A chopper for deep processing of vegetables

By introducing the design of sliding plates, pushing members, deflecting members and scraping members into the vegetable cutter, the problems of obstruction and over-cutting of vegetables by the vertical cutter are solved, and the smooth discharge of vegetables and the improvement of cutting quality are achieved.

CN120571675BActive Publication Date: 2025-09-30SHAANXI SHIGU RUNFENG AGRI TECH DEV CO LTD
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Patent Information

Application Number
CN202511076914.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2025-09-30
Estimated Expiration
2045-08-01

AI Technical Summary

Technical Problem

In existing vegetable cutters, the vertical cutting blades easily block the vegetables when the device discharges the vegetables, causing some vegetables to stick and be over-cut, affecting the cutting quality and efficiency.

Method used

A vegetable shredder for deep processing is designed. It adopts a sliding plate and a pushing member in conjunction with a deflecting member and a scraping member. The vertical cutting knife is quickly retracted after cutting, the horizontal cutting knife is deflected and turned out after cutting is completed, and the scraping member removes residual vegetables in time to avoid multiple cutting and retention.

Benefits of technology

It effectively avoids the obstruction and multiple cutting of vegetables by the vertical cutting knife, ensures the smooth discharge of vegetables, improves the cutting quality and efficiency, and prevents residue from affecting the subsequent cutting effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of shredders, and specifically to a shredder for deep processing of vegetables, comprising an outer shell and a disc rotatably connected to the outer shell, wherein the disc is provided with a cross-cutting knife, and further comprises a sliding plate slidably connected to the disc, and a plurality of vertical cutting knives are fixedly connected at equal intervals on the sliding plate, and a pushing member connected to the sliding plate is provided on the disc, for retracting the vertical cutting knives into the disc when the disc rotates and drives the sliding plate out of the cutting area. In this device, after the vertical cutting knives complete the cutting action on the vegetables, they can be quickly retracted, thereby avoiding subsequent obstruction to the vegetable discharge, and also preventing unnecessary multiple cutting of the material when the disc rotates subsequently. At the same time, after completing the cutting task, the cross-cutting knife will be deflected and flipped out in time, and effectively block the disc gap while removing the material, thereby preventing the occurrence of material retention.
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Description

Technical Field

[0001] The invention relates to the technical field of choppers, in particular to a chopper for deep processing of vegetables. Background Art

[0002] Large vegetable cutting machines generally consist of a feeding mechanism and a cutting mechanism. The cutting mechanism has a shell and a disc rotatably connected therein. The disc is equipped with multiple inclined cross-cutting knives. After the vegetables enter from the feed port of the shell, they are cut into segments by the cross-cutting knives. The cut vegetables slide along the cross-cutting knives to the surface of the disc. The surface of the disc is distributed with multiple groups of vertical cutting knives arranged along the radial direction, which can further divide the cut vegetables into small pieces. The chopped vegetables are discharged from the discharge port at the bottom of the shell, finally achieving the purpose of chopping vegetables.

[0003] Although this type of vegetable cutter effectively avoids the disadvantages of traditional tank-structured choppers (this structure sets blades in the tank, and cuts vegetables by rotating the blades, achieving stirring and cutting at the same time) - vegetables are easily over-cut, which leads to damage and loss of more water, affecting the taste and freshness. However, the multiple sets of vertical cutters set on the disc have an adverse effect when the device discharges vegetables. These vertical cutters will form an obstruction to the vegetables, and some vegetables will adhere to the vertical cutters and get stuck between the blade gaps. If the chopped vegetables are not discharged in time, these vegetables are very likely to be cut multiple times during the subsequent rotation of the disc, which will also cause some vegetables to be over-cut. For this reason, we propose a chopper for deep processing of vegetables. Summary of the Invention

[0004] In order to solve the above technical problems, the embodiment of the present application provides a vegetable deep processing chopper, comprising a housing and a disc rotatably connected to the housing, the disc being provided with a cross-cutting knife, and further comprising a sliding plate slidably connected to the disc,

[0005] In addition, a plurality of vertical cutting knives are fixedly connected at equal intervals on the sliding plate, and a pushing member connected to the sliding plate is provided on the disc, which is used to retract the vertical cutting knives into the disc when the disc rotates and drives the sliding plate to leave the cutting area. A deflection member connected to the cross-cutting knife is provided on the disc, and the cross-cutting knife is rotatably connected to the disc. When the cross-cutting knife is in the cutting area, it is in an inclined state. When the disc rotates and drives the cross-cutting knife to leave the cutting area, the deflection member is used to drive the cross-cutting knife to deflect relative to the disc to be parallel to the disc surface. A scraping member is provided on the disc to scrape vegetables on the cross-cutting knife when the disc rotates.

[0006] In some embodiments, the pushing member includes a rectangular box fixedly connected to the disc, the sliding plate is located in the rectangular box and is slidably connected to the inner wall of the rectangular box, and a rectangular slot is provided on the rectangular box, one end of the vertical cutter slides through the rectangular slot, a push rod is slidably connected to the rectangular box, an elastic rope is fixedly connected between the sliding plate and the rectangular box, and a connecting rod is rotatably connected between the push rod and the sliding plate via a rotating shaft, and when the push rod is pushed to drive the sliding plate to move, the elastic rope is stretched under force to provide it with self-restoring elastic force;

[0007] A slide column 1 is provided at one end of the push rod, an annular plate is fixedly connected to the shell, a guide groove is provided on the annular plate, one end of the slide column 1 is located in the guide groove, and is used to drive the slide column 1 to slide along the guide groove when the disc rotates, thereby driving the push rod to move.

[0008] In some embodiments, the guide groove member includes a C-shaped guide groove opened along the track of the annular plate, and one end of the slide post is located in the C-shaped guide groove and is slidably connected to the inner wall thereof, so as to maintain the retracted state of the vertical cutter when the disc drives the slide post to slide along the C-shaped guide groove;

[0009] An arc-shaped guide groove is provided on the annular plate, and both ends of the arc-shaped guide groove are respectively connected to the C-shaped guide groove, and the width of the arc-shaped guide groove is larger than the C-shaped guide groove. The connection between the arc-shaped guide groove and the C-shaped guide groove adopts an inclined surface design, and an arc-shaped protrusion is provided at one end of the arc-shaped guide groove, and the arc-shaped protrusion is fixed to the annular plate. The connection between the arc-shaped protrusion and the annular plate also adopts an inclined surface design, and the interval between the top of the arc-shaped protrusion and the inner wall of the arc-shaped guide groove forms a track for the sliding column to slide. In the process of the sliding column sliding along this track, the vertical cutter is first driven to extend and maintain a distance, and then the vertical cutter is driven to retract.

[0010] In some embodiments, an arc-shaped groove 1 is provided on the arc-shaped protrusion, the arc-shaped groove 1 is cocircular with the C-shaped guide groove, and the depth of the arc-shaped groove 1 is shallower than that of the C-shaped guide groove. A sliding groove is provided on the annular plate, and an arc plate is provided on one side of the annular plate. Arc blocks are provided at both ends of the arc plate, one end of the arc block adopts a bevel design and the other end is willow-leaf-shaped. Moving the arc plate drives the arc block to pass through the sliding groove and align with the arc groove 1.

[0011] A hollow cylinder is fixedly connected to one end of the push rod, one end of the sliding column is located in the hollow cylinder, and a spring is fixedly connected to the inner wall of the hollow cylinder.

[0012] In some embodiments, the arc plate is fixedly connected to a sliding rod, the sliding rod is slidably connected to the outer shell, and the arc plate is fixedly connected to a slider, the outer shell is rotatably connected to shaft one, one end of the shaft one is fixedly connected to screw one, one end of the screw one is threaded through the slider, and rotating shaft one drives the arc plate to move.

[0013] In some embodiments, the deflection member includes a second shaft rotatably connected to the disc, one end of the second shaft is fixedly connected to a second screw, one side of the crosscutting knife is fixedly connected to a hollow rectangular frame, a third shaft is slidably connected in the hollow rectangular frame, one end of the third shaft is fixedly connected to a threaded sleeve, one end of the second screw is located in the threaded sleeve, and the rotation of the second shaft drives the crosscutting knife to deflect;

[0014] A pull rod is slidably connected in the disc, one end of the pull rod is fixedly connected to a second sliding column, one end of the second sliding column is located in the C-shaped guide groove and is slidably connected to the inner wall thereof, and a linkage is provided between the pull rod and the second shaft for driving the second shaft to rotate when the pull rod moves;

[0015] A second spring is fixedly connected to one end of the pull rod, and one end of the second spring is fixed to the inner wall of the disc. When the second slide column is in the C-shaped guide groove, the second spring is in a compressed state.

[0016] In some embodiments, the linkage member includes a gear disk fixedly connected to the second shaft, and one end of the pull rod is equidistantly fixedly connected to a plurality of tooth protrusions that engage with the gear disk.

[0017] In some embodiments, a plurality of arc-shaped grooves are evenly and equidistantly formed at one end of the arc-shaped protrusion, so as to make the top of the arc-shaped protrusion present a wave shape.

[0018] In some embodiments, the scraping member is a rubber scraper, one end of the rubber scraper is fixed to the housing, and one side of the rubber scraper is in contact with the disc.

[0019] In some embodiments, the housing is fixedly connected to a spray head, and the spray head is connected to an external air supply device through a conduit.

[0020] The present invention has at least the following beneficial effects:

[0021] 1. In this device, after the vertical cutter completes the cutting action on the vegetables, it can be quickly retracted, thereby avoiding subsequent obstruction of vegetable discharge and preventing unnecessary multiple cutting of the material when the disc rotates subsequently.

[0022] 2. In this device, after completing the cutting task, the cross-cutting knife will deflect and turn out in time, effectively covering the disc gap while pushing the material out, thus preventing the occurrence of material retention.

[0023] 3. The scraper equipped in the device can play a role in time during the rotation of the disc, scraping off the vegetables remaining on the cross-cutting knife and the surface of the disc, effectively preventing the vegetable residue from affecting the subsequent cutting effect, and comprehensively ensuring the cutting quality and efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a schematic diagram of the overall structure of Example 1 of the present invention;

[0025] Figure 2 For the present invention Figure 1 Another structural diagram;

[0026] Figure 3 For the present invention Figure 2 Schematic diagram of the local cross-section structure;

[0027] Figure 4 For the present invention Figure 3 Another structural diagram;

[0028] Figure 5 For the present invention Figure 4 Schematic diagram of the structure of the middle A area;

[0029] Figure 6 For the present invention Figure 4 Schematic diagram of the local cross-section structure;

[0030] Figure 7 For the present invention Figure 6 Schematic diagram of the structure of the middle B area;

[0031] Figure 8 For the present invention Figure 6 Schematic diagram of the local cross-section structure;

[0032] Figure 9 For the present invention Figure 8 Schematic diagram of the structure of the middle C area;

[0033] Figure 10 For the present invention Figure 8 Schematic diagram of the local cross-section structure;

[0034] Figure 11 For the present invention Figure 10 Schematic diagram of explosion structure;

[0035] Figure 12 This is a structural diagram of Example 2 of the present invention.

[0036] In the figure: 1-housing; 11-disc; 12-crosscutting knife; 2-sliding plate; 3-vertical cutting knife; 4-pushing member; 5-deflecting member; 6-scraping member; 41-rectangular box; 42-rectangular groove; 43-push rod; 44-elastic rope; 45-connecting rod; 46-sliding column 1; 47-annular plate; 48-guide groove member; 49-C-shaped guide groove; 51-arc guide groove; 52-arc-shaped protrusion; 53-arc groove 1; 54-sliding groove; 55-arc shaped plate; 56-arc-shaped block; 57-hollow cylinder; 58-spring 1; 59-sliding rod; 61-sliding block; 62-axis 1; 63-screw 1; 64-axis 2; 65-screw 2; 66-hollow rectangular frame; 67-axis 3; 68-threaded sleeve; 69-pull rod; 71-sliding column 2; 72-linkage; 73-spring 2; 74-toothed disc; 75-tooth protrusion; 76-rubber scraper; 77-arc-shaped groove; 78-injection head. DETAILED DESCRIPTION

[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0038] Example 1: Please refer to Figures 1-11 The present invention provides a technical solution: a vegetable deep processing chopper, comprising a housing 1 and a disc 11 rotatably connected to the housing 1, the disc 11 being provided with a cross-cutting knife 12, and further comprising:

[0039] The sliding plate 2 is slidably connected to the disc 11, and a plurality of vertical cutting knives 3 are fixedly connected to the sliding plate 2 at equal intervals;

[0040] The pusher 4 is provided on the disc 11 and connected to the sliding plate 2. It is used to retract the vertical cutter 3 into the disc 11 when the disc 11 rotates and drives the sliding plate 2 out of the cutting area. The cutting area here specifically refers to the cutting area of ​​the vertical cutter 3, which is provided in an area below the feed port. After the material is fed into the feed port, it is first cut into segments by the cross-cutting knife 12, and then the material moves along the cross-cutting knife 12 to the surface of the disc 11, and finally cut by the rotating vertical cutter 3.

[0041] The deflection member 5 is provided on the disc 11 and connected to the crosscutting knife 12, and the crosscutting knife 12 is rotatably connected to the disc 11. When the crosscutting knife 12 is in the cutting area, it is in an inclined state. When the disc 11 rotates to drive the crosscutting knife 12 out of the cutting area, the deflection member 5 drives the crosscutting knife 12 to deflect relative to the disc 11 to be parallel to the surface of the disc 11. Here, the cutting area specifically refers to the cutting area of ​​the crosscutting knife 12, which is provided at the feed inlet.

[0042] a scraper 6, provided on the disc 11, for scraping off the vegetables on the cross-cutting knife 12 when the disc 11 rotates;

[0043] Specifically, in this device, after the vertical cutting knife 3 completes the cutting action on the vegetables, it can be quickly retracted, thereby avoiding subsequent obstruction to the vegetable discharge and preventing unnecessary multiple cutting of the material when the disc 11 rotates subsequently; after completing the cutting task, the cross-cutting knife 12 will be deflected and flipped out in time, effectively blocking the gap of the disc 11 while removing the material, and preventing the occurrence of material retention. In addition, the scraper 6 equipped with the device can play a role in time during the rotation of the disc 11, scraping off the cross-cutting knife 12 and the vegetables remaining on the surface of the disc 11, effectively preventing the vegetable residue from affecting the subsequent cutting effect, and comprehensively ensuring the cutting quality and efficiency.

[0044] The pusher 4 includes a rectangular box 41 fixedly connected to the disc 11. The sliding plate 2 is located in the rectangular box 41 and is slidably connected to the inner wall thereof. A rectangular slot 42 is formed on the rectangular box 41. One end of the vertical cutter 3 slides through the rectangular slot 42. A push rod 43 is slidably connected to the rectangular box 41. An elastic rope 44 is fixedly connected between the sliding plate 2 and the rectangular box 41. A connecting rod 45 is rotatably connected between the push rod 43 and the sliding plate 2 via a rotating shaft. When the push rod 43 is pushed to use the connecting rod 45 to drive the sliding plate 2 to move, the elastic rope 44 is stretched under force to provide a self-restoring elastic force for it.

[0045] A slide post 46 is provided at one end of the push rod 43, and an annular plate 47 is fixedly connected to the housing 1. A guide groove 48 is provided on the annular plate 47. One end of the slide post 46 is located in the guide groove 48, and is used to drive the slide post 46 to slide along the guide groove 48 when the disc 11 rotates, thereby driving the push rod 43 to move.

[0046] The guide groove member 48 includes a C-shaped guide groove 49 formed along the track of the annular plate 47. One end of the slide post 1 46 is located in the C-shaped guide groove 49 and is slidably connected to the inner wall thereof. The slide post 1 46 is used to keep the vertical cutter 3 in a retracted state when the disc 11 drives the slide post 1 46 to slide along the C-shaped guide groove 49.

[0047] An arc-shaped guide groove 51 is formed on the annular plate 47. Both ends of the arc-shaped guide groove 51 are connected to the C-shaped guide groove 49. The width of the arc-shaped guide groove 51 is larger than that of the C-shaped guide groove 49. The connection between the arc-shaped guide groove 51 and the C-shaped guide groove 49 adopts an inclined surface design. This inclined surface guide design allows the slide column 1 46 to transition from one guide groove to another more smoothly. The inclined surface can reduce friction and resistance of the components during movement, reduce wear, and improve the operating efficiency and life of the equipment.

[0048] At the same time, the inclined surface design also helps to guide the components to enter the next guide groove accurately, thereby improving the accuracy of positioning. An arc-shaped protrusion 52 is provided at one end of the arc-shaped guide groove 51, and the arc-shaped protrusion 52 is fixedly connected to the annular plate 47. The connection between the arc-shaped protrusion 52 and the annular plate 47 also adopts an inclined surface design, and the gap between the top of the arc-shaped protrusion 52 and the inner wall of the arc-shaped guide groove 51 forms a track for the sliding column 46 to slide. In the process of the disc 11 driving the sliding column 46 to slide along this track, the vertical cutter 3 is first extended and maintained for a distance, and then the vertical cutter 3 is retracted for cutting the material by the vertical cutter 3.

[0049] An arc-shaped groove 53 is provided on the arc-shaped protrusion 52. The arc-shaped groove 53 is cocircular with the C-shaped guide groove 49, and the depth of the arc-shaped groove 53 is shallower than that of the C-shaped guide groove 49. A sliding groove 54 is provided on the annular plate 47. A curved plate 55 is provided on one side of the annular plate 47. Arc blocks 56 are provided at both ends of the curved plate 55. One end of the curved block 56 adopts an inclined surface design, and the other end is willow-leaf-shaped. A hollow cylinder 57 is fixedly connected to one end of the push rod 43. One end of the sliding column 46 is located in the hollow cylinder 57, and a spring 58 is fixedly connected to the inner wall of the hollow cylinder 57. The curved plate 55 is moved to drive the curved block 56 to slide through the sliding groove 54 and align with the arc groove 53. Specifically, the willow-leaf-shaped end of the curved block 56 is aligned with the arc groove 53.

[0050] Specifically, when the device is working normally, the end of the slide post 46 exceeds the arc groove 1 53, and then when the disc 11 rotates, it will periodically drive the vertical cutter 3 to extend in its cutting area. When the curved plate 55 is moved, the curved block 56 is driven to slide through the sliding groove 54 and align with the arc groove 1 53. The disc 11 rotates and drives the slide post 46. When it moves to the curved block 56, it will be guided by its inclined surface and then slide along the arc groove 1 53 to pass through the cutting area of ​​the vertical cutter 3. During this process, the slide post 46 is pushed and moved by the inclined surface, and the spring 1 58 is compressed and contracted to provide it with a self-restoring elastic force. At this time, because the arc groove 1 53 and the C-shaped guide groove 49 are cocircular, the vertical cutter 3 will not be driven to extend.

[0051] This design allows the device to control whether the vertical cutter 3 extends out of the disc 11, so that when the device cuts some small strips of vegetables, such as leeks and cowpeas, the vertical cutter 3 can be retracted, thereby avoiding ineffective cutting and excessive cutting, thereby improving the applicability of the device.

[0052] A slide rod 59 is fixedly connected to the arc plate 55, and the slide rod 59 is slidably connected to the shell 1. The arc plate 55 is fixedly connected to a slider 61. A shaft 62 is rotatably connected to the shell 1. One end of the shaft 62 is fixedly connected to a screw 63. One end of the screw 63 is threaded through the slider 61. One end of the shaft 62 is fixedly connected to a knob. Turning the knob drives the shaft 62 to rotate, and then drives the screw 63 to rotate, thereby driving the arc plate 55 fixedly connected to the slider 61 to move.

[0053] The deflection member 5 includes a second shaft 64 rotatably connected to the disc 11, one end of which is fixedly connected to a second screw 65, a hollow rectangular frame 66 fixedly connected to one side of the crosscutting knife 12, a third shaft 67 slidably connected within the hollow rectangular frame 66, one end of which is fixedly connected to a threaded sleeve 68, one end of the second screw 65 is located within the threaded sleeve 68, and the second screw 65 and the threaded sleeve 68 are connected by threads. Rotating the second shaft 64 drives the second screw 65 to rotate, thereby driving the threaded sleeve 68 to move, thereby driving the crosscutting knife 12 to deflect;

[0054] A pull rod 69 is slidably connected in the disc 11, and one end of the pull rod 69 is fixedly connected to a second sliding post 71. One end of the second sliding post 71 is located in the C-shaped guide groove 49 and is slidably connected to its inner wall. A linkage member 72 is provided between the pull rod 69 and the second shaft 64. The linkage member 72 includes a toothed disc 74 fixedly connected to the second shaft 64. One end of the pull rod 69 is equidistantly fixedly connected to a plurality of tooth protrusions 75 that mesh with the toothed disc 74. A second spring 73 is fixedly connected to one end of the pull rod 69. One end of the second spring 73 is fixedly connected to the inner wall of the disc 11. When the second sliding post 71 is in the C-shaped guide groove 49, the second spring 73 is in a compressed state.

[0055] Specifically, when the disc 11 rotates and drives the slide post 2 71 into the arc guide groove 51, the spring 2 73 is reset to drive the pull rod 69 2 to move, thereby driving the gear disc 74, the shaft 2 64, and the screw 2 65 to rotate, thereby using the threaded sleeve 68 to drive the cross-cutting knife 12 to deflect.

[0056] One end of the arc-shaped protrusion 52 is equidistantly and evenly provided with a plurality of arc-shaped grooves 77, which are used to make the top of the arc-shaped protrusion 52 present a wave shape, so that when the slide column 46 moves along the top of the arc-shaped protrusion 52, it can drive the extended vertical cutting knife 3 to shake while cutting, so as to improve the cutting effect.

[0057] The scraping member 6 is a rubber scraper 76 , one end of which is fixed to the housing 1 , and one side of the rubber scraper 76 contacts the disc 11 for scraping off materials attached to the surfaces of the disc 11 and the cross-cutting knife 12 .

[0058] Example 2: Please refer to Figures 1-12 , the present invention provides a technical solution: Example 2 is optimized based on Example 1;

[0059] The shell 1 is fixedly connected to a jet head 78, which is connected to an external air supply device through a conduit. When the device is working, it is used to spray air toward the discharge port to assist in pushing the material away from the disc 11 and the inner wall of the shell 1, thereby further reducing the probability of the material being over-cut.

[0060] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0061] While the embodiments of the present invention have been shown and described, it will be apparent to those skilled in the art that various changes, modifications, substitutions, and alterations can be made to the embodiments without departing from the principles and spirit of the invention.

Claims

1. A vegetable deep processing chopper, comprising a housing (1) and a disc (11) rotatably connected to the housing (1), wherein a cross-cutting knife (12) is provided on the disc (11), characterized in that: Also included are: A sliding plate (2) is slidably connected to the disc (11), and a plurality of vertical cutting knives (3) are fixedly connected to the sliding plate (2) at equal intervals; A pusher (4) is provided on the disc (11) and connected to the sliding plate (2), and is used to receive the vertical cutting knife (3) into the disc (11) when the disc (11) rotates to drive the sliding plate (2) out of the cutting area; A deflection member (5) is provided on the disc (11) and connected to the cross-cutting knife (12), and the cross-cutting knife (12) is rotatably connected to the disc (11). When the cross-cutting knife (12) is in the cutting area, it is in an inclined state. When the disc (11) rotates to drive the cross-cutting knife (12) out of the cutting area, the deflection member (5) drives the cross-cutting knife (12) to deflect relative to the disc (11) to be parallel to the surface of the disc (11); a scraping member (6) disposed on the disc (11) and used for scraping vegetables on the cross-cutting knife (12) when the disc (11) rotates; The pushing member (4) includes a rectangular box (41) fixedly connected to the disc (11), the sliding plate (2) is located in the rectangular box (41) and is slidably connected to the inner wall thereof, and a rectangular slot (42) is provided on the rectangular box (41), one end of the vertical cutting knife (3) slides through the rectangular slot (42), a push rod (43) is slidably connected in the rectangular box (41), an elastic rope (44) is fixedly connected between the sliding plate (2) and the rectangular box (41), and a connecting rod (45) is rotatably connected between the push rod (43) and the sliding plate (2) via a rotating shaft, and when the push rod (43) is pushed to drive the sliding plate (2) to move, the elastic rope (44) is stretched under force to provide a self-restoring elastic force for it; A slide column (46) is provided at one end of the push rod (43), an annular plate (47) is fixedly connected to the housing (1), a guide groove (48) is provided on the annular plate (47), and one end of the slide column (46) is located in the guide groove (48) and is used to drive the slide column (46) to slide along the guide groove (48) when the disc (11) rotates, thereby driving the push rod (43) to move.

2. The vegetable deep processing chopper according to claim 1, characterized in that: The guide groove member (48) includes a C-shaped guide groove (49) formed along the track of the annular plate (47), one end of the slide column (46) is located in the C-shaped guide groove (49) and is slidably connected to the inner wall thereof, and is used to maintain the recovery state of the vertical cutting knife (3) when the disc (11) drives the slide column (46) to slide along the C-shaped guide groove (49); An arc-shaped guide groove (51) is provided on the annular plate (47), and both ends of the arc-shaped guide groove (51) are respectively connected to the C-shaped guide groove (49), and the width of the arc-shaped guide groove (51) is larger than that of the C-shaped guide groove (49). The connection between the arc-shaped guide groove (51) and the C-shaped guide groove (49) adopts an inclined surface design. An arc-shaped protrusion (52) is provided at one end of the arc-shaped guide groove (51), and the arc-shaped protrusion (52) is fixed to the annular plate (47). The connection between the arc-shaped protrusion (52) and the annular plate (47) also adopts an inclined surface design, and the interval between the top of the arc-shaped protrusion (52) and the inner wall of the arc-shaped guide groove (51) forms a track for the sliding column (46) to slide. When the sliding column (46) slides along this track, it first drives the vertical cutter (3) to extend and maintain a distance, and then drives the vertical cutter (3) to retract.

3. The vegetable deep processing chopper according to claim 2, characterized in that: The arc-shaped protrusion (52) is provided with an arc-shaped groove (53), the arc-shaped groove (53) is cocircular with the C-shaped guide groove (49), and the depth of the arc-shaped groove (53) is shallower than that of the C-shaped guide groove (49). The annular plate (47) is provided with a sliding groove (54). An arc-shaped plate (55) is provided on one side of the annular plate (47). Arc-shaped blocks (56) are provided at both ends of the arc-shaped plate (55). One end of the arc-shaped block (56) is designed with an inclined surface, and the other end is willow-shaped. When the arc-shaped plate (55) is moved, the arc-shaped block (56) is driven to pass through the sliding groove (54) and align with the arc-shaped groove (53). A hollow cylinder (57) is fixedly connected to one end of the push rod (43), one end of the sliding column (46) is located in the hollow cylinder (57), and a spring (58) is fixedly connected to the inner wall of the hollow cylinder (57).

4. The vegetable deep processing chopper according to claim 3, characterized in that: The arc plate (55) is fixedly connected to a slide bar (59), the slide bar (59) is slidably connected to the housing (1), and the arc plate (55) is fixedly connected to a slider (61), the housing (1) is rotatably connected to a shaft 1 (62), one end of the shaft 1 (62) is fixedly connected to a screw 1 (63), one end of the screw 1 (63) is threadedly passed through the slider (61), and when the shaft 1 (62) is rotated, the arc plate (55) is driven to move.

5. The vegetable deep processing chopper according to claim 4, characterized in that: The deflection member (5) includes a second shaft (64) rotatably connected to the disc (11), one end of the second shaft (64) is fixedly connected to a second screw (65), one side of the cross-cutting knife (12) is fixedly connected to a hollow rectangular frame (66), a third shaft (67) is slidably connected in the hollow rectangular frame (66), one end of the third shaft (67) is fixedly connected to a threaded sleeve (68), one end of the second screw (65) is located in the threaded sleeve (68), and the rotation of the second shaft (64) drives the cross-cutting knife (12) to deflect; A pull rod (69) is slidably connected in the disc (11), one end of the pull rod (69) is fixedly connected to a second sliding column (71), one end of the second sliding column (71) is located in the C-shaped guide groove (49) and is slidably connected to the inner wall thereof, and a linkage member (72) is provided between the pull rod (69) and the second shaft (64) for driving the second shaft (64) to rotate when the pull rod (69) moves; A second spring (73) is fixedly connected to one end of the pull rod (69), and one end of the second spring (73) is fixed to the inner wall of the disc (11). When the second slide column (71) is in the C-shaped guide groove (49), the second spring (73) is in a compressed state.

6. The vegetable deep processing chopper according to claim 5, characterized in that: The linkage member (72) includes a toothed disc (74) fixedly connected to the second shaft (64), and one end of the pull rod (69) is fixedly connected to a plurality of tooth protrusions (75) that mesh with the toothed disc (74) at equal intervals.

7. The vegetable deep processing chopper according to claim 6, characterized in that: One end of the arc-shaped protrusion (52) is provided with a plurality of arc-shaped grooves (77) at equal intervals and evenly spaced, so as to make the top end of the arc-shaped protrusion (52) present a wave shape.

8. The vegetable deep processing chopper according to claim 1, characterized in that: The scraping member (6) is a rubber scraper (76), one end of the rubber scraper (76) is fixed to the housing (1), and one side of the rubber scraper (76) is in contact with the disc (11).

9. The vegetable deep processing chopper according to claim 8, characterized in that: The housing (1) is fixedly connected to a spray head (78), and the spray head (78) is connected to an external air supply device via a conduit.