Water sprinkling and moisture regaining machine for processing Hubei tea No.10 Wood Taiwan tribute tea

Through the mechanized mixing and spraying system of Wujiatai Gong Tea processing water and moisture recovery machine for Echa No. 10, the problems of uneven moisture recovery and high breakage rate of tea are solved, and uniform moisture recovery and continuous production of tea are achieved, which reduces labor intensity.

CN223110970UActive Publication Date: 2025-07-18XUANEN COUNTY WUTAI CHANGCHEN TEA IND CO LTD
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Patent Information

Application Number
CN202421699630.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-07-18
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

During the traditional water reflux, tea leaves are unevenly refluxed, with a high breakage rate, and cannot achieve continuous operation, and relying on manual operations leads to high labor intensity.

Method used

A water and moisture recovery machine for Wujiatai Gong Tea No. 10 is designed, and a mechanized mixing mechanism and spraying system is used to stir the tea leaves through the spindle and spokes, and spray water mist on the tea leaves using the spray end to ensure uniform moisture recovery.

Benefits of technology

It achieves uniformity of tea reflux, reduces breakage rate, reduces manual intervention, improves production efficiency, and is suitable for continuous production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a watering and moisture regaining machine for processing Hubei tea No.10 Wood Taiwan tribute tea, which comprises a rack, a barrel is rotatably arranged on the rack, a stirring mechanism is arranged in the barrel, and a water spraying system for spraying tea leaves is arranged on the barrel; the stirring mechanism comprises a driving part, a main shaft and a plurality of spokes, the main shaft is rotationally arranged in the barrel, the driving part is connected with the main shaft and used for driving the main shaft to rotate, the water spraying system comprises a water storage device and a spraying end, and the water storage device is connected with the spraying end and used for injecting water into the spraying end; by means of the mechanical stirring mechanism and the spraying system, uniform stirring and spraying of tea can be achieved, it is ensured that each piece of tea can fully absorb water, and the moisture regaining uniformity is improved. The spokes are stably connected with the barrel body, and the barrel body rotates integrally, so that the mechanical damage of the tea leaves in the stirring process is reduced, and the breakage rate is reduced.
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Description

Technical Field

[0001] The present application relates to the technical field of tea production, and particularly relates to a water spraying and moisture returning machine for processing Echa No. 10 Wujia Tai tribute tea. Background Art

[0002] There are more than 400 kinds of organic chemical components such as polyphenols, alkaloids, proteins, amino acids, and vitamins in tea, which have health care functions such as reducing cholesterol and blood pressure and enhancing immunity. The traditional Wujia Tai tribute tea uses summer and autumn tea as raw materials, with uneven tenderness of the leaves and inconsistent tightness during the tea processing, thus affecting the quality of Wujia Tai tribute tea. It is necessary to spray water on the tea to return the moisture during the tea processing and then carry out refined processing to form a beautiful appearance.

[0003] Water spraying and moisture returning are generally carried out after the primary processed rough tea. At this time, the moisture content is relatively low, and the content of fluorine in the tea is relatively high. The uneven tenderness and different curling degrees in the tea are extremely likely to affect the tea quality.

[0004] The existing water spraying and moisture returning are all carried out by manually using a water ladle to sprinkle water on the tea and then manually stirring the tea. This method is prone to uneven moisture return of the tea and a high breakage rate of the tea during the stirring process. Manual operation cannot ensure uniform quality, and the workload is large, and continuous operation cannot be achieved.

[0005] In view of the above problems, a water spraying and moisture returning machine for processing Echa No. 10 Wujia Tai tribute tea is now designed. Content of the Utility Model

[0006] The embodiment of the present application provides a water spraying and moisture returning machine for processing Echa No. 10 Wujia Tai tribute tea to solve the problems in the related art that the existing water spraying and moisture returning are all carried out by manually using a water ladle to sprinkle water on the tea and then manually stirring the tea, resulting in uneven moisture return of the tea and a high breakage rate of the tea.

[0007] In a first aspect, a water spraying and moisture returning machine for processing Echa No. 10 Wujia Tai tribute tea is provided, including:

[0008] A frame, on which a cylinder is rotatably arranged. The cylinder is used for storing tea. A stirring mechanism is arranged inside the cylinder, and the stirring mechanism is used for stirring the tea. A water spraying system for spraying tea is arranged on the cylinder;

[0009] The stirring mechanism includes a driving member, a main shaft, and a plurality of spokes. The main shaft is rotatably arranged inside the cylinder. The driving member is connected to the main shaft and is used for driving the main shaft to rotate. The plurality of spokes are annularly arranged on the main shaft and are used for stirring the tea. The other end of the spoke is connected to the cylinder;

[0010] The water spraying system includes a water storage device and a spraying end. The water storage device is connected to the spraying end and is used to inject water into the spraying end. The spraying end is arranged on the cylinder body and is used to spray water on the tea leaves inside the cylinder body.

[0011] In some embodiments, a first bearing is rotatably arranged on the frame, and both ends of the main shaft extend to the outside of the cylinder body and are connected to the corresponding first bearings.

[0012] In some embodiments, the driving member includes a driving motor arranged on the frame, a driven shaft is rotatably arranged on the frame, a first belt pulley is arranged at one end of the output shaft of the driving motor and the driven shaft, a second belt pulley is arranged on the outer side of the main shaft and the other end of the driven shaft, and two adjacent first belt pulleys are connected by a first belt in a transmission manner, and two adjacent second belt pulleys are connected by a second belt in a transmission manner.

[0013] In some embodiments, two second bearings are rotatably arranged on the frame relatively, and the driven shaft is arranged between the two second bearings.

[0014] In some embodiments, the water storage device includes a water storage tank and a pump body. The water storage tank is supplied with water through an external pipeline, and the water inlet of the pump body is communicated with the water storage tank.

[0015] In some embodiments, the spraying end includes a conveying pipeline and an annular cylinder. The two ends of the conveying pipeline are respectively communicated with the water outlet of the pump body and the annular cylinder, and a valve is arranged on the conveying pipeline;

[0016] The annular cylinder is arranged on the frame, and the annular cylinder is arranged on the outer wall of the cylinder body and is attached to the outer wall of the cylinder body. A plurality of spray holes communicating with each other are formed between the annular cylinder and the cylinder body.

[0017] In some embodiments, a feeding hopper and a discharging hopper are oppositely arranged on the frame. One end of the cylinder body is open. The feeding hopper is located above the opening of the cylinder body, and the discharging hopper is located below the opening of the cylinder body.

[0018] In some embodiments, a plurality of guide vanes are arranged inside the cylinder body, and the plurality of guide vanes are located at one end of the cylinder body at the opening.

[0019] The embodiment of the present application provides a water spraying and moisture regain machine for processing Echa No. 10 Wujia Taigong tea. Through a mechanized stirring mechanism and a spraying system, the uniform stirring and spraying of tea leaves are realized, ensuring that each tea leaf can fully absorb moisture and improving the uniformity of moisture regain. The spokes are stably connected to the cylinder body. Through the overall rotation of the cylinder body, the mechanical damage of tea leaves during the stirring process is reduced, and the breakage rate is lowered.

[0020] The equipment structure is simple in operation and reasonable in design, which can effectively meet the requirements of the sprinkling and moisture regain work. The equipment has high working efficiency, can effectively reduce the labor intensity of workers, and meet the requirements of continuous production in tea processing. And continuous operation can be realized by assisting other tea processing equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0022] Figure 1 It is the front elevation sectional view provided by the embodiment of the present application;

[0023] Figure 2 It is the top view provided by the embodiment of the present application;

[0024] Figure 3 It is the right view provided by the embodiment of the present application.

[0025] In the figure: 1, frame; 2, cylinder; 3, stirring mechanism; 31, driving part; 311, driving motor; 312, driven shaft; 313, pulley one; 314, pulley two; 32, main shaft; 33, spoke; 4, water spraying system; 41, water storage tank; 42, spraying end; 421, conveying pipeline; 422, annular cylinder; 423, valve; 5, bearing one; 6, bearing two; 7, feed hopper; 8, discharge hopper; 9, guide vane plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some, rather than all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts fall within the scope of protection of the present application.

[0027] The embodiment of the present application provides a sprinkling and moisture regain machine for processing Echa No. 10 Wujia Taigong tea, which can solve the problems in the related art that the existing sprinkling and moisture regain are carried out by manually using a water ladle to sprinkle water on the tea leaves and then manually stirring the tea leaves, resulting in uneven moisture regain of the tea leaves and a high tea leaf breakage rate.

[0028] Please refer to Figures 1 - 3, A sprinkling and moisture-returning machine for processing Echa No. 10 Wujia Terrace Tribute Tea includes: a frame 1, on which a cylinder 2 is rotatably arranged. The cylinder 2 is used for storing tea leaves. A stirring mechanism 3 is arranged inside the cylinder 2, and the stirring mechanism 3 is used for stirring the tea leaves. A water spraying system 4 for spraying the tea leaves is arranged on the cylinder 2;

[0029] The stirring mechanism 3 includes a driving member 31, a main shaft 32 and a plurality of spokes 33. The main shaft 32 is rotatably arranged inside the cylinder 2. The driving member 31 is connected to the main shaft 32 and is used for driving the main shaft 32 to rotate. The plurality of spokes 33 are annularly arranged on the main shaft 32 and are used for stirring the tea leaves. The other ends of the spokes 33 are connected to the cylinder 2;

[0030] The water spraying system 4 includes a water storage device 41 and a spraying end 42. The water storage device 41 is connected to the spraying end 42 and is used for injecting water into the spraying end 42. The spraying end 42 is arranged on the cylinder 2 and is used for spraying water onto the tea leaves inside the cylinder 2.

[0031] First, load the semi-processed rough tea into the cylinder 2. Start the driving member 31 to drive the main shaft 32 to rotate. The spokes 33 on the main shaft 32 will rotate accordingly to stir the tea leaves in the cylinder 2. The other ends of the spokes 33 are connected to the cylinder 2, driving the cylinder 2 to rotate together.

[0032] At the same time, the water storage device 41 transports water to the spraying end 42. The spraying end 42 is arranged on the cylinder 2. As the cylinder 2 rotates, the water mist or water droplets sprayed by the spraying end evenly cover the tea leaves, realizing sprinkling and moisture return.

[0033] The stirring mechanism 3 and the water spraying system 4 work synchronously. During the stirring process, the tea leaves are constantly turned over, so that each tea leaf can fully contact the water mist or water droplets, ensuring uniform moisture return. At the same time, stirring also helps the moisture in the tea leaves to be more evenly distributed, improving the moisture return effect.

[0034] After stirring and spraying for a certain period of time, the tea leaves reach the ideal moisture return state. At this time, turn off the driving member 31 and the water spraying system 4, unload the moisture-returned tea leaves, and carry out subsequent refining processing.

[0035] Through the mechanized stirring mechanism and spraying system, uniform stirring and spraying of the tea leaves are realized, ensuring that each tea leaf can fully absorb moisture and improving the uniformity of moisture return. The connection between the spokes and the cylinder is stable. Through the overall rotation of the cylinder 2, the mechanical damage of the tea leaves during the stirring process is reduced, and the breakage rate is lowered.

[0036] Uniform moisture return helps the tea leaves to maintain a beautiful appearance and stable quality.

[0037] The entire sprinkling and moisture-returning process realizes automatic control, reduces manual intervention, improves production efficiency, and reduces labor intensity.

[0038] The equipment structure is simple to operate and reasonably designed, which can effectively meet the requirements of the sprinkling and moisture regain work. The equipment has high working efficiency, can effectively reduce the labor intensity of workers, and meet the needs of continuous production in tea processing. And continuous operation can be achieved by assisting other tea processing equipment.

[0039] Specifically, in this implementation scheme, a first bearing 5 is relatively rotatably arranged on the frame 1, and both ends of the main shaft 32 extend outside the cylinder body 2 and are connected to the corresponding first bearing 5.

[0040] As the core component of the stirring mechanism 3, the stability and rotational flexibility of the main shaft 32 are crucial for the stirring effect. By passing both ends of the main shaft 32 through the side wall of the cylinder body 2 and connecting them to the first bearing 5 on the frame 1, the stable support and smooth rotation of the main shaft are realized.

[0041] Specifically, in this implementation scheme, the driving member 31 includes a driving motor 311 arranged on the frame 1, a driven shaft 312 is rotatably arranged on the frame 1, a first belt pulley 313 is arranged at one end of the output shaft of the driving motor 311 and the driven shaft 312, and a second belt pulley 314 is arranged on the outer side of the main shaft 32 and the other end of the driven shaft 312. Adjacent two first belt pulleys 313 are connected by a first belt in a transmission manner, and adjacent two second belt pulleys 314 are connected by a second belt in a transmission manner.

[0042] As the power source of the entire transmission system, the driving motor 311 is fixed on the frame 1, and its output shaft is connected to the first belt pulley 313 at one end of the driven shaft 312 through the first belt pulley 313, forming the first-stage transmission.

[0043] Except for the end connected to the driving motor 311, a second belt pulley 314 is arranged at the other end of the driven shaft 312. This second belt pulley 314 is connected to the second belt pulley 314 on the outer side of the main shaft 32 through the second belt, realizing the power transmission and speed conversion.

[0044] When the driving motor 311 is started, the power is transmitted to the driven shaft 312 through the first belt pulley 313 and the first belt, and then the driven shaft 312 transmits the power to the main shaft 32 through the second belt pulley 314 and the second belt, causing the main shaft 32 to rotate in the cylinder body 2, thereby driving the spokes 33 to stir the tea leaves.

[0045] The belt drive has the functions of buffering and shock absorption, can reduce the impact and vibration during the transmission process. At the same time, the belt drive also has the advantages of simple structure, stable transmission, low cost, etc., and is suitable for the stirring mechanism 3 in this implementation scheme.

[0046] The driving motor 311 in this implementation scheme is a variable-frequency motor.

[0047] Both of the two first belt pulleys 313 and the two second belt pulleys 314 in this implementation scheme are designed with one large and one small.

[0048] Specifically, in this implementation scheme, two second bearings 6 are rotatably arranged on the frame 1, and the driven shaft 312 is arranged between the two second bearings 6.

[0049] In this implementation scheme, the connection method between the frame 1 and the driven shaft 312 is further optimized. Specifically, two second bearings 6 are rotatably arranged on the frame 1, and the driven shaft 312 is arranged between the two second bearings 6. Such a design brings the following working principles and beneficial effects:

[0050] The two second bearings 6 are respectively installed on both sides of the frame 1, forming a stable support for the driven shaft 312. This double-bearing support structure can ensure the stability and accuracy of the driven shaft 312 during rotation.

[0051] Furthermore, the water storage device 41 includes a water storage tank and a pump body. The water storage tank is supplied with water through an external pipeline, and the water inlet of the pump body is communicated with the water storage tank.

[0052] The water storage tank is a container for storing water used for spraying tea leaves. The water storage tank is supplied with water through an external pipeline. Water can be directly introduced into the water storage tank from an external water source such as tap water or well water through the pipeline.

[0053] The pump body is the power source of the water spraying system. It is responsible for pumping out and pressurizing the water in the water storage tank so that the water can be evenly sprayed onto the tea leaves through the spraying end 42. The water inlet of the pump body is communicated with the water storage tank to ensure that the pump body can smoothly extract water from the water storage tank. The water outlet is connected to the water spraying system to deliver the pressurized water to the spraying end 42.

[0054] When the pump body is started, the impeller or piston inside it starts to rotate or reciprocate, generating negative pressure to suck the water in the water storage tank into the pump body. Subsequently, through the pressurization of the pump body, the water is pushed out of the water outlet and enters the water spraying system.

[0055] Preferably, in this implementation scheme, the spraying end 42 includes a conveying pipeline 421 and an annular cylinder 422. The two ends of the conveying pipeline 421 are respectively communicated with the water outlet of the pump body and the annular cylinder 422, and a valve 423 is arranged on the conveying pipeline 421;

[0056] The annular cylinder 422 is arranged on the frame 1, and the annular cylinder 422 is arranged on the outer wall of the cylinder body 2 and fits with the outer wall of the cylinder body 2. A number of spray holes communicating with each other are provided between the annular cylinder 422 and the cylinder body 2. The inside of the annular cylinder 422 is hollow.

[0057] The conveying pipeline 421 serves as a channel connecting the water outlet of the pump body and the annular cylinder 422, and is responsible for conveying the pressurized water from the pump body into the annular cylinder 422 to provide a water source for the spraying operation. The two ends of the conveying pipeline 421 are respectively connected to the water outlet of the pump body and the water inlet of the annular cylinder 422 to ensure the smooth transmission of water flow.

[0058] A valve 423 is provided on the conveying pipeline 421 to control the on-off of the water flow and adjust the spraying intensity. By adjusting the opening degree of the valve, the spraying speed and flow rate can be controlled according to actual needs to meet the requirements of different tea varieties and processing.

[0059] The annular cylinder 422 is arranged on the frame 1 and closely fits on the outer wall of the cylinder body 2. This installation method helps to ensure the uniform distribution of the spraying water and reduce the water loss during the spraying process.

[0060] The inside of the annular cylinder 422 is hollow and is used to accommodate the water conveyed from the conveying pipeline 421. Its external shape matches the outer wall of the cylinder body 2 to ensure a tight fit between the two.

[0061] A number of spray holes communicating with each other are provided between the annular cylinder 422 and the cylinder body 2. These spray holes are evenly distributed on the side wall of the annular cylinder 422. When the annular cylinder 422 is filled with water, the water will be evenly sprayed onto the tea leaves in the cylinder body 2 through these spray holes. The number, size and distribution position of the spray holes can be adjusted according to the spraying effect and tea varieties.

[0062] When the pump body starts to work, the pressurized water enters the annular cylinder 422 through the conveying pipeline 421. As the water level in the annular cylinder 422 continuously rises, the water begins to spray out from the spray holes and is evenly sprayed onto the tea leaves in the cylinder body 2. By adjusting the opening degree of the valve 423, the spraying speed and flow rate can be controlled to meet the requirements of different tea varieties and processing.

[0063] It should be noted that in this implementation scheme, the cylinder body 2 is composed of two welded cylinders. One cylinder is in the shape of a regular octagon, and the other cylinder is in the shape of a cone. The inner wall of the annular cylinder 422 is in the shape of a cone and fits with the cylinder body 2.

[0064] In this implementation scheme, the design of the cylinder body 2 adopts a structure of two welded cylinders. This special design not only enhances the structural strength of the cylinder body but also optimizes the spraying effect.

[0065] The cylinder body 2 is composed of two welded cylinders, and these two cylinders are different in shape. One cylinder is in the shape of a regular octagon. This design may be to increase the stability and rigidity of the cylinder body to prevent deformation during stirring or spraying. The other cylinder is in the shape of a cone. This design helps the smooth flow and discharge of tea leaves in the cylinder body and also facilitates the uniform distribution of spraying water.

[0066] The inner wall of the annular cylinder 422 is conical and fits against the conical part of the cylinder body 2. This design enables the annular cylinder 422 to fit tightly on the cylinder body 2, reducing water loss and spraying blind spots during the spraying process. At the same time, the conical inner wall also helps to evenly distribute the sprayed water, improving the spraying effect.

[0067] Fitting effect: The fitting effect between the annular cylinder 422 and the cylinder body 2 is crucial for the spraying effect. Through precise machining and installation, it can be ensured that the gap between the annular cylinder 422 and the cylinder body 2 is as small as possible, thereby achieving full coverage and even distribution of the sprayed water.

[0068] In this embodiment, a feed hopper 7 and a discharge hopper 8 are oppositely arranged on the frame 1. One end of the cylinder body 2 is open. The feed hopper 7 is located above the opening of the cylinder body 2, and the discharge hopper 8 is located below the opening of the cylinder body 2.

[0069] The frame 1 is the support structure of the entire sprinkling and softening machine, which firmly fixes components such as the cylinder body 2 and related spraying systems and transmission systems. The design of the frame 1 needs to consider stability and load-bearing capacity to ensure the safety and reliability of the sprinkling and softening machine during operation.

[0070] The feed hopper 7 is oppositely arranged on the frame 1 and is located above the opening of the cylinder body 2, facilitating the pouring of the tea to be processed from the feed hopper 7 into the cylinder body 2 to achieve the feeding process of the tea.

[0071] The main function of the feed hopper 7 is to serve as a passage for the tea to enter the cylinder body 2. It usually has a relatively large opening and inclined side walls to facilitate the smooth sliding of the tea and reduce the risk of blockage.

[0072] The structure of the feed hopper 7 can be designed as needed, but it should be ensured that it fits tightly with the opening of the cylinder body 2 to prevent the tea from spilling or scattering during the feeding process.

[0073] The main function of the discharge hopper 8 is to collect and discharge the tea from the cylinder body 2. It usually has a relatively large capacity and an inclined bottom to facilitate the smooth discharge and collection of the tea.

[0074] One end of the cylinder body 2 is designed to be open to connect with the feed hopper 7 and the discharge hopper 8. This open design not only facilitates the entry and exit of the tea but also enables the full utilization of the space inside the cylinder body 2, improving the processing efficiency of the sprinkling and softening machine.

[0075] Preferably, a number of guide vanes 9 are arranged inside the cylinder body 2 in this embodiment, and the number of guide vanes 9 is located at one end of the opening of the cylinder body 2.

[0076] The number of guide vane plates 9 is 4. The four guide vane plates 9 are arranged in pairs opposite to each other, and the guide vane angle is 20 - 25°.

[0077] When tea leaves enter the cylinder 2 from the feed hopper 7, the specific angle and arrangement of the guide vane plates 9 can guide the tea leaves to slide down along a certain trajectory into the interior of the cylinder 2, which helps to reduce the accumulation and blockage of tea leaves during the feeding process and ensures smooth feeding.

[0078] After the spraying and moisture regain process is completed, the tea leaves need to be discharged from the cylinder 2. At this time, the guide vane plates 9 also play a guiding role, helping the tea leaves to flow along a specific path to the discharge hopper 8, thereby improving the discharging efficiency and reducing the residue of tea leaves in the cylinder 2.

[0079] In this implementation plan, the number of guide vane plates 9 is 4, and these four guide vane plates are arranged in pairs opposite to each other. This arrangement not only ensures the effective guidance of the guide vane plates 9 on the tea leaves but also makes the internal structure of the cylinder 2 relatively simple, reducing unnecessary components and weight.

[0080] The guide vane angle of the guide vane plate 9, that is, the angle between the guide vane plate and the axis of the cylinder, is designed to be 20 - 25°. This angle range is optimized to ensure the smooth sliding of the tea leaves while reducing the friction and wear of the tea leaves on the guide vane plate and extending the service life of the guide vane plate.

[0081] When the tea leaves enter the cylinder 2 through the feed hopper 7, they will first come into contact with the guide vane plates 9. Due to the inclination angle and arrangement of the guide vane plates 9, the tea leaves will slide down along the guide vane plates into the interior of the cylinder 2. During the spraying and moisture regain process, the tea leaves rotate and tumble continuously in the cylinder 2 to ensure uniform spraying. After the spraying is completed, the tea leaves flow towards the discharge hopper 8 under the guidance of the guide vane plates 9 and are finally discharged from the sprinkling and moisture regain machine.

[0082] In the description of this application, it should be noted that the orientation or positional relationship indicated by terms such as "upper" and "lower" is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to this application. Unless otherwise clearly specified and defined, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0083] It should be noted that in this application, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.

[0084] The above are only specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but rather will conform to the widest scope consistent with the principles and novel features claimed herein.

Claims

1. A sprinkling and moisture-returning machine for processing Wujia Taigong tea of Echa No. 10, characterized in that, include: A frame (1), wherein a cylinder (2) is rotatably arranged on the frame (1), wherein the cylinder (2) is used to store tea leaves, wherein a stirring mechanism (3) is arranged inside the cylinder (2), wherein the stirring mechanism (3) is used to stir the tea leaves, and wherein a water spraying system (4) is arranged on the cylinder (2) for spraying the tea leaves; The stirring mechanism (3) comprises a driving member (31), a main shaft (32) and a plurality of spokes (33); the main shaft (32) is rotatably arranged inside the cylinder (2); the driving member (31) is connected to the main shaft (32) and is used to drive the main shaft (32) to rotate; the plurality of spokes (33) are arranged in a ring shape on the main shaft (32) and are used to stir the tea leaves; the other end of the spoke (33) is connected to the cylinder (2); The water spraying system (4) comprises a water reservoir (41) and a spraying end (42); the water reservoir (41) is connected to the spraying end (42) and is used to inject water into the spraying end (42); the spraying end (42) is arranged on the cylinder (2) and is used to spray tea leaves inside the cylinder (2). The spray end (42) comprises a delivery pipe (421) and an annular cylinder (422); two ends of the delivery pipe (421) are respectively connected to the water outlet of the pump body and the annular cylinder (422); and a valve (423) is provided on the delivery pipe (421); The annular cylinder (422) is arranged on the frame (1), and the annular cylinder (422) is arranged on the outer wall of the cylinder body (2) and fits the outer wall of the cylinder body (2), and a plurality of spray holes that are interconnected are provided between the annular cylinder (422) and the cylinder body (2).

2. A water sprinkling and moisture-reinforcing machine for processing Echa No. 10 Wujiatai tribute tea as claimed in claim 1, characterized in that: A bearing 1 (5) is provided on the frame (1) for relative rotation, and both ends of the main shaft (32) extend to the outside of the cylinder (2) and are connected to the corresponding bearing 1 (5).

3. A water sprinkling and moisture-reinforcing machine for processing Echa No. 10 Wujiatai tribute tea as claimed in claim 1, characterized in that: The driving member (31) comprises a driving motor (311) arranged on a frame (1), and a driven shaft (312) rotatably arranged on the frame (1); a first pulley (313) is arranged on the output shaft of the driving motor (311) and one end of the driven shaft (312); a second pulley (314) is arranged on the outer side of the main shaft (32) and the other end of the driven shaft (312); two adjacent first pulleys (313) are connected by a first belt transmission, and two adjacent second pulleys (314) are connected by a second belt transmission.

4. A water sprinkling and moisture-reinforcing machine for processing Echa No. 10 Wujiatai tribute tea as claimed in claim 3, characterized in that: Two bearings (6) are arranged on the frame (1) for relative rotation, and the driven shaft (312) is arranged between the two bearings (6).

5. A water sprinkling and moisture-reinforcing machine for processing Echa No. 10 Wujiatai tribute tea as claimed in claim 1, characterized in that: The water storage device (41) comprises a water storage tank and a pump body. The water storage tank is supplied with water through an external pipeline, and the water inlet of the pump body is connected to the water storage tank.

6. The sprinkling and moisture-returning machine for processing Echa No. 10 Wujia Tai tribute tea according to claim 1, characterized in that: A feed hopper (7) and a discharge hopper (8) are oppositely arranged on the frame (1). One end of the cylinder body (2) is open. The feed hopper (7) is located above the opening of the cylinder body (2), and the discharge hopper (8) is located below the opening of the cylinder body (2).

7. The sprinkling and moisture-returning machine for processing Echa No. 10 Wujia Tai tribute tea according to claim 6, characterized in that: A plurality of guide vane plates (9) are arranged inside the cylinder body (2), and the plurality of guide vane plates (9) are located at one end of the cylinder body (2) at the opening.