Wormwood fluff extraction equipment

Through the combined structure of round screen and flat screen and the wind-powered automatic packaging system, the problems of low fluff output and unclear separation in the mugwort fluff extraction equipment are solved, efficient and environmentally friendly mugwort production is achieved, and the utilization rate of mugwort and product quality are improved.

CN223464921UActive Publication Date: 2025-10-24NANYANG SHUNTIANXIANG AI IND CO LTD
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Patent Information

Application Number
CN202422471933.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-10-24
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The existing equipment for extracting mugwort fluff has the problems of low fluff output rate, unclear separation of mugwort fluff, mugwort residue and mugwort ash, low purity, time-consuming and labor-intensive production process and low effective utilization rate.

Method used

A combination of round screen and flat screen structure is adopted, combined with a wind-powered automatic packaging system. The separation of moxa, moxa residue and moxa ash is achieved through the design of gradually smaller screen apertures. Dust is processed with fans and pulse dust collectors to achieve automated production.

Benefits of technology

The yield and purity of moxa wool are improved, the labor intensity of workers is significantly reduced, the effective utilization rate of moxa is increased, the added value of products is improved, and environmentally friendly production is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to wormwood lint extraction equipment. A body is included; the top of one end of the machine body is provided with a cyclone, the upper portion of the cyclone is provided with a wormwood feeding port, the lower end of the cyclone is communicated with one end of a circular screen arranged in the machine, the lower portion of the other end of the circular screen is provided with a moxa cone hopper, the lower portion of the moxa cone hopper corresponds to the high end of a flat screen, and the bottom of the low end of the flat screen is provided with a moxa ash discharging port. A moxa floss discharging port is formed in the tail of the lower end of the flat screen, a moxa residue conical hopper is arranged on the lower portion of the circular screen, the bottom of the moxa residue conical hopper is communicated with an auger, a moxa residue outlet is formed in one end of the auger, and the top of the cyclone dust collector is connected with a first pulse dust collection box arranged outside the machine body through a dust removal pipeline. The method has the advantages that the moxa production rate is high, moxa, moxa residues and moxa ash are separated clearly, the effective utilization rate of wormwood is greatly increased, and the additional value of moxa products is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a wormwood equipment technical field, especially in a kind of wormwood extracting equipment. BACKGROUND

[0002] Wormwood extracting is an old technology, and wormwood can be used to make moxa after being stored for two or three years or more years, and the ancient method of production includes hand twisting, stone mortar, stone mill and several common processing methods, which have low efficiency and low moxa yield rate.The common machine beating method on the market is to beat wormwood leaves into pieces with a scraper, and then sieve impurities, and repeat the process to obtain moxa of different purity ratios.This processing method has high processing speed and efficiency, and the produced moxa can be used to make strips, which can be used for body conditioning and fumigation through a moxa burner, and the moxa residue and moxa ash can be used to make low-grade moxa strips and foot bath bag health care products.

[0003] The most common extracting method on the market is to crush wormwood through a crusher and to simply sieve the wormwood with an extracting device.Due to the single mesh size of the sieve screen and weak screening force, the moxa yield rate is low.Meanwhile, the moxa, moxa residue and moxa ash are not separated clearly, the purity is not high, and the effective utilization rate of wormwood is low.The produced products need to be manually packed, which is time-consuming and labor-intensive. UTILITY MODEL CONTENT

[0004] The utility model aims to provide a kind of wormwood extracting equipment to solve the defects of the above-mentioned technology.

[0005] To solve the above technical problems, the utility model provides the following technical scheme: a kind of wormwood extracting equipment, including machine body;The top of one end of machine body is provided with shaker, the upper portion of shaker is provided with wormwood inlet, the lower end of shaker is communicated with one end of round sieve arranged in machine, the other end of round sieve is provided with moxa cone, the lower portion of moxa cone corresponds with the high end of flat sieve, the low end of flat sieve is provided with moxa ash outlet, the low end of flat sieve is provided with moxa outlet, the lower portion of round sieve is provided with moxa residue cone, the bottom of moxa residue cone is communicated with auger, one end of auger is provided with moxa residue outlet, the top of shaker is connected with the first pulse dust collection box arranged outside machine body by dust removal pipeline.

[0006] Preferably, the round sieve includes a central shaft, one end of the central shaft is connected to a round sieve motor installed on the machine body by a chain, a plurality of support skeletons are installed on the central shaft, and a round sieve screen is arranged on the outer circumference of the plurality of support skeletons.

[0007] Preferably, the mesh size of the round sieve screen gradually decreases from the inlet end to the moxa cone end.

[0008] Preferably, the mesh size of the flat sieve gradually decreases from the high end to the low end.

[0009] Preferably, the moxa output port is connected with the moxa packing machine through a fan pipeline.

[0010] Preferably, the moxa ash output port and the moxa residue outlet are respectively connected with the moxa residue packing machine through pipelines.

[0011] Preferably, the top of the moxa packing machine and the moxa residue packing machine is respectively provided with a dust removal sack dragon, and the dust removal sack dragon is connected with a fan and a second pulse dust collector in sequence through a dust removal pipeline.

[0012] Preferably, the flat sieve is driven by a flat sieve motor arranged at the bottom of the machine body.

[0013] Preferably, the auger is driven by an auger motor arranged on the machine body.

[0014] The moxa extracting equipment has the advantages that: the combination of the round sieve and the flat sieve equipment can realize high moxa extracting rate, clear separation of moxa residue and moxa ash, and automatic packing system driven by wind, which saves time and labor, reduces the labor intensity of workers, and the dust generated in the production process is absorbed by the fan and the pulse dust collector, so that the environment is protected and pollution is avoided.

[0015] The moxa extracting equipment has the advantages that: the combination of the round sieve and the flat sieve equipment can realize high moxa extracting rate, clear separation of moxa residue and moxa ash, and automatic packing system driven by wind, which saves time and labor, reduces the labor intensity of workers, and the dust generated in the production process is absorbed by the fan and the pulse dust collector, so that the environment is protected and pollution is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The figure is a structural schematic view of the utility model;

[0017] Figure 2 The figure is a structural schematic view of the machine body.

[0018] The figure is a structural schematic view of the utility model; DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0020] See also Figure 1 、 2 The utility model provides an embodiment: an wormwood wool extraction device, comprising a body 1, a shaklong 2 is provided at the top of one end of the body 1, a wormwood feeding port 3 is provided at the upper part of the shaklong 2, the lower end of the shaklong 2 is connected with one end of a circular screen 4 arranged in the body 1, and a wormwood cone hopper 5 is provided at the lower part of the other end of the circular screen 4, the lower part of the wormwood cone hopper 5 corresponds to the high end of the flat screen 6, the bottom of the lower end of the flat screen 6 is provided with an wormwood ash discharge port 7, and the lower end tail of the flat screen 6 is provided with a wormwood discharge port 8, the lower part of the circular screen 4 is provided with an wormwood residue cone hopper 9, the bottom of the wormwood residue cone hopper 9 is connected with a screw dragon 10, and a wormwood residue outlet 11 is provided at one end of the screw dragon 10, and the top of the shaklong 2 is connected to a first pulse dust collecting box 12 arranged outside the body 1 through a dust removal pipe.

[0021] Furthermore, the circular screen 4 includes a central shaft 13, one end of the central shaft 13 is connected to a circular screen motor 15 installed on the body 1 through a chain 14, and several supporting frames 16 are installed on the central shaft 13, and circular screen meshes 17 are provided on the outer circumference of the several supporting frames 16.

[0022] Furthermore, the mesh diameter of the circular screen 17 decreases from large to small from the feed inlet end to the moxa cone hopper 5 end, so that the moxa, moxa residue and moxa ash can be reasonably and effectively separated, thereby improving the moxa yield and moxa purity.

[0023] Furthermore, the mesh diameter of the flat screen 6 decreases from large to small from the high end to the low end, so that the moxa, moxa residue and moxa ash can be reasonably and effectively separated, thereby improving the moxa yield and the purity of the moxa.

[0024] Furthermore, the moxa discharge port 8 is connected to the moxa packing machine 18 through a fan duct; the fan duct can further absorb the dust in the moxa without polluting the environment.

[0025] Furthermore, the mugwort ash discharge port 7 and the mugwort residue outlet 11 are connected to the mugwort residue packing machine 19 through pipelines; the mugwort residue is effectively collected through the pipelines.

[0026] Furthermore, the tops of the moxa baling machine 18 and the moxa residue baling machine 19 are both provided with a dust removal shaker 20, which is connected to the fan 21 and the second pulse dust collecting box 24 in sequence through a dust removal pipe; the fan 21 blows the dust sucked out by the dust removal shaker 20 into the second pulse dust collecting box 24, thereby achieving the purpose of collecting dust.

[0027] Furthermore, the flat screen 6 is driven by a flat screen motor 22 provided at the bottom of the machine body 1 .

[0028] Furthermore, the auger 10 is driven by an auger motor 23 provided on the machine body 1 .

[0029] The working principle of the utility model is as follows: the moxa bundle is broken by the moxa straw bale breaker equipment, is crushed by the pulverizer, is transported through the pipeline, enters the sharkron 2 through the moxa straw feeding port 3 of the sharkron 2, and the dust is light and floats, and the dust enters the first pulse dust collecting box 12 through the dust removal pipeline at the top of the sharkron 2, so that the dust removal purpose is achieved, the sharkron 2 plays the role of dust separation in the process, in addition, the crushed moxa straw enters the round sieve 4 from the lower section of the sharkron 2, the mesh diameter of the round sieve screen 17 is gradually reduced from the feeding port end to the moxa silk cone hopper 5 end, the round sieve motor 15 is driven to rotate, the moxa straw is separated from the moxa silk for the first time in the rotating friction process, the moxa silk produced for the first time flows out from the other end of the round sieve, flows into the lower flat sieve 6 through the moxa silk cone hopper 5, and the moxa silk is separated for the second time, the flat sieve 6 is driven to reciprocate by the flat sieve motor 22, the mesh diameter of the flat sieve 6 is gradually reduced from the high end to the low end, the moxa silk is separated for the second time through the flat sieve vibration, the produced moxa silk enters the moxa silk packing machine 18 through the moxa silk discharge port 8 and the fan pipeline, the moxa residue and the moxa dust are leaked from the round sieve 4 and the flat sieve screen, are collected by the moxa residue cone hopper 9 and the auger 10, enter the moxa residue packing machine 19 through the pipeline, and the dust produced in the production process enters the second pulse dust collecting box 24 through the pipeline, so that the environmental protection dust removal effect is achieved.

[0030] The utility model first produces the moxa silk by the round sieve rolling production, the round sieve 4 is sequentially formed by the screen mesh of different sizes, effectively separates the moxa residue, the separation rate is high, the separated moxa residue is collected by the auger 10, is directly packed by the moxa residue packing machine 19 through the fan 21, the moxa silk and the moxa dust produced by the round sieve 4 are screened for the second time by the flat sieve 6, so that the moxa dust is separated cleanly, the flat sieve 6 is driven to reciprocate by the eccentric wheel of the flat sieve motor 22, the screening strength is relatively big, the flat sieve 6 is formed by different screen meshes, the separation rate is greatly improved through the vibration screening layer by layer, the product is all wind force conveying and packing, the degree of automation is relatively high, and the second vibration flat sieve 6 is reasonably placed at the bottom of the round sieve 4, and the space is reasonably utilized.

[0031] The utility model can make the separation rate and the production capacity have the leap type improvement according to the need through the effective series and parallel connection of a group and multiple groups of equipment, provides the flexible and reasonable equipment production line arrangement for the user, satisfies the user's demand for the moxa silk high quality, large output.

[0032] Although the utility model has been explained in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical scheme recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features, any modification, equivalent replacement, improvement etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A worming apparatus for worming of arundo donax, comprising a machine body (1); characterized by: The top of one end of the machine body (1) is provided with a shaker (2), the upper part of the shaker (2) is provided with an artemisia feeding port (3), the lower end of the shaker (2) is communicated with one end of a circular screen (4) arranged in the machine body (1), the other end of the circular screen (4) is provided with an artemisia roving cone hopper (5) at the lower part, the lower part of the artemisia roving cone hopper (5) corresponds to the high end of a flat screen (6), the low end of the flat screen (6) is provided with an artemisia ash discharge port (7) at the bottom, the low end of the flat screen (6) is provided with an artemisia roving discharge port (8) at the tail, the lower part of the circular screen (4) is provided with an artemisia residue cone hopper (9), the bottom of the artemisia residue cone hopper (9) is communicated with an auger (10), one end of the auger (10) is provided with an artemisia residue discharge port (11), and the top of the shaker (2) is communicated with a first pulse dust collection box (12) arranged outside the machine body (1) through a dust removal pipeline.

2. A rush binding apparatus according to claim 1, wherein: The circular screen (4) comprises a central shaft (13), one end of the central shaft (13) is connected with a circular screen motor (15) arranged on the machine body (1) through a chain (14), a plurality of support skeletons (16) are arranged on the central shaft (13), and a circular screen screen mesh (17) is arranged on the outer circumferences of the plurality of support skeletons (16).

3. A rush matting apparatus according to claim 2, wherein: The mesh hole diameter of the circular screen screen mesh (17) gradually decreases from the feeding port end to the artemisia roving cone hopper (5) end.

4. A rush binding apparatus as claimed in claim 1, wherein: The mesh hole diameter of the flat screen (6) gradually decreases from the high end to the low end.

5. A rush matting apparatus according to claim 1, wherein: The artemisia roving discharge port (8) is connected with an artemisia roving packing machine (18) through a fan pipeline.

6. A rush matting apparatus according to claim 1, wherein: The artemisia ash discharge port (7) and the artemisia residue discharge port (11) are connected with an artemisia residue packing machine (19) through pipelines.

7. A rush matting apparatus according to claim 5, wherein: The top of the artemisia roving packing machine (18) and the artemisia residue packing machine (19) is provided with a dust removal shaker (20), and the dust removal shaker (20) is connected with a fan (21) and a second pulse dust collection box (24) in sequence through a dust removal pipeline.

8. A rush matting apparatus according to claim 1, wherein: The flat screen (6) is driven by a flat screen motor (22) arranged at the bottom of the machine body (1).

9. A rush matting apparatus according to claim 1, wherein: The auger (10) is driven by an auger motor (23) arranged on the machine body (1).