Moisture regaining machine for tea making
By introducing a rehumidification component and a uniform mechanism into the tea rehumidification machine, and using a motor-driven gear meshing and top rod assembly to prevent tea leaves from sticking together, the problem of uneven rehumidification is solved, and uniform rehumidification and tumbling of tea leaves are achieved.
Patent Information
- Application Number
- CN202520031287.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-07
AI Technical Summary
In existing tea rehumidification machines, tea leaves tend to stick to the tray during the rehumidification process, resulting in uneven rehumidification and difficulty in effective separation.
A tea rehumidification machine was designed, comprising a rehumidification component and a uniform rehumidification mechanism. The machine uses a motor to drive gear meshing to rotate the placement frame, and a top rod and pressure spring assembly to prevent tea leaves from sticking together, thus achieving uniform rehumidification of the tea leaves.
This effectively prevents tea leaves from sticking to the placement frame during the rehydration process, ensuring uniform rehydration and tumbling of the tea leaves, thus improving the rehydration effect.
Smart Images

Figure CN223787046U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tea rehumidification treatment, and more specifically, it relates to a tea rehumidification machine. Background Technology
[0002] Tea rehydration is a technical process that improves the taste, aroma, and shelf life of tea by increasing its moisture content. Rehydration can be achieved through natural rehydration, artificial humidification, and low-temperature drying. Among these methods, a rehydration machine is a form of artificial humidification.
[0003] Patent CN222217088U discloses a tea rehumidification machine, including a machine base, a tea spreading assembly, and a spraying assembly. The tea spreading assembly is installed at the bottom inner part of the machine base, and the spraying assembly is installed at the top inner part of the machine base, with the spray nozzles of the spraying assembly facing the tea spreading assembly, so that the spraying assembly can spray the tea leaves spread in the tea spreading assembly. The tea spreading assembly includes at least two sets of parallel linkage hangers, a support platform, and a drive mechanism. The top of the parallel linkage hangers is connected to the machine base, the bottom of the parallel linkage hangers is connected to the outer wall of the support platform, and the drive mechanism is connected to the bottom of the support platform, so that the support platform can be oscillatingly positioned within the machine base using the parallel linkage hangers under the adjustment of the drive mechanism.
[0004] The tea rehumidification machine in the above scheme can achieve this by coordinating the parallel connecting rod hanger and the drive mechanism with the support platform in the tea spreading component. This allows the tea to be spread on the tea-powdering platform by swinging and shaking the support platform when the tea is rehumidified using the equipment. This ensures that the tea is more evenly exposed to the water and rehumidifies, while also preventing the tea leaves from being broken due to agitation.
[0005] While this tea rehumidifier can make the tea leaves come into more even contact with water and prevent the leaves from breaking, it continuously sprays the tea leaves during the rehumidification process. When the tea leaves are too wet, they will stick to the tray. At this point, swinging and shaking the tray will prevent the tea leaves stuck to the tray from mixing with the other tea leaves, resulting in uneven rehumidification.
[0006] Therefore, a new solution is needed to address this problem. Summary of the Invention
[0007] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a tea rehumidification machine that can activate the rehumidification component and the uniformizing mechanism during tea rehumidification, so that the two work together to perform rehumidification treatment, thus avoiding the tea leaves from sticking to the placement frame and causing uneven rehumidification.
[0008] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A tea rehumidification machine includes a protective shell, a rotating ring rotatably connected to the protective shell, a placement frame fixedly connected to the rotating ring, a plurality of through holes on the placement frame, a rehumidification component for helping tea leaves rehumidify quickly on the protective shell, and a uniformizing mechanism for making the rehumidification of tea leaves more uniform on the protective shell and the placement frame. The rehumidification component includes a water tank fixedly connected inside the protective shell, a water pump fixedly connected inside the water tank, a connecting pipe fixedly connected to the output end of the water pump, and a spray frame fixedly connected to the other end of the connecting pipe. The spray frame is rotatably connected to the placement frame. The water tank contains liquid. The uniformizing mechanism includes a motor fixedly connected to the protective shell, a gear one fixedly connected to the output end of the motor, and a gear two fixedly connected to the placement frame. The gear one and gear two mesh with each other and have the same number of teeth. An anti-sticking component is provided on the motor and the protective shell to prevent tea leaves from sticking to the inner wall of the placement frame.
[0009] The present invention is further configured as follows: the anti-stick component includes a positioning rod fixedly connected to the bottom inner side of the protective shell, a positioning plate slidably connected to the positioning rod, a pressure spring sleeved between the positioning plate and the bottom inner side of the protective shell, a positioning frame one fixedly connected to the positioning plate, a positioning block rotatably connected to the positioning frame one, a spring telescopic rod fixedly connected to the positioning block, a positioning frame two fixedly connected to the telescopic end of the spring telescopic rod, a rotating block rotatably connected to the positioning frame two, a connecting plate fixedly connected to the rotating block, and several top rods fixedly connected to the connecting plate. Two torsion springs are fixedly connected to both sides of the positioning block, and the other ends of the two torsion springs one are respectively fixedly connected to both sides of the positioning frame one. Two torsion springs are fixedly connected to both sides of the rotating block, and the other ends of the two torsion springs two are respectively fixedly connected to both sides of the positioning frame two. The motor and the positioning plate are provided with triggering elements for driving the top rods into the through holes.
[0010] The present invention is further configured such that: the triggering element includes a trigger plate fixedly connected to the motor output shaft and a trigger rod fixedly connected to the positioning plate; when the trigger plate contacts the trigger rod, the pressure spring is in a compressed state.
[0011] The present invention is further configured such that a stabilizing rod is fixedly connected to the trigger rod, and the stabilizing rod is slidably connected to the water tank.
[0012] The present invention is further configured such that a protective frame is fixedly connected to the placement frame.
[0013] The present invention is further configured such that the diameter of the top rod is smaller than the diameter of the through hole.
[0014] In summary, this utility model has the following beneficial effects: When rehydrating tea, the rehydration component and the uniform mechanism can be activated. The rehydration component increases the internal moisture of the tea. When the tea becomes sticky to the placement frame due to the increased internal moisture, the top rod can push the tea to peel it off from the placement frame, thereby avoiding uneven rehydration caused by the tea sticking to the placement frame during the rehydration process. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 A cross-sectional view of this utility model Figure 1 ;
[0017] Figure 3 Partial cross-sectional view of this utility model Figure 1 ;
[0018] Figure 4 A cross-sectional view of this utility model Figure 2 ;
[0019] Figure 5 for Figure 4 Enlarged view of part A;
[0020] Figure 6 A cross-sectional view of this utility model Figure 3 ;
[0021] Figure 7 Partial cross-sectional view of this utility model Figure 2 .
[0022] In the diagram: 1. Protective outer shell; 2. Rotating ring; 3. Placement frame; 4. Through hole; 5. Water tank; 6. Water pump; 7. Connecting pipe; 8. Spray frame; 9. Motor; 10. Gear 1; 11. Gear 2; 12. Positioning rod; 13. Positioning plate; 14. Pressure spring; 15. Positioning frame 1; 16. Positioning block; 17. Spring telescopic rod; 18. Positioning frame 2; 19. Rotating block; 20. Connecting plate; 21. Top rod; 22. Torsion spring 1; 23. Torsion spring 2; 24. Trigger plate; 25. Trigger rod; 26. Stabilizing rod; 27. Protective frame. Detailed Implementation
[0023] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0024] A type of tea-making rehumidification machine, such as Figures 1-7As shown, the device includes a protective outer shell 1, a rotating ring 2 rotatably connected to the protective outer shell 1, a placement frame 3 fixedly connected to the rotating ring 2, and several through holes 4 on the placement frame 3. The protective outer shell 1 is equipped with a rehydration component to help the tea leaves rehydrate quickly. The protective outer shell 1 and the placement frame 3 are equipped with a uniform mechanism to make the rehydration of the tea leaves more uniform. The rehydration component includes a water tank 5 fixedly connected inside the protective outer shell 1, a water pump 6 fixedly connected inside the water tank 5, a connecting pipe 7 fixedly connected to the output end of the water pump 6, and a spray frame 8 fixedly connected to the other end of the connecting pipe 7. The spray frame 8 is rotatably connected to the placement frame 3. The water tank 5 contains liquid. When the tea leaves are to be rehydrated, the door of the protective outer shell 1 is opened first, and then the tea leaves are placed in the placement frame 3. Then, the water pump 6 is started intermittently. When the water pump 6 is started, it draws water from the water tank 5 and transports it through the connecting pipe 7 to the spray frame 8. Finally, the water is sprayed from the spray frame 8 to form a water mist that falls onto the tea leaves. The uniform mechanism is activated before the water pump is turned on to make the water mist that the accumulated tea leaves come into contact with more uniformly.
[0025] like Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 7 As shown, the uniform distribution mechanism includes a motor 9 fixedly connected to the protective housing 1, a gear 10 fixedly connected to the output end of the motor 9, and a gear 11 fixedly connected to the placement frame 3. Gear 10 and gear 11 mesh with each other and have the same number of teeth. The motor 9 and the protective housing 1 are provided with anti-sticking components to prevent tea leaves from sticking to the inner wall of the placement frame 3. The anti-sticking components include a positioning rod 12 fixedly connected to the bottom inner side of the protective housing 1, a positioning plate 13 slidably connected to the positioning rod 12, a pressure spring 14 sleeved between the positioning plate 13 and the bottom inner side of the protective housing 1, a positioning frame 15 fixedly connected to the positioning plate 13, a positioning block 16 rotatably connected to the positioning frame 15, and a spring telescopic rod 17 fixedly connected to the positioning block 16. The spring telescopic rod 17 extends and retracts. The positioning frame 16 is fixedly connected to the end of the positioning frame 16. The rotating block 19 is rotatably connected to the positioning frame 16. The connecting plate 20 is fixedly connected to the rotating block 19. Several push rods 21 are fixedly connected to the connecting plate 20. Two torsion springs 22 are fixedly connected to both sides of the positioning block 16. The other ends of the two torsion springs 22 are fixedly connected to both sides of the positioning frame 15. Two torsion springs 23 are fixedly connected to both sides of the rotating block 19. The other ends of the two torsion springs 23 are fixedly connected to both sides of the positioning frame 18. The motor 9 and the positioning plate 13 are provided with triggering elements for driving the push rods 21 into the through hole 4. The triggering elements include a triggering plate 24 fixedly connected to the output shaft of the motor 9 and a triggering rod 25 fixedly connected to the positioning plate 13. When the triggering plate 24 contacts the triggering rod 25, the pressure spring 14 is in a compressed state.
[0026] like Figure 2 , Figure 4 , Figure 5 , Figure 6 , Figure 7 As shown, after the water pump 6 is turned on, the motor 9 is turned on. The motor 9 will drive the gear 10 to rotate, and then the gear 10 will drive the gear 21 to rotate, which in turn will drive the placement frame 3 to rotate. When the placement frame 3 rotates, the tea leaves will tumble inside the placement frame 3. At the same time as the gear 10 rotates, the trigger plate 24 will also rotate and come into contact with the trigger rod 25. When the trigger plate 24 comes into contact with the trigger rod 25, the trigger rod 25 will move on the outer wall of the trigger plate 24 and be pushed by the trigger plate 24 to move the positioning plate 13 to the bottom side of the protective shell 1. At this time, the pressure spring 14 is in a compressed state. However, since the placement frame 3 also rotates synchronously when the trigger plate 24 rotates, the placement frame 3 will drive the trigger rod 25 to move a certain distance. At this time, the positioning block 16 and the rotating block 19 will rotate on the positioning frame 15 and the positioning frame 28 respectively. The torsion spring 12 and the torsion spring 23 will rotate on the positioning frame 15 and the positioning frame 28 respectively. 23 is in deformation, and as the placement frame 3 rotates, the spring telescopic rod 17 will gradually stretch. When the trigger plate 24 continues to rotate and pushes the trigger rod 25, causing the top rod 21 to slide completely out of the through hole 4, the torsion spring 1 22, the torsion spring 23, and the spring telescopic rod 17 will simultaneously reset, aligning the connecting plate 20 and the top rod 21. Then the trigger plate 24 continues to rotate, and when the trigger rod 25 moves along the outer wall of the trigger plate 24 to the cliff, part of the through hole 4 on the placement frame 3 will be perpendicular to the bottom side of the protective shell 1. At this time, the pressure spring 14 resets and drives the top rod 21 to be placed into part of the through hole 4 perpendicular to the bottom side of the protective shell 1, lifting up the tea leaves that are stuck to the inner wall of the placement frame 3 due to excessive moisture. By repeating this process, the tea leaves with excessive moisture can be prevented from sticking to the inner wall of the placement frame 3 and will always roll inside the placement frame 3 as it rotates, ensuring the uniformity of the rehydration process.
[0027] like Figure 2 , Figure 4 As shown, a stabilizing rod 26 is fixedly connected to the trigger rod 25. The stabilizing rod 26 is slidably connected to the water tank 5. When the trigger rod 25 moves, it will drive the stabilizing rod 26 to slide on the water tank 5, thereby ensuring the stability of the trigger rod 25 when the trigger plate 24 pushes the trigger rod 25.
[0028] like Figure 2 , Figure 3 , Figure 7 As shown, a protective frame 27 is fixedly connected to the placement frame 3 to prevent water mist from spraying directly onto the tea leaves, causing some tea leaves to absorb moisture quickly and prolonging the rehydration time.
[0029] like Figure 7 As shown, the diameter of the top rod 21 is smaller than the diameter of the through hole 4, which allows the top rod 21 to slide smoothly into the through hole 4 when the placement frame 3 rotates.
[0030] Working principle: When re-moistening tea leaves, first open the protective outer shell 1, then place the tea leaves in the placement frame 3, and then intermittently start the water pump 6. When the water pump 6 starts, it will draw water from the water tank 5 and transport it through the connecting pipe 7 to the spray frame 8. Finally, the water will be sprayed from the spray frame 8 to form a water mist that falls onto the tea leaves. Before starting the water pump, the uniform mechanism is activated to make the water mist that the accumulated tea leaves come into contact with more evenly.
[0031] After turning on the water pump 6, the motor 9 is turned on. The motor 9 drives the gear 10 to rotate, which in turn drives the gear 11 to rotate, and then drives the placement frame 3 to rotate. When the placement frame 3 rotates, the tea leaves will tumble inside the placement frame 3. At the same time as the gear 10 rotates, the trigger plate 24 also rotates and comes into contact with the trigger rod 25. When the trigger plate 24 comes into contact with the trigger rod 25, the trigger rod 25 will move on the outer wall of the trigger plate 24 and be pushed by the trigger plate 24 to move the positioning plate 13 to the bottom side of the protective shell 1. At this time, the pressure spring 14 is in a compressed state. However, since the placement frame 3 also rotates synchronously when the trigger plate 24 rotates, the placement frame 3 will drive the trigger rod 25 to move a certain distance. At this time, the positioning block 16 and the rotating block 19 will rotate on the positioning frame 15 and the positioning frame 28 respectively. The torsion spring 12 and the torsion spring 23... The spring telescopic rod 17 is in a state of deformation and gradually stretches as the placement frame 3 rotates. When the trigger plate 24 continues to rotate and pushes the trigger rod 25, causing the top rod 21 to slide completely out of the through hole 4, the torsion spring 1 22, torsion spring 23 and the spring telescopic rod 17 simultaneously reset, aligning the connecting plate 20 and the top rod 21. Then the trigger plate 24 continues to rotate, and when the trigger rod 25 moves along the outer wall of the trigger plate 24 to the cliff, part of the through hole 4 on the placement frame 3 will be perpendicular to the bottom side of the protective shell 1. At this time, the pressure spring 14 resets and drives the top rod 21 to be placed into the part of the through hole 4 perpendicular to the bottom side of the protective shell 1, lifting up the tea leaves that are stuck to the inner wall of the placement frame 3 due to excessive moisture. By repeating this process, the tea leaves with excessive moisture can be prevented from sticking to the inner wall of the placement frame 3 and will always roll inside the placement frame 3 as it rotates, ensuring the uniformity of the rehydration process.
[0032] In this way, when rehydrating tea, the rehydration component and the uniform mechanism can be activated. The rehydration component increases the internal moisture of the tea. When the tea becomes more moist and sticks to the placement frame 3, the top rod 21 can push the tea to peel it off from the placement frame 3. This avoids the tea sticking to the placement frame 3 during the rehydration process, which would otherwise cause uneven rehydration.
[0033] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A conditioning machine for tea making comprising a protective casing (1), characterised in that: The protective shell (1) is rotatably connected with a rotating ring (2), the rotating ring (2) is fixedly connected with a placing frame (3), a plurality of through holes (4) are formed in the placing frame (3), the protective shell (1) is provided with a moisture recovery assembly for helping tea to quickly recover moisture, the protective shell (1) and the placing frame (3) are provided with a uniform mechanism for making tea recover moisture more uniformly, the moisture recovery assembly comprises a water tank (5) fixedly connected in the protective shell (1), a water pump (6) fixedly connected in the water tank (5), a connecting pipe (7) fixedly connected at an output end of the water pump (6) and a spray frame (8) fixedly connected at the other end of the connecting pipe (7), the spray frame (8) is rotatably connected with the placing frame (3), liquid is placed in the water tank (5), the uniform mechanism comprises a motor (9) fixedly connected on the protective shell (1), a gear one (10) fixedly connected at an output end of the motor (9) and a gear two (11) fixedly connected on the placing frame (3), the gear one (10) and the gear two (11) are mutually engaged and have the same number of teeth, the motor (9) and the protective shell (1) are provided with an anti-sticking assembly for preventing tea from adhering to the inner wall of the placing frame (3).
2. The tea conditioning machine according to claim 1, characterized in that: The anti-sticking assembly comprises a positioning rod (12) fixedly connected to the inner bottom side of the protective shell (1), a positioning plate (13) slidably connected on the positioning rod (12), a pressure spring (14) sleeved between the positioning plate (13) and the inner bottom side of the protective shell (1) at the positioning rod (12), a positioning frame one (15) fixedly connected on the positioning plate (13), a positioning block (16) rotatably connected on the positioning frame one (15), a spring telescopic rod (17) fixedly connected on the positioning block (16), a positioning frame two (18) fixedly connected at the telescopic end of the spring telescopic rod (17), a rotating block (19) rotatably connected on the positioning frame two (18), a connecting plate (20) fixedly connected on the rotating block (19) and a plurality of jacks (21) fixedly connected on the connecting plate (20), torsion springs one (22) are fixedly connected on both sides of the positioning block (16), the other ends of the two torsion springs one (22) are respectively fixedly connected with both sides of the positioning frame one (15), torsion springs two (23) are fixedly connected on both sides of the rotating block (19), the other ends of the two torsion springs two (23) are respectively fixedly connected with both sides of the positioning frame two (18), the motor (9) and the positioning plate (13) are provided with a trigger member for driving the jacks (21) to be inserted into the through holes (4).
3. A tea conditioning machine according to claim 2, characterised in that: The trigger member comprises a trigger plate (24) fixedly connected on the output shaft of the motor (9) and a trigger rod (25) fixedly connected on the positioning plate (13), when the trigger plate (24) is in contact with the trigger rod (25), the pressure spring (14) is in a compressed state.
4. A tea conditioning machine according to claim 3, wherein: A stabilizing rod (26) is fixedly connected on the trigger rod (25), the stabilizing rod (26) is slidably connected with the water tank (5).
5. The tea conditioning machine according to claim 1, characterized in that: A protective frame (27) is fixedly connected on the placing frame (3).
6. The tea conditioning machine according to claim 2, characterized in that: The diameter of the jacks (21) is smaller than the diameter of the through holes (4).
Citation Information
Patent Citations
Tea leaf moisture regaining machine
CN222217088U