High-efficiency slicing equipment applied to traditional Chinese medicine
By designing a high-efficiency slicing device, stable delivery and uniform slicing of Chinese medicinal materials were achieved, improving slicing efficiency and quality, simplifying operation and maintenance, and overcoming the shortcomings of traditional Chinese medicine slicing equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN YIHENG PHARM CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-07-24
AI Technical Summary
Traditional Chinese medicine slicing equipment suffers from problems such as poor feeding, uneven slicing, low post-slicing processing efficiency, low slicing accuracy, and inconvenient cleaning and maintenance.
A high-efficiency slicing device was designed, comprising a processing platform, a slicing unit, a feeding unit, and a drive unit. Through synchronous drive, precise feeding, and automatic collection technologies, the device ensures stable delivery and uniform slicing of Chinese medicinal materials.
It improves the efficiency and quality of Chinese herbal medicine slicing, enhances the ease of operation and equipment maintenance, and solves the problems of poor feeding, uneven slicing, and inconvenient cleaning and maintenance that exist in traditional equipment.
Smart Images

Figure CN224544731U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of traditional Chinese medicine processing equipment, and in particular to a high-efficiency slicing device for traditional Chinese medicine. Background Technology
[0002] Traditional Chinese medicine (TCM) refers to substances used to prevent, treat, and diagnose diseases, and to have rehabilitation and health-preserving effects, under the guidance of TCM theory. These substances are mainly derived from natural medicines and their processed products, including plant-based medicines such as ginseng and astragalus, animal-based medicines such as deer antler and musk, and mineral-based medicines such as gypsum and cinnabar.
[0003] For large-volume Chinese medicinal herbs such as Ganoderma lucidum, slicing is a crucial step in processing. Traditional slicing equipment has several shortcomings: First, the feeding process is often manual or relies on simple conveyors, which can easily lead to the accumulation of medicinal materials and obstructed transport, affecting the slicing rhythm. Second, in terms of power transmission, the power of the two slicing units is prone to asynchrony, resulting in uneven slicing. Third, post-slicing processing relies on manual material collection, which is inefficient and prone to leaving residues. Fourth, slicing accuracy is limited; an unreasonable layout and spacing of the cutting blades can easily cause uneven slicing and breakage of the medicinal materials. Furthermore, cleaning and maintenance of the equipment are inconvenient, and residual materials can affect subsequent use. Utility Model Content
[0004] Based on this, the purpose of this utility model is to provide a high-efficiency slicing device for traditional Chinese medicine, which meets the needs of modern Chinese medicine processing for efficiency, quality and convenience.
[0005] The present invention adopts the following technical solution:
[0006] A high-efficiency slicing device for traditional Chinese medicine includes a processing platform, two slicing units, two feeding units, and a drive unit.
[0007] Two slicing units are respectively arranged opposite each other at both ends of the processing platform; each slicing unit includes a feeding assembly, a slicing box, a drive shaft, and a push plate; the feeding assembly is used to receive the Chinese medicinal materials conveyed by the feeding unit and deliver them to the slicing box; a slicing mesh plate is provided on one side of the slicing box, and the slicing mesh plate is equipped with several cutters; the drive shaft is located on the side of the slicing box away from the slicing mesh plate; the push plate is connected to one end of the drive shaft and is movably embedded inside the slicing box;
[0008] The discharge ends of the two feeding units are respectively connected to one side of the feeding components of the two slicing units;
[0009] The drive unit is used to drive the transmission shafts of the two slicing units to move synchronously, so as to push the Chinese medicinal materials in the slicing box towards the cutting direction of the slicing screen through the push plate.
[0010] A further improvement to the above technical solution is that the feeding unit includes a hopper, a lifting component, and a feeding component; the hopper is used to temporarily store the Chinese medicinal materials to be fed; the lifting component is inclinedly arranged on one side of the hopper and is used to receive and convey the Chinese medicinal materials in the hopper upward; the feeding component is used to receive the Chinese medicinal materials conveyed by the lifting component and send them to the slicing box.
[0011] A further improvement to the above technical solution is that the hopper is provided with a storage chamber inside, and the bottom of the storage chamber is provided with a discharge port connected to the lifting component; the bottom of the storage chamber is provided with a linear vibrator, which is used to generate directional vibration so that the Chinese medicinal materials in the storage chamber are conveyed to the lifting component along the discharge port.
[0012] A further improvement to the above technical solution is that the lifting assembly includes a lifting belt and a lifting motor; the surface of the lifting belt is provided with a plurality of baffles for receiving Chinese medicinal materials, and the plurality of baffles are spaced apart along the length direction of the lifting belt; the lifting motor is used to drive the lifting belt to run.
[0013] The feeding assembly includes a feeding belt and a feeding motor; the outer periphery of the feeding belt is provided with a barrier; the feeding motor is used to drive the feeding belt to run.
[0014] A further improvement to the above technical solution is that the drive unit includes a drive motor, a drive wheel, a driven wheel, a gearbox, and a transmission assembly; the output end of the drive motor is connected to the drive wheel; the drive wheel is connected to the driven wheel via a drive belt; the driven wheel is connected to the gearbox; the output end of the gearbox is connected to the transmission assembly; the transmission assembly is connected to the transmission shafts of the two slicing units respectively, for constraining and synchronously transmitting the movement of the two transmission shafts.
[0015] A further improvement to the above technical solution is that the transmission assembly includes a support base, a rotating disk, a convex shaft, and an annular hollow groove; the support base is mounted on the processing platform; the rotating disk is connected to the gearbox; the convex shaft is eccentrically disposed on the rotating disk and is hinged to the transmission shafts of the two slicing units respectively; the annular hollow groove is sleeved on the outer circumference of the convex shaft and slides in cooperation with the transmission shaft.
[0016] A further improvement to the above technical solution is that the feeding assembly includes a feeding belt and a feeding motor. A feeding fence is provided on the outer periphery of the feeding belt. The feeding belt is used to receive the Chinese medicinal materials conveyed by the feeding belt and deliver the Chinese medicinal materials to the slicing box. The feeding motor is used to drive the feeding belt to run.
[0017] A further improvement to the above technical solution is that the top of the slicing box is connected to a feed inlet, and the feed inlet is located at the bottom of the slicing box and is provided with a drawer-type material receiving box.
[0018] A further improvement to the above technical solution is that the plurality of cutting blades are vertically arranged on one side of the slicing mesh, and the blade direction of the cutting blades is perpendicular to the conveying direction of the Chinese medicinal materials; a slicing gap is formed between two adjacent cutting blades, and the width of the slicing gap is smaller than the minimum cross-sectional size of the Chinese medicinal materials to be sliced.
[0019] A further improvement to the above technical solution is that the processing platform has a feeding port on each side, one side of the feeding port is connected to one side of the slicing mesh plate, a feeding ramp is connected below the feeding port, a material receiving box is connected to the feeding ramp, and a material receiving ramp is provided on one side of the material receiving box corresponding to the feeding ramp.
[0020] The beneficial effects of this utility model are as follows:
[0021] This utility model features a rational overall design. The processing platform provides stable support for the entire system. The symmetrical layout of the dual slicing units, combined with the dual feeding units and the synchronous drive of the drive unit, significantly improves slicing efficiency. In the slicing unit, the feeding component precisely connects to the feeding and slicing box. The feeding port and drawer-type receiving box of the slicing box facilitate feeding and cleaning. The vertically distributed cutters on the slicing screen with a reasonable blade direction, along with the slicing gap smaller than the minimum cross-sectional size of the medicinal material, ensure the uniformity and integrity of the slices. The hopper storage chamber of the feeding unit, combined with a linear vibrator, prevents the medicinal material from clogging. The baffle of the lifting component and the blocking rail of the feeding component prevent the medicinal material from slipping during transportation. The feeding component ensures the stable transportation of the medicinal material to the slicing box. The drive unit's drive motor, drive wheel, driven wheel, gearbox, and transmission components work together to achieve synchronous reciprocating motion of the drive shaft, ensuring the stability of the push plate pushing the medicinal material. The feeding port and feeding ramp of the processing platform, combined with the receiving box, enable automatic collection after slicing, reducing manual intervention. Overall, the various components of the equipment have clear division of labor and work together efficiently, which not only improves the efficiency and quality of slicing, but also enhances the ease of operation and maintenance. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of the high-efficiency slicing device for traditional Chinese medicine according to this utility model;
[0023] Figure 2 for Figure 1 A cross-sectional view of the slicing box of a high-efficiency slicing device for traditional Chinese medicine;
[0024] Figure 3 for Figure 1 A schematic diagram of the feeding unit of a high-efficiency slicing equipment for traditional Chinese medicine;
[0025] Figure 4 for Figure 1 A schematic diagram of the drive unit of a high-efficiency slicing device for traditional Chinese medicine;
[0026] Figure 5 Bit Figure 4 A magnified view of circle A of the drive unit;
[0027] Figure 6 for Figure 4 A schematic diagram of the drive unit from another angle;
[0028] Figure 7 for Figure 1 A schematic diagram of the feeding component of a high-efficiency slicing equipment for traditional Chinese medicine;
[0029] Figure 8 for Figure 1 A schematic diagram of the slicing mesh plate of a high-efficiency slicing device used in traditional Chinese medicine.
[0030] The numbers on the map are:
[0031] 1-Processing platform, 2-Slicing unit, 3-Feeding unit, 4-Drive unit, 5-Feeding assembly, 6-Slicing box, 7-Drive shaft, 8-Push plate, 9-Slicing mesh plate, 10-Cutter, 11-Hopper, 12-Lifting assembly, 13-Feeding assembly, 14-Storage chamber, 15-Discharge port, 16-Linear vibrator, 17-Lifting belt, 18-Lifting motor, 19-Feeding belt, 20-Feeding motor, 21-Barrier fence, 22-Drive 23-Motor, 24-Driven wheel, 25-Gearbox, 26-Transmission assembly, 27-Drive belt, 28-Support base, 29-Rotating disc, 30-Cam shaft, 31-Annular hollow groove, 32-Feeding belt, 33-Feeding motor, 34-Feeding enclosure, 35-Inlet, 36-Drawer-type receiving box, 37-Slicing gap, 38-Discharge port, 39-Discharge slope, 40-Receiving box, 41-Receiving slope, 42-Baffle plate. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0034] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0035] like Figures 1 to 8 As shown, this is an embodiment of the present invention, which relates to a high-efficiency slicing device for traditional Chinese medicine, including a processing platform 1, two slicing units 2, two feeding units 3 and a drive unit 4;
[0036] Two slicing units 2 are respectively arranged opposite each other at both ends of the processing platform 1; each slicing unit 2 includes a feeding assembly 5, a slicing box 6, a drive shaft 7, and a push plate 8; the feeding assembly 5 is used to receive the Chinese medicinal materials conveyed by the feeding unit 3 and deliver them to the slicing box 6; a slicing mesh plate 9 is provided on one side of the slicing box 6, and the slicing mesh plate 9 is equipped with several cutters 10; the drive shaft 7 is located on the side of the slicing box 6 away from the slicing mesh plate 9; the push plate 8 is connected to one end of the drive shaft 7 and is movably embedded inside the slicing box 6;
[0037] The discharge ends of the two feeding units 3 are respectively connected to one side of the feeding components 5 of the two slicing units 2;
[0038] The drive unit 4 is used to drive the transmission shafts 7 of the two slicing units 2 to move synchronously, so as to push the Chinese medicinal materials in the slicing box 6 towards the cutter 10 of the slicing mesh plate 9 through the push plate 8.
[0039] Specifically, the high-efficiency slicing equipment for traditional Chinese medicine in this embodiment consists of a processing platform 1, a dual slicing unit 2, a dual feeding unit 3, and a drive unit 4. By symmetrically arranging the slicing unit 2 and coordinating the functions of each unit, high-efficiency slicing of traditional Chinese medicine is achieved, providing a basic framework for subsequent refinement of structure and function, ensuring the integrity and coordination of the overall operation of the equipment, and allowing the orderly connection of each link from feeding and conveying to slicing of traditional Chinese medicine.
[0040] like Figure 1 As shown, the feeding unit 3 in this embodiment includes a hopper 11, a lifting component 12, and a feeding component 13. The hopper 11 is used to temporarily store the Chinese medicinal materials to be fed. The lifting component 12 is inclined and disposed on one side of the hopper 11 to receive and convey the Chinese medicinal materials in the hopper 11 upwards. The feeding component 13 is used to receive the Chinese medicinal materials conveyed by the lifting component 12 and send them to the slicing box 6. Specifically, the hopper 11 temporarily stores the materials to ensure continuous feeding, the lifting component 12 is inclined to adapt to the material conveying requirements, and the feeding component 13 is precisely connected to the slicing box 6 to optimize the feeding process, avoid accumulation of Chinese medicinal materials and poor conveying, improve feeding stability and accuracy, and provide stable feeding for the slicing unit 2.
[0041] like Figure 1 and Figure 3 As shown, the hopper 11 in this embodiment has a storage chamber 14 inside, and the bottom of the storage chamber 14 has a discharge port 15 connected to the lifting assembly 12. The bottom of the storage chamber 14 is equipped with a linear vibrator 16, which is used to generate directional vibration, so that the Chinese medicinal materials in the storage chamber 14 are conveyed to the lifting assembly 12 along the discharge port 15. Specifically, the combination of the storage chamber 14, the discharge port 15, and the linear vibrator 16 is set up. The directional vibration of the linear vibrator 16 allows the Chinese medicinal materials to be conveyed to the lifting assembly 12 in an orderly and stable manner, solving the problem of easy jamming when discharging from the hopper 11, ensuring that the feeding rhythm matches the slicing requirements, improving feeding efficiency, and avoiding equipment idling or blockage due to poor discharge.
[0042] like Figure 1 and Figure 3 As shown, the lifting assembly 12 in this embodiment includes a lifting belt 17 and a lifting motor 18; the surface of the lifting belt 17 is provided with a plurality of baffles 42 for receiving Chinese medicinal materials, and the plurality of baffles 42 are spaced apart along the length direction of the lifting belt 17; the lifting motor 18 is used to drive the lifting belt 17 to run.
[0043] The feeding assembly 13 includes a feeding belt 19 and a feeding motor 20; a barrier 21 is provided on the outer periphery of the feeding belt 19; the feeding motor 20 is used to drive the feeding belt 19 to run.
[0044] Specifically, the lifting belt 17 is equipped with baffles 42 to enhance the receiving and conveying capacity of Chinese medicinal materials and prevent slippage during conveying; the feeding belt 19 is equipped with a barrier fence 21 to constrain the position of Chinese medicinal materials. The two work together to ensure stable transmission of Chinese medicinal materials from the lifting to the feeding stage, reduce material loss and conveying deviation, and ensure the stability of the material state before slicing.
[0045] like Figure 4 and Figure 6 As shown, the drive unit 4 in this embodiment includes a drive motor 22, a drive wheel 23, a driven wheel 24, a gearbox 25, and a transmission assembly 26. The output end of the drive motor 22 is connected to the drive wheel 23. The drive wheel 23 is connected to the driven wheel 24 via a drive belt 27. The driven wheel 24 is connected to the gearbox 25. The output end of the gearbox 25 is connected to the transmission assembly 26. The transmission assembly 26 is connected to the transmission shafts 7 of the two slicing units 2 respectively, and is used to constrain and synchronously transmit the movement of the two transmission shafts 7. Specifically, the drive motor 22 transmits power to the transmission assembly 26 via the drive wheel 23, the driven wheel 24, and the gearbox 25, and then synchronously drives the two transmission shafts 7 to ensure that the two slicing units 2 have consistent power and synchronized movement, so that the push plate 8 pushes the Chinese herbal medicine slices at a uniform rhythm, improving the consistency and efficiency of slicing, and avoiding uneven slicing or equipment imbalance caused by asynchronous power.
[0046] like Figure 5 As shown, the transmission assembly 26 in this embodiment includes a support base 28, a rotating disk 29, a convex shaft 30, and an annular hollow groove 31. The support base 28 is mounted on the processing platform 1. The rotating disk 29 is connected to the gearbox 25. The convex shaft 30 is eccentrically mounted on the rotating disk 29 and hinged to the transmission shafts 7 of the two slicing units 2 respectively. The annular hollow groove 31 is sleeved on the outer circumference of the convex shaft 30 and slides in cooperation with the transmission shaft 7. Specifically, the support base 28 ensures structural stability. Through the cooperation of the rotating disk 29, the eccentric convex shaft 30, and the annular hollow groove 31, the rotational motion of the gearbox 25 is converted into the reciprocating motion of the transmission shaft 7, precisely constraining the motion trajectory of the transmission shaft 7, achieving stable and synchronous transmission, providing reliable power transmission for the push plate 8, and ensuring stable and continuous slicing thrust. Bushings are provided on both sides of the support base 28, and the transmission shaft 7 is movably connected to the bushings.
[0047] like Figure 7As shown, the feeding assembly 5 in this embodiment includes a feeding belt 32 and a feeding motor 33. A feeding guard 34 is provided on the outer periphery of the feeding belt 32. The feeding belt 32 is used to receive the Chinese medicinal materials conveyed by the feeding belt 19 and deliver them to the slicing box 6. The feeding motor 33 is used to drive the feeding belt 32. Specifically, the feeding belt 32 and the feeding motor 33 are set up to receive the Chinese medicinal materials from the feeding belt 19 and accurately deliver them into the slicing box 6. The division of labor is clear, ensuring smooth connection between the feeding unit 3 and the slicing unit 2, allowing the Chinese medicinal materials to enter the slicing box 6 in sequence, avoiding conveying deviations from affecting the slicing process, and improving the coordination of each unit of the equipment.
[0048] like Figure 2 and Figure 4 As shown, the top of the slicing box 6 in this embodiment is connected to a feed inlet 35, and a drawer-type receiving box 36 is located at the bottom of the slicing box 6. Specifically, the feed inlet 35 facilitates feeding by the feeding component 5, and the receiving box can collect and clean residual Chinese medicinal materials in the slicing box 6, which facilitates equipment cleaning and maintenance, prevents residual Chinese medicinal materials from affecting the subsequent slicing quality, and improves the convenience and hygiene of equipment use.
[0049] like Figure 8 As shown, in this embodiment, the plurality of cutting blades 10 are vertically arranged on one side of the slicing mesh plate 9, and the blade direction of the cutting blade 10 is perpendicular to the conveying direction of the Chinese medicinal materials; a slicing gap 37 is formed between two adjacent cutting blades 10, and the width of the slicing gap 37 is smaller than the minimum cross-sectional size of the Chinese medicinal materials to be sliced. Specifically, the layout of the cutting blades 10 and the slicing gap 37 are defined, with the blades arranged vertically and the blades perpendicular to the conveying direction to ensure a reasonable slicing direction; the gap is smaller than the minimum cross-sectional size of the Chinese medicinal materials to ensure one-time slicing, improve the integrity and accuracy of the slices, avoid problems such as uneven slicing and breakage of the Chinese medicinal materials due to excessively large gaps, and ensure the quality of the slices.
[0050] like Figure 6 As shown, the processing platform 1 in this embodiment has feeding ports 38 on both sides. One side of the feeding port 38 is connected to one side of the slicing mesh plate 9. A feeding ramp 39 is connected below the feeding port 38. A receiving box 40 is connected to the feeding ramp 39. The receiving box 40 has a receiving ramp 41 on one side corresponding to the feeding ramp 39. Specifically, after slicing, the Chinese medicinal materials slide into the receiving box 40 through the feeding port 38 and the ramp. The receiving ramp 41 assists in receiving the materials, realizing automatic collection of slices, reducing manual intervention, improving the collection efficiency and cleanliness of Chinese medicinal materials, and making post-slicing processing more convenient.
[0051] The working principle of this utility model is as follows:
[0052] The material storage chamber 14 of the hopper 11 temporarily stores Chinese medicinal materials. The linear vibrator 16 vibrates in a direction and sends the Chinese medicinal materials through the discharge port 15 to the inclined lifting component 12. The lifting belt 17 receives and conveys the materials upward by the baffle plate 42, and then transfers them to the feeding belt 19 with the blocking rail 21 to accurately deliver them to the feeding component 5 of the slicing unit 2. The feeding belt 32 sends the Chinese medicinal materials into the inlet 35 of the slicing box 6 and into the drawer-type receiving box 36 for temporary storage.
[0053] In the drive unit 4, the drive motor 22 transmits power to the transmission assembly 26 via the drive wheel 23, the driven wheel 24, and the gearbox 25; the rotating disc 29 rotates, and the eccentric convex shaft 30 slides along the annular hollow groove 31, driving the transmission shaft 7 of the double slicing unit 2 to reciprocate, and the push plate 8 pushes the Chinese medicinal materials in the receiving box to move towards the slicing screen 9; the cutting blades 10 on the slicing screen 9 are vertically distributed with the blades perpendicular to the conveying direction, and the design of the slicing gap 37 being smaller than the minimum cross-sectional size of the Chinese medicinal materials allows for precise slicing of the moving Chinese medicinal materials;
[0054] After slicing, the medicinal herbs slide down the feeding port 38 of the processing platform 1 along the feeding slope 39 to the receiving box 40, where they are collected using the receiving slope 41. The drawer-type receiving box 36 can be pulled out to clean the residue in the slicing box 6, ensuring the cleanliness of the equipment and stable operation in the next run. The coordinated operation of each link realizes the automated and efficient operation of the medicinal herbs from feeding to slicing and collection.
[0055] This utility model has a reasonable overall design. The processing platform 1 provides stable support for the whole. The symmetrical layout of the double slicing units 2, combined with the double feeding units 3 and the synchronous drive of the drive unit 4, greatly improves the slicing efficiency. The feeding component 5 in the slicing unit 2 is precisely connected to the feeding and slicing box 6. The feeding port 35 and drawer-type receiving box 36 of the slicing box 6 facilitate feeding and cleaning. The vertically distributed cutters 10 with reasonable blade direction on the slicing mesh plate 9, combined with the slicing gap 37 which is smaller than the minimum cross-sectional size of the medicinal material, ensure the uniformity and integrity of the slices. The hopper 11 and storage chamber 14 of the feeding unit 3 are combined with the straight The linear vibrator 16 prevents the herbs from clogging; the baffle 42 of the lifting assembly 12 and the blocking fence 21 of the feeding assembly 13 prevent the herbs from slipping during transport; and the feeding assembly 5 ensures the stable transport of the herbs to the slicing box 6. The drive unit 4's drive motor 22, drive wheel 23, driven wheel 24, gearbox 25, and transmission assembly 26 work together to achieve synchronous reciprocating motion of the transmission shaft 7, ensuring the stability of the push plate 8 in pushing the herbs. The discharge port 38 and discharge ramp 39 of the processing platform 1 cooperate with the receiving box 40 to achieve automatic collection after slicing, reducing manual intervention. Overall, the various components of the equipment have clear division of labor and work together efficiently, improving slicing efficiency and quality while enhancing the convenience of operation and maintenance.
[0056] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.
Claims
1. A high-efficiency slicing device for traditional Chinese medicine, characterized in that, It includes a processing platform, two slicing units, two feeding units, and a drive unit; Two slicing units are respectively arranged opposite each other at both ends of the processing platform; each slicing unit includes a feeding assembly, a slicing box, a drive shaft, and a push plate; the feeding assembly is used to receive the Chinese medicinal materials conveyed by the feeding unit and deliver them to the slicing box; a slicing mesh plate is provided on one side of the slicing box, and the slicing mesh plate is equipped with several cutters; the drive shaft is located on the side of the slicing box away from the slicing mesh plate; the push plate is connected to one end of the drive shaft and is movably embedded inside the slicing box; The discharge ends of the two feeding units are respectively connected to one side of the feeding components of the two slicing units; The drive unit is used to drive the transmission shafts of the two slicing units to move synchronously, so as to push the Chinese medicinal materials in the slicing box towards the cutting direction of the slicing screen through the push plate.
2. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The feeding unit includes a hopper, a lifting component, and a feeding component; the hopper is used to temporarily store Chinese medicinal materials to be fed; the lifting component is inclined on one side of the hopper and is used to receive and convey the Chinese medicinal materials in the hopper upward; the feeding component is used to receive the Chinese medicinal materials conveyed by the lifting component and send them to the slicing box.
3. The high-efficiency slicing device for traditional Chinese medicine according to claim 2, characterized in that, The hopper has a storage chamber inside, and the bottom of the storage chamber has a discharge port connected to the lifting assembly. The bottom of the storage chamber is equipped with a linear vibrator, which is used to generate directional vibration so that the Chinese medicinal materials in the storage chamber are conveyed to the lifting assembly along the discharge port.
4. The high-efficiency slicing device for traditional Chinese medicine according to claim 2, characterized in that, The lifting assembly includes a lifting belt and a lifting motor; the surface of the lifting belt is provided with several baffles for receiving Chinese medicinal materials, and the several baffles are spaced apart along the length of the lifting belt; the lifting motor is used to drive the lifting belt to run. The feeding assembly includes a feeding belt and a feeding motor; the outer periphery of the feeding belt is provided with a barrier; the feeding motor is used to drive the feeding belt to run.
5. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The drive unit includes a drive motor, a drive wheel, a driven wheel, a gearbox, and a transmission assembly; the output end of the drive motor is connected to the drive wheel; the drive wheel is connected to the driven wheel via a drive belt; the driven wheel is connected to the gearbox; the output end of the gearbox is connected to the transmission assembly; the transmission assembly is connected to the drive shafts of the two slicing units respectively, for constraining and synchronously transmitting the motion of the two drive shafts.
6. The high-efficiency slicing device for traditional Chinese medicine according to claim 5, characterized in that, The transmission assembly includes a support base, a rotating disk, a convex shaft, and an annular hollow groove; the support base is mounted on the processing platform; the rotating disk is connected to the gearbox; the convex shaft is eccentrically disposed on the rotating disk and is hinged to the transmission shafts of the two slicing units respectively; the annular hollow groove is sleeved on the outer circumference of the convex shaft and slides in cooperation with the transmission shaft.
7. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The feeding assembly includes a feeding belt and a feeding motor. The feeding belt is equipped with a feeding fence on its outer periphery. The feeding belt is used to receive the Chinese medicinal materials conveyed by the feeding belt and deliver the Chinese medicinal materials to the slicing box. The feeding motor is used to drive the feeding belt to run.
8. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The top of the slicing box is connected to a feed inlet, and the feed inlet is located at the bottom of the slicing box and is equipped with a drawer-type material receiving box.
9. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The plurality of cutting blades are vertically arranged on one side of the slicing mesh, and the blade direction of the cutting blades is perpendicular to the conveying direction of the Chinese medicinal materials; a slicing gap is formed between two adjacent cutting blades, and the width of the slicing gap is smaller than the minimum cross-sectional size of the Chinese medicinal materials to be sliced.
10. The high-efficiency slicing device for traditional Chinese medicine according to claim 1, characterized in that, The processing platform has a feeding port on each side. One side of the feeding port is connected to one side of the slicing mesh plate. A feeding ramp is connected below the feeding port. A material receiving box is connected to the feeding ramp. A material receiving ramp is provided on one side of the material receiving box corresponding to the feeding ramp.