Food processing cup and food processor
By setting up a partition bar and an inclined feed channel at the feeding port of the filter cover of the cooking cup, the problem of slow flow into the filter cartridge when the juice is thicker is solved, and the effect of faster and smoother juice flow is achieved.
Patent Information
- Application Number
- CN202421716415.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-07-18
AI Technical Summary
When using a juicer, the juice flows into the filter cartridge when it is thicker and the circulation is not smooth.
A cooking cup is designed, which includes a cup body, a filter assembly and a stirring assembly. In the filter assembly, the inlet ports of the filter cover are separated into multiples by partitioning ribs and arranged inclined to increase the flow area. At the same time, the cross-sectional area of the feed channel of the filter cover gradually decreases along the direction of the filter cover to the base, and partly extends into the filter chamber.
Through the design of separating ribs and inclined feed channel, the juice flows faster and smoother when it flows into the filter chamber of the filter, and even if the juice is thicker, it can flow smoothly, and the filtration efficiency is high.
Smart Images

Figure CN223008981U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of small household appliances, and particularly to a cooking cup and a cooking machine. Background Art
[0002] A cooking machine, such as a juice machine, includes a main body, a cup body, a knife assembly and a filtering assembly. The main body is equipped with a motor. The juice machine can filter the juice obtained after the knife assembly stirs through the filtering assembly. Specifically, the juice is introduced into the filtering cylinder of the filtering assembly through the feeding port, and after being filtered by the filtering cylinder, the juice is led out from the juice outlet of the filtering assembly.
[0003] During use, it is found that when the juice is thick, the flow rate of the juice from the feeding port to the filtering cylinder is slow, and the juice flow is not smooth. Summary of the Utility Model
[0004] The purpose of this application is to disclose a cooking cup and a cooking machine, which can make the juice flow into the filtering cavity of the filter screen faster and more smoothly for filtration.
[0005] In a first aspect, this application discloses a cooking cup. The cooking cup includes a cup body, a filtering assembly and a stirring assembly. The stirring assembly and the filtering assembly are respectively arranged at opposite ends of the cup body. The stirring assembly includes a first transmission member and a stirring knife. The stirring knife is assembled inside the cup body, and the first transmission member is used to drive the stirring knife to rotate. The filtering assembly includes a filter screen, a base and a filter screen cover. The base and the filter screen cover are respectively located at opposite ends of the filter screen. The base is provided with a second transmission member and a juice outlet. The second transmission member is used to drive the filter screen to rotate relative to the base. The filter screen cover includes a feeding port and a partition rib. The feeding port communicates the inside of the cup body and the filtering cavity of the filter screen. The partition rib is connected to the side wall of the feeding port and divides the feeding port into multiple parts. The partition rib is inclined to increase the area of the feeding port.
[0006] With the above arrangement, since the partition rib divides the feeding port into multiple parts and the partition rib is inclined, the overall flow area of the feeding port is increased. Thus, the juice obtained by stirring through the stirring assembly flows faster and more smoothly when passing through the feeding port. Even if the juice is relatively viscous, it can flow smoothly into the filtering cavity of the filter screen, and then the juice is filtered by rotating the filter screen, and the filtered juice flows out from the juice outlet.
[0007] In some embodiments, multiple partition ribs are provided. The multiple partition ribs all extend obliquely away from the base from the side wall of the feeding port and are connected at the center of the cup body.
[0008] With the above settings, since multiple said separating ribs all extend obliquely away from the side wall of the feeding port towards the base and are connected at the center of the cup body, during the process of juice flowing into the filtering cavity, the aforesaid separating ribs can play a role in diverting the juice. Moreover, the separating ribs extend away from the base and are connected at the center of the cup body, which can also prevent the generation of vacuum. Thus, the juice flows more smoothly.
[0009] In some embodiments, the filter lid includes a feeding channel, the cross-sectional area of the feeding channel gradually decreases along the direction from the filter lid to the base, and the small-mouth end of the feeding channel forms the feeding port; at least part of the feeding channel extends into the filtering cavity.
[0010] With the above settings, the cross-sectional area of the feeding channel gradually decreases along the direction from the filter lid to the base. In this way, the juice is more likely to flow along the channel wall of the feeding channel towards the feeding port. Thus, the juice flows more quickly. Additionally, at least part of the feeding channel extends into the filtering cavity, preventing the juice from flowing outside the filter screen.
[0011] In some embodiments, the filter lid includes a retaining wall that surrounds the feeding port and at least part of it extends into the filtering cavity.
[0012] With the above settings, after the juice passes through the feeding port, it then flows into the filtering cavity from the space surrounded by the retaining wall. And since at least part of the retaining wall extends into the filtering cavity, during the juice flow process, the juice will not flow outside the filter screen.
[0013] In some embodiments, the filter screen includes a plurality of blocking portions located in the filtering cavity. The plurality of blocking portions are arranged at intervals along the circumferential direction of the filter screen, and each blocking portion is connected to the side wall and the bottom wall of the filtering cavity.
[0014] With the above settings, during the process of rotating the filter screen for filtration, the residue can be limited between adjacent blocking portions. Furthermore, the residue-juice separation effect is better, the filtration effect is good, and the taste of the juice is better.
[0015] In some embodiments, the blocking portion includes an arc-shaped edge, so that the width of the blocking portion decreases along the direction from the base to the filter lid.
[0016] With the above settings, the arc-shaped edge makes the width of the blocking portion decrease along the direction from the base to the filter lid, which can take into account both the flow of the juice and the residue being limited between adjacent blocking portions. Furthermore, the residue-juice separation effect is better, the filtration effect is good, and the taste of the juice is better.
[0017] In some embodiments, the filter screen includes a support shaft located in the filtration chamber and a connection portion located outside the filter screen. Both the connection portion and the support shaft are located on the rotation center line of the filter screen. The support shaft is in clearance fit with the filter screen cover so that the support shaft can rotate relative to the filter screen cover, and the connection portion is in driving connection with the second transmission member of the base.
[0018] With the above arrangement, the support shaft is rotatably connected to the filter screen cover, and the connection portion is in driving connection with the second transmission member of the base, forming upper and lower double fulcrum fixation, so that the filter screen does not shake when rotating at high speed and operates more smoothly.
[0019] In some embodiments, the second transmission member includes a transmission head, and one of the connection portion and the transmission head includes an insertion cavity, and the other of the connection portion and the transmission head is adapted to the shape of the insertion cavity and is inserted into the insertion cavity.
[0020] With the above arrangement, the assembly of the second transmission member and the connection portion is simple.
[0021] In some embodiments, one of the filter screen cover and the support shaft is provided with a positioning shaft, and the other is provided with a groove in clearance fit with the positioning shaft.
[0022] With the above arrangement, the assembly between the filter screen cover and the support shaft is simple.
[0023] In some embodiments, the filter screen is provided with a plurality of reinforcing ribs, and the reinforcing ribs are distributed at intervals along the circumferential direction of the filter screen.
[0024] With the above arrangement, by providing the reinforcing ribs, the structural strength of the filter screen can be enhanced.
[0025] In some embodiments, the filter screen cover and the cup body are assembled through a first snap structure; the filter screen cover and the base are assembled through a second snap structure.
[0026] With the above arrangement, the assembly of the filter screen cover and the base is simple, and it can also make the assembly of the filter assembly and the cup body simple. For example, after the filter screen and the base are assembled, the filter screen cover and the base are assembled, thereby assembling the filter assembly, and then the filter screen cover and the cup body are assembled to assemble the filter assembly on the cup body.
[0027] In a second aspect, the present application discloses a cooking machine, which includes a main body and any one of the foregoing cooking cups, wherein: when the cooking cup is placed upright, the main body drives the first transmission member to rotate, driving the stirring blade to rotate in the cup body to achieve whipping; when the cooking cup is placed upside down, the main body drives the second transmission member to rotate to drive the filter screen to rotate, so that the juice flows out from the juice outlet after being filtered by the filter screen.
[0028] With the above settings, the food processor has at least the beneficial effects of the food cup, which will not be elaborated here. Moreover, the food processor can drive the stirring component and the filtering component located at both ends of the food cup respectively through the main body, so that when the food cup is placed upright, the stirring knife can be driven to achieve whipping, and then the food cup is inverted, and the filter screen can be driven to rotate to filter the juice obtained by whipping with the stirring knife, which is convenient to operate. Description of the Drawings
[0029] Figure 1 is a perspective view of a juicer shown according to an embodiment of the present application, showing the state where the food cup is placed upright;
[0030] Figure 2 is a perspective view of a juicer shown according to an embodiment of the present application, showing the state where the food cup is placed upside down;
[0031] Figure 3 is Figure 2 an enlarged view of part A in
[0032] Figure 4 is Figure 3 an enlarged view of part B in
[0033] Figure 5 is a perspective view of a food cup shown according to an embodiment of the present application;
[0034] Figure 6 is Figure 5 an exploded view of the food cup shown;
[0035] Figure 7 is Figure 5 a partial cross-sectional view of the food cup shown;
[0036] Figure 8 is a perspective view of a filter screen shown according to an embodiment of the present application;
[0037] Figure 9 is Figure 8 a cross-sectional view of the filter screen shown;
[0038] Figure 10 is a perspective view of a filter screen cover shown according to an embodiment of the present application;
[0039] Figure 11 is Figure 10 a top view of the filter screen cover shown. Detailed Embodiments
[0040] Here, the technical solutions in the embodiments (or "embodiment modes") of the present application will be clearly and completely described in conjunction with the drawings. When the following description involves the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0041] If there are terms related to directional indication or positional relationship in the embodiments of the present application (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.), then such terms are only used to explain the relative positional relationship, movement conditions, etc. between components in a certain specific posture (as shown in the drawings); if this specific posture changes, then the directional indication or positional relationship also changes accordingly. In addition, terms such as "first" and "second" involved in the embodiments of the present application are only for the purpose of convenient description and cannot be construed as indicating or implying relative importance.
[0042] See Figure 7 、 Figure 6 and in combination with Figure 1 and Figure 2 ,the present application discloses a cooking cup 10. The cooking cup 10 includes a cup body 1, a filtering assembly 2 and a stirring assembly 3. The stirring assembly 3 and the filtering assembly 2 are respectively arranged at opposite ends of the cup body 1. The stirring assembly 3 includes a first transmission member 31 and a stirring blade 32. The stirring blade 32 is assembled inside the cup body 1, and the first transmission member 31 is used to drive the stirring blade 32 to rotate. The filtering assembly 2 is detachably assembled at one end of the cup body 1 away from the stirring blade 32. In some embodiments, after the filtering assembly 2 is removed from the cup body 1, the inside of the cup body 1 and the filtering assembly 2 can be cleaned.
[0043] See Figure 7 、 Figure 1 and Figure 2 and in combination with Figure 6 ,the filtering assembly 2 includes a filter screen 21, a base 22 and a filter screen cover 23. The structure of the filter screen 21 is not limited as long as it can achieve the filtering function. In the embodiments of the present application, see Figure 8 ,the filter screen 21 includes a filter screen sheet 2191 and a filter screen support 2192. The filter screen sheet 2191 and the filter screen support 2192 can be integrally formed. There is no limitation on how to assemble. In the present application, see Figure 6 ,the filter screen cover 23 and the cup body 1 are assembled through a first snap structure 291 (a first snap 2911 and a first mating snap 2912). See Figure 5 and in combination with Figure 6, the filter screen cover 23 and the base 22 are assembled through a second snap structure 292 (a second snap 2921 and a second mating snap 2922). Thus, the disassembly and assembly of the filter screen cover 23 and the base 22 are simple, and the disassembly and assembly of the filter assembly 2 and the cup body 1 can also be made simple. For example, after the filter screen 21 and the base 22 are assembled, the filter screen cover 23 and the base 22 are assembled, thus assembling the filter assembly 2, and then the filter screen cover 23 and the cup body 1 are assembled to assemble the filter assembly 2 on the cup body 1, and the assembly is simple. Of course, how the filter screen 21, the base 22 and the filter screen cover 23 are assembled to form the filter assembly 2 is not limited to the above embodiment.
[0044] The base 22 and the filter screen cover 23 are respectively located at opposite ends of the filter screen 21. Specifically, the filter screen 21 is respectively connected to the filter screen cover 23 and the base 22. The base 22 is provided with a second transmission member 221 and a juice outlet 222. The second transmission member 221 is used to drive the filter screen 21 to rotate relative to the base 22. Based on this function, the structure of the second transmission member 221 is not limited to the clutch shown in the figure. Preferably, it is a clutch. In some other embodiments, the second transmission member 221 can also be a driving member that can be magnetically driven. For example, a first magnet is provided on the filter screen 21, and the second transmission member 221 has a second magnet. When the host makes the second transmission member rotate, correspondingly, the filter screen 21 is driven by the magnetic force between the first magnet and the second magnet.
[0045] See Figure 10 and Figure 11 and in combination with Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 7 , the filter screen cover 23 includes a feed inlet 231 and a partition rib 232. The feed inlet 231 communicates with the inside of the cup body 1 and the filtration chamber 211 of the filter screen 21. The partition rib 232 is connected to the side wall of the feed inlet 231, and the feed inlet 231 is divided into multiple parts (such as Figure 10 and Figure 11 shows that it is divided into three for illustration. For easy distinction, the divided feed inlet is named the partitioned feed inlet and marked as the partitioned feed inlet 233). The partition rib 232 is inclined to increase the area of the feed inlet 231. The number of partition ribs 232 is not limited. It can be one, which divides the feed inlet 231 into two, or there can be multiple as shown in the figure, such as three. See Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 7, among them, the partition ribs 232 are inclined to increase the area of the feeding port 231. Those skilled in the art can understand that the partition ribs 232 are inclined, for example, as shown in the figure, the partition ribs 232 are linear and are inclined as a whole. Also, for any one of the partition ribs 232, a part of the partition rib 232 can also be inclined.
[0046] With the above settings, since the partition ribs 232 divide the feeding port 231 into multiple parts, and the partition ribs 232 are inclined, the overall flow area of the feeding port 231 is increased. As a result, the juice obtained by whipping by the stirring assembly flows faster and more smoothly when passing through the feeding port 231. Even if the juice is relatively viscous, it can flow smoothly into the filtering cavity of the filter screen, and then the juice is filtered by rotating the filter screen 21. The filtered juice flows out from the juice outlet 222, and the filtering efficiency is high.
[0047] See Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 7 , a plurality of the partition ribs 232 are provided. The plurality of partition ribs 232 all extend obliquely from the side wall of the feeding port 231 in a direction away from the base 22 and are connected at the center of the cup body 1 to form a connecting portion 2322. In this way, taking the partition ribs 232 as a whole, the protruding directions of all the partition ribs 232 are as shown by the arrow B in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 7 .
[0048] With the above settings, since the plurality of partition ribs 232 all extend obliquely from the side wall of the feeding port 231 in a direction away from the base 22 and are connected at the center of the cup body 1, during the process of the juice flowing into the filtering cavity, the aforementioned partition ribs 232 can play a role in diverting the juice. Moreover, the partition ribs 232 extend in a direction away from the base 22 and are connected at the center of the cup body, which can also prevent the generation of vacuum. As a result, the juice flows more smoothly.
[0049] See Figure 10 and Figure 11 , the filter screen cover 23 includes a feeding channel 234. See Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 7, the cross-sectional area of the feeding channel 234 decreases along the direction from the filter screen cover 23 to the base 22. There is no limitation on how to decrease it, for example, it can decrease gradually. The way to achieve gradual decrease can be, for example, frustum-shaped, funnel-shaped, etc. Of course, in some embodiments, the way to achieve the decrease can be that the feeding channel 234 is in the shape of a trapezoidal table. In short, the channel wall 2341 of the feeding channel 234 only needs to include an inclined side wall. The small end of the feeding channel 234 forms the feeding port 231; at least part of the feeding channel 234 extends into the filtering cavity 211.
[0050] With the above settings, the cross-sectional area of the feeding channel 234 gradually decreases along the direction from the filter screen cover 23 to the base 22, and the small end of the feeding channel 234 forms the feeding port 231. In this way, the feeding channel 234 plays a certain guiding role for the juice, and the juice is more likely to flow along the channel wall 2341 of the feeding channel 234 to the feeding port. Thus, the juice flows more quickly. Moreover, at least part of the feeding channel 234 extends into the filtering cavity 211, preventing the juice from flowing outside the filter screen.
[0051] In the illustrated embodiment of the present application, multiple partition ribs 232 all extend obliquely away from the base 22 from the side wall of the feeding port 231 and are connected at the center of the cup body 1. At the same time, the channel wall 2341 of the feeding channel 234 is obliquely arranged, so that the partition ribs 232 and the channel wall 2341 form an approximately "W"-shaped funnel, which plays both a guiding and a diverting role, making the juice flow faster and more smoothly when passing through the feeding channel and the feeding port.
[0052] See Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 7 , the filter screen cover 23 includes a retaining wall 235. The retaining wall 235 surrounds the feeding port 231 for one week and at least part of it extends into the filtering cavity 211 of the filter screen 21.
[0053] With the above settings, after the juice passes through the feeding port 231, it then flows into the filtering cavity 211 from the space surrounded by the retaining wall 235, and at least part of the retaining wall 235 extends into the filtering cavity 211, so that the juice will not flow outside the filter screen during the flowing process. Those skilled in the art can understand that in the case of setting the retaining wall 235, the channel wall 2341 of the feeding channel 234 does not need to extend into the filtering cavity 211.
[0054] See Figure 1 、 Figure 2 、 Figure 3 and Figure 4 and in combination with Figure 9The filter screen 21 includes a filter cavity 211 and a plurality of blocking portions 212 located in the filter cavity 211. The plurality of blocking portions 212 are arranged at intervals along the circumference of the filter screen 21, and each blocking portion 212 is connected to the side wall and the bottom wall of the filter cavity 211.
[0055] As configured above, during the filtering process by rotating the filter screen 21, the residue can be limited between adjacent blocking parts 212, thereby achieving better separation of residue and juice, better filtering effect, and better taste of juice.
[0056] See also Figure 9 and Figure 1 , Figure 2 , Figure 3 and Figure 4 The blocking portion 212 includes an arcuate edge 2121, so that the width of the blocking portion 212 decreases along the direction from the base 22 to the filter cover 23. The shape of the blocking portion 212 is not limited, for example, a plate shape.
[0057] As set above, the arc-shaped edge reduces the width of the blocking portion 212 along the direction from the base 22 to the filter cover 23, which can take into account the flow of juice and the limitation of residue between adjacent blocking portions 212, thereby achieving better separation of juice and residue, better filtering effect, and better taste of juice.
[0058] See also Figure 3 , Figure 4 and Figure 7 Combined with Figure 1 and Figure 2 The filter screen 21 includes a support shaft 213 located in the filter cavity 211 and a connection portion 214 located outside the filter screen 21. The connection portion 214 and the support shaft 213 are both located on the rotation center line of the filter screen 21. The support shaft 213 is clearance-matched with the filter screen cover 23 so that the support shaft 213 can rotate relative to the filter screen cover 23, and the connection portion 214 is transmission-connected to the second transmission member 221 of the base 22.
[0059] As described above, the support shaft 213 is rotatably connected relative to the filter cover 23, and the connecting portion 214 is connected to the second transmission member 221 of the base 22, forming an upper and lower double-point fixation, so that the filter 21 does not shake when rotating at high speed, and the operation is more stable.
[0060] See also Figure 4 Combined with Figure 9 In some embodiments, the second transmission member 221 includes a transmission head 2211. One of the connecting portion 214 and the transmission head 2211 includes an insertion cavity ( Figure 4The middle connecting portion includes an insertion cavity), and the other of the connecting portion 214 and the transmission head 2211 is adapted to the shape of the insertion cavity (for example, both are regular polygons, Figure 9 It is shown that both are regular hexagons), and are inserted into the insertion cavity.
[0061] With the above settings, the assembly of the second transmission member 221 and the connecting portion 214 is simple.
[0062] See Figure 4 , in some embodiments, one of the filter cover 23 and the support shaft 213 is provided with a positioning shaft 2131, and the other is provided with a groove that is in clearance fit with the positioning shaft 2131 ( Figure 4 It is the filter cover 23 that is provided with the groove).
[0063] With the above settings, the assembly between the filter cover 23 and the support shaft 213 is simple.
[0064] See Figure 8 and Figure 6 and in combination with Figure 9 , the filter screen 21 is provided with a plurality of reinforcing ribs 215. The reinforcing ribs 215 are not limited to being provided on the surface of the filter screen 21. The reinforcing ribs 215 are distributed at intervals along the circumference of the filter screen 21. The reinforcing ribs 215 are part of the filter screen support 2192.
[0065] With the above settings, by providing the reinforcing ribs 215, the structural strength of the filter screen 21 can be enhanced.
[0066] See Figure 1 and Figure 2 , secondly, the present application discloses a cooking machine. The cooking machine includes a main body 20 and any one of the foregoing cooking cups 10. As Figure 1 shown, when the cooking cup 10 is placed upright, the main body 20 drives the first transmission member 31 to rotate, driving the stirring blade 32 to rotate in the cup body 1 to achieve whipping; as Figure 2 shown, when the cooking cup 10 is inverted, the main body 20 drives the second transmission member 221 to rotate to drive the filter screen 21 to rotate, so that the juice flows out from the juice outlet 222 after being filtered by the filter screen 21.
[0067] With the above settings, the above cooking machine at least has the beneficial effects of the foregoing cooking cup. And the above cooking machine can drive the stirring assembly and the filtering assembly located at both ends of the cooking cup respectively through the main body, so that when the cooking cup is placed upright, the stirring blade can be driven to achieve whipping, and then the cooking cup is inverted, and the filter screen can be driven to rotate to filter the juice obtained by whipping with the stirring blade, which is convenient to operate.
[0068] It should be noted that the technical solutions or technical features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of this application is not limited to the precise structures described in the above embodiments and shown in the drawings; any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of this application shall be included within the scope of protection of this application.
Claims
1. A cooking cup, characterized in that: It comprises a cup body (1), a filtering assembly (2) and a stirring assembly (3), wherein the stirring assembly (3) and the filtering assembly (2) are respectively arranged at two opposite ends of the cup body (1); The stirring assembly (3) comprises a first transmission member (31) and a stirring blade (32), wherein the stirring blade (32) is assembled inside the cup body (1), and the first transmission member (31) is used to drive the stirring blade (32) to rotate; The filter assembly (2) comprises a filter screen (21), a base (22) and a filter screen cover (23); The base (22) and the filter cover (23) are respectively located at opposite ends of the filter (21); the base (22) is provided with a second transmission member (221) and a juice outlet (222); the second transmission member (221) is used to drive the filter (21) to rotate relative to the base (22); The filter cover (23) comprises an inlet (231) and a dividing rib (232); the inlet (231) communicates with the interior of the cup body (1) and the filter cavity (211) of the filter (21); the dividing rib (232) is connected to the side wall of the inlet (231) and divides the inlet (231) into multiple parts; the dividing rib (232) is arranged at an angle to increase the area of the inlet (231).
2. The cooking cup according to claim 1, characterized in that: The dividing ribs (232) are provided in a plurality, and the plurality of dividing ribs (232) extend obliquely from the side wall of the feed inlet (231) in a direction away from the base (22) and are connected at the center of the cup body (1).
3. The cooking cup according to claim 1 or 2, characterized in that: The filter cover (23) comprises a feed channel (234), the cross-sectional area of the feed channel (234) gradually decreases along the direction from the filter cover (23) to the base (22), and the small end of the feed channel (234) forms the feed port (231); the feed channel (234) at least partially extends into the filter cavity (211).
4. The cooking cup according to claim 1, characterized in that: The filter cover (23) comprises a retaining wall (235), the retaining wall (235) surrounds the feed inlet (231) and at least partially extends into the filter cavity (211).
5. The cooking cup according to claim 1, characterized in that: The filter screen (21) comprises a plurality of blocking portions (212) located in the filter cavity (211); the plurality of blocking portions (212) are arranged at intervals along the circumference of the filter screen (21), and each blocking portion (212) is connected to a side wall and a bottom wall of the filter cavity (211).
6. The cooking cup according to claim 5, characterized in that: The blocking portion (212) comprises an arc-shaped edge (2121) so that the width of the blocking portion (212) decreases along the direction from the base (22) to the filter cover (23).
7. The cooking cup according to claim 1, characterized in that: The filter screen (21) comprises a support shaft (213) located in the filter cavity (211) and a connecting portion (214) located outside the filter screen (21); The connecting portion (214) and the supporting shaft (213) are both located on the rotation center line of the filter (21); the supporting shaft (213) and the filter cover (23) are clearance-matched so that the supporting shaft can rotate relative to the filter cover (23); and the connecting portion (214) is in transmission connection with a second transmission member (221) of the base (22).
8. The cooking cup according to claim 7, characterized in that: The second transmission member (221) comprises a transmission head (2211), one of the connection portion (214) and the transmission head (2211) comprises an insertion cavity, and the other of the connection portion (214) and the transmission head (2211) is adapted to the shape of the insertion cavity and is inserted into the insertion cavity; and / or, One of the filter cover (23) and the support shaft (213) is provided with a positioning shaft (2131), and the other is provided with a groove that is clearance-matched with the positioning shaft (2131).
9. The cooking cup according to claim 1, characterized in that: The filter screen (21) is provided with a plurality of reinforcing ribs (215), and the reinforcing ribs (215) are distributed at intervals along the circumference of the filter screen (21); And / or, the filter cover (23) and the cup body (1) are assembled via a first screw-on structure (291); and the filter cover (23) and the base (22) are assembled via a second screw-on structure (292).
10. A food processor, characterized in that: The food processor comprises a main unit (20) and a food cup (10) according to any one of claims 1 to 9, wherein: when the food cup (10) is placed upright, the main unit (20) drives the first transmission member (31) to rotate, thereby driving the stirring blade (32) to rotate in the cup body (1) to achieve whipping; when the food cup is inverted, the main unit (20) drives the second transmission member (221) to rotate, thereby driving the filter (21) to rotate, so that the juice is filtered by the filter and flows out from the juice outlet (222).