Packaging equipment for traditional Chinese medicine quantification

CN224603340UActive Publication Date: 2026-08-07DONGGUAN YIHENG PHARM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN YIHENG PHARM CO LTD
Filing Date
2025-09-08
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]为解决上述问题,本实用新型提供一种用于中药定量的包装设备,解决了现有中药药材在包装过程中,均是采用人工包装的方式进行,对于一些需要研磨或切片的药材,所需的劳动成本较大,不易于多药材的定量进行掌控,且工作效率比较低,不利于大力发展

Benefits of technology

本实用新型的有益效果是:

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to traditional Chinese medicine technical field, concretely for a kind of packing plant for traditional Chinese medicine ration, including case, control component, slicing component, feeding assembly, stirring component, output component, packaging component and transmission component;Stirring component is communicated with output component, slicing component and feeding assembly are oppositely arranged stirring component, and packaging component is located at the one end of output component;Stirring component is used for the medicine stirring of slicing component and feeding assembly to be rationed output through control component and output component;Traditional Chinese medicine processing link can be accurately controlled by control component, ensure accuracy, and the quantitative output of medicinal material is realized by the synergic work of control component and output component, the ingenious connection of slicing component and feeding assembly and stirring component makes that medicinal material can be rapidly, uniformly stirred and mixed, improves the consistency of traditional Chinese medicine component, ensures drug quality, and the freshness and medicinal efficacy of medicinal material are maintained by packaging component after rationing, and it is strong in practicality.
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Description

Technical Field

[0001] This utility model relates to the field of traditional Chinese medicine technology, specifically to a packaging device for quantitative distribution of traditional Chinese medicine. Background Technology

[0002] Medicinal herbs are the raw materials used in pharmaceutical manufacturing. During the processing of traditional Chinese medicine, some raw materials need to be crushed to facilitate better decoction and reduce transportation space. Therefore, during the pharmaceutical manufacturing process, some medicinal materials need to be packaged in a fixed quantity for transportation and sale, which can increase the shelf life of the medicinal materials.

[0003] Currently, the packaging of Chinese medicinal materials is all done manually. For some medicinal materials that need to be ground or sliced, the labor cost is high, it is not easy to control the quantity of multiple medicinal materials, and the work efficiency is relatively low, which is not conducive to the vigorous development of the industry. Utility Model Content

[0004] To address the aforementioned problems, this utility model provides a packaging device for quantitative control of traditional Chinese medicine. This device solves the problem that existing packaging methods for traditional Chinese medicine materials are all done manually. For some materials that require grinding or slicing, the labor costs are high, it is difficult to control the quantitative control of multiple materials, and the work efficiency is relatively low, which is not conducive to vigorous development. The technical solution adopted by this utility model is: a packaging device for quantitative traditional Chinese medicine, including a chassis, a control component, a slicing component, a feeding component, a stirring component, an output component, a packaging component, and a transmission component; the control component is located on one side of the chassis near the output component, the stirring component is connected to the output component, the slicing component and the feeding component are arranged opposite to each other on the stirring component, and the packaging component is located at one end of the output component; The stirring assembly is used to stir and mix the medicinal materials in the slicing assembly and the feeding assembly, and to output a quantitative amount through the control assembly and the output assembly. The conveying assembly is equipped with a packaging assembly for packaging the quantitative amount of medicinal materials and conveying them through the transmission assembly.

[0005] A further improvement to the above solution is that a drive chamber is provided inside the chassis, a transmission chamber is provided on one side of the drive chamber, and heat dissipation holes are provided on the outer wall of the chassis near the drive chamber.

[0006] A further improvement to the above scheme is that the drive chamber is equipped with a slicing motor, a feeding motor, a stirring motor, and an output motor. One end of each of the slicing motor, the feeding motor, the stirring motor, and the output motor is connected to the transmission chamber. The transmission chamber is used to transmit the power of the slicing motor, the feeding motor, the stirring motor, and the output motor to the slicing assembly, the feeding assembly, the stirring assembly, and the output assembly.

[0007] A further improvement to the above solution is that the control component includes a control box, a main switch, control buttons, and a display screen; the control box is used to control the slicing component, the feeding component, the stirring component, the output component, the packaging component, and the transmission component, and the parameters are adjusted by the control buttons.

[0008] A further improvement to the above solution is that the slicing assembly includes a slicing chamber, an inlet is provided on the slicing chamber, and a slicing element is provided near the inlet in the slicing chamber; the slicing element is used to rotate and cut the medicinal material at the inlet.

[0009] A further improvement to the above scheme is that an observation window is provided on one side of the slicing chamber for observation when slicing the medicinal material; the slicing element includes a slicing guide rod and slicing blades, the two ends of the slicing guide rod are mounted on the slicing chamber, one end of the slicing guide rod is connected to the slicing motor through a transmission chamber, and multiple slicing blades are provided, with multiple slicing blades arranged in a ring around the slicing guide rod.

[0010] A further improvement to the above scheme is that the feeding assembly includes a feeding chamber, one end of which is connected to the stirring assembly; the stirring assembly includes a stirring drive rod, a stirring drive wheel, and stirring blades, the two ends of the stirring drive rod are respectively inserted into the slicing assembly and the feeding assembly, the stirring drive wheel is sleeved on the stirring drive rod near the transmission chamber, and multiple stirring blades are provided, which are spirally distributed on the stirring drive rod.

[0011] A further improvement to the above solution is that the stirring assembly is provided with a stirring outlet near the output assembly, one end of the output assembly is connected to the stirring outlet, and the output assembly includes an output push rod, an output push plate, and an output push element; one end of the output push element is connected to the output push rod to drive the output push plate toward the packaging assembly.

[0012] A further improvement to the above scheme is that the output component is provided with a quantitative outlet near the packaging component, a sealing clamp is provided on the quantitative outlet, the packaging component is sleeved on the quantitative outlet, and the packaging component is sealed by the sealing clamp.

[0013] A further improvement to the above solution is that the transmission component is located below the packaging component, and the transmission component includes a drive motor, a transmission frame, and a transmission guide roller; multiple sets of transmission guide rollers are provided, and the multiple sets of transmission guide rollers are movably mounted on the transmission frame. The beneficial effects of this utility model are: Compared to existing medicinal herb processing methods, this invention uses control components to precisely control each step of the traditional Chinese medicine processing process, ensuring operational stability and accuracy. The coordinated operation of the control and output components enables quantitative output of medicinal materials, significantly improving packaging precision. The relative arrangement of the slicing and feeding components, along with the ingenious connection of the stirring components, allows for rapid and uniform mixing of the medicinal materials, improving mixing efficiency and enhancing the consistency of the medicinal components, thus ensuring drug quality. The packaging components allow for timely packaging of the quantitatively processed medicinal materials, preventing prolonged contact with the external environment and maintaining freshness and efficacy. Furthermore, the introduction of the transmission components enables automated transport of packaged medicinal products, greatly saving labor costs and improving overall production efficiency. The design is compact and highly practical. Attached Figure Description

[0014] Figure 1 This is a perspective view of the packaging equipment for quantitative distribution of traditional Chinese medicine according to this utility model; Figure 2 This is a top view of the packaging equipment for quantitative distribution of traditional Chinese medicine according to this utility model; Figure 3 for Figure 2 Sectional view at point AA.

[0015] Explanation of reference numerals in the attached drawings: 10. Chassis; 11. Drive chamber; 12. Transmission chamber; 13. Heat dissipation hole; 14. Slicing motor; 15. Feeding motor; 16. Stirring motor; 17. Output motor. Control component 20, control box 21, main switch 22, control button 23, display screen 24; 30. Slicing assembly; 31. Slicing chamber; 32. Feed inlet; 33. Slicing element; 34. Observation window; 35. Slicing guide rod; 36. Slicing blade; Feeding assembly 40, feeding chamber 41; 50. Stirring assembly; 51. Stirring drive rod; 52. Stirring drive wheel; 53. Stirring blade; 54. Stirring outlet. Output assembly 60, output push rod 61, output push plate 62, output push element 63; Packaging components 70, quantitative outlet 71, sealing clamps 72; Transmission component 80, drive motor 81, transmission frame 82, and transmission guide roller 83. Detailed Implementation

[0016] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0017] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component.

[0018] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

[0019] like Figure 1-3 As shown in the embodiment of this utility model, a packaging device for quantitative distribution of traditional Chinese medicine includes a chassis 10, a control component 20, a slicing component 30, a feeding component 40, a stirring component 50, an output component 60, a packaging component 70, and a transmission component 80. The control component 20 is located on one side of the chassis 10 near the output component 60. The stirring component 50 is connected to the output component 60. The slicing component 30 and the feeding component 40 are arranged opposite to each other on the stirring component 50. The packaging component 70 is located at one end of the output component 60. The stirring component 50 is used to stir and mix the medicinal materials in the slicing component 30 and the feeding component 40, and to output a quantitative amount of medicinal materials through the control component 20 and the output component 60. The packaging component 70 is provided on the transmission component for packaging the quantitative amount of medicinal materials and conveying them through the transmission component 80. In this embodiment, the control component 20 can precisely control each step of the traditional Chinese medicine processing process, ensuring the stability and accuracy of the operation. The coordinated work of the control component 20 and the output component 60 realizes the quantitative output of medicinal materials, greatly improving the accuracy of packaging. Through the relative arrangement of the slicing component 30 and the feeding component 40, and the ingenious connection of the stirring component 50, the medicinal materials can be quickly and evenly stirred and mixed, improving the mixing efficiency and helping to improve the consistency of traditional Chinese medicine components, ensuring the quality of the medicine. The packaging component 70 enables the quantitative medicinal materials to be packaged in a timely manner, avoiding prolonged contact between the medicinal materials and the external environment, thereby maintaining the freshness and efficacy of the medicinal materials. Furthermore, the introduction of the transmission component 80 realizes the automated transportation of packaged traditional Chinese medicine products, greatly saving labor costs, improving overall production efficiency, and featuring a compact structure and strong practicality.

[0020] like Figure 1 As shown, a drive chamber 11 is provided inside the chassis 10, and a transmission chamber 12 is provided on one side of the drive chamber 11. Heat dissipation holes 13 are provided on the outer wall of the chassis 10 near the drive chamber 11. In this embodiment, a dedicated drive chamber 11 is provided inside the chassis 10 to house the drive device, ensuring stable and efficient equipment operation. The transmission chamber 12 on one side of the drive chamber 11 effectively realizes power transmission and conversion, improving the accuracy and efficiency of packaging. Furthermore, the heat dissipation holes 13 carefully arranged on the outer wall of the chassis 10 near the drive chamber 11 enhance the heat dissipation performance of the equipment, effectively avoiding overheating problems caused by prolonged operation, thereby extending the service life of the equipment.

[0021] The drive chamber 11 houses a slicing motor 14, a feeding motor 15, a stirring motor 16, and an output motor 17. One end of each of these motors is connected to the transmission chamber 12, which transmits power from the slicing motor 14, feeding motor 15, stirring motor 16, and output motor 17 to the slicing assembly 30, feeding assembly 40, stirring assembly 50, and output assembly 60. In this embodiment, the slicing motor 14, feeding motor 15, stirring motor 16, and output motor 17 are integrated within the ingenious drive chamber 11, forming a highly efficient power transmission system. This system precisely distributes the power of each motor to the slicing assembly 30, feeding assembly 40, stirring assembly 50, and output assembly 60, ensuring the smoothness and accuracy of the entire packaging process.

[0022] The control component 20 includes a control box 21, a main switch 22, control buttons 23, and a display screen 24. The control box 21 controls the slicing component 30, the feeding component 40, the stirring component 50, the output component 60, the packaging component 70, and the transmission component 80, and adjusts parameters via the control buttons 23. In this embodiment, the control box 21 acts as the central hub, effectively directing the coordinated operation of various components such as slicing, feeding, stirring, output, packaging, and transmission, ensuring the smoothness and efficiency of traditional Chinese medicine packaging. The control buttons 23 allow operators to easily and precisely control various parameters, such as slice thickness and stirring speed, to meet the packaging needs of different traditional Chinese medicines. The display screen 24 shows the real-time working status and parameter settings for easy monitoring and management.

[0023] like Figures 2 to 3As shown, the slicing assembly 30 includes a slicing chamber 31 with an inlet 32. A slicing element 33 is positioned near the inlet 32 ​​within the slicing chamber 31. The slicing element 33 is used to rotate and cut the medicinal material at the inlet 32. In this embodiment, the inlet 32 ​​above the slicing chamber 31 facilitates the feeding of medicinal materials. The slicing element 33, cleverly installed near the inlet 32, precisely cuts the medicinal material at the inlet 32 ​​through rotation, achieving rapid and uniform slicing. This improves the processing efficiency of the medicinal materials and ensures uniform slice specifications, laying a solid foundation for subsequent quantitative packaging.

[0024] An observation window 34 is provided on one side of the slicing chamber 31 for observing the medicinal materials during slicing. The slicing element 33 includes a slicing guide rod 35 and slicing blades 36. The two ends of the slicing guide rod 35 are mounted on the slicing chamber 31, and one end of the slicing guide rod 35 is connected to the slicing motor 14 through a transmission chamber 12. Multiple slicing blades 36 are arranged in a ring around the slicing guide rod 35. In this embodiment, the observation window 34 on one side of the slicing chamber 31 effectively improves the visibility of the medicinal material slicing process, facilitating real-time monitoring of slicing quality by the operator. The slicing element 33, composed of the slicing guide rod 35 and multiple ring-arranged slicing blades 36, has a compact and efficient structure.

[0025] The feeding assembly 40 includes a feeding chamber 41, one end of which is connected to the stirring assembly 50. The stirring assembly 50 includes a stirring drive rod 51, a stirring drive wheel 52, and stirring blades 53. The two ends of the stirring drive rod 51 are respectively inserted into the slicing assembly 30 and the feeding assembly 40. The stirring drive wheel 52 is sleeved on the stirring drive rod 51 near the transmission chamber 12. Multiple stirring blades 53 are provided, and the multiple stirring blades 53 are spirally distributed on the stirring drive rod 51. In this embodiment, an efficient material handling process is achieved through the feeding component 40 and the stirring component 50. One end of the feeding chamber 41 is connected to the stirring component 50, ensuring that the material is smoothly introduced into the stirring area. In the stirring component 50, the stirring drive rod 51 passes through the slicing component 30 and the feeding component 40, resulting in a compact structure and stable transmission. The stirring drive wheel 52 is installed near the transmission chamber 12 on the stirring drive rod 51, effectively transmitting power. Through multiple spirally distributed stirring blades 53, not only is the contact area between the material and the blades increased, but also the uniform mixing and fine cutting of the material are promoted, improving the processing efficiency and packaging accuracy of the traditional Chinese medicine quantitative packaging equipment and ensuring the stability of product quality.

[0026] A stirring assembly 50 is provided with a stirring outlet 54 near the output assembly 60. One end of the output assembly 60 is connected to the stirring outlet 54. The output assembly 60 includes an output push rod 61, an output push plate 62, and an output push element 63. One end of the output push element 63 is connected to the output push rod 61, which drives the output push plate 62 to output towards the packaging assembly 70. In this embodiment, through the ingenious combination of the stirring assembly 50 and the output assembly 60, an efficient quantitative packaging process for traditional Chinese medicine is achieved. The setting of the stirring outlet 54 allows the stirred traditional Chinese medicine to flow smoothly into the output assembly 60. Through the synergistic action of the output push rod 61, the output push plate 62, and the output push element 63, the output assembly 60 effectively pushes the traditional Chinese medicine from the stirring outlet 54 to the packaging assembly 70.

[0027] A metering outlet 71 is provided on the output component 60 near the packaging component 70. A sealing clamp 72 is provided on the metering outlet 71. The packaging component 70 is fitted onto the metering outlet 71 and sealed by the sealing clamp 72. In this embodiment, by setting the metering outlet 71 near the packaging component 70, accurate measurement of traditional Chinese medicine is achieved. The sealing clamp 72 on the metering outlet 71 not only ensures the accuracy of the dosage of traditional Chinese medicine during packaging but also effectively prevents leakage and contamination of the traditional Chinese medicine during packaging. After the packaging component 70 is fitted onto the metering outlet 71, the sealing clamp 72 plays a key role, achieving the airtightness of the packaging by tightly fitting the packaging component 70, thus ensuring the quality and hygiene of the traditional Chinese medicine product.

[0028] A transmission assembly 80 is disposed below the packaging assembly 70. The transmission assembly 80 includes a drive motor 81, a transmission frame 82, and transmission guide rollers 83. Multiple sets of transmission guide rollers 83 are provided, and these multiple sets of transmission guide rollers 83 are movably mounted on the transmission frame 82. In this embodiment, the transmission assembly 80 is cleverly positioned below the packaging assembly 70, optimizing the spatial layout of the equipment and improving the overall structural compactness. The transmission assembly 80, composed of a drive motor 81, a transmission frame 82, and multiple sets of transmission guide rollers 83, with the transmission guide rollers 83 movably mounted on the transmission frame 82, achieves a flexible and stable transmission function.

[0029] A packaging device for quantitative distribution of traditional Chinese medicine includes a chassis 10, a control component 20, a slicing component 30, a feeding component 40, a stirring component 50, an output component 60, a packaging component 70, and a conveying component 80. The control component 20 is located on one side of the chassis 10 near the output component 60. The stirring component 50 is connected to the output component 60. The slicing component 30 and the feeding component 40 are disposed opposite each other on the stirring component 50. The packaging component 70 is located at one end of the output component 60. The stirring component 50 is used to stir and mix the medicinal materials in the slicing component 30 and the feeding component 40, and to output a quantitative amount of medicinal materials through the control component 20 and the output component 60. The packaging component 70 is provided on the conveying component for packaging the quantitative amount of medicinal materials and conveying them through the conveying component 80. In this embodiment, the control component 20 can precisely control each step of the traditional Chinese medicine processing process, ensuring the stability and accuracy of the operation. The coordinated work of the control component 20 and the output component 60 realizes the quantitative output of medicinal materials, greatly improving the accuracy of packaging. Through the relative arrangement of the slicing component 30 and the feeding component 40, and the ingenious connection of the stirring component 50, the medicinal materials can be quickly and evenly stirred and mixed, improving the mixing efficiency and helping to improve the consistency of traditional Chinese medicine components, ensuring the quality of the medicine. The packaging component 70 enables the quantitative medicinal materials to be packaged in a timely manner, avoiding prolonged contact between the medicinal materials and the external environment, thereby maintaining the freshness and efficacy of the medicinal materials. Furthermore, the introduction of the transmission component 80 realizes the automated transportation of packaged traditional Chinese medicine products, greatly saving labor costs, improving overall production efficiency, and featuring a compact structure and strong practicality.

[0030] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this 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 these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A packaging device for quantitative distribution of traditional Chinese medicine, characterized in that: It includes a chassis, a control component, a slicing component, a feeding component, a mixing component, an output component, a packaging component, and a transmission component; the control component is located on one side of the chassis near the output component, the mixing component is connected to the output component, the slicing component and the feeding component are disposed opposite to each other on the mixing component, and the packaging component is located at one end of the output component; The stirring assembly is used to stir and mix the medicinal materials in the slicing assembly and the feeding assembly, and to output a quantitative amount through the control assembly and the output assembly. The conveying assembly is equipped with a packaging assembly for packaging the quantitative amount of medicinal materials and conveying them through the transmission assembly.

2. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 1, characterized in that: The chassis contains a drive chamber, and a transmission chamber is located on one side of the drive chamber. The chassis has heat dissipation holes on its outer wall near the drive chamber.

3. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 2, characterized in that: The drive chamber is equipped with a slicing motor, a feeding motor, a stirring motor, and an output motor. One end of each of the slicing motor, feeding motor, stirring motor, and output motor is connected to the transmission chamber. The transmission chamber is used to transmit the power of the slicing motor, feeding motor, stirring motor, and output motor to the slicing assembly, feeding assembly, stirring assembly, and output assembly.

4. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 3, characterized in that: The control components include a control box, a main switch, control buttons, and a display screen; the control box is used to control the slicing component, feeding component, stirring component, output component, packaging component, and transmission component, and the parameters are adjusted by the control buttons.

5. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 3, characterized in that: The slicing assembly includes a slicing chamber with an inlet, and a slicing element is disposed near the inlet. The slicing element is used to rotate and cut the medicinal material at the inlet.

6. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 5, characterized in that: An observation window is provided on one side of the slicing chamber for observing the medicinal material during slicing. The slicing element includes a slicing guide rod and slicing blades. Both ends of the slicing guide rod are mounted on the slicing chamber. One end of the slicing guide rod is connected to the slicing motor through a transmission chamber. Multiple slicing blades are provided and arranged in a ring around the slicing guide rod.

7. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 6, characterized in that: The feeding assembly includes a feeding chamber, one end of which is connected to the stirring assembly. The stirring assembly includes a stirring drive rod, a stirring drive wheel, and stirring blades. The two ends of the stirring drive rod are respectively inserted into the slicing assembly and the feeding assembly. The stirring drive wheel is sleeved on the stirring drive rod near the transmission chamber. Multiple stirring blades are provided, and the multiple stirring blades are spirally distributed on the stirring drive rod.

8. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 7, characterized in that: The stirring assembly is provided with a stirring outlet near the output assembly. One end of the output assembly is connected to the stirring outlet. The output assembly includes an output push rod, an output push plate, and an output push element. One end of the output push element is connected to the output push rod, which drives the output push plate to output toward the packaging assembly.

9. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 8, characterized in that: The output component has a quantitative outlet near the packaging component, and a sealing clamp is provided on the quantitative outlet. The packaging component is fitted onto the quantitative outlet and sealed by the sealing clamp.

10. The packaging equipment for quantitative distribution of traditional Chinese medicine according to claim 9, characterized in that: The transmission component is located below the packaging component. The transmission component includes a drive motor, a drive frame, and drive guide rollers. Multiple sets of drive guide rollers are provided, and the multiple sets of drive guide rollers are movably mounted on the drive frame.