Tea polyphenol concentration equipment

By designing the vibration and turn structure of the tea polyphenol concentration equipment, the problem of low detection efficiency and waste of tea quality is solved, and steam is used for fertilization and wetting treatment, which achieves efficient concentration and energy-saving and environmental protection of tea.

CN223192663UActive Publication Date: 2025-08-05JIANGSU DEHE BIOTECH
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Patent Information

Application Number
CN202422186087.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-06
Publication Date
2025-08-05
Estimated Expiration
2034-09-06

AI Technical Summary

Technical Problem

In the existing tea polyphenol concentration device, tea with poor tea quality enters the subsequent process, resulting in a decrease in the concentration quality of tea polyphenols. Operators use time-consuming and labor-intensive testing and poor quality to directly discard tea leaves, causing waste, and steam during tea concentration treatment is directly discharged, causing waste of energy.

Method used

A tea polyphenol concentration equipment was designed to automatically turn the tea leaves through the vibration motor driving detection box vibration and auxiliary motor turning structure to separate the tea leaves with poor quality, and put them in the collection box to crush them and then fertilize them; use the heating plate to raise the temperature for fertilization, and use steam to wet the tea leaves to avoid direct discharge of steam.

Benefits of technology

It improves the efficiency of tea detection, reduces tea waste and energy waste, and realizes the reuse and efficient concentration of tea.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of tea polyphenol concentration, and discloses tea polyphenol concentration equipment which comprises an equipment bottom plate, a shock absorber is fixedly connected to the upper surface of the equipment bottom plate, and a fixed shaft seat, a fixed motor, a detection box and an auxiliary motor are fixedly connected to the upper surface of the shock absorber. The tea leaf detection device is reasonable in structure, tea leaves are put into the detection box, the vibration motor drives the vibration module to enable the detection box to vibrate continuously, the overturning structure is rotated through the auxiliary motor, the tea leaves can be overturned, an operator can detect the tea leaves conveniently, the detected tea leaves with poor quality are put into the collection box, and the detection efficiency is improved. A stirring structure is rotated by connecting a motor, a collecting box is closed through a cover plate, a plug is inserted into an air inlet hole, a butt joint valve is in butt joint with an external water supply device, the external water supply device discharges water into the collecting box through the butt joint valve, the temperature in the collecting box is increased through a heating plate, and the tea leaves in the collecting box are subjected to water-logged compost treatment.
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Description

Technical Field

[0001] The utility model relates to the technical field of tea polyphenol concentration, and specifically relates to a tea polyphenol concentration device. Background Art

[0002] Tea polyphenols are the general term for polyphenolic substances in tea, including flavanols, anthocyanins, flavonoids, flavonols, phenolic acids, etc. The content of tea polyphenols in tea is generally 15% - 20%. Tea polyphenols have a strong antioxidant effect. Their antioxidant ability is 4 - 6 times that of synthetic antioxidants BHT and BHA, 6 - 7 times that of VE, and 5 - 10 times that of VC, and the dosage is small: 0.01% - 0.03% can play a role, and there is no potential toxic and side effects of synthetic substances; and tea elements have a protective effect on pigments and vitamins in food, enabling food to maintain its original color and nutritional level for a long time, effectively preventing the corruption of food and edible oils, and eliminating peculiar smells.

[0003] In a tea polyphenol concentration extraction device disclosed in the Chinese utility model patent application publication specification CN208193727U, although the device drives the push rod to move left and right through a cylinder, and the push rod then drives the connecting rod and the push block to move left and right to stir the passing liquid, and pushes the filter residue to the side wall of the filter tank to avoid the filter residue blocking the mesh holes of the filter screen and accelerating the filtering efficiency, with the advantages of thorough filtering, good concentration effect, and high product quality, the existing device does not solve the problems that poor-quality tea leaves enter the subsequent processes during tea processing, resulting in a reduction in the quality of tea polyphenol concentration, and that when operators detect tea leaves, due to the large number of tea leaves, they need to manually turn the lower tea leaves to the upper part, leading to a reduction in the tea leaf detection efficiency, and that directly discarding poor-quality tea leaves easily causes tea leaf waste, and that the steam generated during tea leaf concentration treatment is directly discharged, easily causing energy waste. Therefore, we propose a new device to solve the above problems. Content of the Utility Model

[0004] (I) Technical Problems to be Solved

[0005] Aiming at the deficiencies of the prior art, the utility model provides a tea polyphenol concentration device, which solves the problems that it is time-consuming and laborious for operators to detect the quality of tea leaves and that directly discarding poor-quality tea leaves causes waste.

[0006] (II) Technical Solutions

[0007] To achieve the above objectives, the present utility model is realized through the following technical solutions: A tea polyphenol concentration device, including a device bottom plate, the upper surface of the device bottom plate is fixedly connected with shock absorbers, the upper surface of the shock absorbers is fixedly connected with fixed shaft seats, the inside of the fixed shaft seats is fixedly connected with a fixed motor, one end of the fixed motor is inserted into a detection box, the inside of the detection box is fixedly connected with an auxiliary motor, one end of the auxiliary motor is inserted into a turning structure, the inside of the detection box is fixedly connected with a vibration motor, one end of the vibration motor is inserted into a vibration module, the lower surface of the detection box is fixedly connected with a shock absorption structure, the inside of the detection box is clamped with a filter plate, the upper surface of the device bottom plate is inserted with a collection box, the inside of the collection box is inserted with a connection seat, the inside of the connection seat is fixedly connected with a connection motor, one end of the connection motor is inserted into a crushing structure, the upper surface of the collection box is inserted with a cover plate, the upper surface of the cover plate is inserted with a plug, and a heating plate is fixedly connected inside the collection box.

[0008] Optionally, through holes are provided inside the detection box, and the detection box is rotationally connected to the turning structure through the through holes.

[0009] Optionally, a driving hole is provided on the lower surface of the connection seat, and the connection seat is rotationally connected to the crushing structure through the connection hole.

[0010] Optionally, a docking valve is provided on one side of the collection box, and the heating plate is located on the inner bottom wall of the collection box.

[0011] Optionally, an air inlet hole is provided on the other side of the collection box, and the size of the air inlet hole is adapted to the size of the plug.

[0012] Optionally, a concentration box is fixedly connected to the upper surface of the device bottom plate, a heating structure is fixedly connected inside the concentration box, a top plate is inserted into the upper surface of the concentration box, through holes are provided inside the top plate, and the number of the through holes is several.

[0013] Optionally, a placement box is inserted into the upper surface of the top plate, a fan is inserted into the upper surface of the placement box, a pipeline is fixedly connected to the upper surface of the fan, one end of the pipeline is inserted with a docking head, and a card slot is provided on the upper surface of the top plate, and the size of the card slot is adapted to the size of the docking head.

[0014] Optionally, the number of the shock absorbers is two, and the number of the shock absorption structures is two.

[0015] In summary, the technical effects and advantages of the present utility model:

[0016] 1. The structure of the utility model is reasonable. By putting tea leaves into the inside of the detection box and driving the vibration module through the vibration motor, the detection box is continuously vibrated, so that the tea leaves inside it are continuously vibrated, which is convenient for the operator to detect the tea leaves. At the same time, by rotating the turning structure through the auxiliary motor, the tea leaves can be turned over, which is convenient for the operator to detect the tea leaves. The shock absorber and the shock absorption structure can absorb the vibration generated by the detection box, solving the problems that poor-quality tea leaves in the processing enter the subsequent process, resulting in a reduction in the quality of tea polyphenol concentration, and that when the operator detects the tea leaves, due to the large number of tea leaves, it is necessary to manually turn the lower tea leaves to the upper part, resulting in a reduction in the tea leaf detection efficiency. It achieves the effects that the operator can manually separate the poor-quality tea leaves from other tea leaves during the detection of tea leaves, and the device can automatically turn and vibrate the tea leaves, so as to turn the detected tea leaves to the bottom and turn the undetected tea leaves to the upper part, greatly enhancing the efficiency of the operator in detecting tea leaves.

[0017] 2. In the utility model, by putting the poor-quality tea leaves after detection into the inside of the collection box and rotating the crushing structure through the connecting motor, the poor-quality tea leaves can be crushed. After crushing the tea leaves inside, the collection box is closed through the cover plate, and then the plug is inserted into the air inlet hole and docked with the external water supply device through the docking valve, so that the external water supply device discharges water into the collection box through the docking valve. Then, the temperature inside the collection box is increased through the heating plate, so that the tea leaves inside can be composted, solving the problem that directly discarding poor-quality tea leaves easily causes waste of tea leaves. It achieves the effect that by putting the poor-quality tea leaves into the collection box, adding water to it and increasing its temperature, it is convenient for it to be composted and reused, greatly reducing the waste of poor-quality tea leaves. By docking the docking head with the air inlet, steam can be discharged into the collection box to heat up and moisten the tea leaves inside. By docking the docking head with the driving port, the tea leaves inside the detection box can be moistened, avoiding the problem that the surface of the tea leaves after drying is too dry and not convenient for subsequent processing. It solves the problem that the steam generated during the tea concentration process is directly discharged, which easily causes energy waste, and achieves the effect that the steam generated during the tea concentration process can be used for the composting treatment of poor-quality tea leaves and the moistening treatment of the detected tea leaves, greatly reducing energy waste. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic structural diagram of the utility model;

[0019] Figure 2 is a schematic structural diagram of the shock absorber of the utility model;

[0020] Figure 3 is a schematic structural diagram of the collection box of the utility model;

[0021] Figure 4 Schematic diagram of the planar structure of the connecting seat of the present utility model;

[0022] Figure 5 Exploded schematic diagram of the structure of the concentration tank of the present utility model.

[0023] In the figure: 1, equipment bottom plate; 2, shock absorber; 3, fixed shaft seat; 4, fixed motor; 5, detection box; 6, auxiliary motor; 7, turning structure; 8, vibration motor; 9, vibration module; 10, shock absorption structure; 11, filter plate; 12, collection box; 13, connecting seat; 14, connecting motor; 15, crushing structure; 16, cover plate; 17, plug; 18, heating plate; 19, concentration tank; 20, heating structure; 21, top plate; 22, placement box; 23, fan; 24, pipeline; 25, docking head. Specific implementation manners

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0025] Embodiment: Refer to Figures 1 - 5 A tea polyphenol concentration device as shown, including an equipment bottom plate 1, a shock absorber 2 is fixedly connected to the upper surface of the equipment bottom plate 1, a fixed shaft seat 3 is fixedly connected to the upper surface of the shock absorber 2, a fixed motor 4 is fixedly connected inside the fixed shaft seat 3, a detection box 5 is inserted at one end of the fixed motor 4, an auxiliary motor 6 is fixedly connected inside the detection box 5, a turning structure 7 is inserted at one end of the auxiliary motor 6, a vibration motor 8 is fixedly connected inside the detection box 5, a vibration module 9 is inserted at one end of the vibration motor 8, a shock absorption structure 10 is fixedly connected to the lower surface of the detection box 5, a filter plate 11 is clamped inside the detection box 5, a collection box 12 is inserted on the upper surface of the equipment bottom plate 1, a connecting seat 13 is inserted inside the collection box 12, a connecting motor 14 is fixedly connected inside the connecting seat 13, a crushing structure 15 is inserted at one end of the connecting motor 14, a cover plate 16 is inserted on the upper surface of the collection box 12, a plug 17 is inserted on the upper surface of the cover plate 16, and a heating plate 18 is fixedly connected inside the collection box 12.

[0026] As a preferred implementation manner in this embodiment, as shown in Figures 1 - 4As shown in the figure, a shock absorber 2 is fixedly connected to the upper surface of the equipment bottom plate 1. The number of shock absorbers 2 is two, and the number of shock absorption structures 10 is two. The upper surface of the shock absorber 2 is fixedly connected to a fixed shaft seat 3. A fixed motor 4 is fixedly connected inside the fixed shaft seat 3. One end of the fixed motor 4 is inserted into a detection box 5. A driving hole is opened on the lower surface of the detection box 5. An auxiliary motor 6 is fixedly connected inside the detection box 5. One end of the auxiliary motor 6 is inserted into a turning structure 7. A hole is opened inside the detection box 5. The detection box 5 is rotationally connected to the turning structure 7 through the hole. A vibration motor 8 is fixedly connected inside the detection box 5. One end of the vibration motor 8 is inserted into a vibration module 9. A shock absorption structure 10 is fixedly connected to the lower surface of the detection box 5. A filter plate 11 is snap-connected inside the detection box 5. A collection box 12 is inserted into the upper surface of the equipment bottom plate 1. A connection seat 13 is inserted into the collection box 12. A connection motor 14 is fixedly connected inside the connection seat 13. One end of the connection motor 14 is inserted into a crushing structure 15. A driving hole is opened on the lower surface of the connection seat 13. The connection seat 13 is rotationally connected to the crushing structure 15 through the connection hole. A cover plate 16 is inserted into the upper surface of the collection box 12. A plug 17 is inserted into the upper surface of the cover plate 16. An air inlet hole is opened on the other side of the collection box 12. The size of the air inlet hole is adapted to the size of the plug 17. A heating plate 18 is fixedly connected inside the collection box 12. A docking valve is opened on one side of the collection box 12. The heating plate 18 is located on the inner bottom wall of the collection box 12. During use, by putting tea leaves into the detection box 5, the vibration motor 8 drives the vibration module 9 to make the detection box 5 vibrate continuously, so that the tea leaves inside it vibrate continuously, which is convenient for the operator to detect the tea leaves. At the same time, by rotating the turning structure 7 with the auxiliary motor 6, the tea leaves can be turned over, which is convenient for the operator to detect the tea leaves. The shock absorber 2 and the shock absorption structure 10 can reduce the vibration generated by the detection box 5, solving the problems that poor-quality tea leaves enter the subsequent processes during tea processing, resulting in a reduction in the quality of tea polyphenol concentration, and that when the operator detects the tea leaves, due to the large number of tea leaves, it is necessary to manually turn the lower tea leaves to the upper part, resulting in a reduction in the tea leaf detection efficiency. It achieves the effects that the operator can manually separate the poor-quality tea leaves from other tea leaves during tea leaf detection, and the device can automatically turn and vibrate the tea leaves, so that the detected tea leaves are turned to the bottom and the undetected tea leaves are turned to the upper part, greatly enhancing the efficiency of the operator in detecting tea leaves. By putting the detected poor-quality tea leaves into the collection box 12, the connection motor 14 rotates the crushing structure 15 to crush the poor-quality tea leaves. After crushing the tea leaves inside, the collection box 12 is closed through the cover plate 16, and then the plug 17 is inserted into the air inlet hole. The docking valve is connected to an external water supply device, so that the external water supply device discharges water into the collection box 12 through the docking valve, and then the temperature inside the collection box 12 is increased by the heating plate 18, so that the tea leaves inside can be composted, solving the problem that directly discarding poor-quality tea leaves easily causes tea leaf waste.It achieves the effect that poor-quality tea leaves can be put into the collection box 12, water can be added to its interior, and its temperature can be raised to facilitate composting treatment so that it can be reused, greatly reducing the waste of poor-quality tea leaves.

[0027] As Figure 5 shown, in this embodiment, a concentration box 19 is fixedly connected to the upper surface of the equipment bottom plate 1. A heating structure 20 is fixedly connected to the interior of the concentration box 19. A top plate 21 is inserted into the upper surface of the concentration box 19. Through holes are formed in the interior of the top plate 21. The number of through holes is several. A placement box 22 is inserted into the upper surface of the top plate 21. A blower 23 is inserted into the upper surface of the placement box 22. A pipeline 24 is fixedly connected to the upper surface of the blower 23. One end of the pipeline 24 is inserted with a docking head 25. A card slot is formed in the upper surface of the top plate 21. The size of the card slot is adapted to the size of the docking head 25. During use, by rotating the detection box 5 through the fixed motor 4, the detected tea leaves inside the detection box 5 are rotated and poured into the interior of the concentration box 19. After being put in, the concentration box 19 is closed through the top plate 21. Then, the temperature inside is raised through the heating structure 20 so that the moisture of the tea leaves inside is continuously evaporated. The steam generated after evaporation is continuously discharged by the blower 23, so that the tea leaves can be concentrated. By docking the docking head 25 with the air inlet, the steam can be discharged into the interior of the collection box 12 to heat up and moisten the tea leaves inside. By docking the docking head 25 with the driving port, the tea leaves inside the detection box 5 can be moistened, avoiding the problem that the surface of the tea leaves after drying is too dry and not convenient for subsequent treatment. It solves the problem that the steam generated during the concentration treatment of tea leaves is directly discharged, which is easy to cause energy waste, and achieves the effect that the steam generated during the concentration treatment of tea leaves can be used for the composting treatment of poor-quality tea leaves and the moistening treatment of the detected tea leaves, greatly reducing energy waste.

[0028] The working principle of this utility model:

[0029] During use, by putting tea leaves into the inside of the detection box 5, driving the vibration module 9 by the vibration motor 8, the detection box 5 is continuously vibrated so that the tea leaves inside it are continuously vibrated, facilitating the operator to detect the tea leaves. At the same time, by rotating the turning structure 7 by the auxiliary motor 6, the tea leaves can be turned over, facilitating the operator to detect the tea leaves. The vibration generated by the detection box 5 can be dampened by the shock absorbers 2 and the damping structure 10, solving the problems that poor-quality tea leaves in the processing enter the subsequent processes, resulting in a reduction in the quality of tea polyphenol concentration, and that when the operator detects the tea leaves, due to the large number of tea leaves, it is necessary to manually turn the lower tea leaves to the upper part, leading to a reduction in the tea leaf detection efficiency. It achieves the effects that the operator can manually separate the poor-quality tea leaves from other tea leaves during the detection of tea leaves, and the device can automatically turn and vibrate the tea leaves, turning the detected tea leaves to the bottom and turning the undetected tea leaves to the upper part, greatly enhancing the efficiency of the operator in detecting tea leaves. By putting the poor-quality tea leaves after detection into the inside of the collection box 12, and rotating the crushing structure 15 by the connecting motor 14, the poor-quality tea leaves can be crushed. After crushing the tea leaves inside, the collection box 12 is closed by the cover plate 16, and then the plug 17 is inserted into the air inlet hole. By docking with an external water supply device through the docking valve, the external water supply device discharges water into the inside of the collection box 12 through the docking valve, and then the temperature inside the collection box 12 is increased by the heating plate 18, enabling the tea leaves inside to be composted, solving the problem that directly discarding poor-quality tea leaves easily causes tea leaf waste. It achieves the effect that by putting the poor-quality tea leaves into the inside of the collection box 12, adding water to it and increasing its temperature to facilitate composting treatment, making it reusable, greatly reducing the waste of poor-quality tea leaves. By rotating the detection box 5 by the fixed motor 4, the detected tea leaves inside the detection box 5 are poured into the inside of the concentration box 19. After putting them in, the concentration box 19 is closed by the top plate 21, and then the temperature inside it is increased by the heating structure 20, so that the moisture of the tea leaves inside is continuously evaporated. The steam generated after evaporation is continuously discharged by the fan 23, thereby enabling the tea leaves to be concentrated. By docking the adapter 25 with the air inlet, the steam can be discharged into the inside of the collection box 12 to perform heating and humidifying operations on the tea leaves inside it. By docking the adapter 25 with the driving port, the tea leaves inside the detection box 5 can be humidified, avoiding the problem that the surface of the tea leaves after drying is too dry and not convenient for subsequent processing. It solves the problem that the steam generated during the concentration process of tea leaves is directly discharged, easily causing energy waste. It achieves the effect that the steam generated during the concentration process of tea leaves can be used for composting treatment of poor-quality tea leaves and humidifying treatment of the detected tea leaves, greatly reducing energy waste.

[0030] All the electrical components mentioned in this article are electrically connected to an external main controller and 220V mains power supply, and the main controller can be a conventional known device such as a computer that plays a control role.

[0031] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A tea polyphenols concentration device, comprising a device bottom plate (1), characterized in that: The upper surface of the equipment bottom plate (1) is fixedly connected to a shock absorber (2), the upper surface of the shock absorber (2) is fixedly connected to a fixed shaft seat (3), the interior of the fixed shaft seat (3) is fixedly connected to a fixed motor (4), one end of the fixed motor (4) is plugged into a detection box (5), the interior of the detection box (5) is fixedly connected to an auxiliary motor (6), one end of the auxiliary motor (6) is plugged into a flip structure (7), the interior of the detection box (5) is fixedly connected to a vibration motor (8), one end of the vibration motor (8) is plugged into a vibration module (9), and the lower surface of the detection box (5) is fixedly connected to a vibration module (9). A shock-absorbing structure (10) is fixedly connected, a filter plate (11) is clamped inside the detection box (5), a collection box (12) is plugged into the upper surface of the equipment bottom plate (1), a connecting seat (13) is plugged into the interior of the collection box (12), a connecting motor (14) is fixedly connected to the interior of the connecting seat (13), a crushing structure (15) is plugged into one end of the connecting motor (14), a cover plate (16) is plugged into the upper surface of the collection box (12), a plug (17) is plugged into the upper surface of the cover plate (16), and a heating plate (18) is fixedly connected to the interior of the collection box (12).

2. The tea polyphenols concentration device according to claim 1, characterized in that: A hole is provided inside the detection box (5), and the detection box (5) is rotatably connected to the flip structure (7) through the hole.

3. The tea polyphenols concentration device according to claim 1, characterized in that: A driving hole is provided on the lower surface of the connecting seat (13), and the connecting seat (13) is rotatably connected to the crushing structure (15) through the connecting hole.

4. The tea polyphenols concentration device according to claim 1, characterized in that: A docking valve is provided on one side of the collecting box (12), and the heating plate (18) is located on the inner bottom wall of the collecting box (12).

5. The tea polyphenols concentration device according to claim 1, characterized in that: An air inlet hole is provided on the other side of the collecting box (12), and the size of the air inlet hole is adapted to the size of the plug (17).

6. The tea polyphenols concentration device according to claim 1, characterized in that: A concentration box (19) is fixedly connected to the upper surface of the bottom plate (1) of the equipment, a heating structure (20) is fixedly connected to the interior of the concentration box (19), a top plate (21) is plugged into the upper surface of the concentration box (19), and a through hole is opened inside the top plate (21), and the number of the through holes is several.

7. The tea polyphenols concentration device according to claim 6, characterized in that: A placement box (22) is plugged into the upper surface of the top plate (21), a fan (23) is plugged into the upper surface of the placement box (22), a pipe (24) is fixedly connected to the upper surface of the fan (23), one end of the pipe (24) is plugged into a docking joint (25), and a slot is provided on the upper surface of the top plate (21), the size of the slot being adapted to the size of the docking joint (25).

8. The tea polyphenols concentration device according to claim 1, characterized in that: The number of the shock absorbers (2) is two, and the number of the shock absorbing structures (10) is two.

Citation Information

Patent Citations

  • Concentrated extraction element of tea polyphenol

    CN208193727U