Scutellaria baicalensis georgi slice drying all-in-one machine

CN224616496UActive Publication Date: 2026-08-11CHUXIONG BAORUNSEN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-20
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]为解决现有的黄芩在加工中,因需要工作人员将切片完成的黄芩从切片机取出再转入烘干设备进行烘干,进而导致的劳动量大和工作效率低的技术问题,本实用新型提供一种黄芩切片烘干一体机

Benefits of technology

本实用新型提供一种黄芩切片烘干一体机,通过切割机构的使用,能够对所需加工的黄芩进行切片处理,切片后的黄芩会立即从开口进入到丝网当中,在此过程中,可同时启动热风机,热风机所产生的热风经连接管输送至空心管内,进入空心管的热风通过空心管上开设的多个位于丝网内部的吹气口吹出,吹出的热风直接作用于丝网中切片后的黄芩,实现对黄芩的烘干作业,通过翻动机构的使用,能够对丝网内的黄芩进行翻动工作,使得黄芩能够在丝网内得到较为充分的烘干处理,在整个过程中,由于黄芩不需要工作人员进行任何转移操作,从而有效解决了现有的黄芩在加工中,因需要工作人员将切片完成的黄芩从切片机取出再转入烘干设备进行烘干,进而导致的劳动量大和工作效率低的技术问题。

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Abstract

This utility model provides an integrated drying machine for slicing Scutellaria baicalensis. The integrated drying machine includes: a housing with an opening at the top; a wire mesh fixedly installed on the inner wall of the housing; a hollow tube rotatably mounted on the housing, the hollow tube having multiple air inlets for drying Scutellaria baicalensis, all located inside the wire mesh; a hot air blower fixedly installed on one side of the housing, a connecting pipe fixedly installed on the exhaust end of the hot air blower, one end of the connecting pipe being rotatably and sealingly connected to one end of the hollow tube; and a cutting mechanism assembled on the housing for slicing Scutellaria baicalensis. This integrated drying machine for slicing Scutellaria baicalensis solves the technical problem of high labor intensity and low work efficiency in existing Scutellaria baicalensis processing methods, which require workers to remove the sliced ​​Scutellaria baicalensis from the slicing machine and transfer it to the drying equipment.
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Description

Technical Field

[0001] This utility model relates to the field of Scutellaria baicalensis processing technology, and in particular to an integrated machine for drying and slicing Scutellaria baicalensis. Background Technology

[0002] Scutellaria baicalensis root has the effects of clearing heat and purging fire, drying dampness and detoxifying, stopping bleeding, and calming the fetus. It can be used to treat diseases such as damp-heat syndrome, summer-heat syndrome, chest tightness and nausea, and damp-heat fullness.

[0003] In the processing of Scutellaria baicalensis, slicing and drying are necessary steps to facilitate preservation. However, in the existing processing methods, the slicing machine and drying equipment are mostly set up independently. Workers need to take the sliced ​​Scutellaria baicalensis out of the slicing machine and then transfer it to the drying equipment for drying. This operation not only increases the workload of the workers, but also affects the processing efficiency of Scutellaria baicalensis.

[0004] Therefore, it is necessary to provide an integrated machine for drying and slicing Scutellaria baicalensis to solve the above-mentioned technical problems. Utility Model Content

[0005] To address the technical problem of high labor intensity and low work efficiency in the processing of Scutellaria baicalensis, which requires workers to remove the sliced ​​Scutellaria baicalensis from the slicer and transfer it to the drying equipment, this utility model provides an integrated Scutellaria baicalensis slicing and drying machine.

[0006] The Scutellaria baicalensis slice drying integrated machine provided by this utility model includes: a box body with an opening at the top; a wire mesh fixedly installed on the inner wall of the box body; a hollow tube rotatably installed on the box body, with multiple air blowing ports for drying Scutellaria baicalensis on the hollow tube, all of which are located inside the wire mesh; a hot air blower fixedly installed on one side of the box body, with a connecting pipe fixedly installed on the exhaust end of the hot air blower, one end of the connecting pipe being rotatably and sealingly connected to one end of the hollow tube; and a cutting mechanism for slicing Scutellaria baicalensis on the box body.

[0007] Preferably, the cutting mechanism includes: a housing fixedly installed on the top of the box, a rotating shaft rotatably mounted on the housing, and a blade fixedly mounted on the rotating shaft; a motor fixedly installed on one side of the housing, the output shaft of the motor being fixedly connected to one end of the rotating shaft; a material shell fixedly installed on the top of the box, the top of the material shell having a placement opening, and a cover plate hinged to the top of the material shell for covering the placement opening; and an electric telescopic rod fixedly installed on the material shell, with a push plate fixedly mounted on the output rod of the electric telescopic rod.

[0008] Preferably, the integrated drying machine for scutellaria baicalensis slices further includes a turning mechanism installed on the hollow tube for turning the scutellaria baicalensis. The turning mechanism includes: a turning plate fixedly installed on the hollow tube; a first sprocket and a second sprocket respectively fixedly sleeved on the rotating shaft and the hollow tube; and a chain sleeved on the first sprocket and the second sprocket.

[0009] Preferably, a protective plate is fixedly installed on the inner wall of the housing, and the protective plate is used to shield the blade.

[0010] Preferably, a feed pipe for discharging Scutellaria baicalensis is fixedly installed on the wire mesh, an electric push rod is fixedly installed on one side of the box, a support rod is fixedly installed on the output rod of the electric push rod, the support rod is slidably connected to the box, and a baffle for blocking the feed pipe is fixedly installed at one end of the support rod.

[0011] Preferably, a discharge port is provided on one side of the box, and the bottom inner wall of the box is inclined.

[0012] Preferably, a filter screen is fixedly installed on the inner wall of each of the plurality of air inlets, and the filter screen is used to block Scutellaria baicalensis.

[0013] Compared with related technologies, the integrated drying machine for scutellaria baicalensis slices provided by this utility model has the following beneficial effects: This utility model provides an integrated machine for slicing and drying Scutellaria baicalensis. Through the use of a cutting mechanism, the required Scutellaria baicalensis can be sliced. The sliced ​​Scutellaria baicalensis immediately enters the wire mesh through an opening. During this process, a hot air blower can be started simultaneously. The hot air generated by the hot air blower is transported to a hollow tube through a connecting pipe. The hot air entering the hollow tube is blown out through multiple air vents located inside the wire mesh. The blown hot air directly acts on the sliced ​​Scutellaria baicalensis in the wire mesh, achieving the drying operation. Through the use of a turning mechanism, the Scutellaria baicalensis in the wire mesh can be turned over, allowing it to be thoroughly dried within the wire mesh. Throughout the entire process, since no operator is required to transfer the Scutellaria baicalensis, this effectively solves the technical problem of high labor intensity and low work efficiency in existing Scutellaria baicalensis processing methods, which require operators to remove the sliced ​​Scutellaria baicalensis from the slicing machine and transfer it to the drying equipment. Attached Figure Description

[0014] Figure 1 A cross-sectional view of a preferred embodiment of the Scutellaria baicalensis slice drying integrated machine provided by this utility model; Figure 2 This is a three-dimensional structural diagram of the wire mesh in this utility model; Figure 3 for Figure 1 An enlarged schematic diagram of part A is shown below; Figure 4 for Figure 1 The enlarged schematic diagram of part B is shown.

[0015] Numbered in the diagram: 1. Box body; 2. Hollow tube; 3. Hot air blower; 4. Connecting pipe; 5. Shell; 6. Rotating shaft; 7. Motor; 8. Blade; 9. Material shell; 10. Electric telescopic rod; 11. Push plate; 12. Wire mesh; 13. Feeding pipe; 14. Electric push rod; 15. Support rod; 16. Baffle; 17. Flipping plate; 18. First sprocket; 19. Second sprocket; 20. Chain; 21. Protective plate. Detailed Implementation

[0016] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms "comprising" and "having," and any variations thereof, in the specification and the foregoing drawings are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification or the foregoing drawings are used to distinguish different objects, not to describe a specific order; the terms "inner," "outer," "left," and "right" indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the present invention 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, and therefore should not be construed as a limitation of the present invention.

[0017] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0018] This utility model embodiment provides an integrated machine for drying and slicing Scutellaria baicalensis, such as... Figure 1-4 As shown, the integrated drying machine for Scutellaria baicalensis slices includes: a housing 1 with an opening at the top; a wire mesh 12 fixedly installed on the inner wall of the housing 1; a hollow tube 2 rotatably installed on the housing 1, the hollow tube 2 having multiple air inlets for drying Scutellaria baicalensis, all located inside the wire mesh 12; a hot air blower 3 fixedly installed on one side of the housing 1, a connecting pipe 4 fixedly installed on the exhaust end of the hot air blower 3, one end of the connecting pipe 4 being rotatably and sealingly connected to one end of the hollow tube 2; and a cutting mechanism for slicing Scutellaria baicalensis, assembled on the housing 1.

[0019] In this embodiment, the Scutellaria baicalensis to be processed is placed into the material shell 9 of the cutting mechanism, and then the cutting mechanism is started to slice the Scutellaria baicalensis in the material shell 9. The sliced ​​Scutellaria baicalensis will automatically enter the wire mesh 12 through the opening. During this process, the hot air blower 3 can be started at the same time. The hot air generated by the hot air blower 3 is transported to the hollow tube 2 through the connecting pipe 4. The hot air entering the hollow tube 2 is blown out through multiple air blowing ports located inside the wire mesh 12 on the hollow tube 2. The blown hot air directly acts on the sliced ​​Scutellaria baicalensis in the wire mesh 12 to realize the drying operation of Scutellaria baicalensis. In the whole process, since the Scutellaria baicalensis does not require any transfer operation by the staff, the workload of the staff can be reduced, and the processing efficiency can be improved.

[0020] In a further preferred embodiment of this utility model, the cutting mechanism includes: a housing 5 fixedly installed on the top of the box 1, a rotating shaft 6 rotatably installed on the housing 5, and a blade 8 fixedly installed on the rotating shaft 6; a motor 7 fixedly installed on one side of the housing 5, the output shaft of the motor 7 being fixedly connected to one end of the rotating shaft 6; a material shell 9 fixedly installed on the top of the box 1, the top of the material shell 9 having a placement opening, and a cover plate for covering the placement opening hinged to the top of the material shell 9; and an electric telescopic rod 10 fixedly installed on the material shell 9, with a push plate 11 fixedly installed on the output rod of the electric telescopic rod 10.

[0021] In this embodiment, when the cutting mechanism is in use, the Scutellaria baicalensis to be processed is placed into the material shell 9 through the placement port, and then the cover plate is flipped to block the placement port. Then, the electric telescopic rod 10 is activated to drive the push plate 11 to move, so that the push plate 11 pushes the Scutellaria baicalensis out from one side of the material shell 9. During the pushing process, the motor 7 is also activated, which drives the rotating shaft 6 to rotate. The rotating shaft 6 drives the blade 8 to rotate, so that the blade 8 can continuously slice the Scutellaria baicalensis pushed out of the material shell 9, thereby realizing the slicing work. The sliced ​​Scutellaria baicalensis will immediately enter the wire mesh 12 through the opening, and then carry out the next step of drying treatment. Slicing is relatively convenient.

[0022] In a further preferred embodiment of this utility model, the integrated drying machine for scutellaria baicalensis slices further includes a turning mechanism installed on the hollow tube 2 for turning the scutellaria baicalensis. The turning mechanism includes: a turning plate 17 fixedly installed on the hollow tube 2; a first sprocket 18 and a second sprocket 19 respectively fixedly sleeved on the rotating shaft 6 and the hollow tube 2; and a chain 20 sleeved on the first sprocket 18 and the second sprocket 19.

[0023] In this embodiment, during use, the rotating shaft 6 drives the first sprocket 18 to rotate, the first sprocket 18 drives the second sprocket 19 to rotate via the chain 20, the second sprocket 19 drives the hollow tube 2 to rotate on the box 1 and the connecting pipe 4, and the hollow tube 2 drives the flipping plate 17 to rotate, thus flipping the Scutellaria baicalensis in the wire mesh 12, so that the Scutellaria baicalensis can be dried more thoroughly in the wire mesh 12.

[0024] In a further preferred embodiment of the present invention, a protective plate 21 is fixedly installed on the inner wall of the housing 5, and the protective plate 21 is used to shield the blade 8.

[0025] In this embodiment, the use of the protective plate 21 can effectively shield the blade 8, which can effectively prevent personnel from accidentally touching the blade 8 and reduce safety hazards.

[0026] In a further preferred embodiment of this utility model, a feed pipe 13 for discharging Scutellaria baicalensis is fixedly installed on the wire mesh 12, an electric push rod 14 is fixedly installed on one side of the box body 1, a support rod 15 is fixedly installed on the output rod of the electric push rod 14, the support rod 15 is slidably connected to the box body 1, and a baffle 16 for blocking the feed pipe 13 is fixedly installed at one end of the support rod 15.

[0027] In this embodiment, when it is necessary to discharge the sliced ​​and dried Scutellaria baicalensis from the wire mesh 12, the electric push rod 14 is activated. The electric push rod 14 will drive the support rod 15 to slide on the box 1. The support rod 15 will drive the baffle 16 to move. When the baffle 16 moves away from the bottom of the feed pipe 13, the feed pipe 13 can discharge the Scutellaria baicalensis in the wire mesh 12 to the bottom of the box 1.

[0028] In a further preferred embodiment of the present invention, a discharge port is provided on one side of the box body 1, and the bottom inner wall of the box body 1 is inclined.

[0029] In this embodiment, the use of the discharge port allows the Scutellaria baicalensis that has been discharged to the bottom of the box 1 to be discharged so that it can be collected by the staff.

[0030] In a further preferred embodiment of this utility model, a filter screen is fixedly installed on the inner wall of each of the plurality of air inlets, and the filter screen is used to block Scutellaria baicalensis.

[0031] In this embodiment, the use of a filter can effectively prevent Scutellaria baicalensis from entering the air inlet.

[0032] In summary, compared with related technologies, this solution, through the use of a cutting mechanism, can slice the required Scutellaria baicalensis. The sliced ​​Scutellaria baicalensis immediately enters the wire mesh 12 through the opening. During this process, the hot air blower 3 can be started simultaneously. The hot air generated by the hot air blower 3 is transported to the hollow tube 2 through the connecting pipe 4. The hot air entering the hollow tube 2 is blown out through multiple air outlets located inside the wire mesh 12. The blown hot air directly acts on the sliced ​​Scutellaria baicalensis in the wire mesh 12, realizing the drying operation of Scutellaria baicalensis. Through the use of a turning mechanism, the Scutellaria baicalensis in the wire mesh 12 can be turned over, so that the Scutellaria baicalensis can be more fully dried in the wire mesh 12. In the whole process, since the Scutellaria baicalensis does not require any transfer operation by the staff, it effectively solves the technical problem of high labor intensity and low work efficiency caused by the need for staff to take the sliced ​​Scutellaria baicalensis out of the slicing machine and transfer it to the drying equipment for drying in the existing Scutellaria baicalensis processing.

[0033] It should be understood, in the several embodiments provided in this application, that the disclosed apparatus may be implemented in other ways.

[0034] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on these embodiments, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Although this utility model has been described in detail with reference to the above embodiments, those skilled in the art can still combine, add, delete, or otherwise adjust the features of the various embodiments of this utility model according to the circumstances without conflict or creative effort, thereby obtaining different technical solutions that do not fundamentally depart from the concept of this utility model. These technical solutions are also within the scope of protection of this utility model.

Claims

1. A scutellaria baicalensis slice drying integrated machine, characterized in that, include: The box has an opening at the top; a wire mesh is fixedly installed on the inner wall of the box; a hollow tube is rotatably installed on the box; the hollow tube has multiple air blowing ports for drying Scutellaria baicalensis, and the multiple air blowing ports are all located inside the wire mesh. A hot air blower is fixedly installed on one side of the housing. A connecting pipe is fixedly installed on the exhaust end of the hot air blower. One end of the connecting pipe is rotatably and sealed to one end of the hollow tube. A cutting mechanism for slicing Scutellaria baicalensis is mounted on the housing.

2. The integrated drying machine for Scutellaria baicalensis slices according to claim 1, characterized in that, The cutting mechanism includes: A housing is fixedly installed on the top of the box, and a rotating shaft is rotatably mounted on the housing, with a blade fixedly mounted on the rotating shaft; A motor is fixedly installed on one side of the housing, and the output shaft of the motor is fixedly connected to one end of the rotating shaft; A material shell is fixedly installed on the top of the box body. The top of the material shell has a placement opening, and a cover plate for covering the placement opening is hinged to the top of the material shell. An electric telescopic rod is fixedly installed on the material shell, and a push plate is fixedly installed on the output rod of the electric telescopic rod.

3. The integrated drying machine for Scutellaria baicalensis slices according to claim 2, characterized in that, The integrated drying machine for scutellaria baicalensis slices also includes a turning mechanism installed on the hollow tube for turning the scutellaria baicalensis slices. The turning mechanism includes: A flip-up plate fixedly installed on the hollow tube; A first sprocket and a second sprocket are respectively fixedly sleeved on the rotating shaft and the hollow tube; A chain fitted onto the first sprocket and the second sprocket.

4. The integrated drying machine for scutellaria baicalensis slices according to claim 2, characterized in that, A protective plate is fixedly installed on the inner wall of the housing, and the protective plate is used to shield the blade.

5. The integrated drying machine for scutellaria baicalensis slices according to claim 1, characterized in that, A feed pipe for discharging Scutellaria baicalensis is fixedly installed on the wire mesh. An electric push rod is fixedly installed on one side of the box. A support rod is fixedly installed on the output rod of the electric push rod. The support rod is slidably connected to the box. A baffle for blocking the feed pipe is fixedly installed at one end of the support rod.

6. The integrated drying machine for Scutellaria baicalensis slices according to claim 1, characterized in that, A discharge port is provided on one side of the box, and the bottom inner wall of the box is inclined.

7. The integrated drying machine for scutellaria baicalensis slices according to claim 1, characterized in that, Each of the multiple air inlets has a filter screen fixedly installed on its inner wall, and the filter screen is used to block Scutellaria baicalensis.