Food material cutting machine facilitating discharging
By providing a material guide part and a flip cover in the vegetable cutter, the problem of insufficient material discharge is solved, an efficient and hygienic material discharge method is achieved, and the user experience is improved.
Patent Information
- Application Number
- CN202422374858.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-09-27
AI Technical Summary
Existing vegetable cutters have inconvenient, insufficient and low efficiency in discharging vegetables, which affects the user experience.
A material guide is provided between the discharge port and the receiving box to guide the material out. Combined with the inclined design and the flip cover, it ensures that the material enters the receiving box smoothly, reducing splashing and waste.
It achieves full and efficient material discharge, improves user experience, avoids material splashing and waste, and frees users' hands.
Smart Images

Figure CN223395382U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of kitchen household appliances, and in particular to a food cutting machine which is convenient for discharging food. Background Art
[0002] A common vegetable cutter generally includes a machine base, a cutting drum, and a drum cutter rotatably installed in the cutting drum. When working, a motor drives the drum cutter to rotate so that the blade on the drum cutter cuts the vegetables.
[0003] For example, patent CN218947816U discloses a similar drum vegetable cutter, in which the cutting drum of this type of vegetable cutter is mounted laterally on the machine base and is substantially completely mounted on the machine base. An opening is provided on the side of the cutting drum away from the output end of the machine base, which is used for both mounting the drum cutter and discharging the material during the operation of the machine. Specifically, when cutting vegetables, the chopped vegetables are thrown out through the opening under the action of the rotating drum cutter, which easily splashes out of the receiving container, affecting the surrounding environment and causing insufficient discharge. Some chopped vegetables will enter the space between the drum cutter and the cutting drum, making it difficult to automatically discharge the material through the opening, requiring the user to perform secondary auxiliary discharge. Otherwise, this part of the material will be wasted, resulting in low discharge efficiency and increased user operation, which is not conducive to improving the user experience.
[0004] In addition, when the user receives the food, if the receiving box is placed on the platform, the receiving box is located diagonally below the opening, and part of the food discharged from the opening will splash onto the outside of the receiving box. If the user holds the receiving box and aims it at the cutting tube to receive the food, it will be very laborious, which will lead to a decline in user experience. Utility Model Content
[0005] In order to solve the technical problems of inconvenient, insufficient and low discharging efficiency of vegetable cutters in the prior art, the utility model provides a food cutting machine with convenient discharging. A material guide part is arranged between the discharge port and the material receiving box. The material discharging is guided by the material guide part, which improves the discharging efficiency and ensures sufficient discharging. No operation is required by the user, thus freeing the user's hands.
[0006] The utility model discloses a food cutting machine with convenient discharging, comprising a machine base and a processing chamber arranged on the machine base, a processing assembly being installed in the processing chamber, one end of the processing chamber protruding laterally from the machine base and a discharging port being provided at the bottom of the processing chamber, a material guiding portion and a material receiving box being provided below the discharging port, the material guiding portion being inclined downward in a direction away from the machine base, the material guiding portion being located between the discharging port and the material receiving box, and the material falling from the discharging port being guided into the material receiving box via the material guiding portion.
[0007] The food cutting machine of the present invention, which is convenient for discharging, also has the following additional technical features:
[0008] The machine base is provided with a concave cavity for accommodating the processing cavity. The material guide portion is provided on a side of the concave cavity away from the output end of the machine base. The material guide portion is a material guide slope extending downward from the bottom of the concave cavity.
[0009] The processing chamber is provided with a flippable cover plate at the material outlet, and the material guiding portion is formed when the cover plate flips downward to a first position.
[0010] A side of the machine base away from the output end of the machine base is provided with an avoidance slope. When the processing chamber is installed in place, the processing chamber is located above the avoidance slope. When the cover plate is flipped down to the first position, the upper end of the avoidance slope abuts against the cover plate.
[0011] A handle is provided on the lower surface of the cover plate. When the cover plate is flipped downward to the first position, the handle abuts against the inner side wall of the material receiving box.
[0012] The top end of the material receiving box is arranged lower than the material guiding inclined surface.
[0013] The lower end of the material guiding portion extends into the material receiving box.
[0014] One end portion of the cover plate is provided with a convex buckle, and the inner wall of the discharge port is provided with a groove. When the cover plate is flipped upward to the second position, the convex buckle is engaged in the groove.
[0015] The material receiving box is provided with a magnetic portion on one side facing the machine base, and the machine base is provided with an induction portion. The material receiving box is in contact with the machine base through the cooperation of the magnetic portion and the induction portion.
[0016] The bottom of the concave cavity is provided with an upward concave slide groove, and the bottom of the processing cavity is provided with a downward convex slider. The processing cavity is installed in the concave cavity by sliding along the slide groove through the slider. When the processing cavity is installed in place, a gap is formed between the discharge port and the top end of the material guide slope. The food cutting machine also includes a shielding member for blocking the gap.
[0017] Due to the adoption of the above technical solution, the utility model has the following beneficial effects:
[0018] 1. The food cutting machine of the present invention is convenient for discharging. One end of the processing chamber protrudes laterally from the machine base, which provides conditions and convenience for discharging materials from the bottom of the processing chamber. Compared with the method of discharging materials from the side opening of the processing chamber in the prior art, the present application adopts bottom discharging. When the material rotates with the processing component to face the discharge port, the material is easy to fall and discharge under the action of gravity, which can promote sufficient discharge and help improve discharge efficiency; by setting an inclined material guiding part, the process of the material flowing along the material guiding part to the material receiving box is smoother, which can avoid splashing of the material or the juice in the material and affecting the hygiene of the surrounding environment, and the discharging method is more hygienic; with the cooperation of the material guiding part and the material receiving box, the material can fall into the material receiving box smoothly without the help of the user, which can free the user's hands and improve the user experience.
[0019] 2. As a preferred embodiment, the machine base is provided with a concave cavity for accommodating the processing chamber. The material guide portion is provided on a side of the concave cavity away from the output end of the machine base. The material guide portion is a sloped surface extending downwardly from the bottom of the concave cavity. In this embodiment, the material guide portion is integrally formed with the machine base, which improves its structural strength and eliminates the need for a separate material guide portion, making it more convenient to use.
[0020] 3. As a preferred embodiment, the processing chamber is equipped with a reversible cover at the discharge port, which forms the material guide when it is flipped downward to a first position. In this embodiment, the cover is flipped to a certain angle to serve as the material guide, enriching the function of the cover. When material discharge is not required, the cover can be retracted, making the overall appearance of the machine more concise. Furthermore, the elimination of the material guide on the machine base facilitates the simplification of the machine base structure.
[0021] 4. As a preferred embodiment, a side of the machine base away from the output end is provided with an escape slope. When the processing chamber is in place, the processing chamber is located above the escape slope. When the cover plate is flipped downward to the first position, the upper end of the escape slope abuts against the cover plate. The provision of the escape slope provides space for the cover plate to flip downward, allowing it to serve as a material guide to ensure normal material discharge. At the same time, the escape slope also acts as a limiter, limiting the angle at which the cover plate can flip downward, thereby better cooperating with the material receiving box to ensure efficient material discharge.
[0022] 5. As a preferred embodiment, a handle is provided on the lower surface of the cover plate. When the cover plate is flipped downward to the first position, the handle abuts the inner sidewall of the receiving box. This handle facilitates user operation of the cover plate for flipping. Furthermore, the abutment of the handle against the inner sidewall of the receiving box limits the flipping of the cover plate. The pressure of the cover plate against the inner sidewall of the receiving box by the handle prevents the lower end of the cover plate from shaking during the material guiding process, thereby improving the stability of the material discharge.
[0023] 6. As a preferred embodiment, the top of the material receiving box is lower than the material guiding slope. Based on this, under the premise of ensuring that the material can fall smoothly into the material receiving box, it is not necessary to extend the material guiding slope into the material receiving box, which is conducive to reducing the extension length of the material guiding slope and promoting the miniaturization of the machine base.
[0024] 7. As a preferred embodiment, the lower end of the material guide portion extends into the material receiving box. By extending the lower end of the material guide portion into the material receiving box, it can be ensured that the material fully falls into the material receiving box, which can prevent some material from being missed and not falling into the material receiving box, thereby avoiding waste and achieving sufficient material discharge.
[0025] 8. As a preferred embodiment, one end of the cover plate is provided with a protruding buckle, and the inner wall of the discharge port is provided with a groove. When the cover plate is flipped upward to the second position, the protruding buckle engages with the groove. When discharge is not required, the cover plate can be flipped to the second position for storage, which helps to prevent dust in the processing chamber. The protruding buckle engages with the groove to ensure that the cover plate is securely stored and prevent the cover plate from accidentally flipping downward and affecting its sealing effect on the discharge port.
[0026] 9. As a preferred embodiment, the receiving box is provided with a magnetic portion on the side facing the machine base, and the machine base is provided with a sensing portion, through which the receiving box abuts against the machine base. The cooperation between the magnetic portion and the sensing portion enables the receiving box to be positioned. The contact of the receiving box with the machine base ensures that the material fully falls into the receiving box, preventing the user from accidentally moving the receiving box too far from the machine base and causing material to be missed, thereby ensuring the reliability of the material connection.
[0027] 10. As a preferred embodiment, the bottom of the concave cavity is provided with an upward concave chute, and the bottom of the processing cavity is provided with a downward convex slider, and the processing cavity is slidably installed in the concave cavity along the chute by the slider. When the processing cavity is installed in place, a gap is formed between the discharge port and the top of the material guide slope, and the food cutting machine also includes a shielding member for blocking the gap. The sliding installation of the processing cavity is achieved by cooperating with the slider and the chute, which saves labor in operation and is conducive to the alignment and installation of the processing cavity and the machine base. Under the premise of ensuring the accurate installation position of the processing cavity, the difficulty of installation can be reduced; the gap between the discharge port and the top of the material guide slope is blocked by the shielding member, which can prevent materials from flying into the gap and causing insufficient discharge, while also increasing the user's cleaning workload, and can promote the discharge of materials through the material guide slope, thereby improving the discharge effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:
[0029] Figure 1 This is a separate schematic diagram of the machine base and processing chamber under the first embodiment of this application.
[0030] Figure 2 This is a schematic diagram of the processing chamber installed on the machine base in the first embodiment of the present application.
[0031] Figure 3 for Figure 2 A schematic cross-sectional view of a food cutting machine.
[0032] Figure 4 for Figure 2 Schematic diagram of the structure of the processing chamber.
[0033] Figure 5 for Figure 4 A magnified schematic diagram of the structure at center A.
[0034] Reference numerals:
[0035] 10. Machine base; 101. Concave cavity; 102. Slide groove; 11. Processing cavity; 111. Slider; 12. Discharge port; 121. Groove; 13. Receiving box; 14. Processing assembly; 15. Material guide slope; 16. Cover plate; 161. Protruding buckle; 17. Avoidance slope; 18. Handle; 19. Magnetic attraction part; 20. Induction part; 21. Feeding port. DETAILED DESCRIPTION
[0036] In order to more clearly illustrate the overall concept of the present invention, a detailed description is given below in combination with the accompanying drawings by way of examples.
[0037] In order to more clearly understand the above-mentioned objects, features and advantages of the present application, the present application is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other in the absence of conflict.
[0038] It should be noted that many specific details are set forth in the following description to facilitate a full understanding of the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0039] In the present invention, unless otherwise clearly specified and limited, the first feature "above" or "below" the second feature may be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in an appropriate manner in any one or more embodiments or examples.
[0040] like Figures 1 to 5 As shown, the present application provides a food cutting machine that is convenient for discharging, including a machine base 10 and a processing chamber 11 provided on the machine base 10, a processing assembly 14 is installed in the processing chamber 11, one end of the processing chamber 11 protrudes laterally from the machine base 10 and a discharge port 12 is provided at the bottom of the processing chamber 11, a material guiding portion and a material receiving box 13 are provided below the discharge port 12, the material guiding portion is inclined downward in the direction away from the machine base 10, the material guiding portion is located between the discharge port 12 and the material receiving box 13, and the material falling from the discharge port 12 is guided into the material receiving box 13 through the material guiding portion.
[0041] The food cutting machine of the present application is convenient for discharging. One end of the processing chamber 11 protrudes laterally from the machine base 10, which provides conditions and convenience for discharging from the bottom of the processing chamber 11. Compared with the method of discharging materials from the side opening of the processing chamber 11 in the prior art, the present application adopts bottom discharging. When the material rotates with the processing component 14 to face the discharge port 12, the material is easy to fall and discharge under the action of gravity, which can promote sufficient discharge and help improve discharge efficiency; by setting an inclined material guiding part, the process of the material along the material guiding part to the material receiving box 13 is smoother, which can avoid splashing of the material or the juice in the material and affecting the hygiene of the surrounding environment, and the discharging method is more hygienic; with the cooperation of the material guiding part and the material receiving box 13, the material can fall into the material receiving box 13 smoothly without the help of the user, which can free the user's hands and improve the user experience.
[0042] The food cutting machine of the present application can realize multiple functions such as cutting vegetables and cutting meat by interchangeably installing different processing components 14 in the processing chamber 11. Specifically, a vegetable cutter component and a meat cleaver component are selectively installed in the processing chamber 11 to work. A feeding port 21 is provided above the processing chamber 11. The food to be processed enters the processing chamber 11 through the feeding port 21 and is then cut by the vegetable cutter or meat cleaver. The food is then discharged through the discharge port 12 at the bottom of the processing chamber 11. When different processing components 14 are installed in the processing chamber 11, their positions within the processing chamber 11 are different, so that different processing components 14 can be matched and connected with different pivot parts at the output end of the machine base 10. Compared with the type of processing chamber 11 equipped with a single processing component 14, the processing chamber 11 of the present application has a longer length along the axial direction. Under this premise, the processing chamber 11 is not completely seated on the machine base 10 to reduce the volume of the machine base 10. At the same time, the protrusion at one end of the processing chamber 11 provides conditions for the bottom discharge of the processing chamber 11.
[0043] Among them, the material guide part can be a structure on the machine base 10 or a structure on the processing chamber 11, and is set according to actual needs. The material receiving box 13 can be a component that comes with the food cutting machine, or it can be a household material container. When the user needs to cut vegetables or meat, the material receiving box 13 is placed in the designated position in advance. After the processed food is cut, it falls into the material receiving box 13 under the guidance of the material guide part through the discharge port 12. There is no need for the user to help receive the material, which can save user operations and improve user pleasure. The angle between the material guide part and the plane where the discharge port 12 is located is, for example, 45° to 60°, which can ensure smooth and efficient discharge. Preferably, the end of the material guide part away from the output end of the machine base 10 is located within the coverage range of the discharge port 12, so that at least a portion of the material receiving box 13 is directly below the discharge port 12. In this way, the material can fall into the material receiving box 13 more quickly under a shorter material guide distance, thereby improving the discharge efficiency.
[0044] As a preferred embodiment, the machine base 10 is provided with a concave cavity 101 for accommodating the processing cavity 11, and a material guide portion is provided on the side of the concave cavity 101 away from the output end of the machine base 10. The material guide portion is a material guide slope 15 extending downward from the bottom of the concave cavity 101. Figure 1 As shown, in this embodiment, the material guide portion is a material guide slope 15 integrally provided on the machine base 10, which can improve its structural strength and omit the installation of a separate material guide portion, making it more convenient to use.
[0045] In one embodiment, the top end of the material receiving box 13 is arranged below the material guiding slope 15 .
[0046] like Figure 1 As shown, under the premise of ensuring that the material can smoothly fall into the material receiving box 13, it is not necessary to extend the material guiding slope 15 into the material receiving box 13, which is beneficial to reducing the extension length of the material guiding slope 15 and promoting the miniaturization of the machine base 10.
[0047] It is understandable that, in other embodiments, the guide slope 15 is Figure 1 The length is longer, and the lower end of the material guiding slope 15 can extend into the material receiving box 13 to reduce the probability of the material falling outside the material receiving box 13. Alternatively, the material guiding slope 15 still adopts Figure 1 The material guide slope 15 has a length of , and a movable extension plate is provided at the end thereof. The extension plate has an expanded state and a stored state. In the expanded state, one end of the extension plate is docked with the material guide slope 15 and the other end can be extended into the material receiving box 13. In the stored state, the extension plate is flipped downward to fit the side wall of the machine base 10, making the appearance of the machine simple.
[0048] In one embodiment, a concave groove 102 is provided at the bottom of the concave cavity 101, and a convex slider 111 is provided at the bottom of the processing cavity 11. The processing cavity 11 is slidably installed in the concave cavity 101 along the groove 102 through the slider 111. When the processing cavity 11 is installed in place, a gap is formed between the discharge port 12 and the top of the material guide slope 15, and the food cutting machine also includes a shielding member for blocking the gap.
[0049] like Figure 1 As shown, the sliding installation of the processing chamber 11 is achieved by cooperating with the slider 111 and the chute 102, which saves effort and facilitates the alignment and installation of the processing chamber 11 with the machine base 10. While ensuring the accurate installation position of the processing chamber 11, the installation difficulty can be reduced. The gap between the discharge port 12 and the top of the guide slope 15 is blocked by a shielding member, which can prevent material from flying into the gap and causing insufficient discharge. It also reduces the user's cleaning workload and can promote the discharge of material through the guide slope 15, thereby improving the discharge effect. The shielding member can be, for example, a silicone sheet or silicone plug that is adapted to the shape of the gap. Using a silicone sheet to block the gap or a silicone plug to fill and block the gap prevents slag from accumulating without contaminating the material, thereby ensuring food safety.
[0050] As another preferred embodiment, the processing chamber 11 is provided with a reversible cover plate 16 at the discharge port 12, and the cover plate 16 forms a material guide portion when it is turned downward to the first position. Figures 2 to 5 As shown, in this embodiment, the cover plate 16 is flipped to a certain angle to serve as a material guide portion, which enriches the function of the cover plate 16. When there is no need to discharge materials, the cover plate 16 can be folded up to make the appearance of the entire machine more concise, and there is no need to set a material guide portion on the base 10, which is conducive to the simplification of the structure of the base 10.
[0051] As a preferred embodiment, a side of the machine base 10 away from the output end of the machine base 10 is provided with an avoidance slope 17. When the processing chamber 11 is in place, the processing chamber 11 is located above the avoidance slope 17. When the cover plate 16 is flipped downward to the first position, the upper end of the avoidance slope 17 abuts against the cover plate 16. The provision of the avoidance slope 17 provides a clearance space for the cover plate 16 to flip downward, so that the cover plate 16 can serve as a material guide to ensure normal material discharge. At the same time, the avoidance slope 17 also acts as a limiter, limiting the downward flip angle of the cover plate 16, so that the cover plate 16 and the material receiving box 13 can better cooperate to ensure the material discharge effect.
[0052] Specifically, in one example, Figure 3 As shown, the avoidance slope 17 is only used for the flipping avoidance of the cover plate 16. The specific parameters of the avoidance slope 17, such as length and tilt angle, only need to facilitate the cover plate 16 to reach and remain in the first position to ensure the material guiding effect of the cover plate 16.
[0053] In another example, in addition to being used for flipping and avoiding the cover plate 16, the avoidance slope 17 can also be used as a material guiding slope. For example, when the cover plate 16 is damaged and removed, the material can be guided through the avoidance slope 17, providing double material guiding protection to improve the reliability of normal material discharge.
[0054] Based on the above example, when the cover plate 16 is in the first position, the upper end of the avoidance slope 17 abuts against the cover plate 16, which can provide a certain support effect on the cover plate 16. Whether other areas of the avoidance slope 17 contact the cover plate 16 is not limited in this application. For example, Figure 3 In the embodiment of the present invention, the lower end of the cover plate 16 is supported by the inner wall of the receiving box 13, so that the lower area of the cover plate 16 is suspended relative to the avoidance slope 17, and the two do not contact each other. Alternatively, in other examples, the cover plate 16 can be completely attached to the avoidance slope 17, which can enhance the support effect of the avoidance slope 17 on the cover plate 16 and reduce the probability of deformation of the cover plate 16 caused by the impact of materials for a long time.
[0055] As a preferred embodiment, a handle 18 is provided on the lower surface of the cover plate 16 . When the cover plate 16 is flipped downward to the first position, the handle 18 abuts against the inner wall of the receiving box 13 .
[0056] like Figure 2 or Figure 3 As shown, the handle 18 can facilitate the user to operate the cover 16 to flip it. On the other hand, the handle 18 is in contact with the inner wall of the material receiving box 13 to achieve the flipping limit of the cover 16. The cover 16 is pressed against the inner wall of the material receiving box 13 by the handle 18, which can prevent the lower end of the cover 16 from shaking during the material guiding process, thereby improving the discharge stability.
[0057] It is understandable that in an embodiment without the handle 18 , when the cover 16 is flipped downward to the first position, the lower end of the cover 16 can directly abut against the top of the inner wall of the receiving box 13 , thereby also limiting the cover 16 .
[0058] As a preferred embodiment, one end of the cover plate 16 is provided with a convex buckle 161, and the inner wall of the discharge port 12 is provided with a groove 121. When the cover plate 16 is flipped upward to the second position, the convex buckle 161 is engaged in the groove 121. Figure 4 and Figure 5 As shown, when there is no need to discharge the material, the cover 16 can be flipped to the second position for storage, which helps to prevent dust from the processing chamber 11. The convex buckle 161 is snapped into the groove 121 to ensure that the cover 16 is firmly stored, and the cover 16 can be prevented from accidentally flipping downward to affect the sealing effect of the cover 16 on the discharge port 12.
[0059] Based on the above two different embodiments of the material guide portion, preferably, the lower end of the material guide portion extends into the material receiving box 13. By extending the lower end of the material guide portion into the material receiving box 13, it can be ensured that the material fully falls into the material receiving box 13, and some materials are prevented from being missed and not falling into the material receiving box 13, thereby avoiding waste and achieving sufficient discharge.
[0060] As a preferred embodiment, a magnetic portion 19 is provided on the side of the receiving box 13 facing the machine base 10 , and the machine base 10 is provided with a sensing portion 20 . The receiving box 13 abuts against the machine base 10 through the cooperation between the magnetic portion 19 and the sensing portion 20 .
[0061] like Figure 3 As shown, the magnetic attraction portion 19 cooperates with the induction portion 20 to achieve the positioning of the receiving box 13. The receiving box 13 abuts against the machine base 10 to ensure that the material fully falls into the receiving box 13, which can prevent the user from accidentally moving the receiving box 13, causing the receiving box 13 to be far away from the machine base 10 and causing the material to be missed, thereby ensuring the reliability of the material receiving. Specifically, the magnetic attraction portion 19 and the induction portion 20 are both magnets, for example. By setting the opposite magnetic poles facing each other, when the receiving box 13 is close to the machine base 10, the receiving box 13 is attracted and can be stably maintained on the side of the machine base 10, which can improve the cooperation effect between the receiving box 13 and the machine base 10, make the discharge path reliable, and prevent the material from being left outside the receiving box 13, thereby achieving sufficient discharge and avoiding the loss and waste of materials.
[0062] The technical solutions protected by this utility model are not limited to the above-described embodiments. It should be noted that the combination of the technical solutions of any one embodiment with the technical solutions of one or more other embodiments falls within the scope of protection of this utility model. Although the above description of this utility model has been provided in detail using general instructions and specific embodiments, it is obvious to those skilled in the art that modifications or improvements can be made based on this utility model. Therefore, such modifications or improvements made without departing from the spirit of this utility model are within the scope of protection claimed by this utility model.
Claims
1. A food cutting machine for convenient discharging, comprising a machine base and a processing chamber provided on the machine base, characterized in that: A processing assembly is installed in the processing chamber, one end of the processing chamber protrudes laterally from the machine base and a discharge port is provided at the bottom of the processing chamber, a material guide portion and a material receiving box are provided below the discharge port, the material guide portion is inclined downward in the direction away from the machine base, the material guide portion is located between the discharge port and the material receiving box, and the material falling from the discharge port is guided into the material receiving box through the material guide portion.
2. A food cutting machine with convenient discharging according to claim 1, characterized in that: The machine base is provided with a concave cavity for accommodating the processing cavity. The material guide portion is provided on a side of the concave cavity away from the output end of the machine base. The material guide portion is a material guide slope extending downward from the bottom of the concave cavity.
3. The food cutting machine with convenient discharging according to claim 1, characterized in that: The processing chamber is provided with a flippable cover plate at the material outlet, and the material guiding portion is formed when the cover plate flips downward to a first position.
4. The food cutting machine with convenient discharging according to claim 3, characterized in that: A side of the machine base away from the output end of the machine base is provided with an avoidance slope. When the processing chamber is installed in place, the processing chamber is located above the avoidance slope. When the cover plate is flipped down to the first position, the upper end of the avoidance slope abuts against the cover plate.
5. The food cutting machine with convenient discharging according to claim 3, characterized in that: A handle is provided on the lower surface of the cover plate. When the cover plate is flipped downward to the first position, the handle abuts against the inner side wall of the material receiving box.
6. The food cutting machine with convenient discharging according to claim 2, characterized in that: The top end of the material receiving box is arranged lower than the material guiding inclined surface.
7. The food cutting machine with convenient discharging according to claim 1, characterized in that: The lower end of the material guiding portion extends into the material receiving box.
8. The food cutting machine with convenient discharging according to claim 3, characterized in that: One end portion of the cover plate is provided with a convex buckle, and the inner wall of the discharge port is provided with a groove. When the cover plate is flipped upward to the second position, the convex buckle is engaged in the groove.
9. The food cutting machine with convenient discharging according to claim 1, characterized in that: The material receiving box is provided with a magnetic portion on one side facing the machine base, and the machine base is provided with an induction portion. The material receiving box is in contact with the machine base through the cooperation of the magnetic portion and the induction portion.
10. The food cutting machine with convenient discharging according to claim 2, characterized in that: The bottom of the concave cavity is provided with an upward concave slide groove, and the bottom of the processing cavity is provided with a downward convex slider. The processing cavity is installed in the concave cavity by sliding along the slide groove through the slider. When the processing cavity is installed in place, a gap is formed between the discharge port and the top end of the material guide slope. The food cutting machine also includes a shielding member for blocking the gap.