Chili arranging and conveying mechanism of chili cutting machine

By designing the chili-arranging and conveying mechanism and the cutting mechanism of the chili-cutting machine, the problems of low chili-cutting efficiency and inconsistent quality in the existing technology have been solved, realizing automated chili-cutting and arranging, and improving chili-cutting efficiency and quality.

CN223877102UActive Publication Date: 2026-02-06佛山市功匠电器科技有限公司
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Patent Information

Application Number
CN202423126401.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2026-02-06
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The existing kitchen lacks automatic chili-cutting equipment, resulting in low efficiency and inconsistent quality in chili-cutting, which cannot meet the large demand from hotel canteens and other similar establishments.

Method used

A chili pepper arrangement and conveying mechanism for a chili pepper cutter was designed, including a vibrating conveyor seat and a vibrating component. Through the cooperation of multiple conveying troughs and drop plates, the chili peppers are ensured to be conveyed in straight strips. Combined with a rubber roller guide and a cutting mechanism, the chili peppers are automatically cut into rings.

Benefits of technology

It has achieved automated arrangement and cutting of chili peppers, improving the efficiency and quality of chili pepper cutting and meeting the usage requirements of a large number of demand locations.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223877102U_ABST
Patent Text Reader

Abstract

The utility model relates to a pepper cutting machine which comprises a vibration conveying seat and a vibration assembly, the vibration conveying seat is obliquely arranged in a main machine downwards, the vibration assembly is arranged at the bottom of the vibration conveying seat, and a plurality of parallel conveying grooves are formed in the upper surface of the vibration conveying seat in the length direction of the vibration conveying seat. A front falling plate is arranged in the middle of the vibration conveying seat in the width direction of the vibration conveying seat, the vibration conveying seat is provided with a plurality of conveying grooves, after falling into the vibration conveying seat, a plurality of chilies are separated into the conveying grooves and are conveyed downwards in a vibration mode through the conveying grooves, and due to the height difference between the front falling plate and the tops of the conveying grooves and a blocking plate, the chilies can be conveyed more stably. When horizontally falling on the top of the conveying groove, the chilies incline firstly and then fall into the conveying groove after touching the blocking plate downwards, so that it is ensured that the chilies are conveyed downwards in a straight strip shape, and subsequent cutting of a chilli ring cutting mechanism is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of kitchen equipment, in particular to a chili arranging and conveying mechanism of chili cutting machine. BACKGROUND

[0002] At present, there is no automatic chili ring cutting equipment in the kitchen, and all rely on manual cutting, which is low in efficiency and uneven in quality, and takes a long time, therefore, it cannot meet the needs of some places with large demand for chili rings in hotels, canteens and restaurants, therefore, there is an urgent need for a fully automatic chili cutting machine. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at providing a chili cutting machine which is simple in structure, high in efficiency and good in quality.

[0004] The utility model aims at providing a chili cutting machine which is simple in structure, high in efficiency and good in quality.

[0005] A chili arranging and conveying mechanism of chili cutting machine, comprising a vibrating conveying seat and a vibrating assembly, the vibrating conveying seat is inclined downwardly arranged in the main machine, the vibrating assembly is arranged at the bottom of the vibrating conveying seat, the upper surface of the vibrating conveying seat is provided with a plurality of parallel conveying grooves along the length direction of the vibrating conveying seat, the front falling plate is arranged along the length direction of the vibrating conveying seat, the height of the front falling plate on the vibrating conveying seat is higher than the height of the top of the conveying groove, the front falling plate is provided with a blocking plate, the height of the blocking plate on the vibrating conveying seat is higher than the height of the front falling plate on the vibrating conveying seat, and the lower end of the conveying groove is provided with a discharge port.

[0006] The utility model can be further improved as follows.

[0007] The cross section of the conveying groove is triangular, facilitating the conveying of chilies.

[0008] The blocking plate is arranged at the lower end of the front falling plate.

[0009] The vibrating conveying seat, the conveying groove, the front falling plate and the blocking plate are integrally formed, facilitating manufacturing.

[0010] The front falling plate is arranged at the top of the conveying groove.

[0011] The rear falling plate is arranged on the top of the conveying groove.

[0012] The rear falling plate is arranged on the top of the conveying groove.

[0013] The front falling plate and the rear falling plate are arranged in a staggered manner.

[0014] The utility model discloses the beneficial effect is as follows:

[0015] The utility model discloses a vibrating conveying seat is equipped with a plurality of conveying grooves, and a plurality of peppers falls into the vibrating conveying seat and is separated into the conveying groove, and the vibrating conveying seat is conveyed downwards, and because of the height difference of the front falling plate and the top of the conveying groove and the blocking plate, when the pepper falls horizontally on the top of the conveying groove and the front falling plate, one end of the pepper will be tilted to one side of the conveying groove, and then the pepper moves downwards and falls into the conveying groove after colliding with the blocking plate, so that the pepper falls into the conveying groove and is conveyed downwards in a straight strip, facilitating the cutting of the subsequent pepper cutting mechanism. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structure schematic diagram of all pepper machine of the utility model embodiment.

[0017] Figure 2 It is the structure schematic diagram of another angle of all pepper machine of the utility model embodiment.

[0018] Figure 3 It is the plan view of the all pepper machine of the utility model embodiment.

[0019] Figure 4 It is Figure 3 The sectional view of A-A in.

[0020] Figure 5 It is Figure 3 The sectional view of B-B in.

[0021] Figure 6 It is Figure 3 The sectional view of C-C in.

[0022] Figure 7 It is the exploded view of the all pepper machine of the utility model embodiment.

[0023] Figure 8 It is the structure schematic diagram of all pepper machine of the utility model embodiment.

[0024] Figure 9 is another angle structure schematic view of the all pepper machine of the embodiment of the utility model after omitting the feeding mechanism, the pepper arrangement conveying mechanism, the pepper guide mechanism.

[0025] Figure 10 is structure schematic view of the feeding mechanism of the embodiment one of the utility model.

[0026] Figure 11 is another angle structure schematic view of the feeding mechanism of the embodiment one of the utility model.

[0027] Figure 12 is exploded view of the feeding mechanism of the embodiment one of the utility model.

[0028] Figure 13 is structure schematic view of the pepper guide mechanism of the embodiment one of the utility model.

[0029] Figure 14 is another angle structure schematic view of the pepper guide mechanism of the embodiment one of the utility model.

[0030] Figure 15 is exploded view of the pepper guide mechanism of the embodiment one of the utility model.

[0031] Figure 16 is structure schematic view of the second glue roller of the embodiment one of the utility model.

[0032] Figure 17 is another angle structure schematic view of the second glue roller of the embodiment one of the utility model.

[0033] Figure 18 is overhead view of the second glue roller of the embodiment one of the utility model.

[0034] Figure 19 is Figure 18 sectional view of D-D in.

[0035] Figure 20 is structure schematic view of the pepper arrangement conveying mechanism of the embodiment one of the utility model.

[0036] Figure 21 is another angle structure schematic view of the pepper arrangement conveying mechanism of the embodiment one of the utility model.

[0037] Figure 22 is structure schematic view of the third angle of the pepper arrangement conveying mechanism of the embodiment one of the utility model.

[0038] Figure 23 is exploded view of the pepper arrangement conveying mechanism of the embodiment one of the utility model.

[0039] Figure 24 is a structural schematic view of the chili cutting ring mechanism of the embodiment one of the utility model.

[0040] Figure 25 is another angle structural schematic view of the chili cutting ring mechanism of the embodiment one of the utility model.

[0041] Figure 26 is the overhead view of the chili cutting ring mechanism of the embodiment one of the utility model.

[0042] Figure 27 is the sectional view of E-E in Figure 26 .

[0043] Figure 28 is the exploded view of the chili cutting ring mechanism of the embodiment one of the utility model.

[0044] Figure 29 is the structural schematic view of the power mechanism of the embodiment one of the utility model.

[0045] Figure 30 is another angle structural schematic view of the power mechanism of the embodiment one of the utility model.

[0046] Figure 31 is the structural schematic view of the chili cutting machine in the embodiment two of the utility model.

[0047] Figure 32 is the structural schematic view of the feeding cover in the embodiment two of the utility model.

[0048] Figure 33 is the exploded view of the chili cutting machine of the embodiment two of the utility model. DETAILED DESCRIPTION

[0049] The utility model will be further described below in combination with the drawings and embodiments.

[0050] Embodiment one, as shown in a kind of chili cutting machine, including host computer 1; Figures 1 to 30

[0051] feeding mechanism 2, be located in the top of host computer 1, for conveying chili to chili arrangement conveying mechanism 3 downwards,

[0052] chili arrangement conveying mechanism, be located in host computer 1, and be located below feed inlet, for conveying chili;

[0053] chili guide mechanism 4, be located in host computer 1, and be located at the end of chili arrangement conveying mechanism 3, for making the end of chili that chili arrangement conveying mechanism 3 transports comes down vertically or obliquely downwards;

[0054] ​The pepper cutting mechanism 5 is arranged in the main machine 1 and below the pepper guiding mechanism 4, and is used for cutting the peppers delivered by the pepper guiding mechanism 4 into rings.

[0055] The power mechanism 6 is arranged in the main machine 1 and is used for driving the pepper cutting mechanism 5 to work.

[0056] The receiving box 7 is used for receiving the pepper rings dropped by the pepper cutting mechanism.

[0057] As a more specific technical scheme of the utility model.

[0058] The feeding mechanism 2 comprises a feeding seat 22 and a feeding conveying belt 21.

[0059] The feeding seat 22 is detachably arranged on the top of the main machine 1.

[0060] The feeding conveying belt 21 is arranged at the drop port 23 in a slanting manner.

[0061] The feeding conveying belt 21 comprises an upper belt wheel 210, a lower belt wheel 25 and a conveying belt 26.

[0062] A plurality of quantitative conveying grooves 27 are arranged on the outer surface of the feeding conveying belt 21 along the circumferential direction of the feeding conveying belt 21.

[0063] The feeding chute and the feeding conveying belt 21 are oppositely arranged in the feeding chute 24.

[0064] The end of the rotating shaft of the lower belt wheel 25 is provided with a driven gear 28.

[0065] The main machine 1 is provided with a mounting groove 10.

[0066] The pepper arranging and conveying mechanism 3 comprises a vibrating conveying seat 31 and a vibrating assembly 32. The vibrating conveying seat 31 is arranged in the main machine 1 in a downward inclination. The vibrating assembly 32 is arranged at the bottom of the vibrating conveying seat 31. The upper surface of the vibrating conveying seat 31 is provided with a plurality of parallel conveying grooves 33 along the length direction of the vibrating conveying seat 31. The vibrating conveying seat 31 is provided with a front drop plate 34 at the middle position in the width direction of the vibrating conveying seat 31. The front drop plate 34 is arranged along the length direction of the vibrating conveying seat 31. The height of the front drop plate 34 on the vibrating conveying seat 31 is higher than the height of the top of the conveying grooves 33. The front drop plate 34 is provided with a blocking plate 35. The height of the blocking plate 35 on the vibrating conveying seat 31 is higher than the height of the front drop plate 34 on the vibrating conveying seat 31. The lower end of the conveying grooves 33 is provided with a discharge port 36. The vibrating assembly 32 is a prior art, which has a motor and a cam inside. The working principle thereof is not described in detail.

[0067] The cross section of the conveying grooves 33 is triangular.

[0068] The blocking plate 35 is arranged at the lower end of the front drop plate 34.

[0069] The vibrating conveying seat 31, the conveying grooves, the front drop plate 34 and the blocking plate are integrally formed.

[0070] The front drop plate is arranged at the top of the conveying grooves 33.

[0071] The conveying grooves 33 are provided with a rear drop plate 37, which is arranged at the lower side of the blocking plate. The rear drop plate 37 is arranged along the length direction of the vibrating conveying seat 31. The height of the rear drop plate 37 on the vibrating conveying seat 31 is higher than the height of the top of the conveying grooves 33.

[0072] The rear drop plate 37 is arranged at the top of the conveying grooves 33.

[0073] The front drop plate and the rear drop plate 37 are arranged in a staggered manner.

[0074] The pepper guiding mechanism 4 comprises a fixed rubber roller assembly 40 and a sliding rubber roller assembly 400 which is horizontally slidably arranged in the main machine 1 and located at one side of the fixed rubber roller assembly 40, and the sliding rubber roller assembly 400 slides towards or away from the fixed rubber roller assembly 40. The fixed rubber roller assembly 40 comprises a support frame 44, a first motor 42, a first upper rubber roller 47 and a first lower rubber roller 48. The first upper rubber roller 47 and the first lower rubber roller 48 are horizontally arranged one above the other on the support frame 44. The first motor 42 is arranged on the support frame 44 and drives the first upper rubber roller 47 and the first lower rubber roller 48 to roll. The sliding rubber roller assembly 400 comprises a sliding frame 43, a second motor 41, a second upper rubber roller 45, a second lower rubber roller 46 and a return spring 415. The sliding frame 43 is horizontally slidably arranged in the main machine 1. The second upper rubber roller 45 and the second lower rubber roller 46 are horizontally arranged one above the other on the sliding frame 43. The second motor 41 is arranged on the sliding frame 43 and drives the second upper rubber roller 45 and the second lower rubber roller 46 to rotate. One end of the return spring 415 is in abutment with the main machine 1, and the other end of the return spring 415 is in abutment with the sliding frame 43. The first upper rubber roller 47 cooperates with the second upper rubber roller 45, and the first lower rubber roller 48 cooperates with the second lower rubber roller 46.

[0075] The side surface of the first upper rubber roller 47 is uniformly provided with a plurality of guiding accommodating grooves 471 which are in position correspondence with the guiding annular grooves 414. The guiding accommodating grooves 471 are square grooves.

[0076] The support frame 44 is provided with a first gear box 440. The motor shaft of the first motor 42 is in transmission connection with the input end of the first gear box 440. The two output ends of the first gear box 440 are in transmission connection with the first upper rubber roller 47 and the first lower rubber roller 48 respectively. The sliding frame 43 is provided with a second gear box 430. The motor shaft of the second motor 41 is in transmission connection with the input end of the second gear box 430. The two output ends of the second gear box 430 are in transmission connection with the second upper rubber roller 45 and the second lower rubber roller 46 respectively.

[0077] The first upper rubber roller 47, the first lower rubber roller 48, the second upper rubber roller 45 and the second lower rubber roller 46 are silica gel rollers.

[0078] The second lower rubber roller 46 comprises a seat body 410 and a rubber roller body 49. The rubber roller body 49 is horizontally rotatably arranged on the seat body 410. The side surface of the rubber roller body is provided with a plurality of guiding annular grooves 414 which are spaced apart along the length direction. The seat body 410 is provided with a plurality of accommodating grooves 411 on one side edge corresponding to the plurality of guiding annular grooves 414. The plurality of accommodating grooves 411 and the plurality of guiding annular grooves 414 are mutually matched.

[0079] One end of the rubber roller body 49 is provided with a transmission rotating shaft 413. The other end of the rubber roller body 49 is provided with an elastic telescopic rotating shaft 412 which is telescopically arranged. The elastic telescopic rotating shaft 412 and the rubber roller body 49 are provided with a return spring 416 therebetween.

[0080] The guide ring groove 414 is a recessed area formed by a plurality of silica gel convex rings with different diameters on the surface of the roller body 49.

[0081] The pepper ring cutting mechanism 5 includes a cutter box 51, a cutter 52, and a scraping cutter 53. The top of the cutter box 51 is open, the bottom of the cutter box 51 is provided with a discharge port 54, the cutter shaft 57 of the cutter 52 is vertically rotatably arranged in the cutter box 51, the cutter blade of the cutter 52 is arranged in the horizontal direction, the cutter shaft 57 of the cutter extends downward to below the cutter box, and the lower end of the cutter shaft is provided with a driven gear ring 55.

[0082] The inner end of the scraping cutter 53 is fixedly connected with the cutter shaft of the cutter 52, the scraping cutter 53 extends horizontally to the inner side wall of the cutter box 51, and the scraping cutter 53 is located below the cutter blade.

[0083] The position corresponding to the cutter box 51 on the main machine 1 is provided with a containing cavity 11, and the cutter box 51 is arranged in the containing cavity 11 in a drawer manner.

[0084] The outer end of the scraping cutter 53 is close to the inner side wall of the cutter box 51.

[0085] The height of the outer end of the scraping cutter 53 is approximately equal to the depth of the inner cavity of the cutter box 51.

[0086] The bottom of the cutter box 51 is provided with a guide sliding block 56, and the main machine 1 is provided with a guide rail 13 corresponding to the cutter box 51, and the guide sliding block 56 is horizontally slidably arranged on the guide rail 13.

[0087] The outer portion of the cutter box 51 is provided with a handle.

[0088] The power mechanism 6 includes a main motor 61, a rotating main shaft 64, a driving gear 62, a clutch handle 67, a transmission shaft 66, a locking block 65, a locking spring 68, a locking pin 612, a clutch spring 614, and a clutch driving cam 63. The rotating main shaft 64 is vertically rotatably arranged in the main machine 1, the main motor 61 drives the rotating main shaft 64 to rotate, the driving gear 62 is movably arranged on the upper end of the rotating main shaft 64, the rotating main shaft 64 drives the driving gear 62 to rotate, the clutch spring 614 is sleeved on the upper end of the rotating main shaft 64 and located in the driving gear 62, the upper end and the lower end of the clutch spring 614 are respectively abutted with the upper end of the rotating main shaft 64 and the driving gear 62, the clutch driving cam 63 is rotatably arranged on the main machine 1 with a horizontal line as the rotation shaft and located below the driving gear 62, the clutch driving cam 63 drives the driving gear 62 to ascend and descend, and the driving gear is in mesh with the driven gear ring.

[0089] The inner end of the transmission shaft 66 is fixedly connected with the clutch driving cam 63, and the clutch handle 67 is arranged on the outer end of the transmission shaft 66.

[0090] Locking block 65 is fixed on the transmission shaft 66, locking block on the set with two locking slot 613, locking pin 612 and locking block 65 on the locking slot 613 concave and convex positioning cooperation, locking spring 68 upper end, lower end is respectively with host computer 1, locking pin 612, locking pin 612 up and down activity in host computer 1.

[0091] Clutch handle 67 is located on the surface of the host computer 1.

[0092] Clutch drive cam 63 is provided with the recess of avoiding the upper end of the rotating main shaft 64.

[0093] It also includes the first pulley 610, the second pulley 69 and the transmission belt 611, the first pulley 610 is arranged on the motor shaft of the main motor 61, the second pulley 69 is arranged on the lower end of the rotating main shaft 64, and the first pulley and the second pulley 69 are connected through the transmission belt 611.

[0094] The working principle of the utility model is:

[0095] When the utility model starts working, the user starts the chili cutting machine, all the above mechanisms start to start, the user starts to pour chili into the feeding chute 24, the chili continuously flows to the discharge port 23 at the bottom of the feeding chute 24, the feeding motor 12 drives the feeding conveyor belt 21 to run, and each quantitative conveying groove 27 of the conveying belt quantitatively transports chili downwards, the chili falls from the discharge port 23 to the front drop plate 34 of the vibration conveying seat 31, the vibration assembly 32 drives the vibration conveying seat 31 to vibrate, under the vibration of the vibration conveying seat 31, the chili will fall into the conveying groove 33 and move downwards, gradually moving to the lower end of the vibration conveying seat 31, a small part of the chili will horizontally fall to the top of the plurality of conveying grooves 33 and the front drop plate, but due to the height difference and the blocking plate 35 between the front drop plate 34 and the top of the conveying groove 33, the chili will first pour into the conveying groove on one side, then the chili will fall into the conveying groove 33 when moving downwards and encountering the blocking plate 35, the rear drop plate 37 also has such an effect,

[0096] Then, the peppers are vibrated to the discharge port 36 at the lower end of the conveying groove 33, then the first motor 42 drives the first upper rubber roller 47 and the first lower rubber roller 48 to roll, the second motor 41 drives the second upper rubber roller 45 and the second lower rubber roller 46 to rotate, the peppers flow between the second upper rubber roller 45 and the second lower rubber roller 45, the whole sliding rubber roller assembly 400 moves to one side, the reset spring 415 is compressed, the guide annular groove 414 of the first upper rubber roller 47 and the guide annular groove 414 of the second upper rubber roller 45 clamp the peppers to flow downward, then the guide annular groove 414 of the first lower rubber roller 48 and the guide annular groove 414 of the first lower rubber roller 48 also clamp the peppers to flow downward, under the clamping and guiding of the plurality of rubber rollers, the peppers flow downward in a vertical posture. The sliding rubber roller assembly 400 can automatically adjust the position according to the size of the peppers, if the diameter of the peppers becomes larger, the peppers will push the sliding rubber roller assembly 400 to move a distance away from the fixed rubber roller assembly 40, the reset spring 415 is compressed, on the contrary, if the diameter of the peppers becomes smaller, the reset spring 415 will push the sliding rubber roller assembly 400 to move a distance to be close to the fixed rubber roller assembly 40, so that the sliding rubber roller assembly 400 can clamp the peppers with the fixed rubber roller assembly 40.

[0097] The lower end of the pepper flows downward into the cutter box 51, at this time the main motor 61 drives the cutter 52 and the scraper 53 to rotate, the cutter 52 horizontally cuts the peppers, the peppers are cut into rings, the pepper rings fall into the cutter box 51, the pepper rings adhered to the inner side wall of the cutter box 51 and the bottom of the cutter box 51 are swept to the discharge port 54 by the scraper 53, and then fall into the receiving box 7 from the discharge port 54, thus the pepper ring cutting work of the pepper cutting machine is completed.

[0098] When the user wants to take out the cutter box 51, the user needs to control the pepper cutting machine to stop first, then the user rotates the clutch handle 67 forward, the clutch handle 67 drives the clutch driving cam 63 and the locking block 65 to rotate downward through the transmission shaft 66, the clutch driving cam 63 no longer presses the driving gear 62 upward, then the locking pin 612 is in concave-convex positioning cooperation with the locking groove 613 on the locking block 65, the locking block 65 and the clutch driving cam 63 no longer rotate, the driving gear 62 is driven downward by the clutch spring 614, and the driving gear 62 is disengaged from the driven gear ring 55, so that the user can pull out the cutter box 51. On the contrary, when the user puts the cutter box 51 back into the accommodating cavity, the user rotates the clutch handle 67 reversely, the clutch handle 67 drives the clutch driving cam 63 and the locking block 65 to rotate upward through the transmission shaft 66, the locking pin 612 is disengaged from the locking groove 613, the locking spring 68 is compressed, the clutch driving cam 63 presses the driving gear 62 upward, the driving gear 62 rises and engages with the driven gear ring 55, and then the locking pin 612 is in concave-convex positioning cooperation with another locking groove 613 on the locking block 65, so that the locking block 65 and the clutch driving cam 63 no longer rotate.

[0099] Example two, as Figures 31 to 33 shown, the difference between example two and example is that the feeding mechanism of the above example one is automatic conveying chili, without human feeding, while this example is manual feeding, without using feeding mechanism and chili arrangement conveying mechanism 3, this example uses feeding cover to replace the above feeding mechanism, feeding cover 8 cover is provided on the top of the main machine, for conveying chili downward to the chili guide mechanism, the bottom surface of the feeding cover 8 is provided with a guide feeding channel 81, the guide feeding channel 81 extends downward into the main machine, the lower end of the guide feeding channel 81 extends downward to the upper side of the chili guide mechanism, the upper end of the guide feeding channel 81 extends to the top surface of the feeding cover 8 to form a feeding port. The feeding cover 8 covers the opening of the installation groove 10, the chili guide mechanism is located in the installation groove 10, and the guide feeding channel 81 extends downward into the installation groove 10. When the user wants to cut chili, only need to start the chili machine of the utility model, then put the chili into the feeding port one by one, the chili is guided by the guide feeding channel 81, falls on the chili guide mechanism, and then is clamped and conveyed downward by the chili guide mechanism, other working principles and example one are the same, which will not be described here again.

Claims

1. A chili pepper arranging and conveying mechanism of a chili pepper cutting machine, characterized in that, The vibration conveying seat is obliquely arranged in the main machine, and the vibration assembly is arranged at the bottom of the vibration conveying seat.

2. The chili arranging and conveying mechanism of the chili cutting machine according to claim 1, wherein, The cross section of the conveying groove is triangular.

3. The chili arranging and conveying mechanism of the chili cutting machine according to claim 1, wherein, The blocking plate is arranged at the lower end of the front drop plate.

4. The chili arranging and conveying mechanism of the chili chopping machine according to claim 1, wherein, The vibration conveying seat, the conveying groove, the front drop plate and the blocking plate are integrally formed.

5. The chili arranging and conveying mechanism of the chili chopping machine according to claim 1, wherein, The front drop plate is arranged at the top of the conveying groove.

6. The chili arranging and conveying mechanism of the chili chopping machine according to claim 1, wherein, The rear drop plate is arranged at the top of the conveying groove.

7. The chili arranging and conveying mechanism of the chili cutting machine according to claim 6, wherein, The front drop plate and the rear drop plate are arranged in a staggered manner.

8. The chili arranging and conveying mechanism of the chili cutting machine according to claim 6, wherein, ​