CN218655449U - Sieving mechanism is handled to chinese-medicinal material - Google Patents

Sieving mechanism is handled to chinese-medicinal material Download PDF

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Publication number
CN218655449U
CN218655449U CN202223078202.7U CN202223078202U CN218655449U CN 218655449 U CN218655449 U CN 218655449U CN 202223078202 U CN202223078202 U CN 202223078202U CN 218655449 U CN218655449 U CN 218655449U
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China
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medicinal material
medicinal materials
inlet
inlet part
receiving
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CN202223078202.7U
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徐海城
唐相国
付玉军
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Shijiazhuang Zhengdao Animal Pharmaceutical Co ltd
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Shijiazhuang Zhengdao Animal Pharmaceutical Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

Abstract

The utility model relates to a traditional Chinese medicinal material processing and screening device, which comprises a support rod, a frame structure, a vibration motor, a spring part and a screen structure; the traditional Chinese medicinal materials to be treated are continuously added from the first inlet part, then the medicinal materials are separated after being vibrated on the screen, and the medicinal materials with smaller particle sizes fall down to the receiving plate below from the screen, then move to the downstream side and are discharged from the lower discharging port. The medicinal materials with larger particle size move to the downstream side from the screen and are discharged from the upper discharge port. Big particle diameter medicinal material from the upper discharge gate exhaust then can transfer to the second and enter the portion manually or through mechanical mode, just so realized handling in succession to the medicinal material to make the great medicinal material of particle diameter can return to the position that the second entered the portion fast and carry out the secondary cutting, just so can make the medicinal material realize quick cutting, screening separation, improved work efficiency, and can carry out quick serialization to the medicinal material of great particle diameter and handle.

Description

Sieving mechanism is handled to chinese-medicinal material
Technical Field
The utility model relates to a sieving mechanism is handled to chinese-medicinal material, concretely relates to realization is carried out continuity screening separation and can carry out the sieving mechanism of secondary cutting to the medicinal material that the particle diameter is inconsistent to chinese-medicinal material.
Background
Chinese medicinal materials are important components of traditional Chinese medicine. The types of Chinese herbs are very diverse, including flowers, roots, herbs, leaves, barks, vines, and the like. The most important source of the traditional Chinese medicinal materials is plants, and the plants need to be subjected to certain treatment before the traditional Chinese medicinal materials are obtained, such as screening, impurity removal, drying, extraction and the like, so that the required medicinal components can be obtained.
The screening treatment of medicinal materials is very important, and the medicinal materials with different sizes and particle sizes can be sorted so as to carry out subsequent continuous treatment in a standardized way. When the medicinal materials need to be screened and separated, most of the medicinal materials are screened by using screening machine equipment, for example, a technology is disclosed in a Chinese patent with the application number of CN202021942690.X and the name of a Chinese medicinal material screening device in the prior art, the Chinese patent has a double-layer screening device, the automatic cleaning function is realized, the practicability is high, the working intensity of workers is low, and the working efficiency is improved.
However, in practical use, the conventional screening machine in the prior art has a problem that the medicinal materials with larger particle sizes cannot be continuously processed, or the whole device lacks the function of continuous screening processing, and often needs to be stopped in the middle or independently process the medicinal materials with inconsistent particle sizes, so that the improvement of the working efficiency is inhibited.
SUMMERY OF THE UTILITY MODEL
The main objective of the utility model is to provide a realize serialization screening processing chinese-medicinal material to carry out the technology that secondary treatment improves in order to realize work efficiency to the great medicinal material of particle diameter.
In order to achieve the purpose, the utility model provides a traditional Chinese medicine material processing and screening device, which comprises a support rod, a frame structure, a vibration motor, a spring part and a screen structure, wherein the bottom of the frame structure is connected to the support rod through the spring part, the vibration motor is arranged on one side of the bottom of the frame structure, the screen structure is arranged on the upper side of the middle part of the frame structure, a bearing plate is arranged on the lower side of the screen structure, the screen structure and the bearing plate are obliquely arranged, an upper discharge port is arranged on one side at the downstream of the screen structure, and a lower discharge port is arranged on one side at the downstream of the bearing plate;
the frame structure is provided with a first inlet part and a second inlet part, cutting blades are arranged in the first inlet part and the second inlet part, an original medicinal material feeding belt is arranged above the first inlet part, and the second inlet part is used for secondary cutting of large-particle-size medicinal materials discharged from the upper discharge port.
The beneficial effect of above-mentioned scheme does: the traditional Chinese medicinal materials to be treated are continuously added from the first inlet part, then the medicinal materials are sorted after being vibrated on the screen, and the medicinal materials with smaller particle sizes fall down to the receiving plate below from the screen, then move to one side of the downstream and are discharged from the lower discharge port. The medicinal materials with larger particle size move to the downstream side from the screen and are discharged from the upper discharge port. Big particle diameter medicinal material from the upper discharge gate exhaust then can transfer to the second and enter the portion manually or through mechanical mode, just so realized handling in succession to the medicinal material to make the great medicinal material of particle diameter can return to the position that the second entered the portion fast and carry out the secondary cutting, just so can make the medicinal material realize quick cutting, screening separation, improved work efficiency, and can carry out quick serialization to the medicinal material of great particle diameter and handle.
Preferably, the receiving part is arranged below the upper discharge port and comprises a driving motor and a rotary supporting disk, the driving motor is connected with the rotary supporting disk, a plurality of groups of receiving barrels are arranged on the rotary supporting disk, and the receiving barrels are used for receiving large-particle-size medicinal materials discharged from the upper discharge port.
The rotation of the rotation supporting disc is driven by the driving motor, so that the rotation supporting discs at different positions rotate to the lower part of the upper discharge hole at intervals, and then material receiving is completed. The receiving vat after filling can be manually transferred and poured into the second inlet section for subsequent cutting and screening.
Preferably, a collecting conveyor belt is arranged below the upper discharge port, a receiving box body is arranged on one side of the downstream of the collecting conveyor belt, an inclined conveyor belt is arranged in the receiving box body, and the inclined conveyor belt conveys large-particle-size medicinal materials in the receiving box body to the second inlet portion, so that the screened large-particle-size medicinal materials enter the second inlet portion to be secondarily cut. The inclined conveyor belt is provided with transverse plates which are arranged at intervals.
The collecting conveyor belt automatically collects discharged medicinal materials with large particle sizes, then the medicinal materials are collected into the receiving box body, and the medicinal materials are conveyed into the second inlet part at the upper part through the inclined conveyor belt, so that the secondary cutting of the materials with large particle sizes is also automated.
Preferably, a product receiving box body is arranged below the lower discharge port, and the lower discharge port is connected with an inlet of the product receiving box body through a flexible connecting cover cylinder.
Preferably, the frame structure is provided with a detachable closing plate, and the periphery of the detachable closing plate is connected to the main body part of the frame structure through a mounting piece and a fastening screw rod;
the top of the detachable closing plate is provided with the first inlet and the second inlet;
the number of the supporting rods is four.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic structural view of a traditional Chinese medicine material processing and screening device of the present invention;
fig. 2 is a schematic structural view of a side sectional view of the traditional Chinese medicine material processing and screening device of the present invention;
FIG. 3 is a schematic structural view of a Chinese medicinal material processing and screening apparatus of the present invention;
FIG. 4 is a schematic structural view of a Chinese medicinal material processing and screening apparatus of the present invention;
FIG. 5 is a schematic structural view of a device for processing and screening Chinese herbs of the present invention;
fig. 6 is an enlarged schematic view of a region a in fig. 5.
Detailed Description
The technical solution in the embodiment of the present invention is clearly and completely described below with reference to the drawings in the embodiment of the present invention. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, but the present invention may be implemented in other ways different from the specific details set forth herein, and one skilled in the art may similarly generalize the present invention without departing from the spirit of the present invention, and therefore the present invention is not limited to the specific embodiments disclosed below.
The first embodiment:
as shown in fig. 1 and 2, the utility model provides a screening device is handled to chinese-medicinal material, it includes bracing piece 10, framework 20, vibrating motor 30, spring part 40 and screen structure 50, the bottom of framework 20 is connected on the bracing piece 10 through spring part 40, bottom one side of framework 20 has vibrating motor 30, the middle part upside of framework 20 is provided with screen structure 50, the downside of screen structure 50 has receiving plate 51, screen structure 50 and receiving plate 51 slope arrangement make the material move to one side of lower reaches better, downstream side of screen structure 50 is provided with upper discharge gate 52, downstream side of receiving plate 51 is provided with lower discharge gate 53;
wherein, the frame body structure 20 has a first entrance 21 and a second entrance 22, the first entrance 21 and the second entrance 22 each have a cutting blade 23 therein, and the top of the first entrance 21 is used for feeding raw medicinal materials. For example, a raw material feeding belt is provided above the first inlet portion 21, and the raw material feeding belt continuously feeds the raw material into the first inlet portion 21, or continuously supplies the raw material to the first inlet portion 21 by a manual method, or continuously grabs the raw material by a robot method to be placed into the first inlet portion 21. The second inlet 22 is used for secondary cutting of the large-particle size medicinal material discharged from the material outlet 52.
The traditional Chinese medicinal materials to be treated are continuously added from the first inlet 21, the medicinal materials are cut in the first inlet 21, then the medicinal materials are sorted after being vibrated on the screen 50, and the medicinal materials with smaller particle sizes fall onto the lower bearing plate 51 from the screen 50, then move to the downstream side and are discharged from the lower discharge port 53. The medicinal material with larger particle size moves to the downstream side from the screen 50 and is discharged from the upper discharge port 52. Big particle size medicinal material from the top discharge mouth 52 discharge then can transfer to the second and enter the portion 22 manually or through mechanical mode, just so realized handling in succession to the medicinal material to make the great medicinal material of particle size can return to the position that the second entered the portion 22 fast and carry out the secondary cutting, just so can make the medicinal material realize quick cutting, screening separation, improved work efficiency, and can carry out quick serialization to the medicinal material of great particle size and handle.
The second embodiment:
as shown in fig. 3, a receiving member 60 is disposed below the top discharge hole 52, the receiving member 60 includes a driving motor 61 and a rotation supporting disk 62, the driving motor 61 is connected to the rotation supporting disk 62, a plurality of receiving barrels 63 are disposed on the rotation supporting disk 61, and the receiving barrels 63 are used for receiving the large-particle size medicinal material discharged from the top discharge hole 52.
The rotation of the rotation support disc 62 by the driving motor 61 causes the rotation support disc 62 at different positions to rotate below the upper discharge hole 52 at intervals, and then the material receiving is completed. The receiving vat 63, after it has been filled, can be manually transferred to be poured into the second inlet portion 22 for subsequent cutting and screening.
The third embodiment:
as shown in fig. 4 to 6, a collecting conveyor 70 is disposed below the upper discharge port 52, a receiving box 71 is disposed on a downstream side of the collecting conveyor 70, an inclined conveyor 72 is disposed in the receiving box 71, and the inclined conveyor 72 conveys the large-particle-size medicinal materials in the receiving box 71 to the second inlet 22, so that the screened large-particle-size medicinal materials enter the second inlet 22 for secondary cutting. The inclined conveyor 72 has spaced transverse plates 73.
The collection conveyor 70 automatically collects the discharged medicinal materials with large particle sizes, then collects the medicinal materials into the receiving box 71, and sends the medicinal materials into the second inlet 22 at the upper part through the inclined conveyor 72, so that the secondary cutting of the medicinal materials with large particle sizes is also automated.
The lower discharge port 53 has a product receiving box 81 therebelow, and the lower discharge port 53 is connected to an inlet 83 of the product receiving box 81 through a flexible connecting sleeve 82.
The frame structure 20 is provided with a detachable closing plate 11, and the periphery of the detachable closing plate 11 is connected to the main body part of the frame structure 20 through a mounting piece 12 and a fastening screw 13;
the top of the removable closing plate 11 is provided with said first inlet 21 and second inlet 22;
the number of the support rods 10 is four.
It is obvious that the described embodiments are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.

Claims (5)

1. A traditional Chinese medicinal material processing and screening device is characterized by comprising a supporting rod, a frame structure, a vibration motor, a spring part and a screen structure, wherein the bottom of the frame structure is connected to the supporting rod through the spring part;
the frame structure is provided with a first inlet part and a second inlet part, cutting blades are arranged in the first inlet part and the second inlet part, an original medicinal material is fed above the first inlet part, and the second inlet part is used for secondary cutting of a large-particle-size medicinal material discharged from the upper discharge hole.
2. The device for processing and screening traditional Chinese medicinal materials according to claim 1, wherein a receiving member is arranged below the upper discharge port, the receiving member comprises a driving motor and a rotating support disk, the driving motor is connected with the rotating support disk, a plurality of groups of receiving barrels are arranged on the rotating support disk, and the receiving barrels are used for receiving the large-particle-size medicinal materials discharged from the upper discharge port;
an original medicinal material feeding belt is arranged above the first inlet part.
3. The device for processing and screening traditional Chinese medicinal materials according to claim 1, wherein a collecting conveyor belt is arranged below the upper discharge port, a receiving box body is arranged on one side of the downstream of the collecting conveyor belt, an inclined conveyor belt is arranged in the receiving box body, the inclined conveyor belt conveys the large-particle-size medicinal materials in the receiving box body to the second inlet part so that the screened large-particle-size medicinal materials enter the second inlet part for secondary cutting, and transverse plates arranged at intervals are arranged on the inclined conveyor belt.
4. The apparatus of claim 1, wherein a product receiving tank is located below the lower outlet, and the lower outlet is connected to the inlet of the product receiving tank by a flexible connecting shroud.
5. The apparatus of claim 1, wherein the frame structure has a removable closure plate, the periphery of which is connected to the main body of the frame structure by means of mounting tabs and fastening screws;
the top of the detachable closing plate is provided with the first inlet and the second inlet;
the number of the supporting rods is four.
CN202223078202.7U 2022-11-18 2022-11-18 Sieving mechanism is handled to chinese-medicinal material Active CN218655449U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223078202.7U CN218655449U (en) 2022-11-18 2022-11-18 Sieving mechanism is handled to chinese-medicinal material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223078202.7U CN218655449U (en) 2022-11-18 2022-11-18 Sieving mechanism is handled to chinese-medicinal material

Publications (1)

Publication Number Publication Date
CN218655449U true CN218655449U (en) 2023-03-21

Family

ID=85537605

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223078202.7U Active CN218655449U (en) 2022-11-18 2022-11-18 Sieving mechanism is handled to chinese-medicinal material

Country Status (1)

Country Link
CN (1) CN218655449U (en)

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