Food processor
By setting up a base and positioning device in the food processor, the problem of inconvenience in traditional cooking machines requiring multiple electrical appliances and existing multi-functional cooking machines is solved, and convenient switching and no-holding operation of multi-functional food processing is achieved.
Patent Information
- Application Number
- CN202421513057.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-06-28
AI Technical Summary
Traditional food cooking machines require multiple electrical appliances, which are costly and occupy space. The existing multi-functional cooking machines lack positioning structure and are inconvenient to use.
By setting power output interfaces with different rotation speeds at both ends of the body, and using positioning devices on the base, including steering wheels and positioning blocks, the adjustable angle positioning of the body is achieved, avoiding user grip operations.
It realizes convenient switching of different accessories and no user-holding operation during food processing, making it more convenient to use.
Smart Images

Figure CN223081542U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of household appliances, in particular to a food processor. Background Art
[0002] For a traditional food processor, the power output of its main body has only one end. After installing the mixing cup body, when the motor rotates to drive the knife assembly to rotate at a high speed, the food in the mixing cup body is crushed. When the user needs to use other functions, such as grinding, beating eggs, low-speed food premixing, etc., grinding utensils, egg beaters and mixing cups need to be used separately. In this way, the user needs to purchase a relatively large number of electrical appliances, which is costly and takes up a lot of storage space.
[0003] The Chinese utility model patent with the authorization publication number CN211559800U discloses a multi-functional food processor, which includes a machine body, a driving mechanism, a mixing cutter, a mixing member and a mixing cup body. The machine body can detachably cover the mixing cup body. The driving mechanism is installed in the machine body. The driving mechanism is a double-output shaft motor. The double-output shaft motor includes a first transmission part and a second transmission part. The first transmission part and the second transmission part respectively extend out of the outside of the machine body. The mixing cutter is arranged on the first transmission part and extends into the mixing cup body. The mixing member is detachably arranged on the second transmission part. The first transmission part is the first transmission shaft of the double-output shaft motor. The second transmission part includes a reducer and the second output shaft of the double-output shaft motor. The second output shaft is in transmission connection with the input end of the reducer. The output end of the reducer is in transmission connection with the mixing member. The machine body is cylindrical, and the first transmission part and the second transmission part are respectively arranged at both ends of the machine body. The machine body of this prior art is provided with double-output power ends, and the user can select different accessory cup bodies to be assembled and used at different power ends according to the use requirements, so as to realize different food processing functions; however, the machine body of this prior art has no positioning structure, the machine body cannot be positioned, and operations such as switching different accessories and food processing are all completed by the user holding the machine body, which is extremely inconvenient to use.
[0004] Therefore, there is still room for improvement and development in the prior art. Summary of the Utility Model
[0005] Aiming at the problems of the prior art, the utility model provides a food processor, which can play a positioning role for the machine body by setting a base, and the user does not need to hold and operate during the process of switching different accessories and food processing, making it more convenient to use.
[0006] In order to achieve the above purpose, the technical solution applied by the utility model is as follows:
[0007] A food processor, comprising a body, wherein a power driving device is provided inside the body, and power output interfaces with different rotation speeds are respectively provided at both ends of the body; a base, the body is rotatably mounted on the base, and a positioning device for positioning the body is provided inside the base, so that the body is positioned on the base in a non-rotatable manner. With such a setting, by providing the base, the body can be positioned. During the process of switching different accessories and food processing, the user does not need to hold and operate, making it more convenient to use.
[0008] According to the above solution, the positioning device includes a steering wheel and a positioning block. The steering wheel is rotatably provided inside the base, the steering wheel is fixedly connected to the body, a plurality of positioning grooves are provided at intervals on the steering wheel, the positioning block is slidably provided inside the base, the positioning block cooperates with the positioning grooves for clamping, and the positioning block is driven by a driving device to disengage from or extend into the positioning grooves. With such a setting, after the body is fixedly connected to the steering wheel, the body can rotate relative to the base, thereby adjusting the angular position of the body. By the cooperation of the positioning block and the positioning grooves for clamping, the positioning of the steering wheel is realized, and thus the positioning of the body is realized.
[0009] According to the above solution, the positioning grooves include a first positioning groove, a second positioning groove and a third positioning groove, and the first positioning groove is located between the second positioning groove and the third positioning groove; when the first positioning groove and the positioning block cooperate for clamping, the body is horizontally placed on the base; when the second positioning groove and the positioning block cooperate for clamping, the body is vertically placed on the base, and the power output interface at the first end of the body faces upward; when the third positioning groove and the positioning block cooperate for clamping, the body is vertically placed on the base, and the power output interface at the second end of the body faces upward. With such a setting, the positions of the power output interfaces at both ends of the body can be adjusted to facilitate the adaptation of different accessories. More specifically, in the initial state, the first positioning groove and the positioning block cooperate for clamping, and the body is horizontally placed on the base. When the body is rotated counterclockwise or clockwise to be vertical, the second positioning groove or the third positioning groove and the positioning block cooperate for clamping, which is convenient for adapting accessories with horizontal output or vertical output. In practical applications, the included angle formed by the first positioning groove, the second positioning groove and the center of the steering wheel is 90 degrees; the included angle formed by the first positioning groove, the third positioning groove and the center of the steering wheel is 90 degrees.
[0010] According to the above solution, a first chute is provided inside the base, the positioning block is slidably provided in the first chute, a first spring is fixed between the positioning block and the first chute, and the driving device includes a release button. The first end of the release button is fixed on the positioning block, and the second end of the release button extends out of the base and is exposed. With such a setting, by pressing the release button to drive the positioning block to act, the operation is convenient.
[0011] According to the above solution, a first limiting post is fixed in the first sliding groove. The first end of the first spring is fixed on the positioning block, and the second end of the first spring is fixed on the first limiting post. With such a setting, in the initial state, the positioning block extends into the first positioning groove under the elastic force of the first spring and cooperates with the positioning groove for clamping. When it is necessary to adjust the angular position of the machine body, the release button is pressed to compress the first spring, so that the positioning block disengages from the positioning groove. At this time, the steering wheel can rotate. When the release button is released, the first spring is in a released state. When the steering wheel rotates to another positioning groove corresponding to the positioning block, it extends into the positioning groove under the elastic force of the first spring and cooperates with the positioning groove for clamping, so as to position the adjusted machine body. More specifically, the release button is used to drive the positioning block to move downward, and the first spring is used to drive the positioning block to reset upward.
[0012] According to the above solution, a first limiting part and a second limiting part are symmetrically arranged on the inner wall of the base. The steering wheel is provided with a first stopper, a second stopper and a mounting post. The first stopper and the second stopper are symmetrically arranged on both sides of the mounting post. A torsion spring is sleeved on the mounting post. The first end of the torsion spring passes through the first stopper and is limited on the first limiting part, and the second end of the torsion spring passes through the second stopper and is limited on the second limiting part. With such a setting, the steering wheel is limited by the torsion spring to prevent the steering wheel from rotating by itself. At the same time, when the steering wheel rotates to a certain position, a torsion force is provided to the steering wheel by the torsion spring, and the steering wheel is locked and positioned in cooperation with the positioning block. More specifically, in the initial state, the two ends of the torsion spring are respectively limited on the first limiting part and the second limiting part. When the steering wheel rotates counterclockwise, the first stopper drives the first end of the torsion spring to rotate, and the first end of the torsion spring disengages from the first limiting part. Since the second end of the torsion spring is limited on the second limiting part, the torsion spring is in a compressed state at this time. When the steering wheel rotates to another positioning groove and cooperates with the positioning block for clamping, the torsion spring provides a clockwise torsion force to the steering wheel, so that the positioning groove of the steering wheel is locked relative to the positioning block, preventing the steering wheel from shaking or swinging relative to the positioning block, and further making the machine body work more stably. In practical applications, when the first positioning groove and the positioning block cooperate for clamping, the two ends of the torsion spring are respectively limited on the first limiting part and the second limiting part.
[0013] According to the above solution, a pressing block is fixed inside the base. The pressing block is provided with a first stroke stop block and a second stroke stop block at intervals. The steering wheel is provided with a first stroke limit block and a second stroke limit block. The first stroke limit block is arranged corresponding to the first stroke stop block, and the second stroke limit block is arranged corresponding to the second stroke stop block. With this setting, when the steering wheel is in the initial state and rotates counterclockwise until the first stroke limit block corresponds to the first stroke stop block, the steering wheel stops rotating. At this time, the second positioning groove and the positioning block cooperate to be stuck, and the body is vertically placed on the base, and the power output interface at the first end of the body faces upward. When the steering wheel is in the initial state and rotates clockwise until the second stroke limit block corresponds to the second stroke stop block, the steering wheel stops rotating. At this time, the third positioning groove and the positioning block cooperate to be stuck, and the body is vertically placed on the base, and the power output interface at the second end of the body faces upward.
[0014] According to the above solution, the pressing block is provided with a second chute. The second chute is located between the first stroke stop block and the second stroke stop block. A sliding block is slidably arranged in the second chute. A second spring is fixed between the sliding block and the second chute. The steering wheel is provided with a first tooth groove and a second tooth groove corresponding to the convex point for being stuck. The first tooth groove is located between the first positioning groove and the second positioning groove, and the second tooth groove is located between the first positioning groove and the third positioning groove. With this setting, when the steering wheel is in the initial state and rotates counterclockwise, under the action of the second spring, the convex point cooperates with the first tooth groove to generate a clicking rotation feel, preventing the body from idling. When the steering wheel is in the initial state and rotates clockwise, under the action of the second spring, the convex point cooperates with the second tooth groove to generate a clicking rotation feel, preventing the body from idling. It should be noted that both the sliding block and the torsion spring can play a role in resisting the rotation of the steering wheel.
[0015] According to the above solution, a second limit post is fixed in the second chute. The first end of the second spring is fixed on the second limit post, and the second end of the second spring is fixed on the sliding block.
[0016] According to the above solution, the base includes a front shell, a rear shell and a load-bearing bottom shell. The front shell and the rear shell are fixedly connected. An accommodating cavity is formed between the front shell and the rear shell. An installation groove for installing the steering wheel is provided on the inner wall of the front shell. The load-bearing bottom shell is fixedly connected to the bottom plate of the front shell. With this setting, its assembly is convenient, and the load-bearing bottom shell prevents the machine from tilting during operation.
[0017] According to the above solution, the body is a columnar structure. The power output interfaces at the first end of the body are low-speed and medium-speed output interfaces, and the power output interface at the second end of the body is a high-speed output interface. With such a setting, when the body is placed horizontally on the base, the low-speed and medium-speed output interfaces at the first end of the body can be assembled with accessories for horizontal low- and medium-speed output to achieve corresponding functions, and the high-speed output interface at the second end of the body can be assembled with accessories for horizontal high-speed output to achieve corresponding functions. When the body is placed vertically on the base, when the power output interface at the first end of the body faces upward, accessories for vertical low- and medium-speed output can be assembled; when the power output interface at the second end of the body faces upward, accessories for vertical high-speed output can be assembled. In practical applications, the accessories include a meat grinder cup accessory, a juice extractor cup accessory, a shredding / slicing / stirring cup accessory, a juice cup accessory, and a bean grinding cup accessory, which are used on different output interfaces according to different accessories for multifunctional food processing.
[0018] Advantages of the present utility model:
[0019] With such a setting of the present utility model, by providing a base, a positioning function can be achieved for the body, and during the switching of different accessories and the food processing process, users do not need to hold and operate, making it more convenient to use. Description of the drawings
[0020] Figure 1 is an exploded view of the body and the base of the present utility model;
[0021] Figure 2 is an exploded view of the base of the present utility model;
[0022] Figure 3 is an internal structure diagram of the base of the present utility model;
[0023] Figure 4 is a schematic diagram of the release button in the original state, the positioning block and the steering wheel of the present utility model;
[0024] Figure 5 is a schematic diagram of the release button in the pressed state, the positioning block and the steering wheel of the present utility model;
[0025] Figure 6 is an assembly schematic diagram of the sliding block and the steering wheel of the present utility model;
[0026] Figure 7 is a schematic diagram of the steering wheel when the body of the present utility model is in the horizontal position;
[0027] Figure 8 is a schematic diagram of the steering wheel when the body of the present utility model rotates counterclockwise by 45 degrees;
[0028] Figure 9 is a schematic diagram of the steering wheel when the body of the present utility model rotates counterclockwise by 90 degrees;
[0029] Figure 10It is a schematic diagram of the assembly of the body of the present utility model and the accessories of the meat grinder cup;
[0030] Figure 11 It is a schematic diagram of the assembly of the body of the present utility model and the accessories of the juice extractor cup;
[0031] Figure 12 It is a schematic diagram of the assembly of the body of the present utility model and the accessories of the shredding / slicing / stirring cup;
[0032] Figure 13 It is a schematic diagram of the assembly of the body of the present utility model and the accessories of the juice cup;
[0033] Figure 14 It is a schematic diagram of the assembly of the body of the present utility model and the accessories of the bean grinding cup.
[0034] In the figure:
[0035] 1. Body; 2. Base; 21. Front shell; 22. Rear shell; 23. Load-bearing bottom shell; 211. First limiting part; 212. Second limiting part; 213. First sliding groove; 214. First limiting column; 215. Installation groove; 3. Release button; 5. Positioning block; 51. First spring; 6. Sliding block; 61. Convex point; 62. Second spring; 7. Torsion spring; 8. Steering wheel; 811. First stop block; 812. Second stop block; 821. First stroke limiting block; 822. Second stroke limiting block; 83. Installation column; 841. First positioning groove; 842. Second positioning groove; 843. Third positioning groove; 851. First tooth groove; 852. Second tooth groove; 9. Pressing block; 911. First stroke stop block; 912. Second stroke stop block; 913. Second sliding groove; 914. Second limiting column; 101. Accessories of the meat grinder cup; 102. Accessories of the juice extractor cup; 103. Accessories of the shredding / slicing / stirring cup; 104. Accessories of the juice cup; 105. Accessories of the bean grinding cup. Specific embodiments
[0036] The technical solutions of the present utility model will be described below in conjunction with the accompanying drawings and embodiments.
[0037] As Figures 1 to 9 shown, a food processor according to the present utility model includes a body 1 provided with a power driving device therein, and power output interfaces with different speeds are respectively provided at both ends of the body 1; a base 2, the body 1 is rotatably mounted on the base 2, and a positioning device for positioning the body 1 is provided in the base 2. With such a setting, by providing the base 2, the body 1 can be positioned, and operations such as switching different accessories and food processing do not require the user to hold and operate, making it more convenient to use.
[0038] In this embodiment, the positioning device includes a steering wheel 8 and a positioning block 5. The steering wheel 8 is rotatably arranged in the base 2. The steering wheel 8 is fixedly connected to the body 1. A plurality of positioning grooves are arranged at intervals on the steering wheel 8. The positioning block 5 is slidably arranged in the base 2. The positioning block 5 is engaged with the positioning grooves. The positioning block 5 is driven by a driving device to be disengaged from or inserted into the positioning grooves. With such an arrangement, after the body 1 is fixedly connected to the steering wheel 8, the body 1 can rotate relative to the base 2, thereby adjusting the angular position of the body 1. By engaging the positioning block 5 with the positioning grooves, the positioning of the steering wheel 8 is realized, and thus the positioning of the body 1 is realized.
[0039] In this embodiment, the positioning grooves include a first positioning groove 841, a second positioning groove 842, and a third positioning groove 843. The first positioning groove 841 is located between the second positioning groove 842 and the third positioning groove 843. When the first positioning groove 841 is engaged with the positioning block 5, the body 1 is horizontally placed on the base 2. When the second positioning groove 842 is engaged with the positioning block 5, the body 1 is vertically placed on the base 2, and the power output interface at the first end of the body 1 faces upward. When the third positioning groove 843 is engaged with the positioning block 5, the body 1 is vertically placed on the base 2, and the power output interface at the second end of the body 1 faces upward. With such an arrangement, the positions of the power output interfaces at both ends of the body 1 can be adjusted to facilitate the adaptation to different accessories. More specifically, in the initial state, the first positioning groove 841 is engaged with the positioning block 5, and the body 1 is horizontally placed on the base 2. When the body 1 is rotated counterclockwise or clockwise to be vertical, the second positioning groove 842 or the third positioning groove 843 is engaged with the positioning block 5, which is convenient for adapting accessories with horizontal output or vertical output. In practical applications, the included angle formed by the first positioning groove 841, the second positioning groove 842, and the center of the steering wheel 8 is 90 degrees; the included angle formed by the first positioning groove 841, the third positioning groove 843, and the center of the steering wheel 8 is 90 degrees.
[0040] In this embodiment, a first sliding groove 213 is arranged in the base 2. The positioning block 5 is slidably arranged in the first sliding groove 213. A first spring 51 is fixed between the positioning block 5 and the first sliding groove 213. The driving device includes a release button 3. The first end of the release button 3 is fixed on the positioning block 5, and the second end of the release button 3 extends out of the base 2 and is exposed. With such an arrangement, by pressing the release button 3, the positioning block 5 is driven to act, and the operation is convenient.
[0041] In this embodiment, a first limiting post 214 is fixed in the first sliding groove 213. The first end of the first spring 51 is fixed to the positioning block 5, and the second end of the first spring 51 is fixed to the first limiting post 214. With such a setting, in the initial state, the positioning block 5 extends into the first positioning groove 841 under the elastic force of the first spring 51 and cooperates with the positioning groove for positioning. When the angular position of the machine body 1 needs to be adjusted, the release button 3 is pressed to compress the first spring 51, so that the positioning block disengages from the positioning groove. At this time, the steering wheel 8 can rotate. When the release button 3 is released, the first spring 51 is in a released state. When the steering wheel 8 rotates to another positioning groove corresponding to the positioning block 5, it extends into the positioning groove under the elastic force of the first spring 51 and cooperates with the positioning groove for positioning, so as to position the machine body 1 after the angle adjustment. More specifically, the release button 3 is used to drive the positioning block 5 to move downward, and the first spring 51 is used to drive the positioning block 5 to reset upward.
[0042] In this embodiment, a first limiting portion 211 and a second limiting portion 212 are symmetrically provided on the inner wall of the base 2. The steering wheel 8 is provided with a first stopper 811, a second stopper 812 and a mounting post 83. The first stopper 811 and the second stopper 812 are symmetrically arranged on both sides of the mounting post 83. A torsion spring 7 is sleeved on the mounting post 83. The first end of the torsion spring 7 passes through the first stopper 811 and is limited to the first limiting portion 211, and the second end of the torsion spring 7 passes through the second stopper 812 and is limited to the second limiting portion 212. With such a setting, the steering wheel 8 is limited by the torsion spring 7 to prevent the steering wheel 8 from rotating self. At the same time, when the steering wheel 8 rotates to a certain position, a torsion force is provided to the steering wheel 8 by the torsion spring 7, and the steering wheel 8 is locked and positioned in cooperation with the positioning block 5. More specifically, in the initial state, the two ends of the torsion spring 7 are respectively limited to the first limiting portion 211 and the second limiting portion 212. When the steering wheel 8 rotates counterclockwise, the first stopper 811 drives the first end of the torsion spring 7 to rotate, and the first end of the torsion spring 7 disengages from the first limiting portion 211. Since the second end of the torsion spring 7 is limited to the second limiting portion 212, the torsion spring 7 is in a compressed state at this time. When the steering wheel 8 rotates to another positioning groove and cooperates with the positioning block 5 for positioning, the torsion spring 7 provides a clockwise torsion force to the steering wheel 8, so that the positioning groove of the steering wheel 8 is locked relative to the positioning block 5, preventing the steering wheel 8 from shaking or swinging relative to the positioning block 5, and further making the operation of the machine body 1 more stable. In practical applications, when the first positioning groove 841 and the positioning block 5 are in positioning cooperation, the two ends of the torsion spring 7 are respectively limited to the first limiting portion 211 and the second limiting portion 212.
[0043] In this embodiment, a pressing block 9 is fixed inside the base 2. The pressing block 9 is provided with a first stroke stop block 911 and a second stroke stop block 912 at intervals. The steering wheel 8 is provided with a first stroke limit block 821 and a second stroke limit block 822. The first stroke limit block 821 is arranged corresponding to the first stroke stop block 911, and the second stroke limit block 822 is arranged corresponding to the second stroke stop block 912. With this setting, when the steering wheel 8 is in the initial state and rotates counterclockwise until the first stroke limit block 821 corresponds to the first stroke stop block 911, the steering wheel 8 stops rotating. At this time, the second positioning groove 842 and the positioning block 5 cooperate to be clamped, and the machine body 1 is vertically placed on the base 2, and the power output interface at the first end of the machine body 1 faces upward; when the steering wheel 8 is in the initial state and rotates clockwise until the second stroke limit block 822 corresponds to the second stroke stop block 912, the steering wheel 8 stops rotating. At this time, the third positioning groove 843 and the positioning block 5 cooperate to be clamped, and the machine body 1 is vertically placed on the base 2, and the power output interface at the second end of the machine body 1 faces upward.
[0044] In this embodiment, a second chute 913 is provided on the pressing block 9. The second chute 913 is located between the first stroke stop block 911 and the second stroke stop block 912. A sliding block 6 is slidably arranged in the second chute 913. A second spring 62 is fixed between the sliding block 6 and the second chute 913. The steering wheel 8 is provided with a first tooth groove 851 and a second tooth groove 852 corresponding to the convex point 61 for clamping. The first tooth groove 851 is located between the first positioning groove 841 and the second positioning groove 842, and the second tooth groove 852 is located between the first positioning groove 841 and the third positioning groove 843. With this setting, when the steering wheel 8 is in the initial state and rotates counterclockwise, under the action of the second spring 62, the convex point 61 cooperates with the first tooth groove 851 to generate a rotating feel with a clicking sound, preventing the machine body 1 from idling. When the steering wheel 8 is in the initial state and rotates clockwise, under the action of the second spring 62, the convex point 61 cooperates with the second tooth groove 852 to generate a rotating feel with a clicking sound, preventing the machine body 1 from idling. It should be noted that both the sliding block 6 and the torsion spring 7 can provide resistance to the rotation of the steering wheel 8.
[0045] In this embodiment, a second limiting post 914 is fixed in the second chute 913. The first end of the second spring 62 is fixed on the second limiting post 914, and the second end of the second spring 62 is fixed on the sliding block 6.
[0046] In this embodiment, the base 2 includes a front shell 21, a rear shell 22, and a load-bearing bottom shell 23. The front shell 21 is fixedly connected to the rear shell 22. An accommodating cavity is formed between the front shell 21 and the rear shell 22. An installation groove 215 for installing the steering wheel 8 is provided on the inner wall of the front shell 21. The load-bearing bottom shell 23 is fixedly connected to the bottom plate of the front shell 21. With this setting, the assembly is convenient, and the load-bearing bottom shell 23 prevents the machine from tilting during operation.
[0047] In this embodiment, the body 1 is a columnar structure. The power output interfaces at the first end of the body 1 are low-speed and medium-speed output interfaces, and the power output interfaces at the second end of the body 1 are high-speed output interfaces. With such a setting, when the body 1 is horizontally placed on the base 2, the low-speed and medium-speed output interfaces at the first end of the body 1 can be assembled with accessories for horizontal low- and medium-speed output to achieve corresponding functions, and the high-speed output interfaces at the second end of the body 1 can be assembled with accessories for horizontal high-speed output to achieve corresponding functions; when the body 1 is vertically placed on the base 2, when the power output interfaces at the first end of the body 1 face upward, accessories for vertical low- and medium-speed output can be assembled; and when the power output interfaces at the second end of the body 1 face upward, accessories for vertical high-speed output can be assembled.
[0048] As Figures 10 - 14 shown, the accessories include a meat grinder cup accessory 101, a juice extractor cup accessory 102, a shredding / slicing / stirring cup accessory 103, a juice cup accessory 104, and a bean grinder cup accessory 105. They are used according to different accessories adapted to different output interfaces for multifunctional food processing.
[0049] The embodiments of the present invention have been described above in conjunction with the accompanying drawings. However, the present invention is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present invention, those of ordinary skill in the art can also make many forms without departing from the spirit and scope protected by the claims of the present invention, and all of them fall within the protection scope of the present invention.
Claims
1. A food processor, characterized in that, Comprising: A body, in which a power driving device is provided, and power output interfaces with different rotation speeds are respectively provided at both ends of the body; A base, on which the body is rotatably mounted, and a positioning device for positioning the body is provided in the base so that the body is non-rotatably positioned on the base; The positioning device includes a steering wheel and a positioning block. The steering wheel is rotatably provided in the base, the steering wheel is fixedly connected to the body, a plurality of positioning grooves are spaced on the steering wheel, the positioning block is slidably provided in the base, the positioning block cooperates with the positioning groove for clamping, and the positioning block is driven by a driving device to disengage from or extend into the positioning groove.
2. The food processor according to claim 1, wherein: The positioning grooves include a first positioning groove, a second positioning groove and a third positioning groove, and the first positioning groove is located between the second positioning groove and the third positioning groove; when the first positioning groove and the positioning block cooperate for clamping, the body is horizontally placed on the base; when the second positioning groove and the positioning block cooperate for clamping, the body is vertically placed on the base, and the power output interface at the first end of the body is upward; when the third positioning groove and the positioning block cooperate for clamping, the body is vertically placed on the base, and the power output interface at the second end of the body is upward.
3. A food processor according to claim 1, characterized in that: A first chute is provided in the base, the positioning block is slidably provided in the first chute, a first spring is fixed between the positioning block and the first chute, the driving device includes a release button, the first end of the release button is fixed on the positioning block, and the second end of the release button extends out of the base and is exposed.
4. A food processor according to claim 3, characterized in that: A first limiting post is fixed in the first chute, the first end of the first spring is fixed on the positioning block, and the second end of the first spring is fixed on the first limiting post.
5. A food processor according to claim 1, characterized in that: A first limiting portion and a second limiting portion are symmetrically provided on the inner wall of the base. The steering wheel is provided with a first stop block, a second stop block and a mounting post. The first stop block and the second stop block are symmetrically provided on both sides of the mounting post. A torsion spring is sleeved on the mounting post. The first end of the torsion spring passes through the first stop block and is limited on the first limiting portion, and the second end of the torsion spring passes through the second stop block and is limited on the second limiting portion.
6. A food processor according to claim 1, wherein: A pressing block is fixed in the base, a first stroke stop block and a second stroke stop block are spaced on the pressing block, the steering wheel is provided with a first stroke limiting block and a second stroke limiting block, the first stroke limiting block is correspondingly arranged with the first stroke stop block, and the second stroke limiting block is correspondingly arranged with the second stroke stop block.
7. A food processor according to claim 6, characterized in that: A second chute is provided on the pressing block, the second chute is located between the first stroke stop block and the second stroke stop block, a sliding block is slidably provided in the second chute, a second spring is fixed between the sliding block and the second chute, the steering wheel is provided with a first tooth groove and a second tooth groove corresponding to the convex point for clamping, the first tooth groove is located between the first positioning groove and the second positioning groove, and the second tooth groove is located between the first positioning groove and the third positioning groove.
8. A food processor according to claim 7, characterized in that: A second limiting post is fixed in the second chute, the first end of the second spring is fixed on the second limiting post, and the second end of the second spring is fixed on the sliding block.
9. A food processor according to claim 1, characterized in that: The base includes a front shell, a rear shell, and a load-bearing bottom shell. The front shell and the rear shell are fixedly connected. An accommodation cavity is formed between the front shell and the rear shell. An installation groove for installing a steering wheel is provided on the inner wall of the front shell. The load-bearing bottom shell is fixedly connected to the bottom plate of the front shell.
Citation Information
Patent Citations
Multifunctional food processor
CN211559800U
Cited By
Locking device and multifunctional food processor
CN120585227A