashing out due to too fast flow of the slurry. The juice outlet 218 extends towards the blending cup assembly 13 and upward, so as to cover above the juice outlet 165 and interface with the end of the juice outlet 165 away from the blending cup assembly 13, and the juice outlet end face 216 is below the juice outlet 218. In some embodiments, the juice outlet 218 and the juice outlet 165 partially overlap in the horizontal direction, so as to better play a role in guiding the flow and preventing splashing. The end of the juice outlet 165 away from the blending cup assembly 13 and the projection of the juice outlet 218 in the horizontal plane overlap.
[0215] In some embodiments, the interface between the juice outlet 218 and the juice outlet 165 is higher than the top surface of the juice cover body 217, the juice outlet 218 extends to a height, so as to better play a role in guiding the flow. The juice outlet 218 extends upward beyond the top surface of the juice cover body 217. In some embodiments, the inner surface of the juice outlet 218 is a smooth curved surface downward from top to bottom, the slurry flows smoothly along the inner surface of the juice outlet 218, so as to have a good guiding effect and the slurry is not easy to splash against the inner surface of the juice outlet 218.
[0216] In some embodiments, the juice receiving spout 218 partially covers the juice dispensing spout 165 in the circumferential direction. The spout 218 covers the top and sides of the juice dispensing spout 165, partially enclosing it, but may not cover the bottom of the spout. This effectively prevents splashing and facilitates the removal and installation of the juice cup lid. In some embodiments, the spout 218 extends in an arc shape in the circumferential direction of the juice dispensing spout 165. The spout 218 can well surround a portion of the juice dispensing spout 165, effectively preventing splashing. The juice dispensing spout 165 is cylindrical. The spout 218 may be arched.
[0217] Figure 51 The diagram shows another perspective view of the juice cup lid 215. The juice cup lid 215 includes a lid positioning rib 219 protruding from the juice cup body 217. The lid positioning rib 219 is arc-shaped and extends into the mouth of the juice cup body 29, where it is positioned and engaged with the mouth of the juice cup body 29.
[0218] Figure 52 The diagram shown is a perspective view of another embodiment of the food processor 10. Figure 53 As shown Figure 52 A cross-sectional view of the food processor 10 along line EE. Figure 54 As shown Figure 52 An exploded view of the food processor 10 shown. Figure 55 As shown Figure 52 A magnified view of a portion 10k of the food processor 10 shown. Figures 52-55 The illustrated embodiments are similar to Figures 1-51 The illustrated embodiment, compared to Figures 1-51 The embodiment shown, Figures 52-55 In the illustrated embodiment, the mixing cup assembly 13 includes a mixing cup body 37 and a mixing cup lid 220 that can cover the mixing cup body 37. The mixing cup lid 220 includes a water inlet hole 221 that extends vertically. A flip-top lid assembly 59 can be placed on the mixing cup lid 220, and the water inlet pipe 60 is connected to the water inlet hole 221. The flip-top lid assembly 59 is located above the mixing cup lid 220, which covers the opening of the mixing cup body 37. Water is injected into the mixing cup body 37 through the water inlet pipe 60 and the water inlet hole 221.
[0219] The turnover lid assembly 59 is rotatably connected to the main body 16 and can cover the stirring cup lid 220. The water inlet pipe 60 of the turnover lid assembly 59 can supply water into the stirring cup body 37 through the water inlet hole 221 of the stirring cup lid 220. Thus, the water is supplied from above the stirring cup body 37, which can simplify the structure of the blade seat at the bottom of the stirring cup body 37, thereby facilitating the cleaning of the stirring cup body 37. In addition, the area of the turnover lid assembly 59 in contact with the food is small, and the turnover lid assembly 59 is easy to clean. The turnover lid assembly 59 is rotatably connected to the main body 16, and the turnover lid assembly 59 can be turned over, covered or opened. The turnover lid assembly 59 and the stirring cup lid 220 can be designed separately, so that the stirring cup lid 220 can be cleaned separately. When the turnover lid assembly 59 is opened, the stirring cup lid 220 can cover the stirring cup body 37, so that the application scenarios are more, for example, the stirring cup assembly 13 can be taken out to pour the soup, and the stirring cup lid 220 can prevent the soup from splashing outside and can play a dustproof role. In addition, the turnover lid assembly 59 and the stirring cup lid 220 can be designed separately, so that the structure of the stirring cup lid 220 can be designed to be relatively simple, and the structure of the turnover lid assembly 59 is also relatively simple, thereby the overall structure is simple and the cost is low. In addition, the stirring cup lid 220 covers the stirring cup body 37, and the turnover lid assembly 59 can not need the hinge assembly 61 described above, so the structure of the embodiment is simpler and the cost is lower. In some other embodiments, the hinge assembly 61 described above can be used in the embodiment shown in the drawings. Figures 52-55
[0220] In some embodiments, the stirring cup lid 220 is partially located outside the turnover lid assembly 59 in the radial direction. The turnover lid assembly 59 does not completely cover the stirring cup lid 220, and the size of the turnover lid assembly 59 is small, which is convenient for cleaning and low in cost.
[0221] In some embodiments, the maximum dimension L4 of the turnover lid assembly 59 in the rotation axis direction is smaller than the maximum dimension L5 of the upper end of the main body portion 16 in the rotation axis direction. The rotation axis direction is the extension direction of the rotation axis 87 described above. The turnover lid assembly 59 is small in size, facilitating cleaning and reducing cost. The turnover lid assembly 59 extends into the upper end of the main body portion 16 and is rotationally connected to the upper end of the main body portion 16. The width of the turnover lid assembly 59 is smaller than the width of the upper end of the main body portion 16. The turnover lid assembly 59 can be in the shape of a long strip. In some embodiments, the maximum dimension L4 of the upper surface of the turnover lid assembly 59 in the rotation axis direction is smaller than the maximum dimension L6 in the direction perpendicular to the rotation axis direction. The upper surface of the turnover lid assembly 59 is substantially in the shape of a long strip, with the length extending transversely to the stirring cup body 37 being greater than the width in the rotation axis direction. The turnover lid assembly 59 is small in size in the rotation axis direction and relatively small in size in the direction perpendicular to the rotation axis direction, so as to ensure that the turnover lid assembly 59 extends above the stirring cup body 37 for water to be poured into the stirring cup body 37 while the size of the turnover lid assembly 59 is as small as possible, thereby facilitating cleaning and reducing cost. In some embodiments, the size of the turnover lid assembly 59 in the rotation axis direction is smaller than the minimum diameter of the stirring cup cover 220. The turnover lid assembly 59 is small in size, thereby facilitating cleaning and reducing cost.
[0222] In some embodiments, the stirring cup cover 220 is provided with a downwardly recessed recess 222, and the water inlet through hole 221 is arranged in the recess 222 and extends into the recess 222 when the turnover lid assembly 59 is closed. The turnover lid assembly 59 and the stirring cup cover 220 are more stably assembled, and the overall height is lower. The water inlet through hole 221 penetrates the bottom wall of the recess 222. When the turnover lid assembly 59 is closed, the bottom of the turnover lid assembly 59 is located in the recess 222, and the top surface of the turnover lid assembly 59 is higher than the top surface of the stirring cup cover 220. In other embodiments, the top surface of the turnover lid assembly 59 can not exceed the top surface of the stirring cup cover 220 when the turnover lid assembly 59 is closed. When the turnover lid assembly 59 is closed, the water inlet pipe 60 is in sealing abutment with the stirring cup cover 220.
[0223] In some embodiments, the stirring cup cover 220 includes an exhaust through hole 125 extending through the stirring cup cover 220 from top to bottom, and when the turnover lid assembly 59 is closed, the orthographic projection of the exhaust through hole 125 on the cross section of the food processor 10 is located outside the orthographic projection of the turnover lid assembly 59 on the cross section of the food processor 10. The orthographic projection of the exhaust through hole 125 in the horizontal plane is located outside the orthographic projection of the turnover lid assembly 59 in the horizontal plane, and the turnover lid assembly 59 does not cover the exhaust through hole 125. The exhaust through hole 125 can exhaust air in the cup during stirring, and the exhaust through hole 125 communicates the inside of the cup with the outside of the cup, so that the air pressure in the cup is consistent with the air pressure outside the cup, which is conducive to smooth pulp discharge.
[0224] In some embodiments, when the flip-top assembly 59 is closed, the center of the orthographic projection of the mixing cup lid 220 onto the cross-section of the blender 10 is located outside the orthographic projection of the flip-top assembly 59 onto the cross-section of the blender 10, and the water inlet vent 221 is located between the center of the mixing cup lid 220 and the water tank. The flip-top assembly 59 does not extend to the center of the mixing cup lid 220, has a shorter extension length, a smaller size, and lower cost. The vent 125 may be located in the central region of the mixing cup lid 220.
[0225] Figures 52-55 The food processor 10 shown is similar to Figures 1-51 The above description only covers the main differences of the food processor 10 shown. For other structural and functional details, please refer to the description above. Figures 1-51 The detailed description of the illustrated embodiments will not be repeated here.
[0226] Figure 56 The diagram shown is a perspective view of another embodiment of the food processor 10. Figure 57 As shown Figure 56 A cross-sectional view of the food processor 10 along line DD. Figure 58 As shown Figure 56 An exploded view of the food processor 10 shown. Figure 59 As shown Figure 56 The above is a front view of the food processor 10. The main unit 11 includes a main body 16 and a juice receiving support 17 located on the front side of the main body 16. A water tank 12 is located on the rear side of the main body 16. The water tank 12 is located on the side of the main body 16 opposite to the juice receiving support 17. A blending cup assembly 13 is detachably assembled to the main body 16 and includes a blending cup body 37 and a cup handle 38 connected to the side wall of the blending cup body 37. The side wall of the blending cup body 37 has a juice outlet 24 facing the front side of the main body 16 and towards the juice receiving support 17. The cup handle 38 is located on the left or right side of the main body 16. The cup handle 38 is located on the side of the main body 16 adjacent to the juice receiving support 17. A water supply assembly 14 is located on the main unit 11 and connected to the water tank 12 for supplying water from the water tank 12 to the blending cup assembly 13. The juice receiving cup assembly 15 is detachably disposed on the juice receiving support 17 and includes a juice receiving port 28. The juice receiving cup assembly 15 is used to receive the slurry flowing out of the juice outlet 24 through the juice receiving port 28.
[0227] Figures 56-59 The illustrated embodiments are similar to Figures 1-51 The illustrated embodiment, compared to Figures 1-51 The embodiment shown, Figures 56-59In the illustrated embodiment, the juice receiving support 17 and the water tank 12 are disposed opposite each other on opposite sides of the main body 16. The juice receiving support 17 is disposed on the front side of the main body 16, and the water tank 12 is disposed on the rear side of the main body 16, arranged in a straight line in the front-back direction. The juice receiving cup assembly 15 and the water tank are located on opposite sides of the main body 16. Thus, the juice receiving cup assembly 15 and the water tank are located on opposite sides of the mixing cup assembly 13, thereby reducing the overall packaging size and lowering costs. The mixing cup assembly 13 is detachably assembled to the main body 11. The mixing cup assembly 13 can be removed for cleaning. If automatic cleaning is insufficient, it can be removed for cleaning, thus facilitating cleaning. In addition, the cup handle 38 of the mixing cup assembly 13 is located on the left or right side of the main body 16, thereby making it convenient for the user to grasp the cup handle and take out the mixing cup assembly 13.
[0228] Figure 60 As shown Figure 56 A three-dimensional schematic diagram of the mixing cup assembly 13 of the food processor 10 shown. Figure 61 As shown Figure 60 A three-dimensional schematic diagram of the mixing cup assembly 13 from another angle. (Reference) Figures 56-61 In some embodiments, the sidewall of the stirring cup 37 between the cup handle 38 and the juice outlet 24 has an arc greater than 0 degrees and not exceeding 90 degrees in the horizontal plane, making it more convenient for the user to operate. In orthographic projection in the horizontal plane, the arc of the sidewall of the stirring cup 37 from the cup handle 38 to the juice outlet 24 has an arc greater than 0 degrees and not exceeding 90 degrees.
[0229] In some embodiments, the cup handle 38 extends from the mixing cup body 37 toward the right side of the main body 16 for easy right-hand operation. Viewed from the front of the main body 16, the cup handle 38 is located on the right side of the main body 16.
[0230] In some embodiments, the mixing cup assembly 13 includes a juice outlet 165 connected to the mixing cup body 37. The juice outlet 165 communicates with the juice outlet 24 and extends toward the juice receiving port 28. The juice outlet 165 is integrally formed with the mixing cup body 37. The integral formation of the juice outlet 165 with the mixing cup body 37 results in a simple structure, low cost, and solves the problem of leakage due to poor sealing when the components are separate, reducing assembly and processing steps. The juice outlet 165 extends forward of the main body 16.
[0231] In some embodiments, the blender 10 includes a juice valve assembly 166, which includes a valve core 167 housed within a juice nozzle 165 and a valve drive assembly 168 connected to the valve core 167. The valve drive assembly 168 is located on the main unit 11 and is used to drive the valve core 167 to move. The juice nozzle 165 is integrally formed with the blending cup body 37, allowing the valve core 167 to be closer to the blending cup body 37, which is more conducive to juice dispensing. Furthermore, since the valve drive assembly 168 is located on the main unit 11, the blending cup assembly 13 may not include electrical components, thereby facilitating cleaning of the blending cup assembly 13 and enabling it to be fully washable.
[0232] In some embodiments, the water inlet of the water delivery assembly 14 is in communication with the water tank 12, the water delivery assembly 14 extends to the upper end of the blending cup assembly 13, and the water outlet of the water delivery assembly 14 is in communication with the cup mouth of the blending cup assembly 13. Water is supplied from above the blending cup assembly 13, and the bottom of the blending cup assembly 13 has a simple blade seat structure, thereby facilitating cleaning. In some embodiments, the main machine 11 includes a flip cover assembly 59 rotatably connected to the main body 16, the flip cover assembly 59 can cover the cup mouth of the blending cup assembly 13, and the flip cover assembly 59 includes a water inlet pipe 60, and the water outlet of the water delivery assembly 14 is connected to the water inlet pipe 60. When the flip cover assembly 59 is closed, the water outlet of the water delivery assembly 14 is in communication with the cup mouth of the blending cup assembly 13 through the water inlet pipe 60. The water inlet pipe 60 of the flip cover assembly 59 can be used to well connect the water delivery assembly 14 and the cup mouth of the blending cup assembly 13, to ensure smooth water supply to the blending cup assembly 13, and the flip cover assembly 59 can be rotated to open and close relative to the blending cup assembly 13, thereby facilitating switching between the state of covering the blending cup assembly 13 for water supply and the state of opening to take out the blending cup assembly 13.
[0233] In some embodiments, the blending cup assembly 13 includes a blending cup cover 220 that can cover the blending cup body 37, the blending cup cover 220 includes a water inlet through hole 221 that penetrates from top to bottom, the flip cover assembly 59 can cover the blending cup cover 220, and the water inlet pipe 60 is in communication with the water inlet through hole 221. The flip cover assembly 59 is rotatably connected to the main body 16 and can cover the blending cup cover 220, the water inlet pipe 60 of the flip cover assembly 59 supplies water into the blending cup body 37 through the water inlet through hole 221 of the blending cup cover 220, thereby reducing the area of the flip cover assembly 59 that contacts food materials and facilitating cleaning; the flip cover assembly 59 and the blending cup cover 220 can be designed separately, the blending cup cover 220 can cover the blending cup body 37 when the flip cover assembly 59 is opened, thereby providing more application scenarios, for example, the blending cup assembly 13 can be taken out to pour the slurry, and the blending cup cover can prevent the slurry from splashing outside and can also play a dustproof role.
[0234] In other embodiments, the flip cover assembly 59 can be similar to the flip cover assembly 59 of the embodiment shown in Figures 1-51 When the flip cover assembly 59 is closed, the flip cover assembly 59 covers the cup mouth of the blending cup assembly 13 and is sealedly assembled with the cup mouth. The flip cover assembly 59 can cover the cup mouth of the blending cup assembly 13, can supply water, and can also serve as a cup cover, thereby reducing the number of components on the upper part of the food processor 10 and simplifying the structure.
[0235] In some embodiments, the main machine 11 includes a hinge assembly 61 connecting the main body 16 and the flip cover assembly 59, and the relevant description of the hinge assembly 61 can be referred to the relevant description described above, which will not be repeated here.
[0236] In some embodiments, the stirring cup assembly 13 comprises a cup magnetic element 190 arranged at the lower portion of the cup handle 38, and the main machine 11 comprises a cup magnetic switch 191 arranged at the main body 16, which is similar to the cup magnetic switch 191 described above. When the stirring cup assembly 13 is assembled to the main body 16, the cup magnetic element 190 is located within the sensing range of the cup magnetic switch 191, and the cup magnetic switch 191 is closed. The cup magnetic element 190 arranged at the lower portion of the cup handle 38 does not affect the appearance of the stirring cup assembly 13, and the structure is simple.
[0237] Figures 56-61 The embodiments shown are similar to Figures 1-51 the embodiments shown, and are also similar to Figures 52-55 the embodiments shown, and the relevant structures and functions are described in detail above, and will not be described here again.
[0238] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle 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 blender, which comprises: a main body (11); a water tank (12) arranged on one side of the main body (11); a stirring cup assembly (13) detachably arranged on the main body (11) and comprising a stirring cup body (37) and a juice outlet nozzle (165) connected to the stirring cup body (37), the stirring cup body (37) comprising a juice outlet opening (24), and the juice outlet nozzle (165) being in communication with the juice outlet opening (24) and extending away from the stirring cup body (37) from the juice outlet opening (24); a juice outlet valve assembly (166) comprising a valve core (167) accommodated in the juice outlet nozzle (165) and a valve drive assembly (168) connected to the valve core (167), the valve drive assembly (168) being arranged on the main body (11) and used for driving the valve core (167) to move; a water conveying assembly (14) arranged on the main body (11) and connected to the water tank (12) and used for conveying water in the water tank (12) to the stirring cup assembly (13); and a juice receiving cup assembly (15) arranged on one side of the main body (11) and comprising a juice receiving opening (28), the juice receiving cup assembly (15) being used for receiving slurry flowing out of the juice outlet opening (24) through the juice receiving opening (28). The main body (11) comprises a juice receiving support portion (17), the juice receiving cup assembly (15) is detachably arranged on the juice receiving support portion (17), the juice receiving cup assembly (15) comprises a juice receiving cup body (29), a heating assembly (30) and a juice receiving cup coupler (31), the heating assembly (30) is electrically connected to the juice receiving cup coupler (31), the heating assembly (30) and the juice receiving cup coupler (31) are arranged on the bottom of the juice receiving cup body (29), and the juice receiving support portion (17) is provided with a main body coupler (32), the main body coupler (32) and the juice receiving cup coupler (31) are plug-in connectable.
2. The food processor of claim 1, wherein, The juice outlet nozzle (165) is integrally formed with the stirring cup body (37).
3. The food processor of claim 1, wherein, The valve drive assembly (168) comprises a valve motor (169) arranged in the main body (11), the valve motor (169) comprises a valve motor shaft (170) connected to the valve core (167), the valve motor shaft (170) is staggered with the valve core (167) in the length direction of the juice outlet nozzle (165), and the valve core (167) is closer to the juice outlet opening (24) than the valve motor shaft (170) in the length direction of the juice outlet nozzle (165).
4. The food processor of claim 3, wherein, The valve drive assembly (168) comprises a drive wheel (171) connected to the valve motor shaft (170), the drive wheel (171) is arranged on the main body (11), the juice outlet valve assembly (166) comprises a driven wheel (172) connected to the valve core (167), the driven wheel (172) is arranged on the juice outlet nozzle (165), and the driven wheel (172) is in mesh with the drive wheel (171).
5. The food processor of claim 4, wherein, The driven gear (172) is a non-full tooth gear, and the tooth back of the driven gear (172) is directed to the stirring cup body (37); and / or The valve driving assembly (168) comprises a transmission shaft (173) connected with the valve motor shaft (170) and the driving gear (171); and / or The stirring cup assembly (13) is detachably assembled to the main machine (11), and the driven gear (172) and the driving gear (171) are detachably engaged; and / or The driven gear (172) is located below the juice outlet nozzle (165), and the valve driving assembly (168) is located below the juice outlet nozzle (165).
6. The food processor of claim 3, wherein, The extension direction of the valve motor shaft (170) is inclined relative to the axial direction of the stirring cup assembly (13), and is inclined away from the juice outlet (24) in the direction from the valve motor (169) to the juice outlet nozzle (165).
7. The food processor of claim 3, wherein, The valve driving assembly (168) comprises a valve magnetic part (179) connected with the valve motor shaft (170) and a valve inductive magnetic switch (180) fixed relative to the main machine (11), the valve magnetic part (179) and the valve motor shaft (170) move synchronously, and the valve inductive magnetic switch (180) is used for inducting the magnetic field of the valve magnetic part (179).
8. The food processor of claim 7, wherein, The valve driving assembly (168) comprises a transmission shaft (173) connected with the valve motor shaft (170), and the valve magnetic part (179) is arranged on the transmission shaft (173).
9. The food processor of claim 1, wherein, The juice valve assembly (166) comprises a valve sealing part (174) sealing between the juice outlet nozzle (165) and the valve core (167) and sealing between the periphery of the juice outlet (24) and the valve core (167), one end of the valve sealing part (174) close to the juice outlet (24) is provided with a sealing clamping rib (175), one end of the juice outlet nozzle (165) close to the juice outlet (24) is provided with a juice clamping groove (176), and the sealing clamping rib (175) is clamped in the juice clamping groove (176).
10. The food processor of claim 1, wherein, The main machine (11) comprises a main body part (16) and a juice receiving support part (17) connected with the main body part (16), the stirring cup assembly (13) is detachably arranged on the main body part (16), the juice receiving support part (17) is arranged on the left side or the right side of the main body part (16), and the water tank (12) is arranged on the rear side of the main body part (16); and / or The main machine (11) comprises a stirring cup accommodating groove (50) and a nozzle accommodating groove (198) arranged on the side wall of the stirring cup accommodating groove (50), the bottom of the stirring cup body (37) is located in the stirring cup accommodating groove (50), the upper end of the stirring cup accommodating groove (50) supports the stirring cup body (37), the nozzle accommodating groove (198) is upwardly open and communicates with the stirring cup accommodating groove (50), and the juice outlet nozzle (165) is located in the nozzle accommodating groove (198).
Citation Information
Patent Citations
Food processing cup assembly and food processing machine
CN213248624U
Food processor
CN215914290U