Food processor
By designing detachable food processor components, the problem of difficulty in disassembly during cleaning in the prior art is solved, and better hygiene and convenience of use are achieved.
Patent Information
- Application Number
- CN202422131253.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-30
AI Technical Summary
It is difficult to disassemble the existing food processors in full during cleaning, resulting in easy sanitary dead corners at the connections of components, affecting the sanitation of the entire machine.
A food processor is designed, including a removable wall breaking assembly, a drain valve assembly and a boiling assembly, all of which can be separated from the main body, thereby achieving full disassembly and cleaning of the entire machine.
Through the disassembly and comprehensive cleaning of the entire machine, we prevent sanitary blind spots from forming at the connections between the components, which significantly improves the hygiene of the entire food processor.
Smart Images

Figure CN222968423U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of food processing equipment, and particularly to a food processor. Background Art
[0002] With the increasing improvement of people's living standards, there are more and more types of food processors such as juicers, soybean milk machines, wall breakers, and multifunctional cooking machines. However, food processors generally process ingredients into slurry through a stirring knife, and discharge it through a discharge valve and a pipeline. As a result, the discharge valve and the pipeline are prone to residual food slurry, especially at the joints of the components, where residual food slurry is likely to accumulate to form a hygiene dead corner, seriously affecting the hygiene of the food processor. However, currently, only the wall-breaking cup body of the food processor can be separated from the main body, while the discharge valve and the pipeline are often fixed to the wall-breaking cup body and cannot be disassembled, resulting in the user being unable to thoroughly clean the food processor. Summary of the Utility Model
[0003] In order to overcome at least one of the above-mentioned defects in the prior art, this application provides a food processor, which can disassemble the whole machine of the food processor, facilitating the user to thoroughly clean each component, preventing the formation of hygiene dead corners at the joints between components, and improving the hygiene of the whole food processor.
[0004] A food processor according to an embodiment of the present application includes: a main body; a wall-breaking component, including a wall-breaking cup body having a wall-breaking cavity and a stirring knife group, the stirring knife group being detachably disposed in the wall-breaking cavity, and the wall-breaking cup body being detachably disposed on the main body; a discharge valve component, detachably disposed on the wall-breaking cup body; a boiling component, including a boiling cup body and a slurry discharge pipe, the boiling cup body being detachably disposed on the main body, and the slurry discharge pipe being detachably disposed between the discharge valve component and the boiling cup body.
[0005] In this food processor, both the wall-breaking component and the boiling component are detachably disposed on the main body, so that the wall-breaking component and the boiling component can be detached from the main body for cleaning. Moreover, the stirring knife group is detachably disposed in the wall-breaking cavity and the discharge valve component is detachably disposed on the wall-breaking cup body, enabling the stirring knife group and the discharge valve component to also be detached from the wall-breaking cup body for cleaning. At the same time, the slurry discharge pipe is detachably disposed between the discharge valve component and the boiling cup body, allowing the slurry discharge pipe to be separately detached, thereby realizing the disassembly of the whole machine of the food processor, facilitating the user to thoroughly clean each component, preventing the formation of hygiene dead corners at the joints between components, and improving the hygiene of the whole food processor.
[0006] According to some embodiments of the present application, the main body is provided with a pipeline accommodating channel, and the slurry discharge pipe is detachably arranged in the pipeline accommodating channel.
[0007] According to some embodiments of the present application, it further includes a sewage component, the sewage component includes a sewage tank and a sewage pipe, the sewage tank is detachably arranged on the main body, and the sewage pipe is detachably arranged between the discharge valve component and the sewage tank.
[0008] According to some embodiments of the present application, the discharge valve component includes two discharge ports opened at the bottom of the breaking cavity and a valve core main body detachably arranged at the bottom of the breaking cup body. A diversion cavity is formed at an interval between the top end of the valve core main body and the bottom of the breaking cup body. A partition member that divides the diversion cavity into a first diversion channel and a second diversion channel is arranged in the diversion cavity. The first diversion channel is arranged between the sewage pipe and any one of the discharge ports, and the second diversion channel is arranged between the slurry discharge pipe and the other discharge port. And each discharge port is provided with a valve plug, the valve plug is fixedly connected with a valve core connecting rod, and the valve core connecting rod is movably connected with the valve core main body.
[0009] According to some embodiments of the present application, the bottom of the breaking cup body is recessed towards the breaking cavity to form an assembly clamping position, the valve core main body is detachably arranged in the assembly clamping position, and the bottom of the stirring knife group extends downward to form a transmission part detachably connected to the assembly clamping position.
[0010] According to some embodiments of the present application, it further includes a cover plate, the cover plate is detachably arranged in the assembly clamping position for closing or opening the assembly clamping position.
[0011] According to some embodiments of the present application, the discharge valve component further includes a first shunt pipe and a second shunt pipe respectively connected to both sides of the valve core main body. The first shunt pipe connects the first diversion channel with the sewage pipe, and the second shunt pipe connects the second diversion channel with the slurry discharge pipe.
[0012] According to some embodiments of the present application, it further includes a valve core driving member assembled on the main body, and one end of the valve core connecting rod away from the valve plug passes through the valve core main body and is detachably connected to the valve core driving member.
[0013] According to some embodiments of the present application, an elastic element is sleeved on the valve core connecting rod. One end of the elastic element is connected to the valve core main body, and the other end of the elastic element is connected to the valve core connecting rod. And the elastic element provides a pre-tightening force for the valve core connecting rod to drive the valve plug into the discharge port.
[0014] According to some embodiments of the present application, the main body is connected with a supporting bottom plate, the supporting bottom is provided with positioning bumps, the upper end of the positioning bumps is provided with a guiding inclined surface inclined downward in a direction away from the main body, and the bottom of the boiling cup body is arranged in a positioning groove in fit connection with the positioning bumps.
[0015] In summary, the food processor provided by the present application has the following technical effects:
[0016] By detachably arranging the wall-breaking component and the boiling component on the main body, the wall-breaking component and the boiling component can be detached from the main body for cleaning. And the stirring knife group is detachably arranged in the wall-breaking cavity and the discharge valve assembly is detachably arranged on the wall-breaking cup body, so that the stirring knife group and the discharge valve assembly can also be detached from the wall-breaking cup body for cleaning. At the same time, the slurry discharge pipe is detachably arranged between the discharge valve assembly and the boiling cup body, so that the slurry discharge pipe can also be detached separately, thereby realizing the disassembly of the whole food processor, facilitating the user to comprehensively clean each component, preventing the formation of sanitary dead corners at the joints between components, and improving the sanitation of the whole food processor. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of the food processor according to an embodiment of the present application;
[0018] Figure 2 is an exploded schematic structural diagram of the food processor according to an embodiment of the present application;
[0019] Figure 3 is another exploded schematic structural diagram of the food processor according to an embodiment of the present application;
[0020] Figure 4 is a schematic structural diagram of the main body according to an embodiment of the present application;
[0021] Figure 5 is a schematic structural diagram of the wall-breaking cup body with the assembly clamping position in the closed state according to an embodiment of the present application;
[0022] Figure 6 is a schematic structural diagram of the wall-breaking cup body with the assembly clamping position in the open state according to an embodiment of the present application;
[0023] Figure 7 is a cross-sectional view of the wall-breaking cup body according to an embodiment of the present application;
[0024] Figure 8 is Figure 7 an enlarged schematic view of area A;
[0025] Figure 9This is a schematic exploded view of the wall-breaking cup body and the discharge valve assembly according to an embodiment of the present application.
[0026] Among them, the meanings of the reference numerals are as follows:
[0027] 1. Main body; 11. Pipe accommodating channel; 12. Support bottom plate; 13. Positioning convex block; 2. Wall-breaking assembly; 21. Wall-breaking cup body; 22. Stirring knife group; 23. Wall-breaking cavity; 24. Assembly clamping position; 25. Transmission part; 26. Cover plate; 3. Discharge valve assembly; 31. Discharge port; 32. Spool main body; 33. First diversion channel; 34. Second diversion channel; 35. Separator; 36. Valve plug; 37. Spool connecting rod; 38. First shunt pipe; 39. Second shunt pipe; 4. Boiling assembly; 41. Boiling cup body; 42. Pulp discharge pipe; 5. Sewage assembly; 51. Sewage tank; 52. Sewage pipe; 6. Spool driving part; 7. Elastic element; 8. Water tank; 9. Soundproof cover. Detailed implementation manners
[0028] For better understanding and implementation, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application.
[0029] In the description of the present application, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which this application belongs. The terms used in the description of this application herein are only for the purpose of describing specific embodiments and are not intended to limit this application.
[0031] Refer to Figure 1 , Figure 2 , Figure 3 and Figure 5, this application discloses a food processor. The food processor includes a main body 1, a wall-breaking component 2, a discharge valve component 3, and a boiling component 4. In some embodiments, the wall-breaking component 2 includes a wall-breaking cup body 21 with a wall-breaking cavity 23 and a stirring knife group 22. The stirring knife group 22 is detachably arranged in the wall-breaking cavity 23. The wall-breaking cup body 21 is detachably arranged on the main body 1. The discharge valve component 3 is detachably arranged on the wall-breaking cup body 21. The boiling component 4 includes a boiling cup body 41 and a slurry discharge pipe 42. The boiling cup body 41 is detachably arranged on the main body 1. The slurry discharge pipe 42 is detachably arranged between the discharge valve component 3 and the boiling cup body 41. Preferably, both the wall-breaking component 2 and the boiling component 4 are detachably arranged on the main body 1, so that the wall-breaking component 2 and the boiling component 4 can be detached from the main body 1 for cleaning. And the stirring knife group 22 is detachably arranged in the wall-breaking cavity 23 and the discharge valve component 3 is detachably arranged on the wall-breaking cup body 21, so that the stirring knife group 22 and the discharge valve component 3 can also be detached from the wall-breaking cup body 21 for cleaning. At the same time, the slurry discharge pipe 42 is detachably arranged between the discharge valve component 3 and the boiling cup body 41, so that the slurry discharge pipe 42 can also be detached separately, thereby realizing the disassembly of the whole food processor, facilitating the user to comprehensively clean each component, preventing the formation of sanitary dead corners at the joints between components, and improving the sanitary condition of the whole food processor.
[0032] Optionally, a stirring motor is built in the main body 1. When the wall-breaking cup body 21 is assembled on the main body 1, the stirring motor can drive the stirring knife group 22 to rotate, so that the stirring knife group 22 can stir, break the wall, and juice the food materials in the wall-breaking cavity 23. And by arranging the stirring motor in the main body 1, the wall-breaking cup body 21 can be soaked and cleaned. Optionally, the wall-breaking cup body 21 is assembled directly above the main body 1, and the boiling cup body 41 is assembled on any one side of the front, rear, left, and right sides of the main body 1, so that the food materials in the wall-breaking cavity 23 can flow into the boiling cup body 41 along the slurry discharge pipe 42. Optionally, a sunk structure matching with the wall-breaking cup body 21 can be arranged on the upper end surface of the main body 1, that is, the wall-breaking cup body 21 is fixed on the main body 1 through the sunk structure.
[0033] Refer to Figure 4In some embodiments, if the slurry discharge pipe 42 is exposed to the outside world, the slurry discharge pipe 42 is easily affected by collision, accidental touch, etc., resulting in the slurry discharge pipe 42 and the discharge valve assembly 3 and / or the boiling cup body 41 falling off, causing food to leak and contaminate the surrounding or the main body 1. In this embodiment, the main body 1 is provided with a pipeline accommodating channel 11, and the slurry discharge pipe 42 is detachably arranged in the pipeline accommodating channel 11. In this way, by accommodating the slurry discharge pipe 42 in the pipeline accommodating channel 11, it is prevented from being collided or accidentally touched by the outside world, and the stability of the connection between the slurry discharge pipe 42 and the discharge valve assembly 3 and / or the boiling cup body 41 is improved. In addition, the slurry discharge pipe 42 is detachably arranged in the pipeline accommodating channel 11, so that the slurry discharge pipe 42 can be removed from the pipeline accommodating channel 11 when cleaning, which is convenient for users to clean the slurry discharge pipe 42. Optionally, the outer surface of the slurry discharge pipe 42 may be provided with a first snap-fit structure, and the pipeline accommodating channel 11 may be provided with a second snap-fit structure that cooperates with the first snap-fit structure. In this way, the slurry discharge pipe 42 is reliably fixed in the pipeline accommodating channel 11 through the cooperation and connection between the first snap-fit structure and the second snap-fit structure, so as to prevent the slurry discharge pipe 42 from being displaced or shaken by the external influence or the flow of food. Optionally, the first snap-fit structure and the second snap-fit structure may be mutually cooperating protrusions and grooves. Furthermore, by extending the slurry inlet end of the slurry discharge pipe 42 to the upper end face of the main body 1, when the wall-breaking cup body 21 is placed on the upper end face of the main body 1, the discharge valve assembly 3 provided on the wall-breaking cup body 21 can be docked and cooperated with the slurry inlet end of the slurry discharge pipe 42, so that the slurry discharge pipe 42 is connected to the discharge valve assembly 3.
[0034] See also Figure 1 , Figure 2 and Figure 3, in some embodiments, when the stirring motor drives the stirring blade group 22 to rotate in the breaking cavity 23, relatively large noise is generally generated, which is likely to interfere with the normal life of users. In this embodiment, the breaking component 2 further includes a soundproof cover. The breaking cup body 21 is accommodated in the soundproof cover, and the soundproof cover is detachably arranged on the main body 1. In this way, the soundproof cover is assembled on the main body 1 to form a closed sound insulation cavity, blocking the transmission of the noise generated by the stirring blade group 22 to the outside, and reducing the interference of the use of the food processor on the normal life of users. And because the soundproof cover is detachably arranged on the main body 1, when cleaning the equipment, first detach the soundproof cover from the main body 1, and then detach the breaking cup body 21, giving users more operating space to disassemble the breaking cup body 21; optionally, the main body 1 is provided with a limiting groove structure that cooperates with the lower edge of the soundproof cover. In this way, the main body 1 is connected to the soundproof cover through the limiting groove structure, so that the soundproof cover is fixed on the main body 1. Specifically, during assembly, only the lower edge of the soundproof cover needs to be butted and engaged with the limiting groove structure of the main body 1. When disassembling, the soundproof cover can be directly removed from the limiting groove structure of the main body 1, simplifying the loading and unloading process of the soundproof cover.
[0035] Refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , in some embodiments, the breaking cavity 23 can also be used to soak ingredients such as beans or perform operations such as rinsing ingredients. Correspondingly, sewage that needs to be discharged outward will naturally be generated in the breaking cavity 23. In this embodiment, a sewage component 5 is further included. The sewage component 5 includes a sewage tank 51 and a sewage pipe 52. The sewage tank 51 is detachably arranged on the main body 1, and the sewage pipe 52 is detachably arranged between the discharge valve component 3 and the sewage tank 51. In this way, the sewage in the breaking cavity 23 can flow into the sewage tank 51 through the discharge valve component 3 and the sewage pipe 52. And because the sewage tank 51 is detachably arranged on the main body 1 and the sewage pipe 52 is detachably arranged between the discharge valve component 3 and the sewage tank 51, the sewage tank 51 and the sewage pipe 52 can be disassembled and cleaned independently, which is convenient for users to clean the sewage tank 51 and the sewage pipe 52 comprehensively, preventing the formation of sanitary dead corners at the connection between the sewage tank 51 and the sewage pipe 52, and avoiding the dirt remaining in the sewage pipe 52 and / or the sewage tank 51 from contaminating the breaking cavity 23. Optionally, the main body 1 is provided with a chamber that cooperates with the sewage tank 51. Optionally, the sewage pipe 52 can be accommodated in the main body 1.
[0036] Refer to Figure 1, Figure 2 and Figure 3 , further, during the processes of soaking ingredients such as beans, rinsing the ingredients, and breaking the ingredients, it is necessary to repeatedly inject clean water many times. In this embodiment, it further includes a clean water tank 8, and the clean water tank 8 is detachably arranged on the main body 1. In this way, the user can detach the clean water tank 8 from the main body 1, use the clean water tank 8 to add water at the water source, without the need to use other containers as an intermediate carrier additionally, or when cleaning the clean water tank 8, the clean water tank 8 can be detached from the main body 1 for separate cleaning. Optionally, a water pump and a water supply pipe are further connected between the clean water tank 8 and the breaking cavity 23. The water inlet of the water pump is communicated with the clean water tank 8, and the water outlet of the water pump is communicated with the breaking cavity 23 through the water supply pipe. In this way, the clean water in the clean water tank 8 is conveyed to the breaking cavity 23 by the water pump to cooperate with the ingredient processing steps of the breaking cavity 23.
[0037] Refer to Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9, in some embodiments, the discharge valve assembly 3 includes two discharge ports 31 opened at the bottom of the breaking cavity 23 and a valve core body 32 detachably disposed at the bottom of the breaking cup body 21. A guiding cavity is formed at an interval between the top end of the valve core body 32 and the bottom of the breaking cup body 21. A partition member 35 is disposed in the guiding cavity to divide the guiding cavity into a first guiding channel 33 and a second guiding channel 34. The first guiding channel 33 is disposed between the sewage pipe 52 and any one of the discharge ports 31, and the second guiding channel 34 is disposed between the slurry discharge pipe 42 and the other discharge port 31. A valve plug 36 is disposed at each discharge port 31. The valve plug 36 is fixedly connected to a valve core connecting rod 37. The valve core connecting rod 37 is movably connected to the valve core body 32, and the valve core connecting rod 37 can drive the valve plug 36 to enter or leave the discharge port 31. In this way, the discharge valve assembly 3 has two discharge ports 31 opened at the bottom of the breaking cavity 23, so that any one of the discharge ports 31 is used for discharging sewage, and the other discharge port 31 is used for discharging food slurry, thereby distinguishing the discharge paths of the sewage and the food slurry in the breaking cavity 23, effectively avoiding the discharge path of the food slurry from being contaminated by sewage or dirt remaining after discharging sewage. Specifically, any one of the discharge ports 31 is disposed between the first guiding channel 33 and the breaking cavity 23, and the other discharge port 31 is disposed between the second guiding channel 34 and the breaking cavity 23, so that the stirring cavity can discharge sewage and food slurry to the first guiding channel 33 and the second guiding channel 34 respectively through the corresponding discharge ports 31, realizing complete separation of the discharge paths of the sewage and the food slurry, and avoiding the situation that the sewage and the food slurry share the same channel for discharge, further optimizing the hygiene condition of the whole food processor; and during the process of disassembling the discharge valve assembly 3, only need to disassemble the valve core body 32 from the bottom of the breaking cup body 21, then the valve core connecting rod 37 can drive the valve plug 36 to leave the discharge port 31, realizing the whole discharge valve assembly 3 can be disassembled from the bottom of the breaking cup body 21 at one time. Correspondingly, when assembling the discharge valve assembly 3, only need to dock the valve plug 36 into the discharge port 31, and then fix the valve core body 32 to the bottom of the breaking cup body 21, then the assembly of the whole discharge valve assembly 3 can be completed, thereby simplifying the loading and unloading steps of the discharge valve assembly 3. Optionally, the partition member 35 abuts between the top end of the valve core body 32 and the bottom of the breaking cup body 21, so as to be the partition member 35 that divides the guiding cavity into the first guiding channel 33 and the second guiding channel 34.
[0038] See Figure 5 , Figure 6 , Figure 7 , Figure 8 and Figure 9, Further, currently, the discharge valve of a food processor is often arranged on the side of the cup body to shorten the discharge path and facilitate outward discharge. As a result, the side of the cup body with the discharge valve bulges significantly outward, causing obvious space waste. Moreover, the discharge valve arranged on the outside is easily interfered with by the outside world (such as being easily collided with or accidentally touched), which poses a potential hazard to the normal operation of the discharge valve. In this embodiment, the bottom of the wall-breaking cup body 21 is recessed towards the wall-breaking cavity 23 to form an assembly clamping position 24. The valve core body 32 is detachably arranged in the assembly clamping position 24, and the bottom of the stirring knife group 22 extends downward to form a transmission part 25 detachably connected to the assembly clamping position 24. In this way, the valve core body 32 and the transmission part 25 of the stirring knife group 22 are integrated into the assembly clamping position 24, thereby fully optimizing the utilization of space and effectively preventing the outside world from interfering with the valve core body 32, eliminating potential hazards, and ensuring the normal operation of the discharge valve assembly 3. Optionally, an assembly slot recessed towards the wall-breaking cavity 23 is provided in the assembly clamping position 24, and the valve core body 32 is fitted and connected in the assembly slot. Specifically, through the cooperation of the assembly slot and the valve core body 32, when the user assembles the discharge valve assembly 3, the valve core body 32 only needs to be inserted into the assembly slot in a preset posture to complete the docking of the valve plug 36 and the discharge port 31. When disassembling the discharge valve assembly 3, the valve core body 32 only needs to be pulled out of the assembly slot, further optimizing the loading and unloading steps of the discharge valve assembly 3 and bringing a better user experience to the user. Optionally, it further includes a cover plate 26, and the cover plate 26 is detachably arranged on the assembly clamping position 24 for closing or opening the assembly clamping position 24. In this way, by closing the assembly clamping position 24 with the cover plate 26, the valve core body 32 and the transmission part 25 are both locked in the assembly clamping position 24, thereby ensuring that the stirring knife group 22 and the discharge valve assembly 3 are both locked on the wall-breaking cup body 21, effectively avoiding the separation of the stirring knife group 22 and / or the discharge valve assembly 3 from the wall-breaking cup body 21 caused by external factors such as accidental touch or collision. Correspondingly, when the cover plate 26 opens the assembly clamping position 24, the valve core body 32 can be directly pulled out of the assembly slot and / or the discharge valve assembly 3 can be disassembled from the assembly clamping position 24. Optionally, one end of the cover plate 26 is hinged to one end of the assembly clamping position 24, and a buckle is provided at the other end of the cover plate 26, and a slot cooperating with the buckle is provided at the other end of the assembly clamping position 24. Optionally, corresponding avoidance openings are provided on the cover plate 26 for the components in the assembly clamping position 24 to extend outward or for external components to extend into the assembly clamping position 24 to facilitate the connection between components.Optionally, the snap member can be a spring snap, a buckle, etc. When the cover plate 26 rotates around one end of the assembly position 24 to the position of covering the assembly position 24, it is connected by the cooperation of the snap member and the card slot, so that the cover plate 26 is locked to the assembly position 24, thereby closing the assembly position 24, ensuring that the stirring blade group 22 and the discharge valve assembly 3 are both locked to the wall-breaking cup body 21. When disassembling the stirring blade group 22 and / or the discharge valve assembly 3, by pressing the snap member, the snap member is driven to unlock from the card slot, and then the cover plate 26 is pulled to rotate around one end of the assembly position 24 to the position of opening the assembly position 24, and the valve core body 32 can be pulled out from the assembly card slot, or the transmission part 25 can be disassembled from the assembly position 24, so that the stirring blade group 22 can be disassembled from the wall-breaking cavity 23.
[0039] Refer to Figure 5 、 Figure 6 、 Figure 7 、 Figure 8 and Figure 9, in some embodiments, the discharge valve assembly 3 further includes a first shunt pipe 38 and a second shunt pipe 39 respectively connected to both sides of the valve core body 32. The first shunt pipe 38 connects the first diversion channel 33 with the sewage pipe 52, and the second shunt pipe 39 connects the second diversion channel 34 with the slurry discharge pipe 42. Preferably, the sewage pipe 52 is detachably provided at the lower end of the first shunt pipe 38, the upper end of the first shunt pipe 38 is connected to the first diversion channel 33, the slurry discharge pipe 42 is detachably provided at the lower end of the second shunt pipe 39, and the upper end of the second shunt pipe 39 is connected to the second diversion channel 34. In this way, neither the sewage pipe 52 nor the slurry discharge pipe 42 needs to extend into the diversion cavity for assembly, which is convenient for the user to manually assemble by themselves, providing sufficient convenience for the user to disassemble, clean and assemble the whole machine. In this embodiment, a diversion cavity is formed at an interval between the top end of the valve core body 32 and the bottom of the wall-breaking cup body 21. The partition member 35 divides the diversion cavity into the first diversion channel 33 and the second diversion channel 34 arranged left and right. The first shunt pipe 38 and the second shunt pipe 39 are arranged on the left and right sides of the valve core body 32. The upper end of the first shunt pipe 38 is connected to the first diversion channel 33, the upper end of the second shunt pipe 39 is connected to the second diversion channel 34, the lower end of the first shunt pipe 38 is docked with the sewage discharge pipe, and the lower end of the second shunt pipe 39 is docked with the slurry discharge pipe 42. Optionally, the slurry inlet end of the slurry discharge pipe 42 and the water inlet end of the sewage pipe 52 both extend into the sunken structure on the upper end surface of the main body 1 of the machine, and the water inlet end of the sewage pipe 52 is arranged opposite to the first shunt pipe 38, and the slurry inlet end of the slurry discharge pipe 42 is arranged opposite to the second shunt pipe 39. When the wall-breaking cup body 21 is placed on the sunken structure on the upper end surface of the main body 1 of the machine, the lower end of the first shunt pipe 38 is docked with the sewage discharge pipe, and the lower end of the second shunt pipe 39 is docked with the slurry discharge pipe 42, realizing that the first shunt pipe 38 connects the first diversion channel 33 with the sewage pipe 52, and the second shunt pipe 39 connects the second diversion channel 34 with the slurry discharge pipe 42, without the user having to manually connect additionally. Optionally, the inner diameter of the sewage pipe 52 is larger than the outer diameter of the first shunt pipe 38, and the inner diameter of the slurry discharge pipe 42 is larger than the outer diameter of the second shunt pipe 39, so that when the wall-breaking cup body 21 is placed on the sunken structure on the upper end surface of the main body 1 of the machine, the lower end of the first shunt pipe 38 can be inserted into the sewage discharge pipe, and the lower end of the second shunt pipe 39 can be inserted into the slurry discharge pipe 42. Optionally, a sealing ring is provided between the slurry discharge pipe 42 and the second shunt pipe 39 to prevent liquid leakage.Optionally, two pipe accommodation channels 11 are provided on the main body 1 for accommodating the slurry discharge pipe 42 and the sewage pipe 52 respectively, preventing the slurry discharge pipe 42 and the sewage pipe 52 from being collided or accidentally touched, etc., and improving the connection stability between the slurry discharge pipe 42 and the sewage pipe 52 and other components.
[0040] Refer to Figure 4 , Figure 7 , Figure 8 and Figure 9 , in some embodiments, it further includes a valve core driving member 6 assembled on the main body 1. One end of the valve core connecting rod 37 away from the valve plug 36 passes through the valve core body 32 and is detachably connected to the valve core driving member 6. In this way, the valve core driving member 6 drives the valve plug 36 to enter or leave the discharge port 31 through the valve core connecting rod 37, so that the discharge port 31 is opened or closed, and is detachably connected to the valve core driving member 6 through the valve core connecting rod 37, so that the discharge valve assembly 3 can be separated from the valve core driving member 6. When the discharge valve assembly 3 is removed from the bottom of the wall-breaking cup body 21, it can be soaked and cleaned to avoid the situation that the valve core driving member 6 gets water.
[0041] Refer to Figure 4 , Figure 7 , Figure 8 and Figure 9, in some embodiments, an elastic element 7 is sleeved on the valve core connecting rod 37. One end of the elastic element 7 is connected to the valve core body 32, and the other end of the elastic element 7 is connected to the valve core connecting rod 37. And the elastic element 7 provides a pre-tightening force for the valve core connecting rod 37 to drive the valve plug 36 into the discharge port 31. Optionally, the elastic element 7 is a spring. One end of the spring abuts against the valve core body 32, and the other end of the spring abuts against a baffle plate which is fixed to the valve core connecting rod 37. When the valve core driving member 6 drives the valve core connecting rod 37 to drive the valve plug 36 away from the discharge port 31, the elastic element 7 undergoes elastic deformation. When the valve core connecting rod 37 is separated from the valve core driving member 6, the elastic element 7 resumes deformation, driving the valve core connecting rod 37 to drive the valve plug 36 into the discharge port 31, so as to close the discharge port 31, preventing the slurry or ingredients in the breaking cavity 23 from leaking out of the discharge port 31 when the user lifts the breaking cup body 21. Optionally, one end of the valve core connecting rod 37 away from the valve plug 36 passes through the valve core body 32 and abuts against the valve core driving member 6. When the valve core driving member 6 drives the valve core connecting rod 37 upward through the transmission member, the elastic element 7 is compressed, and the valve core connecting rod 37 drives the valve plug 36 away from the discharge port 31 to open the discharge port 31. When the valve core driving member 6 drives the transmission member to contract downward, the elastic element 7 resumes deformation, driving the valve core connecting rod 37 to move downward, driving the valve core connecting rod 37 to drive the valve plug 36 into the discharge port 31, so as to close the discharge port 31. Thus, when the user lifts the breaking cup body 21 in any state, the discharge valve assembly 3 can automatically close the discharge port 31, effectively preventing the slurry or ingredients in the breaking cavity 23 from leaking out of the discharge port 31 and polluting the surrounding environment.
[0042] Refer to Figure 4, in some embodiments, the main body 1 is connected to a support base plate 12, and a positioning convex block 13 is provided on the support base. The upper end of the positioning convex block 13 is provided with a guiding inclined surface that slopes downward in a direction away from the main body 1. The bottom of the boiling cup body 41 is provided with a positioning groove that is connected in cooperation with the positioning convex block 13. Specifically, due to the guiding inclined surface that slopes downward in a direction away from the main body 1 at the upper end of the positioning convex block 13, one end of the positioning convex block 13 close to the main body 1 is the higher end, and one end of the positioning convex block 13 away from the main body 1 is the lower end. When assembling the boiling cup body 41, the guiding inclined surface can guide the assembly of the boiling cup body 41 on the support plate, and the higher end of the positioning convex block 13 is used to increase the contact area between the positioning groove and the positioning convex block 13, thereby reliably preventing the boiling cup body 41 from translating in a direction away from the main body 1, and then fixing the boiling cup body 41 in the corresponding position. And the boiling cup body 41 can be disassembled from the support base plate 12 by simply lifting the boiling cup body 41 upward.
[0043] Refer to Figures 1 - 9, in some embodiments, the upper end of the main body 1 is provided with the wall-breaking cup body 21, the cooking cup body 41 is detachably arranged on one side of the cooking cup body 41, the water tank 8 and the sewage tank 51 are arranged vertically, and are detachably arranged on the other side of the main body 1, so that the wall-breaking cup body 21, the cooking cup body 41, the water tank 8 and the sewage tank 51 can all be detached from the main body 1 for cleaning; optionally, the upper end surface of the main body 1 is provided with a sunk structure that cooperates with the wall-breaking cup body 21, and the wall-breaking cup body 21 is detachably arranged on the main body 1 through the sunk structure; optionally, the main body 1 is provided with a pipeline accommodating channel 11, the slurry discharge pipe is detachably arranged in the pipeline accommodating channel 11, and the slurry outlet end of the slurry discharge pipe 42 is detachably arranged on the cooking cup body 41, so that the slurry discharge pipe 42 can be detached from the pipeline accommodating channel 11 during cleaning, facilitating the user to clean the slurry discharge pipe 42, and the sewage tank 51, the sewage pipe 52, the slurry discharge pipe 42 and the cooking cup body 41 can all be disassembled and cleaned independently, which is convenient for the user to comprehensively clean each component and prevent the formation of sanitary dead corners at the connection between two components; optionally, the bottom of the wall-breaking cup body 21 is recessed towards the wall-breaking cavity 23 to form an assembly clamping position 24, the discharge valve assembly 3 is detachably arranged in the assembly clamping position 24, and the bottom of the stirring blade group 22 extends downward to form a transmission part 25 that is detachably connected to the assembly clamping position 24, that is, the discharge valve assembly 3 and the transmission part 25 of the stirring blade group 22 are integrated in the assembly clamping position 24, thereby fully optimizing the utilization of space; preferably, an assembly slot that is recessed towards the wall-breaking cavity 23 is arranged in the assembly clamping position 24, and the discharge valve assembly 3 is cooperatively connected in the assembly slot; optionally, the assembly clamping position 24 is covered with a cover plate 26; optionally, one end of the cover plate 26 is hinged to one end of the assembly clamping position 24, a buckle is arranged at the other end of the cover plate 26, and a slot that cooperates with the buckle is arranged at the other end of the assembly clamping position 24. Specifically, when the cover plate 26 rotates around one end of the assembly clamping position 24 to the position where it covers the assembly clamping position 24, the cover plate 26 is locked to the assembly clamping position 24 through the cooperation of the buckle and the slot, thereby closing the assembly clamping position 24 and ensuring that the stirring blade group 22 and the discharge valve assembly 3 are both locked to the wall-breaking cup body 21. When disassembling the stirring blade group 22 and / or the discharge valve assembly 3, by pressing the buckle, the buckle and the slot are driven to unlock each other, and then the cover plate 26 is pulled to rotate around one end of the assembly clamping position 24 to the position where the assembly clamping position 24 is opened, and the transmission part 25 can be detached from the assembly clamping position 24, so that the stirring blade group 22 can be detached from the wall-breaking cavity 23, or the discharge valve assembly 3 can be pulled out of the assembly slot. Specifically,The discharge valve assembly 3 includes two discharge ports 31 formed at the bottom of the breaking cavity 23 and a valve core body 32 detachably disposed at the assembly clamping position 24. Each discharge port 31 is provided with a valve plug 36. The valve plug 36 is fixedly connected with a valve core connecting rod 37. The valve core connecting rod 37 is movably connected with the valve core body 32, and the valve core connecting rod 37 can drive the valve plug 36 to enter or leave the discharge port 31. Any one of the discharge ports 31 is disposed between the first diversion channel 33 and the breaking cavity 23, and the other discharge port 31 is disposed between the second diversion channel 34 and the breaking cavity 23, so that the stirring cavity can discharge sewage and food slurry respectively through the first diversion channel 33 and the second reverse flow channel, realizing complete separation of the discharge paths of sewage and food slurry, avoiding the situation that sewage and food slurry share the same channel for discharge, further optimizing the hygiene condition of the whole food processor, and during the process of disassembling the discharge valve assembly 3, only by disassembling the valve core body 32 from the bottom of the breaking cup body 21, the valve plug 36 can be driven by the valve core connecting rod 37 to leave the discharge port 31, realizing one-time disassembly of the whole discharge valve assembly 3 from the bottom of the breaking cup body 21. Correspondingly, when assembling the discharge valve assembly 3, only by docking the valve plug 36 into the discharge port 31 and then fixing the valve core body 32 to the bottom of the breaking cup body 21, the assembly of the whole discharge valve assembly 3 can be completed, thereby simplifying the loading and unloading steps of the discharge valve assembly 3. Optionally, a diversion cavity is formed at an interval between the top end of the valve core body 32 and the bottom of the breaking cup body 21. The partition member 35 divides the diversion cavity into the first diversion channel 33 and the second diversion channel 34 arranged left and right. The first diversion pipe 38 and the second diversion pipe 39 are arranged on the left and right sides of the valve core body 32. The upper end of the first diversion pipe 38 is communicated with the first diversion channel 33, and the upper end of the second diversion pipe 39 is communicated with the second diversion channel 34. Optionally, the slurry inlet end of the slurry discharge pipe 42 and the water inlet end of the sewage pipe 52 both extend into the sink structure on the upper end surface of the main body 1, and the water inlet end of the sewage pipe 52 is oppositely arranged with the first diversion pipe 38, and the slurry inlet end of the slurry discharge pipe 42 is oppositely arranged with the second diversion pipe 39, so that when the breaking cup body 21 is placed on the sink structure on the upper end surface of the main body 1, the lower end of the first diversion pipe 38 is docked with the sewage discharge pipe, the lower end of the second diversion pipe 39 is docked with the slurry discharge pipe 42, and the inner diameter of the sewage pipe 52 is larger than the outer diameter of the first diversion pipe 38, and the inner diameter of the slurry discharge pipe 42 is larger than the outer diameter of the second diversion pipe 39, so that when the breaking cup body 21 is placed on the sink structure on the upper end surface of the main body 1, the lower end of the first diversion pipe 38 is inserted into the sewage discharge pipe, and the lower end of the second diversion pipe 39 can be inserted into the slurry discharge pipe 42,The first shunt pipe 38 is implemented to connect the first diversion channel 33 with the sewage pipe 52, and the second shunt pipe 39 is implemented to connect the second diversion channel 34 with the slurry discharge pipe 42, without the need for the user to manually connect them additionally, thereby fully optimizing the loading and unloading steps between various components, and enabling the whole food processor to be disassembled, which is convenient for the user to disassemble and assemble by himself / herself. At the same time, each component can be disassembled for thorough cleaning to prevent the formation of sanitary dead corners at the joints between components, and improve the sanitary condition of the whole food processor.
[0044] The technical means disclosed in the solution of this application are not limited to the technical means disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art, without departing from the principle of this application, several improvements and retouches can be made, and these improvements and retouches are also regarded as the protection scope of this application.
Claims
1. A food processing machine, characterized in that: include: Main body (1); A wall-breaking component (2), comprising a wall-breaking cup body (21) having a wall-breaking cavity (23) and a stirring knife group (22), wherein the stirring knife group (22) is detachably arranged in the wall-breaking cavity (23), and the wall-breaking cup body (21) is detachably arranged in the main body (1); A discharge valve assembly (3) detachably mounted on the wall-breaking cup body (21); The boiling component (4) comprises a boiling cup body (41) and a pulp discharge pipe (42), wherein the boiling cup body (41) is detachably arranged on the main body (1), and the pulp discharge pipe (42) is detachably arranged between the discharge valve component (3) and the boiling cup body (41).
2. The food processing machine according to claim 1, characterized in that: The main body (1) is provided with a pipe accommodating channel (11), and the slurry discharge pipe (42) is detachably arranged in the pipe accommodating channel (11).
3. The food processing machine according to claim 1, characterized in that: It also comprises a sewage component (5), the sewage component (5) comprising a sewage tank (51) and a sewage pipe (52), the sewage tank (51) being detachably arranged on the main body (1), and the sewage pipe (52) being detachably arranged between the discharge valve component (3) and the sewage tank (51).
4. The food processing machine according to claim 3, characterized in that: The discharge valve assembly (3) comprises two discharge ports (31) opened at the bottom of the wall-breaking cavity (23) and a valve core body (32) detachably arranged at the bottom of the wall-breaking cup body (21); the top of the valve core body (32) and the bottom of the wall-breaking cup body (21) are spaced apart to form a guide cavity; a partition (35) is arranged in the guide cavity to divide the guide cavity into a first guide channel (33) and a second guide channel (34); the first guide channel (33) is arranged between the sewage pipe (52) and any of the discharge ports (31); the second guide channel (34) is arranged between the pulp discharge pipe (42) and another of the discharge ports (31); and each of the discharge ports (31) is provided with a valve plug (36); the valve plug (36) is fixedly connected to a valve core connecting rod (37); and the valve core connecting rod (37) is movably connected to the valve core body (32).
5. The food processing machine according to claim 4, characterized in that: The bottom of the wall-breaking cup body (21) is recessed toward the wall-breaking cavity (23) to form an assembly clamping position (24); the valve core body (32) is detachably arranged at the assembly clamping position (24); and the bottom of the stirring knife group (22) extends downward to form a transmission part (25) detachably connected to the assembly clamping position (24).
6. The food processing machine according to claim 5, characterized in that: It also comprises a cover plate (26), which is detachably arranged on the assembly position (24) and is used to close or open the assembly position (24).
7. The food processing machine according to claim 4, characterized in that: The discharge valve assembly (3) further comprises a first diverter pipe (38) and a second diverter pipe (39) respectively connected to both sides of the valve core body (32); the first diverter pipe (38) connects the first guide channel (33) with the sewage pipe (52); and the second diverter pipe (39) connects the second guide channel (34) with the slurry discharge pipe (42).
8. The food processing machine according to any one of claims 5 to 7, characterized in that: It also includes a valve core driving member (6) assembled on the main body (1), and one end of the valve core connecting rod (37) away from the valve plug (36) passes through the valve core body (32) and is detachably connected to the valve core driving member (6).
9. The food processing machine according to claim 8, characterized in that: An elastic element (7) is sleeved on the valve core connecting rod (37), one end of the elastic element (7) is connected to the valve core body (32), and the other end of the elastic element (7) is connected to the valve core connecting rod (37), and the elastic element (7) provides a pre-tightening force to the valve core connecting rod (37) to drive the valve plug (36) into the discharge port (31).
10. The food processor according to claim 1, characterized in that: The main body (1) is connected to a supporting bottom plate (12), the supporting bottom is provided with a positioning protrusion (13), the upper end of the positioning protrusion (13) is provided with a guiding inclined surface inclined downward in a direction away from the main body (1), and the bottom of the boiling cup body (41) is provided with a positioning groove matched with the positioning protrusion (13).