Medicinal material drying device for toxic Mongolian medicine
By designing an adjustable air inlet pipe and stirring mechanism for drying toxic Mongolian medicinal materials, the problem of uneven drying was solved, achieving uniform heating and efficient drying of the medicinal materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- INNER MONGOLIA AUTONOMOUS REGION INT MONGOLIAN MEDICINE HOSPITAL INNER MONGOLIA AUTONOMOUS REGION MONGOLIAN MEDICINE RES INST
- Filing Date
- 2025-04-30
- Publication Date
- 2026-05-01
AI Technical Summary
Existing technologies for drying toxic Mongolian medicinal materials suffer from uneven drying, which affects drying efficiency.
A drying device for toxic Mongolian medicinal materials was designed, which includes a drying chamber, a drying mechanism, and a stirring mechanism. Through an adjustable air inlet pipe and a stirring mechanism, uniform heating and stirring of the medicinal materials are achieved, thereby improving the drying efficiency.
The adjustable air inlet pipe and stirring mechanism improve the uniformity and efficiency of drying medicinal materials, enhance the contact effect between the medicinal materials and hot air, and improve the overall drying efficiency.
Smart Images

Figure CN224188891U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medicinal material drying technology, specifically to a drying device for toxic Mongolian medicinal materials. Background Technology
[0002] The drying device for toxic Mongolian medicinal materials is a device used to dehydrate toxic Mongolian medicinal materials so that they can be stored for a long time and retain their medicinal properties.
[0003] In existing technologies, the drying of toxic Mongolian medicinal materials generally uses box-type drying equipment. Box-type drying equipment is typically a sealed box structure equipped with a heating system, a ventilation system, and a temperature control system. The heating system provides heat to evaporate the moisture in the medicinal materials, the ventilation system promotes air exchange between the inside and outside of the box to remove moisture, and the temperature control system ensures that the drying process takes place within a suitable temperature range.
[0004] However, during the drying process of toxic Mongolian medicinal materials, the materials are stacked in the drying box, and the heating position of the heating system is generally fixed. This leads to differences in heating and drying efficiency at different locations of the materials, which in turn affects the overall drying efficiency of the materials. Utility Model Content
[0005] (a) Technical problems to be solved
[0006] To address the shortcomings of existing technologies, this utility model provides a drying device for toxic Mongolian medicinal materials, which solves the problem mentioned in the background art that uneven drying easily affects the drying efficiency of toxic Mongolian medicinal materials.
[0007] (II) Technical Solution
[0008] To achieve the above objectives, this utility model provides the following technical solution: a drying device for toxic Mongolian medicinal materials, comprising a drying chamber, the drying chamber including a chamber body and a lid, the lid being fixedly mounted on the chamber body by bolts, and further including a mounting groove, a drying cylinder, a drying mechanism, and a stirring mechanism. The mounting groove is formed on the top side wall of the chamber body, the drying cylinder is disposed inside the drying chamber, and both ends of the drying cylinder are in contact with the chamber body and the lid, respectively. A mounting plate is fixedly disposed on the side wall of the drying cylinder, the mounting plate extending into the mounting groove and slidably connected to the side wall of the mounting groove, the drying mechanism being disposed inside the drying chamber for drying the medicinal materials, and the stirring mechanism being disposed inside the drying cylinder for stirring the medicinal materials.
[0009] Preferably, a sealing ring is fixedly provided on both the top wall and the bottom wall of the drying cylinder, and the two ends of the sealing ring are in contact with the drying chamber.
[0010] Furthermore, the drying mechanism includes a filter plate, a first air inlet pipe, a second air inlet pipe, an air inlet hose, and a rotating mechanism. The filter plate is fixedly installed inside the drying cylinder. Multiple air outlets are provided at the top of the side wall of the drying cylinder. An air outlet pipe is connected to the side wall of the drying chamber. A first cavity is provided inside the chamber. The first air inlet pipe is rotatably and sealed inside the first cavity. The top of the first air inlet pipe is sealed and extends into the drying cylinder. Multiple second air inlet pipes are connected to the side wall of the first air inlet pipe. Multiple air inlets are provided on the second air inlet pipes. The air inlet hose is installed through the side wall of the first cavity and is connected to the first air inlet pipe. The rotating mechanism is installed on the drying chamber and is used to drive the first air inlet pipe to rotate. The rotating mechanism includes a first gear ring, a first gear, and a first motor. The first gear ring is fixedly installed on the side wall of the first air inlet pipe. The first gear is rotatably installed in the first cavity and meshes with the first gear ring. The first motor is installed on the drying chamber, and the output end of the first motor is fixedly connected to the first gear.
[0011] Furthermore, the stirring mechanism includes a support column, scrapers, a limiting ring, and a driving mechanism. The support column passes through and is rotatably mounted on the filter plate. Multiple scrapers are arranged around the periphery of the support column, and the scrapers contact the drying cylinder. Multiple stirring rods are fixedly mounted between the scrapers and the side wall of the support column. The limiting ring is rotatably mounted at the top of the side wall of the support column, and multiple limiting rods are fixedly mounted between the limiting ring and the side wall of the drying cylinder. The driving mechanism is located between the support column and the first air inlet pipe and is used to drive the support column to rotate. The driving mechanism includes a driving groove and a driving block. The driving groove is formed on the top side wall of the first air inlet pipe, and the driving block is fixedly mounted on the support column. The driving block extends into the driving groove and is slidably connected to the side wall of the driving groove.
[0012] (III) Beneficial Effects
[0013] Compared with the prior art, this utility model provides a drying device for toxic Mongolian medicinal materials, which has the following beneficial effects:
[0014] 1. In this utility model, the drying mechanism facilitates the blowing of dry hot air into the first and second air inlets through the air inlet hose. At the same time, the hot air can dry the medicinal materials through the air inlet and the filter plate. During the drying process, the position of the air inlet can be adjusted by the operation of the first motor, thereby improving the drying uniformity and drying efficiency of the medicinal materials.
[0015] 2. In this utility model, by setting up a stirring mechanism, the first air inlet pipe can drive the support column to rotate during rotation through the cooperation of the driving block and the driving groove, thereby driving the stirring rod and scraper to stir the medicinal materials in the drying cylinder, thereby improving the contact effect between the medicinal materials and the hot air, and further improving the uniformity and drying efficiency of the medicinal materials. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this application;
[0017] Figure 2 This is a schematic diagram of the cross-sectional structure of this application;
[0018] Figure 3 This is a schematic diagram of the exploded cross-sectional structure of this application;
[0019] Figure 4 This is a cross-sectional view of the drying mechanism in this application;
[0020] Figure 5 This is a cross-sectional structural diagram of the drying cylinder section of this application.
[0021] In the diagram: 1. Box body; 2. Box cover; 3. Mounting slot; 4. Drying cylinder; 5. Mounting plate; 6. Filter plate; 7. Air outlet; 8. Air outlet pipe; 9. First air inlet pipe; 10. Second air inlet pipe; 11. Air inlet hose; 12. First gear ring; 13. First gear; 14. First motor; 15. Support column; 16. Scraper; 17. Stirring rod; 18. Limiting ring; 19. Limiting rod; 20. Drive slot; 21. Drive block. Detailed Implementation
[0022] 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.
[0023] Please see Figures 1-5A drying device for toxic Mongolian medicinal materials includes a drying chamber, which comprises a chamber body 1 and a cover 2. The cover 2 is fixedly mounted on the chamber body 1 by bolts. The device also includes a mounting groove 3, a drying cylinder 4, a drying mechanism, and a stirring mechanism. The mounting groove 3 is located on the top side wall of the chamber body 1. The drying cylinder 4 is located inside the drying chamber, with both ends of the drying cylinder 4 contacting the chamber body 1 and the cover 2, respectively. A mounting plate 5 is fixedly mounted on the side wall of the drying cylinder 4, extending into the mounting groove 3 and slidably connected to the side wall of the mounting groove 3. The drying mechanism is located inside the drying chamber for drying the medicinal materials. The stirring mechanism is located inside the drying cylinder 4 for stirring the medicinal materials. Sealing rings are fixedly mounted on the top and bottom walls of the drying cylinder 4, with both ends of the sealing rings contacting the drying chamber.
[0024] Reference Figures 1-5 The drying mechanism includes a filter plate 6, a first air inlet pipe 9, a second air inlet pipe 10, an air inlet hose 11, and a rotating mechanism. The filter plate 6 is fixedly installed inside the drying cylinder 4. Multiple air outlets 7 are opened at the top of the side wall of the drying cylinder 4. An air outlet pipe 8 is connected to the side wall of the drying chamber. A first cavity is opened inside the chamber body 1. The first air inlet pipe 9 is rotatably and sealed inside the first cavity. The top of the first air inlet pipe 9 is sealed and extends into the drying cylinder 4. Multiple second air inlet pipes 10 are connected to the side wall of the first air inlet pipe 9. Multiple air inlets are opened on the second air inlet pipes 10. An air intake hose 11 is installed through the side wall of the first cavity and is connected to the first air intake pipe 9. A rotating mechanism is installed on the drying chamber to drive the first air intake pipe 9 to rotate. The rotating mechanism includes a first gear ring 12, a first gear 13, and a first motor 14. The first gear ring 12 is fixedly installed on the side wall of the first air intake pipe 9. The first gear 13 is rotatably installed in the first cavity and meshes with the first gear ring 12. The first motor 14 is installed on the drying chamber and the output end of the first motor 14 is fixedly connected to the first gear 13.
[0025] Specifically, the operator blows dry hot air into the first air inlet pipe 9 and the second air inlet pipe 10 through the air inlet hose 11. At the same time, the hot air dries the medicinal materials through the air inlet and the filter plate 6. During the drying process, the operator controls the first motor 14 to work. The operation of the first motor 14 drives the first gear 13 to rotate. At the same time, the meshing of the first gear 13 with the first gear ring 12 drives the first air inlet pipe 9 to rotate. Thus, the rotation of the first air inlet pipe 9 drives the second air inlet pipe 10 and the air inlet to move around the first air inlet pipe 9. The operation of the first motor 14 can drive the position adjustment of the air inlet, thereby improving the drying uniformity and drying efficiency of the medicinal materials.
[0026] Reference Figures 3-5The stirring mechanism includes a support column 15, scrapers 16, a limiting ring 18, and a driving mechanism. The support column 15 is rotatably mounted on the filter plate 6. Multiple scrapers 16 are arranged around the support column 15. The scrapers 16 are in contact with the drying cylinder 4. Multiple stirring rods 17 are fixedly arranged between the scrapers 16 and the side wall of the support column 15. The limiting ring 18 is rotatably mounted on the top of the side wall of the support column 15. Multiple limiting rods 19 are fixedly arranged between the limiting ring 18 and the side wall of the drying cylinder 4. The driving mechanism is arranged between the support column 15 and the first air inlet pipe 9 and is used to drive the support column 15 to rotate. The driving mechanism includes a driving groove 20 and a driving block 21. The driving groove 20 is opened on the top side wall of the first air inlet pipe 9. The driving block 21 is fixedly mounted on the support column 15 and extends into the driving groove 20 and is slidably connected to the side wall of the driving groove 20.
[0027] Specifically, during the rotation of the first air inlet pipe 9, the drive block 21 and the drive groove 20 can drive the support column 15 to rotate, thereby driving the stirring rod 17 and the scraper 16 to stir the medicinal materials in the drying cylinder 4, thereby improving the contact effect between the medicinal materials and the hot air, and further improving the uniformity and drying efficiency of the medicinal materials.
[0028] Working principle: During use, the operator aligns the drive block 21 with the drive groove 20 and inserts the mounting plate 5 into the mounting groove 3, thereby allowing the drying cylinder 4 to extend into the housing 1. The operator then places the medicinal materials into the drying cylinder 4 and secures the cover 2 to the housing 1 with bolts. The cover 2 and housing 1 then fix the drying cylinder 4 in place. The operator then blows hot, dry air into the first air inlet pipe 9 and the second air inlet pipe 10 through the air inlet hose 11. Simultaneously, the hot air dries the medicinal materials through the air inlet and filter plate 6. During the drying process, the operator controls the first motor 14, which drives the first gear 13 to rotate. Simultaneously, the first gear 13 interacts with the first gear ring 12... The meshing mechanism drives the first air inlet pipe 9 to rotate, which in turn drives the second air inlet pipe 10 and the air inlet to move around the first air inlet pipe 9. The operation of the first motor 14 can adjust the position of the air inlet, thereby improving the uniformity and efficiency of drying the medicinal materials. During the rotation of the first air inlet pipe 9, the cooperation between the drive block 21 and the drive groove 20 can drive the support column 15 to rotate, which in turn drives the stirring rod 17 and the scraper 16 to stir the medicinal materials in the drying cylinder 4, thereby improving the contact effect between the medicinal materials and the hot air, and further improving the uniformity and drying efficiency of the medicinal materials. After drying, the operator opens the box cover 2 and removes the drying cylinder 4 from the box body 1, so that the medicinal materials can be collected.
[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A drying device for toxic Mongolian medicinal materials, comprising a drying chamber, the drying chamber comprising a chamber body (1) and a chamber lid (2), the chamber lid (2) being fixedly mounted on the chamber body (1) by bolts, characterized in that, Also includes: Mounting slot (3), the mounting slot (3) is formed on the top side wall of the housing (1); Drying cylinder (4), the drying cylinder (4) is set in the drying box, the two ends of the drying cylinder (4) are in contact with the box body (1) and the box cover (2) respectively, and the side wall of the drying cylinder (4) is fixedly provided with an installation plate (5), the installation plate (5) extends into the installation groove (3) and is slidably connected to the side wall of the installation groove (3); A drying mechanism is installed inside the drying chamber and is used to dry the medicinal materials. A stirring mechanism is provided inside the drying cylinder (4) for stirring the medicinal materials.
2. The toxic Mongolian medicine material drying device according to claim 1, characterized in that, The top wall and bottom wall of the drying cylinder (4) are both fixedly provided with sealing rings, and the two ends of the sealing rings are in contact with the drying box.
3. The device as claimed in claim 2, wherein, The drying mechanism includes: The filter plate (6) is fixedly installed inside the drying cylinder (4). The top of the side wall of the drying cylinder (4) is provided with multiple air outlets (7). The side wall of the drying chamber is connected to an air outlet pipe (8). The first air inlet pipe (9) is provided in the first cavity of the box (1), and the first air inlet pipe (9) is rotatably and sealed in the first cavity. The top end of the first air inlet pipe (9) is sealed and extends into the drying cylinder (4). The second air intake pipe (10) is provided on the side wall of the first air intake pipe (9), and multiple second air intake pipes (10) are provided on the second air intake pipe (10); An air intake hose (11) is provided through the side wall of the first cavity and is connected to the first air intake pipe (9). A rotating mechanism is provided on the drying chamber to drive the first air inlet pipe (9) to rotate.
4. The toxic Mongolian medicine material drying device according to claim 3, characterized in that, The rotating mechanism includes: The first toothed ring (12) is fixedly disposed on the side wall of the first air intake pipe (9); The first gear (13) is rotatably disposed in the first cavity and meshes with the first gear ring (12); The first motor (14) is mounted on the drying oven, and the output end of the first motor (14) is fixedly connected to the first gear (13).
5. The device as claimed in claim 4, wherein the device is characterized by the fact that The stirring mechanism includes: A support column (15) is provided through and rotatably mounted on the filter plate (6); Scraper (16), a plurality of scrapers (16) are provided on the periphery of the support column (15), the scrapers (16) are in contact with the drying cylinder (4), and a plurality of stirring rods (17) are fixedly provided between the scrapers (16) and the side wall of the support column (15). A limiting ring (18) is rotatably disposed at the top of the side wall of the support column (15), and a plurality of limiting rods (19) are fixedly disposed between the limiting ring (18) and the side wall of the drying cylinder (4). A drive mechanism is provided between the support column (15) and the first air intake pipe (9) for driving the support column (15) to rotate.
6. The device as claimed in claim 5, wherein, The drive mechanism includes: Drive slot (20), the drive slot (20) is opened on the top side wall of the first air intake pipe (9); drive block (21), the drive block (21) is fixedly installed on the support column (15), the drive block (21) extends into the drive slot (20) and is slidably connected to the side wall of the drive slot (20).