Refined tea production system

By designing a refined tea production system, using the limiting mechanism, rolling mechanism and pressing mechanism, the problem of insufficient rolling of tea is solved, and the full rolling and aroma improvement of tea is achieved.

CN120188831AInactive Publication Date: 2025-06-24ANHUI GUYU XIANG TEA SALES CO LTD
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Patent Information

Application Number
CN202510365363.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-06-24
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the tea production process, insufficient rolling leads to the unformed appearance and poor aroma of the tea, which affects the value and quality of the tea.

Method used

A refined tea production system is designed, including a base, rack, rolling plate, collection frame, limiting mechanism, rolling mechanism and pressing mechanism. The circular motion force is applied to the rolling mechanism by the limiting mechanism, and the rolling mechanism can fully rub the tea; the sealing tube and the storage box are used for the storage and uniform leakage of the tea; the pressing mechanism changes the air pressure through hot air, and gradually increases the rolling force.

Benefits of technology

It achieves full rolling of tea, improves the appearance and aroma quality of tea, makes the tea more firm, beautiful in shape, and has a rich and long aroma.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a refined tea production system, and relates to the technical field of tea production, the refined tea production system comprises a base, the upper surface of the base is fixedly connected with a rack, the top end of the rack is fixedly connected with a rolling disc, and an inner cavity of the base is movably connected with a collecting frame. According to the tea leaf rolling device, tea leaves leaked from a rolling disc can be collected, the rolling disc can be supported by arranging a base and a rack, a limiting mechanism is arranged on the outer surface of the rolling disc and comprises a connecting ring, the connecting ring is located over the rolling disc, and a first fixing plate is fixedly connected to the outer surface of the connecting ring; the outer surface of the first fixing plate is fixedly connected with a sealing pipe; the inner cavity of the connecting ring is movably connected with a rolling mechanism, and the rolling mechanism comprises a storage box, so that the rolling effect of gradually enhancing the rolling force on the tea leaves during tea leaf production is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of tea production, and specifically to a refined tea production system. Background Art

[0002] Tea production is a delicate and seasonal process. First is tea garden management. Tea farmers need to regularly prune tea trees to promote the growth of tea trees and the germination of new shoots. At the same time, pest and disease control work should be done well, and biological control and physical control methods should be used as much as possible to ensure the natural quality of tea. Picking is a key link in tea production. Different types of tea have different requirements for picking standards. For example, Longjing tea is usually picked from fresh leaves with one bud and one newly emerged leaf, while Oolong tea needs to be picked from fresh leaves with a slightly higher degree of maturity. The picking time is mostly in the early morning when the water content of the fresh leaves is appropriate and the quality is the best. After the fresh leaves are picked, they enter the processing stage. The processing technology varies greatly depending on the type of tea. Green tea production generally includes fixation, rolling, and drying. Fixation destroys the enzyme activity in the fresh leaves through high temperature to maintain the green color of the tea; rolling can shape the appearance of the tea; drying reduces the water content of the tea to facilitate storage. Black tea has processes such as withering, rolling, fermentation, and drying, and the fermentation process endows black tea with unique color, aroma, and taste.

[0003] In the tea production process, insufficient rolling will greatly reduce the value of tea. In terms of appearance, it is difficult for the tea to take shape, the tea strips are loose and not firm, losing the original beautiful shape. For example, Biluochun with its curly shape, if the rolling is not in place, it will lose its unique small and exquisite appearance, and the commodity recognition and ornamental value will drop sharply. In terms of aroma, the cell wall breaking of the tea is insufficient, and the aromatic substances contained cannot be fully released, greatly reducing the original rich and long-lasting tea aroma. For example, in Keemun black tea, due to insufficient rolling, the fruity and honey aromas are imprisoned, and it smells dull, making it difficult to arouse the interest of tea drinkers. Summary of the Invention

[0004] To achieve the above objectives, the present invention is realized through the following technical solutions: A refined tea production system includes a base. The upper surface of the base is fixedly connected with a frame. The top of the frame is fixedly connected with a kneading plate. The inner cavity of the base is movably connected with a collection box. By setting the collection box, the tea leaves leaking from the kneading plate can be collected. By setting the base and the frame, the kneading plate can be supported. A limiting mechanism is arranged on the outer surface of the kneading plate. The limiting mechanism includes a connecting ring. The connecting ring is located directly above the kneading plate. The outer surface of the connecting ring is fixedly connected with a first fixing plate. The outer surface of the first fixing plate is fixedly connected with a sealing tube. A kneading mechanism is movably connected in the inner cavity of the connecting ring. The kneading mechanism includes a storage box. The storage box is located inside the inner ring of the connecting ring. The outer surface of the storage box is fixedly connected with a fixing rod. The end of the fixing rod is fixedly connected with an air pipe. The air pipe is slidably connected in the inner cavity of the sealing tube. By setting the limiting mechanism, the kneading mechanism can be limited and a force for circular motion in the inner cavity of the kneading plate can be applied to the kneading mechanism, so that the kneading mechanism can knead the tea leaves in the inner cavity of the kneading plate back and forth. By setting the sealing tube, the kneading mechanism can be positioned. By setting the storage box, the tea leaves to be kneaded and dried can be stored. By setting the kneading mechanism, the tea leaves to be stored can be stored, and the tea leaves can be evenly flowed into the inner cavity of the kneading plate and kneaded in the inner cavity of the kneading plate, achieving the effect of fully kneading the tea leaves. A pressing mechanism is arranged directly above the storage box. The pressing mechanism includes a top cover. The top cover is movably connected to the upper surface of the storage box. By setting the pressing mechanism, the top opening of the storage box can be sealed, and after starting to work, hot air is blown into the inner cavity of the storage box. During the flow of the gas, the air pressure in the inner cavity of the sealing tube can be changed, and then the kneading mechanism gradually approaches the kneading plate, achieving a gradual increase in the kneading force on the tea leaves in the inner cavity of the kneading plate.

[0005] Preferably, an arc-shaped strip is fixedly connected to the bottom surface of the inner cavity of the rolling disc. The number of the arc-shaped strips is several, and several of the arc-shaped strips are evenly distributed. A sieve barrel is fixedly connected to the center of the bottom surface of the inner cavity of the rolling disc. A connecting ring is fixedly connected to the lower surface of the rolling disc. A first spring is fixedly connected to the lower surface of the connecting ring. The bottom end of the first spring is fixedly connected to a fixing ring. A blocking ring is fixedly connected to the inner ring of the fixing ring. The blocking ring is frictionally adapted to the inner wall of the sieve barrel. A handle is fixedly connected to the lower surface of the fixing ring. By providing the arc-shaped strip, when the rolling mechanism rotates, the tea leaves can be brought into contact with the arc-shaped strip and the rolling mechanism, so that the tea leaves can be rolled. By providing the sieve barrel, the tea leaves can be screened, so that only the tea leaves that have been rolled to a certain extent and whose leaves are fully curled can pass through the sieve barrel, thereby achieving the effect of fine processing of the tea leaves. By providing the first spring, the fixing ring can be supported. By providing the blocking ring, the bottom end of the sieve barrel can be blocked by the blocking ring without pulling, thereby preventing the tea leaves from leaking out. Only after the processing is completed, the handle is pulled, so that the blocking ring moves downward, and then the tea leaves can pass through the sieve barrel and fall into the inner cavity of the collection box.

[0006] Preferably, the limiting mechanism further includes a first fixing frame, which is fixedly connected to the outer surface of the rolling disc. A first motor is fixedly connected to the inner wall of the first fixing frame. The output end of the first motor is installed with a first rotating rod through a coupling. An eccentric wheel is fixedly connected to the top end of the first rotating rod. A first support rod is fixedly connected to the outer surface of the connecting ring. An extrusion ring is fixedly connected to the end of the first support rod. The extrusion ring is sleeved on the outer surface of the eccentric wheel. By providing the first motor, after the power is connected and the switch is turned on, the first rotating rod can drive the eccentric wheel to rotate, and then the extrusion ring can be extruded, so that the extrusion ring can have a tendency of circular motion.

[0007] Preferably, the limiting mechanism further includes a second support rod and a third support rod. The second support rod is fixedly connected to the outer surface of the connecting ring, and the third support rod is fixedly connected to the outer surface of the rolling disc. The end of the third support rod is fixedly connected with a second fixing frame. A limiting ring is fixedly connected to the inner wall of the second fixing frame. A first limiting rod is rotatably connected to the inner cavity of the limiting ring. A ball is rotatably connected to the outer surface of the first limiting rod. The ball is frictionally adapted to the limiting ring. The top of the first limiting rod is fixedly connected with a connecting arm. The end of the connecting arm is rotatably connected with a second limiting rod. The top of the second limiting rod is fixedly connected to the end of the second support rod. By providing the second fixing frame and the limiting ring, the first limiting rod and the ball can be limited, so that the first limiting rod and the ball can rotate stably in the inner cavity of the limiting ring. By providing the connecting arm, the first limiting rod and the second limiting rod can be connected together. Thus, while the second support rod and the third support rod are connected together, the connecting ring can perform a circular motion directly above the rolling disc.

[0008] Preferably, a second spring is fixedly connected to the bottom surface of the inner cavity of the sealing tube. The top of the second spring is in pressing fit with the bottom end of the air pipe. By providing the second spring, the air pipe can be supported. This second spring is a hard spring with very strong elasticity and can support heavy objects, enabling the air pipe to be supported in the inner cavity of the sealing tube and to support a certain height. A material leakage mechanism penetrates through the lower surface of the storage bin. The material leakage mechanism includes a material leakage pipe that penetrates through the storage bin. Holes are formed on the outer side surface of the material leakage pipe. A fourth support rod is fixedly connected to the inner wall of the material leakage pipe. The end of the fourth support rod is fixedly connected with a third limiting rod. A sliding sleeve is slidably connected to the outer surface of the third limiting rod. A third spring is sleeved on the outer surface of the third limiting rod. The bottom end of the third spring is fixedly connected to the upper surface of the sliding sleeve. A diversion ring is fixedly connected to the outer surface of the sliding sleeve. By providing the material leakage mechanism, the tea leaves in the inner cavity of the storage bin can be evenly leaked and fall into the inner cavity of the rolling disc. By providing the material leakage pipe and forming holes on its outer surface, the tea leaves can be guided so that the tea leaves can leak out through the holes on the outer side surface of the material leakage pipe and be evenly leaked into the inner cavity of the rolling disc. By providing the third spring, the diversion ring can be supported, enabling the diversion ring to be positioned on the outer surface of the third limiting rod. After the tea leaves accumulate, the diversion ring moves downward and the tea leaves leak out.

[0009] Preferably, a limiting ring is fixedly connected to the bottom surface of the inner cavity of the storage bin. A rotating plate is rotatably connected to the outer surface of the limiting ring. An arc-shaped plate is fixedly connected to the outer surface of the rotating plate. A limiting frame is fixedly connected to the end of the arc-shaped plate. A rotating column is rotatably connected to the inner cavity of the limiting frame. A stirring plate is fixedly connected to the outer surface of the rotating column. A hexagonal prism is fixedly connected to the upper surface of the rotating plate. A fixing ring is fixedly connected to the bottom end of the third limiting rod. A kneading ring is fixedly connected to the lower surface of the fixing ring. By providing the limiting ring, the rotating plate can be limited, so that the rotating plate can drive the arc-shaped plate to rotate stably. By providing the limiting frame, the rotating column can be limited, so that the rotating column can drive the stirring plate to rotate stably. By providing the hexagonal prism, it can cooperate with the pressing mechanism, so that when the pressing mechanism generates a rotational force, the hexagonal prism drives the rotating plate to rotate together.

[0010] Preferably, a sealing ring is fixedly connected to the lower surface of the top cover. The sealing ring is in pressing fit with the opening of the storage bin. A fifth support rod is fixedly connected to the upper surface of the top cover. A transfer box is fixedly connected to the top end of the fifth support rod. A sixth support rod is fixedly connected to the upper surface of the transfer box. A second motor is fixedly connected to the top end of the sixth support rod. The output end of the second motor is installed with a second rotating rod through a coupling. A sealing ring penetrates through the inner cavity of the transfer box. The second rotating rod penetrates through the transfer box, and the second rotating rod is in frictional fit with the sealing ring. A fan plate is fixedly connected to the outer surface of the second rotating rod located in the inner cavity of the transfer box. By providing the top cover and the sealing ring, the opening of the storage bin can be sealed to prevent the tea leaves in the inner cavity of the storage bin from splashing out during the stirring process. By providing the second motor, after the power is connected and the switch is turned on, the second rotating rod can drive the fan plate to rotate. By providing the sealing ring, the gap between the transfer box and the second rotating rod can be sealed to prevent air leakage. By providing the fan plate, when the second rotating rod rotates, air flow can be generated in the inner cavity of the transfer box.

[0011] Preferably, the lower surface of the transfer box is provided with first ventilation holes, the lower surface of the top cover is provided with second ventilation holes, the upper surface of the top cover is fixedly connected with a connecting frame, the top end of the connecting frame is fixedly connected to the lower surface of the transfer box, a heater penetrates through the outer surface of the connecting frame, a connecting pipe penetrates through the outer surface of the transfer box, and the end of the connecting pipe is frictionally and adaptively connected to the inner wall of the air pipe. By providing the first ventilation holes and the second ventilation holes, the air flow in the inner cavity of the transfer box can pass through the first ventilation holes and then enter the inner cavity of the storage box through the second ventilation holes. By providing the heater, after the power supply is connected and the switch is turned on, the air in the inner cavity of the connecting frame can be heated, so that the air entering the inner cavity of the storage box through the second ventilation holes is hot air. By providing the connecting pipe, when an air flow is generated in the inner cavity of the transfer box to generate suction, the connecting pipe can adsorb the air in the inner cavity of the sealing pipe, so that a negative pressure is generated in the inner cavities of the sealing pipe and the air pipe, and thus the air pipe moves downward in the inner cavity of the sealing pipe, achieving the adjustment of the distance between the rolling mechanism and the bottom surface of the inner cavity of the rolling disc.

[0012] Preferably, a rolling bearing is fixedly connected to the inner ring of the top cover, a hexagonal frame is fixedly connected to the inner ring of the rolling bearing, the upper surface of the hexagonal frame is fixedly connected to the bottom end of the second rotating rod, and the outer surfaces of the hexagonal frame and the hexagonal prism are frictionally and adaptively connected. By providing the rolling bearing, the hexagonal frame can be limited, so that the hexagonal frame can rotate stably at the inner ring of the top cover. By providing the hexagonal frame, it can cooperate with the hexagonal prism, so that when the hexagonal frame rotates, it can drive the hexagonal prism to rotate.

[0013] The present invention provides a refined tea production system. It has the following beneficial effects: First, in this refined tea production system, by providing a limiting mechanism, the rolling mechanism can be limited and a force for circular motion in the inner cavity of the rolling disc can be applied to the rolling mechanism, so that the rolling mechanism can knead the tea leaves in the inner cavity of the rolling disc back and forth. By providing a sealing pipe, the rolling mechanism can be clamped. By providing a storage box, the tea leaves to be rolled and dried can be stored.

[0014] Second, in this refined tea production system, by providing a rolling mechanism, the tea leaves to be stored can be stored, and the tea leaves can be evenly fed into the inner cavity of the rolling disc and kneaded, achieving the effect of fully kneading the tea leaves.

[0015] Third, in this refined tea production system, by providing a pressing mechanism, the top opening of the storage box can be sealed, and after starting to work, hot air is blown into the inner cavity of the storage box, and during the process of gas flow, the air pressure in the inner cavity of the sealing pipe can be changed, so that the rolling mechanism gradually approaches the rolling disc, achieving a gradual increase in the rolling force on the tea leaves in the inner cavity of the rolling disc.

[0016] IV. In this refined tea production system, by providing a material leakage mechanism, the tea leaves in the inner cavity of the storage box can be evenly leaked and fall into the inner cavity of the kneading disk. By providing a material leakage pipe and opening holes on the outer surface, the tea leaves can be guided so that the tea leaves can leak out through the holes on the outer side of the material leakage pipe and evenly leak into the inner cavity of the kneading disk. By providing a third spring, the diversion ring can be supported so that the diversion ring can be positioned on the outer surface of the third limiting rod. After the tea leaves accumulate, the diversion ring moves downward and the tea leaves leak out.

[0017] V. In this refined tea production system, by providing a first ventilation hole and a second ventilation hole, the air flow in the inner cavity of the transfer box can pass through the first ventilation hole and then enter the inner cavity of the storage box through the second ventilation hole. By providing a heater, after the power is connected and the switch is turned on, the air in the inner cavity of the connection frame can be heated, so that the air entering the inner cavity of the storage box through the second ventilation hole is hot air. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic external structure diagram of a refined tea production system according to the present invention; Figure 2 is a side view of the structure of a refined tea production system according to the present invention; Figure 3 is a schematic diagram of the structure of the kneading disk according to the present invention; Figure 4 is a schematic diagram of a partial sectional structure of a refined tea production system according to the present invention; Figure 5 is a schematic diagram of the structure of the limiting mechanism according to the present invention; Figure 6 is a schematic diagram of a partial structure of the limiting mechanism according to the present invention; Figure 7 is a schematic diagram of the structure of the kneading mechanism according to the present invention; Figure 8 is a sectional structure diagram of the kneading mechanism according to the present invention; Figure 9 is a schematic diagram of the structure of the material leakage mechanism according to the present invention; Figure 10 is a schematic diagram of the structure of the pressing mechanism according to the present invention; Figure 11 is a sectional structure diagram of the pressing mechanism according to the present invention.

[0019] In the figure: 1, base; 2, frame; 3, collection box; 4, rolling disk; 5, arc bar; 6, limiting mechanism; 7, rolling mechanism; 8, pressing mechanism; 9, sieve barrel; 10, connecting ring; 11, first spring; 12, fixing ring; 13, barrier ring; 14, handle; 61, first fixing frame; 62, first motor; 63, first rotating rod; 64, eccentric wheel; 65, connecting ring; 66, first support rod; 67, extrusion ring; 69, first fixing plate; 610, sealing pipe; 611, second spring; 612, second support rod; 613, third support rod; 614, second fixing frame; 615, limiting ring; 616, first limiting rod; 617, ball; 618, connecting arm; 619, second limiting rod; 71, storage box; 72, fixing rod; 73, air pipe; 74, leakage mechanism; 75, limiting ring; 76, rotating plate; 77, hexagonal prism; 78, arc plate; 79, limiting frame; 710, rotating column; 711, stirring plate; 712, fixing ring; 713, rolling ring; 741, leakage pipe; 742, fourth support rod; 743, third limiting rod; 744, sliding sleeve; 745, diversion ring; 746, third spring; 81, top cover; 82, fifth support rod; 83, transfer box; 84, connecting pipe; 85, sixth support rod; 86, second motor; 87, second rotating rod; 88, fan plate; 89, sealing ring; 810, first ventilation hole; 811, sealing ring; 812, rolling bearing; 813, hexagonal frame; 814, second ventilation hole; 815, connecting frame; 816, heater. Specific embodiments

[0020] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. The examples of the present invention are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.

[0021] The first embodiment is as Figures 1-6As shown in the figure, the present invention provides a technical solution: a refined tea production system, including a base 1. The upper surface of the base 1 is fixedly connected with a frame 2. The top end of the frame 2 is fixedly connected with a kneading disc 4. The inner cavity of the base 1 is movably connected with a collection box 3. By setting the collection box 3, the tea leaves leaking from the kneading disc 4 can be collected. By setting the base 1 and the frame 2, the kneading disc 4 can be supported. A limiting mechanism 6 is arranged on the outer surface of the kneading disc 4. The limiting mechanism 6 includes a connecting ring 65. The connecting ring 65 is located directly above the kneading disc 4. The outer surface of the connecting ring 65 is fixedly connected with a first fixing plate 69. The outer surface of the first fixing plate 69 is fixedly connected with a sealing pipe 610. A kneading mechanism 7 is movably connected in the inner cavity of the connecting ring 65. The kneading mechanism 7 includes a storage box 71. The storage box 71 is located inside the inner ring of the connecting ring 65. The outer surface of the storage box 71 is fixedly connected with a fixing rod 72. The end of the fixing rod 72 is fixedly connected with an air pipe 73. The air pipe 73 is slidably connected in the inner cavity of the sealing pipe 610. By setting the limiting mechanism 6, the kneading mechanism 7 can be limited and a force for circular motion in the inner cavity of the kneading disc 4 can be applied to the kneading mechanism 7, so that the kneading mechanism 7 can knead the tea leaves in the inner cavity of the kneading disc 4 back and forth. By setting the sealing pipe 610, the kneading mechanism 7 can be positioned. By setting the storage box 71, the tea leaves to be kneaded and dried can be stored. By setting the kneading mechanism 7, the tea leaves to be stored can be stored, and the tea leaves can be evenly fed into the inner cavity of the kneading disc 4 and kneaded in the inner cavity of the kneading disc 4, achieving the effect of fully kneading the tea leaves. A pressing mechanism 8 is arranged directly above the storage box 71. The pressing mechanism 8 includes a top cover 81. The top cover 81 is movably connected to the upper surface of the storage box 71. By setting the pressing mechanism 8, the top opening of the storage box 71 can be sealed, and after starting to work, hot air is blown into the inner cavity of the storage box 71. During the process of gas flow, the air pressure in the inner cavity of the sealing pipe 610 can be changed, and then the kneading mechanism 7 gradually approaches the kneading disc 4, achieving a gradual increase in the kneading force on the tea leaves in the inner cavity of the kneading disc 4.

[0022] The bottom surface of the inner cavity of the rolling disc 4 is fixedly connected with arc-shaped strips 5. The number of the arc-shaped strips 5 is several, and several of the arc-shaped strips 5 are evenly distributed. The center of the bottom surface of the inner cavity of the rolling disc 4 is fixedly connected with a sieve barrel 9. The lower surface of the rolling disc 4 is fixedly connected with a connecting ring 10. The lower surface of the connecting ring 10 is fixedly connected with a first spring 11. The bottom end of the first spring 11 is fixedly connected with a fixing ring 12. The inner ring of the fixing ring 12 is fixedly connected with a blocking ring 13. The blocking ring 13 is in frictional fit with the inner wall of the sieve barrel 9. The lower surface of the fixing ring 12 is fixedly connected with a handle 14. By arranging the arc-shaped strips 5, when the rolling mechanism 7 rotates, the tea leaves can be in contact with the arc-shaped strips 5 and the rolling mechanism 7, so that the tea leaves can be rolled. By arranging the sieve barrel 9, the tea leaves can be screened, and only the tea leaves that are rolled to a certain extent and the leaves are fully curled can pass through the sieve barrel 9, so as to achieve the fine processing effect of the tea leaves. By arranging the first spring 11, the fixing ring 12 can be supported. By arranging the blocking ring 13, without pulling, the blocking ring 13 can block the bottom end of the sieve barrel 9, so as to prevent the tea leaves from leaking. Only after the processing is completed, the handle 14 is pulled, so that the blocking ring 13 moves downward, and then the tea leaves can pass through the sieve barrel 9 and fall into the inner cavity of the collection box 3.

[0023] The limiting mechanism 6 further includes a first fixed frame 61, the first fixed frame 61 is fixedly connected to the outer surface of the kneading disc 4, a first motor 62 is fixedly connected to the inner wall of the first fixed frame 61, the output end of the first motor 62 is installed with a first rotating rod 63 through a coupling, the top end of the first rotating rod 63 is fixedly connected with an eccentric wheel 64, the outer surface of the connecting ring 65 is fixedly connected with a first support rod 66, the end of the first support rod 66 is fixedly connected with a pressing ring 67, the pressing ring 67 is sleeved on the outer surface of the eccentric wheel 64. By setting the first motor 62, after the power is connected and the switch is turned on, the first rotating rod 63 can drive the eccentric wheel 64 to rotate, and then the pressing ring 67 can be extruded, so that the pressing ring 67 can have a tendency of circular motion. The limiting mechanism 6 further includes a second support rod 612 and a third support rod 613, the second support rod 612 is fixedly connected to the outer surface of the connecting ring 65, the third support rod 613 is fixedly connected to the outer surface of the kneading disc 4, the end of the third support rod 613 is fixedly connected with a second fixed frame 614, a limiting ring 615 is fixedly connected to the inner wall of the second fixed frame 614, a first limiting rod 616 is rotatably connected to the inner cavity of the limiting ring 615, a ball 617 is rotatably connected to the outer surface of the first limiting rod 616, the ball 617 is frictionally adapted to the limiting ring 615, the top end of the first limiting rod 616 is fixedly connected with a connecting arm 618, the end of the connecting arm 618 is rotatably connected with a second limiting rod 619, and the top end of the second limiting rod 619 is fixedly connected to the end of the second support rod 612. By setting the second fixed frame 614 and the limiting ring 615, the first limiting rod 616 and the ball 617 can be limited, so that the first limiting rod 616 and the ball 617 can rotate stably in the inner cavity of the limiting ring 615. By setting the connecting arm 618, the first limiting rod 616 and the second limiting rod 619 can be connected together, so that while the second support rod 612 and the third support rod 613 are connected together, the connecting ring 65 can perform circular motion directly above the kneading disc 4. Second Embodiment, such as Figure 7 - Figure 9As shown, a second spring 611 is fixedly connected to the bottom surface of the inner cavity of the sealing tube 610. The top end of the second spring 611 is in pressing fit with the bottom end of the air pipe 73. By providing the second spring 611, the air pipe 73 can be supported. This second spring 611 is a hard spring with strong elasticity and can support heavy objects, enabling the air pipe 73 to be supported in the inner cavity of the sealing tube 610 and be able to support a certain height. The lower surface of the storage bin 71 is penetrated by a material leakage mechanism 74. The material leakage mechanism 74 includes a material leakage pipe 741. The material leakage pipe 741 penetrates the storage bin 71. Holes are provided on the outer side surface of the material leakage pipe 741. A fourth support rod 742 is fixedly connected to the inner wall of the material leakage pipe 741. A third limiting rod 743 is fixedly connected to the end of the fourth support rod 742. A sliding sleeve 744 is slidably connected to the outer surface of the third limiting rod 743. A third spring 746 is sleeved on the outer surface of the third limiting rod 743. The bottom end of the third spring 746 is fixedly connected to the upper surface of the sliding sleeve 744. A diversion ring 745 is fixedly connected to the outer surface of the sliding sleeve 744. By providing the material leakage mechanism 74, the tea leaves in the inner cavity of the storage bin 71 can be evenly leaked and fall into the inner cavity of the kneading plate 4. By providing the material leakage pipe 741 and opening holes on the outer surface, the tea leaves can be guided so that the tea leaves can leak out through the holes on the outer side surface of the material leakage pipe 741 and be evenly leaked into the inner cavity of the kneading plate 4. By providing the third spring 746, the diversion ring 745 can be supported, enabling the diversion ring 745 to be positioned on the outer surface of the third limiting rod 743. After the tea leaves accumulate, the diversion ring 745 moves downward and the tea leaves leak out.

[0024] A limiting ring 75 is fixedly connected to the bottom surface of the inner cavity of the storage bin 71. A rotating plate 76 is rotatably connected to the outer surface of the limiting ring 75. An arc-shaped plate 78 is fixedly connected to the outer surface of the rotating plate 76. A limiting frame 79 is fixedly connected to the end of the arc-shaped plate 78. A rotating column 710 is rotatably connected to the inner cavity of the limiting frame 79. A stirring plate 711 is fixedly connected to the outer surface of the rotating column 710. A hexagonal prism 77 is fixedly connected to the upper surface of the rotating plate 76. A fixing ring 712 is fixedly connected to the bottom end of the third limiting rod 743. A kneading ring 713 is fixedly connected to the lower surface of the fixing ring 712. By providing the limiting ring 75, the rotating plate 76 can be limited, enabling the rotating plate 76 to drive the arc-shaped plate 78 to rotate stably. By providing the limiting frame 79, the rotating column 710 can be limited, enabling the rotating column 710 to drive the stirring plate 711 to rotate stably. By providing the hexagonal prism 77, it can cooperate with the pressing mechanism 8. Thus, when the pressing mechanism 8 generates a rotational force, the hexagonal prism 77 drives the rotating plate 76 to rotate together.

[0025] The third embodiment, as Figure 10 -Figure 11As shown, a sealing ring 811 is fixedly connected to the lower surface of the top cover 81. The sealing ring 811 is in extrusion fit with the opening of the material storage box 71. The upper surface of the top cover 81 is fixedly connected with a fifth support rod 82. The top end of the fifth support rod 82 is fixedly connected with a transfer box 83. The upper surface of the transfer box 83 is fixedly connected with a sixth support rod 85. The top end of the sixth support rod 85 is fixedly connected with a second motor 86. The output end of the second motor 86 is installed with a second rotating rod 87 through a coupling. A sealing ring 89 penetrates through the inner cavity of the transfer box 83. The second rotating rod 87 penetrates through the transfer box 83, and the second rotating rod 87 is in frictional fit with the sealing ring 89. A fan plate 88 is fixedly connected to the outer surface of the second rotating rod 87 located in the inner cavity of the transfer box 83. By setting the top cover 81 and the sealing ring 811, the opening of the material storage box 71 can be sealed to prevent the tea leaves in the inner cavity of the material storage box 71 from splashing out during the stirring process. By setting the second motor 86, after the power is connected and the switch is turned on, the second rotating rod 87 can drive the fan plate 88 to rotate. By setting the sealing ring 89, the gap between the transfer box 83 and the second rotating rod 87 can be sealed to prevent air leakage. By setting the fan plate 88, when the second rotating rod 87 rotates, air flow can be generated in the inner cavity of the transfer box 83. A first ventilation hole 810 is opened on the lower surface of the transfer box 83, and a second ventilation hole 814 is opened on the lower surface of the top cover 81. A connecting frame 815 is fixedly connected to the upper surface of the top cover 81. The top end of the connecting frame 815 is fixedly connected to the lower surface of the transfer box 83. A heater 816 penetrates through the outer surface of the connecting frame 815. A connecting pipe 84 penetrates through the outer surface of the transfer box 83. The end of the connecting pipe 84 is in frictional fit with the inner wall of the air pipe 73. By setting the first ventilation hole 810 and the second ventilation hole 814, the air flow in the inner cavity of the transfer box 83 can pass through the first ventilation hole 810 and then enter the inner cavity of the material storage box 71 through the second ventilation hole 814. By setting the heater 816, after the power is connected and the switch is turned on, the air in the inner cavity of the connecting frame 815 can be heated, so that the air entering the inner cavity of the material storage box 71 through the second ventilation hole 814 is hot steam. By setting the connecting pipe 84, when a suction force is generated due to the air flow in the inner cavity of the transfer box 83, the connecting pipe 84 can adsorb the air in the inner cavity of the sealing pipe 610, so that a negative pressure is generated in the inner cavities of the sealing pipe 610 and the air pipe 73, and then the air pipe 73 moves downward in the inner cavity of the sealing pipe 610 to adjust the distance between the rolling mechanism 7 and the bottom surface of the inner cavity of the rolling disc 4. A rolling bearing 812 is fixedly connected to the inner ring of the top cover 81. A hexagonal frame 813 is fixedly connected to the inner ring of the rolling bearing 812. The upper surface of the hexagonal frame 813 is fixedly connected to the bottom end of the second rotating rod 87. The hexagonal frame 813 is in frictional fit with the outer surface of the hexagonal prism 77. By setting the rolling bearing 812,The hexagonal frame 813 can be limited in position, enabling the hexagonal frame 813 to rotate stably at the inner circle of the top cover 81. By providing the hexagonal frame 813, it can cooperate with the hexagonal prism 77, so that when the hexagonal frame 813 rotates, it can drive the hexagonal prism 77 to rotate.

[0026] Working principle: During use, the operator pours the tea leaves to be kneaded into the inner cavity of the storage bin 71. Then, the end of the connecting pipe 84 is inserted into the inner cavity of the air pipe 73. After that, the operator connects the heater 816 to the power supply and turns on the switch, so that the air in the inner cavity of the connecting frame 815 is heated. Then, the first motor 62 and the second motor 86 are connected to the power supply and the switches are turned on, so that the first rotating rod 63 and the second rotating rod 87 start to rotate respectively, and drive the fan plate 88 to rotate. During the rotation of the fan plate 88, an air flow is generated in the inner cavity of the transfer box 83, and the heated air in the inner cavity of the connecting frame 815 is blown, and passes through the second ventilation holes 814 into the inner cavity of the storage bin 71. At the same time, during the rotation of the hexagonal frame 813, the hexagonal prism 77 drives the rotating plate 76 and the arc plate 78 to rotate. When the arc plate 78 rotates in the inner cavity of the storage bin 71, it will cause the stirring plate 711 to stir the tea leaves in the inner cavity of the storage bin 71, and under the action of the hot air, the tea leaves are initially dried and heated. When the tea leaves are heated and dried until they become wilted, the tea leaves are no longer flat, and thus can enter the inner cavity of the leakage pipe 741. After a certain amount of accumulation, the diversion ring 745 moves downward and falls into the inner cavity of the kneading plate 4. During the rotation of the first motor 62 driving the first rotating rod 63, the eccentric wheel 64 will squeeze the extrusion ring 67, so that the connecting ring 65 drives the kneading mechanism 7 to produce a circular rotation effect in the inner cavity of the kneading plate 4, and the kneading ring 713 kneads the tea leaves in the inner cavity of the kneading plate 4. During the rotation of the fan plate 88, the air in the inner cavity of the air pipe 73 is gradually extracted, so that a negative pressure is generated in the inner cavities of the air pipe 73 and the sealing pipe 610, and thus the air pipe 73 moves downward in the inner cavity of the sealing pipe 610, achieving the effect of changing the distance between the kneading ring 713 and the bottom surface of the inner cavity of the kneading plate 4, and thus achieving the effect of gradually increasing the kneading force on the tea leaves. Then, the tea leaves will pass through the sieve barrel 9 and fall into the inner cavity of the collection box 3.

[0027] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A refined tea production system, comprising a base (1), the upper surface of the base (1) being fixedly connected to a frame (2), the top of the frame (2) being fixedly connected to a kneading plate (4), and the inner cavity of the base (1) being movably connected to a collecting frame (3), characterized in that: The outer surface of the kneading disk (4) is provided with a limiting mechanism (6), the limiting mechanism (6) comprising a connecting ring (65), the connecting ring (65) being located directly above the kneading disk (4), the outer surface of the connecting ring (65) being fixedly connected to a first fixing plate (69), the outer surface of the first fixing plate (69) being fixedly connected to a sealing tube (610); the inner cavity of the connecting ring (65) is movably connected to a kneading mechanism (7), the kneading mechanism (7) comprising a material storage box (71), The material storage box (71) is located at the inner circle of the connecting circle (65); a fixing rod (72) is fixedly connected to the outer surface of the material storage box (71); an air pipe (73) is fixedly connected to the end of the fixing rod (72); and the air pipe (73) is slidably connected to the inner cavity of the sealing tube (610); a pressing mechanism (8) is arranged directly above the material storage box (71); the pressing mechanism (8) comprises a top cover (81); and the top cover (81) is movably connected to the upper surface of the material storage box (71).

2. A refined tea production system according to claim 1, characterized in that: The bottom surface of the inner cavity of the kneading disk (4) is fixedly connected with an arc strip (5), the number of the arc strips (5) is several, and the arc strips (5) are evenly distributed. The axis of the bottom surface of the inner cavity of the kneading disk (4) is fixedly connected with a sieve barrel (9). The lower surface of the kneading disk (4) is fixedly connected with a connecting ring (10), and the lower surface of the connecting ring (10) is fixedly connected with a first spring (11). The bottom end of the first spring (11) is fixedly connected with a fixing ring (12), and the inner ring of the fixing ring (12) is fixedly connected with a blocking ring (13), and the blocking ring (13) is frictionally matched with the inner wall of the sieve barrel (9). The lower surface of the fixing ring (12) is fixedly connected with a handle (14).

3. A refined tea production system according to claim 1, characterized in that: The limiting mechanism (6) also includes a first fixed frame (61), the first fixed frame (61) is fixedly connected to the outer surface of the kneading disk (4), the first fixed frame (61) is fixedly connected to the inner wall of the first fixed frame (61), the output end of the first motor (62) is installed with a first rotating rod (63) through a coupling, the top of the first rotating rod (63) is fixedly connected to an eccentric wheel (64), the outer surface of the connecting ring (65) is fixedly connected to a first supporting rod (66), the end of the first supporting rod (66) is fixedly connected to an extrusion ring (67), and the extrusion ring (67) is sleeved on the outer surface of the eccentric wheel (64).

4. A refined tea production system according to claim 3, characterized in that: The limiting mechanism (6) further comprises a second support rod (612) and a third support rod (613), wherein the second support rod (612) is fixedly connected to the outer surface of the connecting ring (65), and the third support rod (613) is fixedly connected to the outer surface of the kneading disk (4); the end of the third support rod (613) is fixedly connected to a second fixing frame (614); the inner wall of the second fixing frame (614) is fixedly connected to a limiting ring (615); the inner cavity of the limiting ring (615) is rotatably connected to a first limiting rod (616); the outer surface of the first limiting rod (616) is rotatably connected to a ball (617); the ball (617) is frictionally matched with the limiting ring (615); the top end of the first limiting rod (616) is fixedly connected to a connecting arm (618); the end of the connecting arm (618) is rotatably connected to a second limiting rod (619); the top end of the second limiting rod (619) is fixedly connected to the end of the second support rod (612).

5. A refined tea production system according to claim 4, characterized in that: A second spring (611) is fixedly connected to the bottom surface of the inner cavity of the sealing tube (610), and the top end of the second spring (611) is pressed and adapted to the bottom end of the air pipe (73). A material leakage mechanism (74) is passed through the lower surface of the material storage box (71), and the material leakage mechanism (74) comprises a material leakage pipe (741). The material leakage pipe (741) passes through the material storage box (71), and a hole is formed on the outer side surface of the material leakage pipe (741). The inner wall of the material leakage pipe (741) is fixedly connected to the second spring (611). A fourth support rod (742) is connected, the end of the fourth support rod (742) is fixedly connected to a third limiting rod (743), the outer surface of the third limiting rod (743) is slidably connected to a sliding sleeve (744), the outer surface of the third limiting rod (743) is sleeved with a third spring (746), the bottom end of the third spring (746) is fixedly connected to the upper surface of the sliding sleeve (744), and the outer surface of the sliding sleeve (744) is fixedly connected to a guide ring (745).

6. A refined tea production system according to claim 5, characterized in that: The bottom surface of the inner cavity of the material storage box (71) is fixedly connected to a limit ring (75); the outer surface of the limit ring (75) is rotatably connected to a rotating plate (76); the outer surface of the rotating plate (76) is fixedly connected to an arc plate (78); the end of the arc plate (78) is fixedly connected to a limit frame (79); the inner cavity of the limit frame (79) is rotatably connected to a rotating column (710); the outer surface of the rotating column (710) is fixedly connected to a stirring plate (711); the upper surface of the rotating plate (76) is fixedly connected to a hexagonal prism (77); the bottom end of the third limit rod (743) is fixedly connected to a fixed ring (712); the lower surface of the fixed ring (712) is fixedly connected to a kneading ring (713).

7. A refined tea production system according to claim 6, characterized in that: A sealing ring (811) is fixedly connected to the lower surface of the top cover (81), and the sealing ring (811) is squeezed and matched with the opening of the storage box (71); a fifth support rod (82) is fixedly connected to the upper surface of the top cover (81), and the top end of the fifth support rod (82) is fixedly connected to the transfer box (83); a sixth support rod (85) is fixedly connected to the upper surface of the transfer box (83), and the top end of the sixth support rod (85) is fixedly connected to the second motor (86); a second rotating rod (87) is installed at the output end of the second motor (86) through a coupling; a sealing ring (89) passes through the inner cavity of the transfer box (83); the second rotating rod (87) passes through the transfer box (83), and the second rotating rod (87) and the sealing ring (89) are frictionally matched; and a fan plate (88) is fixedly connected to the outer surface of the second rotating rod (87) located in the inner cavity of the transfer box (83).

8. A refined tea production system according to claim 7, characterized in that: The lower surface of the transfer box (83) is provided with a first air vent (810), the lower surface of the top cover (81) is provided with a second air vent (814), the upper surface of the top cover (81) is fixedly connected with a connection frame (815), the top end of the connection frame (815) is fixedly connected to the lower surface of the transfer box (83), the outer surface of the connection frame (815) is penetrated by a heater (816), the outer surface of the transfer box (83) is penetrated by a connection pipe (84), and the end of the connection pipe (84) is frictionally fitted with the inner wall of the air pipe (73).

9. A refined tea production system according to claim 8, characterized in that: A rolling bearing (812) is fixedly connected to the inner ring of the top cover (81), a hexagonal frame (813) is fixedly connected to the inner ring of the rolling bearing (812), the upper surface of the hexagonal frame (813) is fixedly connected to the bottom end of the second rotating rod (87), and the hexagonal frame (813) is frictionally matched with the outer surface of the hexagonal column (77).