Dehydration device for epimedium processing
By using a combination of a rotating drum and a purification chamber in the epimedium dehydration device, the problems of low dehydration efficiency and uneven heating in traditional epimedium dehydration methods are solved, achieving efficient and uniform dehydration and quality improvement, while purifying the air and protecting the environment.
Patent Information
- Application Number
- CN202423128456.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Traditional methods of dehydrating Epimedium are inefficient and result in uneven heating, affecting its quality. Air quality also has a negative impact on the quality of Epimedium.
The device includes a dehydration chamber, a rotating drum, a heating fan, a purification chamber, and a stirrer. The rotating drum heats the epimedium evenly, and the purification chamber purifies the air, ensuring that the epimedium is heated evenly and removing impurities.
This method achieves efficient and uniform dehydration of Epimedium, improving its quality and protecting the environment by avoiding the impact of air impurities on Epimedium.
Smart Images

Figure CN223580471U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the processing technology field of epimedium, specifically point to a kind of dehydration device for epimedium processing. BACKGROUND
[0002] Epimedium tastes acrid and sweet, and is warm in nature, passing through liver and kidney. It is a key medicine for tonifying life gate, benefiting essence, strengthening bone and kidney and invigorating yang, and has great medical value. In the processing of epimedium, dehydration is a crucial step, which directly affects the quality and shelf life of epimedium.
[0003] The traditional dehydration method of epimedium is generally direct airing or placing it in a dehydration barrel for hot air dehydration. However, this method has low dehydration efficiency and is prone to uneven heating, which affects the quality of epimedium. Since ventilation and exhaust treatment are required during the dehydration processing of epimedium, the quality of air can affect the quality of epimedium, which requires a dehydration device for epimedium processing that improves quality. SUMMARY
[0004] The technical problem to be solved by the utility model is that uneven heating and the quality of hot air negatively affect the quality of epimedium, and a dehydration device for epimedium processing that improves quality is provided.
[0005] To solve the above technical problems, the technical solution provided by the utility model is as follows: a dehydration device for epimedium processing, including a dehydration tank and a mesh cylinder, the mesh cylinder is arranged in the dehydration tank, a support table is arranged below the dehydration tank, a first purification cavity is arranged in the support table, a heating fan is arranged in the first purification cavity, a group of air guide pipes that are in communication with the first purification cavity are symmetrically arranged in the dehydration tank, an exhaust pipe is arranged on the top surface of the dehydration tank, a dehumidification plate and an activated carbon adsorption plate are sequentially arranged in the first purification cavity from top to bottom, the heating fan is arranged above the dehumidification plate, a group of rotating cylinders are symmetrically arranged in the dehydration tank, a motor is arranged in the dehydration tank to drive the rotating cylinders, a group of sliding grooves are symmetrically arranged in the rotating cylinders, a group of limiting rods that are slidingly connected with the sliding grooves are symmetrically arranged on the mesh cylinder, and air permeation holes are uniformly arranged on the rotating cylinders.
[0006] As an improvement, an air extractor is arranged on one side of the dehydration tank, the other end of the exhaust pipe is connected with the air extractor, an exhaust valve is arranged in the exhaust pipe, which facilitates air exhaust and improves dehydration efficiency.
[0007] As an improvement, a cover plate is hingedly connected with the rotating cylinder, a top plate that extends to the outer wall of the mesh cylinder is arranged on the cover plate, which realizes limiting operation of the mesh cylinder and improves its stability.
[0008] As improvement, a group of support rods are fixedly arranged on the inner wall of the top end of the dehydration box body, and an annular plate is arranged around the rotating cylinder and connected to the support rods, and the annular plate is rotatably connected to the outer wall of the rotating cylinder, so that the rotating process of the rotating cylinder can be supported and limited.
[0009] As improvement, a vortex stirrer is rotatably arranged at the center of the inner wall of the bottom end of the dehydration box body, and the vortex stirrer is arranged between the air ducts, so that the hot air can flow fully, and the Epimedium sagittatum is uniformly heated by the rotating cylinder.
[0010] As improvement, a fixed box body is arranged on the top surface of the dehydration box body and is communicated with the dehydration box body and the air exhaust pipe, a second purification cavity is arranged in the fixed box body, and a dehumidification plate and an activated carbon adsorption plate are arranged in the second purification cavity from top to bottom, so that the waste gas generated in the drying and dehydration process can be purified and treated, and the safety is improved.
[0011] Compared with the prior art, the network cylinder containing the Epimedium sagittatum raw materials is placed in the rotating cylinder, the Epimedium sagittatum is uniformly heated by the rotation of the rotating cylinder and the hot air, the heating efficiency is improved, and the quality is ensured.
[0012] The first purification cavity and the second purification cavity can purify the ventilation air, avoid the influence of impurities on the quality of the Epimedium sagittatum, and protect the environment. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is a perspective view of the dehydration device for processing Epimedium sagittatum.
[0014] Figure 2 is a first cross-sectional perspective view of the dehydration device for processing Epimedium sagittatum.
[0015] Figure 3 is a second cross-sectional perspective view of the dehydration device for processing Epimedium sagittatum.
[0016] Figure 4 is a third cross-sectional perspective view of the dehydration device for processing Epimedium sagittatum.
[0017] Figure 5 is Figure 3 structure diagram of part A.
[0018] As shown in the figure: 1, dehydration tank; 2, net cylinder; 3, support table; 4, first purification cavity; 5, heating fan; 6, air duct; 7, exhaust pipe; 8, fixed box; 9, second purification cavity; 10, dehumidification plate; 11, activated carbon adsorption plate; 12, rotating cylinder; 13, sliding slot; 14, limiting rod; 15, air hole; 16, exhaust fan; 17, cover plate; 18, top plate; 19, support rod; 20, annular plate; 21, vortex agitator. DETAILED DESCRIPTION
[0019] The utility model will be made further detailed description in combination with the drawings.
[0020] Example one
[0021] In combination with the drawings Figure 1 And 3 -5, a kind of epimedium processing dehydration device, including dehydration tank 1 and net cylinder 2, the net cylinder 2 is located in dehydration tank 1 inside setting, the dehydration tank 1 below is equipped with support table 3, the support table 3 is equipped with first purification cavity 4, the first purification cavity 4 is equipped with heating fan 5 in, the dehydration tank 1 is symmetrically equipped with a group of air duct 6 with first purification cavity 4 intercommunication, the dehydration tank 1 bottom end inner wall central rotation is equipped with vortex agitator 21, the vortex agitator 21 is located between air duct 6 setting, promote the full flow of hot air, the dehydration tank 1 is symmetrically rotationally equipped with a group of rotating cylinder 12, the dehydration tank 1 is equipped with motor of driving rotating cylinder 12, the rotating cylinder 12 is symmetrically equipped with a group of sliding slot 13, the net cylinder 2 is symmetrically equipped with a group of limiting rod 14 with sliding connection of sliding slot 13 cooperation, the rotating cylinder 12 is hingedly connected and is equipped with cover plate 17, the cover plate 17 is equipped with top plate 18 extending to closely net cylinder 2 outer wall, the rotating cylinder 12 is evenly connected and is equipped with air hole 15, the dehydration tank 1 top end inner wall is fixedly equipped with a group of support rods 19, the support rod 19 is connected and is equipped with annular plate 20 located rotating cylinder 12 periphery, the annular plate 20 is rotationally connected with rotating cylinder 12 outer wall;
[0022] Through the above structure, first, the Epimedium material to be dehydrated is placed in the mesh cylinder 2, and the opening of the mesh cylinder 2 is closed, then the door plate of the dehydration box body 1 and the cover plate 17 of the rotating cylinder 12 are opened, the mesh cylinder 2 is slidably placed between the sliding grooves 13 through the limiting rods 14 until the mesh cylinder 2 is tightly attached to the inner wall of one end of the rotating cylinder 12, then the cover plate 17 is closed so that the top plate 18 tightly limits the mesh cylinder 2, then the cover plate 17 is closed and locked, then the door plate of the dehydration box body 1 can be closed, the external air is sucked into the first purification cavity 4 through the heating fan 5, then the external air is introduced into the dehydration box body 1 through the air duct 6, then the driving mechanism of the rotating cylinder 12 is started, the rotating cylinder 12 rotates, and the Epimedium is dried and dehydrated under the support of the annular plate 20, the vortex stirrer 21 works to promote the full flow of the hot air, so that the Epimedium is evenly heated, and efficient and high-quality dehydration treatment is realized;
[0023] Example two
[0024] Based on the embodiment one, combined with the accompanying Figure 2 As shown, the dehydration box body 1 is provided with an exhaust pipe 7 communicated with the top surface, the top surface of the dehydration box body 1 is provided with a fixed box body 8 communicated with the dehydration box body 1 and the exhaust pipe 7, the fixed box body 8 is provided with a second purification cavity 9, the first purification cavity 4 and the second purification cavity 9 are both sequentially provided with a dehumidification plate 10 and an activated carbon adsorption plate 11 from top to bottom, the heating fan 5 is arranged above the dehumidification plate 10, the top surface of the dehydration box body 1 is provided with an air extractor 16 located at one side of the fixed box body 8, the other end of the exhaust pipe 7 is connected with the air extractor 16, and the exhaust pipe 7 is provided with an exhaust valve;
[0025] Through the above structure, when the heating fan 5 works, the external air first enters the first purification cavity 4, the dehumidification plate 10 and the activated carbon adsorption plate 11 in the first purification cavity 4 dehumidify and remove impurities from the air, then the heating fan 5 heats and introduces the air into the dehydration box body 1, in the drying and dehydration process, the waste gas flows into the fixed box body 8, the dehumidification plate 10 and the activated carbon adsorption plate 11 in the second purification cavity 9 treat the waste gas and then exhaust, and the air extractor 16 improves the air circulation efficiency during the working of the device, improves the dehydration efficiency, and reduces the humidity in the dehydration box body 1.
[0026] In the specific implementation of the utility model, first, the Epimedium material to be dehydrated is placed in the mesh cylinder 2, and the opening of the mesh cylinder 2 is closed, then the door plate of the dehydration box body 1 and the cover plate 17 of the rotating cylinder 12 are opened, the mesh cylinder 2 is slidably placed between the sliding grooves 13 through the limiting rods 14 until the mesh cylinder 2 is tightly attached to the inner wall of one end of the rotating cylinder 12, then the cover plate 17 is closed so that the top plate 18 tightly limits the mesh cylinder 2, then the cover plate 17 is closed and locked, then the door plate of the dehydration box body 1 can be closed;
[0027] The heating fan 5 is started, the outside air first enters the first purification cavity 4, the dehumidification plate 10 and the activated carbon adsorption plate 11 in the first purification cavity 4 carry out dehumidification and impurity removal treatment to the air, then the heating fan 5 carries out heating and guides it into the dehydration tank 1 through the air duct 6, then the driving mechanism of the rotating cylinder 12 is started, the rotating cylinder 12 rotates, under the support of the annular plate 20, the epimedium is subjected to drying and dehydration treatment, the vortex stirrer 21 works to promote the full flow of the hot air, efficient and high-quality dehydration treatment is realized, in the drying and dehydration process, the waste gas generated flows into the fixed tank 8, the dehumidification plate 10 and the activated carbon adsorption plate 11 in the second purification cavity 9 treat the waste gas and then exhaust, the air extractor 16 cooperates to improve the air flow efficiency, reduces the humidity in the dehydration tank 1, and improves the dehydration efficiency and quality during the working process of the device.
[0028] The above describes the utility model and its implementation mode, and this description is not restrictive, and the drawings shown are only one of the embodiments of the utility model, and the actual structure is not limited thereto. In summary, if a person skilled in the art is inspired, without departing from the creative purpose of the utility model, without creative design, similar structure modes and embodiments of the technical scheme, which should belong to the protection scope of the utility model.
Claims
1. A kind of epimedium processing dehydration device, including dehydration box (1) and net cylinder (2), the net cylinder (2) is located in dehydration box (1) inside setting, the support platform (3) is equipped with below dehydration box (1), the top surface of dehydration box (1) is connected with exhaust pipe (7), it is characterized in that: The support platform (3) is equipped with first purification cavity (4), a group of air ducts (6) are symmetrically provided in dehydration box (1) and are communicated with first purification cavity (4), dehumidification plate (10) and activated carbon adsorption plate (11) are sequentially provided in first purification cavity (4) from top to bottom, heating fan (5) is provided in first purification cavity (4), heating fan (5) is located above dehumidification plate (10), a group of rotating cylinders (12) are symmetrically rotatably provided in dehydration box (1), motor is provided in dehydration box (1) and drives rotating cylinder (12), a group of sliding grooves (13) are symmetrically provided in rotating cylinder (12), a group of limit rods (14) are symmetrically provided on net cylinder (2) and are slidably connected with sliding groove (13), air-permeable hole (15) is uniformly connected on rotating cylinder (12).
2. The epimedium processing dehydration device according to claim 1, characterized in that: The top surface of dehydration box (1) is provided with suction fan (16) on one side of fixed box (8), the other end of exhaust pipe (7) is connected with suction fan (16), and exhaust valve is provided in exhaust pipe (7).
3. The epimedium processing dehydrator according to claim 1, characterized in that: Cover plate (17) is rotatably connected on rotating cylinder (12), cover plate (17) is fixed on rotating cylinder (12) by lock catch, and top plate (18) is provided on cover plate (17) and extends to the outer wall of net cylinder (2).
4. The epimedium processing dehydrator according to claim 1, characterized in that: A group of support rods (19) are fixedly provided on the inner wall of the top end of dehydration box (1), annular plate (20) is connected on the support rod (19) and is located around rotating cylinder (12), and annular plate (20) is rotatably connected with the outer wall of rotating cylinder (12).
5. The epimedium processing dehydrator according to claim 1, characterized in that: Vortex agitator (21) is rotatably provided on the inner wall of the bottom end of dehydration box (1), and vortex agitator (21) is located between air duct (6).
6. The device according to claim 1, wherein: The top surface of dehydration box (1) is provided with fixed box (8) which is communicated with dehydration box (1) and exhaust pipe (7), second purification cavity (9) is provided in fixed box (8), and dehumidification plate (10) and activated carbon adsorption plate (11) are provided in second purification cavity (9).