Antibacterial component comprehensive extraction system for producing Chinese mugwort antibacterial soap

The material dispersion positioning frame in the internal extraction tank is used to realize three-dimensional spatial anchoring and whole-region dispersion control of Qi Ai raw materials, which solves the problems of high energy consumption and high maintenance costs of the agitating system in the production of Qi Ai antibacterial soap, and achieves efficient extraction.

CN120420702APending Publication Date: 2025-08-05湖北一世缘蕲艾生物科技股份有限公司
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Patent Information

Application Number
CN202510885537.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

In the production of existing Qi Ai antibacterial soap, extraction tanks with stirring and temperature control require cumbersome and systematic structure to ensure that Qi Ai raw materials and extractant are fully in contact, resulting in high energy consumption and high maintenance costs.

Method used

The material dispersion positioning frame in the internal extraction tank is used, and the Qi Ai raw materials are distributed in sequence from the bottom of the tank to the top of the tank, so as to achieve full contact between the Qi Ai raw materials and the extractant, and avoid the use of a stirring mechanism.

Benefits of technology

The full contact between Qi Ai raw materials and extractant is achieved, reducing energy consumption and maintenance costs, while maintaining the integrity of the active ingredients and avoiding the destruction of plant cells by mechanical stirring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention is applicable to the technical field of Chinese mugwort antibacterial soap production, and provides an antibacterial component comprehensive extraction system for producing Chinese mugwort antibacterial soap, which comprises an inner extraction tank, the inner extraction tank is provided with a material dispersion positioning frame, the material dispersion positioning frame comprises a plurality of material unit positioning frames, and a material positioning cavity is formed in each material unit positioning frame; the material positioning cavity is used for locking Chinese mugwort raw materials arranged in the material positioning cavity in the position range of the material unit positioning frame; on the basis of array distribution of a plurality of material unit positioning frames, Chinese mugwort raw materials are sequentially dispersed and positioned from the bottom to the top of the inner extraction tank, and the Chinese mugwort raw materials are dispersed into an extraction agent in the inner extraction tank in a simple and reasonable manner; the Chinese mugwort raw material can be dispersed into the extracting agent without additionally arranging a stirring mechanism, so that the Chinese mugwort raw material is in full contact with the extracting agent; and the problems that a stirring system with a tedious system structure needs to consume a large amount of energy in continuous operation and the later maintenance cost is high are solved.
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Description

Technical Field

[0001] The invention relates to the technical field of Qi Ai antibacterial soap production, in particular to a comprehensive extraction system for antibacterial components in producing Qi Ai antibacterial soap. Background Art

[0002] Qi Ai Antibacterial Soap is a natural antibacterial washing and care product with Qi Ai, a specialty of Qichun, Hubei, as its core ingredient. The flavonoids in Qi Ai water extract (isocyanin, cyanidin, and homoplanin) can destroy the mitochondrial morphology and function of dermatophytes including Trichophyton rubrum and Microsporum gypseum, inhibiting their growth; it has a significant inhibitory effect on common skin infection pathogens such as tinea pedis, that is, it has an antibacterial effect.

[0003] The extraction equipment for extracting the non-volatile components of flavonoids including isoeutaxanthin, cyanidin and homoplanin is a water extraction equipment or an alcohol extraction equipment, which mainly includes an extraction tank with stirring and temperature control, a solvent circulation pump and a filter.

[0004] During the extraction process of Qi Ai in an extraction tank with stirring and temperature control, a stirring mechanism is required to disperse the Qi Ai raw materials into the extractant to ensure that the Qi Ai raw materials and the extractant are in full contact; but this requires the stirring mechanism to have a complicated and systematic stirring system and to operate continuously; a stirring system with a complicated and systematic structure consumes a lot of energy in long-term operation, and on the other hand, it will also cause high maintenance costs in the later stage; therefore, in order to solve the above problems, it is necessary to develop a simple and reasonable way to disperse the Qi Ai raw materials into the extractant so that the Qi Ai raw materials and the extractant are in full contact. Summary of the Invention

[0005] The purpose of the embodiment of the present invention is to provide a comprehensive extraction system for antibacterial components of Qi Ai antibacterial soap, which aims to solve the problem that in the extraction process of Qi Ai by an extraction tank with stirring and temperature control, a stirring mechanism is required to stir and disperse the Qi Ai raw materials into the extractant to ensure that the Qi Ai raw materials and the extractant are in full contact; but this requires the stirring mechanism to have a cumbersome and systematic stirring system and to operate continuously; a stirring system with a cumbersome and systematic structure consumes a lot of energy in long-term operation, and on the other hand, it will also cause the problem of high maintenance costs in the later stage.

[0006] Specifically: A comprehensive extraction system for antibacterial components of Qi Ai antibacterial soap, comprising an extraction tank, wherein an inner extraction tank for extracting Qi Ai raw materials is installed inside the extraction tank; a material dispersion positioning rack is placed inside the inner extraction tank, and the material dispersion positioning rack includes a plurality of material unit positioning racks, and the plurality of material unit positioning racks are detachably installed inside the inner extraction tank; a material positioning cavity is formed inside each material unit positioning rack, and the material positioning cavity is used to lock the Qi Ai raw materials installed therein within the position range of the material unit positioning rack; in the plurality of material unit positioning racks, ... formed The positioning rack array is distributed on the basis of the interior of the inner extraction tank, so that the Qi Ai raw material can be dispersed and positioned in sequence from the bottom to the top of the inner extraction tank, and is used to disperse the Qi Ai raw material into the extractant inside the inner extraction tank in a simple and reasonable way, so as to promote full contact between the Qi Ai raw material and the extractant; there is no need to add a stirring mechanism to stir and disperse the Qi Ai raw material into the extractant to ensure full contact between the Qi Ai raw material and the extractant; avoid a stirring system with a cumbersome and systematic structure, which consumes a lot of energy during continuous operation, and also causes the problem of high maintenance costs in the later stage.

[0007] The technical solution of this application is further described below: In one embodiment, a plurality of positioning slots are provided inside the inner extraction tank, and the plurality of positioning slots are arranged in a circular array along the inner wall of the inner extraction tank; the positioning slots are fixed on the inner wall surface of the inner extraction tank, and the positioning slots are distributed in a direction parallel to the center line of the inner extraction tank column; a plurality of material unit positioning frames are detachably installed along the positioning slots inside the inner extraction tank; the material unit positioning frames are slidably assembled inside the positioning slots and fixed by limit bolts.

[0008] In one embodiment, the material unit positioning frame includes a material positioning chassis and a material positioning top cover, and the material positioning chassis and the material positioning top cover are detachably installed; the material positioning cavity is located between the material positioning chassis and the material positioning top cover; the material positioning cavity includes an upper positioning cavity and a lower positioning cavity, the upper positioning cavity is opened on the material positioning top cover, and the lower positioning cavity is opened on the material positioning chassis.

[0009] Furthermore, the material positioning chassis is provided with a filter screen plate 1 at the bottom of the lower positioning cavity, and a sealing groove is provided on the material positioning chassis outside the filter screen plate 1. The sealing groove is ring-shaped, and the column center line of the sealing groove and the column center line of the material positioning chassis are arranged on the same straight line; a plurality of connecting ears 1 are fixed on the outside of the material positioning chassis, and the plurality of connecting ears 1 are distributed in an array around the periphery of the material positioning chassis; a locking hole is provided on the connecting ear 1.

[0010] Furthermore, the filter screen plate is fixed with a positioning column at its column center line position, and a positioning hole is opened on the positioning column, and the positioning hole is located on the column center line of the positioning column; multiple baffles are fixed around the positioning column, and the multiple baffles are distributed in a circular array around the positioning column; the multiple baffles are all located inside the lower positioning cavity, and the lower positioning cavity is divided into multiple locking cavities.

[0011] A vibration pipe network is laid inside the lower positioning cavity, and the vibration pipe network is erected through multiple baffles; the vibration pipe network drives the filter plate to vibrate through its own vibration, which is used to prevent the extractant from gathering on the filter plate to form agglomerates during the flow process.

[0012] The material positioning top cover includes an outer positioning ring and a filter rotating body rotatably assembled inside the outer positioning ring, and the upper positioning cavity is formed by the outer positioning ring and the filter rotating body; a sealing ridge is fixed on the outer positioning ring; the sealing ridge is ring-shaped, and its cylindrical center line and the cylindrical center line of the outer positioning ring are arranged on the same straight line; the sealing ridge can be movably inserted into the sealing groove to seal the material positioning chassis and the material positioning top cover; a plurality of connecting ears 2 are fixed on the outside of the outer positioning ring, and the plurality of connecting ears 2 are distributed in an array around the periphery of the outer positioning ring; a bolt is inserted into the connecting ear 2, and the bolt is threadedly inserted into the connecting ear 2 for detachable installation of the material positioning chassis and the material positioning top cover.

[0013] The filter screen rotating body includes a filter screen plate 2 and multiple baffles 2; the filter screen plate 2 is rotatably assembled inside the outer positioning ring, and a positioning column 2 is fixed on the column center line of the filter screen plate 2, and an insertion column is fixed on the positioning column 2, and the insertion column and the positioning column 2 are on the same straight line; the insertion column is used to movably insert into the positioning hole; the ends of the multiple baffles 2 are all fixed around the insertion column, and are distributed in an array along the periphery of the insertion column; the side edges of the multiple baffles 2 are all fixed on the filter screen plate 2, and the multiple baffles 2 are all inside the upper positioning cavity; the multiple baffles 2 are used to divide the upper positioning cavity into multiple locking cavities 2.

[0014] The multiple locking cavities 2 correspond to the multiple locking cavities 1 one by one, and the locking cavities 2 and the locking cavities 1 are snapped together to form a unit material positioning cavity, so that the multiple locking cavities 2 and the multiple locking cavities 1 divide the material positioning cavity between the material positioning chassis and the material positioning top cover into multiple unit material positioning cavities; the multiple unit material positioning cavities are used to further unitize and disperse the Qi Ai raw materials on the basis of locking the Qi Ai raw materials within the position range of the material unit positioning frame.

[0015] In one embodiment, the inner extraction tank is equipped with a reflux pipe group on the outside thereof, the reflux pipe group includes multiple reflux pipes, and the multiple reflux pipes are distributed in a U-shape. A guide cover 1 and a guide cover 2 are respectively installed at both ends of the reflux pipe group, and the guide cover 1 and the guide cover 2 are connected through the reflux pipe group; the guide cover 1 and the guide cover 2 are distributed at both ends of the inner extraction tank and are connected to the inner extraction tank; the guide cover 1 and the guide cover 2 are both installed with a guide plate; the guide plate includes a fixed ring and a partition fixed inside the fixed ring, and a plurality of guide holes are opened on the partition, and the plurality of guide holes are distributed in an array on the partition.

[0016] Compared with the prior art, the present invention has the following advantages: 1. Take out the multiple material unit positioning racks on the material dispersion positioning rack from the inner extraction tank, and then disperse the Qi Ai raw material into the multiple material unit positioning racks accordingly. The multiple material unit positioning racks lock the dispersed Qi Ai raw material within the position range of the material unit positioning rack through a material positioning cavity formed by each of them; on the basis of the multiple material unit positioning racks being distributed in an array inside the inner extraction tank, the Qi Ai raw material is dispersed and positioned in sequence from the bottom to the top of the inner extraction tank, so as to disperse the Qi Ai raw material into the extractant inside the inner extraction tank in a simple and reasonable manner, so as to promote full contact between the Qi Ai raw material and the extractant; there is no need to add a stirring mechanism to stir and disperse the Qi Ai raw material into the extractant, so as to ensure full contact between the Qi Ai raw material and the extractant; avoid a stirring system with a cumbersome and systematic structure, which consumes a lot of energy during continuous operation and also causes the problem of high maintenance cost in the later stage; That is, by taking out the multiple material unit positioning racks distributed in a vertical array in the inner extraction tank as a whole, accurately filling the Qi Ai raw material into each independent material positioning cavity and then resetting it, the three-dimensional spatial anchoring of the raw material in the extractant is achieved; The Ai mugwort raw material is sequentially locked in the material positioning cavity interval of each material unit positioning rack from the bottom to the top of the inner extraction tank, forming an equidistant three-dimensional distribution network to achieve full-area decentralized control; the Ai mugwort raw material is maximized in the extractant, completely eliminating local concentration dead zones, and no mechanical stirring is required to ensure full contact between the solid and liquid phases, achieving efficient mass transfer drive; Multiple material unit positioning racks lock the dispersed Qi Ai raw materials within the position range of the material unit positioning rack through a material positioning cavity formed by each of them, completing vertical array positioning and material positioning cavity spatial anchoring, eliminating Qi Ai raw material agglomeration and shortening the solvent diffusion path; realizing the static dispersion mechanism to replace traditional dynamic stirring through structural innovation, avoiding mechanical shearing and damaging the plant cell structure; at the same time, eradicating the energy consumption of the stirring motor, avoiding failure points such as transmission seal and bearing loss, eliminating the raw material breakage and thermal effects caused by stirring, and maintaining the integrity of the active ingredients; 2. By taking out the multiple material unit positioning racks distributed in a vertical array in the inner extraction tank as a whole, accurately filling the independent material positioning cavity with Qi Ai raw materials and resetting them, the Qi Ai raw materials added to the material positioning cavity between the material positioning bottom plate and the material positioning top cover will be further unitized and refined by the multiple unit material positioning cavities, realizing a combination of vertical array dispersion and horizontal unitized dispersion, so that the Qi Ai raw materials are maximized in the extractant, completely eliminating local concentration dead zones, and no mechanical stirring is required to ensure full contact between the solid and liquid phases. At the same time, after the Qi Ai raw material is added into the locking chamber 1, the filter screen rotating body is rotated, and the filter screen rotating body drives the multiple baffles 2 to rotate, so that the baffles 1 and 2 move relative to each other, smoothing the added Qi Ai raw material, improving the uniformity of the Qi Ai raw material charging, and facilitating the unitization and dispersion of the Qi Ai raw material in multiple unit material positioning cavities; 3. When the extractant flows inside the inner extraction tank, the mugwort raw materials will gather on the filter plate 1 along the flow direction of the fluid to form agglomeration. The vibration pipe network is started. The vibration pipe network drives the filter plate 1 to vibrate through its own vibration, thereby eliminating the agglomeration of the mugwort raw materials and shortening the solvent diffusion path; at the same time, it can also improve the fluidity of the extractant; 4. In the process of the reflux pipe group mobilizing the extractant inside the inner extraction tank, the partition can match the transverse area of the material unit positioning frame through multiple diversion holes, disperse the extractant laterally, and evenly pass it into multiple material unit positioning frames, which is conducive to promoting full contact between the Qi Ai raw material and the extractant; In addition, a pump is installed inside the reflux pipe group. The pump moves the extractant from top to bottom in the forward direction and then moves the extractant from bottom to top in the reverse direction, which is beneficial to flush the material unit positioning frame from two directions of the material unit positioning frame, thereby preventing the Qi Ai raw material from gathering on the filter plate one or the filter plate two along the fluid flow direction to form agglomeration. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Schematic diagram of the structure of a comprehensive extraction system for antibacterial components of Qi Ai antibacterial soap in one embodiment of the present invention; Figure 2 Schematic diagram of the assembly structure of the reflux pipe group and the inner extraction tank in one embodiment of the present invention; Figure 3 for Figure 2 Exploded diagram; Figure 4 Schematic diagram of the assembly structure of the material dispersion and positioning frame and the inner extraction tank in one embodiment of the present invention; Figure 5 Schematic diagram of the assembly structure of the material dispersing and positioning frame and the positioning trough in one embodiment of the present invention; Figure 6An exploded view of a material dispersing and positioning frame in one embodiment of the present invention; Figure 7 Schematic diagram of the structure of a material unit positioning frame in one embodiment of the present invention; Figure 8 An exploded view of a material unit positioning frame in one embodiment of the present invention; Figure 9 This is a schematic structural diagram of a material positioning chassis in one embodiment of the present invention; Figure 10 This is a schematic structural diagram of a material positioning chassis in another embodiment of the present invention; Figure 11 This is a schematic structural diagram of a material positioning cover in one embodiment of the present invention; Figure 12 for Figure 11 Schematic diagram of the structure after the material positioning cover is turned over; Figure 13 Schematic diagram of the structure of a guide plate in one embodiment of the present invention; Figure 14 Schematic diagram of the transverse cross-sectional structure of a material dispersion and positioning frame in one embodiment of the present invention. Legend:

[0018] Operation box 1, mounting frame 2, extraction tank 3; Return pipe group 100, flow guide cover 1 110, flow guide cover 2 120; Inner extraction tank 200, positioning tank body 210; Guide plate 300, fixing ring 310, partition 320, guide hole 330; Material dispersion positioning frame 400, material unit positioning frame 410, material positioning chassis 420, material positioning top cover 430, unit material positioning chamber 440, Qi Ai raw material 450; locking chamber 1 4201, connecting ear 1 4202, sealing groove 4203, baffle 1 4204, locking hole 4205, positioning column 1 4206, positioning hole 4207, filter plate 1 4208, vibration pipe network 4209; connecting ear 2 4301, outer positioning ring 4302, filter rotating body 4303, filter plate 2 4304, bolt 4305, baffle 2 4306, sealing ridge 4307, positioning column 2 4308, interlaced column 4309. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely for the purpose of explaining the present invention and are not intended to limit the present invention. The specific implementation of the present invention is described in detail below with reference to the specific embodiments.

[0020] In the embodiment of the present invention, please refer to Figure 1 and Figure 2 : A comprehensive extraction system for antibacterial components of Qi Ai antibacterial soap, comprising an extraction tank 3, wherein an inner extraction tank 200 for extracting Qi Ai raw material 450 is installed inside the extraction tank 3; It is necessary to further explain the extraction tank 3: the extraction tank 3 is mounted on the mounting frame 2, and the mounting frame 2 is mounted on the operating box 1; the operating box 1 and the mounting frame 2 are prior art, which can be found in existing literature and patents and can be purchased on the market. However, they are not the subject of the present invention and will not be explained in detail here. Meanwhile, the Qi Ai raw material 450 is a processed raw material, for example, crushed by a crushing device, etc., which belongs to the prior art and can be found in existing literature and patents, and can also be purchased on the market, and is not to be protected by the present invention, and will not be elaborated here; Please continue reading Figure 2-Figure 6 and Figure 14 : The inner extraction tank 200 is provided with a material dispersion positioning rack 400 therein, and the material dispersion positioning rack 400 includes a plurality of material unit positioning racks 410, and the plurality of material unit positioning racks 410 are detachably interspersed and installed inside the inner extraction tank 200; each material unit positioning rack 410 has a material positioning cavity formed therein, and the material positioning cavity is used to lock the Qi Ai raw material 450 installed therein within the position range of the material unit positioning rack 410; On the basis of the multiple material unit positioning racks 410 array distributed inside the inner extraction tank 200, the Qi Ai raw material 450 is sequentially dispersed and positioned from the bottom to the top of the inner extraction tank 200, so as to disperse the Qi Ai raw material 450 into the extractant inside the inner extraction tank 200 in a simple and reasonable manner, so as to promote full contact between the Qi Ai raw material and the extractant; Therefore, the multiple material unit positioning racks 410 on the material dispersion positioning rack 400 are taken out from the interior of the inner extraction tank 200, and then the Qi Ai raw material 450 is correspondingly dispersed into the multiple material unit positioning racks 410, and the multiple material unit positioning racks 410 respectively lock the dispersed Qi Ai raw material 450 within the position range of the material unit positioning rack 410 through a material positioning cavity formed therein; on the basis of the multiple material unit positioning racks 410 being distributed in an array inside the inner extraction tank 200, the Qi Ai raw material 450 is sequentially dispersed and positioned from the bottom to the top of the inner extraction tank 200, so as to achieve a simple and reasonable way to disperse the Qi Ai raw material 450 into the extractant inside the inner extraction tank 200, so as to promote full contact between the Qi Ai raw material and the extractant; there is no need to add a stirring mechanism to stir and disperse the Qi Ai raw material 450 into the extractant to ensure full contact between the Qi Ai raw material and the extractant; avoid having a cumbersome and system-structured stirring system that consumes a lot of energy during continuous operation and also causes the problem of high maintenance cost in the later stage; That is, by removing the multiple material unit positioning racks 410 distributed in a vertical array in the inner extraction tank 200 as a whole, accurately filling each independent material positioning cavity with Qi Ai raw material 450 and then resetting it, the raw material is anchored in the three-dimensional space of the extractant; The mugwort raw material 450 is sequentially locked in the material positioning cavity intervals of each material unit positioning frame 410 from the bottom to the top of the inner extraction tank 200, forming an equidistant three-dimensional distribution network to achieve global decentralized control; the mugwort raw material 450 is maximized in the extractant, completely eliminating local concentration dead zones, eliminating the need for mechanical stirring to ensure full contact between the solid and liquid phases, and achieving efficient mass transfer drive; Multiple material unit positioning racks 410 lock the dispersed Qi Ai raw materials 450 within the position range of the material unit positioning rack 410 through a material positioning cavity formed by each of them, completing vertical array positioning and material positioning cavity space anchoring, eliminating the agglomeration of Qi Ai raw materials 450 and shortening the solvent diffusion path; realizing the static dispersion mechanism to replace traditional dynamic stirring through structural innovation, avoiding mechanical shearing to damage the plant cell structure; at the same time, eradicating the energy consumption of the stirring motor, avoiding failure points such as transmission seal and bearing loss, eliminating the raw material breakage and thermal effects caused by stirring, and maintaining the integrity of the active ingredients.

[0021] The invention solves the problem that in the extraction process of Qi Ai using an extraction tank with stirring and temperature control in the prior art, a stirring mechanism is required to stir and disperse the Qi Ai raw materials into the extractant so as to ensure that the Qi Ai raw materials and the extractant are in full contact; however, this requires the stirring mechanism to have a complicated and systematic stirring system and to operate continuously; a stirring system with a complicated and systematic structure consumes a lot of energy in long-term operation, and on the other hand, it also causes the problem of high maintenance costs in the later stage.

[0022] In another embodiment of the present invention, please refer to Figure 4-Figure 6 The inner extraction tank 200 is provided with a plurality of positioning grooves 210, which are arranged in a circular array along the inner wall of the inner extraction tank 200; the positioning grooves 210 are fixed on the inner wall surface of the inner extraction tank 200, and the positioning grooves 210 are distributed in a direction parallel to the center line of the inner extraction tank 200; A plurality of material unit positioning frames 410 are detachably installed along the positioning slot 210 and inserted into the inner extraction tank 200 . The material unit positioning frames 410 are slidably assembled in the positioning slot 210 and fixed by limiting bolts.

[0023] In another embodiment of the present invention, please refer to Figure 7 、 Figure 8 and Figure 14 : The material unit positioning frame 410 includes a material positioning base plate 420 and a material positioning top cover 430, and the material positioning base plate 420 and the material positioning top cover 430 are detachably installed; The material positioning cavity is located between the material positioning base 420 and the material positioning top cover 430 ; the material positioning cavity includes an upper positioning cavity and a lower positioning cavity, the upper positioning cavity is opened on the material positioning top cover 430 , and the lower positioning cavity is opened on the material positioning base 420 .

[0024] For further information, see Figure 7-Figure 9 The material positioning chassis 420 is provided with a filter screen plate 4208 at the bottom of the lower positioning chamber. A sealing groove 4203 is provided on the material positioning chassis 420 outside the filter screen plate 4208. The sealing groove 4203 is annular in shape. The column center line of the sealing groove 4203 and the column center line of the material positioning chassis 420 are arranged on the same straight line. A plurality of connecting ears 4202 are fixed to the outside of the material positioning chassis 420 , and the plurality of connecting ears 4202 are distributed in an array around the periphery of the material positioning chassis 420 ; locking holes 4205 are opened on the connecting ears 4202 .

[0025] In another embodiment of the present invention, please refer to Figure 9 : The filter screen plate 1 4208 is fixed with a positioning post 1 4206 at its column centerline position, and the positioning post 1 4206 is provided with a positioning hole 4207, and the positioning hole 4207 is located on the column centerline of the positioning post 1 4206; A plurality of baffles 4204 are fixed around the positioning post 4206 and are distributed in a circular array around the positioning post 4206. The baffles 4204 are all located inside the lower positioning cavity and divide the lower positioning cavity into a plurality of locking cavities 4201.

[0026] See also Figure 10A vibration network 4209 is laid inside the lower positioning cavity and is erected through a plurality of baffles 4204. The vibration network 4209 drives the filter plate 4208 to vibrate through its own vibration, so as to prevent the extractant from gathering on the filter plate 4208 and forming agglomerates during the flow process.

[0027] Therefore, during the flow of the extractant inside the inner extraction tank 200, the Qi Ai raw material 450 will gather on the filter plate 4208 along the flow direction of the fluid to form a cluster. The vibrating pipe network 4209 is started, and the vibrating pipe network 4209 drives the filter plate 4208 to vibrate through its own vibration, thereby eliminating the clustering of the Qi Ai raw material 450 and shortening the solvent diffusion path; at the same time, it can also improve the fluidity of the extractant.

[0028] In another embodiment of the present invention, please refer to Figure 11 and Figure 12 The material positioning cover 430 includes an outer positioning ring 4302 and a filter rotating body 4303 rotatably assembled inside the outer positioning ring 4302. The upper positioning cavity is formed by the outer positioning ring 4302 and the filter rotating body 4303. A sealing ridge 4307 is fixed on the outer positioning ring 4302. The sealing ridge 4307 is annular, and its cylindrical center line is arranged on the same straight line as the cylindrical center line of the outer positioning ring 4302. The sealing ridge 4307 can be movably inserted into the sealing groove 4203 to seal the material positioning base 420 and the material positioning cover 430. A plurality of connecting ears 4301 are fixed on the outside of the outer positioning ring 4302, and the plurality of connecting ears 4301 are distributed in an array around the outer periphery of the outer positioning ring 4302; a bolt 4305 is inserted through the connecting ear 4301, and the bolt 4305 is threadedly inserted into the connecting ear 4301 for detachable installation of the material positioning chassis 420 and the material positioning top cover 4300.

[0029] See also Figure 11 and Figure 12 The filter rotating body 4303 includes a second filter plate 4304 and a plurality of second baffles 4306; the second filter plate 4304 is rotatably assembled inside the outer positioning ring 4302, and a second positioning post 4308 is fixed on the column center line of the second filter plate 4304, and an insertion post 4309 is fixed on the second positioning post 4308, and the insertion post 4309 and the second positioning post 4308 are on the same straight line; the insertion post 4309 is used to movably insert into the positioning hole 4207; The ends of the multiple baffles 4306 are fixed around the interpenetrating column 4309, and are distributed in an array along the periphery of the interpenetrating column 4309; the sides of the multiple baffles 4306 are fixed on the filter plate 4304, and the multiple baffles 4306 are all located inside the upper positioning cavity; the multiple baffles 4306 are used to divide the upper positioning cavity into multiple locking cavities 2.

[0030] See also Figure 9 、 Figure 12 and Figure 14 : The plurality of locking cavities 2 and the plurality of locking cavities 1 4201 are in a one-to-one correspondence, and the locking cavities 2 and 1 4201 are buckled together to form a unit material positioning cavity 440, so that the plurality of locking cavities 2 and the plurality of locking cavities 1 4201 divide the material positioning cavity between the material positioning bottom plate 420 and the material positioning top cover 430 into a plurality of unit material positioning cavities 440; The plurality of unit material positioning cavities 440 are used to further unitize and disperse the Qi Ai raw material 450 on the basis of locking the Qi Ai raw material 450 within the position range of the material unit positioning frame 410 .

[0031] Therefore, by taking out the multiple material unit positioning racks 410 distributed in a vertical array in the inner extraction tank 200 as a whole, accurately filling the Qi Ai raw material 450 into each independent material positioning cavity and then resetting it, the Qi Ai raw material 450 added to the material positioning cavity between the material positioning bottom plate 420 and the material positioning top cover 430 will be further unitized and dispersed by the multiple unit material positioning cavities 440, realizing a combination of vertical array dispersion and horizontal unitized dispersion, so that the Qi Ai raw material 450 is maximized in exposure to the extractant, completely eliminating local concentration dead zones, and eliminating the need for mechanical stirring to ensure full contact between the solid and liquid phases. At the same time, after the Qi Ai raw material 450 is added into the locking chamber 1 4201, the filter screen rotating body 4303 is rotated, and the filter screen rotating body 4303 will drive multiple baffles 2 4306 to rotate, forming baffle 1 4204 and baffle 2 4306 to move relative to each other, smoothing the added Qi Ai raw material 450, improving the uniformity of the loading of the Qi Ai raw material 450, and facilitating the unitization and dispersion of the Qi Ai raw material 450 in multiple unit material positioning cavities 440.

[0032] It is additionally noted that the limiting method of the filter screen rotating body 4303 can be through the cooperation of a limiting pin and a plurality of limiting holes, or can be through a snap buckle, etc., which all belong to the existing technology. At the same time, there is no restriction on the specific structure, as long as it can satisfy the limitation after the filter screen rotating body 4303 rotates relative to the material positioning chassis 420. Here, the cooperation of the limiting pin and a plurality of limiting holes is preferred; at the same time, it is not what the present invention wants to protect, and it is not drawn in the drawings, so it will not be elaborated here.

[0033] In another embodiment of the present invention, please refer to Figure 2 、 Figure 3 and Figure 13 The inner extraction tank 200 is externally provided with a reflux pipe assembly 100. The reflux pipe assembly 100 includes a plurality of reflux pipes arranged in a U-shape. A flow guide 110 and a flow guide 2 120 are respectively provided at both ends of the reflux pipe assembly 100. The flow guide 110 and the flow guide 2 120 are connected through the reflux pipe assembly 100. The first flow guide cover 110 and the second flow guide cover 120 are distributed at both ends of the inner extraction tank 200 and are connected to the inner extraction tank 200; the first flow guide cover 110 and the second flow guide cover 120 are both installed with a guide plate 300; The guide plate 300 includes a fixing ring 310 and a partition 320 fixed inside the fixing ring 310 . The partition 320 is provided with a plurality of guide holes 330 , which are distributed in an array on the partition 320 .

[0034] Therefore, in the process of the reflux pipe group 100 mobilizing the extractant inside the inner extraction tank 200, the partition 320 can match the transverse area of the material unit positioning frame 410 through the multiple guide holes 330, and after the extractant is dispersed laterally, it is evenly introduced into the multiple material unit positioning frames 410, which is conducive to promoting full contact between the Qi Ai raw material 450 and the extractant; In addition, a pump is installed inside the reflux pipe group 100. The pump moves the extractant from top to bottom in the forward direction and then moves the extractant from bottom to top in the reverse direction, which is conducive to flushing the material unit positioning frame 410 from both directions of the material unit positioning frame 410, thereby preventing the Qi Ai raw material 450 from being gathered on the filter plate 1 4208 or the filter plate 2 4304 along the flow direction of the fluid to form agglomeration; At the same time, after the pump stops working, the Qi Ai raw material 450 can be immersed in the extractant.

[0035] In the description of the present invention, unless otherwise specified, "plurality" means two or more. Although the embodiments of the present invention have been shown and described in the description of the present invention, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A comprehensive extraction system for antibacterial components of Qi Ai antibacterial soap, comprising an extraction tank, wherein an inner extraction tank for extracting Qi Ai raw materials is installed inside the extraction tank; characterized in that: The inner extraction tank is provided with a material dispersion positioning rack, which includes a plurality of material unit positioning racks. The plurality of material unit positioning racks are detachably interspersed and installed inside the inner extraction tank; a material positioning cavity is formed inside each material unit positioning rack, and the material positioning cavity is used to lock the Qi Ai raw material installed therein within the position range of the material unit positioning rack; On the basis of multiple material unit positioning rack arrays distributed inside the inner extraction tank, the Qi Ai raw materials are dispersed and positioned in sequence from the bottom to the top of the inner extraction tank, so as to disperse the Qi Ai raw materials into the extractant inside the inner extraction tank in a simple and reasonable manner, thereby promoting full contact between the Qi Ai raw materials and the extractant.

2. The comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 1, characterized in that: The inner extraction tank is provided with a plurality of positioning slots, which are arranged in a circular array along the inner wall of the inner extraction tank; the positioning slots are fixed on the inner wall surface of the inner extraction tank, and the positioning slots are distributed in a direction parallel to the center line of the inner extraction tank column; A plurality of material unit positioning frames are detachably installed along the positioning slot body and inserted inside the inner extraction tank; the material unit positioning frames are slidably assembled inside the positioning slot body and fixed by limiting bolts.

3. The comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 1, characterized in that: The material unit positioning frame includes a material positioning base and a material positioning top cover, and the material positioning base and the material positioning top cover are detachably mounted; The material positioning cavity is located between the material positioning bottom plate and the material positioning top cover; the material positioning cavity includes an upper positioning cavity and a lower positioning cavity, the upper positioning cavity is opened on the material positioning top cover, and the lower positioning cavity is opened on the material positioning bottom plate.

4. The comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 3, characterized in that: The material positioning chassis is provided with a filter screen plate 1 at the bottom of the lower positioning cavity, and a sealing groove is provided on the material positioning chassis outside the filter screen plate 1. The sealing groove is ring-shaped, and the column center line of the sealing groove and the column center line of the material positioning chassis are arranged on the same straight line; A plurality of connecting ears are fixed on the outside of the material positioning chassis, and the plurality of connecting ears are distributed in an array along the periphery of the material positioning chassis; and locking holes are opened on the connecting ears.

5. A comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 4, characterized in that: The filter screen plate 1 is fixed with a positioning column 1 at the column center line position, and the positioning column 1 is provided with a positioning hole, and the positioning hole is located on the column center line of the positioning column 1; A plurality of baffles are fixed around the positioning column, and the baffles are distributed in a circular array around the positioning column; the baffles are all located inside the lower positioning cavity, and divide the lower positioning cavity into a plurality of locking cavities.

6. A comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 5, characterized in that: A vibration pipe network is laid inside the lower positioning cavity, and the vibration pipe network is erected through multiple baffles; the vibration pipe network drives the filter plate to vibrate through its own vibration, which is used to prevent the extractant from gathering on the filter plate to form agglomerates during the flow process.

7. The comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 5, characterized in that: The material positioning cover includes an outer positioning ring and a filter screen rotating body rotatably assembled inside the outer positioning ring. The upper positioning cavity is formed by the outer positioning ring and the filter screen rotating body. A sealing ridge is fixed on the outer positioning ring. The sealing ridge is annular, and its cylindrical center line is arranged on the same straight line as the cylindrical center line of the outer positioning ring. The sealing ridge can be movably inserted into the sealing groove to seal the material positioning base and the material positioning cover. Multiple connecting ears 2 are fixed on the outside of the outer positioning ring, and the multiple connecting ears 2 are distributed in an array around the outer periphery of the outer positioning ring; bolts are inserted into the connecting ears 2, and the bolts are inserted and matched with the connecting ear 2 threads for detachable installation of the material positioning chassis and the material positioning top cover.

8. A comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 7, characterized in that: The filter screen rotating body includes a second filter screen plate and a plurality of second baffles; the second filter screen plate is rotatably assembled inside the outer positioning ring, a second positioning column is fixed on the column center line of the second filter screen plate, and an interpenetrating column is fixed on the second positioning column, and the interpenetrating column and the second positioning column are on the same straight line; the interpenetrating column is used to movably insert into the positioning hole; The ends of the multiple baffles 2 are fixed around the interpenetrating columns and are distributed in an array along the periphery of the interpenetrating columns; the sides of the multiple baffles 2 are fixed on the filter screen plate 2, and the multiple baffles 2 are all located inside the upper positioning cavity; the multiple baffles 2 are used to divide the upper positioning cavity into multiple locking cavities 2.

9. A comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to claim 8, characterized in that: The plurality of locking cavities 2 correspond to the plurality of locking cavities 1 in a one-to-one manner, and the locking cavities 2 and the locking cavities 1 are buckled together to form a unit material positioning cavity, so that the plurality of locking cavities 2 and the plurality of locking cavities 1 divide the material positioning cavity between the material positioning bottom plate and the material positioning top cover into a plurality of unit material positioning cavities; The multiple unit material positioning cavities are used to further unitize and disperse the Qi Ai raw materials on the basis of locking the Qi Ai raw materials within the position range of the material unit positioning frame.

10. A comprehensive extraction system for antibacterial components for producing Qi Ai antibacterial soap according to any one of claims 1 to 9, characterized in that: The inner extraction tank is externally provided with a reflux pipe group, which includes a plurality of reflux pipes distributed in a U-shape, with a first flow guide cover and a second flow guide cover respectively provided at both ends of the reflux pipe group, and the first flow guide cover and the second flow guide cover are connected through the reflux pipe group; The first and second flow guide covers are distributed at both ends of the inner extraction tank and are connected to the inner extraction tank; the first and second flow guide covers are both equipped with flow guide plates; The guide plate includes a fixed ring and a partition fixed inside the fixed ring. A plurality of guide holes are opened on the partition, and the plurality of guide holes are distributed in an array on the partition.