Whipping device, water tank, control method of whipping device and storage medium
By using the liquid impact force to drive the power structure, the cutting instrument of the beater device is cut, which solves the problem of high resource consumption of existing beater devices and ensures the safety of users.
Patent Information
- Application Number
- CN202311636479.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-30
- Publication Date
- 2025-05-30
AI Technical Summary
When the existing whipping device improves the whipping effect, it will cause a large consumption of electrical energy resources and there is a risk of leakage and electric shock.
By using the liquid impact force to rotate the power structure, the cutting equipment is driven to cut, thereby achieving resource conservation.
While saving resources, the beater device works normally, while ensuring the user's power safety and avoiding the risk of excessive power consumption and leakage.
Smart Images

Figure CN120061441A_ABST
Abstract
Description
Technical Field
[0001] This application generally relates to the technical field of sinks, and particularly to a whipping device, a sink, a control method for the whipping device, and a storage medium. Background Art
[0002] In the prior art, a whipping device usually completes the whipping work in an energized state. In the actual use process of the whipping device by users, in order to improve the whipping effect of the whipping device, the number of whipping times may be increased or the whipping force of the whipping device may be increased, which results in a large consumption of electric energy resources.
[0003] Therefore, the whipping device in the prior art still has the problem of large resource consumption. Summary of the Invention
[0004] In view of the above-mentioned defects or deficiencies in the prior art, it is desirable to provide a whipping device, a sink, a control method for the whipping device, and a storage medium, which can use the liquid impact force to rotate the power structure 1110 to drive the cutting tool 112 to perform cutting, thereby achieving the technical effect of saving resources.
[0005] In a first aspect, a whipping device 100 is provided, which includes a cutting assembly 110 and a liquid outlet assembly 120. The cutting assembly 110 includes a transmission assembly 111 and a cutting tool 112, and the transmission assembly 111 includes a power structure 1110;
[0006] The liquid outlet assembly 120 includes a liquid outlet 121, and the liquid outlet 121 is disposed opposite to the power structure 1110 of the transmission assembly 111;
[0007] The power structure 1110 is configured to rotate under the impact of the liquid at the liquid outlet 121 and drive the cutting tool 112 to perform cutting.
[0008] In combination with the first aspect, in a possible implementation manner, the power structure 1110 includes a power chamber 1111 and a fixed rod 1112 disposed in the power chamber 1111. The fixed rod 1112 is connected to the cutting tool 112, and power blades 11121 are disposed on the fixed rod 1112. The liquid outlet direction of the liquid outlet 121 is opposite to the power blades 11121;
[0009] The power blades 11121 are configured to rotate under the impact of the liquid at the liquid outlet 121 and drive the cutting tool 112 through the fixed rod 1112.
[0010] In combination with the first aspect, in a possible implementation manner, there is an included angle between the plane where the liquid outlet 1201 is located and the plane where the power blades 11121 are located.
[0011] In combination with the first aspect, in a possible implementation, the liquid outlet assembly 120 further includes a base 122, a first fixing structure 1221 is provided on the base 122, the power structure 1110 further includes a second fixing structure 1113, and the first fixing structure 1221 is detachably connected to the second fixing structure 1113.
[0012] In combination with the first aspect, in a possible implementation, the first fixing structure 1221 surrounds the base 122, the second fixing structure 1113 surrounds the outside of the power chamber 1111, and the opening areas of the first fixing structure 1221 and the second fixing structure 1113 match.
[0013] In combination with the first aspect, in a possible implementation, the liquid outlet assembly 120 further includes a detection module; the detection module is used to detect the type of appliance above the base 122; the types of appliances include cups or the power structure 1110;
[0014] The liquid outlet assembly 120 is further used to adjust the liquid outlet parameters according to the type of appliance.
[0015] In combination with the first aspect, in a possible implementation, the liquid outlet assembly 120 further includes a pressure sensor, and the pressure sensor is used to collect pressure signals;
[0016] The liquid outlet assembly 120 is used to control the liquid outlet parameters of the liquid outlet 121 in response to the pressure signal; the liquid outlet parameters include at least one of the liquid outlet volume and the liquid outlet frequency.
[0017] In the second aspect, a sink 200 is provided, which includes a tank body 210, a water inlet pipe 220, and the whipping device 100 described in the first aspect. The whipping device 100 is detachably arranged at the opening of the tank body 210, and the water inlet pipe 220 is connected to the liquid outlet assembly 120 of the whipping device 100.
[0018] In the third aspect, a control method for a whipping device is provided. This method is applied to the whipping device 100 described in the first aspect, and the method includes:
[0019] Obtain the attribute information of the whipping object of the whipping device 100, and the attribute information includes at least one of the size, weight, and hardness of the whipping object;
[0020] Determine the power parameters of the power structure 1110 of the whipping device 100 according to the attribute information, and determine the liquid outlet parameters of the liquid outlet 121 of the whipping device 100 according to the power parameters.
[0021] In the fourth aspect, a computer-readable storage medium is provided, on which a computer program is stored, and this computer program is used to implement the method provided in the third aspect as described above.
[0022] The whipping device, water tank, control method of the whipping device, and storage medium provided by the embodiments of the present application can utilize the impact force of the liquid flowing out of the liquid outlet assembly 120 to rotate the power structure 1110, so as to drive the cutting tool 112 to perform cutting, thereby enabling the whipping device to work properly while saving resources and ensuring the user's electrical safety.
[0023] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] By reading the detailed description of the non-limiting embodiments with reference to the following drawings, other features, objectives, and advantages of the present application will become more apparent:
[0025] Figure 1 An exploded structural schematic diagram of a perspective of the whipping device 100 provided by the embodiments of the present application;
[0026] Figure 2 An exploded structural schematic diagram of another perspective of the whipping device 100 provided by the embodiments of the present application;
[0027] Figure 3 A schematic diagram of the power structure 1110 provided by the embodiments of the present application;
[0028] Figure 4 A schematic diagram of the liquid outlet assembly 120 provided by the embodiments of the present application;
[0029] Figure 5 Another schematic diagram of the whipping device 100 provided by the embodiments of the present application;
[0030] Figure 6 A schematic diagram of the water tank 200 provided by the embodiments of the present application;
[0031] Figure 7 A flowchart of the control method of the whipping device provided by the embodiments of the present application;
[0032] Figure 8 A structural schematic diagram of the computer device provided by the embodiments of the present application;
[0033] In the above figures:
[0034] 100 - whipping device; 110 - cutting assembly; 120 - liquid outlet assembly; 111 - transmission assembly; 112 - cutting tool; 1110 - power structure; 121 - liquid outlet; 1111 - power chamber; 1112 - fixing rod; 11121 - power blade; 122 - base; 1221 - first fixing structure; 1113 - second fixing structure; 200 - water tank; 210 - tank body; 220 - water inlet pipe. Detailed implementation manners
[0035] The present application will be further described in detail below with reference to the accompanying drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the related invention, rather than limiting the invention. In addition, it should be noted that for the convenience of description, only the parts related to the invention are shown in the drawings.
[0036] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present application will be described in detail below with reference to the drawings and embodiments. In addition, the term "and / or" in this article is only a description of the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. The terms "first" and "second" in the description and claims of the embodiments of the present application are used to distinguish different objects, rather than to describe the specific order of the objects.
[0037] In the prior art, a whipping device with a whipping effect usually completes the whipping work in an energized state. In the actual use process of the whipping device by users, in order to improve the whipping effect of the whipping device, the number of whipping times may be increased or the whipping force of the whipping device may be increased, which results in a large consumption of electric energy resources. Therefore, the whipping device in the prior art still has the problem of large resource consumption. Secondly, since the whipping device in the prior art is usually an electrified device, there may be a risk of electric leakage and electric shock when the user cleans the whipping device.
[0038] Based on this, the present application proposes a whipping device 100. The whipping device 100 can use the liquid impact force to rotate the power structure 1110 to drive the cutting tool 112 to cut, thereby achieving the technical effect of saving resources.
[0039] Figure 1 FIG. is an exploded structural schematic diagram of the whipping device 100 provided by the embodiment of the present application from a perspective, as Figure 1 shown, the whipping device 100 includes a cutting assembly 110 and a liquid outlet assembly 120. The cutting assembly 110 includes a transmission assembly 111, and the transmission assembly 111 includes a power structure 1110. Figure 2 FIG. is an exploded structural schematic diagram of the whipping device 100 provided by the embodiment of the present application from another perspective, as Figure 2 shown, the cutting assembly 110 further includes a cutting tool 112.
[0040] Specifically, the liquid outlet assembly 120 includes a liquid outlet 121, and the liquid outlet 121 is oppositely arranged with respect to the power structure 1110 of the transmission assembly 111; the power structure 1110 is configured to rotate under the impact of the liquid at the liquid outlet 121 and drive the cutting implement 112 to perform cutting.
[0041] In a possible implementation manner, the transmission assembly 111 may include a power structure 1110. Exemplarily, the power structure 1110 may be connected to the cutting implement 112 so as to provide power for the cutting implement 112 when the power structure 1110 is in an operating state. For example, the cutting implement 112 may be a cutting blade, and a container may be installed above the cutting implement so that the cut food materials and the like are retained in the container. Among them, the opening area of the container matches the opening area of the area where the cutting implement is located.
[0042] It should be noted that in order to prevent the liquid from entering the area where the cutting implement 112 is located from the power structure 1110, a partition assembly, such as a baffle or the like, may be provided between the power structure 1110 and the cutting implement 112.
[0043] In a possible implementation manner, the liquid outlet 121 in the liquid outlet assembly 120 may be oppositely arranged with respect to the power structure 1110 of the transmission assembly 111 so that the liquid flowing out of the liquid outlet 121 can directly impact the power structure 1110, thereby enabling the power structure 1110 to be in an operating state under the action of the liquid impact force. Among them, the situation of the liquid flowing out of the liquid outlet assembly 120 can be correspondingly controlled based on the on or off state of the liquid outlet switch.
[0044] Exemplarily, the liquid outlet 121 may be correspondingly arranged with respect to the power component in the power structure 1110. Among them, the liquid outlet 121 may include a plurality of liquid outlet holes. For example, when the power structure 1110 is composed of blades, each liquid outlet hole of the liquid outlet 121 may correspond to a plurality of blades or may correspond to each blade one by one.
[0045] In a possible implementation manner, the power structure 1110 can utilize the impact force of the liquid flowing out of the liquid outlet 121 to rotate itself and drive the cutting implement 112 to perform cutting when it rotates itself.
[0046] Exemplarily, the power structure 1110 and the cutting implement 112 may be connected by the same rotating shaft so that when the power structure 1110 rotates around the rotating shaft, the cutting implement 112 can also rotate around the rotating shaft to perform cutting work.
[0047] The whipping device 100 provided by the embodiment of the present application can utilize the impact force of the liquid flowing out of the liquid outlet assembly 120 to rotate the power structure 1110, so as to drive the cutting tool 112 to perform cutting, thereby enabling the whipping device to work normally while saving resources, and at the same time ensuring the user's electrical safety.
[0048] In another embodiment of the present application, the specific structural distribution of the power structure 1110 is further provided. Exemplarily, Figure 3 is a schematic diagram of the power structure 1110 provided by the embodiment of the present application. As Figure 3 shown, the power structure 1110 includes a power chamber 1111 and a fixed rod 1112 disposed in the power chamber 1111. The fixed rod 1112 is connected to the cutting tool 112, and a power blade 11121 is disposed on the fixed rod 1112. The liquid outlet direction of the liquid outlet 121 is opposite to the power blade 11121.
[0049] Specifically, the power blade 11121 is used to rotate under the impact of the liquid at the liquid outlet 121 and drive the cutting tool 112 through the fixed rod 1112.
[0050] In the embodiment of the present application, the power blade 11121 can be fixedly connected to the cutting tool 112 by using the fixed rod 1112, so that when the power blade 11121 rotates, it can drive the cutting tool 112 to perform cutting through the fixed rod 1112.
[0051] In a possible implementation manner, the power structure 1110 may include a power chamber 1111 and a fixed rod 1112 disposed inside the power chamber 1111, wherein the fixed rod 1112 may be the rotating shaft connecting the power structure 1110 and the cutting tool 112 as described above.
[0052] Exemplarily, the power blade 11121 and the cutting tool 112 can be directly disposed on the fixed rod to achieve the fixed connection between the power blade 11121 and the cutting tool 112.
[0053] It should be noted that in order to prevent the liquid flowing out of the liquid outlet 121 from entering the area where the cutting tool 112 is located through the fixed rod 1112, the fixed rod 1112 can be respectively fixed at the bottom of the area where the cutting tool 112 is located and the top of the power chamber 1111.
[0054] Exemplarily, the fixed rod 1112 can be disposed at the central axis inside the power chamber 1111, and the power blade 11121 on the fixed rod 1112 is included in the power chamber 1111. Among them, the cross-sectional area of the power chamber 1111 is not less than the cross-sectional area of the power blade 11121.
[0055] Exemplarily, the power chamber 1111 can be an open cavity structure, for example, a hollow cavity structure with both the top and bottom being open.
[0056] It should be noted that the power blade 11121 is arranged in the power chamber 1111 because the power blade 11121 needs to rotate under the impact of the liquid at the liquid outlet 121, and the power chamber 1111 can block the liquid inside the cavity to ensure that the impact force of the liquid flowing out from the liquid outlet 121 is all provided to the power blade 11121, so as to avoid the situation that the cutting tool 112 cannot cut normally due to insufficient power of the power blade 11121.
[0057] In one possible implementation, the liquid outlet direction of the liquid outlet 121 can be arranged opposite to the power blade 11121. Exemplarily, the liquid outlet direction and the power blade 11121 can be arranged oppositely by correspondingly arranging the liquid outlet holes of the liquid outlet 121 with the power blade 11121. Among them, the orientation of the liquid outlet holes on the liquid outlet 121 can be the liquid outlet direction of the liquid outlet 121.
[0058] For example, the orientations of the liquid outlet holes can correspond one by one to the power blades 11121; the liquid outlet range of one liquid outlet hole can also correspond to multiple power blades 11121.
[0059] In one possible implementation, an energy storage module can be arranged between the power blade 11121 and the cutting tool 112 to store the mechanical energy generated when the power blade 11121 rotates by using the energy storage module, and use the mechanical energy as the cutting power of the cutting tool 112 to enable the cutting tool 112 to work normally. For example, the energy storage module can be a power generator.
[0060] In another embodiment of the present application, a specific distribution manner of the liquid outlet 1201 is also provided. Exemplarily, there is an included angle between the plane where the liquid outlet 1201 is located and the plane where the power blade 11121 is located.
[0061] In the embodiment of the present application, by arranging the liquid outlet 1201 on a plane having an included angle with the plane where the power blade 11121 is located, the water column ejected from the liquid outlet 1201 can have a certain inclination angle, and directly hit the power blade 11121 based on this inclination angle, thereby ensuring the liquid impact force provided to the power blade 11121.
[0062] In one possible implementation, the liquid outlet 1201 can include multiple liquid outlet holes. Specifically, the liquid outlet 1201 can be made to have an included angle with the plane where the power blade 11121 is located by respectively arranging the multiple liquid outlet holes on different planes having an included angle with the plane where the power blade 11121 is located.
[0063] Exemplarily, multiple liquid outlet holes can be respectively arranged around the liquid outlet 1201, so that the planes where the respective liquid outlet holes are located form an angle with the plane where the power blade 11121 is located. For example, when the plane where the power blade 11121 is located is the horizontal plane, the liquid outlet 1201 can include 6 water outlet holes, where 1 circular water outlet hole is arranged at the top of the liquid outlet 1201; 5 strip-shaped water outlet holes are arranged around the liquid outlet 1201 and have a certain inclination angle with the horizontal plane.
[0064] In another embodiment of the present application, the specific structural distribution of the liquid outlet assembly 120 is further provided. Exemplarily, Figure 4 is a schematic diagram of the liquid outlet assembly 120 provided by the embodiment of the present application. As Figure 4 shown, the liquid outlet assembly 120 further includes a base 122, a first fixing structure 1221 is arranged on the base 122, the power structure 1110 further includes a second fixing structure 1113, and the first fixing structure 1221 is detachably connected to the second fixing structure 1113.
[0065] In the embodiment of the present application, the power structure 1110 can be detachably installed on the base 122 of the liquid outlet assembly 120 through the fixing structure. On the one hand, when the power structure 1110 is installed on the base 122, the liquid of the liquid outlet assembly 120 can be directly sprayed on the power structure 1110 to provide operating power for the power structure 1110; on the other hand, the power structure 1110 can be replaced with other appliances to clean the appliances with the liquid of the liquid outlet assembly 120.
[0066] In a possible implementation manner, the liquid outlet assembly 120 further includes a base 122, and the first fixing structure 1221 is arranged on the base 122. Specifically, the liquid outlet 121 is arranged on the base 122.
[0067] Exemplarily, the power structure 1110 can be fixed on the liquid outlet assembly 120 through the connection between the first fixing structure 1221 on the base 122 and the second fixing structure 1113 on the power structure 1110. Among them, the opening area of the first fixing structure 1221 can be the same as or different from the area of the base 122; the opening areas of the first fixing structure 1221 and the second fixing structure 1113 can be the same or different. It should be noted that the opening area of the first fixing structure 1221 is not less than the area of the liquid outlet 121.
[0068] For example, a buckle assembly can be arranged on the first fixing structure 1221 and the second fixing structure 1113. Specifically, the first fixing structure 1221 and the second fixing structure 1113 can be respectively arranged on the outside of the base 122 and the power chamber 1111 and connected through the buckle assembly.
[0069] Optionally, the first fixing structure 1221 may be provided with a convex member, and the second fixing structure 1113 may be provided with a concave member. By engaging the convex and concave members, the first fixing structure 1221 can be snapped into the second fixing structure 1113, thereby achieving a fixed connection between the power structure 1110 and the liquid outlet assembly 120. It should be noted that the present application does not specifically limit the setting of the convex and concave members of the first fixing structure 1221 and the second fixing structure 1113.
[0070] In another embodiment of the present application, a specific distribution method of the fixing structure is also provided. Exemplarily, Figure 5 is another schematic diagram of the whipping device 100 provided by the embodiment of the present application. As Figure 5 shown, the first fixing structure 1221 surrounds the base 122, and the second fixing structure 1113 surrounds the outside of the power chamber 1111, and the opening areas of the first fixing structure 1221 and the second fixing structure 1113 match.
[0071] In the embodiment of the present application, by setting the opening area of the first fixing structure 1221 to match the opening area of the second fixing structure 1113, the first fixing structure 1221 and the second fixing structure 1113 are completely attached and connected, so that the liquid flowing out of the liquid outlet 121 can be completely blocked in the chamber formed by the first fixing structure 1221 and the second fixing structure 1113, ensuring the liquid impact force.
[0072] In one possible implementation, as Figure 4 shown, the first fixing structure 1221 may surround the base 122, the second fixing structure 1113 may surround the outside of the power chamber 1111, and the opening area of the first fixing structure 1221 may match the opening area of the second fixing structure 1113.
[0073] Exemplarily, snap components may be respectively provided on the outer sides of the first fixing structure 1221 and the second fixing structure 1113 to achieve a fixed connection between the first fixing structure 1221 and the second fixing structure 1113 through the snap components.
[0074] Optionally, convex members and concave members may be respectively provided on the first fixing structure 1221 and the second fixing structure 1113 to achieve a fixed connection between the first fixing structure 1221 and the second fixing structure 1113 by snapping the convex members into the concave members.
[0075] In another embodiment of the present application, other distribution components of the liquid outlet assembly 120 are also provided. Exemplarily, the liquid outlet assembly 120 further includes a detection module; the detection module is used to detect the type of appliance above the base 122; the type of appliance includes a cup or the power structure 1110. Specifically, the liquid outlet assembly 120 is further used to adjust the liquid outlet parameters according to the type of appliance.
[0076] In the embodiments of the present application, the detection module can be used to detect the type of the appliance above the base 122, so as to adjust the liquid outlet parameters of the liquid outlet assembly 120 to the liquid outlet type and degree suitable for the type of the appliance based on the type of the appliance.
[0077] In a possible implementation manner, a detection module can be arranged on the liquid outlet assembly 120 to detect and identify the type of the appliance by using the detection module. Among them, the detection module can be an infrared sensor, an image sensor, etc., and can be specifically arranged at the liquid outlet 121 or in the vicinity of the liquid outlet 121.
[0078] Exemplarily, the type of the appliance above the base 122 can be determined based on the recognition result of the power blade 11121 above the base 122. For example, when the power blade 11121 is above the base 122, it can be determined that the type of the appliance above the base 122 is the power structure 1110; when the power blade 11121 is not above the base 122, it can be determined that the type of the appliance above the base 122 is a cup.
[0079] In a possible implementation manner, the recognition result of the type of the appliance above the base 122 can be transmitted to the liquid outlet assembly 120, so that the liquid outlet assembly 120 adjusts the liquid outlet parameters according to the recognition result of the type of the appliance. Among them, the liquid outlet assembly 120 can include a processor; the liquid outlet parameters can include a liquid outlet mode, a liquid outlet frequency, a liquid outlet level, and a liquid outlet direction, etc.
[0080] Exemplarily, when the recognition result of the type of the appliance is the power structure 1110, the liquid outlet assembly 120 can increase the liquid outlet frequency and the liquid outlet force to increase the liquid impact force; when the recognition result of the type of the appliance is a cup, compared with the liquid outlet frequency and the liquid outlet force of the liquid outlet assembly 120 for the power structure 1110, the liquid outlet assembly 120 can reduce the liquid outlet frequency and the liquid outlet force to a certain extent to reduce the liquid impact force.
[0081] Furthermore, the detection module can be used to judge the degree of dirt of the appliance above the base 122. For example, the detection module can transmit the image information of the appliance above the base 122 to the liquid outlet assembly 120, so that the liquid outlet assembly 120 judges the degree of dirt of the appliance.
[0082] Exemplarily, when the degree of dirt of the appliance above the base 122 is relatively high, the liquid outlet assembly 120 can increase the liquid outlet frequency and adjust the liquid outlet direction, so that the liquid ejected from the liquid outlet 121 can directly impact the dirty area. It should be noted that the liquid outlet assembly 120 can judge the degree of dirt of the appliance above the base 122 through the dirt recognition model inside the processor.
[0083] In another embodiment of the present application, other distribution components of the liquid outlet assembly 120 are also provided. Exemplarily, the liquid outlet assembly 120 further includes a pressure sensor for collecting pressure signals. Specifically, the liquid outlet assembly 120 is configured to control the liquid outlet parameters of the liquid outlet 121 in response to the pressure signal; the liquid outlet parameters include at least one of the liquid output volume and the liquid outlet frequency.
[0084] In the embodiment of the present application, the pressure signal applied to the liquid outlet assembly 120 can be collected by the pressure sensor, so as to dynamically control the liquid outlet parameters of the liquid outlet 121 through the pressure signal, thereby realizing flexible setting of the liquid outlet parameters of the liquid outlet assembly 120.
[0085] In a possible implementation manner, a pressure sensor can be provided on the liquid outlet assembly 120 to collect the pressure signal on the liquid outlet assembly 120 through the pressure sensor. Exemplarily, a pressure sensor can be provided on the base 122 of the liquid outlet assembly 120.
[0086] Exemplarily, when an appliance above the base 122 presses the base 122, the pressure sensor can transmit the pressure signal applied to the base 122 to the inside of the processor of the liquid outlet assembly 120, so that the processor determines the liquid outlet parameters of the liquid outlet 121 according to the pressure signal.
[0087] Exemplarily, the pressure value corresponding to the pressure signal can be positively correlated with the liquid output volume or the liquid outlet frequency in the liquid outlet parameters. For example, when the pressure value corresponding to the pressure signal collected by the pressure sensor is greater than the preset pressure threshold, the liquid output volume of the liquid outlet 121 can be increased or the liquid outlet frequency of the liquid outlet 121 can be increased. Among them, the preset pressure threshold can be used to distinguish whether the appliance above the base 122 is a cup or the power structure 1110.
[0088] Optionally, a pressure valve core can be provided inside the liquid outlet assembly 120. When a certain pressure is applied to the base 122, the liquid outlet 121 can automatically discharge liquid. Among them, the pressure acting on the pressure valve core is positively correlated with the liquid output volume of the liquid outlet 121.
[0089] The embodiment of the present application also provides a sink 200. Figure 6 It is a schematic diagram of the sink 200 provided by the embodiment of the present application. As Figure 6 shown, the sink 200 includes a tank body 210, a water inlet pipe 220, and a whipping device 100. Among them, the whipping device 100 is detachably arranged at the opening of the tank body 210, and the water inlet pipe 220 is connected to the liquid outlet assembly 120 of the whipping device 100.
[0090] In a possible implementation manner, the whipping device 100 is detachably arranged at the opening of the tank body 210. Among them, the water inlet pipe 220 of the sink 200 is connected to the liquid outlet assembly 120 in the whipping device 100.
[0091] Exemplarily, the whipping device 100 may be disposed at the opening edge of the tank body 210, and the water inlet pipe 220 of the water tank 200 may be connected to the liquid outlet 121.
[0092] Specifically, the water flow of the water inlet pipe 220 may flow out from the liquid outlet 121 to form a liquid impact force provided to the power structure 1110 of the whipping device 100.
[0093] The water tank 200 provided by the embodiment of the present application can utilize the impact force of the liquid flowing out of the liquid outlet assembly 120 to rotate the power structure 1110, so as to drive the cutting tool 112 to perform cutting, so that the whipping device works normally while saving resources, and at the same time ensuring the user's electrical safety.
[0094] The embodiment of the present application also provides a control method for a whipping device, and this method is applied to the above-mentioned whipping device 100. Figure 7 It is a schematic flow chart of the control method for the whipping device provided by the embodiment of the present application, as Figure 7 shown, this method includes the following steps:
[0095] S701. Obtain the attribute information of the whipping object of the whipping device 100, and the attribute information includes at least one of the size, weight, and hardness of the whipping object.
[0096] In a possible implementation manner, the attribute information of the whipping object of the whipping device 100 may be obtained through a detection module. Among them, the detection module may include a sensor and a camera assembly, etc.
[0097] Exemplarily, the whipping object placed above the base 122 of the whipping device 100 may be detected and identified through the detection module, so as to determine the attribute information of the whipping object according to the detection and identification result.
[0098] Specifically, the type of the appliance above the base 122 may be obtained first through the sensor in the detection module, and further, the picture of the whipping object above the base 122 may be taken through the camera assembly in the detection module, so as to determine the size, weight, and hardness of the whipping object according to the image information of the whipping object.
[0099] It should be noted that the picture information of multiple whipping objects can be used to train the whipping object recognition model, so that when the image of the whipping object is input into the whipping object recognition model, the model can automatically output the attribute information of the whipping object.
[0100] S702. Determine the power parameters of the power structure 1110 of the whipping device 100 according to the attribute information, and determine the liquid outlet parameters of the liquid outlet 121 of the whipping device 100 according to the power parameters.
[0101] In a possible implementation, the power parameters of the power structure 1110 of the whipping device 100 can be determined according to the attribute information of the whipping object. Exemplarily, the magnitude of the whipping object attribute information can be positively correlated with the power required by the power structure 1110.
[0102] For example, when the attribute information of the whipping object is the hardness of the whipping object, the greater the hardness of the whipping object, the greater the power required by the power structure 1110.
[0103] In a possible implementation, the liquid outlet parameters of the liquid outlet 121 of the whipping device 100 can be determined according to the power parameters. Exemplarily, parameters such as the liquid outlet mode and the liquid outlet frequency of the liquid outlet 121 can be adjusted according to the power parameters.
[0104] For example, when the power required by the power structure 1110 increases, the liquid outlet frequency of the liquid outlet 121 can be increased, and the liquid outlet volume of the liquid outlet 121 can be increased to increase the impact force of the liquid flowing out of the liquid outlet 121.
[0105] The control method of the water flow regulating device provided by the embodiments of the present application can first determine the power parameters suitable for the power structure 1110 in the whipping device 100 according to the attribute information of the whipping object of the whipping device 100, and then determine the liquid outlet parameters of the liquid outlet 121 of the whipping device 100 according to the power parameters of the power structure 1110, thereby increasing the matching degree between the impact force of the liquid flowing out of the liquid outlet 121 and the whipping force required by the whipping object (i.e., the power of the power structure 1110), and improving the whipping effect of the whipping device 100.
[0106] The following refers to Figure 8 , Figure 8 FIG. shows a schematic structural diagram of a computer device suitable for implementing the embodiments of the present application. As Figure 8 shown, the computer system 800 includes a central processing unit (CPU) 801, which can perform various appropriate actions and processes according to the program stored in the read-only memory (ROM) 802 or the program loaded from the storage section 808 into the random access memory (RAM) 803. In the RAM 803, various programs and data required for the operation instructions of the system are also stored. The CPU 801, ROM 802, and RAM 803 are connected to each other through a bus 804. The input / output (I / O) interface 805 is also connected to the bus 804.
[0107] The following components are connected to the I / O interface 805: an input section 806 including a keyboard, a mouse, etc.; an output section 807 including a cathode ray tube (CRT), a liquid crystal display (LCD), etc., and a speaker, etc.; a storage section 808 including a hard disk, etc.; and a communication section 809 including a network interface card such as a LAN card, a modem, etc. The communication section 809 performs communication processing via a network such as the Internet. A drive 810 is also connected to the I / O interface 805 as needed. A removable medium 811, such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, etc., is installed on the drive 810 as needed so that a computer program read from it is installed into the storage section 808 as needed.
[0108] Specifically, according to an embodiment of the present application, the process described above with reference to the flowchart Figure 7 can be implemented as a computer software program. For example, an embodiment of the present application includes a computer program product that includes a computer program carried on a computer-readable medium, and the computer program includes program codes for performing the method shown in the flowchart. In such an embodiment, the computer program includes program codes for performing the method shown in the flowchart. In such an embodiment, the computer program can be downloaded and installed from a network through the communication section 809, and / or installed from the removable medium 811. When the computer program is executed by a central processing unit (CPU) 801, the above functions defined in the system of the present application are executed.
[0109] It should be noted that the computer-readable medium shown in this application can be a computer-readable signal medium, a computer-readable storage medium, or any combination of the two. A computer-readable storage medium can be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the above. More specific examples of a computer-readable storage medium can include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In this application, a computer-readable storage medium can be any tangible medium that contains or stores a program, which can be used by or in conjunction with an instruction execution system, apparatus, or device. And in this application, a computer-readable signal medium can include a data signal propagated in a baseband or as part of a carrier wave, which carries computer-readable program code. Such a propagated data signal can take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. A computer-readable signal medium can also be any computer-readable medium other than a computer-readable storage medium, which can send, propagate, or transmit a program for use by or in conjunction with an instruction execution system, apparatus, or device. The program code contained on a computer-readable medium can be transmitted using any appropriate medium, including but not limited to: wireless, wire, optical cable, RF, etc., or any suitable combination of the above.
[0110] The flowcharts and block diagrams in the accompanying drawings illustrate the possible architectures, functions, and operation instructions of systems, methods, and computer program products according to various embodiments of this application. In this regard, each block in a flowchart or block diagram can represent a module, a program segment, or a part of code, and the foregoing module, program segment, or part of code contains one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order than marked in the accompanying drawings. For example, two connected blocks can actually be executed substantially in parallel, and they can sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, and the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified functions or operation instructions, or can be implemented by a combination of dedicated hardware and computer instructions.
[0111] The units or modules involved in the embodiments of the present application can be implemented in software or in hardware. The described units or modules can also be provided in a processor. For example, it can be described as: a processor includes a semantic extraction unit, a weight assignment unit, and a determination unit. Among them, the names of these units or modules do not constitute a limitation on the units or modules themselves in some cases.
[0112] As another aspect, the present application also provides a computer-readable storage medium, which can be included in the computer device described in the above embodiments, or can exist alone without being assembled into the computer device. The above computer-readable storage medium stores one or more programs, and when the above programs are executed by one or more processors to implement the method of the present application. For example, it can execute Figure 7 each step of the method shown.
[0113] The embodiments of the present application provide a computer program product, which includes instructions that, when run, cause the method described in the embodiments of the present application to be executed. For example, it can execute Figure 7 each step of the method shown.
[0114] The above description is only a preferred embodiment of the present application and an explanation of the applied technical principles. Those skilled in the art should understand that the scope of disclosure involved in the present application is not limited to the technical solutions formed by the specific combination of the above technical features, but should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the foregoing disclosure concept. For example, the technical solutions formed by mutually replacing the above features with the technical features (but not limited to) having similar functions disclosed in the present application.
Claims
1. A whipping device (100), comprising a cutting assembly (110), Characterized in that, It further comprises a liquid outlet assembly (120), the cutting assembly (110) comprises a transmission assembly (111) and a cutting implement (112), and the transmission assembly (111) comprises a power structure (1110); The liquid outlet assembly (120) comprises a liquid outlet (121), and the liquid outlet (121) is disposed opposite to the power structure (1110) of the transmission assembly (111); The power structure (1110) is configured to rotate under the impact of the liquid at the liquid outlet (121) and drive the cutting implement (112) to perform cutting.
2. The whipping device (100) according to claim 1, Characterized in that, The power structure (1110) comprises a power chamber (1111) and a fixing rod (1112) disposed in the power chamber (1111), the fixing rod (1112) is connected to the cutting implement (112), and a power blade (11121) is disposed on the fixing rod (1112), and the liquid outlet direction of the liquid outlet (121) is opposite to the power blade (11121); The power blade (11121) is configured to rotate under the impact of the liquid at the liquid outlet (121) and drive the cutting implement (112) through the fixing rod (1112).
3. The whipping device (100) according to claim 2, Characterized in that, There is an included angle between the plane where the liquid outlet (121) is located and the plane where the power blade (11121) is located.
4. The whipping device (100) according to any one of claims 1-3, Characterized in that, The liquid outlet assembly (120) further comprises a base (122), a first fixing structure (1221) is disposed on the base (122), the power structure (1110) further comprises a second fixing structure (1113), and the first fixing structure (1221) is detachably connected to the second fixing structure (1113).
5. The whipping device (100) according to claim 4, Characterized in that, The first fixing structure (1221) surrounds the base (122), the second fixing structure (1113) surrounds the outside of the power chamber (1111), and the opening areas of the first fixing structure (1221) and the second fixing structure (1113) are matched.
6. The whipping device (100) according to claim 5, Characterized in that, The liquid outlet assembly (120) further comprises a detection module; the detection module is configured to detect the type of appliance above the base (122); the type of appliance includes a cup or the power structure (1110); The liquid outlet assembly (120) is further configured to adjust the liquid outlet parameters according to the type of appliance.
7. The whipping device (100) according to claim 1, Characterized in that, The liquid outlet assembly (120) further comprises a pressure sensor, and the pressure sensor is configured to collect pressure signals; The liquid outlet assembly (120) is configured to control the liquid outlet parameters of the liquid outlet port (121) in response to the pressure signal; the liquid outlet parameters include at least one of the liquid outlet volume and the liquid outlet frequency.
8. A water tank (200) comprising a tank body (210) and a water inlet pipe (220), characterized in that it further comprises the whipping device (100) according to any one of claims 1-7, the whipping device (100) is detachably arranged at the opening of the tank body (210), and the water inlet pipe (220) is connected to the liquid outlet assembly (120) of the whipping device (100).
9. A control method for a whipping device, characterized in that it is applied to the whipping device (100) according to any one of claims 1-7, and the method comprises: obtaining attribute information of the whipping object of the whipping device (100), the attribute information including at least one of the size, weight, and hardness of the whipping object; determining the power parameters of the power structure (1110) of the whipping device (100) according to the attribute information, and determining the liquid outlet parameters of the liquid outlet port (121) of the whipping device (100) according to the power parameters.
10. A computer-readable storage medium, characterized in that a computer program is stored thereon, and the computer program is used to implement the control method for the whipping device as described in claim 9.