Drying equipment for medicinal materials with uniform heating
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-20
- Publication Date
- 2026-08-11
AI Technical Summary
传统烘干装置中,通常将药材放进一个封闭的托盘,通过烘干装置将热风对着该托盘吹,这种情况容易导致面对托盘一侧的药材受热过多,而其他部位受热不足,局部过热会使药材的某些部分变焦、变质,影响药材的品质
本实用新型所涉及的一种均匀受热的药材用烘干装置,烘干盘上的多个烘干孔使得热风能够均匀地穿透药材,确保药材在烘干过程中均匀受热,避免了局部过热或受热不均的情况。
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Figure CN224623342U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a medicinal material processing equipment, and in particular to a drying device for medicinal materials that provides uniform heating. Background Technology
[0002] In the field of medicinal herb processing, drying is a crucial step in ensuring the quality of medicinal herbs and extending their shelf life. In traditional drying equipment, medicinal herbs are usually placed in a closed tray, and hot air is blown onto the tray by the drying device. This method can easily lead to the herbs facing the tray being overheated, while other parts are underheated. Localized overheating can cause certain parts of the herbs to scorch or deteriorate, affecting the quality of the herbs. Utility Model Content
[0003] Therefore, the purpose of this utility model is to provide a drying device for medicinal materials that provides uniform heating.
[0004] The present invention adopts the following technical solution:
[0005] A drying device for medicinal materials with uniform heating includes a drying chamber, a movable component mounted on the drying chamber, a fixed component, and a drying assembly mounted on the movable component. The fixed component includes a fixed platform mounted on the drying chamber, an air blowing channel mounted on the fixed platform, a drying slide rail mounted on the fixed platform, a drying slider slidably mounted on the drying slide rail, a drying table mounted on the drying slider, a drying channel mounted on the drying table, a guide mounted on the drying table, and a support component engaged with the guide component. The support component includes a drying tray, a drying fixing plate mounted on the outer edge of the drying tray, and a plurality of drying holes on the drying tray. The drying fixing plate is engaged with the guide component. The drying slide rail is located on both sides of the air blowing channel. When the support component is engaged with the guide component, the drying tray is located within the drying channel. When the support component is fed into the drying chamber through the drying slide rail, the drying tray is opposite to the air blowing channel.
[0006] Furthermore, the guide includes a first support platform and a second support platform mounted on the fixed platform, a first guide platform disposed on the first support platform, and a second guide platform disposed on the second support platform.
[0007] Furthermore, the first support platform and the second support platform are disposed on the fixed platforms on both sides of the air blowing channel; the guide also includes a first tilt angle disposed on the first guide platform and a second tilt angle disposed on the second guide platform; the first tilt angle is tilted downward toward the drying channel; the second tilt angle is tilted downward toward the drying channel.
[0008] Furthermore, the guide includes a plurality of guide posts disposed on the fixed platform and a plurality of guide holes disposed on the drying fixed plate; the guide holes are disposed opposite to the guide posts.
[0009] Furthermore, the movable component includes an X-axis slide rail mounted on the drying chamber, an X-axis slider slidably mounted on the X-axis slide rail, an X-axis drive cylinder mounted on the X-axis slide rail for driving the movement of the X-axis slider, a Z-axis slide rail mounted on the X-axis slider, a Z-axis slider slidably mounted on the Z-axis slide rail, and a Z-axis drive cylinder mounted on the Z-axis slide rail for driving the movement of the Z-axis slider; the drying component is mounted on the Z-axis slider.
[0010] Furthermore, the drying assembly includes a drying fixture mounted on the Z-axis slider and a drying component mounted on the drying fixture.
[0011] Furthermore, the drying fixture includes a first engagement platform mounted on the Z-axis slider, a first engagement groove disposed on the first engagement platform, a second engagement platform, a second engagement groove disposed on the second engagement platform, a threaded hole disposed on the first engagement platform, a connecting through hole disposed on the second engagement platform, and a connecting bolt that passes through the connecting through hole and is threadedly connected to the threaded hole.
[0012] Furthermore, the drying assembly also includes an air-collecting frame installed on the drying table and an air-collecting hole disposed on the drying table; the air-collecting hole is disposed within the air-collecting frame.
[0013] Furthermore, the uniformly heated medicinal material drying device also includes a return pipe installed on the fixed platform and a filter pipe installed on the return pipe; the return pipe is located at the bottom of the air blowing channel.
[0014] Furthermore, the fixing assembly also includes an inlet / outlet channel disposed on one side of the drying chamber and a cover plate installed on one side of the drying table.
[0015] The beneficial effects of this utility model are as follows: The present invention relates to a drying device for medicinal materials that provides uniform heating. Multiple drying holes on the drying tray allow hot air to penetrate the medicinal materials evenly, ensuring that the medicinal materials are heated uniformly during the drying process and avoiding local overheating or uneven heating. Attached Figure Description
[0016] Figure 1 This is a perspective view of a uniformly heated drying device for medicinal materials according to an embodiment of the present invention. Figure 2 for Figure 1 A three-dimensional schematic diagram of the uniformly heated medicinal materials after the drying box has been removed from the drying device. Figure 3 This is a three-dimensional schematic diagram of the fixing components of the uniformly heated medicinal material drying device in Example 1; Figure 4 This is a three-dimensional schematic diagram of the fixing components of the uniformly heated medicinal material drying device in Example 2; Figure 5 for Figure 1 An exploded view of the uniformly heated medicinal materials after the drying box has been removed from the drying device. Figure 6 for Figure 1 Exploded view of the moving components and drying components of a drying device for uniformly heated medicinal materials; Figure 7 for Figure 1 Exploded view of the fixed components of a drying device for medicinal materials that provides uniform heating; Figure 8 for Figure 1 Exploded view of the drying fixture of a drying device for uniformly heated medicinal materials.
[0017] Reference numerals: 10. Drying oven; 20. Movable component; 30. Fixed component; 40. Drying component; 31. Fixed platform; 32. Air blowing channel; 33. Drying slide rail; 34. Drying slider; 35. Drying table; 36. Drying channel; 37. Guide; 38. Support; 380. Drying tray; 381. Drying fixing plate; 382. Drying hole; 370. First support platform; 371. Second support platform; 372. First guide platform; 373. Second guide platform; 374. First tilt angle; 375. Second tilt angle; 376. Guide column 377. Guide hole; 21. X-axis slide rail; 22. X-axis slider; 23. X-axis drive cylinder; 24. Z-axis slide rail; 25. Z-axis slider; 26. Z-axis drive cylinder; 41. Drying fixture; 42. Drying component; 410. First locking platform; 411. First locking groove; 412. Second locking platform; 413. Second locking groove; 414. Threaded hole; 415. Connecting through hole; 416. Connecting bolt; 43. Air collection frame; 44. Air collection hole; 50. Return pipe; 60. Filter pipe; 70. Inlet / outlet channel; 80. Cover plate. Detailed Implementation
[0018] 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.
[0019] 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.
[0020] 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.
[0021] Please see Figures 1 to 6 This invention provides a drying device for medicinal materials that provides uniform heating, comprising a drying chamber 10, a movable component 20 mounted on the drying chamber 10, a fixed component 30, and a drying component 40 mounted on the movable component 20. The fixed component 30 includes a fixed platform 31 mounted on the drying chamber 10, an air blowing channel 32 mounted on the fixed platform 31, a drying slide rail 33 mounted on the fixed platform 31, a drying slider 34 slidably mounted on the drying slide rail 33, a drying table 35 mounted on the drying slider 34, a drying channel 36 mounted on the drying table 35, and a drying channel 36 mounted on the drying table 35. The guide 37 on the 5 and the support 38 snapped onto the guide 37; the support 38 includes a drying tray 380, a drying fixing plate 381 installed on the outer edge of the drying tray 380, and a plurality of drying holes 382 provided on the drying tray 380; the drying fixing plate 381 snapped onto the guide 37; the drying slide rail 33 is provided on both sides of the air blowing channel 32; when the support 38 is snapped onto the guide 37, the drying tray 380 is located in the drying channel 36; when the support 38 is sent into the drying box 10 through the drying slide rail 33, the drying tray 380 is opposite to the air blowing channel 32.
[0022] The working principle of this utility model's uniformly heated medicinal material drying device is as follows: The support member 38 is engaged and installed on the guide member 37; the medicinal materials to be dried are placed on the drying tray 380, ensuring that the materials are evenly distributed on the tray; the support member 38 with the medicinal materials is pushed into the drying chamber 10 via the drying slide rail 33; when the support member 38 is sent into the drying chamber 10 via the drying slide rail 33, the drying tray 380 is aligned with the air blowing channel 32, so that hot air can evenly contact the surface of the medicinal materials; the drying component 40 is driven by the movable component 20, causing the drying component 40 to align with the drying tray. The medicinal materials on the drying tray 380 are facing each other, and hot air generated by the drying component 40 is blown onto the medicinal materials. The generated hot air can penetrate the medicinal materials evenly through the drying holes 382 to ensure that the medicinal materials are heated evenly during the drying process. Since the drying tray 380 is opposite to the air blowing channel 32, the hot air blown out by the drying component 40 is blown out from the drying channel 36 towards the air blowing channel 32 through the drying holes 382 to ensure that the medicinal materials are dried under suitable conditions. After drying, the support 38 is removed from the drying box 10 through the drying slide rail 33. The dried medicinal materials are then removed from the drying tray 380 for further processing or storage.
[0023] Compared to existing technologies, the herbal drying device of this invention, which provides uniform heating, features multiple drying holes 382 on the drying tray 380 that allow hot air to penetrate the herbs evenly, ensuring uniform heating during the drying process and avoiding localized overheating or uneven heating. The structure of the air blowing channel 32 and the drying channel 36 ensures uniform distribution of hot air, further improving the uniform heating effect. The moving component 20 drives the drying component 40, allowing hot air to cover the surface of the herbs more evenly, ensuring uniform heating during the drying process. The structure of the drying chamber 10, air blowing channel 32, drying slide rail 33, guide component 37, and other components makes the entire device compact and space-saving, suitable for use in environments with limited space. The drying slide rail 33 and guide component 37 allow the support component 38 to be easily pushed into and moved out of the drying chamber 10, improving operational convenience and work efficiency. The drying process can be carried out continuously, reducing intermediate steps and improving production efficiency. The uniform hot air distribution and the movement of the moving component 20 increase the drying speed and shorten the drying time.
[0024] Example 1, please refer to Figure 4The guide 37 includes a first support platform 370 and a second support platform 371 mounted on the fixed platform 31, a first guide platform 372 disposed on the first support platform 370, and a second guide platform 373 disposed on the second support platform 371. The first support platform 370 and the second support platform 371 are respectively set on the fixed platform 31, providing multiple support points, increasing the stability of the entire device, and ensuring that the support member 38 can be firmly fixed on the guide member 37 during the drying process. The structure of the two support platforms and the guide platform makes the position of the support member 38 more stable in the drying chamber 10, reducing the problem of uneven heating caused by positional displacement. The structure of the first guide platform 372 and the second guide platform 373 ensures that the support member 38 can be accurately engaged on the guide member 37, avoiding the problem of uneven hot air distribution caused by positional displacement. Through the structure of the guide platform, it is ensured that the drying tray 380 can be accurately aligned with the drying channel 36, so that the hot air can penetrate the medicinal materials evenly and improve the drying effect. The structure of the first support platform 370 and the second support platform 371 makes the installation and disassembly of the support member 38 more convenient. Operators can quickly engage the support member 38 on the guide member 37, improving the convenience of operation. The multi-point support and guide platform structure reduces errors caused by improper operation and improves the safety of operation.
[0025] The first support platform 370 and the second support platform 371 are disposed on the fixed platforms 31 on both sides of the air blowing channel 32; the guide 37 also includes a first tilt angle 374 disposed on the first guide platform 372 and a second tilt angle 375 disposed on the second guide platform 373; the first tilt angle 374 is tilted downward toward the drying channel 36; the second tilt angle 375 is tilted downward toward the drying channel 36. The structure with the first tilt angle 374 and the second tilt angle 375 allows hot air to smoothly enter the drying channel 36 from the blowing channel 32, reducing airflow resistance and improving hot air circulation efficiency. The tilted structure helps the hot air distribute more evenly upon entering the drying channel 36, ensuring uniform heating of the medicinal materials during drying. The tilted structure reduces dead zones in the hot airflow area upon entering the drying channel 36, ensuring that the hot air covers more of the medicinal material surface, improving drying effect. The tilted structure allows the hot air to penetrate the medicinal materials more directly and powerfully, enhancing the drying effect and ensuring uniform heating of all parts of the medicinal materials during drying. The tilted structure helps reduce the impact and vibration generated when the airflow enters the drying channel 36, improving the operational stability of the equipment. The tilted structure also helps to evenly distribute the airflow pressure within the drying channel 36, reducing equipment wear and malfunctions caused by uneven airflow.
[0026] Example 2, please refer to Figure 5 and Figure 7The guide 37 includes a plurality of guide posts 376 disposed on the fixed platform 31 and a plurality of guide holes 377 disposed on the drying fixed plate 381; the guide holes are disposed opposite to the guide posts 376. The structure of the guide pillars 376 and guide holes 377 ensures that the drying fixing plate 381 can be accurately installed on the fixing platform 31, avoiding uneven heating caused by positional misalignment. During each installation and removal, the guide pillars 376 and guide holes 377 ensure that the drying fixing plate 381 remains in the same position, improving repeatability and ensuring consistent drying results each time. The multiple guide pillars 376 and guide holes 377 provide multiple support points, increasing the stability of the drying fixing plate 381 and ensuring that it does not shake or shift during the drying process. The even distribution of multiple support points on the fixing platform 31 further enhances the stability of the drying fixing plate 381 and reduces deformation caused by uneven local stress. The structure of the guide pillars 376 and guide holes 377 makes the installation and removal of the drying fixing plate 381 more convenient and quick, reducing operation time and improving work efficiency. It also reduces errors caused by improper operation, ensuring the normal operation of the equipment.
[0027] Please refer to Figure 4 and Figure 5 The movable component 20 includes an X-axis slide rail 21 mounted on the drying chamber 10, an X-axis slider 22 slidably mounted on the X-axis slide rail 21, an X-axis drive cylinder 23 mounted on the X-axis slide rail 21 for driving the X-axis slider 22, a Z-axis slide rail 24 mounted on the X-axis slider 22, a Z-axis slider 25 slidably mounted on the Z-axis slide rail 24, and a Z-axis drive cylinder 26 mounted on the Z-axis slide rail 24 for driving the Z-axis slider 25; the drying component 40 is mounted on the Z-axis slider 25. The sliding structure of the X and Z axes allows the drying assembly 40 to move in two directions (horizontal and vertical) within the drying chamber 10, ensuring that hot air can evenly cover all parts of the medicinal materials and avoid local overheating or uneven heating. Through the combined movement of the X and Z axes, the drying assembly 40 can achieve all-round coverage within the drying chamber 10, improving the uniform distribution of hot air on the surface of the medicinal materials and ensuring the drying effect. The movement of the drying assembly 40 on the X and Z axes allows the hot air to be more evenly distributed on the medicinal materials, reducing drying time and improving drying efficiency. The multi-directional movement structure reduces dead zones in the airflow within the drying chamber 10, ensuring that every corner receives sufficient hot air coverage. The use of X and Z axis drive cylinders 26 enables automated control of the drying assembly 40, reducing manual intervention and improving ease of operation. Through precise control of the drive cylinders, the drying assembly 40 can be precisely positioned, ensuring consistency in each drying process.
[0028] The drying assembly 40 includes a drying fixture 41 mounted on the Z-axis slider 25 and a drying component 42 mounted on the drying fixture 41. In this embodiment, the drying component 42 is a hot air gun. In other embodiments, the drying component can also be a heating tube, a fan, or a microwave drying gun. Different drying components 42 can be selected according to different medicinal materials and drying requirements, such as hot air guns, heating tubes, fans, or microwave drying guns, improving the flexibility and applicability of the equipment. Different types of drying components 42 are suitable for different medicinal materials and drying conditions, meeting various drying needs and improving the adaptability of the equipment. By selecting different drying components 42, the drying temperature and air speed can be controlled more precisely, ensuring that the medicinal materials are heated evenly during the drying process and avoiding local overheating or uneven heating. The combined use of different drying components 42 can enhance the drying effect. For example, the combination of a hot air gun and a fan can improve the penetration and circulation efficiency of hot air, while a microwave drying gun can accelerate the evaporation of moisture and increase the drying speed. The modular structure of the drying components 42 allows for quick replacement of different types of drying components 42, reducing replacement time and operational difficulty, and improving work efficiency. By selecting the appropriate drying component 42, operators can more easily adjust drying parameters, simplifying the operation process.
[0029] Please refer to Figure 8 The drying fixture 41 includes a first engagement platform 410 mounted on the Z-axis slider 25, a first engagement groove 411 disposed on the first engagement platform 410, a second engagement platform 412, a second engagement groove 413 disposed on the second engagement platform 412, a threaded hole 414 disposed on the first engagement platform 410, a connecting through hole 415 disposed on the second engagement platform, and a connecting bolt 416 threadedly connected to the threaded hole 414 through the connecting through hole. The locking groove structure on the first locking platform 410 and the second locking platform 412 ensures that the drying component 42 can be accurately installed on the fixing component, avoiding uneven heating caused by positional misalignment. The locking groove structure allows the drying component 42 to be quickly aligned and installed on the fixing component, improving installation efficiency. The first locking platform 410 and the second locking platform 412 provide multiple support points, increasing the stability of the drying fixing component 41 and ensuring that the drying component 42 will not shake or shift during the drying process. The threaded connection of the connecting bolt 416 and the threaded hole 414 ensures the stability of the drying component 42 after installation, preventing loosening or falling off due to vibration or external force. The locking groove and threaded connection structure allows the drying component 42 to be quickly replaced, reducing replacement time and operational difficulty, and improving work efficiency. Operators can complete the installation and fixing of the drying component 42 by simply aligning and tightening the bolts, simplifying the operation process.
[0030] Please refer to Figure 5 and Figure 7The drying assembly 40 also includes an air-collecting frame 43 installed on the drying table 35 and an air-collecting hole 44 disposed on the drying table 35; the air-collecting hole 44 is disposed inside the air-collecting frame 43. The air-collecting frame 43 effectively concentrates and guides hot air to the air-collecting hole 44, reducing hot air leakage and improving hot air utilization. The air-collecting frame 43 can better control the airflow direction, ensuring that the hot air is evenly distributed within the drying chamber 10, thus improving the drying effect. The structure of the air-collecting frame 43 and the air-collecting hole 44 helps the hot air to be evenly distributed after entering the drying chamber 10, ensuring that the medicinal materials are evenly heated during the drying process and avoiding local overheating or uneven heating. The air-collecting frame 43 can effectively guide the hot air to the drying area, accelerating the evaporation of moisture and increasing the drying speed. The structure of the air-collecting frame 43 can reduce the impact of the hot airflow on the drying table 35, improving the stability of the equipment and reducing equipment wear and malfunctions caused by vibration. The combined use of the air-collecting hole 44 and the air-collecting frame 43 helps to evenly distribute the airflow pressure on the drying table 35, reducing equipment deformation caused by excessive local pressure.
[0031] Please refer to Figure 2 and Figure 5 The drying device for medicinal materials that is heated evenly also includes a return pipe 50 installed on the fixed platform 31 and a filter pipe 60 installed on the return pipe 50; the return pipe 50 is located at the bottom of the air blowing channel 32. The structure of the return pipe 50 can redirect some of the unused hot air back into the drying system, improving the utilization rate of hot air and reducing energy waste. By redirecting the hot air back into the system through the return pipe 50, heat loss is reduced, heat transmission efficiency is improved, and energy consumption is lowered. The return pipe 50 reintroduces hot air into the drying area, which helps to evenly distribute the hot air within the drying chamber 10, ensuring that the medicinal materials are heated evenly during the drying process and avoiding localized overheating or uneven heating. The recirculated hot air can continuously provide heat, accelerating moisture evaporation and improving drying speed and effectiveness. The structure of the return pipe 50 can reduce the impact of hot airflow on the drying table 35, improving equipment stability and reducing equipment wear and malfunctions caused by vibration. The combined use of the return pipe 50 and the air blowing channel 32 helps to evenly distribute the airflow pressure on the drying table 35, reducing equipment deformation caused by excessive localized pressure.
[0032] Please refer to Figure 1 and Figure 2The fixing component 30 also includes an inlet / outlet channel 70 located on one side of the drying chamber 10 and a cover plate 80 installed on one side of the drying table 35. The structure of the inlet / outlet channel 70 makes it easier to put in and take out the medicinal materials, reducing the workload of operators and improving work efficiency. The cover plate 80 allows the inlet / outlet channel 70 to be opened and closed quickly, simplifying the operation process and reducing the exposure time of the medicinal materials during entry and exit. The cover plate 80 can remain closed during the drying process, reducing the leakage of hot air, maintaining a stable temperature inside the drying chamber 10, and improving the drying effect. The structure of the inlet / outlet channel 70 and the cover plate 80 helps to maintain a uniform airflow distribution inside the drying chamber 10, ensuring that the medicinal materials are heated evenly during the drying process and avoiding local overheating or uneven heating. The cover plate 80 can effectively block external dust and impurities from entering the drying chamber 10, reducing the impact on the drying effect and improving the stability of the equipment. The installation of the cover plate 80 can reduce the impact of external vibration on the drying chamber 10, improve the operational stability of the equipment, and reduce equipment wear and failure caused by vibration.
[0033] 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 drying apparatus for medicinal materials that provides uniform heating, characterized in that, The device includes a drying chamber, a movable component mounted on the drying chamber, a fixed component, and a drying component mounted on the movable component. The fixed component includes a fixed platform mounted on the drying chamber, an air blowing channel mounted on the fixed platform, a drying slide rail mounted on the fixed platform, a drying slider slidably mounted on the drying slide rail, a drying table mounted on the drying slider, a drying channel mounted on the drying table, a guide mounted on the drying table, and a support component engaged with the guide component. The support component includes a drying tray, a drying fixing plate mounted on the outer edge of the drying tray, and multiple drying holes on the drying tray. The drying fixing plate is engaged with the guide component. The drying slide rail is located on both sides of the air blowing channel. When the support component is engaged with the guide component, the drying tray is located within the drying channel. When the support component is fed into the drying chamber via the drying slide rail, the drying tray is opposite to the air blowing channel.
2. The drying apparatus for medicinal materials with uniform heating according to claim 1, characterized in that, The guide includes a first support platform and a second support platform mounted on the fixed platform, a first guide platform disposed on the first support platform, and a second guide platform disposed on the second support platform.
3. The drying apparatus for medicinal materials with uniform heating according to claim 2, characterized in that, The first support platform and the second support platform are disposed on the fixed platforms on both sides of the air blowing channel; the guide also includes a first tilt angle disposed on the first guide platform and a second tilt angle disposed on the second guide platform; the first tilt angle is tilted downward toward the drying channel; the second tilt angle is tilted downward toward the drying channel.
4. The drying apparatus for medicinal materials with uniform heating according to claim 1, characterized in that, The guide includes a plurality of guide posts disposed on the fixed platform and a plurality of guide holes disposed on the drying fixed plate; the guide holes are disposed opposite to the guide posts.
5. The drying apparatus for medicinal materials with uniform heating according to claim 1, characterized in that, The movable components include an X-axis slide rail mounted on the drying chamber, an X-axis slider slidably mounted on the X-axis slide rail, an X-axis drive cylinder mounted on the X-axis slide rail for driving the X-axis slider, a Z-axis slide rail mounted on the X-axis slider, a Z-axis slider slidably mounted on the Z-axis slide rail, and a Z-axis drive cylinder mounted on the Z-axis slide rail for driving the Z-axis slider; the drying component is mounted on the Z-axis slider.
6. The drying apparatus for medicinal materials with uniform heating according to claim 5, characterized in that, The drying assembly includes a drying fixture mounted on the Z-axis slider and a drying component mounted on the drying fixture.
7. The drying apparatus for medicinal materials with uniform heating according to claim 6, characterized in that, The drying fixture includes a first engagement platform mounted on the Z-axis slider, a first engagement groove disposed on the first engagement platform, a second engagement platform, a second engagement groove disposed on the second engagement platform, a threaded hole disposed on the first engagement platform, a connecting through hole disposed on the second engagement platform, and a connecting bolt that passes through the connecting through hole and is threadedly connected to the threaded hole.
8. The drying apparatus for medicinal materials with uniform heating according to claim 6, characterized in that, The drying assembly further includes an air-collecting frame installed on the drying table and an air-collecting hole disposed on the drying table; the air-collecting hole is disposed within the air-collecting frame.
9. The drying apparatus for medicinal materials with uniform heating according to claim 1, characterized in that, The uniformly heated medicinal material drying device also includes a return pipe installed on the fixed platform and a filter pipe installed on the return pipe; the return pipe is located at the bottom of the air blowing channel.
10. The drying apparatus for medicinal materials with uniform heating according to claim 1, characterized in that, The fixing assembly also includes an inlet / outlet channel located on one side of the drying chamber and a cover plate installed on one side of the drying table.