Multifunctional processing machine for hanging radish strips

By designing a multi-functional radish hanging processing machine, the automated washing, hanging, shredding, and strip cutting of white radishes has been achieved, solving the problem of low efficiency in manual hanging, improving processing efficiency and reducing costs.

CN223681950UActive Publication Date: 2025-12-19KUNMING UNIV OF SCI & TECH
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Patent Information

Application Number
CN202520592652.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-12-19
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

In the existing technology, the cutting and hanging process of white radishes mainly relies on manual operation, which is inefficient, labor-intensive and poses safety hazards, and there is a lack of integrated mechanical processing equipment.

Method used

A multi-functional radish hanging processing machine was designed, which includes a cleaning, feeding, pushing and hanging device. It uses a ball screw nut mechanism to realize the automated cleaning, cutting and hanging of radishes, and realizes the functions of shredding and slicing radishes through adjustable longitudinal and transverse blade groups and embedded grid blade heads.

Benefits of technology

The system achieves automated washing, cutting, and slicing of white radishes, improving processing efficiency, simplifying the operation process, reducing labor costs, and ensuring safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multifunctional processing machine for hanging radish strips, and belongs to the technical field of agricultural product processing equipment. Comprising a rack, a cleaning and feeding device, a pushing device and a cutting and hanging device, the cleaning and feeding device, the pushing device and the cutting and hanging device are installed on the rack, the cleaning and feeding device is located below a feeding port of the rack, the inlet end of the pushing device is located under a discharging port of the cleaning and feeding device, and the cutting and hanging device is located at the tail end of the pushing device; the cutter groove II is located behind the cutter groove I. A transverse cutter set in the cutting and hanging device is installed in the cutter groove I. A longitudinal cutter set or an embedded grid cutter head in the cutting and hanging device is installed in the cutter groove II. The white radish harvesting machine can achieve integrated mechanical operation of white radish harvesting (cleaning, cutting and hanging, shredding and slitting), and is simple in structure and convenient to machine, install and disassemble and maintain in the later period.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of radish hanging strip multifunctional processing machine, belong to agricultural product processing equipment technical field. BACKGROUND

[0002] With the pursuit of healthy lifestyle and the growing demand for organic and natural food, the white radish industry is experiencing a series of development trends. With the progress of agricultural technology and the changes in market demand, the white radish industry also needs to constantly adapt to market changes and improve product quality and expand market share. Therefore, the development direction and future potential of the white radish industry are of great concern. For radish harvesting in Yunnan Province, the annual radish planting area in Yunnan Province is very large, and radish ranks second among vegetables in Yunnan Province, but the processing of radish has become a big problem. Currently, the radish processing devices we see in the market are relatively more, but the machine for white radish harvesting (washing, hanging, slicing, and cutting) is still relatively rare. The hanging process of radish is usually completed by hand with a knife, which not only has low efficiency, but also is laborious and time-consuming due to the hardness of the radish skin. In large-scale production, there is a lack of radish strip cutting method, and manual processing significantly increases production costs. SUMMARY

[0003] The utility model aims at providing a kind of radish hanging strip multifunctional processing machine with simple structure to solve the problems of complex operation and high processing cost in current radish cutting.

[0004] The utility model realizes the following technical scheme: a kind of radish hanging strip multifunctional processing machine, including rack 1 and the washing feeding device, pushing device, hanging device of installation on it, washing feeding device is located the lower side of rack 1 inlet, the inlet end of pushing device is located the just below of washing feeding device discharge port, hanging device is located the end of pushing device, rack 1 end interval, symmetrically is equipped with knife groove I 19 and knife groove II 20, knife groove II 20 is located the rear of knife groove I 19, the horizontal knife group 11 in hanging device is installed in knife groove I 19, the vertical knife group 10 or embedded grid cutter head 27 in hanging device is installed in knife groove II 20.

[0005] Specifically, the washing feeding device includes a washing left shaft 2, a washing right shaft 3, a motor II 18, and a plum blossom coupling II 26. The motor II 18 is fixed on the rack 1, and its output shaft is connected to the symmetrically installed washing left shaft 2 and washing right shaft 3 through the plum blossom coupling II 26.

[0006] Specifically, the push device comprises a push plate 4, a support rail 5, a V-shaped guide plate 6, a ball screw 14, a ball screw nut 15, a plum blossom coupling I 16, a motor I 17, an open deep groove ball bearing 21, a ball screw nut seat 22, a ball screw support seat 23, and sliding blocks 25. The V-shaped guide plate 6 is located directly below the discharge port of the cleaning and feeding device. The motor I 17, the support rail 5 and the ball screw support seat 23 are fixed on the rack 1. The two sliding blocks 25 are symmetrically and slidingly installed on the support rail 5. The V-shaped guide plate 6 is fixedly installed on the support rail 5. The ball screw 14 is installed on the ball screw support seat 23 at both ends of the rack 1 through the open deep groove ball bearing 21 at both ends. The front end is connected with the output shaft of the motor I 17 through the plum blossom coupling I 16. The ball screw nut 15 is installed on the ball screw 14. The ball screw nut seat 22 is installed at the end of the ball screw nut 15. The push plate 4 is fixedly connected with the ball screw nut seat 22, and the bottom of the push plate 4 is fixed on the two symmetric sliding blocks 25. The push plate 4 is provided with a protruding structure, and the protruding structure is provided with a through hole for the V-shaped guide plate 6 to pass through.

[0007] Preferably, the protruding structure is a transverse long strip arranged at equal intervals, the interval between the two adjacent transverse long strips is greater than the width of the blade on the transverse cutter group 11, and the bottom of the protruding structure is a dovetail groove structure corresponding to the upper end surface of the V-shaped guide plate 6.

[0008] Specifically, the cutting and hanging device further comprises a motor III 24, a hole output planetary reducer 7, an eccentric wheel 8 and a discharging push rack 9. The motor III 24 is fixed on the rack 1. The hole output planetary reducer 7 is connected with the motor III 24. One end of the eccentric wheel 8 is connected with the hole output planetary reducer 7, and the other end is connected with the discharging push rack 9. The eccentric wheel 8 and the discharging push rack 9 are located between the cutter groove I 19 and the cutter groove II 20. The receiving plate 12 is installed below the cutter groove I 19 and the cutter groove II 20.

[0009] Preferably, the interval between the cutter groove I 19 and the cutter groove II 20 is 60 mm.

[0010] Preferably, the bottom of the rack 1 is fixedly provided with a wheel device 13.

[0011] Preferably, the embedded grid cutter head 27 is a 120*120 mm grid cutter head.

[0012] Preferably, the longitudinal cutter group 10, the transverse cutter group 11 and the embedded grid cutter head 27 are detachably installed, and the intervals of the blades on the three are adjustable.

[0013] The radish hanging strip multifunctional processing machine has the advantages that the structure is simple, the white radish harvesting (cleaning, cutting and hanging, shredding and strip cutting) integration mechanical operation can be realized, and the processing, installation and post-maintenance are facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the whole structure schematic view of the utility model;

[0015] Figure 2 It is the rack structure schematic view of the utility model;

[0016] Figure 3 It is the cleaning and feeding device structure schematic view of the utility model;

[0017] Figure 4 It is the pushing device structure schematic view of the utility model;

[0018] Figure 5 It is the ball screw installation structure schematic view of the utility model;

[0019] Figure 6 It is the push plate installation structure schematic view of the utility model;

[0020] Figure 7 It is the cutting and hanging device structure schematic view of the utility model;

[0021] Figure 8 It is the horizontal cutter group installation structure schematic view of the utility model;

[0022] Figure 9 It is the vertical cutter group structure schematic view of the utility model;

[0023] Figure 10 It is the embedded grid cutter head structure schematic view of the utility model.

[0024] The numbers in the drawing are: rack 1, cleaning left shaft 2, cleaning right shaft 3, push plate 4, support guide rail 5, V-shaped guide plate 6, hole output planetary reducer 7, eccentric wheel 8, unloading push frame 9, vertical cutter group 10, horizontal cutter group 11, material receiving plate 12, caster device 13, ball screw 14, ball screw nut 15, plum blossom shaft coupling I 16, motor I 17, motor II 18, cutter groove I 19, cutter groove II 20, open deep groove ball bearing 21, ball screw nut seat 22, ball screw support seat 23, motor III 24, sliding block 25, plum blossom shaft coupling II 26, embedded grid cutter head 27. DETAILED DESCRIPTION

[0025] The utility model will be further explained in combination with the drawings and examples, but the content of the utility model is not limited to the range.

[0026] Example 1: as Figures 1-10As shown, a radish hanging strip multifunctional processing machine comprises a rack 1 and a cleaning feeding device, a pushing device and a cutting and hanging device installed thereon. The cleaning feeding device is located below the inlet of the rack 1, the inlet end of the pushing device is located directly below the outlet of the cleaning feeding device, and the cutting and hanging device is located at the end of the pushing device. The rack 1 is provided with a knife groove I 19 and a knife groove II 20 at the end thereof in a spaced and symmetrical manner. The knife groove II 20 is located behind the knife groove I 19. The transverse knife group 11 in the cutting and hanging device is installed in the knife groove I 19, and the longitudinal knife group 10 or the embedded grid knife head 27 in the cutting and hanging device is installed in the knife groove II 20. That is, the transverse knife group 11 is placed in the knife groove closest to the push plate 4, and the longitudinal knife group 10 is placed in the knife groove farthest from the push plate 4.

[0027] Further, the cleaning feeding device comprises a cleaning left shaft 2, a cleaning right shaft 3, a motor II 18 and a plum blossom coupling II 26. The motor II 18 is fixed on the rack 1, and the output shaft thereof is connected with the cleaning left shaft 2 and the cleaning right shaft 3 through the plum blossom coupling II 26.

[0028] Further, the pushing device comprises a push plate 4, a support rail 5, a V-shaped guide plate 6, a ball screw 14, a ball screw nut 15, a plum blossom coupling I 16, a motor I 17, an open deep groove ball bearing 21, a ball screw nut seat 22, a ball screw support seat 23 and a sliding block 25. The V-shaped guide plate 6 is located directly below the outlet of the cleaning feeding device. The motor I 17, the support rail 5 and the ball screw support seat 23 are fixed on the rack 1. The two sliding blocks 25 are symmetrically and slidingly installed on the support rail 5. The V-shaped guide plate 6 is fixedly installed on the support rail 5. The ball screw 14 is installed at the ends thereof on the ball screw support seat 23 at the end of the rack 1 through the open deep groove ball bearing 21. The front end is connected with the output shaft of the motor I 17 through the plum blossom coupling I 16. The ball screw nut 15 is installed on the ball screw 14. The ball screw nut seat 22 is installed at the end of the ball screw nut 15. The push plate 4 is fixedly connected with the ball screw nut seat 22, and the two ends of the bottom of the push plate 4 are fixed on the two symmetric sliding blocks 25. The push plate 4 is provided with a protruding structure, and the lower part of the protruding structure is provided with a through hole for the V-shaped guide plate 6 to pass through.

[0029] The sliding block 25 can reciprocate on the support rail 5. The push plate 4 is connected with the ball screw nut seat 22 through bolts to form linkage. The motor I 17 drives the ball screw 14 to move, thereby driving the ball screw nut 15 and the ball screw nut seat 22 to move, and thereby enabling the push plate 4 to move bidirectionally. At the same time, the sliding blocks 25 on both sides of the V-shaped guide plate 6 make the push plate 4 run more stably.

[0030] Further, the convex structure is equidistantly arranged transverse long strip, the interval between two adjacent transverse long strip is greater than the width of the blade on the transverse cutter group 11, to ensure that the radish can be effectively and without missing cutting, the bottom of the convex structure is dovetail groove structure corresponding to the upper end surface of the V-shaped guide plate 6.

[0031] Further, the cutting and hanging device further comprises motor III 24, hole output planetary reducer 7, eccentric wheel 8, unloading pusher 9, the motor III 24 is fixed on the rack 1, the hole output planetary reducer 7 is connected with the motor III 24, one end of the eccentric wheel 8 is connected with the hole output planetary reducer 7, the other end is connected with the unloading pusher 9, the eccentric wheel 8 and the unloading pusher 9 are located between the cutter groove I 19 and the cutter groove II 20, the receiving plate 12 is installed below the cutter groove I 19 and the cutter groove II 20.

[0032] Further, the interval between the cutter groove I 19 and the cutter groove II 20 is 60mm, so that the radish is not completely cut off, showing a unique hanging shape.

[0033] Further, the bottom of the rack 1 is fixedly provided with a caster device 13.

[0034] Further, the embedded grid cutter head 27 is a 120x120mm grid cutter head.

[0035] Further, the longitudinal cutter group 10, the transverse cutter group 11 and the embedded grid cutter head 27 are detachably installed and the interval of the blades on the three can be adjusted, so that the longitudinal cutter group 10, the transverse cutter group 11 and the embedded grid cutter head 27 can be repeatedly disassembled.

[0036] The utility model discloses a working principle is: once multifunctional radish on -the -spot automatic processing machine is connected power supply, first, when white radish enters from the feed inlet, the staff adds clean water in the cleaning feeding device of frame 1, motor II 18 controls positive and negative rotation, can make radish repeatedly realize repeatedly cleaning in the cleaning process, until radish is cleaned, and clean left axle 2 and clean right axle 3 drive white radish to move forward, until after white radish is cleaned, send into V type guide plate 6, namely clean left axle 2 and clean left axle 3 can complete cleaning and feeding two movements simultaneously when doing rotary motion. Then, motor I 117 positive and negative rotation drive ball screw 14 to realize forward and backward movement, ball screw nut 15 is installed on ball screw 14, nut seat connector 22 is installed on the end of ball screw nut 15, and the bottom of push plate 4 is connected through bolt and ball screw nut seat 22 to form linkage, drives push plate 4 to realize bidirectional movement. The slider 25 installed on the both sides of support guide rail 5 makes feeding movement more stable. The terminal of ball screw 14 is closely linked with motor I 117 responsible for material pushing through plum blossom coupling I 116. Motor I 117 controls forward and backward movement of horizontal material push plate 4 through positive and negative rotation control, and then the cutting and hanging device formed by two groups of longitudinal cutter groups 10 and transverse cutter groups 11 with 60mm spacing fixed in the machine body structure. First, the blade on transverse cutter group 11 will process the radish pushed into continuous slices, and then these slices are finely cut into strips under the action of the blade on longitudinal cutter group 10. Then, under the control of motor III 24, eccentric wheel 8 and discharge push rack 9 between the two blade units unload radish to the already threaded hanging line, so as to facilitate subsequent processing. In the design of longitudinal cutter group 10 and transverse cutter group 11, 60mm spacing is deliberately kept, and this design strategy causes radish not to be completely cut off, showing a unique hanging shape, which we call "radish hanging". This design allows the radish to be cut into strips. When transverse cutter group 11 is installed in blade groove I 119, and longitudinal cutter group 10 is installed in blade groove II 120, it is a cutting and hanging device, realizing the cutting and hanging function; when transverse cutter group 11 is installed in blade groove I 119, and 120*120mm embedded grid cutter head 27 is installed in blade groove II 120, it is a cutting and slicing device, realizing the cutting and slicing function.

[0037] In the utility model, ball screw 14 can guarantee and effectively improve the feeding accuracy and response speed of push plate 4. The symmetrical distribution of cutting and hanging device formed by longitudinal cutter group 10 and transverse cutter group 11 and cutting and slicing device formed by embedded grid cutter head 27 on frame 1 makes push plate complete radish hanging and radish strip or radish silk processing in one stroke, effectively improving work efficiency.

[0038] The specific implementation of the utility model is described in detail above in combination with the drawings, but the utility model is not limited to the above implementation, and various changes can be made within the knowledge of those skilled in the art without departing from the purpose of the utility model.

Claims

1. A multi-functional radish hanging strip processing machine, characterized in that: The utility model provides a kind of automatic cutting and hanging device, including rack (1) and be installed on it cleaning feeding device, pusher, cut and hang device, cleaning feeding device is located the lower of rack (1) inlet, the inlet end of pusher is located the just below of cleaning feeding device discharge port, cut and hang device is located the end of pusher, rack (1) end interval, symmetrically equipped with knife groove I (19) and knife groove II (20), knife groove II (20) is located the rear of knife groove I (19), transverse knife group (11) in cut and hang device is installed in knife groove I (19), longitudinal knife group (10) or embedded grid cutter head (27) in cut and hang device is installed in knife groove II (20).

2. A multi-functional processing machine for radish hanging strip according to claim 1, characterized in that: The cleaning feeding device includes a cleaning left shaft (2), a cleaning right shaft (3), a motor II (18), and a plum blossom coupling II (26). The motor II (18) is fixed on the rack (1) and its output shaft is connected with the symmetrically installed cleaning left shaft (2) and cleaning right shaft (3) through the plum blossom coupling II (26).

3. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The pusher includes a push plate (4), a support rail (5), a V-shaped guide plate (6), a ball screw (14), a ball screw nut (15), a plum blossom coupling I (16), a motor I (17), an open deep groove ball bearing (21), a ball screw nut seat (22), a ball screw support seat (23), and a sliding block (25). The V-shaped guide plate (6) is located just below the discharge port of the cleaning feeding device. The motor I (17), the support rail (5), and the ball screw support seat (23) are fixed on the rack (1). The two sliding blocks (25) are symmetrically and slidingly installed on the support rail (5). The V-shaped guide plate (6) is fixedly installed on the support rail (5). The ball screw (14) is installed on the ball screw support seat (23) at both ends of the rack (1) through the open deep groove ball bearing (21). The front end is connected with the output shaft of the motor I (17) through the plum blossom coupling I (16). The ball screw nut (15) is installed on the ball screw (14). The ball screw nut seat (22) is installed on the end of the ball screw nut (15). The push plate (4) is fixedly connected with the ball screw nut seat (22), and the bottom of the push plate (4) is fixed on the two symmetric sliding blocks (25). The push plate (4) is provided with a protruding structure, and the lower part of the protruding structure is provided with a through hole for the V-shaped guide plate (6) to pass through.

4. The carrot stick multi-functional processing machine according to claim 3, characterized in that: The protruding structure is a transverse long strip arranged at equal intervals, and the distance between the two adjacent transverse long strips is greater than the width of the blade on the transverse knife group (11). The bottom of the protruding structure is a dovetail groove structure corresponding to the upper end surface of the V-shaped guide plate (6).

5. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The cut and hang device further includes a motor III (24), a hole output planetary reducer (7), an eccentric wheel (8), a discharging push rack (9), and a material receiving plate (12). The motor III (24) is fixed on the rack (1). The hole output planetary reducer (7) is connected with the motor III (24). One end of the eccentric wheel (8) is connected with the hole output planetary reducer (7), and the other end is connected with the discharging push rack (9). The eccentric wheel (8) and the discharging push rack (9) are located between the knife groove I (19) and the knife groove II (20). The material receiving plate (12) is installed below the knife groove I (19) and the knife groove II (20).

6. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The distance between the first knife groove (19) and the second knife groove (20) is 60mm.

7. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The chassis (1) is fixedly connected with a wheel device (13) at the bottom.

8. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The embedded grid cutter head (27) is a 120*120mm grid cutter head.

9. The carrot stick multi-functional processing machine according to claim 1, characterized in that: The longitudinal cutter group (10), the transverse cutter group (11) and the embedded grid cutter head (27) are detachably installed, and the distance between the upper blades of the three is adjustable.