Automated compounding machine

By designing the base, drive components, and ballast components of the automatic food cutting machine, the problems of incomplete food cutting and contamination were solved, achieving stable ballasting and cutting of food, thus improving user experience and hygiene.

CN224522965UActive Publication Date: 2026-07-21CHENGDU BOSS INNOVATION TECH CO LTD
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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

Technical Problem

In existing food preparation equipment, some ingredients cannot be cut, and the ballast components can easily contaminate the ingredients, leading to hygiene problems.

Method used

An automatic cutting and slicing machine is designed, comprising a base, a drive assembly, and a ballast assembly. The ballast support can rotate between a ballast position and a clearance position to ensure accurate ballasting and cutting of ingredients. The ballast component does not need to be separated from the base to reduce the risk of contamination. The drive assembly is located between the hinge and the ballast component to increase the length of the ballast support, making it easier to place ingredients.

Benefits of technology

Ensuring ingredients are accurately cut reduces the risk of contamination, improves user experience and hygiene, simplifies operating procedures, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to kitchen appliance technical field, specifically disclose a kind of automatic cutting and dispensing machine, in the automatic cutting and dispensing machine, base has the vegetable receiving groove and the cutting passway being communicated in vegetable receiving groove upper side, drive assembly includes driving part and cutting knife, driving part is located in base, cutting knife is located in cutting passway, and the output end of driving part is connected;Ballast component includes ballast support and ballast, and the both ends of ballast support are respectively hinged part and ballast part for hand-held, ballast is located in ballast support, and between hinged part and ballast part, hinged part is hinged in base, along the length direction of base, driving part is located between hinged part and ballast;Ballast support can rotate between ballast position and avoiding position, ballast gradually approaches cutting knife in the process that ballast support rotates from avoiding position to ballast position.The above-mentioned setting ensures that food material can be accurately ballasted, so as to be cut by cutting knife;And it helps to reduce the probability of ballast being contaminated.
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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 food preparation process is even more varied.

[0003] The cutting and preparation equipment in the related technology has a base and a cutting blade. The base has a cutting channel, and below the cutting channel is a collection trough. Inside the cutting channel is a reciprocating cutting blade. During the movement of the cutting blade, the food above is cut, and the cut food falls into the collection trough below. To facilitate the smooth cutting of food, a ballast can be used to press the food on the cutting blade, so that the food moves continuously downward. In the related technology, the ballast and the base are set separately, resulting in an unstable ballast path. During the ballast process, some food cannot be cut. In addition, when placing food, the ballast needs to be removed from the base and placed on the countertop, which is easily contaminated. When pressing food again, it will cause contamination to the food.

[0004] Therefore, there is an urgent need to research an automatic cutting and processing machine to solve the above problems. Utility Model Content

[0005] The purpose of this invention is to provide an automatic cutting and preparation machine to solve the problems in the prior art where some ingredients cannot be cut and the ballast components are prone to contamination, thus causing the ingredients to become contaminated.

[0006] To achieve the above objectives, the present invention adopts the following technical solution:

[0007] Automatic cutting and processing machine, including:

[0008] The base has a vegetable receiving trough and a cutting channel communicating with the upper side of the vegetable receiving trough.

[0009] A driving assembly, comprising a driving component and a slitting blade, wherein the driving component is disposed on the base and the slitting blade is located within the slitting channel and connected to the output end of the driving component;

[0010] A ballast assembly includes a ballast bracket and a ballast member. The two ends of the ballast bracket are a hinge portion and a handheld ballast portion, respectively. The ballast member is disposed on the ballast bracket and located between the hinge portion and the ballast portion. The hinge portion is hinged to the base. Along the length direction of the base, a drive member is located between the hinge portion and the ballast member. The ballast bracket can rotate between a ballast position and a clearance position. During the process of the ballast bracket rotating from the clearance position to the ballast position, the ballast member gradually approaches the slitting blade.

[0011] As an optional technical solution for an automatic cutting and assembling machine, the ballast support has an avoidance notch, and when the ballast support is located at the ballast position, the drive component is located within the avoidance notch.

[0012] As an optional technical solution for an automatic cutting and assembling machine, the ballast support includes a ballast body and two ballast arms disposed on the ballast body. The two ballast arms are arranged at intervals along the width direction of the base. The end of the ballast arm away from the ballast body forms the hinge portion. The clearance gap is formed between the two ballast arms and the ballast body. Along the width direction of the base, the drive member is located between the two ballast arms.

[0013] As an optional technical solution for an automatic cutting and assembling machine, the ballast support further includes a ballast plate, which is located at the end of the ballast body away from the ballast arm. The upper side of the ballast plate forms the ballast portion, and the thickness of the ballast plate is less than the thickness of the ballast body.

[0014] As an optional technical solution for an automatic cutting and assembling machine, the upper side of the ballast plate is flush with the upper side of the ballast body; and / or,

[0015] The projection of the ballast plate onto the horizontal plane is located outside the projection outline of the base onto the horizontal plane.

[0016] As an optional technical solution for an automatic cutting and assembling machine, the ballast body has a ballast channel, and the ballast component includes a ballast body and connecting parts located on both sides of the ballast body. The ballast body is located in the ballast channel, and the two connecting parts are located on both sides of the ballast channel along the width direction of the base, and both are connected to the ballast body.

[0017] As an optional technical solution for an automatic cutting and slicing machine, the automatic cutting and slicing machine further includes a receiving frame, which is disposed on the base; the receiving frame has a receiving groove, the bottom of which is provided with a receiving channel communicating with the cutting channel, and each side of the receiving groove along the width direction of the base is provided with a clearance groove. When the ballast bracket is located in the ballast position, the ballast component is located in the receiving groove, and the two connecting parts are located in the two clearance grooves in a one-to-one correspondence.

[0018] As an optional technical solution for an automatic cutting and assembling machine, the clearance groove is arc-shaped and extends around the rotation axis of the ballast support.

[0019] As an optional technical solution for an automatic cutting and slicing machine, the drive component includes a movable component that is slidably disposed on the base along the length direction of the base and connected to the output end of the drive component; the slitting blade is detachably connected to the movable component.

[0020] As an optional technical solution for an automatic cutting and slicing machine, the driving component is a motor, and the driving assembly also includes a cam and a connecting rod. The cam is located on the output shaft of the motor, and one end of the connecting rod is hinged to the cam, while the other end is hinged to the moving component.

[0021] This utility model has at least the following beneficial effects:

[0022] This utility model provides an automatic cutting and slicing machine, which includes a base, a drive assembly, and a ballast assembly. The base has a receiving trough and a slicing channel connected to the upper side of the receiving trough. The drive assembly includes a drive component and a slicing blade. The drive component is located on the base, and the slicing blade is located within the slicing channel and connected to the output end of the drive component. The ballast assembly includes a ballast bracket and a ballast member. The two ends of the ballast bracket are a hinge portion and a hand-held ballast portion, respectively. The ballast member is located on the ballast bracket and between the hinge portion and the ballast portion. The hinge portion is hinged to the base. Along the length of the base, the drive component is located between the hinge portion and the ballast member. The ballast bracket can rotate between a ballast position and a clearance position. During the rotation of the ballast bracket from the clearance position to the ballast position, the ballast member gradually approaches the slicing blade. The aforementioned ballast bracket is hinged to the base, ensuring a clear and stable trajectory for the ballast component during rotation. This guarantees accurate ballast loading for the food to be cut by the slitting blade. Furthermore, when placing food, simply rotate the ballast bracket to a clearance position; it does not need to be separated from the base, reducing the chance of contamination and ensuring food hygiene. Finally, the drive mechanism, located between the hinge and the ballast component, effectively increases the length of the ballast bracket. Even with a smaller opening angle, this allows for a larger distance between the ballast component and the slitting blade, facilitating the placement of food onto the blade and improving the user experience. Attached Figure Description

[0023] 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.

[0024] Figure 1 This is a first-view structural schematic diagram of the automatic cutting and assembling machine in an embodiment of this utility model;

[0025] 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;

[0026] Figure 3 This is a schematic diagram of the structure of the ballast assembly in an embodiment of this utility model;

[0027] Figure 4 This is a cross-sectional structural diagram of the automatic cutting and processing machine in an embodiment of this utility model;

[0028] Figure 5 This is a schematic diagram of the structure of the moving part in an embodiment of this utility model;

[0029] Figure 6 This is an exploded structural diagram of the automatic cutting and assembling machine in an embodiment of this utility model.

[0030] In the picture:

[0031] 100. Base; 110. Vegetable trough;

[0032] 200. Drive assembly; 210. Drive component; 220. Slitting blade; 230. Moving component; 231. Moving channel; 232. Support platform; 240. Cam; 250. Linkage rod;

[0033] 300. Ballast assembly; 310. Ballast support; 311. Clearance notch; 312. Ballast body; 3121. Ballast channel; 313. Ballast arm; 314. Hinge; 315. Ballast plate; 3151. Ballast section; 316. Arc surface; 320. Ballast component; 321. Ballast body; 322. Connecting part; 330. Hinge pin;

[0034] 400, receiving frame; 410, receiving groove; 420, clearance groove;

[0035] 500. Collect vegetable boxes. Detailed Implementation

[0036] 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.

[0037] 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.

[0038] 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.

[0039] 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.

[0040] 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.

[0041] 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.

[0042] 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.

[0043] like Figures 1 to 6 As shown, this embodiment provides an automatic food preparation machine to ensure the hygiene of food ingredients. The automatic food preparation machine can be used independently to cut food ingredients during the food preparation stage, and can also be applied to cooking robots to cooperate with the cooking mechanism of the cooking robot to complete the cutting and cooking of food ingredients, improving the hygiene and efficiency of cooking, and helping to complete the cooking of various delicacies, thereby enhancing the user's happiness index. The automatic food preparation machine includes a base 100, a drive assembly 200, and a load assembly 300. The base 100 has a receiving trough 110 and a cutting channel connected to the upper side of the receiving trough 110. The drive assembly 200 includes a drive member 210 and a cutting blade 220. The drive member 210 is disposed on the base 100, and the cutting blade 220 is located in the cutting channel and connected to the output end of the drive member 210. The load assembly 300 includes a load support 310 and a load member 320. The two ends of the load support 310 are a hinge portion 314 and a hand-held load member 320, respectively. 151. Ballast member 320 is disposed on ballast support 310 and located between hinge portion 314 and ballast portion 3151. Hinge portion 314 is hinged to base 100. Along the length direction of base 100, drive member 210 is located between hinge portion 314 and ballast member 320. Ballast support 310 can rotate between ballast position and avoidance position. During the process of ballast support 310 rotating from avoidance position to ballast position, ballast member 320 gradually approaches slitting blade 220. Conversely, during the process of ballast support 310 rotating from ballast position to avoidance position, ballast member 320 gradually moves away from slitting blade 220.

[0044] The aforementioned ballast bracket 310 is hinged to the base 100, ensuring a clear and stable trajectory for the ballast component 320 during rotation. This ensures that the food is accurately ballasted and then cut by the slitting blade 220. Furthermore, when placing food, the ballast bracket 310 only needs to be rotated to a clearance position without separating from the base 100, reducing the chance of contamination and ensuring the hygiene of the food. Finally, the drive component 210 is positioned between the hinge 314 and the ballast component 320, effectively increasing the length of the ballast bracket 310. With a smaller rotation angle, this allows for a larger distance between the ballast component 320 and the slitting blade 220, facilitating the placement of food onto the slitting blade 220 and improving the user experience.

[0045] In some embodiments, the ballast support 310 has a clearance notch 311. When the ballast support 310 is in the ballast position, the drive member 210 is located within the clearance notch 311. Specifically, when the ballast support 310 is in the clearance position, the drive member 210 is located either within or outside the clearance notch 311. This configuration allows the ballast support 310 to have an overall plate-like structure, making its structure simpler; simultaneously, it reduces the material used, lowering production costs. In other embodiments, an upwardly recessed clearance groove can be provided on the ballast support 310 to allow the drive member 210 to pass; in other words, the entire ballast support 310 is Z-shaped. When the ballast support 310 is in the ballast position, the drive member 210 is located within the groove.

[0046] The ballast support 310 includes a ballast body 312 and two ballast arms 313 disposed on the ballast body 312. The two ballast arms 313 are spaced apart along the width direction of the base 100. The end of the ballast arm 313 away from the ballast body 312 forms a hinge portion 314. A clearance notch 311 is formed between the two ballast arms 313 and the ballast body 312. Along the width direction of the base 100, the drive member 210 is located between the two ballast arms 313. The above configuration further simplifies the structure of the ballast support 310; the clearance notch 311 has a U-shaped structure with an opening at the rear end, which facilitates the installation of the ballast body 312; at the same time, the hinge portion 314 is located at the end of the ballast arm 313, which helps to ensure the rotational stability of the entire ballast support 310.

[0047] The base 100 is provided with an installation protrusion. Along the width direction of the base 100, the installation protrusion passes through a first hinge hole. The hinge part 314 is a second hinge hole. The hinge pin 330 passes through the first hinge hole, and its two ends pass through the two second hinge holes respectively.

[0048] The ballast support 310 also includes a ballast plate 315, which is located at the end of the ballast body 312 away from the ballast arm 313. The upper side of the ballast plate 315 forms a ballast portion 3151, and the thickness of the ballast plate 315 is less than the thickness of the ballast body 312. The ballast plate 315 facilitates pressing actions and improves operational comfort. The thickness of the ballast plate 315 is less than the thickness of the ballast body 312, making it easier to determine the applied force based on the deformation at that location, thus reducing the probability of breakage at the installation point of the slitting blade 220 due to excessive force.

[0049] The upper side of the ballast plate 315 is flush with the upper side of the ballast body 312. This arrangement provides clearance on the lower side of the ballast plate 315, allowing for finger placement when holding the hand. During use, it also facilitates lifting the ballast support 310 by flicking with one or two fingers. The flicking motion involves the fingers contacting the lower side wall of the ballast plate 315 and the corner of the ballast body 312 near the end of the ballast plate 315, allowing for the application of an upward flicking force—that is, the flicking force is upward and inclined towards the hinge pin 330. Furthermore, it enhances the aesthetics of the ballast support 310. Additionally, the lower side wall of the ballast plate 315 and the end face of the ballast body 312 are smoothly connected by an arc surface 316. This arrangement improves user comfort.

[0050] The projection of the ballast plate 315 onto the horizontal plane is located outside the projection outline of the base 100 onto the horizontal plane. This arrangement increases the length of the ballast support 310, increases the length of the lever arm, reduces the force applied when ballasting food, and improves the user experience. In addition, it also reduces the probability of fingers getting caught between the ballast support 310 and the base 100 when pressing the ballast support 310 down to the ballast position with the ballast plate 315.

[0051] The ballast body 312 has a ballast channel 3121. The ballast component 320 includes a ballast body 321 and connecting portions 322 located on both sides of the ballast body 321. The ballast body 321 is located within the ballast channel 3121. The two connecting portions 322 are located on both sides of the ballast channel 3121 along the width direction of the base 100, and both are connected to the ballast body 321. This arrangement helps to reduce the overall height of the ballast assembly 300, and at the same time, helps to reduce the material used in the ballast support 310, thereby reducing costs.

[0052] To reduce the risk of food falling off the base 100 during the cutting process, in some embodiments, the automatic cutting machine further includes a receiving frame 400 disposed on the base 100. The receiving frame 400 has a receiving groove 410, the bottom of which has a receiving channel communicating with the cutting channel. Each side of the receiving groove 410 along the width direction of the base 100 has a relief groove 420. When the ballast support 310 is in the ballast position, the ballast member 320 is located in the receiving groove 410, and the two connecting parts 322 are correspondingly located in the two relief grooves 420. This arrangement can accommodate the food and reduce the probability of the food moving relative to the base 100 and falling off the base 100 during the cutting process by the cutting blade 220. The relief grooves 420 allow the ballast member 320 to penetrate deep into the bottom of the receiving groove 410 while maintaining a relatively small height.

[0053] In some embodiments, the clearance groove 420 is arc-shaped and extends about the rotation axis of the ballast support 310. This arrangement helps to minimize the area of ​​the clearance groove 420, thereby reducing food leakage while increasing the strength of the receiving frame 400.

[0054] The drive assembly 200 includes a movable member 230, which is slidably disposed on the base 100 along its length and connected to the output end of the drive assembly 210; a slitting blade 220 is detachably connected to the movable member 230. This arrangement allows the slitting blade 220 to reciprocate along the length of the base 100, facilitating continuous cutting of the food. The slitting blade 220 can be the blade head of a shredder or a slicer in the prior art.

[0055] The movable component 230 has a moving channel 231, and at least two support platforms 232 are provided on the side walls of the moving channel 231. The slitting blade 220 is placed on the support platforms 232 and abuts against the side walls of the moving channel 231 on all four sides. In some embodiments, the cross-sectional outline of the moving channel 231 is rectangular, and each of the four side walls of the moving channel 231 is provided with a support platform 232, all of which are used to support the slitting blade 220. The above arrangement improves the connection strength between the slitting blade 220 and the movable component 230. When the movable component 230 moves forward, the rear side wall of the moving channel 231 abuts against the rear side wall of the slitting blade 220, thereby driving the slitting blade 220 to move forward. When the movable component 230 moves backward, the front side wall of the moving channel 231 abuts against the front side wall of the slitting blade 220, thereby driving the slitting blade 220 to move backward.

[0056] In some embodiments, the drive member 210 is a motor, and the drive assembly 200 further includes a cam 240 and a connecting rod 250. The motor is mounted on the base 100, the cam 240 is mounted on the output shaft of the motor, one end of the connecting rod 250 is hinged to the cam 240, and the other end is hinged to the moving member 230. The transmission method of the cam 240 and the connecting rod 250 can convert the circular motion of the motor into the linear motion of the moving member 230, and the motion frequency is easier to control. The cam 240 includes a disk and a hinge shaft. The axis of the disk is collinear with the output shaft of the motor, the hinge shaft is located outside the axis of the disk and parallel to the axis of the disk, and one end of the connecting rod 250 is hinged to the hinge shaft.

[0057] To improve ease of use, in some embodiments, the automatic cutting and slicing machine also includes an elastic element that applies an elastic force to the ballast support 310, giving it a tendency to rotate to a clearance position. When no external force is applied, the elastic force overcomes the weight of the ballast assembly 300 and keeps the ballast support 310 in the clearance position. This design eliminates concerns about the ballast support 310 falling during the placement of ingredients into the receiving slot 410, thus improving user safety. In this embodiment, the elastic element is a torsion spring, which is sleeved on the hinge pin 330, with one end abutting against the ballast support 310 and the other end abutting against the base 100.

[0058] In some embodiments, to facilitate the collection of the chopped ingredients, the automatic food preparation machine further includes a collection box 500, which can be placed in or removed from the collection trough 110. When the collection box 500 is located in the collection trough 110, the opening of the collection box 500 communicates with the chopping channel and is located below the chopping channel.

[0059] The vegetable collection box 500 has a flared structure; in other words, it is a square box. Along the length of the base 100, the two opposite side walls of the vegetable collection box 500 are the front side wall and the rear side wall, with the distance between the front and rear side walls gradually increasing from bottom to top. The bottom wall and the front side wall of the vegetable collection box 500 have rounded corners. These features improve the ease of cleaning.

[0060] In some embodiments, the hinge pin 330 is located at the left end of the base 100, and the ballast plate 315 is located at the right end of the base 100, facilitating the user to press the ballast plate 315 with their right hand. Along the width direction of the base 100, the length of the vegetable collection box 500 is the same as the width of the base 100, and the vegetable collection slot 110 extends through the base 100 along its width direction, having two slot inlets. The vegetable collection box 500 can enter the vegetable collection slot 110 through the two slot inlets. This arrangement ensures that after rotating the base 100 180° around the vertical direction, the hinge pin 330 is located on the right side of the base 100, and the ballast plate 315 is located at the left end of the base 100. At this time, the user can press the ballast plate 315 with their left hand, thereby improving ease of use.

[0061] 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: A base (100) having a vegetable receiving trough (110) and a cutting channel communicating with the upper side of the vegetable receiving trough (110); A drive assembly (200) includes a drive member (210) and a slitting blade (220). The drive member (210) is disposed on the base (100), and the slitting blade (220) is located in the slitting channel and connected to the output end of the drive member (210). Ballast assembly (300) includes ballast bracket (310) and ballast member (320). The two ends of the ballast bracket (310) are a hinge portion (314) and a ballast portion (3151) for hand-held use, respectively. The ballast member (320) is disposed on the ballast bracket (310) and located between the hinge portion (314) and the ballast portion (3151). The hinge portion (314) is hinged to the base (100). Along the length direction of the base (100), the drive member (210) is located between the hinge portion (314) and the ballast member (320). The ballast bracket (310) can rotate between a ballast position and a clearance position. During the process of the ballast bracket (310) rotating from the clearance position to the ballast position, the ballast member (320) gradually approaches the slitting blade (220).

2. The automatic cutting and assembling machine according to claim 1, characterized in that, The ballast support (310) has a clearance notch (311), and when the ballast support (310) is located in the ballast position, the drive member (210) is located within the clearance notch (311).

3. The automatic cutting and assembling machine according to claim 2, characterized in that, The ballast support (310) includes a ballast body (312) and two ballast arms (313) disposed on the ballast body (312). The two ballast arms (313) are arranged at intervals along the width direction of the base (100). The end of the ballast arm (313) away from the ballast body (312) forms the hinge portion (314). The clearance notch (311) is formed between the two ballast arms (313) and the ballast body (312). Along the width direction of the base (100), the drive member (210) is located between the two ballast arms (313).

4. The automatic cutting and assembling machine according to claim 3, characterized in that, The ballast support (310) also includes a ballast plate (315), which is located at the end of the ballast body (312) away from the ballast arm (313). The upper side of the ballast plate (315) forms the ballast portion (3151), and the thickness of the ballast plate (315) is less than the thickness of the ballast body (312).

5. The automatic cutting and assembling machine according to claim 4, characterized in that, The upper side of the ballast plate (315) is flush with the upper side of the ballast body (312); and / or, The projection of the ballast plate (315) on the horizontal plane is located outside the projection outline of the base (100) on the horizontal plane.

6. The automatic cutting and assembling machine according to claim 3, characterized in that, The ballast body (312) has a ballast channel (3121), and the ballast component (320) includes a ballast body (321) and connecting portions (322) located on both sides of the ballast body (321). The ballast body (321) is located inside the ballast channel (3121), and the two connecting portions (322) are located on both sides of the ballast channel (3121) along the width direction of the base (100), and both are connected to the ballast body (321).

7. The automatic cutting and assembling machine according to claim 6, characterized in that, The automatic cutting and slicing machine also includes a receiving frame (400), which is disposed on the base (100); the receiving frame (400) has a receiving groove (410), the bottom of the receiving groove (410) is provided with a receiving channel communicating with the cutting channel, and the receiving groove (410) is provided with a relief groove (420) on each side along the width direction of the base (100). When the ballast bracket (310) is located in the ballast position, the ballast member (320) is located in the receiving groove (410), and the two connecting parts (322) are located in the two relief grooves (420) respectively.

8. The automatic cutting and assembling machine according to claim 7, characterized in that, The clearance groove (420) is arc-shaped and extends around the rotation axis of the ballast support (310).

9. The automatic cutting and assembling machine according to any one of claims 1-8, characterized in that, The drive assembly (200) includes a movable member (230), which is slidably disposed on the base (100) along the length direction of the base (100) and connected to the output end of the drive assembly (210); the slitting blade (220) is detachably connected to the movable member (230).

10. The automatic cutting and assembling machine according to claim 9, characterized in that, The driving component (210) is a motor, and the driving assembly (200) further includes a cam (240) and a connecting rod (250). The cam (240) is located on the output shaft of the motor, and one end of the connecting rod (250) is hinged to the cam (240), and the other end is hinged to the moving component (230).