Pickled Vegetable Slicing Machine with Uniform and Consistent Slicing Specifications

By introducing a carding box and adjustment mechanism into the pickle shredder, the problems of uneven and accumulation of pickle shreds are solved, and uniform shredding and equipment are achieved energy-saving operation, which improves the production efficiency and quality of the pickle shredder.

CN120080358BActive Publication Date: 2025-07-18XINXIANG INST OF TECH +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510583076.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-07-18
Estimated Expiration
2045-05-07

AI Technical Summary

Technical Problem

When the existing pickle shredders process sheet-shaped raw materials of different shapes and sizes, the cut pickle shreds lead to uneven length and thickness, and are prone to stacking and clogging, affecting product quality and efficiency.

Method used

A pickle shredder including a conveyor belt, a carding box and a cutting box is designed. The raw materials are combed multiple times through the carding rod and brush plate in the carding box, and the raw materials are controlled in combination with the adjustment mechanism to control the raw materials conveying amount and the reciprocating movement of the cutting mechanism to ensure that the raw materials are neatly conveyed and evenly cut.

Benefits of technology

The specifications of pickled shreds are uniformly unified, which avoids raw material accumulation and blockage, improves the quality and efficiency of shredding, and realizes the energy-saving operation of the equipment through complex transmission design.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120080358B_ABST
    Figure CN120080358B_ABST
Patent Text Reader

Abstract

The present invention discloses a pickled vegetable slicing machine with uniform and consistent slicing specifications, specifically relating to the field of pickled vegetable slicing machines. It includes a machine shell, a conveyor belt arranged on the top of the machine shell, and supporting side plates located on both sides of the conveyor belt. A cutting box, a combing box, and a feeding box are arranged on the top of the conveyor belt. An adjusting mechanism for controlling the raw material conveying amount is arranged in the middle of the feeding box. Firstly, the present invention controls the rotation of the guide roller through a shaft rod, and controls the reciprocating movement of the first moving plate driven by the combing rod, the short combing brush plate, and the long combing brush plate through the cooperation of the guide groove and the fixed column, so as to comb the raw materials located on the top of the conveyor belt multiple times, avoid the occurrence of stacking, improve the neatness of combing, make the conveying posture of the raw materials more regular, with uniform thickness, improve the quality of the cut finished products, and can control the feeding rate of the raw materials gathered inside the feeding box through the arranged adjusting mechanism, avoid the blockage caused by the stacking of raw materials, and improve the slicing quality and efficiency.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of pickled vegetable slicing machines. More specifically, the present invention relates to a pickled vegetable slicing machine with uniform and consistent slicing specifications. Background Art

[0002] Pickled vegetables are common side dishes for meals among the Han people, usually eaten with porridge. In the pickled vegetable production industry, slicing is one of the important processes in pickled vegetable processing. Depending on the industry, slicing machines vary greatly;

[0003] Since the shapes and sizes of pickled vegetable raw materials are diverse, when dealing with sheet-shaped raw materials such as mustard greens, Chinese cabbages, spinach, and rape, when entering existing slicing machines, due to the lack of effective sorting, they often enter the slicing area in irregular postures. This results in uneven lengths and thicknesses of the cut pickled vegetable filaments, affecting the appearance and taste of the product. Moreover, the raw materials are prone to accumulate and block inside the slicing machine. Some raw materials cannot be cut smoothly, while others are deformed due to excessive extrusion, seriously reducing the quality and efficiency of slicing. Therefore, a pickled vegetable slicing machine with uniform and consistent slicing specifications is proposed. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a pickled vegetable slicing machine with uniform and consistent slicing specifications to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A pickled vegetable slicing machine with uniform and consistent slicing specifications, including a machine shell. A conveyor belt and supporting side plates located on both sides of the conveyor belt are provided at the top of the machine shell. The placed raw materials can be conveyed through the conveyor belt and limited by the supporting side plates. A cutting box, a sorting box, and a feeding box are provided at the top of the conveyor belt. An adjusting mechanism for controlling the conveying amount of the raw materials is provided in the middle of the feeding box. A reciprocating cutting mechanism for slicing is provided in the middle of the cutting box for easy maintenance. Through the cutting box, the raw materials on the top of the conveyor belt can be sliced through the internal reciprocating cutting mechanism. Through the adjusting mechanism, the raw materials inside the feeding box can be sequentially input to the top of the conveyor belt for convenient conveying;

[0006] A first moving plate is arranged in the middle of the carding box. A fixing column is fixedly connected to the center of the top of the first moving plate. A guide roller is arranged on the top of the first moving plate. A guide groove is formed in the middle of the guide roller. The bottom of the first moving plate is fixedly connected with carding rods, short carding brush plates, and long carding brush plates. Transmission tension adjustment mechanisms are arranged on both sides of the carding box. By rotating the guide roller, through the cooperation of the guide groove and the fixing column, the first moving plate can be controlled to slide back and forth inside the carding box, thereby driving the carding rods, short carding brush plates, and long carding brush plates to move back and forth, and the raw materials on the top of the conveyor belt can be carded, so that the raw materials are more neatly conveyed to one end of the reciprocating cutting mechanism, improving the carding effect. Moreover, the carding rods, short carding brush plates, and long carding brush plates are all made of elastic rubber material, which is convenient for deformation during carding.

[0007] In a preferred embodiment, a anti-blocking strip is fixedly connected between the two support side plates at the top position of the conveyor belt. The anti-blocking strip prevents the raw materials from getting stuck in the gap between the conveyor belt and the anti-blocking strip. The carding box is arranged between the cutting box and the feeding box. A blanking guiding plate is fixedly connected to the position at the bottom of one end of the conveyor belt near the cutting box of the machine shell. The blanking guiding plate facilitates blanking guidance. The fixing column corresponds to the guide groove, and one end of the fixing column extends into the interior of the guide groove. A shaft rod is fixedly connected to the middle of the guide roller. One end of the shaft rod penetrates through the carding box and is fixedly connected with a second transmission gear. A second transmission belt is sleeved in the middle of the second transmission gear. By driving the shaft rod to drive the guide roller to rotate through the transmission of the second transmission belt, the first moving plate can be controlled to move repeatedly inside the carding box, which is convenient for carding use.

[0008] In a preferred embodiment, the short carding brush plate is arranged between the carding rod and the long carding brush plate. The carding rod is arranged on the side close to the cutting box. Support sliding grooves are symmetrically formed on both sides of the first moving plate. Support sliding strips are fixedly connected to the positions corresponding to the support sliding grooves in the middle of the carding box. The support sliding strips are arranged in the middle of the support sliding grooves. The cross-sectional shape of the support sliding strips is set as "T" shape. The raw materials are initially carded by the carding rod, then secondarily carded by the short carding brush plate, and further carded by the long carding brush plate to improve the neatness of carding. Through the cooperation of the support sliding grooves and the support sliding strips, the stability of the movement of the first moving plate is improved.

[0009] In a preferred embodiment, the reciprocating cutting mechanism includes a tool rest disposed in the middle of the cutting box. A tool slot is formed in the middle of the tool rest, and a tool plate is inserted in the middle of the tool slot. A first rotating rod is provided in the middle of the cutting box, and a stabilizing mechanism is arranged in the middle of the cutting box. One side of the tool rest is fixedly connected with a connecting rod. A tool outlet hole is formed at the bottom of the cutting box. Rubber scraping strips are symmetrically and fixedly connected to both sides of the bottom of the cutting box at the bottom of the tool outlet hole. The top of the cutting box is connected with a maintenance cover plate by rivets. One end of the tool plate penetrates through the middle of the tool outlet hole and is located between the two rubber scraping strips, and one end of the rubber scraping strip is attached to the wall of the tool plate.

[0010] In a preferred embodiment, one end of the first rotating rod penetrates through the cutting box and is fixedly connected with two first transmission gears. A support seat is sleeved on the middle of the first rotating rod, and the support seat is fixed in the middle of the cutting box. One end of the first rotating rod is fixedly connected with a first bevel gear. The top of the tool plate is fixedly connected with a mounting ear plate, and the mounting ear plate is fixed on the top of the tool rest by rivets. A first transmission belt is sleeved on the middle of one of the first transmission gears. One end of the first transmission belt is connected with a drive shaft, and one end of the drive shaft is connected with a motor. The middle of the other first transmission gear is connected with one end of a second transmission belt.

[0011] In a preferred embodiment, a rotating disk is arranged on one side of the tool rest. One end of the rotating disk is fixedly connected with a second rotating rod. A second bevel gear is sleeved on one end of the second rotating rod, and the second bevel gear meshes with the first bevel gear. A limiting ring groove is formed on one side of the rotating disk. One end of the connecting rod extends into the limiting ring groove. The axis line of the limiting ring groove is misaligned with the axis line of the rotating disk. By controlling the first rotating rod to drive the first bevel gear to rotate through the first transmission gear, the second rotating rod can be controlled to drive the rotating disk to rotate through the second bevel gear. Thus, through the cooperation of the limiting ring groove and the connecting rod, the tool rest can be controlled to drive the tool plate to move up and down, which is convenient for controlling the tool plate to cut the raw materials on the top of the conveyor belt into shreds.

[0012] In a preferred embodiment, the stabilizing mechanism includes a stabilizing rod and a limiting block fixed in the middle of the cutting box. A stabilizing frame is fixedly connected to one side of the tool rest, and the stabilizing frame is sleeved on the middle of the stabilizing rod. A limiting sliding groove is formed on one side of the tool rest, and the limiting block penetrates through the middle of the limiting sliding groove. The cross-sectional shape of the limiting block is set as "T" shape. Through the cooperation of the stabilizing rod and the stabilizing frame, and through the cooperation of the limiting sliding groove and the limiting block, the stability of the up and down movement of the tool rest is improved, and the rubber scraping strip can scrape the residues on the surface of the tool plate, improving the blanking effect.

[0013] In a preferred embodiment, the adjusting mechanism includes a blanking baffle disposed on one side of the middle of the feeding box. One side of the top of the feeding box is fixedly connected to a first electric push rod, and the moving end of the first electric push rod is fixedly connected to the blanking baffle. A stable sliding groove is formed on one side of the blanking baffle, and a stable sliding rod fixedly connected to the inner cavity of the feeding box corresponding to the stable sliding groove penetrates through the middle of the stable sliding groove. Starting the first electric push rod to control the stable sliding groove to slide inside the feeding box can adjust the size of the discharge port at the bottom of the feeding box, which is convenient for adjustment and use. And through the cooperation of the stable sliding groove and the stable sliding rod, the stability of the movement of the blanking baffle is improved.

[0014] In a preferred embodiment, the transmission tension adjustment mechanism includes fixing blocks fixed on both sides of the carding box. A second electric push rod is disposed at the bottom of the fixing block, and the second electric push rod is fixed on the machine shell through a bracket. One side of the top of the carding box is fixedly connected to a fixing plate, a screw rod is inserted through the middle of the fixing plate, and a stable guiding groove is formed on one side of the carding box.

[0015] On one side of the output end of the machine shell, a driving shaft is connected. A first transmission belt is sleeved in the middle of the driving shaft. One end of the first transmission belt is sleeved in the middle of one of the first transmission gears. One end of the screw rod is fixedly connected to a second moving plate. One end of the long carding brush plate is fixedly connected to a tensioning gear, and the tensioning gear is in contact with the second transmission belt. A stable guiding bar adapted to the stable guiding groove is fixedly connected to one side of the second moving plate, and the stable guiding bar is disposed in the middle of the stable guiding groove. By controlling the driving shaft by a motor to drive the first transmission belt to rotate, it is convenient to drive the transmission. And through the second transmission belt, the second transmission gear can be controlled to drive the guide roller to rotate, which is convenient to drive the transmission. And by starting the second electric push rod to control the fixing block to drive the carding box to move up and down, it is convenient to adjust the heights of the carding rod, the short carding brush plate, and the long carding brush plate on the top of the conveyor belt. When the distance between the first rotating rod and the shaft rod changes, the driving shaft can be rotated to control the second moving plate to drive the tensioning gear to squeeze the second transmission belt, so that the second transmission belt can always be tightened, improving the transmission effect. And through the cooperation of the stable guiding bar and the stable guiding groove, the stability of the movement of the second moving plate is improved.

[0016] The technical effects and advantages of the present invention:

[0017] 1. First, in the present invention, the rotation of the guide roller is controlled by the shaft rod, and the reciprocating movement of the first moving plate driving the carding rod, the short carding brush plate, and the long carding brush plate is controlled through the cooperation of the guide groove and the fixed column. This can card the raw materials located at the top of the conveyor belt multiple times, avoid the occurrence of accumulation, improve the neatness of carding, make the conveying posture of the raw materials more regular, with uniform thickness, improve the quality of the cut finished products, and the feeding rate of the raw materials gathered inside the feeding box can be controlled by the provided adjusting mechanism, avoiding the blockage caused by raw material accumulation, and improving the quality and efficiency of wire cutting;

[0018] 2. Further, in the present invention, through the provided reciprocating cutting mechanism, the reciprocating up and down movement of the knife plate can be controlled, so as to reciprocatingly cut the conveyed raw materials. And through the provided rubber scraping strip, the finished products attached to the surface of the knife plate can be scraped off, improving the cutting effect. At the same time, through the provided anti-blocking strip, it can be avoided that the raw materials or finished products are stuck between the conveyor belt and the supporting side plate, improving the conveying effect. And by controlling the conveying rate of the conveyor belt, the width of the filamentous pickled vegetable raw materials can be controlled, which is convenient for use;

[0019] 3. Also, in the present invention, by starting the second electric push rod to control the up and down movement of the carding box, the carding height can be adjusted as needed. And by rotating the screw rod to control the movement of the second moving plate driving the tensioning gear, the transmission quality of the second transmission belt can be assisted in adjusting when the height of the carding box is adjusted. Through the cooperation of the first transmission belt and the second transmission belt, one motor can control the simultaneous rotation of the first rotating rod and the second transmission gear, playing an energy-saving role. Through the complex transmission design, the multi-action synchronous operation of the equipment is realized, enabling the two working stations to work orderly in different stages, greatly shortening the working cycle of the equipment, achieving the effect of energy conservation and reducing energy consumption, meeting the environmental protection requirements of energy conservation and emission reduction, and at the same time reducing costs;

[0020] In summary, through the mutual influence of the above multiple functions, it is convenient to card the conveyed raw materials multiple times, avoid the occurrence of accumulation, improve the neatness of carding, make the conveying posture of the raw materials more regular, with uniform thickness, improve the quality of the cut finished products, avoid the blockage caused by raw material accumulation, improve the quality and efficiency of wire cutting. At the same time, through the drive of one drive shaft, the simultaneous operation of multiple structures is realized, playing an energy-saving role. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is the overall structural schematic diagram of the present invention.

[0022] Figure 2 is the cross-sectional structural schematic diagram of the present invention.

[0023] Figure 3 is the structural schematic diagram of the carding box of the present invention.

[0024] Figure 4Schematic diagram of the split structure of the guide roller, the first moving plate and the carding box of the present invention.

[0025] Figure 5 Schematic diagram of the split cross-sectional structure of the cutting box and the wire cutting mechanism of the present invention.

[0026] Figure 6 Schematic diagram of the split structure of the cutting box and the splitting mechanism of the present invention from another angle.

[0027] Figure 7 Schematic diagram of the split structure of the feed box and the blanking baffle of the present invention.

[0028] Figure 8 For the present invention Figure 1 Partial enlarged structure schematic diagram at position A in the present invention.

[0029] Reference numerals are: 1, machine housing; 2, conveyor belt; 3, support side plate; 4, anti-blocking strip; 5, blanking guide plate; 6, cutting box; 7, carding box; 8, feed box; 9, first moving plate; 10, fixed column; 11, guide roller; 12, guide groove; 13, carding rod; 14, short carding brush plate; 15, long carding brush plate; 16, tool rest; 17, tool groove; 18, tool plate; 19, mounting ear plate; 20, connecting rod; 21, first rotating rod; 22, first transmission gear; 23, first bevel gear; 24, rotating disc; 25, second rotating rod; 26, second bevel gear; 27, limit ring groove; 28, stabilizing frame; 29, limit sliding groove; 30, limit block; 31, stabilizing rod; 32, tool exit hole; 33, rubber scraping strip; 34, support seat; 35, maintenance cover plate; 36, shaft rod; 37, second transmission gear; 38, support sliding strip; 39, support sliding groove; 40, blanking baffle; 41, first electric push rod; 42, stabilizing sliding groove; 43, stabilizing sliding rod; 44, first transmission toothed belt; 45, drive shaft; 46, fixed block; 47, second electric push rod; 48, fixing plate; 49, screw; 50, second moving plate; 51, tensioning gear; 52, stabilizing guide groove; 53, second transmission toothed belt. Detailed implementation manners

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0031] As shown in the attached Figure 1-8The pickled vegetable slicing machine with uniform and consistent slicing specifications shown in the figure includes a machine shell 1. At the top of the machine shell 1, there is a conveyor belt 2 and support side plates 3 located on both sides of the conveyor belt 2. The placed raw materials can be conveyed through the conveyor belt 2 and limited by the support side plates 3. At the top of the conveyor belt 2, there are a cutting box 6, a combing box 7, and a feeding box 8. In the middle of the feeding box 8, there is an adjustment mechanism for controlling the conveying amount of the raw materials. In the middle of the cutting box 6, there is a reciprocating cutting mechanism for slicing that is convenient for maintenance. Through the cutting box 6, the raw materials on the top of the conveyor belt 2 can be sliced by the internal reciprocating cutting mechanism. Through the adjustment mechanism, the raw materials inside the feeding box 8 can be sequentially input to the top of the conveyor belt 2, facilitating the conveying;

[0032] In the middle of the combing box 7, there is a first moving plate 9. At the exact center of the top of the first moving plate 9, there is a fixed column 10 fixedly connected. On the top of the first moving plate 9, there is a guide roller 11. In the middle of the guide roller 11, there is a guide groove 12. At the bottom of the first moving plate 9, there are fixedly connected a combing rod 13, a short combing brush plate 14, and a long combing brush plate 15. On both sides of the combing box 7, there is a transmission tension adjustment mechanism. By rotating the guide roller 11, through the cooperation of the guide groove 12 and the fixed column 10, the first moving plate 9 can be controlled to slide back and forth inside the combing box 7, thereby driving the combing rod 13, the short combing brush plate 14, and the long combing brush plate 15 to move back and forth. The raw materials on the top of the conveyor belt 2 can be combed, enabling the raw materials to be conveyed more neatly towards one end of the reciprocating cutting mechanism, improving the combing effect. Moreover, the combing rod 13, the short combing brush plate 14, and the long combing brush plate 15 are all made of elastic rubber material, facilitating deformation during combing. Through a complex transmission design, the multi-action synchronous operation of the equipment is achieved, enabling the two working stations to work orderly at different stages, significantly shortening the working cycle of the equipment, achieving the effect of energy conservation and reducing energy consumption, meeting the environmental protection requirements of energy conservation and emission reduction, and simultaneously reducing costs;

[0033] As attached Figure 1-4As shown in the figure, a anti-clogging strip 4 is fixedly connected between two support side plates 3 at the top position of the conveyor belt 2. The carding box 7 is arranged between the cutting box 6 and the feeding box 8. One end of the machine shell 1 close to the cutting box 6 is fixedly connected with a blanking guide plate 5 at the bottom position of one end of the conveyor belt 2. The fixed column 10 corresponds to the guide groove 12. One end of the fixed column 10 extends into the inside of the guide groove 12. A shaft rod 36 is fixedly connected to the middle of the guide roller 11. One end of the shaft rod 36 penetrates through the carding box 7 and is fixedly connected with a second transmission gear 37. A second transmission belt 53 is sleeved in the middle of the second transmission gear 37. The short carding brush plate 14 is arranged between the carding rod 13 and the long carding brush plate 15. The carding rod 13 is arranged on the side close to the cutting box 6. Support sliding grooves 39 are symmetrically opened on both sides of the first moving plate 9. Support sliding strips 38 are fixedly connected to the corresponding positions of the middle of the carding box 7 and the support sliding grooves 39. The support sliding strips 38 are arranged in the middle of the support sliding grooves 39. The cross-sectional shape of the support sliding strips 38 is set as "T" shape. The anti-clogging strip 4 is used to prevent the raw materials from getting stuck in the gap between the conveyor belt 2 and the anti-clogging strip 4. The blanking guide plate 5 is used for convenient blanking guidance. The rotation of the guide roller 11 is driven by the transmission of the second transmission belt 53 to drive the shaft rod 36, so as to control the first moving plate 9 to move repeatedly inside the carding box 7, which is convenient for carding use. The raw materials are initially carded by the carding rod 13, then carded for the second time by the short carding brush plate 14, and further carded by the long carding brush plate 15 to improve the neatness of carding. The cooperation of the support sliding grooves 39 and the support sliding strips 38 improves the stability of the movement of the first moving plate 9.

[0034] As shown in the attached Figure 2 , 5As shown in FIGS. 6, the reciprocating cutting mechanism includes a tool rest 16 disposed in the middle of the cutting box 6. A tool groove 17 is formed in the middle of the tool rest 16, and a tool plate 18 is inserted in the middle of the tool groove 17. A first rotating rod 21 is disposed in the middle of the cutting box 6, and a stabilizing mechanism is disposed in the middle of the cutting box 6. One side of the tool rest 16 is fixedly connected to a connecting rod 20. An exit hole 32 is formed at the bottom of the cutting box 6. Rubber scraping strips 33 are symmetrically and fixedly connected to both sides of the bottom of the cutting box 6 at the bottom of the exit hole 32. The top of the cutting box 6 is connected to a maintenance cover plate 35 by rivets. One end of the tool plate 18 passes through the middle of the exit hole 32 and is located between the two rubber scraping strips 33. One end of the rubber scraping strip 33 is in contact with the wall of the tool plate 18. One end of the first rotating rod 21 passes through the cutting box 6 and is fixedly connected to two first transmission gears 22. A support seat 34 is sleeved in the middle of the first rotating rod 21, and the support seat 34 is fixed in the middle of the cutting box 6. One end of the first rotating rod 21 is fixedly connected to a first bevel gear 23. A mounting ear plate 19 is fixedly connected to the top of the tool plate 18, and the mounting ear plate 19 is fixed to the top of the tool rest 16 by rivets. A rotating disk 24 is disposed on one side of the tool rest 16. One end of the rotating disk 24 is fixedly connected to a second rotating rod 25. A second bevel gear 26 is sleeved on one end of the second rotating rod 25, and the second bevel gear 26 meshes with the first bevel gear 23. A limiting ring groove 27 is formed on one side of the rotating disk 24. One end of the connecting rod 20 extends into the limiting ring groove 27. The axis of the limiting ring groove 27 is misaligned with the axis of the rotating disk 24. A first transmission belt 44 is sleeved in the middle of one of the first transmission gears 22. One end of the first transmission belt 44 is connected to a drive shaft 45, and one end of the drive shaft 45 is connected to a motor. The middle of the other first transmission gear 22 is connected to one end of a second transmission belt 53. The stabilizing mechanism includes a stabilizing rod 31 and a limiting block 30 fixed in the middle of the cutting box 6. A stabilizing frame 28 is fixedly connected to one side of the tool rest 16, and the stabilizing frame 28 is sleeved in the middle of the stabilizing rod 31. A limiting chute 29 is formed on one side of the tool rest 16, and the limiting block 30 passes through the middle of the limiting chute 29. The cross-sectional shape of the limiting block 30 is set to be "T" shaped. By controlling the first rotating rod 21 through the first transmission gear 22 to drive the first bevel gear 23 to rotate, the second rotating rod 25 can be controlled through the second bevel gear 26 to drive the rotating disk 24 to rotate. Thus, through the cooperation of the limiting ring groove 27 and the connecting rod 20, when the limiting ring groove 27 rotates centrifugally, the tool rest 16 can be controlled through the connecting rod 20 to drive the tool plate 18 to move up and down, which is convenient for controlling the tool plate 18 to cut the raw materials on the top of the conveyor belt 2. Since the thickness of the pickles is small, the cut finished products will be in the form of filaments, thus completing the filament cutting work. Through the cooperation of the stabilizing rod 31 and the stabilizing frame 28, and through the cooperation of the limiting chute 29 and the limiting block 30, the stability of the up and down movement of the tool rest 16 is improved, and the residual finished products on the surface of the tool plate 18 can be scraped off by the rubber scraping strips 33, improving the blanking effect. And by controlling the conveying speed of the conveyor belt 2, the width of the filamentous pickle raw materials can be controlled.Convenient to control and use.

[0035] As shown in the attached Figure 1 , 2 , as shown in Figure 7, the adjusting mechanism includes a blanking baffle 40 arranged on one side of the middle part of the feeding box 8. One side of the top of the feeding box 8 is fixedly connected with a first electric push rod 41. The moving end of the first electric push rod 41 is fixedly connected with the blanking baffle 40. A stable sliding groove 42 is opened on one side of the blanking baffle 40. A stable sliding rod 43 is fixedly connected to the position corresponding to the stable sliding groove 42 in the inner cavity of the feeding box 8. The stable sliding rod 43 penetrates through the middle of the stable sliding groove 42. Starting the first electric push rod 41 can control the stable sliding groove 42 to slide inside the feeding box 8, which can adjust the size of the discharge port at the bottom of the feeding box 8, facilitating adjustment and use. And through the cooperation of the stable sliding groove 42 and the stable sliding rod 43, the stability of the movement of the blanking baffle 40 is improved.

[0036] As shown in the attached Figure 1 , 3 , as shown in Figure 8, the transmission tension adjustment mechanism includes fixing blocks 46 fixed on both sides of the carding box 7. A second electric push rod 47 is arranged at the bottom of the fixing block 46. The second electric push rod 47 is fixed on the machine shell 1 through a bracket. One side of the top of the carding box 7 is fixedly connected with a fixing plate 48. A screw rod 49 is inserted in the middle of the fixing plate 48. A stable guiding groove 52 is opened on one side of the carding box 7. The output end of one side of the machine shell 1 is connected with a driving shaft 45. A first transmission belt 44 is sleeved in the middle of the driving shaft 45. One end of the first transmission belt 44 is sleeved in the middle of one of the first transmission gears 22. One end of the screw rod 49 is fixedly connected with a second moving plate 50. One end of the long carding brush plate 15 is fixedly connected with a tensioning gear 51. The tensioning gear 51 is in contact with the second transmission belt 53. A stable guiding bar adapted to the stable guiding groove 52 is fixedly connected to one side of the second moving plate 50. The stable guiding bar is arranged in the middle of the stable guiding groove 52. By controlling the driving shaft 45 with a motor to drive the first transmission belt 44 to rotate, it is convenient to drive the transmission. And through the second transmission belt 53, the second transmission gear 37 can be controlled to drive the guide roller 11 to rotate, which is convenient to drive the transmission. And by starting the second electric push rod 47 to control the fixing block 46 to drive the carding box 7 to move up and down, it is convenient to adjust the heights of the carding rod 13, the short carding brush plate 14, and the long carding brush plate 15 on the top of the conveyor belt 2. When the distance between the first rotating rod 21 and the shaft rod 36 changes, the driving shaft 45 can be rotated to control the second moving plate 50 to drive the tensioning gear 51 to squeeze the second transmission belt 53, so that the second transmission belt 53 can always be tightened, improving the transmission effect. And through the cooperation of the stable guiding bar and the stable guiding groove 52, the stability of the movement of the second moving plate 50 is improved.

[0037] Working principle of the present invention: When in use, put sliced raw materials of pickled vegetables to be shredded, such as mustard, Chinese cabbage, spinach, rape, etc., into the interior of the feeding box 8. The raw materials of pickled vegetables inside the feeding box 8 will be limited and conveyed to the top of the conveyor belt 2 through the blockage of the feeding baffle 40. And by starting the first electric push rod 41, control the up and down movement of the feeding baffle 40 for convenient adjustment. Then start the conveyor belt 2 to drive the raw materials to be conveyed to one end of the feeding guide plate 5;

[0038] At the same time, start the motor to control the rotation of the drive shaft 45, which can control the simultaneous rotation of the first rotating rod 21 and the shaft rod 36 through the first transmission belt 44 and the second transmission belt 53. At this time, the rotation of the shaft rod 36 will control the first moving plate 9 to drive the combing rod 13, the short combing brush plate 14, and the long combing brush plate 15 to move back and forth. The rotation of the first rotating rod 21 can successively control the up and down movement of the knife plate 18;

[0039] When the raw materials are at the bottom of the combing box 7, through the back-and-forth movement of the combing rod 13, the short combing brush plate 14, and the long combing brush plate 15, the raw materials on the top of the conveyor belt 2 can be combed multiple times, improving the dispersion uniformity and neatness of the raw materials;

[0040] When the raw materials correspond to the knife plate 18 in the cutting box 6, the knife plate 18 will cut the raw materials. And through the cooperation of controlling the stable conveyance of the conveyor belt 2, by controlling the distance between two cuts, the cutting width of the finished product can be controlled, so as to achieve the function of shredding. At the same time, through the rubber scraping strip 33, prevent the finished product from adhering to the knife plate 18, and make the finished product achieve discharging through the guidance of the feeding guide plate 5;

[0041] During combing and guiding, the height of the combing box 7 can be controlled by starting the second electric push rod 47, and the transmission tightness of the second transmission belt 53 can be controlled by rotating the screw rod 49 to improve the transmission effect. By opening the maintenance cover plate 35, it is convenient to maintain the mechanism inside the cutting box 6.

[0042] In the attached drawings of the disclosed embodiments of the present invention, only the structures related to the disclosed embodiments of the present disclosure are involved. For other structures, reference can be made to the general design. Without conflict, the same embodiment and different embodiments of the present invention can be combined with each other;

[0043] Finally: The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A pickled vegetable slicing machine with uniform and consistent slicing specifications, including a machine housing, characterized in that: The top of the casing is provided with a conveyor belt and support side plates located on both sides of the conveyor belt. The top of the conveyor belt is provided with a cutting box, a carding box, and a feeding box. The middle of the feeding box is provided with an adjusting mechanism for controlling the raw material conveying amount. The middle of the cutting box is provided with a reciprocating cutting mechanism for slicing that is convenient for maintenance; The middle of the carding box is provided with a first moving plate. The top middle position of the first moving plate is fixedly connected with a fixed column. The top of the first moving plate is provided with guide rollers. A guide groove is opened in the middle of the guide rollers. The bottom of the first moving plate is fixedly connected with carding rods, short carding brush plates, and long carding brush plates. Transmission tension adjusting mechanisms are arranged on both sides of the carding box; A anti-blocking strip is fixedly connected between the two support side plates at the top position of the conveyor belt. The carding box is arranged between the cutting box and the feeding box. One end of the casing near the cutting box is fixedly connected with a blanking guide plate at the bottom of one end of the conveyor belt. The fixed column corresponds to the guide groove. One end of the fixed column extends into the interior of the guide groove. A shaft rod is fixedly connected to the middle of the guide roller. One end of the shaft rod penetrates through the carding box and is fixedly connected with a second transmission gear. A second transmission belt is sleeved in the middle of the second transmission gear; The short carding brush plate is arranged between the carding rod and the long carding brush plate. The carding rod is arranged on the side close to the cutting box. Support sliding grooves are symmetrically opened on both sides of the first moving plate. Support sliding strips are fixedly connected to the middle of the carding box corresponding to the support sliding grooves. The support sliding strips are arranged in the middle of the support sliding grooves. The cross-sectional shape of the support sliding strips is set as "T"; The reciprocating cutting mechanism includes a tool rest arranged in the middle of the cutting box. A tool slot is opened in the middle of the tool rest. A tool plate is inserted into the middle of the tool slot. A first rotating rod is arranged in the middle of the cutting box. A stabilizing mechanism is arranged in the middle of the cutting box. One side of the tool rest is fixedly connected with a connecting rod. A tool exit hole is opened at the bottom of the cutting box. Rubber scraping strips are symmetrically and fixedly connected to both sides of the bottom of the cutting box at the bottom of the tool exit hole. The top of the cutting box is connected with a maintenance cover plate by rivets. One end of the tool plate penetrates through the middle of the tool exit hole and is located between the two rubber scraping strips. One end of the rubber scraping strip is attached to the wall of the tool plate; The stabilizing mechanism includes a stabilizing rod and a limiting block fixed in the middle of the cutting box. A stabilizing frame is fixedly connected to one side of the tool rest. The stabilizing frame is sleeved in the middle of the stabilizing rod. A limiting sliding groove is opened on one side of the tool rest. The limiting block penetrates through the middle of the limiting sliding groove. The cross-sectional shape of the limiting block is set as "T"; The adjusting mechanism includes a blanking baffle arranged on one side of the middle of the feeding box. A first electric push rod is fixedly connected to one side of the top of the feeding box. The moving end of the first electric push rod is fixedly connected with the blanking baffle. A stabilizing sliding groove is opened on one side of the blanking baffle. A stabilizing sliding rod is fixedly connected to the inner cavity of the feeding box corresponding to the stabilizing sliding groove. The stabilizing sliding rod penetrates through the middle of the stabilizing sliding groove; The transmission tightness adjustment mechanism includes fixed blocks fixed on both sides of the carding box. A second electric push rod is arranged at the bottom of the fixed block, and the second electric push rod is fixed on the machine shell through a bracket. A fixed plate is fixedly connected to the top of one side of the carding box. A screw rod is inserted in the middle of the fixed plate. A stable guide groove is formed on one side of the carding box; One output end of the machine shell is connected with a driving shaft. A first transmission toothed belt is sleeved in the middle of the driving shaft. One end of the first transmission toothed belt is sleeved in the middle of one of the first transmission gears. One end of the screw rod is fixedly connected with a second moving plate. One end of the long carding brush plate is fixedly connected with a tightness gear. The tightness gear is in contact with the second transmission toothed belt. A stable guide bar adapted to the stable guide groove is fixedly connected to one side of the second moving plate. The stable guide bar is arranged in the middle of the stable guide groove.

2. The pickled vegetable slicing machine with uniform and consistent slicing specifications according to claim 1, wherein: One end of the first rotating rod penetrates through the cutting box and is fixedly connected with two first transmission gears. A support seat is sleeved in the middle of the first rotating rod. The support seat is fixed in the middle of the cutting box. One end of the first rotating rod is fixedly connected with a first bevel gear. An installation ear plate is fixedly connected to the top of the knife plate. The installation ear plate is fixed on the top of the knife rest through a rivet. One of the first transmission gears has a first transmission toothed belt sleeved in the middle. One end of the first transmission toothed belt is connected with a driving shaft. One end of the driving shaft is connected with a motor. The middle of the other first transmission gear is connected with one end of the second transmission toothed belt.

3. The pickled vegetable slicing machine with uniform and consistent slicing specifications according to claim 1, characterized in that: A rotating disc is arranged on one side of the knife rest. One end of the rotating disc is fixedly connected with a second rotating rod. A second bevel gear is sleeved at one end of the second rotating rod. The second bevel gear meshes with the first bevel gear. A limiting ring groove is formed on one side of the rotating disc. One end of the connecting rod extends into the limiting ring groove. The axis of the limiting ring groove is misaligned with the axis of the rotating disc.

Citation Information

Patent Citations

  • Tobacco stem carding machine

    CN106473224A

  • Film batch slicing device

    CN110116427A