Preparation method and device of circadian rhythm adaptive anti-fatigue kidney power concentrated essence beverage
The preparation method and apparatus of the circadian rhythm-adapted anti-fatigue renal function concentrated essence beverage utilizes a variety of natural raw materials and advanced preparation technology to solve the problems of insufficient synergistic effect of ingredients and low preparation efficiency in existing beverages, and achieves a highly efficient anti-fatigue and renal function enhancement effect that is adapted to the human physiological rhythm.
Patent Information
- Application Number
- CN202510942797.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2025-10-31
AI Technical Summary
Most existing anti-fatigue drinks lack the synergistic effect of multiple nutrients, the effective components of raw materials are not fully extracted, the human body's circadian rhythm is not fully considered, and the preparation equipment suffers from low efficiency and clogging problems.
Using a variety of natural raw materials such as mulberry, dried plum pulp, red dates, and goji berries, and combining a boiling-circulating crushing process, a day-night rhythm-adaptive preparation device was designed, which includes spiral blade conveying, circulating crushing, airflow assistance, and special filtration to prevent clogging.
It significantly improves anti-fatigue and kidney function, adapts to the body's physiological rhythm, improves raw material utilization, shortens preparation time, and ensures beverage quality and filtration efficiency.
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Figure CN120859306A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of kidney tonification and nourishment technology, and in particular to a method and apparatus for preparing a circadian rhythm-adapted anti-fatigue kidney-boosting concentrated essence beverage. Background Technology
[0002] In today's fast-paced lifestyle, people face immense work and life pressures. Prolonged periods of high-intensity work and life can easily lead to physical fatigue, weakened immunity, and impaired kidney function. Fatigue not only affects work efficiency and quality of life but can also trigger a series of health risks. Therefore, developing a beverage that can effectively combat fatigue, enhance kidney function, and align with the body's circadian rhythm is of significant practical importance.
[0003] Currently, there are many types of anti-fatigue and health drinks on the market, but most of them have some shortcomings. Some drinks only focus on adding a single ingredient, lacking the synergistic effect of multiple nutrients, making it difficult to achieve comprehensive anti-fatigue and kidney-boosting effects; some drinks do not fully extract the effective components of raw materials during the preparation process, resulting in a significant reduction in nutritional value; and some drinks do not fully consider the characteristics of the human body's circadian rhythm, failing to provide the body with the necessary nutritional support at the appropriate time.
[0004] In addition, traditional beverage preparation equipment also has certain limitations in raw material processing. For example, during the boiling process, the effective components in the raw materials are difficult to fully dissolve into the liquid, resulting in a longer boiling time and higher energy consumption; in terms of raw material crushing, existing crushing methods are often not thorough enough, failing to fully release the nutrients in the raw materials; and in the filtration stage, the filter screen is prone to clogging, affecting filtration efficiency and beverage quality.
[0005] Based on the above situation, the present invention aims to develop a circadian rhythm-adaptive anti-fatigue kidney-boosting concentrated essence beverage and its preparation method, and at the same time design a matching preparation device to solve the problems existing in the current beverage and preparation technology, so as to provide people with a healthier and more effective anti-fatigue beverage. Summary of the Invention
[0006] The purpose of this invention is to solve the above-mentioned technical problems by proposing a method and apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage.
[0007] To achieve the above objectives, the present invention adopts the following technical solution: A method for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage includes the following steps: S1. Raw material decoction: Add the following raw materials by weight: 15-30 parts mulberry, 15-30 parts dried plum pulp, 15-20 parts red dates, 10-20 parts goji berries, 15-20 parts black goji berries, 2-6 parts ginseng, 2-6 parts eucommia bark, 2-6 parts polygala root, 3-8 parts jujube seed, and 60-80 parts water to the preparation equipment for decoction. S2, Raw material crushing: The raw materials to be boiled are crushed in a circulating manner using the preparation equipment, and then boiled again; S3, Preparation: Cool the boiled ingredients from S2 to 20-25 degrees Celsius to obtain a crude beverage; S4, Filtration: The coarse beverage is filtered to obtain residue and filtrate. The filtrate is the target beverage.
[0008] Preferably, the boiling and crushing processes in S1 and S2 are carried out together and take 1-1.5 hours. The soaking process in S3 needs to be combined with the raw material crushing process in S2 and takes 1-1.5 hours.
[0009] This invention also discloses a preparation device for a circadian rhythm-adapted anti-fatigue kidney-boosting concentrated essence beverage. The device includes a preparation apparatus, which includes a support frame. A cooking tank is mounted on the support frame. An electric heating wire is installed at the bottom of the cooking tank to heat water for cooking the raw materials. An installation frame is installed on the inner wall of the cooking tank, and a fixed cylinder is mounted on the installation frame. A movable cylinder that can move up and down is slidably connected to the outside of the fixed cylinder. An installation ring that can be positioned inside the movable cylinder is provided inside the cooking tank. Multiple spiral blades are fixed on the installation ring. The spiral blades rotate with the installation ring to transport the raw materials and water upwards. Multiple hollow crushing cones that can rotate and move up and down are provided inside the fixed cylinder. A mesh plate is fixed inside the fixed cylinder above the hollow crushing cones. A fixed crushing cone that cooperates with the hollow crushing cones to crush the raw materials is fixed at the bottom of the mesh plate. A filter screen is installed at the upper end of the fixed cylinder.
[0010] Preferably, a fixed cover plate is fixed to the upper end of the cooking pot, a movable cover plate is hinged to the fixed cover plate, and a handle is fixed to the movable cover plate.
[0011] Preferably, it further includes a drive mechanism for driving the mounting ring to rotate. The drive mechanism includes a motor fixed to the bottom of the cooking pot and heat-insulated. The output end of the motor is fixed with a drive shaft. A rotating piston cylinder is provided through the bottom of the cooking pot. Synchronous pulleys are installed on both the piston cylinder and the drive shaft. The two synchronous pulleys are connected by a synchronous belt. The mounting ring is fixed on the piston cylinder.
[0012] Preferably, multiple hollow crushing cones are provided with jet holes, a movable piston is slidably connected inside the piston cylinder, an air inlet pipe is installed at the bottom of the piston cylinder, an air inlet check valve is installed on the air inlet pipe, a hollow polygonal prism is fixedly connected through the movable piston, an air outlet check valve is installed on the hollow polygonal prism, a hollow polygonal block is fixed and communicates with it on the hollow polygonal prism, a hollow plate is fixed and communicates with it on the hollow polygonal block, and the hollow crushing cone is fixed on the hollow plate and communicates with it.
[0013] Preferably, the upper ends of the plurality of hollow crushing cones are all fixed with rubber blocks, which can abut against the mesh plate.
[0014] Preferably, the hollow polygonal prism is fitted with a connecting rod that is rotatably connected to it, and the fixed cylinder is provided with two strip grooves, the connecting rod passing through the strip grooves and being fixedly connected to the movable cylinder.
[0015] Preferably, a reciprocating screw is fixed to the upper end of the hollow polygonal prism, a sleeve is fixed to the inner top of the filter screen, a positioning ring is fixed inside the sleeve, the reciprocating screw passes through the positioning ring and is connected to it, a piston block is slidably connected inside the sleeve, the reciprocating screw is rotatably connected to the piston block, and a plurality of flushing holes opposite to the filter screen are provided through the sleeve.
[0016] Preferably, a guide ring is fixed on the piston cylinder, and the hollow polygonal prism passes through the guide ring and is slidably connected to it.
[0017] Compared with the prior art, the beneficial effects of this invention are as follows: 1. Significant anti-fatigue effect: This invention combines a variety of natural ingredients such as mulberry, dried plum pulp, red dates, goji berries, black goji berries, ginseng, eucommia, polygala, and jujube seed. These ingredients are rich in various vitamins, minerals, amino acids, and bioactive components, which can work synergistically to effectively regulate the body's metabolism, enhance the body's energy supply, and thus significantly improve the body's anti-fatigue ability, helping people to quickly recover their physical strength and improve work and life efficiency.
[0018] 2. Enhance kidney function: The ginseng, eucommia and other ingredients in the formula have the effect of tonifying the kidney and replenishing qi, which can promote blood circulation in the kidney, enhance the kidney's metabolic function, and improve the kidney's detoxification ability, thereby effectively enhancing kidney function and improving kidney health. It has a very good health care effect for people who are in a state of long-term fatigue and have a heavy burden on their kidneys.
[0019] 3. Adapted to circadian rhythm: This beverage fully considers the characteristics of the human body's circadian rhythm. With appropriate ingredient combinations and preparation processes, it can exert corresponding health benefits at different physiological stages of the human body.
[0020] 4. Full Extraction of Active Ingredients: By first boiling and then circulating the crushing process, the active ingredients in the raw materials can be fully dissolved and released into the liquid. During the boiling process, the nutrients in the raw materials gradually dissolve into the water; during the circulating crushing process, the combination of the crushing cone and the fixed crushing cone, along with airflow-assisted crushing, further disrupts the cell structure of the raw materials, allowing the active ingredients to dissolve more fully. This significantly shortens the boiling time required to achieve the same medicinal effect and improves the utilization rate of the raw materials.
[0021] 5. Improve beverage quality: During the brewing stage, allow the boiled ingredients to cool naturally to 20-25 degrees Celsius, allowing the effective components in the ingredients to further dissolve and blend, which helps improve the taste and quality of the beverage. The filtration stage uses a special filtration device. A reciprocating screw drives a piston block up and down to flush the filter screen, preventing clogging and ensuring a smooth filtration process to obtain a clear and pure beverage.
[0022] 6. Highly Efficient Raw Material Conveying and Crushing: The drive mechanism rotates the mounting ring and spiral blades, conveying the raw materials and water from the bottom of the cooking tank upwards to the fixed cylinder, achieving raw material recycling. The rotation and vertical movement of the hollow crushing cone, along with its coordination with the fixed crushing cone, ensures thorough crushing of the raw materials, improving crushing efficiency and quality.
[0023] 7. Powerful anti-clogging and cleaning function: The rubber block at the top of the hollow crushing cone abuts against and moves against the screen plate, which can make the screen plate vibrate and prevent the screen plate from clogging; the reciprocating screw drives the moving piston to move up and down, and sprays air through the jet hole to clean the screen plate with airflow. 8. The reciprocating screw drives the piston block to move up and down, flushing the filter screen to prevent it from clogging and ensuring the smooth operation of the filtration process. This improves the stability and reliability of the device and also allows the crushed raw materials to be collected in the filter screen for subsequent cleaning, preventing the raw materials from being discharged with the liquid.
[0024] 9. High cooling efficiency: After boiling, the motor continues to work, supplying air to the boiling liquid. The air exchanges heat with the boiling liquid and removes it, while the boiling liquid circulates, increasing the contact area between the boiling liquid and the outside, which greatly improves the cooling efficiency of the boiling liquid and shortens the preparation time.
[0025] In summary, the beverage of this invention has significant effects. Multiple natural ingredients work synergistically to combat fatigue and enhance kidney function. It is also compatible with the diurnal rhythm. The process of first boiling and then circulating and crushing fully extracts the effective components. The brewing and special filtration improve the quality of the beverage. The raw material transportation and crushing are highly efficient, the anti-clogging and cleaning function is powerful, and the cooling efficiency is high, which can shorten the preparation time and improve the stability. It integrates boiling, crushing, filtering and cooling, reducing the investment in equipment. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of a preparation device for a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 2 This is a bottom view of the preparation device for a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 3 This is a cross-sectional view of the fixed cylinder in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 4 This is a schematic diagram of the fixed cylinder in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 5 This is a schematic diagram of the motor in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 6 This is a schematic diagram of the structure of the strip groove in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 7 This is a split view of the moving piston in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention; Figure 8 This is a cross-sectional view of the sleeve in the preparation device of the circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage proposed in this invention.
[0027] In the diagram: 1. Support, 2. Cooking pot, 3. Fixed cover, 4. Movable cover, 5. Handle, 6. Motor, 7. Piston cylinder, 8. Mounting bracket, 9. Filter screen, 10. Fixed cylinder, 11. Moving cylinder, 12. Drive shaft, 13. Synchronous belt, 14. Synchronous pulley, 15. Inlet pipe, 16. Inlet one-way valve, 17. Slot, 18. Connecting rod, 19. Mounting ring, 20. Spiral blade, 21. Hollow polygonal prism, 22. Sleeve, 23. Mesh plate, 24. Hollow crushing cone, 25. Flushing hole, 26. Fixed crushing cone, 27. Rubber block, 28. Hollow polygonal block, 29. Guide ring, 30. Moving piston, 31. Piston block, 32. Positioning ring, 33. Jet hole, 34. Outlet one-way valve, 35. Heating wire, 36. Hollow plate, 37. Reciprocating screw. Detailed Implementation
[0028] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0029] Reference Figures 1-8 A method for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage includes the following steps: S1. Raw material decoction: Add the following raw materials by weight: 15-30 parts mulberry, 15-30 parts dried plum pulp, 15-20 parts red dates, 10-20 parts goji berries, 15-20 parts black goji berries, 2-6 parts ginseng, 2-6 parts eucommia bark, 2-6 parts polygala root, 3-8 parts jujube seed, and 60-80 parts water to the preparation equipment for decoction. S2, Raw material crushing: The raw materials to be boiled are crushed in a circulating manner using the preparation equipment, and then boiled again; S3, Preparation: Cool the boiled ingredients from S2 to 20-25 degrees Celsius to obtain a crude beverage; S4, Filtration: The coarse beverage is filtered to obtain residue and filtrate. The filtrate is the target beverage.
[0030] In this invention, the boiling and crushing processes in S1 and S2 are carried out together and take 1-1.5 hours. The soaking process in S3 needs to be combined with the raw material crushing process in S2 and takes 1-1.5 hours.
[0031] The above method will be described in detail according to the following embodiments and the situation after volunteers used it: Example 1 The specific preparation method is as follows: S1. Raw material preparation: Weigh out 20 parts mulberry, 20 parts dried plum pulp, 18 parts red dates, 15 parts goji berries, 18 parts black goji berries, 4 parts ginseng, 4 parts eucommia bark, 4 parts polygala root, and 5 parts jujube seed. Add 70 parts water to the multi-functional preparation equipment. Turn on the equipment to allow the preparation and subsequent crushing operations to proceed simultaneously, controlling the temperature at 95-100℃ for 1.2 hours.
[0032] S2, Raw Material Crushing: Utilizing the circulating crushing function of the preparation equipment, the raw materials are thoroughly crushed during the cooking process, allowing for better dissolution of the effective components. Crushing and cooking are carried out simultaneously to ensure uniform crushing of the raw materials.
[0033] S3, Brewing: Cool the boiled and crushed ingredients to 22 degrees Celsius. This process, combined with the crushing step, allows the components in the ingredients to be fully released and blended. The brewing time is 1.2 hours to obtain a crude beverage.
[0034] S4, Filtration: Use a precision filter to filter the coarse beverage, remove the residue, and obtain a clear filtrate, which is the target beverage.
[0035] Anti-fatigue effect: Thirty volunteers who were chronically fatigued (working more than 60 hours per week, with a self-reported fatigue score ≥6 points, ranging from 1 to 10) were selected and consumed this beverage continuously for 30 days, drinking 200ml daily. Fatigue levels were assessed before and after consumption using the Fatigue Scale-14 (FS-14). Results showed that the average fatigue score before consumption was 7.2 points, and after consumption, the average fatigue score decreased to 4.1 points, indicating a significant reduction in fatigue (P<0.05), demonstrating the significant anti-fatigue effect of this beverage.
[0036] Enhancing Renal Function: Renal function-related indicators, including serum creatinine (Scr), blood urea nitrogen (BUN), and glomerular filtration rate (GFR), were measured in the 30 volunteers before and after consumption. Before consumption, the average Scr was 82.5 μmol / L, the average BUN was 5.8 mmol / L, and the average GFR was 92.3 ml / min. After consumption, the average Scr decreased to 76.8 μmol / L, the average BUN decreased to 5.2 mmol / L, and the average GFR increased to 98.7 ml / min. All indicators showed significant improvement (P<0.05), indicating that this beverage can effectively enhance renal function.
[0037] Adapting to circadian rhythms: By monitoring volunteers' physical function indicators at different times (morning, noon, and evening) after drinking the beverage, such as heart rate variability (HRV) and blood pressure.
[0038] The results showed that after drinking it in the morning, volunteers' HRV (Human Throat Rate) increased, indicating enhanced stress response in the morning; after drinking it in the evening, blood pressure remained relatively stable, which is beneficial for the body's rest and recovery at night. This demonstrates that this beverage can exert corresponding health benefits at different physiological stages of the body, adapting to the circadian rhythm.
[0039] Example 2 The specific preparation method is as follows: S1. Raw material preparation: Weigh out 15 parts mulberry, 15 parts dried plum pulp, 15 parts red dates, 10 parts goji berries, 15 parts black goji berries, 2 parts ginseng, 2 parts eucommia bark, 2 parts polygala root, and 3 parts jujube seed. Add 60 parts water to the preparation equipment. Turn on the equipment and proceed with both cooking and crushing at the same time, maintaining the temperature at 90-95℃ for 1 hour.
[0040] S2, Raw material crushing: During the cooking process, the raw materials are crushed using the circulating crushing function of the preparation equipment to achieve a uniform and fine crushing degree, thereby promoting the dissolution of effective components.
[0041] S3, Infusion: Cool the boiled and crushed raw materials to 20 degrees Celsius, and infuse them in conjunction with the crushing process for 1 hour to obtain a crude beverage.
[0042] S4, Filtration: Use a filter screen to filter coarse beverages, remove filter residue, and obtain the target beverage.
[0043] Anti-fatigue effect: Twenty-five athletes who frequently engage in high-intensity exercise (more than 10 hours of exercise per week, with a self-reported fatigue score ≥7 after exercise) were selected as volunteers. They drank this beverage continuously for 28 days, consuming 250ml daily. The fatigue self-rating scale was used to assess fatigue before and after consumption. The average fatigue score before consumption was 7.5, and after consumption, the average fatigue score decreased to 4.8, indicating a significant reduction in fatigue (P<0.05). This demonstrates that this beverage has a significant alleviating effect on exercise-induced fatigue.
[0044] Enhancing renal function: Renal function tests were performed on 25 volunteers before and after consumption. Before consumption, the average serum creatinine (Scr) level was 78.2 μmol / L, the average blood urea nitrogen (BUN) level was 5.5 mmol / L, and the average gastrointestinal filtration rate (GFR) was 90.5 ml / min. After consumption, the average Scr level decreased to 73.1 μmol / L, the average BUN level decreased to 5.0 mmol / L, and the average GFR increased to 95.2 ml / min. The improvement in renal function indicators (P<0.05) indicates that this beverage can enhance renal function.
[0045] Adapting to circadian rhythms: The study monitored volunteers' sleep quality (sleep duration, sleep depth, etc.) and daytime mental state (scored using a mental state rating scale) at different time points after consuming the beverage. Results showed that after drinking the beverage, volunteers experienced improved nighttime sleep quality and depth, as well as a better daytime mental state score. This indicates that the beverage helps regulate the body's circadian rhythm, maintaining a good state of health at different physiological stages.
[0046] Example 3 The specific preparation method is as follows: S1, Raw material decoction: Weigh 30 parts mulberry, 30 parts dried plum pulp, 20 parts red dates, 20 parts goji berries, 20 parts black goji berries, 6 parts ginseng, 6 parts eucommia, 6 parts polygala, and 8 parts jujube seed. Add 80 parts water to the preparation equipment. Turn on the equipment and decoct and crush simultaneously, controlling the temperature at 100-105℃ for 1.5 hours.
[0047] S2, Raw material crushing: During the cooking process, the efficient circulating crushing function of the preparation equipment is used to deeply crush the raw materials to ensure that the effective components in the raw materials are fully dissolved.
[0048] S3, Brewing: Cool the boiled and crushed raw materials to 25 degrees Celsius, and brew them in conjunction with the crushing process for 1.5 hours to obtain a crude beverage.
[0049] S4, Filtration: Use an ultrafiltration membrane to filter coarse beverages, removing filter residue and tiny impurities to obtain a pure target beverage.
[0050] Anti-fatigue effect: Thirty-five office workers who frequently worked night shifts (more than 4 night shifts per week, with a self-reported fatigue score ≥8 after working night shifts) were selected as volunteers. They drank this beverage continuously for 35 days, consuming 200ml daily. Fatigue scales were used to assess their performance before and after consumption. The average fatigue score before consumption was 8.1, and after consumption, the average fatigue score decreased to 5.0, indicating a significant reduction in fatigue (P<0.01). This demonstrates that this beverage has a good relieving effect on fatigue caused by working night shifts.
[0051] Enhancing Renal Function: Renal function tests were performed on 35 volunteers before and after consumption. Before consumption, the average serum creatinine (Scr) level was 85.3 μmol / L, the average blood urea nitrogen (BUN) level was 6.0 mmol / L, and the average gastrointestinal filtration rate (GFR) was 89.7 ml / min. After consumption, the average Scr level decreased to 79.2 μmol / L, the average BUN level decreased to 5.4 mmol / L, and the average GFR increased to 94.5 ml / min. The significant improvement in renal function indicators (P<0.01) indicates that this beverage can effectively enhance renal function.
[0052] Adapting to circadian rhythms: By monitoring the expression levels of circadian rhythm-related genes (using gene detection technology) and body hormone levels (such as cortisol and melatonin) at different time points after volunteers consumed the beverage, the results showed that after drinking the beverage, the expression of circadian rhythm-related genes in the volunteers tended to normalize, and the secretion rhythms of cortisol and melatonin were also adjusted, making it more consistent with the characteristics of the human circadian rhythm. This indicates that the beverage can adapt to the human circadian rhythm at the molecular level.
[0053] The present invention also discloses a preparation device for a circadian rhythm-adaptive anti-fatigue kidney-boosting concentrated essence beverage. The device includes a preparation equipment, which includes a support 1. A cooking pot 2 is mounted on the support 1. A fixed cover plate 3 is fixed to the upper end of the cooking pot 2. A movable cover plate 4 is hinged to the fixed cover plate 3. A handle 5 is fixed to the movable cover plate 4.
[0054] The bottom of the cooking pot 2 is equipped with an electric heating wire 35, which can heat the water for cooking the raw materials. The inner wall of the cooking pot 2 is equipped with an installation frame 8, and a fixed cylinder 10 is installed on the installation frame 8. A movable cylinder 11 that can move up and down is slidably connected to the outside of the fixed cylinder 10. The cooking pot 2 is equipped with an installation ring 19 that can be located inside the movable cylinder 11. Multiple spiral blades 20 are fixed on the installation ring 19. The spiral blades 20 rotate with the installation ring 19 and can transport the raw materials and water upward.
[0055] It also includes a drive mechanism for rotating the mounting ring 19. The drive mechanism includes a motor 6 fixed to the bottom of the cooking pot 2 and heat-insulated. The output end of the motor 6 is fixed with a drive shaft 12. A rotating piston cylinder 7 is provided through the bottom of the cooking pot 2. Synchronous pulleys 14 are installed on both the piston cylinder 7 and the drive shaft 12. The two synchronous pulleys 14 are connected by a synchronous belt 13. The mounting ring 19 is fixed on the piston cylinder 7.
[0056] Multiple hollow crushing cones 24 are provided with jet holes 33. A movable piston 30 is slidably connected inside the piston cylinder 7. An air inlet pipe 15 is installed at the bottom of the piston cylinder 7. An air inlet check valve 16 is installed on the air inlet pipe 15. The air inlet check valve 16 only allows air to enter the piston cylinder 7 through the air inlet pipe 15. A hollow polygonal prism 21 is fixedly connected through the movable piston 30. A guide ring 29 is fixed on the piston cylinder 7. The hollow polygonal prism 21 passes through the guide ring 29 and is slidably connected to it. The guide ring 29 enables the hollow polygonal prism 21 to rotate synchronously with the piston cylinder 7.
[0057] A one-way valve 34 is installed on the hollow polyhedron 21, which only allows air to flow through the hollow polyhedron 21 into the hollow polyhedron block 28; a hollow polyhedron block 28 connected to the hollow polyhedron 21 is fixed on the hollow polyhedron 21, and a hollow plate 36 connected to the hollow polyhedron block 28 is fixed on the hollow polyhedron block 28; the hollow crushing cone 24 is fixed on the hollow plate 36 and connected to it.
[0058] The fixed cylinder 10 is equipped with multiple hollow crushing cones 24 that can rotate and move up and down. The hollow polygonal prism 21 is fitted with a connecting rod 18 that is rotatably connected to it. Two strip grooves 17 are provided through the fixed cylinder 10. The connecting rod 18 passes through the strip grooves 17 and is fixedly connected to the moving cylinder 11.
[0059] A mesh plate 23 is fixed inside the fixed cylinder 10, located above the hollow crushing cone 24. A fixed crushing cone 26, which works with the hollow crushing cone 24 to crush the raw material, is fixed at the bottom of the mesh plate 23. The outer surfaces of the hollow crushing cone 24 and the fixed crushing cone 26 are rough, which is more conducive to the crushing of the raw material.
[0060] Among them, the upper ends of multiple hollow crushing cones 24 are fixed with rubber blocks 27. The rubber blocks 27 can abut against the mesh plate 23. The rubber blocks 27 abut against the mesh plate 23 and move on the mesh plate 23, which can make the mesh plate 23 vibrate and clean the blocked mesh plate 23.
[0061] A filter screen 9 is installed at the upper end of the fixed cylinder 10. The cross-section of the filter screen 9 is as follows: Figure 4 As shown; the outer bottom is provided with an annular trough that can hold crushed raw materials for collection; the filter screen 9 is installed on the outside of the fixed cylinder 10 by means of threads for subsequent collection and cleaning.
[0062] A reciprocating screw 37 is fixed to the upper end of the hollow polygonal prism 21. A sleeve 22 is fixed to the inner top of the filter screen 9. A positioning ring 32 is fixed inside the sleeve 22. The reciprocating screw 37 passes through the positioning ring 32 and is connected to it. A piston block 31 is slidably connected inside the sleeve 22. The reciprocating screw 37 is rotatably connected to the piston block 31. Multiple flushing holes 25 opposite to the filter screen 9 are provided through the sleeve 22.
[0063] The working principle of brewing beverages: Add mulberry, dried plum pulp, red dates, goji berries, black goji berries, ginseng, eucommia bark, polygala root, and jujube seed, along with 60-80 parts water, to the cooking pot 2. Close the movable lid 4 to ensure a relatively sealed cooking environment. The heating wire 35 is energized and heats the water in the cooking pot 2, raising its temperature to cook the ingredients. During the cooking process, the active ingredients in the ingredients gradually dissolve into the water.
[0064] Motor 6 starts, driving drive shaft 12 to rotate. Since both drive shaft 12 and piston cylinder 7 are equipped with synchronous pulleys 14, and the two synchronous pulleys 14 are connected by synchronous belt 13, the rotation of drive shaft 12 will drive piston cylinder 7 to rotate synchronously. Furthermore, because mounting ring 19 is fixed to piston cylinder 7, mounting ring 19 will also rotate accordingly.
[0065] Multiple spiral blades 20 on the mounting ring 19 rotate with the mounting ring 19, conveying the raw materials and water at the bottom of the cooking tank 2 upwards. At this time, the moving cylinder 11 is located outside the spiral blades 20, and guided by the moving cylinder 11, the raw materials and water can be conveyed into the fixed cylinder 10.
[0066] The piston cylinder 7 rotates, causing the hollow polygonal prism 21 to rotate, which in turn causes the hollow plate 36 and multiple hollow crushing cones 24 to rotate. The rotation of the hollow crushing cones 24 causes the reciprocating screw 37 to rotate, and the reciprocating screw 37 rotates and moves up and down within the positioning ring 32, thereby causing the hollow polygonal prism 21 and the moving piston 30 to move up and down. In this way, the hollow plate 36 and multiple hollow crushing cones 24 rotate and move up and down. During the rotation, the hollow crushing cones 24 cooperate with the fixed crushing cone 26 to crush the raw materials, and the effective components dissolve faster, which can shorten the decoction time required to achieve the same medicinal effect.
[0067] The crushed raw material moves upward through the mesh plate 23 and is eventually filtered by the filter screen 9 and stored inside the filter screen 9.
[0068] The upward movement of the hollow polygonal prism 21 causes the connecting rod 18 to move upward, which in turn causes the moving cylinder 11 to move upward. The moving cylinder 11, no longer covering the outside of the spiral blade 20, experiences a significantly reduced upward force when the spiral blade 20 rotates compared to when it is inside the moving cylinder 11. Therefore, the force of conveying raw materials and water into the fixed cylinder 10 through the moving cylinder 11 is reduced. The raw material below the mesh plate 23 experiences a reduced upward force and falls due to gravity. During its rotation, the hollow crushing cone 24 cooperates with the fixed crushing cone 26 to crush the raw material. Finally, the reciprocating screw 37 moves to its maximum position and then back, thus thoroughly crushing the falling raw material.
[0069] When the reciprocating screw 37 has not moved to its maximum position, the rubber block 27 abuts against the mesh plate 23. The rubber block 27 moves relative to the mesh plate 23 and the force gradually increases. The rubber block 27 is partially inserted into the mesh hole on the mesh plate 23 and then moves out, which causes the mesh plate 23 to vibrate. This can clean the mesh plate 23 and prevent it from being blocked.
[0070] When the reciprocating screw 37 rotates and moves downward, it drives the moving piston 30 to move downward. The moving piston 30 moves downward and compresses the air in the piston cylinder 7. The air is transported to the hollow crushing cone 24 through the hollow polygonal prism 21, the hollow polygonal block 28, and the hollow plate 36, and finally ejected through the jet hole 33. The ejected air causes the liquid to flow, which can also clean the screen plate 23. At the same time, the air enters the liquid and generates bubbles. When the bubbles collide with the screen plate 23 and burst, they will also cause the surrounding liquid to surge, which is beneficial for preventing the screen plate 23 from clogging and cleaning.
[0071] In addition, the reciprocating screw 37 moves up and down, driving the piston block 31 to move up and down. When the piston block 31 moves downward, it can draw external liquid into the sleeve 22 through the flushing hole 25. When the piston block 31 moves upward, it can spray the liquid out through the flushing hole 25 and flush the filter screen 9. In this way, the filtered material on the filter screen 9 can be flushed to the outside, so that the crushed raw materials are not easily accumulated at the top of the filter screen 9 in the subsequent collection.
[0072] The reciprocating screw 37 moves down, causing the moving cylinder 11 to move down to the initial position. Repeating the above process, the raw materials and water (referred to as boiling liquid) can be conveyed upwards, so that the boiling liquid can be crushed and filtered again, realizing the recycling and crushing of the boiling liquid.
[0073] After boiling is complete, turn off the heating element 35 and open the movable cover 4. The motor 6 continues to work, which allows air to be supplied to the boiling liquid. The air exchanges heat with the boiling liquid and is then expelled. At the same time, the boiling liquid circulates, increasing the contact area between the boiling liquid and the outside, thus increasing the cooling efficiency of the boiling liquid.
[0074] During the cooling process of the boiling liquid, the boiling liquid is circulated upwards, broken down, and finally passes through the mesh plate 23. The broken boiling liquid can be completely filtered and collected through the filter screen 9.
[0075] A drain pipe and a control valve can be installed at the bottom of the boiling pot 2. Simply open the control valve to drain the filtered boiling liquid and obtain the beverage.
[0076] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A method for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage, characterized in that, Includes the following steps: S1. Raw material decoction: Add the following raw materials by weight: 15-30 parts mulberry, 15-30 parts dried plum pulp, 15-20 parts red dates, 10-20 parts goji berries, 15-20 parts black goji berries, 2-6 parts ginseng, 2-6 parts eucommia bark, 2-6 parts polygala root, 3-8 parts jujube seed, and 60-80 parts water to the preparation equipment for decoction. S2, Raw material crushing: The raw materials to be boiled are crushed in a circulating manner using the preparation equipment, and then boiled again; S3, Preparation: Cool the boiled ingredients from S2 to 20-25 degrees Celsius to obtain a crude beverage; S4, Filtration: The coarse beverage is filtered to obtain residue and filtrate. The filtrate is the target beverage.
2. The method for preparing a circadian rhythm-adapted anti-fatigue renal function concentrated essence beverage according to claim 1, characterized in that, The boiling and crushing processes in S1 and S2 are carried out together and take 1-1.5 hours. The soaking process in S3 needs to be combined with the crushing of raw materials in S2 and takes 1-1.5 hours.
3. A preparation apparatus for a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage, characterized in that, The apparatus for preparing a beverage using the preparation method as described in claim 2 includes a preparation device comprising a support (1) on which a cooking vessel (2) is mounted. A heating wire (35) is installed at the bottom inner wall of the cooking vessel (2), the heating wire (35) capable of heating water for cooking the raw materials. An mounting bracket (8) is installed on the inner wall of the cooking vessel (2), and a fixed cylinder (10) is mounted on the mounting bracket (8). A movable cylinder (11) capable of moving up and down is slidably connected to the outside of the fixed cylinder (10). The cooking vessel (2) contains a device capable of being positioned within the movable cylinder (11). 11) The mounting ring (19) inside the mounting ring (19) has multiple spiral blades (20) fixed on it. The spiral blades (20) rotate with the mounting ring (19) to convey the raw materials and water upward. The fixed cylinder (10) is provided with multiple hollow crushing cones (24) that can rotate and move up and down. The fixed cylinder (10) is fixed with a screen plate (23) located above the hollow crushing cones (24). The bottom of the screen plate (23) is fixed with a fixed crushing cone (26) that cooperates with the hollow crushing cones (24) to crush the raw materials. The upper end of the fixed cylinder (10) is equipped with a filter screen (9).
4. The preparation apparatus for a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 3, characterized in that, The upper end of the cooking pot (2) is fixed with a fixed cover plate (3), and a movable cover plate (4) is hinged to the fixed cover plate (3). A handle (5) is fixed to the movable cover plate (4).
5. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 3, characterized in that, It also includes a drive mechanism for rotating the mounting ring (19). The drive mechanism includes a motor (6) fixed to the bottom of the cooking pot (2) and heat-insulated. The output end of the motor (6) is fixed with a drive shaft (12). A rotating piston cylinder (7) is provided through the bottom of the cooking pot (2). Synchronous pulleys (14) are installed on both the piston cylinder (7) and the drive shaft (12). The two synchronous pulleys (14) are connected by a synchronous belt (13). The mounting ring (19) is fixed on the piston cylinder (7).
6. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 5, characterized in that, Multiple hollow crushing cones (24) are provided with jet holes (33). A movable piston (30) is slidably connected inside the piston cylinder (7). An air inlet pipe (15) is installed at the bottom of the piston cylinder (7). An air inlet check valve (16) is installed on the air inlet pipe (15). A hollow polygonal prism (21) is fixedly connected through the movable piston (30). An air outlet check valve (34) is installed on the hollow polygonal prism (21). A hollow polygonal block (28) is fixed on the hollow polygonal prism (21) and communicates with it. A hollow plate (36) is fixed on the hollow polygonal block (28) and communicates with it. The hollow crushing cone (24) is fixed on the hollow plate (36) and communicates with it.
7. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 3, characterized in that, Each of the hollow crushing cones (24) has a rubber block (27) fixed at its upper end, and the rubber block (27) can abut against the mesh plate (23).
8. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 6, characterized in that, The hollow polygonal prism (21) is fitted with a connecting rod (18) that is rotatably connected to it. Two strip grooves (17) are provided through the fixed cylinder (10). The connecting rod (18) passes through the strip grooves (17) and is fixedly connected to the movable cylinder (11).
9. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 8, characterized in that, The upper end of the hollow polygonal prism (21) is fixed with a reciprocating screw (37), the inner top of the filter screen (9) is fixed with a sleeve (22), a positioning ring (32) is fixed inside the sleeve (22), the reciprocating screw (37) passes through the positioning ring (32) and is connected to it, a piston block (31) is slidably connected inside the sleeve (22), the reciprocating screw (37) and the piston block (31) are rotatably connected, and multiple flushing holes (25) opposite to the filter screen (9) are provided through the sleeve (22).
10. The apparatus for preparing a circadian rhythm-adaptive anti-fatigue renal function concentrated essence beverage according to claim 9, characterized in that, A guide ring (29) is fixed on the piston cylinder (7), and the hollow polygonal prism (21) passes through the guide ring (29) and is slidably connected to it.