Food processor
By adding a turntable output head and a scraper assembly to the food processor, centrifugal force is used to assist in the distribution of cream, and combined with an adjustable scraper structure, the problem of low efficiency in spreading cream with food processors is solved, achieving a highly efficient and labor-saving cream spreading effect.
Patent Information
- Application Number
- PCT/IB2025/055171
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-05-20
- Filing Date
- 2025-05-19
- Publication Date
- 2025-11-27
AI Technical Summary
Existing food processors are inefficient and labor-intensive when spreading cream after making cake bases, requiring manual operation of the piping turntable, resulting in low spreading efficiency and difficulty.
A turntable output head is added to the motor shaft of the food processor. The turntable is driven by the motor shaft to rotate, so that the cream on the cake is evenly distributed by centrifugal force. A scraper assembly is also provided to assist in spreading the cream. The turntable can be equipped with a speed reduction structure to control the speed, and the scraper structure can be moved and adjusted to adapt to different sized cakes.
It improves the efficiency of butter application, reduces the user's effort, enhances the evenness and visibility of the application, adapts to the application needs of cakes of different sizes, and has a compact structure that is easy to clean.
Smart Images

Figure IB2025055171_27112025_PF_FP_ABST
Abstract
Description
[0001]The application relates to the technical field of household appliances, in particular to a food processor. Background Art A food processor is generally used for processing food, such as beating food, kneading dough, etc. Taking a chef machine as an example, the chef machine is a multifunctional food processor used in Chinese and western-style noodle fields and capable of kneading dough, beating eggs and stirring, and has the advantages of time and labor saving, convenience and rapidness, and is loved by users. Consumers can use the food processor to make a cake blank, but if the cake blank needs to be smeared with butter, the cake blank needs to be placed on a separate decorating turntable, and the decorating turntable is manually rotated to smear butter, which is low in smearing efficiency and labor saving. The application provides a food processor which can assist users in smearing butter, so as to improve the smearing efficiency of butter and save labor. The food processor comprises a main machine, a turntable assembly and a motor shaft. The main machine comprises a shell and a motor shaft arranged in the shell. The motor shaft is provided with a turntable output head and a stirring output head. The top of the shell is provided with an opening which exposes the turntable output head. The turntable assembly comprises a turntable for carrying a cake. The turntable is connected with the turntable output head through the opening. The motor shaft can drive the turntable to rotate along the circumference thereof. According to the above description, the turntable output head is additionally arranged on the motor shaft of the food processor to drive the turntable for carrying a cake to rotate. On the one hand, when the motor shaft drives the turntable to rotate, the cake located on the turntable also rotates with the turntable. At this time, the butter on the top surface of the cake is subjected to centrifugal force and moves outward along the top surface of the cake, so as to be more evenly distributed on the top surface of the cake. In this process, the user can smear butter by using a scraper. Therefore, the food processor provided by the scheme can assist users in smearing butter, improve the smearing efficiency of butter and save labor. On the other hand, in the process of driving the cake to rotate by the turntable, the user can more conveniently observe the smearing condition of the butter on the cake, and timely adjust the amount of butter, control the rotation of the turntable, etc., so as to ensure the smearing effect. Optionally, the turntable assembly further comprises a speed reduction structure. The turntable is connected with the speed reduction structure. The speed reduction structure is connected with the turntable output head. The speed reduction structure is used for reducing the rotating speed of the turntable. As described above, the speed reduction structure can convert the high-speed rotation of the motor shaft into the low speed required by the turntable, so as to control the rotating speed of the turntable and make the movement of the turntable more smooth.Optionally, the turntable is detachably connected with the speed reduction structure; and / or the speed reduction structure is used to reduce the rotating speed of the turntable to lr / min-50r / min. As arranged above, the turntable can be detached from the speed reduction structure, facilitating cleaning. When the turntable rotates at a speed of lr / min-50r / min, on one hand, it is convenient for a user to observe the smearing of the cream; on the other hand, the cream can flow along the turntable, so as to be evenly distributed on the top surface of the cake without splashing. Optionally, one of the turntable and the speed reduction structure is provided with a rotating clamping joint, and the other is provided with a rotating clamping seat, the rotating clamping joint being rotatably clamped into the rotating clamping seat; and / or the shell is further provided with a mounting position, the mounting position being formed at the opening, and the speed reduction structure being assembled in the mounting position. As arranged above, the rotating clamping seat and the speed reduction structure are detachably connected through the rotating clamping mode, ensuring the firmness and stability of the connection between the two while making the installation process more simple and fast. By arranging the mounting position for assembling the speed reduction structure at the opening, the space can be effectively utilized, and the structure of the whole food processor is more compact. Optionally, the turntable comprises a bearing surface for bearing the cake, and a plurality of annular grooves are arranged on the bearing surface and are spaced around the center of the bearing surface. As arranged above, on one hand, the plurality of annular grooves can increase the surface area of the bearing surface, so as to increase the friction between the cake and the bearing surface, so that the cake is more stably placed on the bearing surface of the turntable; on the other hand, the plurality of annular grooves are spaced around the center of the bearing surface, and the center position of the bearing surface is at the center of the plurality of annular grooves, so that a user can more easily find the center position of the bearing surface, thereby accurately placing the cake at the center of the bearing surface, so that the cake remains balanced and stable during rotation. Optionally, the food processor further comprises a scraper assembly, the scraper assembly comprising a fixed seat and a scraper structure, the fixed seat being connected with the shell, and the scraper structure being located above the turntable and being used to smear cream on the cake. As arranged above, a user does not need to hold a scraper, but smears the cream by using the scraper structure provided by the food processor, which not only saves time and effort, but also improves the uniformity of cream smearing. Optionally, the scraper structure is movably arranged in the fixed seat and can move in a direction approaching or away from the turntable.According to the above arrangement, the scraper structure can be adapted to cakes of different sizes, and the user can adjust the position of the scraper structure according to the size of the cake, so that the scraper structure can be used to coat cakes of corresponding sizes. Optionally, the scraper structure comprises a first scraper and a second scraper; wherein: the first scraper is located above the turntable, one end of the first scraper is movably connected to the fixed seat in the vertical direction, and the other end of the first scraper extends to the center of the turntable and is used to coat the top surface of the cake with cream; the second scraper is movably connected to the fixed seat in the horizontal direction, the second scraper is located above the turntable and at the edge of the turntable, and the second scraper is used to coat the side surface of the cake with cream. According to the above arrangement, the first scraper and the second scraper are used in combination, so that the top surface and the side surface of the cake can be evenly coated with cream, and the appearance of the cake is more clean and beautiful. Optionally, the fixed seat is provided with a first adjusting groove extending in the vertical direction, the first scraper is provided with a first fixing hole corresponding to the first adjusting groove, the scraper assembly further comprises a first locking member, the first locking member is movably arranged in the first adjusting groove, the first locking member is connected to the first fixing hole, the first scraper is locked or unlocked with the fixed seat by the first locking member, and in the unlocked state, the first scraper can move up and down along the first adjusting groove; and / or the second scraper is provided with a second adjusting groove extending in the horizontal direction, the fixed seat is further provided with a second fixing hole corresponding to the second adjusting groove, the scraper assembly further comprises a second locking member, the second locking member is movably arranged in the second adjusting groove, and the second locking member is connected to the second fixing hole, the second scraper is locked or unlocked with the fixed seat by the second locking member, and in the unlocked state, the second scraper can move horizontally relative to the fixed seat. According to the above arrangement, in the locked state of the first scraper, the first scraper is locked in the first adjusting groove of the fixed seat by the first locking member, so that the first scraper can be kept stable during cream coating. In the unlocked state of the first scraper, the first scraper can move up and down along the first adjusting groove to adjust its height. Similarly, in the locked state of the second scraper, the second scraper is locked in the second fixing hole of the fixed seat by the second locking member, so that the second scraper can be kept stable during cream coating. In the unlocked state of the second scraper, the second scraper can move horizontally relative to the fixed seat to adjust its position.Optionally, when the scraper structure further comprises the first locking member and the second locking member, the first locking member comprises a first operation part for user to use, the second locking member comprises a second operation part for user to use, and the first operation part and the second operation part are located on the same side of the fixing seat. As arranged above, the positions of the first scraper and the second scraper on the fixing seat can be adjusted on one side of the fixing seat, which is convenient to operate. Optionally, the second scraper is provided with a through hole penetrating through the thickness direction of the second scraper, and the through hole exposes the first operation part and the first adjusting groove. Due to the design of the through hole, the user can see and operate the movement of the first scraper along the first adjusting groove without disassembling or moving the second scraper, so that the operation is more intuitive and convenient. Optionally, the food processor further comprises a stirring bowl and a stirring assembly, the stirring output head is connected with the stirring assembly, and the main machine can drive the stirring assembly to rotate in the stirring bowl. BRIEF DESCRIPTION OF DRAWINGS Fig. 1 is a chef machine disclosed by the prior art; Fig. 2 is a schematic diagram of the overall structure of a food processor according to an embodiment; Fig. 3 is a schematic diagram of the exploded structure of the food processor according to an embodiment; Fig. 4 is a sectional view of the food processor in the exploded state according to an embodiment; Fig. 5 is a schematic diagram of the structure of the main machine according to an embodiment; Fig. 6 is a sectional view of the turntable assembly according to an embodiment; Fig. 7 is a schematic diagram of the exploded structure of the turntable and the speed reduction structure according to an embodiment; Fig. 8 is a top view of the structure of the turntable according to an embodiment; Fig. 9 is a schematic diagram of the structure of the scraper assembly according to an embodiment; Fig. 10 is a sectional view of the first scraper and the fixing seat at the connection according to an embodiment; and Fig. 11 is a schematic diagram of the structure of the fixing seat according to an embodiment.Explanation of reference numerals in the attached drawings: 10. Main unit; 10a. Machine head; 10b. Machine base; 11. Housing; 111. Opening; 112. Mounting position; 113. First fixed support; 114. Second fixed support; 1141. Slot; 12. Motor mount; 121. Turntable output head; 122. Stirring output head; 20. Turntable assembly; 21. Turntable; 211. Bearing surface; 212. Annular pattern; 213. Rotary locking connector; 22. Reduction structure; 221. Rotary locking seat; 222. Support mating groove; 23. Connector; 30. Scraper assembly; 30a. Scraper structure; 31. First scraper; 311. First fixing hole; 312. Connecting part; 32. Second scraper; 321. 322. Second adjustment groove; 33. Through-hole; 34. Fixing base; 35. First adjustment groove; 36. Second fixing hole; 37. Buckle; 38. First locking element; 39. First operating part; 30. First locking part; 31. Second locking element; 32. Second operating part; 33. Mixing bowl. For detailed implementation, refer to Figure 1. Figure 1 shows a food processor disclosed in the prior art, belonging to the category of food processors. This food processor is applied in the field of Chinese and Western pastry making and has functions such as kneading, beating eggs, and mixing. The food processor includes a main unit 10 and a mixing bowl 40. The main unit 10 includes a head 10a and a base 10b. The mixing bowl 40 is assembled on the base 10b and is flush with the top surface of the base 10b. The head 10a is connected to the top of the base 10b and is located above the mixing bowl 40. The head 10a can be equipped with a motor and a mixing component. The mixing component can extend into the mixing bowl 40. The motor shaft 12 of the motor can drive the mixing component to rotate, providing functions such as mixing, beating eggs, and kneading dough when processing ingredients, thereby reducing the difficulty for users when cooking. However, current food processors such as stand mixers can only be used to make cake bases and do not have a buttercream spreading function. If buttercream is to be spread after making the cake base with a food processor, it can only be spread manually. In the manual spreading process, the user needs to place the cake base on a separate piping turntable and manually rotate the piping turntable to spread the buttercream. This method of spreading is inefficient and labor-intensive. In view of this, this application provides a food processor that, in addition to having functions such as mixing, also provides a buttercream spreading function, expanding the functionality of the food processor and making it multi-functional to meet the diverse needs of consumers. The food processor can be a stand mixer, juicer, meat grinder, etc.The cooking machine is described in detail below in combination with the accompanying drawings. In the case of no conflict, the features in the following embodiments and implementation manners can be combined with each other. Please refer to FIG. 2, FIG. 3 and FIG. 4. FIG. 2 is a schematic diagram of the overall structure of the cooking machine according to an embodiment; FIG. 3 is a schematic diagram of the exploded structure of the cooking machine according to an embodiment; and FIG. 4 is a sectional view of the cooking machine in a disassembled state according to an embodiment. The cooking machine provided in the embodiment includes a main machine 10, a stirring bowl 40, a stirring assembly (not shown) and a turntable assembly 20. The main machine 10 includes a shell 11 and a motor shaft 12 arranged in the shell 11. The motor shaft 12 is provided with a turntable output head 121 and a stirring output head 122. The stirring output head 122 is connected with the stirring assembly, and the main machine 10 can drive the stirring assembly to rotate in the stirring bowl 40. The top of the shell 11 is provided with an opening 111 which exposes the turntable output head 121. The turntable assembly 20 includes a turntable 21 for carrying a cake. The turntable 21 is connected with the turntable output head 121 through the opening 111, and the main machine 10 can drive the motor shaft 12 to rotate the turntable 21 along the circumference thereof. As described above, the turntable output head 121 is arranged on the motor shaft 12 of the cooking machine to drive the turntable 21 for carrying a cake to rotate. On the one hand, when the motor shaft 12 drives the turntable 21 to rotate, the cake on the turntable 21 also rotates with the turntable 21. At this time, the cream on the top surface of the cake is moved outward along the top surface of the cake under the action of centrifugal force, so as to be more evenly distributed on the top surface of the cake. In this process, the user can use a spatula to spread the cream, so that the cooking machine provided in the scheme can assist the user to spread the cream, improve the cream spreading efficiency and save labor. On the other hand, in the process of rotating the cake by the turntable 21, the user can more conveniently observe the cream spreading condition on the cake, and timely adjust the amount of cream, control the rotation of the turntable 21, etc., so as to ensure the spreading effect. Meanwhile, compared with a large commercial cake spreading machine, the size of the cooking machine in the scheme is smaller, and the space occupied is also smaller, which is suitable for household use. It should be noted that the connection between the turntable 21 and the turntable output head 121 of the motor shaft 12 can be direct connection, that is, the motor shaft 12 directly drives the turntable 21 to rotate. Alternatively, the connection between the turntable 21 and the turntable output head 121 is indirect connection, that is, the motor shaft 12 is connected with the turntable 21 through a transmission assembly.Please refer to FIG. 5 and FIG. 6, FIG. 5 is a structural schematic diagram of the main machine 10 according to an embodiment; and FIG. 6 is a sectional view of the rotating disc assembly 20 according to an embodiment. In an embodiment, the rotating disc assembly 20 further comprises a speed reduction structure 22, the rotating disc 21 is connected with the speed reduction structure 22, and the speed reduction structure 22 is connected with the rotating disc output head 121. That is, the rotating disc 21 is connected with the rotating disc output head 121 through the speed reduction structure 22. The speed reduction structure 22 is used to reduce the rotating speed of the rotating disc 21. The speed reduction structure 22 can convert the high-speed rotation of the motor shaft 12 into the low speed required by the rotating disc 21, so as to control the rotating speed of the rotating disc 21 and prevent the rotating speed of the rotating disc 21 from being too fast. The type of the speed reduction structure 22 can be various, for example, the speed reduction structure 22 can be a gear reduction box, a belt drive reduction box, a planetary gear reduction box, a worm reduction box, a hydraulic reduction box, etc., but is not limited thereto. In addition, the connection between the speed reduction structure 22 and the rotating disc output head 121 can be connected through a connector 23, which can include but is not limited to a shaft coupling, a flange connector, a key connector, etc. The specific structure of the above speed reduction structure 22 and the connector 23 can refer to existing tool books, etc., and will not be described herein. In a further embodiment, the speed reduction structure 22 is used to reduce the rotating speed of the rotating disc 21 to 1r / min-50r / min, wherein “r / min” means “the number of rotations per minute”. That is, the rotating speed of the rotating disc 21 is between 1 rotation per minute and 50 rotations per minute, in which range, on the one hand, it is convenient for the user to observe the spreading of the butter, and on the other hand, the butter can flow with the rotating disc 21 to be distributed on the top surface of the cake more evenly and not to splash. Exemplarily, the rotating speed of the rotating disc 21 can be 1r / min (1 rotation per minute of the rotating disc 21), at which speed, the user can clearly observe the spreading of the butter and manually intervene the flow direction of the butter. The rotating speed of the rotating disc 21 can also be 50r / min (50 rotations per minute of the rotating disc 21), at which speed, the butter can flow with the rotating disc 21 more quickly to be distributed on the top surface of the cake more evenly. The rotating speed of the rotating disc 21 can also be 20r / min, 25r / min, 30r / min, etc. Please refer to FIG. 7, FIG. 7 is a disassembled structural schematic diagram of the rotating disc 21 and the speed reduction structure 22 according to an embodiment. In an embodiment, the rotating disc 21 is further detachably connected with the speed reduction structure 22.Thus, the rotating disc 21 can be detached from the speed reduction structure 22 for cleaning. In one embodiment, one of the rotating disc 21 and the speed reduction structure 22 is provided with a rotating joint 213, and the other is provided with a rotating seat 221. The rotating joint 213 is rotated and connected into the rotating seat 221, so that the rotating disc 21 and the speed reduction structure 22 are detachably connected, and meanwhile, the connection is firm and stable. In another embodiment, one of the rotating disc 21 and the speed reduction structure 22 is provided with a clamping plug, and the other is provided with a clamping slot. The clamping plug is directly inserted into the clamping slot, so that the rotating disc 21 and the speed reduction structure 22 are detachably connected. As shown in the embodiment of FIG. 7, the output shaft of the speed reduction structure 22 is provided with a rotating seat 221, and the rotating disc 21 is provided with a rotating joint 213. The rotating seat 221 has a rotating slot for rotating into, and the rotating joint 213 can be rotated into the rotating slot and clamped and matched with the rotating seat 221. Please continue to refer to FIG. 7, and combine with FIG. 5. In one embodiment, the housing 11 of the main machine 10 is further provided with a mounting position 112. The mounting position 112 is formed at the opening 111, and the speed reduction structure 22 is assembled in the mounting position 112. By arranging the mounting position 112 for assembling the speed reduction structure 22 at the opening 111, the space can be effectively utilized, and the structure of the whole food processor is more compact. Of course, in some other embodiments, the mounting position 112 can be located at other positions of the main machine 10, such as the top wall of the housing 11 of the main machine 10. In one embodiment, the mounting position 112 includes at least one first fixed support 113. The first fixed support 113 is arranged on the inner wall of the opening 111. The outer shell of the speed reduction structure 22 includes a support matching slot 222 matched with the first fixed support 113. The support matching slot 222 is inserted and matched with the first fixed support 113, so that the speed reduction structure 22 is assembled in the housing 11 of the main machine 10. Of course, in some other embodiments, the connection mode of the speed reduction structure 22 and the mounting position can be a rotating type connection, a buckling type connection, etc. That is, the mounting position 112 can be a clamping slot, a buckle, etc. arranged in the opening 111, but is not limited thereto. In the embodiments shown in FIGS. 5 and 7, the opening 111 is a circular opening. The first fixed support 113 is provided in a plurality of numbers. The plurality of first fixed supports 113 are arranged at intervals along the circumference of the opening 111. The number of the support matching slots 222 corresponds to the number of the first fixed supports 113.Please refer to FIG. 8, which is a top view of the rotating disc 21 according to an embodiment. In an embodiment, the rotating disc 21 comprises a bearing surface 211 for bearing the cake, and the bearing surface 211 is provided with a plurality of annular grooves 212, which are spaced around the center of the bearing surface 211. On the one hand, the annular grooves 212 can increase the surface area of the bearing surface 211, thereby increasing the friction between the cake and the bearing surface 211, so that the cake is placed more stably on the bearing surface 211 of the rotating disc 21; on the other hand, the plurality of annular grooves 212 are spaced around the center of the bearing surface 211, and the center position of the bearing surface 211 is at the center of the plurality of annular grooves 212, so that the user can more easily find the center position of the bearing surface 211, thereby precisely placing the cake at the center of the bearing surface 211, so that the cake remains balanced and stable during rotation. Among them, the annular grooves 212 can be annular grooves or annular ribs, but are not limited thereto. In an embodiment, please refer to FIG. 9 and combine it with FIGS. 2-4, which is a structural view of the scraper assembly 30 according to an embodiment. The food processor further comprises a scraper assembly 30, which comprises a fixed seat 33 and a scraper structure 30a, the fixed seat 33 is connected with the shell 11, and the scraper structure 30a is located above the rotating disc 21 for spreading butter on the cake. In this way, the user does not need to hold the scraper, but spreads the butter through the scraper structure 30a, which not only saves time and effort, but also can improve the uniformity of butter spreading. In a further embodiment, the scraper structure 30a is movably arranged on the fixed seat 33 and can move in the direction of approaching or moving away from the rotating disc 21. In this way, the scraper structure 30a can adapt to cakes of different sizes, and the user can adjust the position of the scraper structure 30a according to the size of the cake, so that the scraper structure 30a spreads the cake of the corresponding size. Among them, the scraper structure 30a can be arranged to spread butter on the top surface of the cake, or can be arranged to spread butter on the side surface of the cake, or can be arranged to spread butter on the top surface and side surface of the cake. In an embodiment, the scraper structure 30a comprises a first scraper 31 and a second scraper 32; among them, the first scraper 31 is located above the rotating disc 21, one end is movably connected with the fixed seat 33 in the up-down direction, and the other end extends to the center of the rotating disc 21.As such, according to the height of the cake, the first spatula 31 can be in contact with the top surface of the cake by moving up and down to spread the cream on the top surface of the cake. The second spatula 32 is movably arranged with the fixed seat 33 in the horizontal direction, and the second spatula 32 extends in the vertical direction, above the turntable 21 and at the edge of the turntable 21. As such, according to the circumferential size of the cake, the second spatula 32 can be in contact with the side surface of the cake by moving horizontally to spread the cream on the side surface of the cake. In summary, the combined use of the first spatula 31 and the second spatula 32 can evenly spread the cream on the top surface and the side surface of the cake, making the appearance of the cake more clean and beautiful. It should be noted that the horizontal direction and the vertical direction can refer to the horizontal direction and the vertical direction shown in FIG. 2 and FIG. 9. In one embodiment, please refer to FIG. 9 and FIG. 10, FIG. 10 is a schematic view of the cross-sectional structure of the first spatula 31 and the fixed seat 33 at the connection. The fixed seat 33 is provided with a first adjusting slot 331 extending in the vertical direction, and the first spatula 31 is provided with a first fixing hole 311 corresponding to the first adjusting slot 331. The spatula assembly 30 further comprises a first locking member 34 movably arranged in the first adjusting slot 331, and the first locking member 34 can be connected with the first fixing hole 311. The first spatula 31 is locked or unlocked with the first adjusting slot 331 through the first locking member 34, and in the unlocked state, the first spatula 31 can move up and down along the first adjusting slot 331. As described above, when the first locking member 34 is connected with the first fixing hole 311, the first spatula 31 is locked in the first adjusting slot 331 of the fixed seat 33, ensuring stability during cream spreading. By operating the first locking member 34 (such as rotating, sliding or tightening / loosening), the locking state of the first spatula 31 can be released. In the unlocked state, the first spatula 31 can move up and down along the first adjusting slot 331 to adjust its height. In the embodiment shown in FIG. 10, the first locking member 34 includes a first operating portion 341 for user use and a first locking portion 342 arranged in the first adjusting slot 331, and the two opposite side walls of the fixed seat 33 are provided with the first adjusting slot 331, and the first locking member 34 is arranged through the two first adjusting slots 331.The first scraper 31 comprises a connecting portion 312 connected with the fixed seat 33, the connecting portion 312 is annularly designed and sleeved on the fixed seat 33, and the connecting portion 312 is provided with the first fixing hole 31L at the first adjusting groove 331 away from the first operating portion 341. The first fixing hole 311 is threadedly matched with the first locking portion 342, and the user can make the first locking portion 342 threadedly connected or separated from the first fixing hole 311 by rotating the first operating portion 341, so that the first scraper 31 is locked or unlocked with the fixed seat 33. In an embodiment, please continue to refer to FIG. 9 and FIG. 10, the second scraper 32 is also provided with a horizontally extending second adjusting groove 321, the fixed seat 33 is also provided with a second fixing hole 332 corresponding to the second adjusting groove 321, and the scraper assembly 30 further comprises a second locking member 35, the second locking member 35 is movably arranged in the second adjusting groove 321, and the second locking member 35 is connected with the second fixing hole 332, the second scraper 32 is locked or unlocked with the second fixed seat 33 through the second locking member 35, and in the unlocked state, the second scraper 32 can move horizontally relative to the fixed seat 33. As described above, in the locked state, the second locking member 35 is connected with the second fixing hole 332, and the second scraper 32 is firmly locked in the second fixing hole 332 of the fixed seat 33. At this time, the user can ensure that the second scraper 32 remains stable when spreading butter and realizes more accurate side spreading. When unlocked, by operating the second locking member 35 (such as rotating, sliding or tightening / loosening), the locked state of the second scraper 32 can be released, the second scraper 32 can move horizontally relative to the fixed seat 33 to adjust its position, so as to adapt to cakes with different diameters or meet specific decoration requirements. Please refer to FIG. 9 and FIG. 11, FIG. 11 is a structural schematic view of the fixed seat 33 according to an embodiment. The second scraper 32 is plate-shaped and comprises two second adjusting grooves 321, the two second adjusting grooves 321 are arranged in the up-down direction and are located at the upper and lower ends of the second scraper 32 respectively, and each second adjusting groove 321 corresponds to a second fixing hole 332 and a second locking member 35.The second locking member 35 includes a second operating portion 351 for user to operate and a second locking portion (not shown) which is threadedly engaged with the second fixing hole 332. The user can threadedly connect or disconnect the second locking portion with the second fixing hole 332 by rotating the second operating portion 351, so as to lock or unlock the second blade 32 with the fixing seat 33. In an embodiment, the first operating portion 341 and the second operating portion 351 are located at the same side of the fixing seat 33. In this way, the user can adjust the positions of the first blade 31 and the second blade 32 on the fixing seat 33 without moving frequently, and thus the operation efficiency is improved. Specifically, the second blade 32 is provided with a through opening 322 which penetrates through the thickness of the second blade 32 and exposes the first operating portion 341 and the first adjusting groove 331, so that the user can adjust the position of the first blade 31 in the first adjusting groove 331 through the through opening 322. Due to the design of the through opening 322, the user can see and operate the movement of the first blade 31 along the first adjusting groove 331 without disassembling or moving the second blade 32, so that the operation is more intuitive and convenient. In an embodiment, please continue to refer to FIG. 11 and combine with FIG. 5. The fixing seat 33 is a cylindrical structure, and the inner wall of the fixing seat 33 is provided with a buckle 333. The shell 11 of the main machine 10 is further provided with a second fixing platform 114 on the top surface thereof, and the second fixing platform 114 includes a clamping groove 1141 which is matched with the buckle 333. When the fixing seat 33 is placed on the second fixing platform 114, the buckle 333 is clamped and matched with the clamping groove 1141, so that the fixing seat 33 is detachably connected with the main machine 10. Of course, in some other embodiments, the connection mode of the fixing seat 33 with the shell 11 can also be a screw type connection, a plug-in connection, a magnetic attraction connection, etc. The above description is only for the preferred embodiments of the present application and is not used to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
CLAIM 1. A food processor, characterized in that it comprises: - a main machine (10) comprising a housing (11) and a motor shaft (12) arranged in the housing (11), the motor shaft (12) being provided with a turntable output head (121) and a stirring output head (122), the top of the housing (11) being provided with an opening (111) exposing the turntable output head (121); and - a turntable assembly (20) comprising a turntable (21) for carrying a cake, the turntable (21) being connected with the turntable output head (121) through the opening (111), the motor shaft (12) being capable of driving the turntable (21) to rotate along its circumference.
2. The material processing machine of claim 1, wherein, The turntable assembly (20) further comprises a speed reduction structure (22), the turntable (21) being connected with the speed reduction structure (22), the speed reduction structure (22) being connected with the turntable output head (121), the speed reduction structure (22) being used to reduce the rotating speed of the turntable (21).
3. The material processing machine of claim 2, wherein, The turntable (21) and the speed reduction structure (22) are detachably connected; and / or the speed reduction structure (22) is used to reduce the rotating speed of the turntable (21) to 50r / min-50r / min.
4. The material processing machine of claim 3, wherein, One of the turntable (21) and the speed reduction structure (22) is provided with a rotating clamping joint (213), and the other is provided with a rotating clamping seat (221), the rotating clamping joint (213) being rotatably clamped into the rotating clamping seat (221); and / or the housing (11) is further provided with a mounting position (112), the mounting position (112) being formed at the opening (111), and the speed reduction structure (22) is assembled in the mounting position (112).
5. The food processor according to any one of claims 1 to 4, wherein, The turntable (21) comprises a carrying surface (211) for carrying a cake, a plurality of annular grooves (212) being arranged on the carrying surface (211) and spaced apart around the center of the carrying surface (211). The food processor further comprises a scraper assembly (30), the scraper assembly (30) comprising a fixed seat (33) and a scraper structure (30a), the fixed seat (33) being connected with the housing (11), and the scraper structure (30a) being located above the turntable (21) and used to scrape cream on the cake.
6. The food processor according to any one of claims 1 to 5, wherein, The scraper structure (30a) is movably arranged in the fixed seat (33) and is capable of moving in the direction of approaching or moving away from the turntable (21). The scraper structure (30a) comprises a first scraper (31) and a second scraper (32); wherein:
7. The food processor of claim 6, wherein, 8. The food processor of claim 7, wherein, The first scraper (31) is located above the rotary disc (21), one end of which is movably connected with the fixed seat (33) in the vertical direction, and the other end extends to the center of the rotary disc (21) for spreading cream on the top surface of the cake; the second scraper (32) is movably connected with the fixed seat (33) in the horizontal direction, and is located above the rotary disc (21) and at the edge of the rotary disc (21) for spreading cream on the side surface of the cake.
9. The material processing machine of claim 8, wherein, The fixed seat (33) is provided with a first adjusting groove (331) extending in the vertical direction, the first scraper (31) is provided with a first fixing hole (311) corresponding to the first adjusting groove (331), the scraper assembly (30) further comprises a first locking member (34), the first locking member (34) is movably arranged in the first adjusting groove (331), and the first locking member (34) is connected with the first fixing hole (311), the first scraper is locked or unlocked with the fixed seat (33) through the first locking member (34), in the unlocked state, the first scraper (31) can move up and down along the first adjusting groove (331); and / or the second scraper (32) is provided with a second adjusting groove (321) extending in the horizontal direction, the fixed seat (33) is further provided with a second fixing hole (332) corresponding to the second adjusting groove (321), the scraper assembly (30) further comprises a second locking member (35), the second locking member (35) is movably arranged in the second adjusting groove (321), and the second locking member (35) is connected with the second fixing hole (332), the second scraper (32) is locked or unlocked with the fixed seat (33) through the second locking member (35), in the unlocked state, the second scraper (32) can move relative to the fixed seat (33) in the horizontal direction. When the scraper structure (30a) comprises the first locking member (34) and the second locking member (35), the first locking member (34) comprises a first operation part (341) for a user to use, the second locking member (35) comprises a second operation part (351) for a user to use, and the first operation part (341) and the second operation part (351) are located on the same side of the fixed seat (33).
10. The material processing machine of claim 9, wherein, 11. The food processor of claim 10, wherein, The second scraper (32) is provided with a through hole (322) penetrating along the thickness direction of the second scraper (32), and the first operation part (341) and the first adjusting slot (331X) are exposed from the through hole (322) 12.The food processor according to any one of claims 1 to 11, wherein, The cooking machine further comprises a stirring bowl (40) and a stirring assembly, the stirring output head (122) is connected with the stirring assembly, and the main machine (10) can drive the stirring assembly to rotate in the stirring bowl (40). 14
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