Food processor with compact structure
By setting up the blending chamber and the placement chamber side by side from top to bottom in the food processor, the water tank and blending mechanism are hidden in the layout, and the design of the receiving cup and heating plate is combined to solve the problem of the large size of the food processor, achieving the effect of compactness and reduced noise.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-26
- Publication Date
- 2026-04-03
AI Technical Summary
The existing food processors have their wastewater tank and blending cup arranged side by side on the same horizontal plane, resulting in a large size that cannot be made compact.
The food processor features a blending chamber and a settling chamber arranged side-by-side from top to bottom. The blending mechanism and water tank are located in different mounting sections. The water tank has a concealed layout and receives the blended liquid through a receiving cup. Combined with the design of a concealed lid and heating plate, space utilization is optimized.
This design achieves a compact food processor, reducing noise, saving space, and improving ease of operation and overall machine compactness.
Smart Images

Figure CN224070261U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of food processor technology, and in particular to a food processor with a compact structure. Background Technology
[0002] The main functions of food processors on the market today include making soy milk, grinding dry powders, juicing, mincing meat, shaved ice, making coffee, and preparing beauty masks for women. When using a food processor, food is placed in the blending cup, and clean water from the water tank is discharged into the blending cup. Wastewater generated after rinsing is discharged into a wastewater tank. However, in existing technology, the wastewater tank and blending cup are arranged side-by-side on the same horizontal plane on the machine, resulting in a relatively large size. Utility Model Content
[0003] To address at least one problem existing in the prior art, according to one aspect of the present invention, a compact food processor is provided, comprising:
[0004] The host includes a first mounting part and a second mounting part arranged side by side along the X direction. The first mounting part is provided with a grinding chamber and a placement chamber from top to bottom along the Y direction. The second mounting part is provided with a support surface.
[0005] A grinding module, disposed in the grinding chamber, includes a grinding cup and a grinding mechanism disposed on the grinding cup, the grinding mechanism being used to grind the food in the grinding cup;
[0006] A water tank is disposed in the placement cavity;
[0007] A slurry receiving cup is disposed on the supporting surface and is supported by the second mounting part.
[0008] In some embodiments, the compact food processor also includes a lid that is detachably mounted on the top of the first mounting portion and the blending cup, for opening or closing the first mounting portion and its opening.
[0009] In some embodiments, the cup lid includes:
[0010] Cover the main body;
[0011] A sliding sealing structure is slidably disposed on the cover body along the X direction, used to open or close the openings of the first mounting part and the mixing cup;
[0012] The pressing structure is slidably disposed on the cover body along the Y direction and slidably engaged with the sliding sealing structure to receive external force;
[0013] A locking structure is installed on the cover body and is disposed opposite to the pressing structure, for locking or unlocking the pressing structure;
[0014] Under the action of an external force in the Y direction, the pressing structure can drive the sliding sealing structure to slide in the X direction, so that the sliding sealing structure can seal the opening of the first mounting part and the blending cup, and the locking structure can lock the pressing structure; or under the action of an external force in the Y direction, the locking structure can unlock the pressing structure, so that the pressing structure is released from its cooperation with the sliding sealing structure, and the sliding sealing structure can open the opening of the first mounting part and the blending cup.
[0015] In some embodiments, when the pressing structure is in the locked state, the upper end face of the pressing structure along the Y direction is flush with the upper end face of the cover body along the Y direction, or the upper end face of the pressing structure along the Y direction is hidden in the upper end face of the cover body.
[0016] In some embodiments, the cover body includes an upper cover portion, a lower sealing portion, and a sealing ring. The outer diameter of the upper cover portion is larger than the outer diameter of the lower sealing portion. The upper cover portion is used to open or close the first mounting portion, the lower sealing portion is used to open or close the blending cup, and the sealing ring is sleeved on the lower sealing portion.
[0017] In some embodiments, the first mounting portion includes an outer shell and an inner shell arranged side by side along the X direction, with an air gap formed between the outer shell and the inner shell.
[0018] In some embodiments, the second mounting portion is provided with a mounting cavity;
[0019] The compact food processor also includes a heating plate, which is located in the mounting cavity and corresponding to the support surface, for heating the receiving cup.
[0020] In some embodiments, the blending mechanism further includes a handle, which is rotatably configured with the blending cup and has the same shape as the opening of the blending cup.
[0021] In some embodiments, the receiving cup includes a cup body and a lid that fits onto the cup body;
[0022] The cover is provided with a receiving structure that is in contact with the mixing cup. The receiving structure extends upward at an angle away from the center of the receiving cup and forms a receiving channel.
[0023] In some embodiments, the height and volume of the pulverizing chamber are both greater than the height and volume of the placement chamber.
[0024] In summary, the compact food processor provided by this utility model has the following technical effects:
[0025] When setting up the grinding module and water tank, the grinding chamber and placement chamber are arranged side by side from top to bottom in the first mounting part. The grinding mechanism is placed in the grinding chamber and the water tank is placed in the placement chamber, making full use of the spare space inside the machine. The water tank has a hidden layout, avoiding the expansion of the machine's space occupation by arranging them side by side in the X direction, thus achieving a compact layout of the entire machine. Furthermore, the integrated design of the grinding mechanism and grinding cup reduces the noise of the grinding mechanism during operation. When storing the whole machine, the grinding module can be removed from the main unit and placed separately. In addition, by setting up a receiving cup, the slurry after the food is ground can be received. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the structure of a compact food processor according to an embodiment of the present invention;
[0027] Figure 2 for Figure 1 A partial cross-sectional diagram of a compact food processor;
[0028] Figure 3 for Figure 1 A schematic diagram of the host's structure;
[0029] Figure 4 for Figure 1 A schematic diagram of the structure of the grinding module in the middle;
[0030] Figure 5 for Figure 1 A schematic diagram of the receiving cup in the middle;
[0031] Figure 6 for Figure 2 An enlarged schematic diagram of point I in the diagram;
[0032] Figure 7 for Figure 6 A diagram illustrating one usage state of the cup lid;
[0033] Figure 8 for Figure 6 A diagram illustrating another usage configuration of the cup lid;
[0034] Figure 9 for Figure 7 Enlarged schematic diagram of point II in the diagram.
[0035] Attached Figures: 100 - Compact food processor; 10 - Main unit; 11 - First mounting section; 111 - Blending chamber; 112 - Placement chamber; 113 - Outer shell; 114 - Inner shell; 12 - Second mounting section; 121 - Support surface; 122 - Mounting cavity; 13 - Locking notch; 20 - Blending module; 21 - Blending cup; 22 - Blending mechanism; 221 - Blending blade; 222 - Drive motor; 23 - Handle; 30 - Water tank; 40 - Serving cup; 41 - Cup body; 42 - Lid; 43 - Serving structure; 431 - Serving channel; 50 - Heating plate; 60 - Cup lid; 61 - Lid Main body, 611-Upper cover fitting, 612-Lower sealing part, 613-Sealing ring, 614-Mounting sleeve, 615-Holding block, 616-Avoiding notch, 617-Guide sleeve, 62-Sliding sealing structure, 621-Third mating slope, 622-Sliding buckle, 6221-Receiving cavity, 623-Second elastic element, 624-Fourth mating slope, 63-Pressing structure, 631-Pressing buckle, 6311-Outer mating sleeve, 6311a-Second mating slope, 6312-Locking head, 6312a-First mating slope, 632-First elastic element, 64-Locking structure. Detailed Implementation
[0036] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings.
[0037] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0038] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
[0039] The present invention will now be described in further detail with reference to the accompanying drawings.
[0040] Please see Figures 1 to 9 The compact food processor 100 provided in this embodiment of the present invention includes a main unit 10, a blending module 20, a water tank 30, and a receiving cup 40.
[0041] Please refer to Figures 1 to 3 The main unit 10 includes a first mounting part 11 and a second mounting part 12 arranged side by side along the X direction. The first mounting part 11 is provided with a grinding chamber 111 and a placement chamber 112 from top to bottom along the Y direction. The second mounting part 12 is provided with a support surface 121. The grinding module 20 is provided in the grinding chamber 111 and includes a grinding cup 21 and a grinding mechanism 22 provided on the grinding cup 21. The grinding mechanism 22 is used to grind the food in the grinding cup 21. The water tank 30 is provided in the placement chamber 112. The receiving cup 40 is provided on the support surface 121 and is supported by the second mounting part 12.
[0042] The aforementioned compact food processor 100, when setting up the blending module 20 and the water tank 30, utilizes the spare space inside the machine by setting up a blending chamber 111 and a placement chamber 112 arranged side by side from top to bottom in the first mounting part 11. The blending mechanism 22 is placed in the blending chamber 111 and the water tank 30 is placed in the placement chamber 112. The water tank 30 is hidden, avoiding the expansion of the machine's space occupied by the X-direction side-by-side arrangement, thus achieving a compact layout of the entire machine. Furthermore, the integrated design of the blending mechanism 22 and the blending cup 21 reduces the noise of the blending mechanism 22 during operation. When storing the entire machine, the blending module 20 can be removed from the main unit 10 and placed separately. In addition, by setting up the receiving cup 40, the slurry after the food is blended can be received.
[0043] Understandably, in some embodiments, the water tank 30 is configured to hold clean water, while in other embodiments, the water tank 30 can be used to hold dirty water after washing food, and the clean water can be poured separately into the blending cup 21.
[0044] Furthermore, in order to avoid the water tank 30 occupying too much space, the height and volume of the churning chamber 111 are both greater than the height and volume of the placement chamber 112. In this way, the water tank 30 occupies less space, thereby enabling the entire host 10 to occupy less space.
[0045] The grinding mechanism 22 includes a grinding blade 221 and a drive motor 222. The grinding blade 221 is disposed inside the grinding cup 21, and the drive motor 222 is disposed at the bottom of the grinding cup 21 and connected to the grinding blade 221 to drive the grinding blade 221 to rotate, thereby grinding the food inside the grinding cup 21. Since the grinding blade 221 and the drive motor 222 are disposed as a single unit inside the grinding cup 21, they do not need to be reconnected during use, thus reducing the noise generated during operation.
[0046] Further, please refer to Figure 4To facilitate the removal of the grinding module 20 from the main unit 10 for cleaning the grinding cup 21, the grinding mechanism 22 also includes a handle 23. The handle 23 is rotatably configured with the grinding cup 21 and has the same shape as the cup opening of the grinding cup 21. Thus, the rotatable handle 23 is configured so that when the grinding cup 21 is placed on the main unit 10 for use, since the shape of the handle 23 is the same as the shape of the cup opening of the grinding cup 21, it can be rotated to one side of the grinding cup 21 and supported by the grinding cup 21, without occupying the radial space of the grinding module 20, thereby achieving a compact structure when the grinding mechanism 22 is applied to the main unit 10.
[0047] In this embodiment, the handle 23 can be made of metal to ensure the structural strength of the handle 23.
[0048] Please see Figures 1 to 3 When the first mounting part 11 is installed, it includes an outer shell 113 and an inner shell 114 arranged side by side, and an air gap is formed between the outer shell 113 and the inner shell 114. In this way, by forming an air gap between the first mounting parts 11, the air gap can reduce the noise generated by the pulverizing mechanism 22 during operation, thereby achieving the effect of noise reduction.
[0049] Please see Figure 1 and Figure 3 In one embodiment of this utility model, the grinding module 20 is only used to grind food. In order to provide food diversity, the second mounting part 12 is provided with a mounting cavity 122. The compact food processor 100 also includes a heating plate 50, which is located in the mounting cavity 122 and is set corresponding to the support surface 121. It is used to heat the slurry received by the slurry cup 40. By setting the heating plate 50, when the user makes juice, the heating function of the heating plate 50 can be turned off. When the user needs to make soy milk, the heating function of the heating plate 50 can be turned on to heat the food and meet the cooking needs of different foods.
[0050] Furthermore, by placing the heating plate 50 on the second mounting part 12, rather than placing the heating plate 50 on the bottom of the blending cup 21, the space occupied by the heating plate 50 in the overall height of the machine can be saved, and the overall machine can be made more compact in the height direction.
[0051] Please see Figure 5In one embodiment of this utility model, the receiving cup 40 includes a cup body 41 and a cover 42 that fits onto the cup body 41. The cover 42 is provided with a receiving structure 43 that is connected to the crushing cup 21. The receiving structure 43 extends upward at an inclination away from the center of the receiving cup 40 and forms a receiving channel 431. Thus, the structure of the entire receiving cup 40 is simple, including only the cup body 41 and the cover 42. The structure is simple and easy to produce. At the same time, the receiving structure 43 is provided on the cover 42 at an inclination upward so that it can be connected to the crushing cup 21 to receive the crushed slurry.
[0052] Further, please refer to Figures 1 to 3 And 6 of Figure 9 To prevent food from spilling during the blending process, the compact food processor 100 also includes a lid 60. The lid 60 is detachably mounted on the top of the first mounting part 11 and the blending cup 21. It is used to open or close the opening of the first mounting part 11. That is, when the lid 42 is in use, it can not only close the blending cup 21, but also simultaneously seal the first mounting part 11, thus closing both and preventing dust and other impurities from entering the first mounting part 11.
[0053] Specifically, the cup lid 60 includes: a lid body 61; a sliding sealing structure 62, slidably disposed on the lid body 61 in the X direction, for opening or closing the openings of the first mounting portion 11 and the blending cup 21; a pressing structure 63, slidably disposed on the lid body 61 in the Y direction and slidingly engaged with the sliding sealing structure 62, for receiving external force; and a locking structure 64, installed on the lid body 61 and disposed opposite to the pressing structure 63, for locking or unlocking the pressing structure 63; wherein, under the action of an external force in the Y direction, the pressing structure 63 can drive the sliding sealing structure 62 to slide in the X direction, so that the sliding sealing structure 62 seals the openings of the first mounting portion 11 and the blending cup 21, and the locking structure 64 can lock the pressing structure 63; or under the action of an external force in the Y direction, the locking structure 64 can unlock the pressing structure 63, so that the pressing structure 63 releases its engagement with the sliding sealing structure 62, allowing the pressing structure 63 to open or close. The sliding sealing structure 62 opens the first mounting part 11 and the opening of the blending cup 21. The pressing structure 63 receives external driving force, allowing it to move in the Y direction, thus driving the sliding sealing structure 62 in the X direction. This opens or closes the opening of the main body 10. The locking structure 64 locks the pressing structure 63 when the sliding sealing structure 62 is sealing the opening, ensuring the stability of the fit between the pressing structure 63 and the sliding sealing structure 62, and thus ensuring the stability of the seal of the opening by the sliding sealing structure 62. Since the cup lid 60 opens or closes by pressing, the user does not need to rotate the lid body 61 at the opening of the first mounting part 11 with considerable force, making operation easier and improving the convenience of using the cup lid 60.
[0054] Please see Figure 6 and Figure 7 In one embodiment of this utility model, in order to reduce the storage space of the entire cup lid 60 when it is stored, when the pressing structure 63 is in the locked state relative to the locking structure 64, the upper end surface of the pressing structure 63 along the Y direction is flush with the upper end surface of the lid body 61 along the Y direction, or the upper end surface of the pressing structure 63 along the Y direction is hidden in the upper end surface of the lid body 61. That is, the pressing structure 63 can reduce the space occupied by the cup lid 60 in the Y direction when it is stored in a way that does not protrude from the lid body 61, which facilitates storage in the box.
[0055] When the pressing structure 63 is in the locked state, its upper surface can be flush with the upper surface of the cover body 61, or it can be lower than the upper surface of the cover body 61. Preferably, in this embodiment, the upper surface of the pressing structure 63 is flush with the cover body 61 to prevent impurities and dust from splashing into the mounting groove of the cover body 61 where the pressing structure 63 is located.
[0056] Please see Figure 6 and Figure 7 This is a schematic diagram of the structure of the cover body 61 of this utility model. The cover body 61 includes an upper cover part 611, a lower sealing part 612, and a sealing ring 613. The diameter of the upper cover part 611 is larger than the diameter of the lower sealing part 612. The upper cover part 611 is used to install the above-mentioned sliding sealing structure 62, pressing structure 63, and locking structure 64, and is used to open or close the first mounting part 11. The lower sealing part 12 is used to open or close the blending cup 21. A sealing ring 613 is provided on the lower sealing part 612. The sealing ring 613 is subjected to pressing pressure along the Y direction and seals the opening of the blending cup 21 to achieve a seal on the blending cup 21.
[0057] Please see Figures 7 to 9 In one embodiment of this utility model, the pressing structure 63 includes a pressing buckle 631 and a first elastic member 632. The first elastic member 632 abuts against the cover body 61 and the pressing buckle 631 respectively. The pressing buckle 631 is used to engage or disengage with the locking structure 64 and to drive the sliding sealing structure 62 to move in the X direction under the action of external force. The first elastic member 632 is used to apply an elastic force to the pressing buckle 631. Thus, by providing the first elastic member 632, when a pressing force is applied to the pressing buckle 631 in the Y direction, the first elastic member 632 can be compressed so that the first elastic member 632 can store force, thereby applying an upward elastic force to the pressing buckle 631, which facilitates the pressing buckle 631 to return to its original position.
[0058] Specifically, in realizing the cooperation between the push-button 631 and the locking structure 64, the locking structure 64 in this embodiment is a push-button spring lock, which may include a base, a mounting head, a spring, and a pair of claws. The pair of claws are disposed opposite to each other on the mounting head and are rotatably disposed relative to the mounting head. The spring is disposed in the base, with its two ends abutting against the inner cavity wall of the base and the mounting head, respectively. The mounting head is slidably disposed relative to the base. In the initial state, the spring is in a natural state, and the pair of claws are exposed relative to the base. When the push-button 631 is pressed down, the pair of claws grab the push-button 631. When it is necessary to unlock the push-button 631, a downward pressing force is applied to the push-button 631. The push-button 631 transmits the pressing force to the mounting head, the mounting head presses the spring, and the pair of claws retract into the base. The push-button 631 and the pair of claws disengage. Under the elastic force of the first elastic member 632, the push-button 631 moves upward and returns to its original position.
[0059] Please refer to Figure 8 and Figure 9To facilitate the movement of the pressing buckle 631 into a pair of claws and to open the pair of claws, the pressing buckle 631 includes an outer mating sleeve 6311 and a locking head 6312 disposed within the outer mating sleeve 6311. The locking head 6312 is used to lock or unlock with the locking structure 64. The locking head 6312 is provided with a first mating inclined surface 6312a, which is inclined upward toward the outside of the cover body 61. The outer mating sleeve 6311 is used to cooperate with the sliding sealing structure 62. Thus, under the pressing force, due to the guiding effect of the first mating inclined surface 6312a, the locking head 6312 can be quickly inserted into a pair of claws and open one of the claws.
[0060] In this embodiment, when the outer fitting sleeve 6311 and the sliding sealing structure 62 are fitted together, the press buckle 631 and the sliding sealing structure 62 are respectively provided with a second fitting inclined surface 6311a and a third fitting inclined surface 621 that are slidably fitted together, so that the press buckle 631 can drive the sliding sealing structure 62 to move in the X direction and can apply a pressing force in the Y direction to the sliding sealing structure 62. Specifically, in this embodiment, the second fitting inclined surface 6311a and the third fitting inclined surface 621 are both inclined upward toward the outside of the cover body 61, so that when the press buckle 631 and the locking structure 64 are locked together, the press buckle 631 can apply a pressing force in the Y direction to the sliding sealing structure 62, thereby pressing the cover body 61 into the opening of the main body 10.
[0061] In order to achieve structural compactness between the pressing structure 63 and the locking structure 64, the first elastic member 632 is sleeved on the outside of the locking structure 64. Compared with the method of arranging the first elastic member 632 and the locking structure 64 side by side along the X direction, the size of the outer mating sleeve 6311 along the X direction can be reduced, thereby reducing the space occupied by the entire pressing structure 63 along the X direction.
[0062] Understandably, when the outer fitting sleeve 6311 moves up and down, the locking structure 64 moves within the inner cavity of the outer fitting sleeve 6311. In one embodiment of this utility model, when the locking structure 64 is installed, the cover body 61 is provided with an installation sleeve 614, which extends along the Y direction. The locking structure 64 is engaged within the installation sleeve 614. Thus, by providing the installation sleeve 614, which extends along the Y direction to have an extension height, stable installation of the locking structure 64 is achieved.
[0063] Furthermore, since the first elastic element 632 is sleeved outside the locking structure 64, and the cover body 61 is also provided with a guide sleeve 617, which surrounds the mounting sleeve 614, the first elastic element 632 is located in the space formed between the guide sleeve 617 and the mounting sleeve 614, thereby achieving the effect of guiding the extension and retraction of the first elastic element 632.
[0064] Please see Figure 7 and Figure 8 In one embodiment of this utility model, the sliding sealing structure 62 includes a sliding buckle 622 and a second elastic member 623. The sliding buckle 622 is used to receive the pressing force from the pressing structure 63 to lock into the opening, and can cooperate with the first mounting part 11 to apply a pressing force along the Y direction to the cover body 61 to press the cover body 61 tightly into the opening; the second elastic member 623 is arranged along the X direction and abuts against the sliding buckle 622 and the cover body 61 respectively, and is used to apply a pressing force to the sliding buckle 622, thereby realizing the sliding buckle 622 disengaging from the host body 10. Specifically, when the second elastic member 623 is set, a receiving cavity 6221 is formed in the sliding buckle 622, and a holding block 615 is provided in the cover body 61. Both ends abut against the inner walls of the supporting block 615 and the receiving cavity 6221, respectively. When the sliding buckle 622 is pressed by the pressing buckle 631 in the X direction, the sliding buckle 622 moves away from the center of the cover body 61 and compresses the second elastic member 623. When cooperating with the first mounting part 11, the first mounting part 11 is provided with a locking notch 13. The sliding buckle 622 passes through the locking notch 13, thereby cooperating with the first mounting part 11 and locking the sliding buckle 622 on the first mounting part 11. At this time, the first mounting part 11 can apply a downward pressing force to the sliding buckle 622, and the sliding buckle 622 applies a downward pressing force to the cover body 61, thereby pressing the cover body 61 against the opening of the main body 10. It can be understood that the cover body 61 is also provided with an avoidance notch 616 for the sliding buckle 622 to slide in and out, and the avoidance notch 616 is correspondingly provided with the locking notch 13.
[0065] Furthermore, to facilitate the sliding buckle 622's sliding in and out of the first mounting portion 11, a fourth mating inclined surface 624 is provided on the outer edge of the sliding buckle 622. The fourth mating inclined surface 624 serves as a sliding guide for the sliding buckle 622, and also allows the first mounting portion 11 to apply downward pressing force to the sliding buckle 622. Specifically, the fourth mating inclined surface 624 is inclined upwards towards the center of the cover body 61.
[0066] The aforementioned compact food processor 100 utilizes the spare space within the machine by arranging a grinding chamber 111 and a placement chamber 112 arranged side-by-side from top to bottom in the first mounting part 11. The grinding mechanism 22 is placed in the grinding chamber 111, and the water tank 30 is placed in the placement chamber 112. The water tank 30 is concealed, avoiding the need to expand the overall space occupied by the machine by arranging them side-by-side in the X direction, thus achieving a compact layout. By placing the heating plate 50 at the support surface to directly heat the mixing cup 40, the height space of the first mounting part 11 in the Y direction is saved. By making the handle 23 of the grinding cup 21 rotatable, it can be stored in a retracted state when installed on the machine, thus miniaturizing the volume occupied by the grinding module 20. By making the cup lid 60 concealed, the placement space in the Y direction is saved.
[0067] The technical means disclosed in this utility model are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications are also considered within the scope of protection of this utility model.
Claims
1. A compact food processor (100), characterized in that, include: The host (10) includes a first mounting part (11) and a second mounting part (12) arranged side by side along the X direction. The first mounting part (11) is provided with a grinding chamber (111) and a placement chamber (112) from top to bottom along the Y direction. The second mounting part (12) is provided with a support surface (121). A grinding module (20) is provided in the grinding chamber (111), including a grinding cup (21) and a grinding mechanism (22) provided on the grinding cup (21), wherein the grinding mechanism (22) is used to grind the food in the grinding cup (21); A water tank (30) is disposed in the placement cavity (112); A slurry receiving cup (40) is disposed on the support surface (121) and supported by the second mounting part (12).
2. The compact food processor (100) according to claim 1, characterized in that, The compact food processor (100) also includes a lid (60) which is detachably mounted on the top of the first mounting part (11) and the blending cup (21) for opening or closing the opening of the first mounting part (11).
3. The compact food processor (100) according to claim 2, characterized in that, The cup lid (60) includes: Cover body (61); A sliding sealing structure (62) is slidably disposed on the cover body (61) along the X direction, for opening or closing the openings of the first mounting part (11) and the mixing cup (21); The pressing structure (63) is slidably disposed on the cover body (61) along the Y direction and slidably cooperates with the sliding sealing structure (62) to receive external force; A locking structure (64) is installed on the cover body (61) and is disposed opposite to the pressing structure (63) for locking or unlocking the pressing structure (63); Under the action of an external force in the Y direction, the pressing structure (63) can drive the sliding sealing structure (62) to slide in the X direction, so that the sliding sealing structure (62) can seal the openings of the first mounting part (11) and the blending cup (21), and the locking structure (64) can lock the pressing structure (63); or under the action of an external force in the Y direction, the locking structure (64) can unlock the pressing structure (63), so that the pressing structure (63) releases its cooperation with the sliding sealing structure (62), and the sliding sealing structure (62) can open the openings of the first mounting part (11) and the blending cup (21).
4. The compact food processor (100) according to claim 3, characterized in that, When the pressing structure (63) is in the locked state, the upper end face of the pressing structure (63) along the Y direction is flush with the upper end face of the cover body (61) along the Y direction, or the upper end face of the pressing structure (63) along the Y direction is hidden in the upper end face of the cover body (61).
5. The compact food processor (100) according to claim 3, characterized in that, The cover body (61) includes an upper cover part (611), a lower sealing part (612), and a sealing ring (613). The outer diameter of the upper cover part (611) is larger than the outer diameter of the lower sealing part (612). The upper cover part (611) is used to open or close the first mounting part (11). The lower sealing part (612) is used to open or close the blending cup (21). The sealing ring (613) is sleeved on the lower sealing part (612).
6. The compact food processor (100) according to any one of claims 1-4, characterized in that, The first mounting part (11) includes an outer shell (113) and an inner shell (114) arranged side by side along the X direction, with an air gap formed between the outer shell (113) and the inner shell (114).
7. The compact food processor (100) according to any one of claims 1-4, characterized in that, The second mounting part (12) is provided with a mounting cavity (122); The compact food processor (100) also includes a heating plate (50), which is located in the mounting cavity (122) and is positioned corresponding to the support surface (121) for heating the receiving cup (40).
8. The compact food processor (100) according to any one of claims 1-4, characterized in that, The pulverizing mechanism (22) also includes a handle (23), which is rotatably configured with the pulverizing cup (21) and has the same shape as the mouth of the pulverizing cup (21).
9. The compact food processor (100) according to any one of claims 1-4, characterized in that, The receiving cup (40) includes a cup body (41) and a cover (42) that fits onto the cup body (41); The cover (42) is provided with a receiving structure (43) that is connected to the mixing cup (21). The receiving structure (43) extends upward at an angle away from the center of the receiving cup (40) and forms a receiving channel (431).
10. The compact food processor (100) according to any one of claims 1-4, characterized in that, The height and volume of the grinding chamber (111) are both greater than the height and volume of the placement chamber (112).