Slicing device for medicinal material processing
By designing a medicinal material slicer device with a adjustment device and a batch delivery system, the problems of section thickness fixation and medicinal material stacking in the prior art are solved, and the adjustment of slice thickness and accuracy and uniform slicing of medicinal material are achieved.
Patent Information
- Application Number
- CN202510287132.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-03-12
AI Technical Summary
The existing medicinal material slicing devices cannot adjust the blade position, resulting in the fixed slice thickness and cannot meet the needs of different thicknesses. The conveyor belt is always in the conveying state, which may lead to the accumulation of medicinal materials, uneven slices or waste.
A slicer device for processing medicinal materials is designed to transport medicinal materials through transmission rollers and conveyor belts, and the driving plate and adjustment screw driven by a motor are used to adjust the lifting amplitude of the lifting rod, so as to adjust the slice thickness and accuracy. In addition, through the intermittent assembly and reciprocating screw, intermittent movement of the conveyor belt and carding and compacting of the medicinal materials are realized.
The adjustment of slice thickness and accuracy is achieved, the slice efficiency and accuracy are improved, and the problems of stacking of medicinal materials and uneven slices are avoided.
Smart Images

Figure CN119795260B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medicinal material slicing, and specifically to a slicing device for medicinal material processing. Background Art
[0002] Generally, traditional Chinese medicinal materials emphasize genuine medicinal materials, which refer to medicinal materials produced in specific natural conditions and ecological environments. Due to relatively concentrated production, there are certain requirements for cultivation techniques, harvesting, and processing. As a result, they are of better quality and have better curative effects than the same kind of medicinal materials produced in other regions. Among them, for some root-type traditional Chinese medicines, before dispensing, they need to be sliced. Firstly, it is to facilitate patients to decoct and take, and secondly, it is to allow the medicinal effects to better blend into the decoction.
[0003] In the prior art, the Chinese patent application with the publication number CN111761615A discloses a slicing device for Chinese medicinal material processing. By driving the first ejector rod and the second ejector rod to cooperate with the first blade and the second blade on the slicing mechanism, stable slicing of Chinese medicinal materials is achieved. The slicing efficiency is high, the slicing effect is good, and the slicing method is adjustable, the operation is convenient, and the practicability is strong, solving the problem of low efficiency of manual slicing when processing existing medicinal materials.
[0004] In the above-described solution, by using the cooperation of two blades, stable slicing of Chinese medicinal materials is achieved. However, during the slicing process of the medicinal materials, the position of the blades cannot be adjusted. Each time the medicinal materials are sliced, only slices of the same thickness can be obtained. When different thickness slices of the medicinal materials are required, the machine needs to be replaced. At the same time, some existing slicing devices convey the medicinal materials through a conveyor belt and then use a cutter to complete the slicing of the medicinal materials on the conveyor belt. However, since the conveyor belt needs to be in a continuous conveying state, the medicinal materials may accumulate when being fed into the slicing position, resulting in uneven slicing or waste during the slicing process. Summary of the Invention
[0005] In view of the deficiencies of the prior art, the present invention provides a slicing device for medicinal material processing, which solves the problems mentioned in the above background art.
[0006] To achieve the above objectives, the present invention is realized through the following technical solutions:
[0007] A slicing device for medicinal material processing includes a device frame plate. A driving roller is rotatably installed inside the device frame plate. A conveyor belt is movably installed on the driving roller. A movable belt is arranged on the conveyor belt. A slicing assembly is arranged on the device frame plate;
[0008] An intermittent assembly is arranged on the device frame plate and on one side of the slicing assembly. The intermittent assembly includes a driving shaft, and a conveying roller is fixedly installed on the driving shaft;
[0009] An auxiliary component is arranged on the inner side of the device rack board. Through the auxiliary component, the medicinal materials on the movable belt are combed, and at the same time, the medicinal materials to be sliced are pressed and fixed.
[0010] Preferably, the slicing component includes two symmetrically arranged mounting rack boards fixedly installed on the device rack board. A motor is fixedly installed on the mounting rack board. The output end of the motor is fixedly installed with an output shaft. A driving disc is fixedly installed on the output shaft. An adjusting component is arranged on the driving disc. A positioning shaft is fixedly installed on the adjusting component. A driving rod is rotatably installed on the positioning shaft. A positioning block is fixedly installed on the inner side surface of the device rack board. A connecting slider is slidably installed on the positioning block. A lifting rod is fixedly installed on the connecting slider. A cutting knife is fixedly installed at the bottom end of the lifting rod.
[0011] Preferably, the adjusting component includes an adjusting groove opened on the driving disc. An adjusting screw is rotatably installed on the driving disc. One end of the adjusting screw extends into the interior of the adjusting groove and is rotatably installed with the adjusting groove. An adjusting block is movably installed on the adjusting screw.
[0012] Preferably, the end of the output shaft away from the motor extends to the inner side of the device rack board. The driving disc is located on the inner side of the device rack board. The end of the lifting rod away from the cutting knife is rotatably connected with the driving rod. The adjusting block is slidably installed in the interior of the adjusting groove. The positioning shaft is fixedly installed on the adjusting block.
[0013] Preferably, the intermittent component includes a rotating shaft rotatably installed on the device rack board. A driving gear and a large sprocket are fixedly installed on the rotating shaft. A small sprocket is fixedly installed on the output shaft. A linkage shaft is fixedly installed on the device rack board. A driven gear and a rotating disc are fixedly installed on the linkage shaft. An intermittent column is fixedly installed on the side end surface of the rotating disc. A stabilizing plate is fixedly installed on the rotating disc. An intermittent plate is fixedly installed on the driving shaft. Intermittent grooves and stabilizing grooves are arranged on the intermittent plate.
[0014] Preferably, a mounting ring is fixedly installed on the rotating shaft. A first electric push rod is fixedly installed on the mounting ring. The output shaft of the first electric push rod is fixedly installed with a sliding block. A rotating groove is opened on the sliding block. A rotating rod is rotatably installed on the rotating groove. A limiting groove is opened on the inner side surface of the device rack board. A limiting arc block is slidably installed in the interior of the limiting groove. A connecting frame is fixedly installed on the inner side surface of the limiting arc block.
[0015] Preferably, the position of the large sprocket is inside the driving gear, the position of the driven gear is inside the rotating disk, the large sprocket is driven by a chain to drive the small sprocket, the intermittent column is in sliding contact with the intermittent groove, one end of the rotating shaft extends to the inside of the device frame plate, the position of the mounting ring is inside the device frame plate, the conveying roller is drivingly installed with the conveyor belt, and the number of the intermittent grooves and the stabilizing grooves is multiple and arranged in a ring shape.
[0016] Preferably, the auxiliary assembly includes a reciprocating lead screw fixedly installed on the rotating shaft, a reciprocating block is movably installed on the reciprocating lead screw, a crescent pin is arranged on the lower end surface of the reciprocating block, a T-shaped sliding rod is fixedly installed on the upper end surface of the reciprocating block, a sliding plate is fixedly installed on the inner side surface of the device frame plate, and a positioning chute for cooperating with the T-shaped sliding rod is formed on the sliding plate. An installation rod is fixedly installed on the left side surface of the reciprocating block, and an L-shaped frame plate is fixedly installed on the right side surface of the reciprocating block.
[0017] Preferably, a vertical plate is fixedly installed on the lower end surface of the installation rod, a lifting groove is formed in the vertical plate, a second electric push rod is fixedly installed inside the lifting groove, an output rod of the second electric push rod is fixedly installed with a combing plate, a combing rod is fixedly installed on the combing plate, an arc-shaped pressing block is fixedly installed on the L-shaped frame plate, an elastic groove is formed on the inner side surface of the device frame plate, an elastic block is slidably installed inside the elastic groove, a pressing plate is fixedly installed on the side end surface of the elastic block, a pressed arc block is fixedly installed on the pressing plate, and a return spring is fixedly connected to the upper end surface of the elastic block.
[0018] Preferably, the T-shaped sliding rod is slidably connected with the positioning chute, the combing plate is slidably installed inside the lifting groove, and one end of the return spring away from the elastic block is fixedly connected to the inner top of the elastic groove.
[0019] The present invention provides a slicing device for medicinal material processing. Compared with the prior art, the following beneficial effects are achieved:
[0020] 1. In the present invention, the medicinal materials to be sliced are conveyed through the conveyor belt, and the driving disk on the output shaft is driven to rotate by the motor. The positioning shaft is used to drive the driving disk on the driving rod to rotate around the center, and then the limiting sliding between the connecting slider and the positioning block is utilized, so that the lifting rod drives the slicer to reciprocate up and down. At the same time, by rotating the adjusting screw and adjusting the position of the adjusting block in the adjusting groove, the amplitude of the driving rod rotating on the driving disk is effectively adjusted, and then the lifting amplitude of the lifting rod is adjusted, so that the device can adjust the slicing thickness and precision according to needs, and effectively improve the slicing effect of the device;
[0021] 2. In the present invention, when the output shaft rotates, it drives the small sprocket to rotate. The small sprocket drives the large sprocket to rotate through a chain. The large sprocket drives the drive gear on the rotating shaft to rotate. Through the meshing of the drive gear and the driven gear, when the driven gear rotates, it drives the drive disk on the linkage shaft to rotate. By using the cooperation between the intermittent column and the intermittent groove on the drive disk, and the cooperation between the stabilizing plate and the stabilizing groove, it can effectively ensure that the conveyor belt is in an intermittent conveying state during the conveying process. By using the intermittent movement of the conveyor belt, the medicinal materials will be sent to the slicing position one by one at the set intervals, avoiding the accumulation of medicinal materials, which helps to improve the efficiency and accuracy in the slicing process;
[0022] 3. In the present invention, when the rotating shaft rotates, it drives the reciprocating lead screw to rotate. The reciprocating block on the reciprocating lead screw will achieve reciprocating motion through the limitation of the T-shaped slide bar and the cooperation of the crescent pin. During the reciprocating motion, the mounting rod on the reciprocating block will drive the vertical plate to reciprocate. The second electric push rod on the vertical plate is used to drive the combing plate to adjust the height, so that the separating rods on the combing plate can complete the combing of the piled-up medicinal materials, effectively separating the piled-up medicinal materials so that the medicinal materials can flow smoothly for the cutter to slice them;
[0023] 4. In the present invention, when the reciprocating block reciprocates, it drives the arc-shaped pressing block on the L-shaped frame plate to press the pressed arc block reciprocally. The pressing plate on the pressed arc block can effectively press and fix the medicinal materials during the slicing process through the action of the return spring, ensuring that the medicinal materials remain in the appropriate position during slicing and will not cause poor slicing quality or reduced production efficiency due to uneven slicing force or loosening of the medicinal materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is the overall structural schematic diagram of the present invention;
[0025] Figure 2 is the cross-sectional view of the device frame plate in the present invention;
[0026] Figure 3 is Figure 1 the enlarged view of part A in
[0027] Figure 4 is the structural schematic diagram of the intermittent component in the present invention;
[0028] Figure 5 is the structural schematic diagram of the auxiliary component in the present invention;
[0029] Figure 6 is the structural schematic diagram of the slicing component in the present invention;
[0030] Figure 7 is the structural schematic diagram of the adjusting component in the present invention;
[0031] Figure 8 It is a schematic structural diagram of the L-shaped frame plate in the present invention;
[0032] Figure 9 It is a cross-sectional view of the vertical plate in the present invention.
[0033] In the figure: 1. Device frame plate; 2. Driving roller; 3. Conveyor belt; 4. Movable belt; 5. Driving shaft; 6. Conveying roller; 7. Mounting frame plate; 8. Motor; 9. Output shaft; 10. Driving disc; 11. Positioning shaft; 12. Driving rod; 13. Positioning block; 14. Connecting slider; 15. Lifting rod; 16. Cutting knife; 17. Adjusting groove; 18. Adjusting screw; 19. Adjusting block; 20. Rotating shaft; 21. Driving gear; 22. Large sprocket; 23. Small sprocket; 24. Linking shaft; 25. Driven gear; 26. Rotating disc; 27. Intermittent column; 28. Stabilizing plate; 29. Intermittent plate; 30. Intermittent groove; 31. Stabilizing groove; 32. Mounting ring; 33. First electric push rod; 34. Sliding block; 35. Rotating groove; 36. Rotating rod; 37. Limiting groove; 38. Limiting arc block; 39. Connecting frame; 40. Reciprocating lead screw; 41. Reciprocating block; 42. Crescent pin; 43. T-shaped slide bar; 44. Slide plate; 45. Positioning chute; 46. Mounting rod; 47. L-shaped frame plate; 48. Vertical plate; 49. Lifting groove; 50. Second electric push rod; 51. Combing plate; 52. Combing rod; 53. Arc-shaped pressing block; 54. Elastic groove; 55. Elastic block; 56. Pressing plate; 57. Compressed arc block; 58. Return spring. Specific embodiments
[0034] 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 making creative efforts belong to the protection scope of the present invention.
[0035] Please refer to Figures 1-9 , the present invention is a slicing device for medicinal material processing, including a device frame plate 1. A driving roller 2 is rotatably installed inside the device frame plate 1. A conveyor belt 3 is movably installed on the driving roller 2. A movable belt 4 is arranged on the conveyor belt 3. A slicing assembly is arranged on the device frame plate 1. An intermittent assembly is arranged on the device frame plate 1 and on one side of the slicing assembly. The intermittent assembly includes a driving shaft 5. A conveying roller 6 is fixedly installed on the driving shaft 5. The conveying principle of the conveyor belt 3 and the conveying roller 6 is a well-known technology to those skilled in the art and will not be specifically described here;
[0036] The slicing component includes two symmetrically arranged mounting plates 7 fixedly installed on the device frame plate 1. A motor 8 is fixedly installed on the mounting plate 7. The output end of the motor 8 is fixedly installed with an output shaft 9. A driving disk 10 is fixedly installed on the output shaft 9. An adjusting component is arranged on the driving disk 10. A positioning shaft 11 is fixedly installed on the adjusting component. A driving rod 12 is rotatably installed on the positioning shaft 11. The inner side surface of the device frame plate 1 is fixedly installed with a positioning block 13. A connecting slider 14 is slidably installed on the positioning block 13. A lifting rod 15 is fixedly installed on the connecting slider 14. A cutter 16 is fixedly installed at the bottom end of the lifting rod 15. The position of the cutter 16 is directly above the side of the conveying roller 6, ensuring that the cutter 16 can slice the medicinal materials and will not damage the conveyor belt 3. And a guide plate can be arranged on the device frame plate 1 according to the needs of the personnel, and it is convenient to collect the sliced medicinal materials through the guide plate;
[0037] The adjusting component includes an adjusting groove 17 opened on the driving disk 10. An adjusting screw 18 is rotatably installed on the driving disk 10. One end of the adjusting screw 18 extends into the interior of the adjusting groove 17 and is rotatably installed with the adjusting groove 17. An adjusting block 19 is movably installed on the adjusting screw 18. The end of the output shaft 9 away from the motor 8 extends to the inner side of the device frame plate 1. The driving disk 10 is located on the inner side of the device frame plate 1. The end of the lifting rod 15 away from the cutter 16 is rotatably connected to the driving rod 12. The adjusting block 19 is slidably installed in the adjusting groove 17. The positioning shaft 11 is fixedly installed on the adjusting block 19. The bottom end of the adjusting screw 18 extends to the outside of the driving disk 10 and is fixedly installed with a hexagonal handle, which is convenient to rotate the adjusting screw 18.
[0038] In this embodiment, the medicinal materials to be sliced are conveyed by the conveyor belt 3, and the driving disk 10 on the output shaft 9 is rotated by the motor 8. The driving disk 10 on the driving rod 12 is driven by the positioning shaft 11 to rotate around the center. Then, by the limiting sliding between the connecting slider 14 and the positioning block 13, the lifting rod 15 is driven to reciprocate up and down. At the same time, by rotating the adjusting screw 18 and adjusting the position of the adjusting block 19 in the adjusting groove 17, the rotation amplitude of the driving rod 12 on the driving disk 10 is effectively adjusted, and then the lifting amplitude of the lifting rod 15 is adjusted, so that the device can adjust the slicing thickness and precision according to the needs, and effectively improve the slicing effect of the device.
[0039] The intermittent component includes a rotating shaft 20 rotatably mounted on the device frame plate 1. A driving gear 21 and a large sprocket 22 are fixedly mounted on the rotating shaft 20. A small sprocket 23 is fixedly mounted on the output shaft 9. A linkage shaft 24 is fixedly mounted on the device frame plate 1. A driven gear 25 and a rotating disk 26 are fixedly mounted on the linkage shaft 24. An intermittent column 27 is fixedly mounted on the side end face of the rotating disk 26. A stabilizing plate 28 is fixedly mounted on the rotating disk 26. An intermittent plate 29 is fixedly mounted on the driving shaft 5. An intermittent groove 30 and a stabilizing groove 31 are provided on the intermittent plate 29. The side of the stabilizing plate 28 is an arc surface, and the shape of the stabilizing groove 31 is an arc groove, ensuring that after the rotating disk 26 rotates, the stabilizing plate 28 and the stabilizing groove 31 can fit. The function of the stabilizing plate 28 is to ensure that the conveyor belt 3 does not deviate or vibrate violently during operation through cooperation with the stabilizing groove 31, so as to maintain the stable state of the medicinal materials during transportation;
[0040] An installation ring 32 is fixedly mounted on the rotating shaft 20. A first electric push rod 33 is fixedly mounted on the installation ring 32. The output shaft 9 of the first electric push rod 33 is fixedly mounted with a sliding block 34. A rotating groove 35 is provided on the sliding block 34. A rotating rod 36 is rotatably mounted on the rotating groove 35. A limiting groove 37 is provided on the inner side surface of the device frame plate 1. A limiting arc block 38 is slidably mounted inside the limiting groove 37. A connecting frame 39 is fixedly mounted on the inner side surface of the limiting arc block 38. The large sprocket 22 is located inside the driving gear 21, and the driven gear 25 is located inside the rotating disk 26. The large sprocket 22 is driven by a chain to drive the small sprocket 23. The intermittent column 27 is in sliding contact with the intermittent groove 30. One end of the rotating shaft 20 extends to the inside of the device frame plate 1. The installation ring 32 is located inside the device frame plate 1. The conveying roller 6 and the conveyor belt 3 are drivingly installed. The number of the intermittent grooves 30 and the stabilizing grooves 31 is multiple and arranged in a ring shape, and the number of the intermittent grooves 30 and the stabilizing grooves 31 is the same.
[0041] In this embodiment, when the output shaft 9 rotates, it will drive the small sprocket 23 to rotate. The small sprocket 23 drives the large sprocket 22 to rotate through a chain. The driving gear 21 on the rotating shaft 20 is driven to rotate by the large sprocket 22. Through the meshing of the driving gear 21 and the driven gear 25, when the driven gear 25 rotates, it will drive the driving disk 10 on the linkage shaft 24 to rotate. By using the cooperation between the intermittent column 27 on the driving disk 10 and the intermittent groove 30, and the cooperation between the stabilizing plate 28 and the stabilizing groove 31, it can effectively ensure that the conveyor belt 3 is in an intermittent conveying state during transportation. By using the intermittent movement of the conveyor belt 3, the medicinal materials will be sent to the slicing position one by one at a set interval, avoiding the accumulation of medicinal materials, which helps to improve the efficiency and accuracy during the slicing process.
[0042] An auxiliary component is provided inside the device mounting plate 1. Through the auxiliary component, the medicinal materials on the movable belt 4 are combed, and at the same time, the medicinal materials to be sliced are pressed and fixed. The auxiliary component includes a reciprocating lead screw 40 fixedly installed on the rotating shaft 20. A reciprocating block 41 is movably installed on the reciprocating lead screw 40. A crescent pin 42 is provided on the lower end surface of the reciprocating block 41. A T-shaped slide bar 43 is fixedly installed on the upper end surface of the reciprocating block 41. A slide plate 44 is fixedly installed on the inner side surface of the device mounting plate 1. A positioning chute 45 for cooperating with the T-shaped slide bar 43 is provided on the slide plate 44. An installation rod 46 is fixedly installed on the left side surface of the reciprocating block 41. An L-shaped mounting plate 47 is fixedly installed on the right side surface of the reciprocating block 41. In order to ensure the stability of the reciprocating movement of the installation rod 46 and the L-shaped mounting plate 47, two limit plates can be provided on the device mounting plate 1. The positions of the two limit plates are respectively above the installation rod 46 and the L-shaped mounting plate 47. The installation rod 46, the L-shaped mounting plate 47 and the limit plates can be slidably installed;
[0043] A vertical plate 48 is fixedly installed on the lower end surface of the installation rod 46. A lifting groove 49 is provided on the vertical plate 48. A second electric push rod 50 is fixedly installed inside the lifting groove 49. The output rod of the second electric push rod 50 is fixedly installed with a combing plate 51. Combing rods 52 are fixedly installed on the combing plate 51. An arc-shaped pressing block 53 is fixedly installed on the L-shaped mounting plate 47. An elastic groove 54 is provided on the inner side surface of the device mounting plate 1. An elastic block 55 is slidably installed inside the elastic groove 54. A pressing plate 56 is fixedly installed on the side end surface of the elastic block 55. A pressed arc block 57 is fixedly installed on the pressing plate 56. A return spring 58 is fixedly connected to the upper end surface of the elastic block 55. The T-shaped slide bar 43 is slidably connected to the positioning chute 45. The combing plate 51 is slidably installed inside the lifting groove 49. One end of the return spring 58 away from the elastic block 55 is fixedly connected to the inner top of the elastic groove 54.
[0044] In this embodiment, when the rotating shaft 20 rotates, it will drive the reciprocating lead screw 40 to rotate. The reciprocating block 41 on the reciprocating lead screw 40 will achieve reciprocating movement through the limitation of the T-shaped slide bar 43 and the cooperation of the crescent pin 42. During the reciprocating movement, the installation rod 46 on the reciprocating block 41 will drive the vertical plate 48 to reciprocate. The second electric push rod 50 on the vertical plate 48 is used to drive the combing plate 51 to adjust the height, so that the combing rods 52 on the combing plate 51 can comb the piled-up medicinal materials, effectively separating the piled-up medicinal materials, so that the medicinal materials can flow smoothly for the cutter 16 to slice them. At the same time, during the reciprocating movement of the reciprocating block 41, the arc-shaped pressing block 53 on the L-shaped mounting plate 47 will reciprocally press the pressed arc block 57. The pressing plate 56 on the pressed arc block 57 can effectively press and fix the medicinal materials during the slicing process through the action of the return spring 58, ensuring that the medicinal materials are kept in place during slicing and will not cause low slicing quality or reduced production efficiency due to uneven slicing force or loosening of the medicinal materials.
[0045] Working principle: During use, the conveyor belt 3 is used to convey the medicinal materials to be sliced. The driving disk 10 on the output shaft 9 is rotated by the motor 8. The positioning shaft 11 is used to drive the driving disk 10 on the driving rod 12 to rotate around the center. Then, the limiting sliding between the connecting slider 14 and the positioning block 13 is utilized, so that the lifting rod 15 drives the slicer to reciprocate up and down. At the same time, by rotating the adjusting screw 18 and adjusting the position of the adjusting block 19 in the adjusting groove 17, the amplitude of the rotation of the driving rod 12 on the driving disk 10 is effectively adjusted, and then the lifting amplitude of the lifting rod 15 is adjusted, enabling the device to adjust the thickness and precision of the slices according to needs;
[0046] When the output shaft 9 rotates, it will drive the small sprocket 23 to rotate. The small sprocket 23 drives the large sprocket 22 to rotate through the chain. The large sprocket 22 drives the driving gear 21 on the rotating shaft 20 to rotate. Through the meshing of the driving gear 21 and the driven gear 25, when the driven gear 25 rotates, it will drive the driving disk 10 on the linkage shaft 24 to rotate. By using the cooperation between the intermittent column 27 on the driving disk 10 and the intermittent groove 30, and the cooperation between the stabilizing plate 28 and the stabilizing groove 31, it can effectively ensure that the conveyor belt 3 is in an intermittent conveying state during the conveying process. By using the intermittent movement of the conveyor belt 3, the medicinal materials will be sent to the slicing position one by one at the set intervals, avoiding the accumulation of medicinal materials;
[0047] When the rotating shaft 20 rotates, it will drive the reciprocating lead screw 40 to rotate. The reciprocating block 41 on the reciprocating lead screw 40 will achieve reciprocating motion through the limitation of the T-shaped slide bar 43 and the cooperation of the crescent pin 42. During the reciprocating motion, the mounting rod 46 on the reciprocating block 41 will drive the vertical plate 48 to reciprocate. The second electric push rod 50 on the vertical plate 48 is used to drive the combing plate 51 to adjust the height, so that the combing rod 52 on the combing plate 51 can complete the combing of the piled-up medicinal materials, effectively separating the piled-up medicinal materials, so that the medicinal materials can flow smoothly for the cutter 16 to slice them;
[0048] At the same time, during the reciprocating movement of the reciprocating block 41, the arc-shaped pressing block 53 on the L-shaped frame plate 47 will be driven to reciprocally press the pressed arc block 57. The pressing plate 56 on the pressed arc block 57 can effectively press and fix the medicinal materials during the slicing process through the action of the return spring 58, ensuring that the medicinal materials are kept in place during slicing and will not cause low slicing quality or reduced production efficiency due to uneven slicing force or loosening of the medicinal materials.
[0049] During the intermittent movement of the conveyor belt 3, at this time, the conveyor belt 3 is in a stopped state, while the rotating shaft 20 is in a continuous rotation state. The sliding block 34 is driven by the first electric push rod 33 to move horizontally on the rotating shaft 20. When the sliding block 34 moves horizontally, through the rotation function of the rotating rod 36, the connecting frame 39 is used to drive the limiting arc block 38 to expand outward. The expanded limiting arc block 38 fits with the movable belt 4 on the conveyor belt 3, and the medicinal materials on the movable belt 4 are continuously driven to move by the rotation of the limiting arc block 38, facilitating the pushing of the medicinal materials to the position of the cutting knife 16, so as to slice the medicinal materials with the cutting knife 16.
[0050] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention.
Claims
1. A slicing device for medicinal material processing, comprising a device frame (1), characterized in that: A transmission roller (2) is rotatably mounted inside the device frame (1), a conveyor belt (3) is movably mounted on the transmission roller (2), a movable belt (4) is arranged on the conveyor belt (3), and a slicing assembly is arranged on the device frame (1); An intermittent component is arranged on the device frame (1) and on one side of the slicing component, the intermittent component comprising a drive shaft (5), and a conveying roller (6) is fixedly mounted on the drive shaft (5); An auxiliary component is arranged on the inner side of the device frame (1), and the auxiliary component is used to comb the medicinal materials on the movable belt (4) and to press the medicinal materials to be sliced; The slicing assembly comprises two symmetrically arranged mounting frames (7) fixedly mounted on a device frame plate (1); a motor (8) is fixedly mounted on the mounting frame plate (7); an output shaft (9) is fixedly mounted on the output end of the motor (8); a driving disk (10) is fixedly mounted on the output shaft (9); an adjustment assembly is provided on the driving disk (10); a positioning shaft (11) is fixedly mounted on the adjustment assembly; a driving rod (12) is rotatably mounted on the positioning shaft (11); a positioning block (13) is fixedly mounted on the inner side surface of the device frame plate (1); a connecting slider (14) is slidably mounted on the positioning block (13); a lifting rod (15) is fixedly mounted on the connecting slider (14); a cutting knife (16) is fixedly mounted on the bottom end of the lifting rod (15); The intermittent assembly comprises a rotating shaft (20) rotatably mounted on a device frame (1), a driving gear (21) and a large sprocket (22) being fixedly mounted on the rotating shaft (20), a small sprocket (23) being fixedly mounted on the output shaft (9), a linkage shaft (24) being fixedly mounted on the device frame (1), a driven gear (25) and a rotating disk (26) being fixedly mounted on the linkage shaft (24), an intermittent column (27) being fixedly mounted on a side end surface of the rotating disk (26), a stabilizing plate (28) being fixedly mounted on the rotating disk (26), an intermittent plate (29) being fixedly mounted on the driving shaft (5), and an intermittent groove (30) and a stabilizing groove (31) being provided on the intermittent plate (29); The auxiliary component comprises a reciprocating screw (40) fixedly mounted on a rotating shaft (20), a reciprocating block (41) movably mounted on the reciprocating screw (40), a crescent pin (42) being provided on the lower end surface of the reciprocating block (41), a T-shaped slide bar (43) being fixedly mounted on the upper end surface of the reciprocating block (41), a slide plate (44) being fixedly mounted on the inner side surface of the device frame plate (1), a positioning slide groove (45) being provided on the slide plate (44) for use in conjunction with the T-shaped slide bar (43), and the reciprocating block ( A mounting rod (46) is fixedly mounted on the left side of the reciprocating block (41), an L-shaped frame plate (47) is fixedly mounted on the right side of the reciprocating block (41), a vertical plate (48) is fixedly mounted on the lower end surface of the mounting rod (46), a lifting groove (49) is provided on the vertical plate (48), a second electric push rod (50) is fixedly mounted inside the lifting groove (49), a combing plate (51) is fixedly mounted on the output rod of the second electric push rod (50), and a combing rod (52) is fixedly mounted on the combing plate (51).
2. The medicinal material processing slicing device according to claim 1, characterized in that: The adjustment assembly comprises an adjustment slot (17) formed on a driving disk (10); an adjustment screw (18) is rotatably mounted on the driving disk (10); one end of the adjustment screw (18) extends into the interior of the adjustment slot (17) and is rotatably mounted on the adjustment slot (17); and an adjustment block (19) is movably mounted on the adjustment screw (18).
3. The medicinal material processing slicing device according to claim 2, characterized in that: The end of the output shaft (9) away from the motor (8) extends to the inner side of the device frame (1), the driving disk (10) is located on the inner side of the device frame (1), the end of the lifting rod (15) away from the cutter (16) is rotatably connected to the driving rod (12), the adjusting block (19) is slidably mounted inside the adjusting groove (17), and the positioning shaft (11) is fixedly mounted on the adjusting block (19).
4. The medicinal material processing slicing device according to claim 1, characterized in that: A mounting ring (32) is fixedly mounted on the rotating shaft (20), a first electric push rod (33) is fixedly mounted on the mounting ring (32), a sliding block (34) is fixedly mounted on the output shaft (9) of the first electric push rod (33), a rotating groove (35) is provided on the sliding block (34), a rotating rod (36) is rotatably mounted on the rotating groove (35), a limiting groove (37) is provided on the inner side surface of the device frame plate (1), a limiting arc block (38) is slidably mounted inside the limiting groove (37), and a connecting frame (39) is fixedly mounted on the inner side surface of the limiting arc block (38).
5. The medicinal material processing slicing device according to claim 4, characterized in that: The large sprocket (22) is located on the inner side of the driving gear (21), the driven gear (25) is located on the inner side of the rotating disk (26), the large sprocket (22) is driven by the small sprocket (23) through a chain, the intermittent column (27) is in sliding contact with the intermittent groove (30), one end of the rotating shaft (20) extends to the inner side of the device frame (1), the mounting ring (32) is located on the inner side of the device frame (1), the conveying roller (6) is installed in a transmission manner with the conveying belt (3), and the number of the intermittent groove (30) and the stabilizing groove (31) is multiple and arranged in a ring shape.
6. The medicinal material processing slicing device according to claim 1, characterized in that: An arc-shaped pressure block (53) is fixedly mounted on the L-shaped frame plate (47); an elastic groove (54) is provided on the inner side surface of the device frame plate (1); an elastic block (55) is slidably mounted inside the elastic groove (54); a pressure plate (56) is fixedly mounted on the side end surface of the elastic block (55); a compressed arc block (57) is fixedly mounted on the pressure plate (56); and a return spring (58) is fixedly connected to the upper end surface of the elastic block (55).
7. The medicinal material processing slicing device according to claim 6, characterized in that: The T-shaped slide bar (43) is slidably connected to the positioning slide groove (45), the combing plate (51) is slidably mounted inside the lifting groove (49), and one end of the return spring (58) away from the elastic block (55) is fixedly connected to the inner top of the elastic groove (54).
Citation Information
Patent Citations
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