Preparation method of blood-activating stock solution

By using fixed volume filtration equipment and scraping components in the blood-activating raw liquid production device, the problems of low filtration automation level and poor filtration quality in the prior art are solved, and an efficient and stable filtration process is achieved, and the service life of the equipment is extended.

CN120204370AInactive Publication Date: 2025-06-27HANGZHOU SUPER YUANLI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510271345.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-08
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing blood-activating raw liquid production equipment has low automation level and poor filtration quality during the filtration process, resulting in a decrease in filtration effect and requires shutdown and replacement, which reduces filtration efficiency and processing efficiency.

Method used

Fixed capacity filtration equipment is adopted, including frame body, bearing mechanism, filter mechanism, scraping assembly and flow guide assembly. Through the design of fixed capacity filtration and scraping assembly, autonomous cleaning and longer-term equipment operation are achieved.

Benefits of technology

It improves filtration efficiency and processing efficiency, extends the service time of the equipment, maintains high-quality filtration effect, and avoids the necessity of shutdown and replacement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of blood-activating stock solutions, and discloses a preparation method of a blood-activating stock solution, which comprises the following steps: step 1, checking and accepting raw materials and auxiliary materials; step 2, storing; step 3, metering and preparing CCP; step 4, feeding; step 5, cooking and preserving heat; step 6, constant volume filtration; step seven, filling; step 8, air drying; and step 9, packaging and promoting hematopoietic function: providing hematopoietic raw materials: hemoglobin peptide not only provides iron element, but also contains rich essential amino acids, provides nutritional support for generation of red blood cells and hemoglobin, and further optimizes blood quality.
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Description

Technical Field

[0001] The present invention relates to the field of blood-activating stock solution, and particularly to a preparation method of blood-activating stock solution. Background Art

[0002] Modern women are facing multiple challenges such as increased life pressure, disrupted work and rest, and environmental pollution, resulting in increasingly prominent problems such as premature ovarian failure, poor blood circulation, and endocrine disorders, further leading to menstrual disorders, skin aging, infertility, and overall functional decline. These problems not only affect women's physical health but also seriously affect their quality of life. Research shows that improving blood microcirculation and enhancing antioxidant capacity can help delay ovarian aging and maintain female physiological balance. Traditional nourishing foods such as donkey-hide gelatin have slow effects and single nutritional components; although iron agents have rapid effects, their absorption rate is low and side effects are obvious. Therefore, a compound blood-tonifying product that combines highly efficient blood-tonifying and blood-activating components with natural antioxidant substances, which can achieve multiple effects of promoting hematopoiesis + blood-activating circulation + antioxidant repair, comprehensively improve the blood-tonifying effect and health level, will meet the urgent needs of modern people for highly efficient, safe, and comprehensive blood-tonifying products and form a differentiated competitive advantage in the market.

[0003] During the production process, when the existing device filters, its automation level is low, the filtering quality is poor, and it cannot achieve autonomous cleaning. When the filtering time is relatively long, the filtering effect will decline. The existing technology requires shutdown and replacement, reducing the filtering efficiency and processing efficiency of the device. Summary of the Invention

[0004] In view of the deficiencies of the prior art, the technical solution adopted by the present invention to solve its technical problems is: A preparation method of a blood-activating stock solution according to the present invention includes the following steps: Step 1: Inspection and acceptance of raw and auxiliary materials; Step 2: Storage; Step 3: Measurement and batching CCP; Step 4: Feeding; Step 5: Boiling and heat preservation; Step 6: Constant-volume filtration; Step 7: Filling; Step 8: Air drying; Step 9: Packaging.

[0005] Preferably, the heat preservation temperature in Step 5 is 90 - 95 °C, and the heat preservation time is 20 minutes.

[0006] Preferably, the heat preservation temperature in Step 5 is 90 - 95 °C, and the heat preservation time is 20 minutes The constant-volume filtration equipment is adopted in Step 6, and the constant-volume filtration is specifically 140 meshes.

[0007] Preferably, the seventh step requires disinfection operation of the inner packaging material before filling.

[0008] Preferably, it comprises the following components: Blood peptide, VB6, red wine grape fruit powder, blueberry anthocyanin, concentrated red grape juice, concentrated apple juice, concentrated mulberry juice.

[0009] Principle of VB6 in enriching blood: Promote the synthesis of hemoglobin and improve the oxygen-carrying function of blood cells; Assist in the absorption and utilization of iron and improve the conversion efficiency of iron in the body; Provide raw materials for red blood cell production and support the formation and maturation of red blood cells; Prevent microcytic anemia and improve anemia symptoms.

[0010] Preferably, the percentage between each component is: Blood peptide: 4.5; VB6: 0.1; Red wine grape fruit powder: 0.2; Blueberry anthocyanin: 6.7; Concentrated red grape juice: 44.8; Concentrated apple juice: 31.4; Concentrated mulberry juice: 12.3.

[0011] Preferably, the ratio between each component is: Blood peptide: 200 mg; VB6: 5 mg; Red wine grape fruit powder: 10 mg; Blueberry anthocyanin: 300 mg; Concentrated red grape juice: 2000 mg; Concentrated apple juice: 1400 mg; Concentrated mulberry juice: 550 mg.

[0012] Preferably, the constant volume filtering device comprises: a frame body, a receiving mechanism is arranged at the top of the frame body, and springs are uniformly arranged at the bottom of the receiving mechanism; This constant volume filtering device further comprises: A filtering mechanism, the bottom of the filtering mechanism is rotatably connected to the bottom of the inner wall of the receiving mechanism; The filtering mechanism includes a rotating shaft, the bottom of the rotating shaft is rotatably connected to the bottom of the inner wall of the receiving mechanism, the top of the rotating shaft is fixedly connected with a flow splitting component, the middle of the top of the flow splitting component is fixedly connected with a driving block, the top of the driving block is rotatably connected with a mounting plate, the outer wall of the mounting plate is evenly provided with scraping components, and the outer wall of one end of the scraping component away from the mounting plate is fixedly connected with a diversion component. When the liquid filtering speed decreases, the scraping component cleans the flow splitting component to maintain the liquid filtering effect, extend the time for equipment maintenance and cleaning, the flow splitting component can be disassembled separately, and the equipment can be replaced and cleaned without stopping work. By cleaning the sector sieve step by step, the sector sieve can be better utilized, and at the same time, the equipment can run for a long time.

[0013] Preferably, the top of the spring is fixedly connected to the bottom of the receiving mechanism, the bottom of the spring is fixedly connected to an oscillating table, the bottom of the inner wall of the oscillating table is rotatably connected to a knocking hammer, and the top of the knocking hammer is in contact with the bottom of the receiving component.

[0014] Preferably, the receiving mechanism includes a cylinder body, the outer wall of the cylinder body is in contact with the top of the frame body, the top of the cylinder body is provided with a cover body, the bottom of the cover body is buckled with the top of the cylinder body, the top of the cover body is fixedly connected with a liquid inlet pipe, one side of the inner wall of the cover body away from the liquid inlet pipe is rotatably connected with a movable cover, and a liquid outlet is opened on the outer wall of the cylinder body. The blocked parts are taken out for cleaning and then replaced, and the blocked parts can be replaced without stopping the machine.

[0015] Preferably, the flow splitting component includes a conical frame plate, the bottom of the conical frame plate is fixedly connected to the top of the rotating shaft, strip-shaped holes are evenly opened on the top of the conical frame plate, partition blocks are evenly arranged on the top of the conical frame plate, the bottom of the partition block is fixedly connected to the top of the conical frame plate, sector sieves are evenly arranged on the top of the conical frame plate, the bottom of the sector sieve is fixedly connected to the top of the conical frame plate, the sector sieve and the partition block are arranged alternately, a diversion strip is fixedly connected to the top of the sector sieve, and the outer wall of the diversion strip is fixedly connected to the inner wall of the cylinder body, so that the liquid can still be filtered. As the accumulation degree increases, the scraping component scrapes the surface of the sector sieve. When the liquid accumulates to a certain extent on the surface of the sector sieve, it means that the blockage degree of the sector sieve is relatively serious. At this time, it needs to be replaced and cleaned to facilitate maintaining the filtering effect of the sector sieve.

[0016] Preferably, the scraping assembly comprises a rotating rod, one end of which is rotatably connected to the outer wall of the mounting plate, a telescopic rod is symmetrically arranged at one end of the rotating rod away from the mounting plate, the top of the telescopic rod is fixedly connected to the bottom of the rotating rod, a squeezing roller is rotatably connected to the bottom of the telescopic rod, an arc plate is rotatably connected to the opposite side of the telescopic rod, a barb is arranged at the bottom of the arc plate, a support rod is symmetrically arranged at the top of the arc plate, the bottom of the support rod is rotatably connected to the top of the arc plate, and a scraper is rotatably connected to the bottom of the support rod away from one end of the arc plate. The telescopic rod drives the squeezing roller to squeeze in the fan-shaped screen, so that the debris on the surface of the fan-shaped screen is squeezed and the excess juice is squeezed out, at this time, the outside of the arc plate contacts the bottom of the fan-shaped plate, after the squeezing roller returns to its original position, the barb at the bottom of the arc plate scrapes the squeezed impurities to the starting position, and waits for the next cleaning, and the fan-shaped screen is cleaned step by step according to the blockage situation, so as to extend the service life of the fan-shaped screen and maintain the filtering effect.

[0017] Preferably, the flow guide assembly includes a flow guide tube, the outer wall of the flow guide tube is fixedly connected to the outer wall of the rotating rod near one end of the telescopic rod, the bottom of the flow guide tube is fixedly connected to a closing tube, the top of the flow guide tube is rotatably connected to a limiting plate, the top of the flow guide tube is rotatably connected to an annular frame at one end away from the limiting plate, the annular frame is fixedly connected to an elastic rod at one end close to the limiting plate, and the elastic rod is fixedly connected to a cleaning ring at one end away from the annular frame, the outer wall of the cleaning ring is sleeved with the inner wall of the flow guide tube, and the top of the cleaning ring is evenly provided with fan-shaped holes to reduce the flow rate of the liquid and reduce the splashing of the liquid into the inside of the cylinder during feeding, so as to keep it clean. When the current fan-shaped screen is blocked during use, the rotating shaft rotates to drive the next fan-shaped screen to move to the bottom of the liquid inlet pipe to continue filtering and connect the liquid flowing out of the liquid inlet pipe to reduce the distance between the liquid and the fan-shaped screen, so that the liquid can slow down the flow rate, which is convenient for controlling the filtering process and avoiding the liquid from splashing around in the cylinder.

[0018] The beneficial effects of the present invention are as follows: 1. Promote hematopoietic function: Provide raw materials for hematopoiesis: Hemoglobin peptides not only provide iron, but also contain rich essential amino acids, providing nutritional support for the production of red blood cells and hemoglobin, further optimizing blood quality.

[0019] The blood peptide used is a decolorized (iron-removed) hemoglobin peptide, which has the characteristics of no iron smell, small molecules and easy absorption; the results of the raw material's rat blood-enriching experiment proved that the decolorized blood peptide and the non-decolorized (iron-containing) blood peptide have the same blood-enriching effect.

[0020] 2. Promote blood circulation and improve microcirculation: Hemoglobin peptides have the characteristics of small molecular weight and are easily digested and absorbed by the human body. After entering the blood, they can promote microvascular dilation and blood flow, help improve blood circulation, and increase blood oxygen supply to peripheral tissues.

[0021] The active ingredients in hemoglobin peptides can promote microvascular regeneration, improve the state of restricted blood circulation, and help relieve symptoms such as cold hands and feet, fatigue, pale complexion, etc. caused by blood stasis.

[0022] 3. Improve hypoxia and enhance oxygen transport capacity: Hemoglobin is the carrier responsible for transporting oxygen. Oral administration of hemoglobin peptides can enhance the oxygen-carrying capacity of red blood cells in the body, enhance the body's transport and utilization of oxygen, and relieve symptoms of hypoxia caused by insufficient hemoglobin, such as dizziness and palpitations.

[0023] 4. Anti-oxidation, protect blood health: Hemoglobin peptides contain active peptide chains. These small molecule peptides have good antioxidant activity, can remove free radicals in the body, protect red blood cells from oxidative damage, and maintain the health of the blood system.

[0024] By reducing oxidative stress and delaying the aging of blood cells, hemoglobin peptides are particularly suitable for people with chronic anemia and weak constitutions.

[0025] 5. High bioavailability and few side effects: Compared with traditional iron supplements, oral hemoglobin peptides have higher bioavailability and no side effects such as gastrointestinal irritation. This is because the absorption efficiency of iron in the form of heme iron is better, and it will not cause excessive iron deposition or irritate the digestive tract mucosa.

[0026] 6. The scraper assembly cleans the diversion assembly when the liquid filtration speed decreases, maintains the filtration effect on the liquid, and extends the time for equipment maintenance and cleaning. The diversion assembly can be disassembled separately, and can be replaced and cleaned without stopping the equipment. By cleaning the fan-shaped screen step by step, the fan-shaped screen can be better utilized and the equipment can be kept running for a long time. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a flow chart of the method of the present invention; Figure 2 It is a structural schematic diagram of the constant volume filtering device of the present invention; Figure 3 is a cross-sectional view of a constant volume filtering device of the present invention; Figure 4 It is a structural schematic diagram of the receiving mechanism of the present invention; Figure 5 It is a structural schematic diagram of the filtering mechanism of the present invention; Figure 6It is the bottom view of the filtering mechanism of the present invention; Figure 7 It is the structural schematic diagram of the flow splitting component of the present invention; Figure 8 It is the structural schematic diagram of the scraping component of the present invention; Figure 9 It is the structural schematic diagram of the diversion component of the present invention; In the figure: 1, frame body; 2, receiving mechanism; 201, cylinder body; 202, liquid outlet; 203, cover body; 204, liquid inlet pipe; 205, movable cover; 3, filtering mechanism; 301, rotating shaft; 302, flow splitting component; 3021, conical frame plate; 3022, strip-shaped hole; 3023, partition block; 3024, sector sieve; 3025, diversion strip; 303, scraping component; 3031, rotating rod; 3032, telescopic rod; 3033, extrusion roller; 3034, arc plate; 3035, barb; 3036, support rod; 3037, scraping plate; 304, diversion component; 3041, diversion pipe; 3042, necking pipe; 3043, limiting plate; 3044, annular frame; 3045, elastic rod; 3046, cleaning ring; 3047, sector-shaped hole; 305, driving block; 306, mounting plate; 4, oscillating table; 5, spring; 6, knocking hammer. Detailed implementation manners

[0028] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation manners. The embodiments of the present invention are given for the purpose of illustration and description, and are not exhaustive or limited to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

[0029] Example 1, use Figure 1 A preparation method of a kind of promoting blood circulation original liquid of an embodiment of the present invention will be described as follows.

[0030] Mix blood peptide: 200 mg, VB6: 5 mg, red wine grape fruit powder: 10 mg, blueberry anthocyanin: 300 mg, concentrated red grape juice: 2000 mg, concentrated apple juice: 1400 mg, concentrated mulberry juice: 550 mg, then boil and keep warm, the heat preservation temperature is 90 - 95 degrees Celsius, and the heat preservation time is 20 minutes; constant volume filtration, specifically filtering 140 meshes, and then filling, air drying, and packaging to obtain the promoting blood circulation original liquid.

[0031] Carry out a blood supplement efficacy test (zebra fish blood cell regeneration promotion test) on the promoting blood circulation original liquid: Test method: Adriamycin-induced anemia model was established in zebrafish. 24 one-day-old zebrafish embryos were exposed to a mixed solution containing 30μmol / L doxorubicin and 0.6mmol / L phenylthiourea, and a model control group and a blank control group (embryo buffer and 0.6mmol / L phenylthiourea mixed solution group) were set up at the same time. After culturing to 2 days old, they were exposed to 1.43g / L Super Yuanli Ovarian Maintenance Qi and Blood Drink sample solution, and a model control group (embryo buffer) and a blank control group (embryo buffer) were set up at the same time. The concentration of phenylthiourea in each group remained unchanged during the experimental period. After culturing to 3 days old, dianisidine staining was performed, and photos were taken under a microscope to measure the blood cell regeneration area of ​​the zebrafish and perform calculations and analysis; Test results: The sample of the embodiment promoted the regeneration of zebrafish blood cells by 57% at a test concentration of 1.43 g / L (p=0.0059); Therefore, the sample in the example can significantly promote the regeneration of blood cells in zebrafish at the concentration tested this time, has a blood-tonifying effect, and helps to improve iron-deficiency anemia.

[0032] The blood circulation promoting effect of the blood circulation liquid was tested (zebrafish embryo blood circulation promotion test): Test method: 20 3-day-old zebrafish embryos were exposed to 5.71g / L Super Yuanli Ovarian Maintenance Qi and Blood Drink sample solution, and a blank control group was set up at the same time. After 2 hours of exposure, the tail aorta of each zebrafish embryo was photographed under a microscope for 20 seconds. Then the blood flow velocity in the tail aorta of each fish embryo was analyzed by software, and the average value was taken and statistical analysis was performed; Test results: The sample of the embodiment promoted blood circulation in the caudal aorta of zebrafish embryos by 19% at a test concentration of 5.71 g / L (p=0.0000024); Therefore, the sample in the embodiment can significantly promote the blood flow rate of zebrafish embryos and has the effect of promoting blood circulation.

[0033] Antioxidant efficacy test of the blood-activating stock solution (zebrafish embryo reactive oxygen species (ROS) scavenging test): Test method: 24 zebrafish embryos aged 48 hours were exposed to 5.71g / L Super Yuanli Ovarian Maintenance Qi and Blood Drink sample solution, and a blank control group was set up. After 24 hours of exposure, the fish embryos were stained with H2DCFDA, and the ROS signal intensity was measured by fluorescence photography and statistical analysis was performed; Test results: The ROS clearance rate of the example sample on zebrafish embryos was 69% at a test concentration of 5.71 g / L (p=0.000000000000000000000000000034); Therefore, the example sample can significantly scavenge ROS in zebrafish embryos, has an antioxidant effect, and contributes to antioxidation.

[0034] Example Two, please refer to Figures 1 - 9 , the present invention provides a technical solution: on the basis of Example One, the constant-volume filtration device includes: a frame 1, a receiving mechanism 2 is arranged at the top of the frame 1, and springs 5 are uniformly arranged at the bottom of the receiving mechanism 2; This constant-volume filtration device includes: a filtration mechanism 3, the bottom of the filtration mechanism 3 is rotatably connected to the bottom of the inner wall of the receiving mechanism 2; The top of the spring 5 is fixedly connected to the bottom of the receiving mechanism 2, the bottom of the spring 5 is fixedly connected to an oscillation table 4, a hammer 6 is rotatably connected to the bottom of the inner wall of the oscillation table 4, and the top of the hammer 6 is in contact with the bottom of the receiving assembly.

[0035] During operation, the worker injects the prepared liquid into the receiving mechanism 2, so that the liquid contacts the filtration mechanism 3 for filtration. At the same time, the oscillation table 4 drives the hammer 6 to strike the bottom of the receiving mechanism 2, so that the liquid inside the filtration mechanism 3 can flow inside the filtration mechanism 3 under the action of an external force and be subjected to an oscillating force, which can better make the colloidal components in the juice in the liquid shake, reducing the occurrence of blockage. The spring 5 at the bottom of the receiving mechanism 2 and the frame 1 cooperate to protect the receiving mechanism 2, enabling it to remain stable while vibrating.

[0036] The filtration mechanism 3 includes a rotating shaft 301, the bottom of the rotating shaft 301 is rotatably connected to the bottom of the inner wall of the receiving mechanism 2, the top of the rotating shaft 301 is fixedly connected to a flow splitting assembly 302, a driving block 305 is fixedly connected to the central axis at the top of the flow splitting assembly 302, a mounting plate 306 is rotatably connected to the top of the driving block 305, scraping assemblies 303 are uniformly arranged on the outer wall of the mounting plate 306, and a guiding assembly 304 is fixedly connected to the outer wall of one end of the scraping assembly 303 away from the mounting plate 306.

[0037] Before the liquid is injected from the liquid inlet, the rotating shaft 301 rotates to drive the diversion assembly 304 into contact with the liquid inlet pipe 204, and then the injection is carried out, so that the liquid enters the diversion assembly 302 through the diversion assembly 304 and is filtered inside the diversion assembly 302. When filtering, the scraping assembly 303 stirs the liquid to keep the liquid fully covering the diversion assembly 302. After the diversion assembly 302 works for a long time, it will be blocked to a certain extent, resulting in a decrease in the filtering rate. At this time, the driving block 305 drives the scraping assembly 303 to rotate, and the surface of the diversion assembly 302 is cleaned and scraped, and the blocked substances are scraped to the edge of the diversion assembly 302 to keep the diversion assembly 302 working continuously. After the diversion assembly 302 is severely blocked, the rotating shaft 301 rotates the severely blocked diversion assembly 302 to the bottom of the movable cover 205. After the worker opens the movable cover 205, the diversion assembly 302 is taken out. The scraping assembly 303 cleans the diversion assembly 302 when the liquid filtering speed decreases, maintains the filtering effect on the liquid, and prolongs the time for equipment maintenance and cleaning. The diversion assembly 302 can be disassembled separately, so that the equipment can be replaced and cleaned without stopping work. By cleaning the sector sieve 3024 step by step, the sector sieve 3024 can be better utilized, and at the same time, the equipment can run for a long time.

[0038] The receiving mechanism 2 includes a cylinder body 201. The outer wall of the cylinder body 201 is in contact with the top of the frame body 1. A cover body 203 is arranged at the top of the cylinder body 201. The bottom of the cover body 203 is buckled with the top of the cylinder body 201. A liquid inlet pipe 204 is fixedly connected to the top of the cover body 203. A movable cover 205 is rotatably connected to one side of the inner wall of the cover body 203 away from the liquid inlet pipe 204. An outlet 202 is opened on the outer wall of the cylinder body 201. The cover body 203 and the movable cover 205 are made of transparent materials.

[0039] The worker injects the liquid into the cylinder body 201 through the liquid inlet pipe 204, so that the liquid is filtered by the filtering mechanism 3 and concentrated at the bottom of the cylinder body 201. After being collected to a certain extent, the liquid is drawn out from the outlet 202. When the filtering mechanism 3 is blocked, the movable cover 205 is opened, and the corresponding blocked parts are taken out for cleaning and then replaced, so that the blocked parts can be replaced without stopping the machine.

[0040] The flow splitting component 302 includes a conical frame plate 3021. The bottom of the conical frame plate 3021 is fixedly connected to the top of the rotating shaft 301. Strip-shaped holes 3022 are evenly formed in the top of the conical frame plate 3021. The liquid passing through the sector sieve 3024 enters the interior of the cylinder body 201 through the strip-shaped holes 3022. Partition blocks 3023 are evenly arranged on the top of the conical frame plate 3021. The bottom of the partition blocks 3023 is fixedly connected to the top of the conical frame plate 3021. Sector sieves 3024 are evenly arranged on the top of the conical frame plate 3021. The bottom of the sector sieves 3024 is fixedly connected to the top of the conical frame plate 3021. The sector sieves 3024 and the partition blocks 3023 are arranged alternately. The top of the partition blocks 3023 is pointed to reduce liquid residue. A guide strip 3025 is fixedly connected to the top of the sector sieve 3024. The guide strip 3025 contacts the end of the sector sieve 3024 of the cylinder body 201 to concentrate the liquid in the sector sieve 3024. The outer wall of the guide strip 3025 is fixedly connected to the inner wall of the cylinder body 201.

[0041] The conical frame plate 3021 is divided into six slots. After the sector sieve 3024 is installed, the rotating shaft 301 drives the sector sieve 3024 to rotate to the bottom of the liquid inlet pipe 204 so that the liquid enters the sector sieve 3024. Due to the inclination of the surface of the conical frame plate 3021 and the certain inclination of the surface of the sector sieve 3024, the liquid entering the sector sieve 3024 concentrates at the edge of the cylinder body 201. During normal use, the liquid in the sector sieve 3024 will not accumulate, but the part close to the cylinder body 201 is prone to blockage. The scraping component 303 stirs the liquid upward so that the liquid can still be filtered. As the degree of accumulation increases, the scraping component 303 scrapes the surface of the sector sieve 3024 until the liquid on the surface of the sector sieve 3024 accumulates to a certain extent, indicating that the blockage degree of the sector sieve 3024 is relatively serious. At this time, it needs to be replaced and cleaned to facilitate maintaining the filtering effect of the sector sieve 3024.

[0042] The scraping component 303 includes a rotating rod 3031. When the sector sieve 3024 is taken out, the rotating rod 3031 rotates 180 degrees to drive the components connected to the rotating rod 3031 away from the sector sieve 3024, and then the sector sieve 3024 is taken out. One end of the rotating rod 3031 is rotatably connected to the outer wall of the mounting plate 306. Symmetrically arranged telescopic rods 3032 are provided at the end of the rotating rod 3031 away from the mounting plate 306. The top of the telescopic rods 3032 is fixedly connected to the bottom of the rotating rod 3031. The bottom of the telescopic rods 3032 is rotatably connected to a pressing roller 3033. The opposite sides of the telescopic rods 3032 are rotatably connected to an arc-shaped plate 3034. Barbs 3035 are provided at the bottom of the arc-shaped plate 3034. Multiple gaps are provided on the surface of the arc-shaped plate 3034 to facilitate the passage of liquid. Support rods 3036 are symmetrically arranged at the top of the arc-shaped plate 3034. The bottom of the support rods 3036 is rotatably connected to the top of the arc-shaped plate 3034. The bottom of the end of the support rods 3036 away from the arc-shaped plate 3034 is rotatably connected to a scraping plate 3037.

[0043] After the lower surface of the sector sieve 3024 is blocked, the liquid accumulates below the sector sieve 3024. At this time, the support rod 3036 drives the scraper 3037 to rotate, stirring the liquid upward so that the liquid passes through from above the sector plate for filtration, maintaining the filtering effect of the sector sieve 3024. When most of the surface of the sector sieve 3024 is piled up with sundries, the driving block 305 drives the rotating rod 3031 to rotate, so that the telescopic rod 3032 drives the extrusion roller 3033 to extrude inside the sector sieve 3024, so that the sundries on the surface of the sector sieve 3024 are extruded to squeeze out the excess juice. At this time, the outer surface of the arc-shaped plate 3034 contacts the bottom of the sector plate. After the extrusion roller 3033 returns to its original position, the barbs 3035 at the bottom of the arc-shaped plate 3034 scrape the extruded impurities to the starting position, waiting for the next cleaning. The sector sieve 3024 is cleaned step by step according to the blockage situation, extending the service life of the sector sieve 3024 and maintaining the filtering effect.

[0044] The diversion assembly 304 includes a diversion pipe 3041. The outer wall of the diversion pipe 3041 is fixedly connected to the outer wall of the rotating rod 3031 near one end of the telescopic rod 3032. A closing pipe 3042 is fixedly connected to the bottom of the diversion pipe 3041. The closing pipe 3042 is convenient for diverting the liquid and reducing liquid splashing. A limiting plate 3043 is rotatably connected to the top of the diversion pipe 3041. One end of the diversion pipe 3041 away from the limiting plate 3043 is rotatably connected to an annular frame 3044. After the liquid inlet pipe 204 knocks down the annular frame 3044, when the next sector sieve 3024 moves below the liquid inlet pipe 204, the liquid inlet pipe 204 knocks down the limiting plate 3043 again. After moving away from the liquid inlet pipe 204, the annular frame 3044 and the limiting plate 3043 return to their original positions. One end of the annular frame 3044 close to the limiting plate 3043 is fixedly connected to an elastic rod 3045. One end of the elastic rod 3045 away from the annular frame 3044 is fixedly connected to a cleaning ring 3046. The outer wall of the cleaning ring 3046 is sleeved with the inner wall of the diversion pipe 3041. Sector-shaped holes 3047 are evenly opened at the top of the cleaning ring 3046.

[0045] Before injecting the liquid into the sector sieve 3024, the driving block 305 drives the rotating rod 3031 to rotate, causing the annular frame 3044 to contact the liquid inlet pipe 204. During the movement of the liquid inlet pipe 204, the annular frame 3044 is knocked down. The annular frame 3044 drives the elastic rod 3045 to move downward, and the elastic rod 3045 drives the cleaning ring 3046 to move downward. The cleaning ring 3046 cleans the inner wall of the diversion pipe 3041, and at the same time shunts the liquid, reducing the flow rate of the liquid and reducing the splashing of the liquid into the interior of the cylinder 201 during feeding, which is convenient for maintaining cleanliness. When the current sector sieve 3024 is used until it is blocked, the rotating shaft 301 rotates, driving the next sector sieve 3024 to move below the liquid inlet pipe 204 to continue filtering, connecting the liquid flowing out of the liquid inlet pipe 204, reducing the distance between the liquid and the sector sieve 3024, so that the liquid can slow down the flow rate, which is convenient for controlling the filtering process and preventing the liquid from splashing everywhere inside the cylinder 201.

[0046] The specific working process is as follows: During operation, the worker injects the prepared liquid into the interior of the cylinder 201 through the liquid inlet pipe 204, so that the liquid is filtered by the filtering mechanism 3 and concentrated at the bottom of the cylinder 201. After collecting to a certain extent, the liquid is pumped out from the liquid outlet 202. When the filtering mechanism 3 is blocked, the movable cover 205 is opened, and the corresponding blocked parts are taken out for cleaning and then replaced, so that the liquid contacts the filtering mechanism 3 for filtering. At the same time, the oscillating table 4 drives the knocking hammer 6 to knock the bottom of the receiving mechanism 2, so that the liquid inside the filtering mechanism 3 can flow inside the filtering mechanism 3 under the action of an external force. Before the liquid is injected from the liquid inlet, the rotating shaft 301 rotates, driving the diversion assembly 304 to contact the liquid inlet pipe 204, and then injecting. The liquid passes through the component and enters the shunt component 302, and is filtered inside the shunt component 302. During filtering, the scraping component 303 stirs the liquid so that the liquid can keep covering the shunt component 302. After the shunt component 302 works for a long time, it will be blocked to a certain extent, resulting in a decrease in the filtering rate. At this time, the driving block 305 drives the scraping component 303 to rotate, cleaning and scraping the surface of the shunt component 302, scraping the blocked substances to the edge of the shunt component 302, and keeping the shunt component 302 working continuously. After the shunt component 302 is severely blocked, the rotating shaft 301 rotates the severely blocked shunt component 302 to the bottom of the movable cover 205. After the worker opens the movable cover 205, the shunt component 302 is taken out. The scraping component 303 cleans the shunt component 302 when the liquid filtering speed decreases. The spring 5 at the bottom of the receiving mechanism 2 and the frame 1 cooperate to protect the receiving mechanism 2, enabling it to remain stable while vibrating.

[0047] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. All other embodiments obtained by those of ordinary skill in the art and related fields based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention. Structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art without special instructions and limitations.

Claims

1. A method for preparing a blood-activating stock solution, characterized in that: The following steps are involved: Step 1: Acceptance of raw and auxiliary materials; Step 2: Storage; Step 3: Measuring ingredients CCP; Step 4: feeding; Step 5: Cook and keep warm; Step 6: Constant volume filtration; Step 7: Filling; Step 8: Air dry; Step 9: Packaging.

2. The method for preparing a blood-activating stock solution according to claim 1, characterized in that: The insulation temperature in step 5 is 90-95 degrees Celsius and the insulation time is 20 minutes. The step six uses a constant volume filtration device, and the constant volume filtration is specifically a 140 mesh filtration; The step 7 requires the inner packaging material to be sterilized before filling; Includes the following components: Blood peptide, VB6, red wine grape fruit powder, blueberry anthocyanin, concentrated red grape juice, concentrated apple juice, concentrated mulberry juice; The percentages between the components are: Blood peptide: 4.5; VB6: 0.1; Red wine grape fruit powder: 0.2; Blueberry anthocyanins: 6.7; Concentrated red grape juice: 44.8; Apple juice concentrate: 31.4; Concentrated mulberry juice: 12.

3. The ratio between the components is: Blood peptide: 200mg; VB6: 5mg; Red wine grape fruit powder: 10mg; Blueberry anthocyanin: 300mg; Concentrated red grape juice: 2000mg; Apple juice concentrate: 1400mg; Concentrated mulberry juice: 550mg.

3. The method for preparing a blood-activating stock solution according to claim 2, characterized in that: The constant volume filtering device comprises: a frame (1), a receiving mechanism (2) being arranged on the top of the frame (1), and springs (5) being evenly arranged on the bottom of the receiving mechanism (2); The constant volume filtration equipment also includes: A filtering mechanism (3), wherein the bottom of the filtering mechanism (3) is rotatably connected to the bottom of the inner wall of the receiving mechanism (2); The filtering mechanism (3) comprises a rotating shaft (301), the bottom of the rotating shaft (301) being rotatably connected to the bottom of the inner wall of the receiving mechanism (2), the top of the rotating shaft (301) being fixedly connected to a flow diversion component (302), the middle axis of the top of the flow diversion component (302) being fixedly connected to a driving block (305), the top of the driving block (305) being rotatably connected to a mounting plate (306), the outer wall of the mounting plate (306) being evenly provided with scraping components (303), and the outer wall of the scraping component (303) at one end away from the mounting plate (306) being fixedly connected to a flow guide component (304).

4. The constant volume filtering device according to claim 3, characterized in that: The top of the spring (5) is fixedly connected to the bottom of the receiving mechanism (2), the bottom of the spring (5) is fixedly connected to an oscillating table (4), the bottom of the inner wall of the oscillating table (4) is rotatably connected to a striking hammer (6), and the top of the striking hammer (6) is in contact with the bottom of the receiving assembly.

5. The constant volume filtering device according to claim 4, characterized in that: The receiving mechanism (2) comprises a cylinder (201), the outer wall of the cylinder (201) being in contact with the top of the frame (1), a cover (203) being arranged on the top of the cylinder (201), the bottom of the cover (203) being buckled with the top of the cylinder (201), the top of the cover (203) being fixedly connected with a liquid inlet pipe (204), a movable cover (205) being rotatably connected to a side of the inner wall of the cover (203) away from the liquid inlet pipe (204), and a liquid outlet (202) being provided on the outer wall of the cylinder (201).

6. The constant volume filtering device according to claim 5, characterized in that: The flow distribution component (302) comprises a conical frame plate (3021), the bottom of the conical frame plate (3021) is fixedly connected to the top of the rotating shaft (301), the top of the conical frame plate (3021) is evenly provided with strip holes (3022), the top of the conical frame plate (3021) is evenly provided with spacers (3023), and the bottom of the spacers (3023) is fixedly connected to the top of the conical frame plate (3021). The top of the conical frame plate (3021) is evenly provided with fan-shaped screens (3024), the bottom of the fan-shaped screens (3024) is fixedly connected to the top of the conical frame plate (3021), the fan-shaped screens (3024) and the spacers (3023) are arranged alternately, the top of the fan-shaped screens (3024) is fixedly connected with a guide strip (3025), and the outer wall of the guide strip (3025) is fixedly connected to the inner wall of the cylinder (201).

7. The constant volume filtering device according to claim 3, characterized in that: The scraping assembly (303) comprises a rotating rod (3031), one end of the rotating rod (3031) being rotatably connected to the outer wall of the mounting plate (306), a telescopic rod (3032) being symmetrically arranged at one end of the rotating rod (3031) away from the mounting plate (306), the top of the telescopic rod (3032) being fixedly connected to the bottom of the rotating rod (3031), the bottom of the telescopic rod (3032) being rotatably connected to a squeezing roller (3033), and the opposite side of the telescopic rod (3032) being rotatably connected to a curved plate (3034).

8. The constant volume filtering device according to claim 7, characterized in that: The bottom of the arc-shaped plate (3034) is provided with a barb (3035), the top of the arc-shaped plate (3034) is symmetrically provided with a support rod (3036), the bottom of the support rod (3036) is rotatably connected to the top of the arc-shaped plate (3034), and the bottom of the support rod (3036) at one end away from the arc-shaped plate (3034) is rotatably connected to a scraper (3037).

9. The constant volume filtering device according to claim 7, characterized in that: The flow guide assembly (304) comprises a flow guide tube (3041), the outer wall of the flow guide tube (3041) being fixedly connected to the outer wall of one end of the rotating rod (3031) close to the telescopic rod (3032), the bottom of the flow guide tube (3041) being fixedly connected to a closing tube (3042), and the top of the flow guide tube (3041) being rotatably connected to a limiting plate (3043).

10. The constant volume filtering device according to claim 9, characterized in that: An end of the top of the flow guide tube (3041) away from the limiting plate (3043) is rotatably connected to an annular frame (3044), an end of the annular frame (3044) close to the limiting plate (3043) is fixedly connected to an elastic rod (3045), an end of the elastic rod (3045) away from the annular frame (3044) is fixedly connected to a cleaning ring (3046), an outer wall of the cleaning ring (3046) is sleeved with an inner wall of the flow guide tube (3041), and fan-shaped holes (3047) are evenly opened on the top of the cleaning ring (3046).