Cup assembly of stirring and squeezing machine and stirring and squeezing machine
By using the gap formed by the assembly of a detachable first cylinder and a second cylinder in the blender as the juice outlet channel, the problem of inconvenient cleaning of the filter screen structure is solved, achieving more efficient filtration and convenient cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-03-10
AI Technical Summary
The existing blender filter cylinder uses a filter screen structure, which is extremely inconvenient to clean.
The gap formed by the assembly of the detachable first and second cylinders serves as the juice outlet, replacing the traditional filter screen structure. The food residue is easy to clean after disassembly.
It improves filtration efficiency and ease of cleaning, increases juice flow, and makes the cleaning process more convenient.
Smart Images

Figure CN223979668U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of small household appliance technology, and more specifically, to the cup assembly of a blender and the blender itself. Background Technology
[0002] Some blenders use a blade assembly to stir and chop food, and then use a filter to filter the juice, achieving rapid pulverization and separation of pulp-free juice. Existing blenders use a filter cylinder with a mesh structure, which is extremely inconvenient to clean. Summary of the Invention
[0003] This application provides a cup assembly and a mixer for a blender, which makes it easier to clean the filter cartridge.
[0004] A cup assembly of a blender, comprising:
[0005] The cup body has a cup cavity, a first opening, and a second opening;
[0006] A pulverizing section is installed in the first opening and located inside the cup cavity;
[0007] A filter section is installed in the second opening and located inside the cup cavity. The filter section includes a rotatable filter cylinder, which includes a first cylinder and a second cylinder that are detachably connected. The gap between the first cylinder and the second cylinder forms a juice outlet channel for discharging juice.
[0008] The cup assembly of the juicer provided in this application no longer uses a filter screen structure for the filter cylinder. Instead, it uses the gap formed after the first cylinder and the second cylinder are assembled as a juice outlet channel. When the first cylinder and the second cylinder are separated, the food residue remaining in the juice outlet channel can be fully exposed, making the cleaning process more convenient.
[0009] Optionally, multiple juice outlet channels are provided, and these channels are distributed around the rotation axis of the filter cylinder. Increasing the number of juice outlet channels results in a corresponding increase in juice flow rate, thus achieving higher filtration efficiency.
[0010] Optionally, the first cylinder includes a plurality of first components distributed and extending axially around the rotation axis of the filter cylinder, and the second cylinder includes a plurality of second components distributed and extending axially around the rotation axis of the filter cylinder. At least one second component is disposed between two adjacent first components, and at least one first component is disposed between two adjacent second components. The gap between the first and second components forms the juice outlet channel. This configuration results in a relatively simple structure for the first and second components, facilitating processing and manufacturing. Furthermore, both the first and second components are cantilever structures, allowing for small displacement of their free ends under external force, which facilitates the assembly of the first and second components.
[0011] Optionally, a second component is provided between any two adjacent first components, and a first component is provided between any two adjacent second components. This can create more juice outlet channels, and the distribution of the juice outlet channels is more uniform.
[0012] Optionally, a first gap is provided between any two adjacent first components, and the shape of the first gap is the same as the shape of the second component. With this arrangement, the first gap and the second component fit together more closely in shape, resulting in better compactness after assembly, and the juice outlet channels formed at each gap are more consistent.
[0013] Optionally, a second gap is provided between any two adjacent second components, and the shape of the second gap is the same as the shape of the first component. With this arrangement, the second gap fits the first component better, the assembly is more compact, and the juice outlet channels formed at each gap are more consistent.
[0014] Optionally, the first component has a first surface, and the second component has a second surface, with the first surface and the second surface facing each other radially along the filter cylinder. When the filter cylinder rotates, the first component and the second component can be mutually restrained by their opposing surfaces, preventing large displacements of the first component and the second component due to centrifugal force, thereby preventing large volumes of solid residue from being thrown out of the juice outlet channel.
[0015] Optionally, the first component includes a first outer end and a first inner end disposed radially along the filter cylinder, the first inner end being closer to the axis of the filter cylinder than the first outer end. The second component includes a second outer end and a second inner end distributed radially along the filter cylinder, the second inner end being closer to the axis of the filter cylinder than the second outer end. The first outer end is disposed between two adjacent second outer ends, and the first inner end is disposed between two adjacent second inner ends. The first outer end and the second inner end have the same shape, and the first inner end and the second outer end have the same shape. With this arrangement, the first and second components, after assembly, can fill each other's space and interlock to form a compact structure, improving the overall integrity of the assembled first and second cylinders.
[0016] Optionally, the first component and the second component are inserted and connected along the rotation axis of the filter cartridge. This simplifies the assembly process.
[0017] Optionally, the filtration unit further includes a filter cylinder seat, wherein the first cylinder is rotatably mounted on the filter cylinder seat, and the second cylinder is assembled on the first cylinder, together forming a filter cavity for containing food. The cup assembly further includes a feed hopper disposed within the cup cavity, the feed hopper connecting the cup cavity and the filter cavity. The feed hopper can guide the flow, ensuring that the food in the cup cavity flows accurately into the filter cavity, guaranteeing the separation effect between liquid and solid residue.
[0018] Optionally, the second cylinder is restricted by the feed hopper in the rotational direction of the filter cylinder and remains relatively fixed to the first cylinder.
[0019] Optionally, the feed hopper is detachably installed within the cup cavity. This detachable installation facilitates cleaning of the feed hopper and prevents food from getting stuck in the gap between the feed hopper and the cup body when food is added to the cup cavity from the second opening. This design allows the feed hopper to provide pressure to the second cylinder, ensuring that the second cylinder does not detach from the first cylinder during the filtration process.
[0020] Optionally, the feed hopper includes a hollow hopper body and a hopper shaft connected to the hollow portion of the hopper body. The filtering section further includes a filter cylinder shaft fixedly connected to the first cylinder body, and the hopper shaft and the filter cylinder shaft are detachably connected. This configuration provides upward support to the feed hopper via the filter cylinder shaft, facilitates the disassembly of the feed hopper, and ensures the stability of the feed hopper's position.
[0021] Optionally, the feed hopper is also connected to the second cylinder in a detachable manner. This design increases the structural compactness of the feed hopper after assembly with the second cylinder, while also allowing for the detachability of the feed hopper.
[0022] A blending press, comprising:
[0023] The main unit, including the motor;
[0024] The cup assembly as described in any of the above embodiments is detachably mounted to the main unit in a first mounting method and a second mounting method. The first mounting method is in which the crushing part is engaged with the main unit, and the second mounting method is in which the filtering part is engaged with the main unit. In the first mounting method, the motor is drivenly connected to the crushing part, and in the second mounting method, the motor is drivenly connected to the filtering part. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of a blender shown in an exemplary embodiment of this application, wherein the cup assembly is a first mounting method;
[0026] Figure 2 yes Figure 1 The schematic diagram of the agitator shown in the figure shows that the cup assembly is a second mounting method;
[0027] Figure 3 for Figure 2 The cross-sectional view of the agitator shown in the image;
[0028] Figure 4 yes Figure 1 An exploded view of the agitator shown in the image;
[0029] Figure 5 This is an exploded view of the filter cartridge;
[0030] Figure 6 It is a cross-sectional view of the filter cartridge taken by a section perpendicular to its own axis of rotation;
[0031] Figure 7 yes Figure 6 An enlarged view of part A in the middle;
[0032] Figure 8 yes Figure 5 View of section B in the middle;
[0033] Figure 9 This is a cross-sectional view of the cup assembly;
[0034] Figure 10 This is an exploded view of the second cylinder and the feed hopper;
[0035] Figure 11 A cross-sectional view of the feed hopper. Detailed Implementation
[0036] The technical solutions in the embodiments (or "implementations") of this application will be clearly and completely described herein with reference to the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0037] If the embodiments of this application contain terms relating to directional indications or positional relationships (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, transverse, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), such terms are only used to explain the relative positional relationships and movements between components in a specific posture (as shown in the attached figures); if the specific posture changes, the directional indications or positional relationships will also change accordingly. Furthermore, the terms "first" and "second" used in the embodiments of this application are only for descriptive convenience and should not be construed as indicating or implying relative importance.
[0038] Please refer to Figures 1 to 3 , Figure 1This is a schematic diagram of a blender shown in an exemplary embodiment of this application, wherein the cup assembly is a first mounting method. Figure 1 for Figure 1 The diagram shows a blender, in which the cup assembly represents the second mounting method. Figure 3 for Figure 2 The image shows a cross-sectional view of the agitator.
[0039] This application provides a blender 100, including a main unit 10 and a cup assembly 20, wherein the cup assembly 20 is detachably mounted on the main unit 10. The main unit 10 includes a motor 11, and the cup assembly 20 includes a cup body 21, a crushing section 22, and a filtering section 23. The crushing section 22 and the filtering section 23 are both mounted on the cup body 21, and the mounting method includes, but is not limited to, detachable mounting.
[0040] The cup component 20 can be installed on the main unit 10 in at least two ways. Figure 1 In the illustrated embodiment, the grinding unit 22 is engaged with the motor shaft of the main unit 10, making the grinding unit 22 and the motor shaft drively connected, which can automatically grind the food in the cup body 21. This installation method is the first installation method for mounting the cup assembly 20 to the main unit 10. Figure 2 In the illustrated embodiment, the filter unit 23 is engaged with the motor shaft of the main unit 10, thereby achieving a drive connection between the filter unit 23 and the motor shaft of the main unit 10. This allows for automatic filtration of the crushed food inside the cup body 21, separating liquid and solid residue. This installation method serves as a second installation method for the cup assembly 20 to be mounted on the main unit 10. The crushing unit 22 may include one or more blades.
[0041] Please combine Figure 3 and Figure 4 , Figure 4 for Figure 1 An exploded view of the agitator 100 shown in the figure.
[0042] Specifically, the cup body 21 has a cup cavity 210, a first opening 211, and a second opening 212. The cup cavity 210 can hold food. The cup cavity 210 communicates with both the first opening 211 and the second opening 212. A grinding unit 22 is installed in the first opening 211 and located within the cup cavity 210, and a filtering unit 23 is installed in the second opening 212 and located within the cup cavity 210.
[0043] Please refer to Figures 5 to 7 , Figure 5 This is an exploded view of filter cartridge 230. Figure 6 This is a cross-sectional view of the filter cartridge 230 taken from a section perpendicular to its own axis of rotation O. Figure 7 for Figure 6 A magnified view of part A in the middle.
[0044] The filter section 23 includes a rotatable filter cylinder 230, in which the pulverized food is filtered. The filter cylinder 230 includes a first cylinder 2301 and a second cylinder 2302 that are detachably connected, and the gap between the first cylinder 2301 and the second cylinder 2302 forms a juice outlet channel 2303 for discharging juice.
[0045] As can be seen from the above description, the filter cylinder 230 no longer adopts a filter screen structure, but uses the gap formed after the first cylinder 2301 and the second cylinder 2302 are assembled as the juice outlet channel 2303. When the first cylinder 2301 and the second cylinder 2302 are disassembled, the food residue remaining in the juice outlet channel 2303 can be fully exposed, making the cleaning process more convenient.
[0046] In one embodiment, multiple juice outlet channels 2303 are provided, and the multiple juice outlet channels 2303 are distributed around the rotation axis of the filter cylinder 230. Increasing the number of juice outlet channels 2303 increases the juice flow rate, resulting in higher filtration efficiency. The multiple juice outlet channels 2303 can be evenly distributed around the rotation axis of the filter cylinder 230, but are not limited to this. The width of the juice outlet channels 2303 can be set to 0.2–1 mm. For example, 0.2 mm, 0.3 mm, 0.4 mm, 0.5 mm, 0.6 mm, 0.7 mm, 0.8 mm, 0.9 mm, 1 mm, but are not limited to these.
[0047] This application does not impose specific limitations on the structure or assembly method of the first cylinder 2301 and the second cylinder 2302, as long as a gap is reserved between the first cylinder 2301 and the second cylinder 2302 after assembly. For example, the first cylinder 2301 has a hole, and after the second cylinder 2302 is assembled, it blocks part of the hole, and the part of the hole that is not blocked forms a juice outlet channel 2303.
[0048] In one alternative embodiment, such as Figure 5As shown, the first cylinder 2301 includes a plurality of first components 23011 distributed around the pivot O of the filter cylinder 230 and extending axially. The second cylinder 2302 includes a plurality of second components 23021 distributed around the pivot O of the filter cylinder 230 and extending axially. At least one second component 23021 is provided between two adjacent first components 23011, and at least one first component 23011 is provided between two adjacent second components 23021. The gap between the first components 23011 and the second components 23021 forms the juice outlet channel 2303. With this configuration, the structure of the first components 23011 and the second components 23021 is relatively simple, which is convenient for processing and manufacturing. Moreover, both the first components 23011 and the second components 23021 are cantilever structures, and the free ends can produce small displacements under the action of external forces, which facilitates the assembly of the first components 23011 and the second components 23021. The specific assembly method is not limited.
[0049] In this embodiment, a second component 23021 is provided between any two adjacent first components 23011, and a first component 23011 is provided between any two adjacent second components 23021. In this way, each first component 23011 is adjacent to one of the second components 23021, and each second component 23021 is adjacent to one of the first components 23011, thus forming more juice outlet channels 2303, and the distribution of the juice outlet channels 2303 is more uniform.
[0050] In one embodiment, combined Figure 5 and Figure 6 As shown, a first gap 23012 is provided between any two adjacent first components 23011, and the shape of the first gap 23012 is the same as the shape of the second component 23021. With this arrangement, the first gap 23012 and the second component 23021 fit each other better in shape, resulting in better compactness after assembly, and the juice outlet channels 2303 formed at each gap are also more consistent.
[0051] In one embodiment, a second gap 23022 is provided between any two adjacent second components 23021, and the shape of the second gap is the same as the shape of the first component 23011. With this arrangement, the second gap 23022 fits the first component 23011 better, the assembly is more compact, and the juice outlet channels 2303 formed at each gap are more consistent.
[0052] In one embodiment, such as Figure 7As shown, the first component 23011 has a first surface 230111, and the second component 23021 has a second surface 230211. The first surface 230111 and the second surface 230211 are opposite each other along the radial direction of the filter cylinder 230. With this arrangement, when the filter cylinder 230 rotates, the first component 23011 and the second component 23021 can restrain each other through their opposing surfaces, avoiding large displacement of the first component 23011 and the second component 23021 due to centrifugal force, thereby preventing large-volume solid residues from being thrown out of the juice outlet channel 2303.
[0053] exist Figure 7 In the illustrated embodiment, the two surfaces of the first component 23011 are respectively opposite to two adjacent second components 23021 along the radial direction of the filter cylinder 230, and the first component 23011 is simultaneously constrained by the two second components 23021. The two surfaces of the second component 23021 are respectively opposite to two adjacent first components 23011 along the radial direction of the filter cylinder 230, and the second component 23021 is simultaneously constrained by the two first components 23011. With this arrangement, the first component 23011 and the second component 23021 abut against each other along the radial direction of the filter cylinder 230, maintaining relative positional stability during rotation.
[0054] Please combine Figure 7 and Figure 8 , Figure 8 for Figure 5 A magnified view of part B in the middle.
[0055] In one embodiment, the first member 23011 includes a first outer end 23011a and a first inner end 23011b disposed radially along the filter cartridge 230. The first inner end 23011b is closer to the axis of the filter cartridge 230 than the first outer end 23011a. The second member 23021 includes a second outer end 23021a and a second inner end 23021b disposed radially along the filter cartridge 230. The second inner end 23021b is closer to the axis of the filter cartridge 230 than the second outer end 23021a. The first outer end 23011a is disposed between two adjacent second outer ends 23021a, and the first inner end 23011b is disposed between two adjacent second inner ends 23021b. The first outer end 23011a has the same shape as the second inner end 23021b, and the first inner end 23011b has the same shape as the second outer end 23021a. With such an arrangement, after the first member 23011 and the second member 23021 are assembled, they can fill the space with each other, forming a tightly interlaced structure, which improves the integrity of the assembly of the first cylinder 2301 and the second cylinder 2302. In this embodiment, the cross-section of the first member 23011 is generally a "convex" cross-section, and the cross-section of the second member 23021 is generally a "convex" cross-section.
[0056] In this embodiment, the first member 23011 and the second member 23021 are inserted and connected along the axis direction of the filter cartridge 230. That is, the first member 23011 and the second member 23021 are inserted into the respective gaps reserved by each other along the axis direction of the filter cartridge 230 one by one, and the assembly method is simpler. Of course, in some other embodiments, the second member 23021 can also be installed radially along the filter cartridge 230 between two adjacent first members 23 11.
[0057] Please refer to Figures 9 to 11 , Figure 9 which is a cross-sectional view of the cup assembly 20. Figure 10 which is an exploded view of the second cylinder 2302 and the feed hopper 24. Figure 11 which is a cross-sectional view of the feed hopper 24.
[0058] In one embodiment, the filtering part 23 further includes a filter cartridge seat 231. The first cylinder 2301 is rotatably installed on the filter cartridge seat 231, and the second cylinder 2302 is assembled on the first cylinder 2301 to jointly enclose a filtering cavity 2304 for accommodating food (see Figure 6 ).
[0059] The cup assembly 20 also includes a feed hopper 24 disposed within the cup cavity 210, the feed hopper 24 connecting the cup cavity 210 and the filter cavity 2304. This design allows the feed hopper 24 to act as a guide, ensuring that the food in the cup cavity 210 flows precisely into the filter cavity 2304, guaranteeing effective separation of liquid and solid residue. The feed hopper 24 can be configured as a conical structure, with its larger end connected to the cup cavity 210 and its smaller end connected to the filter cavity 2304, but is not limited to this configuration.
[0060] In one embodiment, the cup assembly 20 further includes a first sealing ring 25. At the end of the feed hopper 24 communicating with the cup cavity 210, the feed hopper 24 is sealed to the cup body 21 by the first sealing ring 25. The first sealing ring 25 is clamped and fixed between the outer periphery of the feed hopper 24 and the cup body 21, forming an annular sealing surface. With this configuration, the first sealing ring 25 can seal the gap between the feed hopper 24 and the cup body 21, ensuring the sealing of the food channel at the feed hopper 24, thereby ensuring the filtration effect. The first sealing ring 25 includes, but is not limited to, a silicone ring.
[0061] In one embodiment, the cup assembly 20 further includes a second sealing ring 26. At the end of the feed hopper 24 that communicates with the filter chamber 2304, the feed hopper 24 is sealed to the second cylinder 2302 by the second sealing ring 26. The second sealing ring 26 is clamped and fixed between the outer periphery of the feed hopper 24 and the second cylinder 2302, forming an annular sealing surface. With this configuration, the second sealing ring 26 can seal the gap between the feed hopper 24 and the second cylinder 2302, ensuring the sealing of the feed channel at the second cylinder 2302.
[0062] In one embodiment, the second cylinder 2302 is constrained by the feed hopper 24 in the rotational direction of the filter cylinder 230, and remains relatively fixed to the first cylinder 2301. This arrangement allows the feed hopper 24 to provide pressure to the second cylinder 2302, ensuring that the second cylinder 2302 does not detach from the first cylinder 2301 during the filtration process. Figure 9 In the illustrated embodiment, the cup body 21 has a contraction section 213 that tapers towards the center. The upper end of the feed hopper 24 abuts against the contraction section 213, which can restrict the feed hopper 24 from moving upward. The first sealing ring 25 is clamped and fixed between the contraction section 213 and the feed hopper 24.
[0063] In one embodiment, the feed hopper 24 is detachably installed within the cup cavity 210. This detachable installation facilitates cleaning of the feed hopper 24 and also prevents food from getting stuck in the gap between the feed hopper 24 and the cup body 21 when food is added into the cup cavity 210 from the second opening 212.
[0064] In one embodiment, such as Figure 11 As shown, the feed hopper 24 includes a hollow hopper body 240 and a hopper shaft 241 connected to the hollow portion of the hopper body 240. The filter section 23 also includes a filter cylinder shaft 232 fixedly connected to the filter cylinder 230. The hopper shaft 241 and the filter cylinder shaft 232 are detachably connected. This configuration allows the filter cylinder shaft 232 to provide upward support to the feed hopper 24, facilitates the disassembly of the feed hopper 24, and ensures the stability of the feed hopper 24's position.
[0065] It should be noted that the feed hopper 24 also includes a connecting rib 242, which connects the hopper body 240 and the hopper shaft 241. Multiple connecting ribs 242 can be provided, and there is a gap between the multiple connecting ribs 242, which forms a material leakage gap.
[0066] In one embodiment, the hopper shaft 241 can be configured to rotate synchronously with the filter cylinder shaft 232. In another embodiment, the hopper shaft 241 can also be configured such that the cup body 21 remains relatively fixed. In this embodiment, the latter is adopted.
[0067] In one embodiment, combined Figure 9 and Figure 10 The feed hopper 24 is also connected to the second cylinder 2302 in a detachable manner. Specifically, the second cylinder 2302 further includes an annular portion 23022 connecting multiple second components 23021 and a connecting portion 23023 located in the hollow part of the annular portion 23022. The connecting portion 23023 has a connecting hole 23024, and the hopper shaft 241 mates with the connecting hole 23024 and is detachably connected to the connecting portion 23023. This design increases the structural compactness of the feed hopper 24 and the second cylinder 2302, while also enabling the feed hopper 24 to be detachable.
[0068] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.
Claims
1. A cup assembly for a blender, the cup assembly comprising: The cup (21) is formed with a cup cavity (210), a first mouth (211) and a second mouth (212). The crushing part (22) is installed at the first mouth (211) and located in the cup cavity (210). The filter part (23) is installed at the second mouth (212) and located in the cup cavity (210), and the filter part (23) comprises a rotatable filter cylinder (230), the filter cylinder (230) comprises a first cylinder body (2301) and a second cylinder body (2302) which are detachably connected, and the gap between the first cylinder body (2301) and the second cylinder body (2302) forms a juice outlet channel (2303) for juice discharge. The juice outlet channel (2303) is provided with a plurality of juice outlet channels (2303) which are distributed around the rotation axis of the filter cylinder (230).
2. The cup assembly of claim 1, wherein, The first cylinder body (2301) comprises a plurality of first members (23011) which are distributed around the rotation axis of the filter cylinder (230) and axially extend, the second cylinder body (2302) comprises a plurality of second members (23021) which are distributed around the rotation axis of the filter cylinder (230) and axially extend, at least one second member (23021) is arranged between two adjacent first members (23011), at least one first member (23011) is arranged between two adjacent second members (23021), and the gap between the first member (23011) and the second member (23021) forms the juice outlet channel (2303).
3. The cup assembly of claim 1 or 2, wherein, Any two adjacent first members (23011) are provided with the second member (23021), and any two adjacent second members (23021) are provided with the first member (23011); and / or 4. The cup assembly of claim 3, wherein, Any two adjacent first members (23011) are provided with a first gap, and the shape of the first gap is the same as the outer shape of the second member (23021); and / or Any two adjacent second members (23021) are provided with a second gap, and the shape of the second gap is the same as the outer shape of the first member (23011). The first member (23011) is provided with a first surface (230111), the second member (23021) is provided with a second surface (230211), and the first surface (230111) and the second surface (230211) are opposite along the radial direction of the filter cylinder (230); and / or 5. The cup assembly of claim 3, wherein, The first member (23011) comprises a first outer end (23011a) and a first inner end (23011b) arranged along the radial direction of the filter cartridge (230), the first inner end (23011b) is closer to the axis of the filter cartridge (230) than the first outer end (23011a), the second member (23021) comprises a second outer end (23021a) and a second inner end (23021b) arranged along the radial direction of the filter cartridge (230), the second inner end (23021b) is closer to the axis of the filter cartridge (230) than the second outer end (23021a), the first outer end (23011a) is arranged between two adjacent second outer ends (23021a), the first inner end (23011b) is arranged between two adjacent second inner ends (23021b), the first outer end (23011a) has the same shape as the second inner end (23021b), and the first inner end (23011b) has the same shape as the second outer end (23021a).
6. The cup assembly of claim 3, wherein, The first member (23011) and the second member (23021) are connected in the direction of the rotation axis of the filter cartridge (230).
7. The cup assembly of any one of claims 1, 2, 4-6, wherein, The filter part (23) further comprises a filter cartridge seat (231), the first cartridge body (2301) is rotatably arranged on the filter cartridge seat (231), and the second cartridge body (2302) is assembled on the first cartridge body (2301) to jointly form a filter cavity (2304) for accommodating food materials, and the cup assembly further comprises a feeding hopper (24) arranged in the cup cavity (210), and the feeding hopper (24) is in communication with the cup cavity (210) and the filter cavity (2304).
8. The cup assembly of claim 7, wherein, The second cartridge body (2302) is limited by the feeding hopper (24) in the direction of the rotation axis of the filter cartridge (230) and is kept relatively fixed with the first cartridge body (2301); and / or The feeding hopper (24) is detachably arranged in the cup cavity (210).
9. The cup assembly of claim 7, wherein, The feeding hopper (24) comprises a hollow hopper body (240) and a hopper shaft (241) connected to the hollow part of the hopper body (240), the filter part (23) further comprises a filter cartridge shaft (232) fixedly connected to the first cartridge body (2301), and the hopper shaft (241) is detachably connected with the filter cartridge shaft (232); and / or The feeding hopper (24) is detachably connected with the second cartridge body (2302).
10. A mangle, characterized in that Comprise: A host (10) comprising a motor (11); The cup assembly (20) as claimed in any one of claims 1 to 9, which is detachably mounted to the main machine (10) in a first mounting mode and a second mounting mode, the mounting mode in which the pulverizing part (22) is engaged with the main machine (10) is the first mounting mode, and the mounting mode in which the filtering part (23) is engaged with the main machine (10) is the second mounting mode, in the first mounting mode, the motor (11) is drivingly connected with the pulverizing part (22), and in the second mounting mode, the motor (11) is drivingly connected with the filtering part (23).