Tea frying equipment for tea production and processing

By designing a tea stir-frying equipment including a steam heating base, a rotating cylinder, a steam heating cylinder and a push rod motor, the problem of existing equipment damaging tea leaves when stir-frying tea leaves is solved, improving the efficiency of tea stir-frying and reducing manpower waste.

CN120113705AInactive Publication Date: 2025-06-10WUHAN YINONG ZHUOCHUANG AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202510515286.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing tea stir-frying equipment is prone to damage the tea when stir-frying tea, and artificial tea stir-frying is inefficient, which wastes manpower.

Method used

A tea stir-frying equipment including a steam heating base, a rotating cylinder, a steam heating cylinder and a push rod motor is designed. The tea leaves in the rotating cylinder are stir-fried through the steam heating cylinder, and the stir-fried tea leaves are quickly taken out using the push rod motor.

Benefits of technology

It reduces the damage to tea leaves caused by stir-frying in the mixing device, improves the efficiency of tea stir-frying, reduces manpower waste, and makes the water evaporate more evenly in the tea leaves.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses tea frying equipment for tea production and processing, which is characterized in that fixed arms are mounted on two sides of the front end of the top of a steam heating base, fixed rings are mounted on the inner sides of the tops of the fixed arms through rotating shafts, rotating cylinders are mounted in the fixed rings, and a steam heating cylinder is mounted at the rear end of each rotating cylinder; supporting legs are installed on the two sides of the bottom of the rear end of the steam heating cylinder, a rotating connecting rod is installed between the bottoms of the supporting legs, push rods are installed on the bottoms of the two sides of the rotating connecting rod, the bottoms of the push rods are connected with push rod motors installed on the two sides of the steam heating base, and a barrel cover is installed at the front end of a rotating cylinder. And a rotating gear ring is installed on the periphery of the front end of the outer side of the rotating cylinder, a motor is installed at the top of the steam heating base, a driving gear is installed at the front end of the motor, and the driving gear is meshed with the rotating gear ring. The tea leaf stir-frying machine is reasonable in design, tea leaves in the rotating cylinder are stir-fried through the steam heating cylinder, damage to the tea leaves caused by stir-frying of a stirring device is reduced, the rotating cylinder for containing the tea leaves can be lifted through the push rod motor at the rear end, and the stir-fried tea leaves can be taken out rapidly.
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Description

Technical Field

[0001] The present invention relates to a tea frying device for tea production and processing, belonging to the field of tea processing. Background Art

[0002] Tea frying is a term, referring to the technique of withering tea leaves in a pot using a gentle fire during the process of making tea. Through manual kneading, the moisture of the tea leaves evaporates quickly, blocking the tea fermentation process and retaining the essence of the tea juice completely. Frying tea manually not only wastes manpower but also has low efficiency. When using a mechanical device to fry tea, the tea leaves are easily damaged during the mechanical stirring. Summary of the Invention

[0003] The purpose of the present invention is to provide a tea frying device for tea production and processing to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions: A tea frying device for tea production and processing includes a steam heating base, fixed arms, fixed rings, a rotating cylinder, a steam heating cylinder body, support legs, rotating connecting rods, push rods, a push rod motor, a barrel cover, a rotating gear ring, a motor, and a driving gear. On both sides of the front end of the top of the steam heating base, fixed arms are installed. Inside the top of each fixed arm, a fixed ring is installed through a rotating shaft. Inside the fixed ring, a rotating cylinder is installed. At the rear end of the rotating cylinder, a steam heating cylinder body is installed. On both sides of the bottom of the rear end of the steam heating cylinder body, support legs are installed. Between the bottoms of the support legs, a rotating connecting rod is installed. On both sides of the bottom of the rotating connecting rod, push rods are installed. The bottoms of the push rods are connected to the push rod motors installed on both sides of the steam heating base. At the front end of the rotating cylinder, a barrel cover is installed. Around the front end of the outer side of the rotating cylinder, a rotating gear ring is installed. On the top of the steam heating base, a motor is installed. At the front end of the motor, a driving gear is installed, and the driving gear meshes with the rotating gear ring.

[0005] Preferably, the tea frying device for tea production and processing further includes a connecting air inlet, a drying chamber, a mechanical supercharging device, a connecting pipe, air permeation holes, and a pressure relief valve. On the side of the steam heating cylinder body, a connecting air inlet is installed. On the side of the steam heating base, a drying chamber is installed. On the top of the drying chamber, a mechanical supercharging device is installed. On the top of the mechanical supercharging device, a connecting pipe is installed. The top of the connecting pipe is connected to the bottom of the connecting air inlet, and the connecting air inlet can be driven to rise by the push rod motor and separated from the connecting pipe below. A number of air permeation holes are provided in the part of the rotating cylinder located inside the steam heating cylinder body at the rear. A pressure relief valve is installed at the center of the rear ends of the rotating cylinder and the steam heating cylinder body.

[0006] Preferably, the supercharger further includes an air inlet hole, fixed columns, arc-shaped reserved grooves, rotating wheels, an air inlet chamber, a compression chamber, and an air outlet hole. An air inlet hole is provided at the center of the bottom of the supercharger and is connected to the lower drying chamber through the air inlet hole. Fixed columns are installed on both the left and right sides inside the supercharger. Arc-shaped reserved grooves are provided on the inner sides of the fixed columns on both sides. Rotating wheels are installed on the outer sides of the fixed columns. The rear ends of the rotating wheels on both sides are meshed through gears and rotate towards each other under the action of the gears. Air inlet chambers are provided on the front sides of the rotating wheels in the clockwise direction, and compression chambers are provided on the rear sides of the rotating wheels in the clockwise direction. An air outlet hole is provided at the top of the supercharger, and the top of the air outlet hole is connected to a connecting pipe. The rotating wheels on both sides alternately introduce gas into the corresponding air inlet chambers through the air inlet holes, and after being compressed by the other compression chamber, the gas is discharged to the top air outlet hole.

[0007] The beneficial effects of the present invention are as follows: The present invention is reasonably designed. The tea leaves in the rotating cylinder are stir-fried by the steam heating cylinder, reducing the damage to the tea leaves caused by the stir-frying of the stirring device. The rotating cylinder for placing the tea leaves can also be lifted by the rear push rod motor to quickly take out the stir-fried tea leaves. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] Figure 1 is a schematic structural diagram of the tea frying device for tea production and processing of the present invention; Figure 2 is a schematic structural diagram of the rotating cylinder of the tea frying device for tea production and processing of the present invention; Figure 3 is a schematic structural diagram of the supercharger of the tea frying device for tea production and processing of the present invention.

[0009] In the figure: 1. Steam heating base, 2. Fixed arm, 3. Fixed ring, 4. Rotating cylinder, 5. Steam heating cylinder, 6. Support leg, 7. Rotating connecting rod, 8. Push rod, 9. Push rod motor, 10. Bucket cover, 11. Rotating gear ring, 12. Motor, 13. Driving gear, 14. Connecting air inlet, 15. Drying chamber, 16. Supercharger, 17. Connecting pipe, 18. Vent hole, 19. Pressure relief valve, 20. Air inlet hole, 21. Fixed column, 22. Arc-shaped reserved groove, 23. Rotating wheel, 24. Air inlet chamber, 25. Compression chamber, 26. Air outlet hole. DETAILED DESCRIPTION OF THE INVENTION

[0010] The present invention will be further described below with reference to the accompanying drawings and specific embodiments: As Figures 1 - 3As shown in the figure, a tea frying device for tea production and processing includes a steam heating base 1, fixed arms 2, fixed rings 3, a rotating cylinder 4, a steam heating cylinder body 5, support legs 6, rotating connecting rods 7, push rods 8, a push rod motor 9, a barrel cover 10, a rotating gear ring 11, a motor 12, and a driving gear 13. On both sides of the front end of the top of the steam heating base 1, fixed arms 2 are installed. Inside the top of each fixed arm 2, a fixed ring 3 is installed through a rotating shaft. Inside the fixed ring 3, a rotating cylinder 4 is installed. At the rear end of the rotating cylinder 4, a steam heating cylinder body 5 is installed. On both sides of the bottom of the rear end of the steam heating cylinder body 5, support legs 6 are installed. Between the bottoms of the support legs 6, a rotating connecting rod 7 is installed. At the bottom of both sides of the rotating connecting rod 7, push rods 8 are installed. The bottom of the push rod 8 is connected to the push rod motor 9 installed on both sides of the steam heating base 1. At the front end of the rotating cylinder 4, a barrel cover 10 is installed. Around the front end of the outer side of the rotating cylinder 4, a rotating gear ring 11 is installed. On the top of the steam heating base 1, a motor 12 is installed. At the front end of the motor 12, a driving gear 13 is installed, and the driving gear 13 meshes with the rotating gear ring 11. The tea frying device for tea production and processing further includes a connecting air inlet 14, a drying chamber 15, a mechanical supercharging device 16, a connecting pipe 17, air permeation holes 18, and a pressure relief valve 19. On the side of the steam heating cylinder body 5, a connecting air inlet 14 is installed. On the side of the steam heating base 1, a drying chamber 15 is installed. On the top of the drying chamber 15, a mechanical supercharging device 16 is installed. On the top of the mechanical supercharging device 16, a connecting pipe 17 is installed. The top of the connecting pipe 17 is connected to the bottom of the connecting air inlet 14. The connecting air inlet 14 can be driven to rise by the push rod motor 9 and separated from the connecting pipe 17 below. A number of air permeation holes 18 are provided in the part of the rotating cylinder 4 located inside the steam heating cylinder body 5 at the rear. A pressure relief valve 19 is installed at the center of the rear ends of the rotating cylinder 4 and the steam heating cylinder body 5. The mechanical supercharging device 16 further includes an air inlet hole 20, a fixed column 21, an arc-shaped reserved groove 22, a rotating wheel 23, an air inlet chamber 24, a compression chamber 25, and an air outlet hole 26. At the center of the bottom of the mechanical supercharging device 16, an air inlet hole 20 is provided and connected to the drying chamber 15 below through the air inlet hole 20. On both the left and right sides inside the mechanical supercharging device 16, fixed columns 21 are installed. On the inner sides of the fixed columns 21 on both sides, arc-shaped reserved grooves 22 are provided. On the outer sides of the fixed columns 21, rotating wheels 23 are installed. The rear ends of the rotating wheels 23 on both sides are meshed by gears and rotate towards each other under the action of the gears. On the front sides in the clockwise direction of the rotating wheels 23, air inlet chambers 24 are provided, and on the rear sides in the clockwise direction of the rotating wheels 23, compression chambers 25 are provided. On the top of the mechanical supercharging device 16, an air outlet hole 26 is provided, and the top of the air outlet hole 26 is connected to the connecting pipe 17. The rotating wheels 23 on both sides alternately introduce gas into the corresponding air inlet chambers 24 through the air inlet hole 20 until it is compressed by the compression chambers 25 of the other side and discharged to the air outlet hole 26 at the top.

[0011] Usage method of the present invention: The base 1 is heated by steam to make high-temperature steam enter the mechanical supercharging device 16 through the drying chamber 15, and then enter the top connecting air inlet 14 through the connecting pipe 17. The high-temperature gas enters the steam heating cylinder body 5 through the connecting air inlet 14 to heat the rotating cylinder 4, and enters through the air permeable holes 18 to turn the tea leaves in the rotating cylinder 4. After the tea leaves are stir-fried, the push rod motor 9 raises the rotating connecting rod 7 to drive the rear end of the top steam heating cylinder body 5 to rise, so that the tea leaves inside the rotating cylinder 4 slide out from the front end.

[0012] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary, and equivalent changes within the equivalent scope are included in the scope of the present invention.

Claims

1. A tea frying device for tea production and processing, comprising a steam heating base (1), a fixed arm (2), a fixed ring (3), a rotating cylinder (4), a steam heating cylinder body (5), a supporting leg (6), a rotating connecting rod (7), a push rod (8), a push rod motor (9), a barrel cover (10), a rotating gear ring (11), a motor (12), and a driving gear (13), characterized in that: The steam heating base (1) is provided with fixed arms (2) on both sides of the front end of the top, and a fixed ring (3) is provided on the inner side of the top of the fixed arm (2) via a rotating shaft. A rotating cylinder (4) is provided inside the fixed ring (3). A steam heating cylinder (5) is provided at the rear end of the rotating cylinder (4). Support legs (6) are provided on both sides of the bottom of the rear end of the steam heating cylinder (5). A rotating connecting rod (7) is provided between the bottoms of the supporting legs (6). Push rods (8) are provided at the bottoms of both sides of the rotating connecting rod (7). The bottoms of the push rods (8) are connected to push rod motors (9) provided on both sides of the steam heating base (1). A barrel cover (10) is provided at the front end of the rotating cylinder (4). A rotating gear ring (11) is provided around the outer front end of the rotating cylinder (4). A motor (12) is provided at the top of the steam heating base (1). A driving gear (13) is provided at the front end of the motor (12), and the driving gear (13) is meshed with the rotating gear ring (11).

2. The tea frying equipment for tea production and processing according to claim 1, characterized in that: The tea-frying equipment for tea production and processing further comprises a connecting air inlet (14), a drying chamber (15), a mechanical supercharger (16), a connecting pipe (17), an air vent (18) and a pressure relief valve (19). The steam heating cylinder (5) is provided with a connecting air inlet (14) on the side, the steam heating base (1) is provided with a drying chamber (15) on the side, the drying chamber (15) is provided with a mechanical supercharger (16) on the top of the drying chamber (15), the connecting pipe (17) is provided with a connecting pipe (17) on the top of the mechanical supercharger (16), the top of the connecting pipe (17) is connected to the bottom of the connecting air inlet (14), and the connecting air inlet (14) can be driven to rise by a push rod motor (9) and separated from the connecting pipe (17) below, a plurality of air vents (18) are provided in the rear part of the rotating cylinder (4) located inside the steam heating cylinder (5), and a pressure relief valve (19) is provided at the rear end center of the rotating cylinder (4) and the steam heating cylinder (5).

3. The tea frying equipment for tea production and processing according to claim 2, characterized in that: The mechanical supercharger (16) further comprises an air inlet (20), a fixing column (21), an arc-shaped reserved groove (22), a rotating wheel (23), an air inlet chamber (24), a compression chamber (25) and an air outlet (26). The mechanical supercharger (16) is provided with an air inlet (20) at the center of the bottom, and is connected to the drying chamber (15) below through the air inlet (20). The mechanical supercharger (16) is provided with fixing columns (21) on both left and right sides. The fixing columns (21) on both left and right sides are provided with arc-shaped reserved grooves (22) on the inner sides. The fixing columns (21) are provided with rotating wheels (23) on the outer sides. 3), the rear ends of the rotating wheels (23) on the left and right sides are meshed through gears and rotate towards each other under the action of the gears, the rotating wheels (23) are each provided with an air inlet chamber (24) on the clockwise front side, and the rotating wheels (23) are each provided with a compression chamber (25) on the clockwise rear side, the mechanical supercharger (16) is provided with an air outlet hole (26) on the top, and the top of the air outlet hole (26) is connected to the connecting pipe (17), and the rotating wheels (23) on the left and right sides allow gas to enter the corresponding air inlet chamber (24) in turn through the air inlet hole (20), until the gas is compressed by the other compression chamber (25) and discharged to the top air outlet hole (26).