Screening device for poria cocos processing
By introducing a heating and blowing dust removal system into the screening device for Poria cocos processing, the problem of moisture return during the screening process of Poria cocos pieces was solved, achieving efficient drying and dust removal of Poria cocos pieces, and improving product quality and preservation effect.
Patent Information
- Application Number
- CN202520102883.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-01-15
AI Technical Summary
In existing technologies, Poria cocos tablets are prone to absorbing moisture from the air during the screening process, leading to dampness, which affects quality and shelf life.
A screening device for processing Poria cocos is designed. It uses a functional plate and light strips for heating inside the screening box, and a fan system to blow air to remove dust and even out the heat of the Poria cocos pieces, thereby reducing the probability of the Poria cocos pieces becoming damp.
This effectively reduces the risk of Poria cocos cubes becoming damp, improves product quality, ensures the dryness of Poria cocos cubes before packaging, and enhances product quality and storage stability.
Smart Images

Figure CN223960032U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of Poria cocos processing technology, and in particular to a screening device for processing Poria cocos. Background Technology
[0002] White Poria cocos is the white part of the Poria cocos after the red part has been removed. Medicinally, it is used to promote diuresis and eliminate dampness, strengthen the spleen and stomach, and calm the mind and spirit. White Poria cocos is usually used in traditional Chinese medicine beverages, so it needs to be diced during production. After dicing, the Poria cocos needs to be dried, screened, and then packaged. Currently, an open-top vibrating screen is typically used to screen the Poria cocos pieces, removing broken or small particles. If the air is humid, moisture can easily penetrate the Poria cocos pieces, causing them to become damp, which affects their quality and shelf life. Utility Model Content
[0003] This invention addresses the issue that Poria cocos cubes easily absorb moisture from the air during screening after drying. It proposes a screening device for processing Poria cocos, which heats the Poria cocos during screening to reduce the probability of it becoming damp again.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] A screening device for processing Poria cocos includes a base, a screening box, an elastic support base, and a vibration motor. The screening box is connected to the upper part of the base via the elastic support base to form elastic support for the screening box. The vibration motor is fixedly connected to the screening box to generate vibration of the screening box. A screening plate is provided inside the screening box, and a functional plate is also provided inside the screening box. The functional plate is arranged parallel to the screening plate. An exhaust port and a light strip are provided on the side of the functional plate opposite to the screening plate. The functional plate is hollow and its interior is connected to the air outlet of a first fan. The wall of the screening box is provided with multiple exhaust pipes, and the exhaust pipes are connected to the air inlet of a second fan.
[0006] Preferably, the functional plate has multiple concave surfaces on one side opposite the screening plate, and the multiple concave surfaces are evenly distributed on the functional plate, with the light strip installed inside the concave surfaces.
[0007] Preferably, at least one exhaust port is located above the screening plate, and at least one exhaust port is located below the screening plate.
[0008] Preferably, the first fan is fixedly installed on the base, the first fan is provided with a first air inlet pipe at the air inlet end, and the first fan is provided with a first exhaust pipe at the air outlet end.
[0009] The function board is fixedly connected to the top of the screening box by the second bracket. The function board has a first air guide pipe inside, which extends through the screening box to the outside of the screening box. The first air guide pipe is connected to a second air guide pipe through a hose, and the second air guide pipe is connected to the first exhaust pipe.
[0010] Preferably, the second fan is fixedly installed on the base, the air inlet end of the second fan is provided with a second air inlet pipe, the second air inlet pipe is connected to multiple exhaust ports through a third air inlet pipe, and the air outlet end of the second fan is provided with a second exhaust pipe.
[0011] Preferably, the third air intake pipe is a Y-shaped pipe, the first outlet of the third air intake pipe is used to connect to the second air intake pipe, an isolation screen for filtering dust is provided between the second air intake pipe and the third air intake pipe, and the second outlet of the third air intake pipe is used to connect to a collection box for collecting dust.
[0012] Preferably, the top of the collection box is provided with a cover plate, which is connected to the second outlet of the third air inlet pipe, and the collection box and the cover plate are slidably pulled together in the horizontal direction.
[0013] Preferably, the elastic support base includes a first sleeve, a second sleeve, a supporting elastic element, a lower support column, and an upper support column. The first sleeve is fixedly connected to the bottom of the screening box via the upper support column, and the second sleeve is fixedly connected to the base via the lower support column. The second sleeve is sleeved inside the first sleeve and is slidably connected to the first sleeve in the axial direction. The first sleeve is also provided with a supporting elastic element, which is located between the second sleeve and the upper support column.
[0014] The beneficial effects of this utility model are as follows: This screening device for processing Poria cocos is used for screening Poria cocos cubes before packaging. A functional plate is provided above the screening plate inside the screening box. The functional plate is used to heat and blow air on the Poria cocos cubes on the screening plate. Heating is used to reduce the chance of the Poria cocos cubes becoming damp before packaging. Blowing air can agitate the air inside the screening box, improve the uniformity of heat distribution inside the screening box, and at the same time, the blowing function can remove dust from the Poria cocos cubes on the screening plate, reduce the dust on the surface of the Poria cocos cubes, and improve the quality of the output. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the screening device used for processing Poria cocos.
[0016] Figure 2 This is a schematic diagram of the structure of the screening device AA used in the processing of Poria cocos.
[0017] Figure 3 This is a schematic diagram of the side structure of the collection box of the screening device used for processing Poria cocos.
[0018] Figure 4 This is a schematic diagram of the elastic support base of the screening device used for processing Poria cocos.
[0019] In the diagram: 1. Base; 2. Screening box; 3. Elastic support seat; 4. Vibration motor; 5. Screening plate; 6. Guide plate; 7. Functional plate; 8. First fan; 9. Second fan; 10. Collection box; 11. Cover plate; 12. Exhaust pipe; 13. Feed inlet; 14. Light strip; 31. First sleeve; 32. Second sleeve; 33. Supporting elastic element; 34. Lower support column; 35. Upper support column; 41. First bracket; 51. First discharge port; 61. Second discharge port; 71. Second bracket; 72. First air guide pipe; 73. Hose; 74. Second air guide pipe; 75. Exhaust port; 81. First air inlet pipe; 82. First exhaust pipe; 91. Second air inlet pipe; 92. Third air inlet pipe; 93. Second exhaust pipe; 94. Isolation net. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0021] Reference Figure 1-2 A screening device for processing Poria cocos includes a base 1, a screening box 2, an elastic support 3, and a vibration motor 4. The screening box 2 is connected to the top of the base 1 via the elastic support 3, which provides elastic support for the screening box 2. A first bracket 41 is fixedly installed on the outside of the screening box 2, and the vibration motor 4 is fixedly installed on the first bracket 41. The vibration motor 4 is used to generate vibration of the entire screening box 2.
[0022] refer to Figure 4 In this embodiment, the elastic support base 3 includes a first sleeve 31, a second sleeve 32, a supporting elastic element 33, a lower support column 34, and an upper support column 35. The first sleeve 31 is fixedly connected to the bottom of the screening box 2 via the upper support column 35, and the second sleeve 32 is fixedly connected to the base 1 via the lower support column 34. The top of the second sleeve 32 is sealed. The second sleeve 32 is sleeved inside the first sleeve 31 and is slidably connected to the first sleeve 31 in the axial direction. The first sleeve 31 is also provided with a supporting elastic element 33, which is a spring. The supporting elastic element 33 is located between the second sleeve 32 and the upper support column 35, and is used to provide elastic support for the upper support column 35 and the screening box 2.
[0023] The screening box 2 is equipped with a screening plate 5, which is a mesh panel, for screening Poria cocos pieces. A feed inlet 13 is located at the top of the screening box 2 for feeding the material. The screening plate 5 is inclined inside the screening box 2, with the feed inlet 13 located on one side. A first discharge outlet 51 is located on the other side of the screening plate 5. A guide plate 6 is located below the screening plate 5, and the screened Poria cocos pieces enter the guide plate 6. A second discharge outlet 61 is located on the other side of the guide plate 6.
[0024] Poria cocos pieces enter the screening box 2 through the feed inlet 13. The screening box 2 vibrates, and the screening plate 5 screens the Poria cocos pieces. The screened Poria cocos pieces enter the guide plate 6 and exit from the second discharge port 61. The Poria cocos pieces on the screening plate 5 exit from the first discharge port 51.
[0025] The aforementioned screening box 2 also includes a functional panel 7, which is fixedly connected to the top of the screening box 2 via a second bracket 71. The functional panel 7 is arranged parallel to the screening plate 5 and is positioned above the screening plate 5. An exhaust port 75 and a light strip 14 are located on the side of the functional panel 7 opposite to the screening plate 5. (Reference) Figure 2 The functional plate 7 has multiple concave surfaces on one side opposite the screening plate 5, and these concave surfaces are evenly distributed on the functional plate 7. The light strip 14 is installed inside the concave surfaces of the functional plate 7, and the exhaust port 75 is located on the relatively convex surface of the functional plate 7. The light strip 14 is used to heat the Poria cocos pieces on the screening plate 5, reducing the probability of the Poria cocos pieces becoming damp.
[0026] Furthermore, a first fan 8 is fixedly mounted on the base 1. The first fan 8 has a first air inlet pipe 81 at its inlet end and a first exhaust pipe 82 at its outlet end. The function plate 7 is hollow, and a first air guide pipe 72 is connected inside the function plate 7. The first air guide pipe 72 passes through the screening box 2 and extends to the outside of the screening box 2. The first air guide pipe 72 is connected to a second air guide pipe 74 via a flexible hose 73. The second air guide pipe 74 is connected to the first exhaust pipe 82.
[0027] The interior of the aforementioned functional board 7 is connected to the air outlet of the first fan 8. The first fan 8 can blow air into the interior of the functional board 7 through the first exhaust pipe 82, the second air guide pipe 74, the hose 73 and the first air guide pipe 72, forming an exhaust port 75 blowing air onto the screening plate 5. The air blown out of the exhaust port 75 can blow away the dust on the surface of the Poria cocos on the screening plate 5, thus removing dust. At the same time, the air blown out of the exhaust port 75 can agitate the air inside the screening box 2, improving the uniformity of heat distribution inside the screening box 2.
[0028] Furthermore, the screening box 2 has multiple exhaust ports 12 on its walls, some of which are located above the screening plate 5 and some are located below the screening plate 5. The exhaust ports 12 are used to discharge moisture and dust from inside the screening box 2.
[0029] A second fan 9 is installed on the base 1. The outlet of the second fan 9 is equipped with a second exhaust pipe 93, and the inlet of the second fan 9 is equipped with a second intake pipe 91. The second intake pipe 91 is connected to multiple exhaust ports 12 through a third intake pipe 92. All exhaust ports 12 are connected to the inlet of the second fan 9. The second fan 9 is used to ventilate the interior of the screening box 2, extracting the moisture generated by the heat from the Poria cocos, and also removing the dust flying inside the screening box 2.
[0030] To facilitate dust collection on the phone, a collection box 10 is also provided on the base 1. The collection box 10 is used to collect dust. The third air intake pipe 92 is a Y-shaped pipe with one inlet and two outlets, that is, the third air intake pipe 92 has one air inlet end and two air outlet ends. The air inlet end of the third air intake pipe 92 is connected to all the exhaust pipes 12, the first outlet of the third air intake pipe 92 is used to connect to the second air intake pipe 91 for exhaust, and the second outlet of the third air intake pipe 92 is used to connect to the collection box 10.
[0031] An isolation mesh 94 is installed between the second air intake pipe 91 and the third air intake pipe 92. The isolation mesh 94 is a filter screen that filters dust. (Reference) Figure 1 The second outlet and the air inlet of the third air inlet pipe 92 are located on the same vertical line. Water vapor and dust inside the screening box 2 enter the third air inlet pipe 92 from the exhaust pipe 12. Water vapor is drawn out by the second fan 9 from the first outlet of the third air inlet pipe 92 and the third air inlet pipe 92. Dust is isolated on one side of the isolation net 94 and falls directly into the inside of the collection box 10, thus achieving dust collection.
[0032] refer to Figure 1 and Figure 3 The collection box 10 is topped with a cover plate 11, which is fixedly connected to the base 1. The cover plate 11 is connected to the second outlet of the third air inlet pipe 92. The base 1 has a sliding groove for the collection box 10 to slide horizontally relative to the base 1 and the cover plate 11, allowing the collection box 10 to be pulled out. A handle is also provided on one side of the collection box 10 for easy pulling out.
[0033] When dust needs to be collected, the collection box 10 is located below the cover plate 11 and is connected to the second outlet of the third air inlet pipe 92. When the dust is collected, the collection box 10 can be pulled away from below the cover plate 11 for easy dust disposal.
[0034] In this embodiment, the working process of the screening device for processing Poria cocos is as follows: the vibrating motor 4 drives the screening box 2 to vibrate as a whole, the Poria cocos pieces enter the interior of the screening box 2 from the feed inlet 13, the screening plate 5 screens the Poria cocos pieces, the small Poria cocos pieces pass through the screening plate 5 and enter the guide plate 6 and exit from the second discharge port 61, and the Poria cocos pieces on the screening plate 5 exit from the first discharge port 51 and are collected and packaged. During screening, the light strip 14, the first fan 8, and the second fan 9 work simultaneously. The light strip 14 heats the Poria cocos pieces on the screening plate 5 to prevent them from becoming damp. The first fan 8 blows air into the functional plate 7 through the first exhaust pipe 82, the second air guide pipe 74, the hose 73, and the first air guide pipe 72, causing the exhaust port 75 to blow air onto the screening plate 5, removing dust from the surface of the Poria cocos pieces on the screening plate 5 for dust removal. At the same time, the air blown from the exhaust port 75 can agitate the air inside the screening box 2, improving the uniformity of heat distribution inside the screening box 2. The second fan 9 draws air from the inside of the screening box 2, extracting the moisture generated by the heat from the Poria cocos, and also carrying away the dust flying inside the screening box 2. The moisture is drawn out by the second fan 9 from the first outlet of the third air inlet pipe 92 and the third air inlet pipe 92. The dust is isolated on one side of the isolation net 94 and falls directly into the collection box 10, achieving dust collection.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A kind of processing with sieve device of Fuling, including base (1), screening box (2), elastic support seat (3) and vibrating motor (4), the screening box (2) is connected in the upper of base (1) by elastic support seat (3) and forms the elastic support of the elastic support seat (3) to screening box (2), vibrating motor (4) is fixedly connected to screening box (2) to form the vibration of screening box (2), the inside of the screening box (2) is provided with screening plate (5), it is characterized by, The inside of the screening box (2) is also provided with a functional plate (7), which is arranged in parallel with the screening plate (5), and is provided with an exhaust port (75) and a light bar (14) on one side opposite the screening plate (5). The functional plate (7) is hollow, and the inside of the functional plate (7) is communicated with the air outlet end of the first fan (8). The wall of the screening box (2) is provided with a plurality of exhaust pipe openings (12), and the exhaust pipe openings (12) are communicated with the air inlet end of the second fan (9).
2. The screening device for processing of Poria cocos according to claim 1, characterized in that, The side of the functional plate (7) opposite the screening plate (5) is provided with a plurality of concave surfaces, which are uniformly distributed on the functional plate (7), and the light bar (14) is installed in the inside of the concave surface.
3. The screening device for processing of Poria cocos according to claim 2, characterized in that, At least one exhaust pipe opening (12) is located above the screening plate (5), and at least one exhaust pipe opening (12) is located below the screening plate (5).
4. The screening device for processing of Poria cocos according to claim 3, characterized in that, The first fan (8) is fixedly installed on the base (1), and the air inlet end of the first fan (8) is provided with a first air inlet pipe (81), and the air outlet end of the first fan (8) is provided with a first air outlet pipe (82). The functional plate (7) is fixedly connected to the top of the screening box (2) through the second support (71), and the inside of the functional plate (7) is communicated with the first air guide pipe (72), which extends through the screening box (2) to the outside of the screening box (2). The first air guide pipe (72) is connected with the second air guide pipe (74) through the hose (73), and the second air guide pipe (74) is communicated with the first air outlet pipe (82).
5. The screening device for processing of Poria cocos according to claim 4, characterized in that, The second fan (9) is fixedly installed on the base (1), and the air inlet end of the second fan (9) is provided with a second air inlet pipe (91), and the second air inlet pipe (91) is communicated with a plurality of exhaust pipe openings (12) through a third air inlet pipe (92), and the air outlet end of the second fan (9) is provided with a second air outlet pipe (93).
6. The screening device for processing of Poria cocos according to claim 5, characterized in that, The third air inlet pipe (92) is a Y-shaped pipe, the first outlet of the third air inlet pipe (92) is used for communicating the second air inlet pipe (91), and the second air inlet pipe (91) and the third air inlet pipe (92) are provided with a isolation net (94) for filtering dust, and the second outlet of the third air inlet pipe (92) is used for communicating the collecting box (10), and the collecting box (10) is used for collecting dust.
7. The screening device for processing of Poria cocos according to claim 6, characterized in that, The top of the collecting box (10) is provided with a cover plate (11), which is communicated and connected with the second outlet of the third air inlet pipe (92), and the collecting box (10) and the cover plate (11) are slidingly and pullably connected in the horizontal direction.
8. The screening device for processing of Poria cocos according to any one of claims 1-7, characterized in that, The elastic support seat (3) comprises a first sleeve (31), a second sleeve (32), a supporting elastic piece (33), a lower supporting column (34) and an upper supporting column (35), the first sleeve (31) is fixedly connected to the bottom of the screening box (2) through the upper supporting column (35), the second sleeve (32) is fixedly connected to the base (1) through the lower supporting column (34), the second sleeve (32) is sleeved in the first sleeve (31) and is in sliding connection with the first sleeve (31) in the axial direction, and the inside of the first sleeve (31) is also provided with the supporting elastic piece (33), and the supporting elastic piece (33) is located between the second sleeve (32) and the upper supporting column (35).