Antibacterial and anti-inflammatory capsule fine powder raw material preparation system

By designing an automated antibacterial and anti-inflammatory capsule fine powder preparation system, the problems of dust pollution and high labor intensity have been solved, achieving efficient dust removal and automated production, and protecting the health of workers.

CN223945837UActive Publication Date: 2026-02-27CHONGQING PEIDU PHARMA
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Patent Information

Application Number
CN202520593277.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-02-27
Estimated Expiration
2035-03-31

AI Technical Summary

Technical Problem

The existing process for preparing fine powder for antibacterial and anti-inflammatory capsules presents problems such as dust pollution, worker health risks, and high labor intensity.

Method used

An antibacterial and anti-inflammatory capsule fine powder raw material preparation system was designed, which includes a pulverizer, a vibrating screen, a dust removal system and an automated conveyor belt to realize automated feeding and dust removal. Combined with a primary cyclone dust collector and a secondary bag dust collector, dust emissions are reduced.

Benefits of technology

It achieves a high degree of automation in fine powder preparation, reduces dust pollution, protects worker health, lowers labor intensity, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223945837U_ABST
Patent Text Reader

Abstract

The utility model discloses an antisepsis and anti-inflammation capsule fine powder raw material preparation system which comprises a fine powder preparation chamber, a pulverizer is arranged in the fine powder preparation chamber, a feeding conveying belt is arranged above a feeding port of the pulverizer, a vibrating screen is arranged below a material outlet of the pulverizer, and a fine powder collecting conveying belt is arranged under the vibrating screen. The tail end of the fine powder collection conveying belt extends out of the fine powder preparation chamber, the lower end of the vibrating screen extends out of the fine powder collection conveying belt, a particle return conveying mechanism is arranged below the fine powder collection conveying belt, and particles on the vibrating screen are conveyed to a feeding port of the pulverizer through the particle return conveying mechanism; a dust collection cover is arranged above the crusher and is communicated with a primary dust remover through a ventilation pipeline, the ventilation pipeline is provided with a negative pressure fan, a dust outlet of the primary dust remover is connected with a recovery box, a gas outlet of the primary dust remover is communicated with a discharge pipe, and a secondary dust remover is arranged at the tail end of the discharge pipe. The automation degree is high and the dust removal effect is good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of medicine production, and specifically relates to an antibacterial and anti-inflammatory capsule fine powder raw material preparation system. BACKGROUND

[0002] The antibacterial and anti-inflammatory capsule prescription composition includes honeysuckle, stemona, rhubarb, indigoplant, radix scrophulariae, anemarrhena, and money grass. During preparation, half of the money grass and the honeysuckle, radix scrophulariae, and rhubarb are taken to be made into fine powder, and the remaining money grass, indigoplant, anemarrhena, and stemona are taken to be decocted twice. The decoction liquids of the two times are combined and concentrated to 1.20~1.24 thick extract, and are mixed with the above-mentioned fine powder to be dried to be made into the antibacterial and anti-inflammatory capsule. As can be seen, the fine powder raw material is an important component of the antibacterial and anti-inflammatory capsule.

[0003] At present, the money grass and the honeysuckle, radix scrophulariae, and rhubarb are prepared to be powdered in a separate powdering room, a pulverizer is installed in the powdering room, and artificial feeding is carried out. During the powdering process, a large amount of dust is generated, which is not conducive to the physical and mental health of workers on the one hand, and is not conducive to the environmental protection of the powdering room on the other hand. Artificial feeding has a large labor intensity of workers, and there is a possibility of artificially polluting medicinal materials. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the technical problems existing in the prior art, and particularly innovatively provides an antibacterial and anti-inflammatory capsule fine powder raw material preparation system, which has high automation, good dust removal effect, and reduces human pollution.

[0005] In order to achieve the above-mentioned purpose, the utility model provides an antibacterial and anti-inflammatory capsule fine powder raw material preparation system, which comprises a fine powder preparation room, a pulverizer is arranged in the fine powder preparation room, a feeding conveyor belt for money grass, honeysuckle, radix scrophulariae, and rhubarb is arranged above the feeding inlet of the pulverizer, and the initial end of the feeding conveyor belt extends to outside the fine powder preparation room.

[0006] A vibrating screen is arranged below the material outlet of the pulverizer, a fine powder collecting conveyor belt is arranged directly below the vibrating screen, and the terminal end of the fine powder collecting conveyor belt extends to outside the fine powder preparation room. The vibrating screen is arranged to be inclined, the lower end of the vibrating screen extends to outside the fine powder collecting conveyor belt, a particle back feeding conveying mechanism is arranged below the lower end of the vibrating screen, and the particle back feeding conveying mechanism is used for conveying the particles on the vibrating screen to the feeding inlet of the pulverizer.

[0007] A dust collecting hood is arranged above the pulverizer, the dust collecting hood is communicated with a primary dust remover through a ventilation pipeline, the ventilation pipeline is provided with a negative pressure fan, a dust outlet of the primary dust remover is connected with a recovery tank, a gas outlet of the primary dust remover is communicated with a discharge pipe, and a secondary dust remover is arranged at the terminal end of the discharge pipe.

[0008] The fine powder preparation chamber is provided with a window for the feeding conveying belt and the fine powder collecting conveying belt to extend out.

[0009] In the scheme, the feeding conveying belt and the fine powder collecting conveying belt extend left and right and extend out from the left side of the fine powder preparation chamber, so as to facilitate feeding and collecting outside the fine powder preparation chamber.

[0010] In the scheme, the particle return conveying mechanism comprises a spiral conveyor, the vibration screen and the spiral conveyor extend front and back and are arranged with the front being lower and the back being higher, the spiral conveyor is located at the right side of the vibration screen, a first return chute is connected between the front end of the vibration screen and the feeding port of the spiral conveyor, and a second return chute is connected between the discharging port of the spiral conveyor and the feeding port of the pulverizer.

[0011] In the scheme, the first dust remover and the second dust remover are located outside the fine powder preparation chamber and can also be connected to the dust removal systems of other fine powder preparation chambers to uniformly perform dust removal treatment and save cost.

[0012] In the scheme, the first dust remover is a cyclone dust remover and the second dust remover is a bag dust remover, so that the dust removal effect is good and dust pollution is reduced.

[0013] In summary, the pulverizer is arranged in the fine powder preparation chamber, so that dust pollution can be reduced as much as possible. Meanwhile, the first dust remover and the second dust remover can perform two-stage dust removal, so as to guarantee the dust removal effect and avoid dust emission into the air. Meanwhile, the dust in the dust removal process can be ensured to enter the dust remover through the arrangement of the dust hood, so as to avoid indoor dust pollution. In addition, the recycling box can recycle the dust in the first dust remover, so as to reduce the loss of effective components. The vibration screen can guarantee the size of the fine powder and guarantee the production requirements. The particle return conveying mechanism is arranged and the particles on the vibration screen are conveyed to the feeding port of the pulverizer through the particle return conveying mechanism, so that secondary pulverization can be performed. The fine powder collecting conveying belt and the feeding conveying belt can automatically feed and discharge, so that the degree of automation is high, the workers do not need to enter the fine powder preparation chamber, and the health of the workers is guaranteed. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 is a schematic view of the present application.

[0015] Figure 2 is a side view of the pulverizer, the vibration screen, the fine powder collecting conveying belt and the spiral conveyor. DETAILED DESCRIPTION

[0016] The present application will be further described below by means of examples and in conjunction with the drawings:

[0017] As Figure 1 , 2 shown, an anti-bacterial and anti-inflammatory capsule fine powder raw material preparation system, comprising a fine powder preparation chamber 1, a pulverizer 2 is arranged in the fine powder preparation chamber 1, a feeding conveyor belt 3 is arranged above the feeding port of the pulverizer 2, and the beginning of the feeding conveyor belt 3 extends out of the fine powder preparation chamber 1. A vibrating screen 5 is arranged below the material outlet of the pulverizer 2, and a fine powder collecting conveyor belt 6 is arranged directly below the vibrating screen 5. Among them, the feeding conveyor belt 3 and the fine powder collecting conveyor belt 6 both extend left and right and extend out of the left side of the fine powder preparation chamber 1, which is convenient for workers to feed and collect materials outside the fine powder preparation chamber 1. And the fine powder preparation chamber 1 is provided with windows corresponding to the feeding conveyor belt 3 and the fine powder collecting conveyor belt 6 for them to extend out.

[0018] The vibrating screen 5 is arranged obliquely, the lower end of the vibrating screen 5 extends out of the fine powder collecting conveyor belt 6, and a particle back feeding conveying mechanism 7 is arranged below the lower end of the vibrating screen 5 extending out of the fine powder collecting conveyor belt 6, and particles on the vibrating screen 5 are conveyed to the feeding port of the pulverizer 2 through the particle back feeding conveying mechanism 7. Specifically, the mesh size of the screen of the vibrating screen 5 is 80 mesh, the particle back feeding conveying mechanism includes a screw conveyor 7, and the vibrating screen 5 and the screw conveyor 7 both extend front and back and are arranged with the front being lower and the back being higher. And the screw conveyor 7 is located on the right side of the vibrating screen 5, a first back feeding chute 7a is connected between the front end of the vibrating screen 5 and the feeding port of the screw conveyor 7, and a second back feeding chute 7b is connected between the discharging port of the screw conveyor 7 and the feeding port of the pulverizer 2. The arrangement is reasonable, which facilitates the conveying of raw materials with larger particles to the pulverizer 2 for secondary pulverization.

[0019] A dust collecting hood 2a is arranged above the pulverizer 2, the dust collecting hood 2a is communicated with a primary dust collector 4 through a ventilation pipeline, and the ventilation pipeline is provided with a negative pressure fan. The dust outlet of the primary dust collector 4 is connected with a recovery tank 4a, the gas outlet of the primary dust collector 4 is communicated with a discharge pipe, and the distal end of the discharge pipe is provided with a secondary dust collector 8.

[0020] The primary dust collector 4 and the secondary dust collector 8 are both located outside the fine powder preparation chamber 1, and can also be connected to the dust removal systems of other fine powder preparation chambers 1 to uniformly perform dust removal treatment and save costs. The primary dust collector 4 is a cyclone dust collector, and the secondary dust collector 8 is a bag dust collector, which has good dust removal effect and reduces dust pollution.

Claims

1. A system for preparing fine powder raw materials for antibacterial and anti-inflammatory capsules, characterized in that: Including fine powder preparation room (1), the fine powder preparation room (1) is provided with a crusher (2), the upper part of the crusher (2) feed inlet is provided with a feed conveyor belt (3) for money grass, honeysuckle, radix scrophulariae and rhubarb, the beginning of the feed conveyor belt (3) extends to the outside of the fine powder preparation room (1); The lower part of the crusher (2) material outlet is provided with a vibrating screen (5), the vibrating screen (5) is provided with a fine powder collection conveyor belt (6) below, the end of the fine powder collection conveyor belt (6) extends to the outside of the fine powder preparation room (1);The vibrating screen (5) is inclined, the lower end of the vibrating screen (5) extends to the outside of the fine powder collection conveyor belt (6), and a particle return conveying mechanism is arranged below the vibrating screen (5), and the particles on the vibrating screen (5) are conveyed to the crusher (2) feed inlet through the particle return conveying mechanism; The upper part of the crusher (2) is provided with a dust hood (2a), the dust hood (2a) is communicated with a primary dust collector (4) through a ventilation pipe, the ventilation pipe is provided with a negative pressure fan, the dust outlet of the primary dust collector (4) is connected with a recovery tank (4a), the gas outlet of the primary dust collector (4) is communicated with a discharge pipe, and the end of the discharge pipe is provided with a secondary dust collector (8).

2. The anti-bacterial and anti-inflammatory capsule fine powder raw material preparation system according to claim 1, characterized in that: The fine powder preparation room (1) is provided with a window corresponding to the feed conveyor belt (3) and the fine powder collection conveyor belt (6) for extending.

3. The system for preparing an anti-bacterial and anti-inflammatory capsule fine powder raw material according to claim 2, characterized in that: The feed conveyor belt (3) and the fine powder collection conveyor belt (6) extend left and right and extend from the left side of the fine powder preparation room (1).

4. The system for preparing an anti-bacterial and anti-inflammatory capsule fine powder raw material according to claim 2, characterized in that: The particle return conveying mechanism includes a screw conveyor (7), the vibrating screen (5) and the screw conveyor (7) extend front and back and are arranged low in front and high in back, and the screw conveyor (7) is located on the right side of the vibrating screen (5), a first return chute (7a) is connected between the front end of the vibrating screen (5) and the feed inlet of the screw conveyor (7), and a second return chute (7b) is connected between the discharge outlet of the screw conveyor (7) and the feed inlet of the crusher (2).

5. The system for preparing an anti-bacterial and anti-inflammatory capsule fine powder raw material according to claim 1, characterized in that: The primary dust collector (4) and the secondary dust collector (8) are located outside the fine powder preparation room (1).

6. The system for preparing an anti-bacterial and anti-inflammatory capsule fine powder raw material according to claim 5, characterized in that: The primary dust collector (4) is a cyclone dust collector, and the secondary dust collector (8) is a bag dust collector.