Automated compounding machine
By using magnetic components to attract the slitting assembly and base in an automatic cutting and slitting machine, the problem of shortened service life caused by contact between the slitting blade and the tank wall is solved, thereby improving the stability and safety of the slitting blade.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHENGDU BOSS INNOVATION TECH CO LTD
- Filing Date
- 2025-08-27
- Publication Date
- 2026-07-21
AI Technical Summary
In existing automatic cutting and slicing machines, the contact between the slitting blade and the wall of the clearance groove leads to a shortened service life.
The slitting assembly and base are attached using magnetic components to ensure that the slitting assembly does not shake during transfer or storage. The magnetic attachment connection improves the stability and lifespan of the slitting blade.
It effectively prevents the slitting blade from rubbing against the tank wall, extends the service life of the slitting blade, and improves safety and stability during use.
Smart Images

Figure CN224522966U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen appliance technology, and in particular to an automatic cutting and preparation machine. Background Technology
[0002] To save time during the food preparation stage, various food preparation devices have emerged. However, for Chinese cooking, considering the diversity of ingredients, the preparation process is even more varied. Related automatic cutting and preparation equipment includes a base and a receiving frame mounted on the base. The receiving frame has a receiving groove and a clearance groove connecting to the receiving groove. During the cutting process, a ballast assembly with a slitting blade moves downwards, causing the slitting blade to move downwards along the clearance groove and cut the food in the receiving groove. To save space, the ballast assembly is placed on the base during transport and storage. Because the ballast assembly and base are separate in this technology, relative wobbling can easily occur between the ballast assembly and the receiving frame, causing the slitting blade to come into contact with the groove wall, resulting in friction between the slitting blade and the groove wall, and affecting the lifespan of the slitting blade.
[0003] Therefore, there is an urgent need to research an automatic cutting and processing machine to solve the above problems. Utility Model Content
[0004] The purpose of this invention is to provide an automatic cutting and slicing machine to solve the problem in the prior art where the slitting blade comes into contact with the wall of the clearance groove, thus affecting the service life of the slitting blade.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] Automatic cutting and processing machine, including:
[0007] Base;
[0008] A receiving frame is provided on the base. The receiving frame has a receiving groove for receiving food and a clearance groove communicating with the receiving groove. The clearance groove passes through the receiving frame along the length direction of the base.
[0009] The slitting assembly includes a slitting bracket and a slitting blade. The slitting blade is disposed on the slitting bracket. The slitting bracket can move between a slitting position and a clearance position. When the slitting bracket is in the slitting position, the slitting blade is partially located in the receiving groove and partially located in the clearance groove. One of the slitting bracket and the base is provided with a magnetic element, and the other can be attracted by the magnetic element.
[0010] As an optional technical solution for an automatic cutting and slicing machine, the magnetic component is installed on the cutting bracket, and the base is made of a magnetic material; or,
[0011] Both the base and the slitting bracket are provided with at least one magnetic component. The magnetic components on the base and the magnetic components on the slitting bracket correspond one-to-one and can attract each other.
[0012] As an optional technical solution for an automatic cutting and slicing machine, the base is provided with a plurality of magnetic components, which are divided into two groups. The two groups of magnetic components are arranged at intervals along the width direction of the base, and the plurality of magnetic components in each group are arranged at intervals along the length direction of the base.
[0013] As an optional technical solution for an automatic cutting and slicing machine, the cutting bracket is provided with a mounting groove, the magnetic component is installed in the mounting groove, and the bottom surface of the magnetic component is flush with the bottom surface of the cutting bracket or located on the upper side of the bottom surface of the cutting bracket.
[0014] As an optional technical solution for an automatic cutting and slicing machine, the cutting bracket includes a bottom shell, a top cover, and fastening screws. The bottom shell has a stepped hole, and the top cover has a threaded hole. The fastening screws pass through the stepped hole and are screwed into the threaded hole. The stepped hole includes a first hole, a second hole, and a third hole that are connected in sequence and whose diameters increase in sequence. The outer diameter of the nut of the fastening screw is greater than the diameter of the first hole and less than the diameter of the second hole. The diameter of the magnetic element is greater than the diameter of the second hole and less than or equal to the diameter of the third hole. The magnetic element is sealed in the third hole.
[0015] As an optional technical solution for an automatic cutting and assembling machine, the magnetic component is interference-fitted into the third hole of the stepped hole.
[0016] As an optional technical solution for an automatic cutting and slicing machine, the cutting assembly further includes a cutting shaft, and the cutting bracket and the base are hinged together by the cutting shaft.
[0017] As an optional technical solution for an automatic cutting and slicing machine, the base is provided with a hinge seat, and the cutting support includes a cutting body and two cutting connecting rods disposed on the cutting body. The two cutting connecting rods are arranged at intervals along the width direction of the base and are respectively disposed on both sides of the hinge seat. The hinge seat has a first hinge hole, the cutting connecting rod has a second hinge hole, the cutting shaft passes through the first hinge hole, and the two ends extending from the first hinge hole pass through the two second hinge holes respectively.
[0018] As an optional technical solution for an automatic cutting and slicing machine, the cutting bracket includes a cutting channel, and the cutting blade is disposed in the cutting channel. Along the width direction of the base, the width of the accommodating frame is smaller than the width of the cutting channel.
[0019] As an optional technical solution for an automatic cutting and slicing machine, the slitting assembly includes a plurality of slitting blades, which are arranged at intervals in the slitting channel along the width direction of the base.
[0020] This utility model has at least the following beneficial effects:
[0021] This utility model provides an automatic food preparation machine, which includes a base, a receiving frame, and a cutting assembly. The receiving frame is located on the base and has a receiving groove for holding food ingredients and a clearance groove connecting to the receiving groove. The clearance groove extends through the receiving frame along the length of the base. The cutting assembly includes a cutting support and a cutting blade. The cutting blade is located on the cutting support and can move between a cutting position and a clearance position. When the cutting support is in the cutting position, the cutting blade is partially located in the receiving groove and partially in the clearance groove. Both the cutting support and the base have a magnetic component, and the other can be attracted by the magnetic component. The magnetic component ensures that when the cutting assembly is placed on the base, the cutting assembly and the base are magnetically attracted, preventing relative shaking during transfer or storage, thus ensuring the safety and lifespan of the cutting blade. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments of this utility model will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the content of the embodiments of this utility model and these drawings without creative effort.
[0023] Figure 1 This is a first-view structural schematic diagram of the automatic cutting and assembling machine in an embodiment of this utility model;
[0024] Figure 2 This is a structural schematic diagram of the automatic cutting and assembling machine from a second perspective in an embodiment of this utility model;
[0025] Figure 3 This is a schematic diagram of the explosion of the slitting component and the magnetic component in an embodiment of this utility model;
[0026] Figure 4 This is a partial structural diagram of the bottom shell in an embodiment of the present invention.
[0027] In the picture:
[0028] 100. Base; 110. Hinge mount;
[0029] 200, receiving frame; 210, receiving groove; 220, clearance groove;
[0030] 300. Slitting assembly; 310. Slitting bracket; 310a. Slitting body; 310b. Slitting connecting rod; 310c. Second hinge hole; 311. Bottom shell; 311a. Stepped hole; 311b. First hole; 311c. Second hole; 311d. Third hole; 312. Top cover; 3121. Threaded hole; 313. Slitting channel; 320. Slitting blade; 330. Slitting shaft;
[0031] 400. Magnetic components. Detailed Implementation
[0032] Before explaining any implementation of this application in detail, it should be understood that this application is not limited to its application to the structural details and component arrangements set forth in the following description or shown in the above drawings.
[0033] In this application, the terms "comprising," "including," "having," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0034] In this application, the term "and / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent three cases: A alone, A and B simultaneously, and B alone. Additionally, the character " / " in this application generally indicates that the preceding and following related objects have an "and / or" relationship.
[0035] In this application, the terms "connection," "combination," "coupling," and "installation" can refer to direct connection, combination, coupling, or installation, or indirect connection, combination, coupling, or installation. For example, a direct connection refers to two parts or components being connected together without the need for an intermediary, while an indirect connection refers to two parts or components each being connected to at least one intermediary, with the connection achieved through the intermediary. Furthermore, "connection" and "coupling" are not limited to physical or mechanical connections or couplings, but can also include electrical connections or couplings.
[0036] In this application, those skilled in the art will understand that relative terms (e.g., “about,” “approximately,” “basically,” etc.) used in conjunction with quantities or conditions are to include the values and have the meaning indicated by the context. For example, such relative terms include at least the degree of error associated with the measurement of a particular value, tolerances associated with the particular value due to manufacturing, assembly, use, etc. Such terms should also be considered as disclosing a range defined by the absolute values of the two endpoints. Relative terms may refer to a certain percentage (e.g., 1%, 5%, 10% or more) of the indicated value. Numerical values not using relative terms should also be disclosed as specific values with tolerances. Furthermore, “basically” when expressing relative angular relationships (e.g., substantially parallel, substantially perpendicular) may refer to a certain degree (e.g., 1 degree, 5 degrees, 10 degrees or more) added to or subtracted from the indicated angle.
[0037] In this application, those skilled in the art will understand that the function performed by a component can be performed by one component, multiple components, one part, or multiple parts. Similarly, the function performed by a part can also be performed by one part, one component, or a combination of multiple parts.
[0038] In this application, the directional terms "upper," "lower," "left," "right," "front," and "rear" are used to describe the orientation and positional relationships shown in the accompanying drawings and should not be construed as limiting the embodiments of this application. Furthermore, in the context, it should be understood that when an element is mentioned as being connected "upper" or "lower" to another element, it can be directly connected to the other element "upper" or "lower," or indirectly connected through an intermediate element. It should also be understood that directional terms such as upper side, lower side, left side, right side, front side, and rear side not only represent positive orientation but can also be understood as lateral orientation. For example, "below" can include directly below, lower left, lower right, lower front, and lower rear.
[0039] like Figures 1 to 4As shown, this embodiment provides an automatic food preparation machine to ensure the safety and service life of the slicing blade 320. The automatic food preparation machine can be used independently to slice ingredients during food preparation, facilitating safe transfer or storage; it can also be applied to cooking robots to assist the robot's cooking mechanism in slicing and cooking ingredients, improving user satisfaction; furthermore, it helps improve the safety of cooking robots during storage and transfer, enhancing the user experience. The automatic food preparation machine includes a base 100, a receiving frame 200, and a slicing component 300. The accommodating frame 200 is disposed on the base 100. The accommodating frame 200 has an accommodating groove 210 for accommodating food and an abutment groove 220 communicating with the accommodating groove 210. The abutment groove 220 extends through the accommodating frame 200 along the length of the base 100. The slitting assembly 300 includes a slitting bracket 310 and a slitting blade 320. The slitting blade 320 is disposed on the slitting bracket 310. The slitting bracket 310 can move between a slitting position and an abutment position. When the slitting bracket 310 is in the slitting position, the slitting blade 320 is partially located in the accommodating groove 210 and partially located in the abutment groove 220. One of the slitting bracket 310 and the base 100 is provided with a magnetic element 400, and the other can be attracted by the magnetic element 400. The length direction of the base 100 is the front-to-back direction.
[0040] The magnetic component 400 ensures that when the slitting component 300 is placed on the base 100, the slitting component 300 and the base 100 are magnetically attracted to each other, thus preventing relative shaking during transfer or storage, which helps to ensure the safety and service life of the slitting blade 320.
[0041] In some embodiments, a magnetic element 400 is mounted on the slitting bracket 310, and the base 100 is made of a magnetic material. For example, the base 100 is made of stainless steel. This arrangement allows the slitting bracket 310 to be magnetically attached to the base 100 when it is in contact with the base 100, i.e., when the slitting bracket 310 is in the slitting position. Furthermore, it reduces the precision requirements for the fit between the two, lowering the assembly standards between the magnetic element and the slitting bracket 310.
[0042] In other embodiments, both the base 100 and the slitting bracket 310 are provided with at least one magnetic element 400. The magnetic elements 400 on the base 100 and the magnetic elements 400 on the slitting bracket 310 correspond one-to-one and can attract each other. The above arrangement can improve the attraction force between the base 100 and the slitting bracket 310 and ensure the stability of the connection between the two.
[0043] For example, the base 100 is provided with a plurality of magnetic elements 400, which are divided into two groups. The two groups of magnetic elements 400 are arranged at intervals along the width direction of the base 100, and the plurality of magnetic elements 400 in each group are arranged at intervals along the length direction of the base 100. Specifically, a total of twelve magnetic elements 400 are provided, with six magnetic elements 400 on the base 100 and six magnetic elements 400 on the slitting bracket 310. The six magnetic elements 400 on the slitting bracket 310 and the six magnetic elements 400 on the base 100 are arranged in a one-to-one correspondence, which improves the force balance between the base 100 and the slitting bracket 310 and further reduces the possibility of relative swaying between the slitting bracket 310 and the base 100. The width direction of the base 100 is the left-right direction.
[0044] In some embodiments, the slitting bracket 310 is provided with a mounting groove, in which the magnetic component 400 is mounted, and the bottom surface of the magnetic component 400 is flush with or located above the bottom surface of the slitting bracket 310. This arrangement allows the slitting bracket 310 and the base 100 at the slitting position to fit together, reducing impact on the magnetic component 400 and ensuring the stability of the connection between the magnetic component 400 and the slitting bracket 310. Furthermore, the magnetic component 400 and the rubber sleeve are interference-fitted, and the rubber sleeve and the mounting groove are interference-fitted.
[0045] For example, the slitting bracket 310 includes a bottom shell 311, a top cover 312, and fastening screws. The bottom shell 311 has a stepped hole 311a, and the top cover 312 has a threaded hole 3121. The fastening screw passes through the stepped hole 311a and is screwed into the threaded hole 3121. The stepped hole 311a includes a first hole 311b, a second hole 311c, and a third hole 311d that are connected in sequence and have progressively increasing diameters. The outer diameter of the nut of the fastening screw is greater than the diameter of the first hole 311b and less than the diameter of the second hole 311c. The diameter of the magnetic element 400 is greater than the diameter of the second hole 311c and less than or equal to the diameter of the third hole 311d. The magnetic element 400 is sealed in the third hole 311d. This configuration allows the magnetic component 400 to both seal the opening of the stepped hole 311a, reducing the entry of impurities into the stepped hole 311a and preventing corrosion of the fastening screw; in addition, it also helps to hide the fastening screw and improve the aesthetics of the slitting bracket 310.
[0046] In some embodiments, the magnetic component 400 and the base shell 311 are bonded together. The magnetic component 400 has a cylindrical structure. In other embodiments, the magnetic component 400 may be interference-fitted into the third hole 311d of the stepped hole 311a. For ease of assembly and disassembly, a cylindrical rubber sleeve is fitted around the outer periphery of the magnetic component 400. The magnetic component 400 and the rubber sleeve are interference-fitted, and the rubber sleeve and the third hole 311d of the stepped hole 311a are also interference-fitted.
[0047] In some embodiments, the slitting assembly 300 further includes a slitting shaft 330, and the slitting bracket 310 and the base 100 are hinged together via the slitting shaft 330. This arrangement restricts the movement path of the slitting bracket 310, thereby ensuring the movement path of the slitting blade 320 and thus guaranteeing the food slitting effect.
[0048] The base 100 is provided with a hinge seat 110. The slitting bracket 310 includes a slitting body 310a and two slitting connecting rods 310b disposed on the slitting body 310a. The two slitting connecting rods 310b are arranged at intervals along the width direction of the base 100 and are respectively disposed on both sides of the hinge seat 110. The hinge seat 110 has a first hinge hole, and the slitting connecting rods 310b have second hinge holes 310c. The slitting shaft 330 passes through the first hinge hole, and its two ends extending from the first hinge hole pass through the two second hinge holes 310c respectively. The above arrangement limits the degree of freedom of the slitting bracket 310 along the width direction of the base 100, ensuring the positional stability of the slitting bracket 310 and the base 100 in the width direction of the base 100.
[0049] In some embodiments, the cutting support 310 includes a cutting channel 313, and a cutting blade 320 is disposed within the cutting channel 313. Along the width direction of the base 100, the width of the receiving frame 200 is smaller than the width of the cutting channel 313. When the cutting support 310 is in the cutting position, the receiving frame 200 is located within the cutting channel 313. This arrangement facilitates thorough cutting of the food within the receiving frame 200.
[0050] The slitting assembly 300 includes a plurality of slitting blades 320, which are spaced apart in the slitting channel 313 along the width direction of the base 100. This arrangement helps to improve slitting efficiency, allowing food to be slitted into several portions in a single operation. In some embodiments, there are twenty-one slitting blades 320.
[0051] In some embodiments, the automatic cutting and slicing machine further includes a driving component and a moving component. The moving component is slidably disposed on the base 100 and reciprocates along the length direction of the base 100. The driving component is disposed on the base 100, and its output end is connected to the moving component. A receiving frame 200 is disposed on the moving component. Specifically, the moving component has a moving groove, and the receiving frame 200 includes a receiving body and an insertion protrusion disposed at the bottom of the receiving body. The outer diameter of the insertion protrusion is smaller than the outer diameter of the receiving body, and the outer diameter of the moving groove is smaller than the outer diameter of the receiving body. The receiving body is placed on the moving component, and the insertion protrusion is inserted into the moving groove. The above arrangement enables the ingredients to reciprocate along the length direction of the base 100 during the cutting process, thereby improving the cutting efficiency. At the same time, the insertion and engagement method improves the assembly efficiency of the receiving frame 200 and the moving component.
[0052] For example, the cutting and slicing machine also includes a cam and a connecting rod. The driving element is a motor. The cam is located at the output end of the driving element, and one end of the connecting rod is hinged to the cam, while the other end is hinged to the moving element. This arrangement converts the circular motion of the driving element into the linear motion of the moving element. The cam includes a disk and a hinge shaft. The axis of the disk is collinear with the output shaft of the motor, and the hinge shaft is located outside the axis of the disk and parallel to it. One end of the connecting rod is hinged to the hinge shaft. In other embodiments, the moving element can be directly driven by a cylinder or an electric push rod.
[0053] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. An automatic cutting and slicing machine, characterized in that, include: Base (100); A receiving frame (200) is provided on the base (100). The receiving frame (200) has a receiving groove (210) for receiving food and a clearance groove (220) communicating with the receiving groove (210). Along the length direction of the base (100), the clearance groove (220) passes through the receiving frame (200). The slitting assembly (300) includes a slitting bracket (310) and a slitting blade (320). The slitting blade (320) is disposed on the slitting bracket (310). The slitting bracket (310) can move between a slitting position and a clearance position. When the slitting bracket (310) is in the slitting position, the slitting blade (320) is partially located in the receiving groove (210) and partially located in the clearance groove (220). One of the slitting bracket (310) and the base (100) is provided with a magnetic element (400), and the other can be attracted by the magnetic element (400).
2. The automatic cutting and assembling machine according to claim 1, characterized in that, The magnetic component (400) is mounted on the slitting bracket (310), and the base (100) is made of magnetic material; or, Both the base (100) and the slitting bracket (310) are provided with at least one magnetic element (400). The magnetic elements (400) on the base (100) and the magnetic elements (400) on the slitting bracket (310) correspond one-to-one and can attract each other.
3. The automatic cutting and assembling machine according to claim 2, characterized in that, The base (100) is provided with a plurality of magnetic components (400), which are divided into two groups. The two groups of magnetic components (400) are arranged at intervals along the width direction of the base (100), and the plurality of magnetic components (400) in each group are arranged at intervals along the length direction of the base (100).
4. The automatic cutting and assembling machine according to claim 1, characterized in that, The slitting bracket (310) is provided with a mounting groove, and the magnetic component (400) is installed in the mounting groove. The bottom surface of the magnetic component (400) is flush with the bottom surface of the slitting bracket (310) or located on the upper side of the bottom surface of the slitting bracket (310).
5. The automatic cutting and assembling machine according to claim 1, characterized in that, The slitting bracket (310) includes a bottom shell (311), a top cover (312), and fastening screws. The bottom shell (311) has a stepped hole (311a), and the top cover (312) has a threaded hole (3121). The fastening screw passes through the stepped hole (311a) and is screwed into the threaded hole (3121). The stepped hole (311a) includes a first hole (311b), a second hole (311c), and a third hole (311d) that are connected in sequence and have progressively increasing diameters. The outer diameter of the nut of the fastening screw is greater than the diameter of the first hole (311b) and less than the diameter of the second hole (311c). The diameter of the magnetic element (400) is greater than the diameter of the second hole (311c) and less than or equal to the diameter of the third hole (311d). The magnetic element (400) is sealed in the third hole (311d).
6. The automatic cutting and assembling machine according to claim 5, characterized in that, The magnetic component (400) is interference-fitted into the third hole (311d) of the stepped hole (311a).
7. The automatic cutting and assembling machine according to any one of claims 1-6, characterized in that, The slitting assembly (300) further includes a slitting shaft (330), and the slitting bracket (310) and the base (100) are hinged through the slitting shaft (330).
8. The automatic cutting and assembling machine according to claim 7, characterized in that, The base (100) is provided with a hinge seat (110). The slitting bracket (310) includes a slitting body (310a) and two slitting connecting rods (310b) disposed on the slitting body (310a). The two slitting connecting rods (310b) are arranged at intervals along the width direction of the base (100) and are respectively disposed on both sides of the hinge seat (110). The hinge seat (110) has a first hinge hole, and the slitting connecting rods (310b) have second hinge holes (310c). The slitting shaft (330) passes through the first hinge hole, and the two ends extending from the first hinge hole pass through the two second hinge holes (310c) respectively.
9. The automatic cutting and assembling machine according to any one of claims 1-6, characterized in that, The slitting bracket (310) includes a slitting channel (313), and the slitting blade (320) is disposed in the slitting channel (313). Along the width direction of the base (100), the width of the receiving frame (200) is smaller than the width of the slitting channel (313).
10. The automatic cutting and assembling machine according to claim 9, characterized in that, The slitting assembly (300) includes a plurality of slitting blades (320), which are spaced apart in the slitting channel (313) along the width direction of the base (100).