Moisture regaining device for green tea processing

By using a motor-driven rectangular shell and an electric telescopic rod-controlled moving plate in a green tea processing device, combined with atomizing nozzles for water spraying and a blower, the problems of low tea rehydration efficiency and stacking are solved, achieving uniform tea rehydration and efficient tea output.

CN223600761UActive Publication Date: 2025-11-28HUBEI SANXIA SHIJIA AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202423240970.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-11-28
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In existing technologies, tea leaves are rehydrated by shaking a support plate. However, the tea leaves do not move sufficiently, resulting in low rehydration efficiency and easy stacking, making it impossible to rehydrate completely.

Method used

The device uses a motor-driven rotation within a rectangular shell, an electric telescopic rod to control the moving plate and sealing plate, and a misting nozzle to spray water, enabling the tea leaves to repeatedly fall from a high position to a low position, ensuring full contact between the tea leaves and the water mist, and preventing accumulation through a fixed pipe and a blower.

Benefits of technology

It improves the efficiency of tea rehydration, avoids piling up, ensures uniform rehydration of tea, and increases the tea yield.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223600761U_ABST
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Abstract

The utility model provides a moisture regaining device for green tea processing, which comprises a base, a rectangular shell is arranged above the base, and a motor for driving the rectangular shell to rotate is arranged on the base; two fixed plates which are symmetrical front and back are fixed in the rectangular shell, two movable plates which are symmetrical up and down penetrate through the fixed plates, and electric telescopic rods which are fixed on the rectangular shell and are used for driving the movable plates to move are arranged on the movable plates; hollow shells are fixed to the faces, deviating from each other, of the two fixing plates, the hollow shells communicate with atomizing nozzles penetrating through the fixing plates, and a conveying pipe used for conveying water into the hollow shells is arranged on one side of the rectangular shell. A discharging opening located between the two fixing plates is formed in the bottom of the rectangular shell, and a sealing plate is arranged in the discharging opening. When the tea leaf moisture regaining device is used for performing moisture regaining operation on tea leaves, the tea leaves can fall from high to low repeatedly, so that the tea leaves are in better contact with water mist, the tea leaves are prevented from being stacked together, and the moisture regaining efficiency of the tea leaves is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a moisture regaining device technical field especially relates to a green tea processing is with moisture regaining device. BACKGROUND

[0002] Green tea is adopted new leaf or bud of tea tree, is made after a series of processing steps tea leaf, retains the natural material of fresh leaf, and green tea loses a large amount of water after the fixation process, therefore, still need to carry out moisture regaining processing to tea leaf, make tea leaf return soft, reduce the broken rate of tea leaf when carrying out rolling processing, improve the tea yield,

[0003] Nowadays, when tea is processed, most of the tea is placed on the bearing plate, and the humidity of the tea is realized by the shaking of the bearing plate and the mist sprayed by the spray head. However, the shaking of the bearing plate cannot make the tea move too much, resulting in low moisture regaining efficiency of the tea, and even some tea is stacked together, causing the tea to be unable to be completely moisture regained. UTILITY MODEL CONTENTS

[0004] The utility model discloses a kind of moisture regaining devices for green tea processing, solve the shaking of bearing plate, tea cannot be moved too much, resulting in low moisture regaining efficiency of tea, even some tea is stacked together, cause the problem that tea cannot be completely moisture regained.

[0005] To solve the above technical problems, the utility model specifically adopts the following technical solutions:

[0006] A kind of moisture regaining device for green tea processing, including base, the top of base is equipped with rectangular shell, motor for driving rectangular shell rotation is equipped on base;Two fixed plates that are front and back symmetry are fixed in rectangular shell, two mobile plates that are up and down symmetry are penetrated in fixed plate, mobile plate is equipped with fixed in rectangular shell and is used to drive the electric telescopic rod of mobile plate movement;The opposite side of two fixed plates is fixed with hollow shell, and the atomizing nozzle that is penetrated in fixed plate is communicated on hollow shell, the side of rectangular shell is equipped with the conveying pipe for conveying water to hollow shell;Discharge port is set in the bottom of rectangular shell between two fixed plates, sealing plate is equipped in discharge port, and automatic telescopic rod for driving sealing plate lifting is fixed on rectangular shell;Rectangular shell is fixed with battery.

[0007] Compared with prior art, the utility model has the following beneficial effects:

[0008] The motor is started to rotate the rectangular shell, and after the discharge port on the rectangular shell is located at the top of the rectangular shell, the automatic telescopic rod is started to drive the sealing plate to move upward to open the discharge port, then the tea leaves are put into the rectangular shell, and then the sealing plate is restored; meanwhile, water is supplied into the hollow shell through the conveying pipe, and then the water is sprayed out in the form of water mist after being atomized by the atomizing nozzle, so that the tea leaves between the two fixed plates in the rectangular shell are moisturized; when the discharge port of the rectangular shell is located at the top of the rectangular shell, the tea leaves fall downward to the side of the rectangular shell away from the discharge port, then the electric telescopic rod away from the discharge port on the two fixed plates is started to make the two movable plates close to each other, so that the top of the tea leaves is blocked, then the motor drives the rectangular shell to rotate, so that the discharge port on the rectangular shell is located at the bottom of the rectangular shell, then the two movable plates away from the discharge port are restored, and the tea leaves fall downward; after the tea leaves are completely dropped, the electric telescopic rod close to the discharge port on the two fixed plates is started to make the two movable plates close to the discharge port close to each other, so that the tea leaves are continuously blocked, the motor is continuously started to rotate the rectangular shell, so that the discharge port is located at the top of the rectangular shell, and then the two movable plates are restored, so that the tea leaves continue to fall downward; the above operation is repeated subsequently, the moisturizing operation of the tea leaves is completed, the discharge port is located at the bottom of the rectangular shell, then the automatic telescopic rod is started to drive the sealing plate to move downward, and the discharging of the tea leaves is completed; when the tea leaves are moisturized, the tea leaves can repeatedly fall from high to low, the tea leaves are better contacted with the water mist, the tea leaves are prevented from being accumulated together, and the moisturizing efficiency of the tea leaves is improved. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is a structure schematic view of the front view of the utility model;

[0010] Figure 2 It is a structure schematic view of the side view of the rectangular shell of the utility model;

[0011] Figure 3 It is Figure 1 It is an enlarged structure schematic view of A of the utility model;

[0012] Figure 4 It is a structure schematic view of the side view of the fixed ring of the utility model.

[0013] In the drawing: 1, base; 2, rectangular shell; 21, circular shell; 22, vertical plate; 23, storage battery; 24, connecting block; 25, fixed ring; 26, support rod; 3, fixed plate; 31, movable plate; 32, electric telescopic rod; 33, bearing plate; 34, stop block; 4, hollow shell; 41, atomizing nozzle; 42, connecting pipe; 43, water conveying pipe; 44, conveying pipe; 5, fixed pipe; 51, hair dryer; 52, connecting shell; 6, sealing plate; 61, automatic telescopic rod; 62, connecting rod; 63, positioning rod; 7, collecting frame; 8, motor; 81, support plate. DETAILED DESCRIPTION

[0014] The specific content of the utility model will be described in detail below in combination with the drawings and examples.

[0015] As Figure 1 , Figure 2 and Figure 3 indicated, the utility model provides a kind of green tea processing with dampening device, including base 1, the top of base 1 is equipped with rectangular shell 2, motor 8 for driving rectangular shell 2 rotation is equipped on base 1;Two fixed plates 3 that are front and back symmetry are fixed in rectangular shell 2, two moving plates 31 that are up and down symmetry are penetrated in fixed plate 3, and moving plate 31 is equipped with electric telescopic rod 32 for being fixed on rectangular shell 2 and being used to drive moving plate 31 movement;Two fixed plate 3 are fixed with hollow shell 4 on the side away from each other, hollow shell 4 is communicated with atomizing nozzle 41 penetrating fixed plate 3, and one side of rectangular shell 2 is equipped with delivery pipe 44 for water to hollow shell 4 into;Discharge port between two fixed plate 3 is set in the bottom of rectangular shell 2, sealing plate 6 is equipped in discharge port, and automatic telescopic rod 61 for driving sealing plate 6 lifting is fixed on rectangular shell 2;Rectangular shell 2 is fixed with battery 23.

[0016] As Figure 1 and Figure 2 indicated, one end of the rectangular shell 2 is fixed with a circular shell 21, a vertical plate 22 is sleeved on the circular shell 21 and connected rotatably, and the vertical plate 22 is fixed on the base 1; a support plate 81 connected with the base 1 is fixed on the main body of the motor 8, and the rotating shaft of the motor 8 is connected with the circular shell 21. After starting the motor 8, the rotating shaft of the motor 8 can drive the rectangular shell 2 to rotate through the circular shell 21, and the vertical plate 22 can support the circular shell 21 on the base 1.

[0017] As Figure 2 indicated, a group of fixed tubes 5 is fixed in the rectangular shell 2 between the two fixed plates 3, and the fixed tubes 5 are respectively located between the two moving plates 31 on the fixed plate 3. When the rectangular shell 2 rotates and the tea leaves fall from high to low, the fixed tubes 5 can buffer and interfere with the tea leaves, and the tea leaves are scattered to facilitate the tea leaves to fully contact with the water mist discharged by the atomizing nozzle 41.

[0018] As Figure 1 and Figure 2As shown, the surface of the fixed tube 5 is provided with perforations, the end of the rectangular shell 2 away from the motor 8 is fixed with a connecting shell 52, the end of the fixed tube 5 away from the motor 8 penetrates the rectangular shell 2 and communicates with the connecting shell 52, and the rectangular shell 2 is fixed with a blower 51 which communicates with the connecting shell 52. When the tea leaves are humidified in the rectangular shell 2, the blower 51 can be turned on to make the air enter the fixed tube 5 through the connecting shell 52, and then the air is discharged through the perforations on the fixed tube 5. When the tea leaves fall from high to low, the tea leaves can be blown to avoid accumulation and adhesion to the fixed tube 5. The sealing plate 6 is provided with an air exhaust hole (not shown in the figure) to facilitate the circulation of air in the rectangular shell 2. The blower 51 can also not be started when the tea leaves are humidified, and then started after the humidification is completed to blow the tea leaves adhered to the fixed tube 5.

[0019] As shown in Figure 1 and Figure 2 The hollow shell 4 is communicated with a water conveying pipe 43 which penetrates the rectangular shell 2, the connecting shell 52 is fixed with a connecting pipe 42 which communicates with the water conveying pipe 43, and one end of the conveying pipe 44 penetrates the connecting pipe 42 and is rotatably connected with the connecting pipe 42. The conveying pipe 44 is connected with a water source through an external water pump, and after the water is pumped into the conveying pipe 44 by starting the external water pump, the conveying pipe 44 can convey the water into the water conveying pipe 43 through the connecting pipe 42, and then the water enters the hollow shell 4 and is discharged through the atomizing nozzle 41.

[0020] As shown in Figure 1 and Figure 4 The end of the rectangular shell 2 away from the motor 8 is sleeved with a fixedly connected connecting block 24, the outer ring surface of the connecting block 24 is sleeved with a rotatably connected fixed ring 25, and the bottom of the fixed ring 25 is fixed with a support rod 26 which is connected with the base 1. When the rectangular shell 2 rotates, the connecting block 24 can be rotated, the fixed ring 25 cooperates with the support rod 26 to support the connecting block 24, and further increases the stability of the rectangular shell 2.

[0021] As shown in Figure 2 and Figure 3As shown, the top of the sealing plate 6 is provided with a collecting frame 7, the top of the sealing plate 6 is fixed with a positioning rod 63, the bottom of the collecting frame 7 is provided with a positioning hole matched with the positioning rod 63; the opposite faces of the two fixed plates 3 are respectively fixed with a stopper 34 in contact with the top of the collecting frame 7. When the sealing plate 6 is located at the bottom of the rectangular shell 2, the automatic telescopic rod 61 is started to move the sealing plate 6 downward, the worker can place the tea leaves in the collecting frame 7, and then place the collecting frame 7 on the top of the sealing plate 6, so that the positioning rod 63 is inserted into the positioning hole at the bottom of the collecting frame 7 to complete the positioning of the collecting frame 7; then the automatic telescopic rod 61 is started to restore the sealing plate 6, and the top of the collecting frame 7 is in contact with the two stoppers 34 to complete the fixation of the collecting frame 7; when the rectangular shell 2 is repeatedly rotated to make the tea leaves repeatedly fall from high to low, the moisture recovery operation of the tea leaves is completed, and the tea leaves need to be discharged, the sealing plate 6 is located at the bottom of the rectangular shell 2, and then the automatic telescopic rod 61 is started to move the sealing plate 6 to the lower side of the rectangular shell 2, and the collecting frame 7 is moved out of the rectangular shell 2, the worker takes the collecting frame 7 from the sealing plate 6, and then the discharging operation of the tea leaves can be completed, and then another collecting frame 7 loaded with tea leaves to be recovered is placed on the sealing plate 6, thereby improving the efficiency of discharging and loading the tea leaves; the top surface of the stopper 34 is inclined (as shown in Figure 3 illustrated in the middle), which avoids the accumulation of tea leaves on the top of the stopper 34, and the collecting frame 7 is made of steel wire and has good air permeability, which will not block the air holes on the sealing plate 6.

[0022] As shown in Figure 1 and Figure 2 , the telescopic end of the automatic telescopic rod 61 is fixed with a connecting rod 62 connected with the bottom of the sealing plate 6; the fixed end of the electric telescopic rod 32 is fixed with a bearing plate 33 connected with the outer wall of the rectangular shell 2. After the automatic telescopic rod 61 is started, the telescopic end of the automatic telescopic rod 61 can drive the sealing plate 6 to move downward or upward through the connecting rod 62; the bearing plate 33 can increase the firmness of the electric telescopic rod 32 fixed on the rectangular shell 2, the telescopic end of the electric telescopic rod 32 is connected with the side of the moving plate 31 away from the fixed plate 3, and the fixed plate 3 is T-shaped (as shown in Figure 2 illustrated in the middle), and one moving plate 31 is driven by two electric telescopic rods 32 to ensure the stability of the moving plate 31 when moving; the storage battery 23 can supply power to the electric telescopic rod 32, the automatic telescopic rod 61 and the hair dryer 51.

[0023] In use, the tea leaves are loaded into the collecting frame 7, and then the automatic telescopic rod 61 is started to drive the sealing plate 6 to move downward, the collecting frame 7 is placed on the sealing plate 6, and then the sealing plate 6 is restored, the collecting frame 7 enters the rectangular shell 2, and the top of the collecting frame 7 is in contact with the bottom of the stopper 34 to complete the fixation of the collecting frame 7; the electric telescopic rod 32 near the sealing plate 6 on the rectangular shell 2 is started again (as shown in Figure 1The four electric telescopic rods 32 shown in the orientation are located below the front and back of the rectangular shell 2, which makes the two moving plates 31 close to the sealing plate 6 close to each other, blocks the top of the tea leaves, and then starts the motor 8 to drive the rectangular shell 2 to rotate 180°, and then makes the two moving plates 31 close to the sealing plate 6 far away from each other, so that the tea leaves fall from high to low; at the same time of falling tea, the conveying pipe 44 conveys water into the hollow shell 4, and the atomizing nozzle 41 sprays water mist to rehydrate the tea leaves; the motor 8 is a servo motor, and when the tea leaves fall, the motor 8 can drive the rectangular shell 2 to rotate left and right repeatedly with a small amplitude; when the tea leaves fall to the side of the rectangular shell 2 away from the sealing plate 6, the electric telescopic rod 32 on the rectangular shell 2 away from the sealing plate 6 can be started to make the two moving plates 31 away from the sealing plate 6 close to each other to block the tea leaves, and then the motor 8 is started to make the rectangular shell 2 rotate 180°, and then the two moving plates 31 away from the sealing plate 6 are restored, and the tea leaves can continue to fall from high to low; according to the above operation, the tea leaves are repeatedly dropped from high to low, so that all the tea leaves can be fully rehydrated, and after the tea leaves are rehydrated, the automatic telescopic rod 61 is started to move the sealing plate 6 downward, and then the staff can take down the collection frame 7.

[0024] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the purpose and scope of the present application, and all should be covered in the scope of the claims of the present application.

Claims

1. A green tea processing rehydrating device comprising a base (1), characterized in that: The base (1) is provided with a rectangular shell (2) above, and the base (1) is provided with a motor (8) for driving the rectangular shell (2) to rotate; two front and back symmetrical fixed plates (3) are fixed in the rectangular shell (2), and two up and down symmetrical moving plates (31) are penetrated through the fixed plates (3); the moving plates (31) are provided with electric telescopic rods (32) fixed on the rectangular shell (2) and used for driving the moving plates (31) to move; the opposite sides of the two fixed plates (3) are both fixed with hollow shells (4), the hollow shells (4) are communicated with atomizing nozzles (41) penetrating through the fixed plates (3), and one side of the rectangular shell (2) is provided with a conveying pipe (44) for conveying water into the hollow shells (4); the bottom of the rectangular shell (2) is provided with a discharge port between the two fixed plates (3), the discharge port is provided with a sealing plate (6), and the rectangular shell (2) is fixed with an automatic telescopic rod (61) for driving the sealing plate (6) to lift and fall; and the rectangular shell (2) is fixed with a storage battery (23).

2. A rehydrating device for processing green tea according to claim 1, characterized in that: One end of the rectangular shell (2) is fixed with a circular shell (21), the circular shell (21) is sleeved with a rotatingly connected vertical plate (22), and the vertical plate (22) is fixed on the base (1); the main body of the motor (8) is fixed with a support plate (81) connected with the base (1), and the rotating shaft of the motor (8) is connected with the circular shell (21).

3. A rehydrating device for processing green tea according to claim 1, characterized in that: A group of fixed pipes (5) are fixed in the rectangular shell (2) between the two fixed plates (3), and the fixed pipes (5) are respectively located between the two moving plates (31) on the fixed plates (3).

4. A rehydrating device for processing green tea according to claim 3, characterized in that: Perforations are formed in the surface of the fixed pipe (5), one end of the rectangular shell (2) away from the motor (8) is fixed with a connecting shell (52), one end of the fixed pipe (5) away from the motor (8) penetrates through the rectangular shell (2) and is communicated with the connecting shell (52), and a hair drier (51) is fixed on the rectangular shell (2) and communicated with the connecting shell (52).

5. A rehydrating device for processing green tea according to claim 4, characterized in that: The hollow shell (4) is communicated with a water conveying pipe (43) penetrating through the rectangular shell (2), the connecting shell (52) is fixed with a connecting pipe (42) communicated with the water conveying pipe (43), and one end of the conveying pipe (44) penetrates through the connecting pipe (42) and is rotatably connected with the connecting pipe (42).

6. A rehydrating device for processing green tea according to claim 1, characterized in that: One end of the rectangular shell (2) away from the motor (8) is sleeved with a fixedly connected connecting block (24), the outer ring surface of the connecting block (24) is sleeved with a rotatably connected fixing ring (25), and the bottom of the fixing ring (25) is fixed with a support rod (26) connected with the base (1).

7. A rehydrating device for processing green tea according to claim 1, characterized in that: The top of the sealing plate (6) is provided with a collecting frame (7), the top of the sealing plate (6) is fixed with a positioning rod (63), and the bottom of the collecting frame (7) is provided with a positioning hole matched with the positioning rod (63); the opposite sides of the two fixed plates (3) are respectively fixed with stop blocks (34) in contact with the top of the collecting frame (7).

8. A rehydrating device for processing green tea according to claim 1, characterized in that: The telescopic end of the automatic telescopic rod (61) is fixed with a connecting rod (62) connected with the bottom of the sealing plate (6); and the fixed end of the electric telescopic rod (32) is fixed with a bearing plate (33) connected with the outer wall of the rectangular shell (2).