Food processor
The adjustable cup body and detachable feeding mechanism in the food processor simplify ingredient handling and cleaning, addressing the cumbersome issue of container emptying and refilling, thereby improving user experience.
Patent Information
- Application Number
- CN202420927041.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-29
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-04-29
AI Technical Summary
When the existing food processors process a variety of ingredients, the container carrying the cut food is full, and the operation is complicated to clear the container and reload, which makes the user experience poor.
A food processing machine is designed, including a body, a driving part, a cutting part and a cup body. The cup body is adjusted to be close to or away from the cutting part through the adjustment part. The independently installed cup body and cutting part are easy to install or disassemble, avoid spilling of food and simplify operation.
It improves the user experience, simplifies the installation and cleaning process of the cup body, ensures hygienic use, and enhances the convenience and efficiency of operation.
Smart Images

Figure CN223095387U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the technical field of food processing, and particularly to a food processor. Background Art
[0002] In the current technology, a food processor can be used to cut and process food materials. When there is a large amount of food materials to be processed and the container for holding the cut food materials is full, the operation of emptying the container and reloading is cumbersome, and the user experience is poor. Summary of the Utility Model
[0003] The present utility model aims to solve at least one of the technical problems existing in the prior art or related technologies.
[0004] To this end, the present utility model provides a food processor.
[0005] In view of this, according to the embodiments of the present application, a food processor is proposed, including:
[0006] A body;
[0007] A driving member, disposed in the bracket of the above-mentioned body, and a first driving shaft of the above-mentioned driving member extends out of the head of the above-mentioned body and faces the base of the above-mentioned body;
[0008] A cutting part, connected to the above-mentioned first driving shaft, and the above-mentioned first driving shaft is used to drive the above-mentioned cutting part to cut food materials, and an installation space is formed between the above-mentioned cutting part and the base of the above-mentioned body;
[0009] A cup body, communicated with the above-mentioned cutting part, disposed in the above-mentioned installation space, and the above-mentioned cup body is used to receive the food materials cut by the above-mentioned cutting part;
[0010] An adjusting part, used to adjust the above-mentioned cup body to be close to or far from the above-mentioned cutting part.
[0011] In a feasible implementation manner, the above-mentioned adjusting part includes:
[0012] A lifting member, disposed on the above-mentioned base, the above-mentioned cup body is disposed on the above-mentioned lifting member, and the above-mentioned lifting member is used to drive the above-mentioned cup body to move in a direction close to or far from the above-mentioned cutting part;
[0013] A connecting structure, and the above-mentioned cup body is connected to the above-mentioned lifting member through the above-mentioned connecting structure.
[0014] In a feasible implementation manner, the above-mentioned lifting member includes:
[0015] A guide rail, along the axis direction of the above-mentioned first driving shaft, a lifting space is formed on the above-mentioned base, and the above-mentioned guide rail is disposed on the side wall of the above-mentioned base facing the above-mentioned lifting space;
[0016] A lifting platform is arranged in the above-mentioned lifting space, and the above-mentioned cup body is arranged on the above-mentioned lifting platform;
[0017] A pin body is connected to the above-mentioned lifting platform and is slidably inserted into the above-mentioned guide rail.
[0018] In a feasible implementation manner, along the axial direction of the above-mentioned first drive shaft, the outer contour projection of the above-mentioned lifting space is circular, and the above-mentioned guide rail is spirally arranged on the side wall of the above-mentioned base facing the above-mentioned lifting space.
[0019] In a feasible implementation manner, the above-mentioned connection structure includes:
[0020] An arc section is arranged at the bottom of the above-mentioned cup body;
[0021] An arc notch is arranged at one end of the above-mentioned lifting platform facing the above-mentioned cup body, and the above-mentioned arc section can be fitted into the above-mentioned arc notch.
[0022] In a feasible implementation manner, the above-mentioned food processor further includes:
[0023] A stirring member is arranged in the above-mentioned cup body and is used for stirring the ingredients in the above-mentioned cup body;
[0024] Wherein, when the above-mentioned adjusting part drives the above-mentioned cup body to approach the above-mentioned cutting part, the above-mentioned stirring member is connected to the above-mentioned first drive shaft; when the above-mentioned adjusting part drives the above-mentioned cup body to move away from the above-mentioned cutting part, the above-mentioned stirring member is separated from the above-mentioned first drive shaft.
[0025] In a feasible implementation manner, the above-mentioned stirring member includes:
[0026] A pin shaft is arranged at the bottom of the above-mentioned cup body;
[0027] A stirring shaft, one end of the above-mentioned stirring shaft is used for being inserted into the pin shaft, and the other end is used for being inserted into the above-mentioned first drive shaft;
[0028] Stirring paddles are connected to the above-mentioned stirring shaft;
[0029] Wherein, when the above-mentioned stirring member is installed in the working position, the central axis of the above-mentioned pin shaft, the above-mentioned stirring shaft and the above-mentioned first drive shaft coincide.
[0030] In a feasible implementation manner, the above-mentioned pin shaft penetrates through the bottom of the above-mentioned cup body, the above-mentioned lifting platform is provided with an avoidance pit, and when the above-mentioned cup body is placed on the above-mentioned lifting platform, the above-mentioned pin shaft is located in the above-mentioned avoidance pit.
[0031] In a feasible implementation manner, the above-mentioned food processor further includes:
[0032] A feeding part is connected to the above-mentioned machine head, and the above-mentioned feeding part communicates with the above-mentioned cutting part.
[0033] In a feasible implementation manner, the feeding part comprises:
[0034] A first cover body, wherein the first drive shaft passes through the first cover body, and the first cover body is connected to the cup body;
[0035] A first connecting member, used to connect the first cover to the machine body;
[0036] A material guiding part, arranged on the first cover body and connected to the material feeding port of the first cover body;
[0037] The push rod can be inserted and pulled into the material guiding part.
[0038] In a feasible implementation manner, the first connecting member includes:
[0039] A buckle position is formed on the above-mentioned machine head;
[0040] The buckle plate is arranged on a side of the first cover body away from the cutting portion, and the buckle plate is buckled at the buckle position.
[0041] In a feasible implementation manner, the cutting portion includes:
[0042] A tool holder is sleeved on one end of the first drive shaft close to the base, a cutting space is formed inside the tool holder, and the tool holder is connected to the cup body;
[0043] The tool is connected to the first driving shaft and is located in the cutting space.
[0044] In a feasible implementation manner, the tool holder comprises:
[0045] Frame;
[0046] A shaft sleeve, sleeved on the first driving shaft;
[0047] A connecting rod, one end of which is connected to the frame, and the other end of which is connected to the shaft sleeve;
[0048] Wherein, a channel is formed between the plurality of connecting rods, and the channel is connected to the cup body.
[0049] In a feasible embodiment, the food processor further includes:
[0050] The second connecting member is used to connect the tool holder to the first cover.
[0051] In a feasible implementation manner, the second connecting member includes:
[0052] A first protrusion is formed on the inner side wall of one end of the tool holder close to the first cover body;
[0053] The screw-on structure is formed on the first cover body, and the first protrusion can be screwed and buckled on the screw-on structure.
[0054] In a feasible embodiment, the food processor further includes:
[0055] The second protrusion is arranged on a side of the frame body away from the bracket.
[0056] In a feasible embodiment, a mounting groove is provided at the top of the head, the second driving shaft of the driving member extends out of the mounting groove and away from the base, and the second driving shaft is used to drive the stirring device.
[0057] In a feasible embodiment, the food processor further includes:
[0058] The second cover body is arranged to cover the installation groove.
[0059] Compared with the prior art, the utility model at least includes the following beneficial effects: the food processor provided in the embodiment of the present application is provided with a body, a driving member, a cutting part, a cup body and an adjusting part. Among them, the body can be provided with a bracket, a head and a base. The head is connected to the top of the bracket, the base is connected to the bottom of the bracket, the driving member is arranged in the bracket of the body, and the first driving shaft of the driving member extends from the head and faces the base. The feeding part is connected to the head, and the cutting part can be connected to the first driving shaft, and the cutting part is driven by the first driving shaft to cut the food. An installation space is formed between the cutting part and the base. The cup body can be arranged in the installation space, and the cup body can be connected to the cutting part to receive the food cut by the cutting part. In the case of cutting operation, the cup body can be adjusted to move in the direction close to the cutting part by the adjusting part, so that the cup body is connected to the cutting part, so as to better receive the cut food and avoid the food from spilling out of the gap between the cup body and the cutting part. After the cutting operation is completed, the cup body can be adjusted to move in the direction away from the cutting part by the adjusting part, so that the cup body and the cutting part are separated, so as to facilitate the removal of the cup body. With this arrangement, since the cup body and the cutting part are independently arranged, it is convenient to install or disassemble the cup body without removing the cutting part, and the operation is simple and fast, thereby facilitating the removal of food in the cup body and the cleaning of the cup body, thereby ensuring hygienic use and improving user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0060] Various other advantages and benefits will become apparent to those of ordinary skill in the art by reading the detailed description of the preferred embodiments below. The accompanying drawings are only for the purpose of illustrating the preferred embodiments and are not to be considered as limiting the present application. Also, the same reference symbols are used throughout the accompanying drawings to represent the same components. In the accompanying drawings:
[0061] Figure 1Schematic structural diagram of a state of a food processor provided by the present application;
[0062] Figure 2 is Figure 1 Schematic cross-sectional view of the food processor shown;
[0063] Figure 3 Schematic structural diagram of another state of a food processor provided by the present application;
[0064] Figure 4 is Figure 3 Schematic cross-sectional view of the food processor shown;
[0065] Figure 5 Explosion diagram of a food processor provided by the present application;
[0066] Figure 6 Explosion schematic cross-sectional view of a food processor provided by the present application;
[0067] Figure 7 Assembly schematic diagram of a lifting member and a base provided by the present application;
[0068] Figure 8 Schematic structural diagram of a cup body of an embodiment provided by the present application from a certain angle.
[0069] Among them, Figures 1 to 8 The corresponding relationship between the reference numerals and the component names in the drawings is as follows:
[0070] 100 Food processor;
[0071] 110 Body, 120 Driving member, 130 Feeding part, 140 Cup body, 150 Stirring member, 160 Adjusting part, 170 Cutting part, 180 Second connecting member, 190 Second cover body;
[0072] 111 Bracket, 112 Machine head, 113 Base, 121 First drive shaft, 122 Second drive shaft, 131 First cover body, 132 First connecting member, 133 Material guiding part, 134 Pushing rod, 141 Handle, 151 Pin shaft, 152 Stirring shaft, 153 Stirring paddle, 161 Lifting member, 162 Connecting structure, 171 Tool rest, 172 Tool, 173 Second protrusion, 181 First protrusion, 182 Screwing structure;
[0073] 1121 Installation groove, 1321 Buckling position, 1322 Buckling plate, 1611 Guide rail, 1612 Lifting table, 1613 Pin body, 1614 Avoidance pit, 1621 Arc section, 1622 Arc notch, 1711 Frame body, 1712 Bush, 1713 Connecting rod. Detailed implementation manners
[0074] To better understand the above technical solution, the technical solution of the embodiments of the present application will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific features in the embodiments of the present application and the embodiments are detailed descriptions of the technical solution of the embodiments of the present application, rather than limitations on the technical solution of the present application. Without conflict, the technical features in the embodiments of the present application and the embodiments can be combined with each other.
[0075] As Figures 1 to 6 shown, according to an embodiment of the present application, a food processor 100100 is provided, including: a body 110; a driving member 120 disposed in a bracket 111 of the body 110, a first driving shaft 121 of the driving member 120 extending out of a head 112 of the body 110 and facing a base 113 of the body 110; a cutting portion 170 connected to the first driving shaft 121, the first driving shaft 121 being used to drive the cutting portion 170 to cut food materials, an installation space being formed between the cutting portion 170 and the base 113 of the body 110; a cup body 140 communicating with the cutting portion 170 and disposed in the installation space, the cup body 140 being used to receive the food materials cut by the cutting portion 170; and an adjusting portion 160 for adjusting the cup body 140 to be close to or away from the cutting portion 170.
[0076] It is understandable that the present utility model has at least the following beneficial effects: The food processor 100 provided in the embodiments of the present application is provided with a body 110, a driving member 120, a cutting portion 170, a cup body 140, and an adjusting portion 160. Among them, the body 110 may be provided with a bracket 111, a machine head 112, and a base 113. The machine head 112 is connected to the top end of the bracket 111, the base 113 is connected to the bottom end of the bracket 111, the driving member 120 is disposed within the bracket 111 of the body 110, and the first driving shaft 121 of the driving member 120 extends out of the machine head 112 and faces the base 113. The feeding portion 130 is connected to the machine head 112, and the cutting portion 170 may be connected to the first driving shaft 121, and the cutting portion 170 is driven by the first driving shaft 121 to cut food ingredients. An installation space is formed between the cutting portion 170 and the base 113. The cup body 140 may be disposed within the installation space, and the cup body 140 may communicate with the cutting portion 170 to receive the food ingredients cut by the cutting portion 170. In the case of performing a cutting operation, the cup body 140 can be adjusted by the adjusting portion 160 to move in a direction closer to the cutting portion 170, so that the cup body 140 is connected to the cutting portion 170, to better receive the cut food ingredients and prevent the food ingredients from spilling out from the gap between the cup body 140 and the cutting portion 170. After the cutting operation is completed, the cup body 140 can be adjusted by the adjusting portion 160 to move in a direction away from the cutting portion 170, so that the cup body 140 and the cutting portion 170 are separated, facilitating the removal of the cup body 140. With such a setting, since both the cup body 140 and the cutting portion 170 are independently provided, during the installation or disassembly of the cup body 140, there is no need to disassemble the cutting portion 170, the operation is simple and fast, thereby facilitating the removal of the food ingredients in the cup body 140 and the cleaning of the cup body 140, ensuring hygienic use and improving the user experience.
[0077] Exemplarily, as Figure 1 shown in the direction, the machine head 112 of the body 110 extends out of the main body of the body 110 and is located on the upper side of the body 110, the first driving shaft 121 extends out of the machine head 112 and is vertically downward, the cup body 140 is located below the feeding portion 130, and the food ingredients fed through the feeding portion 130 fall into the cup body 140 by their own gravity, making the structural design more reasonable, and there is no need to provide additional driving force for the food ingredients to fall into the cup body 140, and the structural arrangement is more reasonable. And the feeding portion 130 and the cup body 140 are detachable structures, facilitating the installation and disassembly of the cup body 140 during use. And the feeding portion 130 can be separately removed for cleaning food residues, which is convenient and hygienic to use.
[0078] Exemplarily, the cup body 140 may be made of a transparent material to facilitate the user to observe the uniformity of the stirred food ingredients in the cup body 140.
[0079] Exemplarily, the cup body 140 may be provided with a handle 141. Specifically, the handle 141 may be installed on a side of the cup body 140 away from the placement space. So as to facilitate the user to operate the cup body 140 through the handle 141, so that the cup body 140 is drawn into the placement space, or the cup body 140 is drawn out of the placement space. The handle 141 and the cup body 140 may be an integral structure and can be made by an injection molding process to improve the structural strength.
[0080] In some examples, such as Figures 1 to 8 shown, the above-mentioned adjusting part 160 includes: a lifting member 161, arranged on the above-mentioned base 113, the above-mentioned cup body 140 is arranged on the above-mentioned lifting member 161, and the above-mentioned lifting member 161 is used to drive the above-mentioned cup body 140 to move in a direction close to or away from the above-mentioned cutting part 170; a connecting structure 162, the above-mentioned cup body 140 is connected to the above-mentioned lifting member 161 through the above-mentioned connecting structure 162.
[0081] It can be understood that the adjusting part 160 may be provided with a lifting member 161. Specifically, the lifting member 161 is arranged at the base 113, and the cup body 140 can be placed on the lifting member 161. With such a setting, in the case where cutting operation is required, the lifting member 161 can drive the cup body 140 to move towards the cutting part 170, so that the cup body 140 is connected to the cutting part 170 to receive the cut food materials, and prevent the food materials from spilling out from the gap between the cup body 140 and the cutting part 170. After the cutting operation is completed, the lifting member 161 can drive the cup body 140 to move away from the cutting part 170, so that the cup body 140 and the cutting part 170 are separated, so as to facilitate the removal of the cup body 140, ensure the use hygiene, and improve the user experience.
[0082] It can be understood that the adjusting part 160 may also be provided with a connecting structure 162. Specifically, the connecting structure 162 may be arranged at the connection between the cup body 140 and the lifting member 161, and the cup body 140 can be fixed to the lifting member 161 through the connecting structure 162, so as to ensure that during the process of the lifting member 161 driving the cup body 140 to move towards the cutting part 170 or driving the cup body 140 away from the cutting part 170, the connection between the cup body 140 and the lifting member 161 is stable, prevent the cup body 140 from falling off the lifting member 161 and causing the food materials in the cup body 140 to spill out, and improve the stability. And ensure that during the process of the cutting part 170 cutting the food materials, the position of the cup body 140 is stable to ensure the reliability of receiving the food materials.
[0083] In some examples, such as Figure 7As shown in the figure, the lifting member 161 includes: a guide rail 1611. Along the axial direction of the first drive shaft 121, a lifting space is formed in the base 113, and the guide rail 1611 is disposed on the side wall of the base 113 facing the lifting space; a lifting table 1612, which is disposed in the lifting space, and the cup body 140 is disposed on the lifting table 1612; a pin body 1613, which is connected to the lifting table 1612 and is slidably inserted into the guide rail 1611.
[0084] It can be understood that the lifting member 161 can be provided with a guide rail 1611, a lifting table 1612 and a pin body 1613. Specifically, the base 113 corresponding to the first drive shaft 121 can be a hollow structure to form a lifting space. And a guide rail 1611 is disposed on the side wall of the base 113 facing the lifting space. The lifting table 1612 can be disposed in the lifting space, and a pin body 1613 can be disposed at a position where the side portion of the lifting table 1612 is close to the base 113. The pin body 1613 can be inserted into the slide rail and can slide relative to the guide rail 1611. With such a setting, the cup body 140 can be placed on the lifting table 1612, and by sliding the pin body 1613 at the guide rail 1611, the lifting table 1612 can drive the cup body 140 to move towards the cutting portion 170 or drive the cup body 140 away from the cutting portion 170.
[0085] Exemplarily, the lifting member 161 can also be provided with a locking member to lock the position of the cup body 140 after the lifting member 161 drives the cup body 140 to connect to the cutting portion 170, thereby improving stability. The lifting member 161 and the locking member can operate automatically or manually according to product requirements.
[0086] In some examples, as Figure 7 shown, along the axial direction of the first drive shaft 121, the outer contour projection of the lifting space is circular, and the guide rail 1611 is spirally disposed on the side wall of the base 113 facing the lifting space.
[0087] It can be understood that in the projection along the axial direction of the first drive shaft 121, the outer contour projection of the lifting space can be circular, that is, the hollow part of the base 113 is a hollow column. At the same time, the guide rail 1611 can be spirally disposed on the side wall of the base 113 facing the lifting space. After the pin body 1613 is inserted into the guide rail 1611, it can spiral up or spiral down. Correspondingly, with such a setting, after the cup body 140 is connected to the lifting table 1612, the lifting of the cup body 140 can be controlled by rotating the cup body 140, converting the rotation of the cup body 140 into a linear movement along the axial direction of the first drive shaft 121, and the lifting process is smooth and labor-saving.
[0088] It should be noted that the setting of the swivel slope can enable the guide rail 1611 to generate a supporting force on the pin body 1613, and the supporting force needs to be greater than the self-weight of the cup body 140 and the maximum load capacity of the cup body 140, so as to form a self-locking without applying a rotational force. Ensure that the cup body 140 will not slide down due to gravity, resulting in the separation of the stirring member 150 and the first drive shaft 121, and improve the stability.
[0089] It can be understood that a plurality of pin bodies 1613 can be arranged at a position on the side of the cup body 140 close to the base 113, and a plurality of guide rails 1611 can be arranged on the side wall of the base 113 facing the lifting space, and the number of the pin bodies 1613 and the guide rails 1611 corresponds. Through the cooperation of the plurality of pin bodies 1613 and the guide rails 1611, on the one hand, the rotation and lifting are more labor-saving and smooth. On the other hand, the supporting force of the guide rail 1611 on the pin body 1613 and the cup body 140 is improved, further ensuring that the cup body 140 will not slide down due to gravity and improving the stability. Correspondingly, the lifting table 1612 can be a cylinder. On the one hand, the distances between the plurality of pin bodies 1613 and the corresponding guide rails 1611 are equal, ensuring balanced force, and on the other hand, the shape of the lifting table 1612 matches the shape of the cup body 140, improving the overall aesthetics and the user experience.
[0090] Exemplarily, three pin bodies 1613 are evenly distributed at a position on the side of the cup body 140 close to the base 113, and the included angle between adjacent pin bodies 1613 is 120°. Three guide rails 1611 are arranged on the side wall of the base 113 facing the lifting space so that the guide rails 1611 correspond to the pin bodies 1613.
[0091] Exemplarily, the part of the base 113 extending out of the main body of the machine body 110 is used to receive the cup body 140, and the shape of this part of the base 113 can match the shape of the cup body 140 and the shape of the placement space. When the cup body 140 is cylindrical and the placement space is a hollow column, the whole of this part of the base 113 can be circular, and the outer diameter dimension of the circle is larger than the outer diameter dimension of the cup body 140. The design sense of the base 113 is improved, the overall aesthetics of the food processor 100 is improved, and the user experience is improved.
[0092] Exemplarily, the connection structure 162 can be a slot and a wall body. Specifically, a slot can be formed at a position on the side of the cup body 140 close to the base 113, a wall body can be arranged on the lifting table 1612, and a space is formed between the wall body and the table top of the lifting table 1612. While the wall body is fitted into the slot, the part between the slot of the cup body 140 and the bottom of the cup body 140 is inserted into the space to realize the fitting of the cup body 140 to the lifting table 1612.
[0093] In some examples, such as Figure 8As shown, the above-mentioned connection structure 162 includes: an arc segment 1621 disposed at the bottom of the above-mentioned cup body 140; an arc notch 1622 disposed at one end of the above-mentioned lifting platform 1612 facing the above-mentioned cup body 140, and the above-mentioned arc segment 1621 can be fitted into the above-mentioned arc notch 1622.
[0094] It can be understood that the connection structure 162 can be provided with an arc segment 1621 and an arc notch 1622. Among them, the arc segment 1621 can be disposed at the bottom of the cup body 140. And the arc notch 1622 is disposed at one end of the lifting platform 1612 facing the cup body 140. When the cup body 140 is placed on the lifting platform 1612, the arc segment 1621 and the arc notch 1622 are fitted with each other to fix the cup body 140 to the lifting platform 1612, thereby restricting the rotational freedom of the cup body 140, so that the cup body 140 can only drive the lifting platform 1612 to rotate, so as to ensure the firm connection between the cup body 140 and the lifting platform 1612 while realizing lifting.
[0095] It can be understood that the outer wall of the cup body 140 protrudes from the bottom of the cup body 140, so as to form a space between the outer wall and the bottom. The arc segment 1621 is disposed in the space and does not protrude from the outer wall of the cup body 140, ensuring the stable placement of the cup body 140. A protrusion is formed on the tabletop of the lifting platform 1612, and an arc notch 1622 is formed beside the protrusion. With such a setting, when the arc segment 1621 and the arc notch 1622 are fitted with each other, it is ensured that the bottom of the cup body 140 completely abuts against the protrusion of the lifting platform 1612, ensuring the stable support of the lifting platform 1612 for the cup body 140.
[0096] In some examples, as Figures 1 to 8 shown, the above-mentioned food processor 100 further includes: a stirring member 150 disposed in the above-mentioned cup body 140 for stirring the ingredients in the above-mentioned cup body 140; wherein, when the above-mentioned adjusting part 160 drives the above-mentioned cup body 140 to approach the above-mentioned cutting part 170, the above-mentioned stirring member 150 is connected to the above-mentioned first drive shaft 121; when the above-mentioned adjusting part 160 drives the above-mentioned cup body 140 to move away from the above-mentioned cutting part 170, the above-mentioned stirring member 150 is separated from the above-mentioned first drive shaft 121.
[0097] It can be understood that the stirring member 150 can be arranged inside the cup body 140, and the state of the stirring member 150 can be adjusted through the adjusting portion 160. Specifically, the stirring member 150 is rotatably arranged inside the cup body 140. When the stirring member 150 rotates, a stirring space can be formed in the cup body 140 to stir the food materials in the cup body 140. During the process of placing the cup body 140 in the installation space, the stirring member 150 will not interfere with the installation position. When stirring operation is required, the position of the cup body 140 can be adjusted through the adjusting portion 160, so that the cup body 140 drives the stirring member 150 to move towards the direction close to the first drive shaft 121 until the stirring member 150 is inserted and engaged with the first drive shaft 121, so that the first drive shaft 121 drives the stirring member 150 to rotate in the cup body 140 to stir the food materials in the cup body 140. After the stirring operation is completed, the position of the cup body 140 can be adjusted again through the adjusting portion 160, so that the cup body 140 drives the stirring member 150 to move towards the direction away from the first drive shaft 121, so that the stirring member 150 and the first drive shaft 121 are separated, so that the process of taking out the cup body 140 will not be affected by the stirring member 150 and the first drive shaft 121. Setting the stirring member 150 and the first drive shaft 121 as a separable structure further facilitates the installation and disassembly of the cup body 140, facilitates the cleaning of the stirring member 150, ensures hygienic use, and improves the user experience.
[0098] In some examples, such as Figure 5 and Figure 6 shown, the stirring member 150 includes: a pin shaft 151 arranged at the bottom of the cup body 140; a stirring shaft 152, one end of the stirring shaft 152 is used for being inserted into the pin shaft 151, and the other end is used for being inserted into the first drive shaft 121; a stirring paddle 153 connected to the stirring shaft 152; wherein, when the stirring member 150 is installed in the working position, the central axes of the pin shaft 151, the stirring shaft 152 and the first drive shaft 121 coincide.
[0099] It can be understood that the stirring member 150 may be provided with a pin shaft 151, a stirring shaft 152, and a stirring paddle 153. Among them, the pin shaft 151 is arranged at the central position of the bottom of the cup body 140. One end of the stirring shaft 152 is inserted into the pin shaft 151, and the other end of the stirring shaft 152 can be inserted and engaged with the first drive shaft 121. The stirring paddle 153 can be arranged along the radial direction of the stirring shaft 152. With such an arrangement, one end of the stirring shaft 152 close to the base 113 can be fixed by the pin shaft 151, and the pin shaft 151 provides a supporting force for the stirring shaft 152 to ensure the stirring stability and reduce the shaking. When stirring operation is required, the lifting member 161 can drive the cup body 140 and the stirring shaft 152 to move towards the direction close to the first drive shaft 121 until the other end of the stirring shaft 152 is engaged with the first drive shaft 121. The rotation of the first drive shaft 121 drives the stirring shaft 152 to rotate, and then drives the stirring paddle 153 to stir the food materials in the cup body 140.
[0100] It should be noted that when the stirring shaft 152 is engaged with the first drive shaft 121, the central axes of the pin shaft 151, the stirring shaft 152, and the first drive shaft 121 coincide, which ensures the rotational stability of the stirring member 150 and improves the stirring quality.
[0101] In some examples, as Figure 5 shown, the above-mentioned pin shaft 151 penetrates through the bottom of the above-mentioned cup body 140, and the above-mentioned lifting table 1612 is provided with an avoidance pit 1614. When the above-mentioned cup body 140 is placed on the above-mentioned lifting table 1612, the above-mentioned pin shaft 151 is located in the above-mentioned avoidance pit 1614.
[0102] It can be understood that a part of the pin shaft 151 may penetrate through the bottom of the cup body 140 to make the connection between the pin shaft 151 as a whole and the cup body 140 more stable. And an avoidance pit 1614 is formed at the central position of the tabletop of the lifting table 1612. When the cup body 140 is placed on the tabletop of the lifting table 1612, the pin shaft 151 is located in the avoidance pit 1614, which ensures the fastening of the connection between the cup body 140 and the lifting table 1612 and enables the cup body 140 to rotate and lift synchronously with the lifting table 1612.
[0103] Exemplarily, the pin shaft 151 and the cup body 140 may be of an integrated structure, which improves the structural strength and ensures the sealing performance at the connection between the pin shaft 151 and the cup body 140.
[0104] In some examples, as Figures 1 to 6 shown, the above-mentioned food processor 100 further includes: a feeding part 130, connected to the above-mentioned machine head 112, and the above-mentioned feeding part 130 communicates with the above-mentioned cutting part 170.
[0105] It can be understood that the food processor 100 may also be provided with a feeding part 130. The feeding part 130 can be connected to the machine head 112. The cutting part 170 is located between the feeding part 130 and the cup body 140. The feeding part 130 communicates with the cutting part 170, facilitating the feeding of food materials to the cutting part 170 through the feeding part 130.
[0106] In some examples, as Figures 1 to 6 shown, the above-mentioned feeding part 130 includes: a first cover body 131, the above-mentioned first drive shaft 121 passes through the first cover body 131, and the first cover body 131 communicates with the cup body 140; a first connecting piece 132 for connecting the first cover body 131 to the machine body 110; a material guiding part 133 provided on the first cover body 131 and communicating with the feeding port of the first cover body 131; a pushing rod 134 that can be inserted and withdrawn into the material guiding part 133.
[0107] It can be understood that the feeding part 130 is provided with a first cover body 131, a first connecting piece 132, a material guiding part 133 and a pushing rod 134. Among them, the first cover body 131 is provided with a feeding port along the axis direction of the first drive shaft 121. The first cover body 131 is connected to the machine head 112 of the machine body 110, and the first drive shaft 121 passes through the first cover body 131. There is a certain distance between the feeding port and the first drive shaft 121 to avoid interfering with the operation of the first drive shaft 121. The food materials can be fed into the cup body 140 through the feeding port. The first cover body 131 is connected to the machine body 110 through the first connecting piece 132 to ensure that the position of the first cover body 131 is fixed during the food material processing operation, so as to avoid the first cover body 131 shaking or separating from the machine body 110 during the food material processing operation and improve stability. Further, a material guiding part 133 can be provided. The material guiding part 133 is connected to the top end of the first cover body 131 and communicates with the feeding port. A guiding cavity is formed inside the material guiding part 133. When the food materials are put into the material guiding part 133, the food materials follow the guiding cavity and enter the cup body 140 from the feeding port. It ensures the smoothness of the feeding operation, and the food materials will not spill out under the guidance of the material guiding part 133, improving the cleanliness at the first cover body 131.
[0108] Exemplarily, the material guiding part 133 is detachably connected to the first cover body 131, so as to facilitate the removal and cleaning of the material guiding part 133, or select different sizes and shapes of the material guiding part 133 according to the fed food materials. For example, a cylindrical material guiding part 133 or a conical material guiding part 133 can be selected.
[0109] It is understandable that the food processor 100 is also provided with a push rod 134, which can move along the guide cavity. When food is put into the guide portion 133, the friction between the food and the inner wall of the guide portion 133 is too large and the food is stuck in the guide cavity. It is necessary to insert the push rod 134 into the guide cavity to push the food into the cup body 140. The feeding efficiency is improved to ensure smooth feeding and reduce the food residue in the guide cavity.
[0110] In some examples, such as Figure 1 , Figure 3 and Figure 5 As shown, the first connecting member 132 includes: a buckle position 1321 formed on the machine head 112; a buckle plate 1322 disposed on a side of the first cover 131 away from the buckle position 1321 of the cutting portion 170, and the buckle plate 1322 is buckled on the buckle position 1321.
[0111] It is understandable that the first connecting member 132 is provided with a buckle position 1321 and a buckle plate 1322. Among them, the head 112 of the machine body 110 may be formed with a buckle position 1321. A buckle plate 1322 may be provided on the side of the first cover 131 where the material guide portion 133 is provided, and the buckle plate 1322 may be hinged to the first cover 131. In this way, the buckle plate 1322 can be rotated to the buckle position 1321 and the buckle plate 1322 can be buckled at the buckle position 1321. Through the cooperation of the buckle plate 1322 and the buckle position 1321, the first cover 131 is fixed to the head 112 of the machine body 110. And it is easy to disassemble, so that the first cover 131 can be removed for cleaning, and the cleanliness of the first cover 131 is ensured.
[0112] Exemplarily, two buckle positions 1321 may be provided, respectively located on both sides of the machine head 112, and two buckle plates 1322 may be provided, corresponding to the positions of the two buckle plates 1322. The two buckle plates 1322 are buckled at the corresponding buckle positions 1321 to ensure the fixing and fastening of the first cover 131 and the machine head 112.
[0113] Exemplarily, the buckle position 1321 and the machine head 112 may be an integrated structure, which is formed by injection molding, thereby improving the structural strength of the buckle position 1321 and ensuring the stability of the connection between the first cover body 131 and the machine head 112.
[0114] In some examples, such as Figure 5 As shown, the cutting portion 170 buckle position 1321 includes: a tool holder 171, which is sleeved on one end of the first driving shaft 121 close to the base 113, and a cutting space is formed inside the tool holder 171. The tool holder 171 is connected to the cup body 140; a tool 172, which is connected to the first driving shaft 121 and is located in the cutting space.
[0115] It can be understood that the clamping position 1321 of the cutting part 170 is provided with a tool rest 171 and a cutting tool 172. Among them, the cutting tool 172 can be supported by the tool rest 171. The tool rest 171 can be sleeved on one end of the first driving shaft 121 close to the base 113, and the first driving shaft 121 can rotate relative to the tool rest 171. The center of the cutting tool 172 can be connected to the first driving shaft 121, and a cutting space is formed inside the tool rest 171. The cutting tool 172 is located in the cutting space. The first driving shaft 121 drives the cutting tool 172 to rotate to cut the food materials in the cutting space. And a channel is formed at the tool rest 171. The channel communicates with the cup body 140. The cut food materials are put into the cup body 140 through the channel.
[0116] It should be noted that the size of the channel of the tool rest 171 can be determined according to the size of the food materials to be cut. Exemplarily, when performing cutting operations such as slicing or cutting large pieces of food materials, the size of the cut food materials is relatively large, and the size of the tool rest 171 can be correspondingly set larger to ensure that the cut food materials can be smoothly put into the cup body 140. When performing cutting operations such as shredding, cutting small pieces or cutting grains of food materials, the size of the cut food materials is relatively small, and the size of the tool rest 171 can be correspondingly set smaller to ensure that the food materials are cut and processed sufficiently to reach the budgeted size. This enables the food processor 100 to process a rich variety of food materials, meet the various cutting and processing needs of users, and improve the applicability.
[0117] In some examples, as Figure 5 shown, the above-mentioned tool rest 171 includes: a frame body 1711; a shaft sleeve 1712 sleeved on the first driving shaft 121; a connecting rod 1713, one end of the connecting rod 1713 is connected to the frame body 1711, and the other end is connected to the shaft sleeve 1712; wherein, a channel is formed between the plurality of connecting rods 1713, and the channel communicates with the cup body 140.
[0118] It can be understood that the tool rest 171 can be provided with a frame body 1711, a shaft sleeve 1712 and a connecting rod 1713. Among them, the frame body 1711 is a hollow structure, and the contour shape of the frame body 1711 is the same as that of the cutting tool 172, both of which are circular. The shaft sleeve 1712 can be connected to the frame body 1711 through the connecting rod 1713, and the shaft sleeve 1712 is located at the center of the hollow part of the frame body 1711 through the connecting rod 1713. With such a setting, the first driving shaft 121 can be sleeved at the center of the circle of the cutting tool 172 and at the center of the frame body 1711, avoiding the eccentric movement of the cutting tool 172 and ensuring that the cutting tool 172 does not collide with the frame body 1711 during rotation, thereby improving the cutting stability of the cutting tool 172.
[0119] It can be understood that a plurality of connecting rods 1713 can be provided to improve the fixing effect of the bushing 1712 and the frame body 1711. A gap is formed between adjacent connecting rods 1713 as a passage, so that the food materials cut by the cutter 172 are put into the cup body 140 through the gap. And the angles between the plurality of connecting rods 1713 are equal, so that the gap sizes are the same, ensuring that the food cut by the cutter 172 can uniformly fall into the cup body 140 through the gaps at multiple angles of the frame body 1711.
[0120] Exemplarily, three connecting rods 1713 can be provided, and the angle between adjacent connecting rods 1713 is 120°.
[0121] In some examples, as Figure 5 shown, the above-mentioned food processor 100 further includes: a second connecting member 180 for connecting the first cover body 131 to the tool rest 171.
[0122] It can be understood that the food processor 100 can also be provided with a second connecting member 180. The first cover body 131 is connected to the tool rest 171 through the second connecting member 180, ensuring that during the cutting operation, the connection between the buckling position 1321 of the cutting part 170 and the feeding part 130 is firm, improving the stability. And thereby fixing the buckling position 1321 of the cutting part 170 at the installation position. During the process of inserting and removing the cup body 140, the cup body 140 will not affect the position of the buckling position 1321 of the cutting part 170, ensuring the independent operation of the cup body 140 and the buckling position 1321 of the cutting part 170.
[0123] In some examples, as Figure 5 shown, the above-mentioned second connecting member 180 includes: a first protrusion 181 formed on the inner side wall of one end of the tool rest 171 close to the first cover body 131; a screwing structure 182 formed on the first cover body 131, and the first protrusion 181 can be screwed and fastened to the screwing structure 182.
[0124] It is understandable that the second connecting member 180 may be provided with a first protrusion 181 and a screw-on structure 182 . Among them, a plurality of first protrusions 181 may be provided, and the plurality of first protrusions 181 may be arranged at intervals at the inner side wall of one end of the frame 1711 close to the first cover 131, and a plurality of screw-on structures 182 may be provided, and the plurality of screw-on structures 182 may be arranged at intervals on the side of the first cover 131 facing the cup body 140, and the positions of the first protrusions 181 and the screw-on structures 182 correspond to each other, and the buckle position 1321 of the cutting part 170 may be moved toward the direction close to the first cover 131, so that the first protrusion 181 is inserted into the screw-on structure 182, and then the buckle position 1321 of the cutting part 170 is screwed to buckle the first protrusion 181 into the screw-on structure 182, so as to ensure that the buckle position 1321 of the cutting part 170 and the feeding part 130 are connected and fastened, so as to prevent the buckle position 1321 of the cutting part 170 from vibrating and detaching from the feeding part 130 when cutting food. The installation is simple and quick, and the user experience is improved.
[0125] In some examples, such as Figures 1 to 6 As shown, the food processor 100 further includes a second protrusion 173 disposed on a side of the frame 1711 away from the bracket 111 .
[0126] It is understandable that the food processor 100 may also be provided with a second protrusion 173. Specifically, the second protrusion 173 may be provided along the radial direction of the frame 1711 on a side of the frame 1711 away from the bracket 111. This allows the user to hold the second protrusion 173 to install or remove the cutting portion 170 from the buckle 1321, making the operation simple and fast, and improving the user experience.
[0127] In some examples, such as Figure 5 As shown, a mounting groove 1121 is provided at the top of the head 112, and the second drive shaft 122 mounting groove 1121 of the drive member 120 extends out of the mounting groove 1121 and away from the base 113, and the second drive shaft 122 mounting groove 1121 is used to drive the stirring device.
[0128] It can be understood that an installation groove 1121 may be provided at the top of the machine head 112, and the second drive shaft 122 of the drive member 120 in the installation groove 1121 can pass through the installation groove 1121 and extend in a direction away from the base 113. With such a setting, the stirring appliance can be driven by the second drive shaft 122 in the installation groove 1121. Specifically, the stirring appliance is placed in the installation groove 1121 for fixation, and the stirring appliance is connected to the second drive shaft 122 in the installation groove 1121. By operating the second drive shaft 122 in the installation groove 1121, the stirring appliance performs a stirring operation. Moreover, the rotational speeds of the first drive shaft 121 and the second drive shaft 122 in the installation groove 1121 can be set to different rotational speeds to meet the stirring operation requirements at different rotational speeds, so as to enrich the types of food materials processed by the food processor 100 and improve the applicability. Exemplarily, the rotational speed of the first drive shaft 121 can be less than the rotational speed of the second drive shaft 122 in the installation groove 1121.
[0129] In some examples, as Figures 1 to 6 shown, the above-mentioned food processor 100 further includes: a second cover body 190 in the installation groove 1121, which covers the above-mentioned installation groove 1121.
[0130] It can be understood that the food processor 100 may also be provided with a second cover body 190 in the installation groove 1121. Specifically, the second cover body 190 in the installation groove 1121 can cover the installation groove 1121 to prevent dust from entering when the second drive shaft 122 in the installation groove 1121 is not in use, extend the service life, and facilitate cleaning.
[0131] In the present utility model, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance; the term "plurality" refers to two or more, unless otherwise clearly defined. Terms such as "installation", "connection", "coupling", "fixation", etc. should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "coupling" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0132] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "front", "rear", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or unit referred to must have a specific direction, be constructed and operated in a specific orientation, and therefore, should not be construed as a limitation to the present utility model.
[0133] In the description of this specification, the descriptions of the terms "one embodiment", "some embodiments", "specific embodiments", etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or instance. Moreover, the specific features, structures, materials or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.
[0134] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, the present utility model may have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A food processor, characterized in that, Comprising: A body; A driving member, disposed within a bracket of the body, a first driving shaft of the driving member extending out of the head of the body and facing the base of the body; A cutting portion, connected to the first driving shaft, the first driving shaft being used to drive the cutting portion to cut food materials, an installation space being formed between the cutting portion and the base of the body; A cup body, communicating with the cutting portion, disposed within the installation space, the cup body being used to receive the food materials cut by the cutting portion; An adjusting portion, used to adjust the cup body to be closer to or farther from the cutting portion.
2. The food processor according to claim 1, characterized in that, The adjusting portion includes: A lifting member, disposed on the base, the cup body being disposed on the lifting member, the lifting member being used to drive the cup body to move in a direction closer to or farther from the cutting portion; A connecting structure, the cup body being connected to the lifting member through the connecting structure.
3. The food processor according to claim 2, wherein The lifting member includes: A guide rail, along the axis direction of the first driving shaft, a lifting space being formed in the base, the guide rail being disposed on a side wall of the base facing the lifting space; A lifting platform, disposed within the lifting space, the cup body being disposed on the lifting platform; A pin body, connected to the lifting platform, slidably inserted into the guide rail.
4. The food processor according to claim 3, wherein Along the axis direction of the first driving shaft, the outer contour projection of the lifting space is circular, and the guide rail is spirally disposed on the side wall of the base facing the lifting space.
5. The food processor according to claim 3, characterized in that, The connecting structure includes: An arc segment, disposed at the bottom of the cup body; An arc notch, disposed at one end of the lifting platform facing the cup body, the arc segment being capable of being fitted into the arc notch.
6. The food processor according to any one of claims 3 to 5, characterized in that Further comprising: A stirring member, disposed within the cup body, used to stir the food materials within the cup body; Wherein, when the adjusting portion drives the cup body closer to the cutting portion, the stirring member is connected to the first driving shaft; when the adjusting portion drives the cup body farther from the cutting portion, the stirring member is separated from the first driving shaft.
7. The food processor according to claim 6, wherein, The stirring member includes: A pin shaft, disposed at the bottom of the cup body; A stirring shaft, one end of the stirring shaft being used to be inserted into the pin shaft, and the other end being used to be inserted into the first driving shaft; A stirring paddle, connected to the stirring shaft; Wherein, when the stirring member is installed at the working position, the central axis of the pin shaft, the stirring shaft and the first driving shaft coincide.
8. The food processor according to claim 7, wherein The pin shaft penetrates through the bottom of the cup body, the lifting platform is provided with an avoidance pit, and when the cup body is placed on the lifting platform, the pin shaft is located within the avoidance pit.
9. The food processor according to any one of claims 1 to 5, characterized in that, Further comprising: A feeding portion, connected to the head, the feeding portion communicating with the cutting portion.
10. The food processor according to claim 9, characterized in that, The feeding portion includes: A first cover body, the first driving shaft passing through the first cover body, the first cover body communicating with the cup body; A first connecting member, used to connect the first cover body to the body; A material guiding portion, disposed on the first cover body, communicating with a feeding port of the first cover body; A pushing rod, capable of being inserted and withdrawn from the material guiding portion.
11. The food processor according to claim 10, characterized in that, The first connecting member includes: A buckle position formed on the nose; A buckle plate is arranged on a side of the first cover body away from the cutting portion, and the buckle plate is buckled at the buckle position.
12. The food processor according to claim 10, characterized in that, The cutting part comprises: A tool holder, sleeved on one end of the first driving shaft close to the base, a cutting space is formed inside the tool holder, and the tool holder is connected to the cup body; A tool is connected to the first driving shaft and is located in the cutting space.
13. The food processor according to claim 12, wherein, The tool holder comprises: Frame; A shaft sleeve, sleeved on the first driving shaft; A connecting rod, one end of which is connected to the frame, and the other end of which is connected to the shaft sleeve; Wherein, a channel is formed between the plurality of connecting rods, and the channel is connected to the cup body.
14. The food processor according to claim 12, characterized in that, Also includes: The second connecting member is used to connect the tool holder to the first cover.
15. The food processor according to claim 14, wherein The second connecting member comprises: A first protrusion formed on an inner side wall of the tool holder at one end close to the first cover body; The screw-on structure is formed on the first cover body, and the first protrusion can be screwed and buckled on the screw-on structure.
16. The food processor according to claim 13, characterized in that, Also includes: The second protrusion is arranged on a side of the frame body away from the bracket.
17. The food processor according to any one of claims 1 to 5, characterized in that: The top of the machine head is provided with a mounting groove, the second driving shaft of the driving member extends out of the mounting groove and away from the base, and the second driving shaft is used for driving the stirring device.
18. The food processor according to claim 17, wherein Also includes: The second cover body is arranged to cover the installation groove.