CN110973287A - Multistage tea steaming device - Google Patents
Multistage tea steaming device Download PDFInfo
- Publication number
- CN110973287A CN110973287A CN201911310087.1A CN201911310087A CN110973287A CN 110973287 A CN110973287 A CN 110973287A CN 201911310087 A CN201911310087 A CN 201911310087A CN 110973287 A CN110973287 A CN 110973287A
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- tea
- mesh belt
- conveying mesh
- conveying
- tea steaming
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23F—COFFEE; TEA; THEIR SUBSTITUTES; MANUFACTURE, PREPARATION, OR INFUSION THEREOF
- A23F3/00—Tea; Tea substitutes; Preparations thereof
- A23F3/06—Treating tea before extraction; Preparations produced thereby
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G39/00—Rollers, e.g. drive rollers, or arrangements thereof incorporated in roller-ways or other types of mechanical conveyors
- B65G39/02—Adaptations of individual rollers and supports therefor
- B65G39/07—Other adaptations of sleeves
- B65G39/073—Other adaptations of sleeves for cleaning belts
Abstract
The invention discloses a multistage tea steaming device which comprises a tea steaming box body, wherein a multistage tea steaming mechanism is arranged in the tea steaming box body, and comprises a feeding conveying mesh belt, a flanging conveying mesh belt and a discharging conveying mesh belt which are sequentially connected in series from top to bottom; the tea steaming box body is provided with a steam platform between the upper conveying belt surface and the lower conveying belt surface of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt; tea leaf throwing mechanism is arranged above the feeding end of the feeding conveying net belt of the tea steaming box body. The automatic tea steaming machine can automatically steam tea, has the characteristics of good tea steaming effect and high production efficiency, and reduces the labor intensity.
Description
Technical Field
The invention relates to the technical field of tea making, in particular to a multistage tea steaming device.
Background
Tea, refers to the leaves or buds of tea trees; generally, tea leaves are processed from tea tree leaves, and can be directly brewed with boiled water for drinking. The tea processing is also called tea making, which is a process of making various semi-finished or finished tea from fresh tea leaves through various processing procedures. According to different processing procedures, the method can be divided into primary processing, refining, reprocessing and deep processing. Different tea types can be formed by different processing technologies, and the quality of the tea leaves of each tea type depends on the coordination and coordination of the processing procedures; high-quality fresh leaf raw materials can produce various high-quality tea leaves only under exquisite processing conditions. Steaming tea, one of the processes for making tea leaves, is to steam tea by high-temperature high-pressure steam to soften the stems and leaves for pressing and forming. Use a tea bucket to hold tealeaves among traditional steaming device, place tealeaves and steam in the bucket, because the volume ratio of tea bucket is bigger, the tealeaves that holds when steaming at every turn is more, steaming in-process is heated inhomogeneously easily, make the tealeaves of position in the bucket not completely ripe, thereby influence the off-the-shelf quality of tealeaves, traditional steaming tea device generally leans on manual operation in addition, high in labor strength, it can not guarantee to steam the tea time, low in production efficiency, be difficult to satisfy batch production's requirement.
Disclosure of Invention
The invention aims to provide a multistage tea steaming device. The automatic tea steaming machine can automatically steam tea, has the characteristics of good tea steaming effect and high production efficiency, and reduces the labor intensity.
The technical scheme of the invention is as follows: a multi-stage tea steaming device comprises a tea steaming box body, wherein a multi-stage tea steaming mechanism is arranged in the tea steaming box body, and comprises a feeding conveying mesh belt, a flanging conveying mesh belt and a discharging conveying mesh belt which are sequentially connected in series from top to bottom; the tea steaming box body is provided with a steam platform between the upper conveying belt surface and the lower conveying belt surface of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt; the steam table comprises a positioning seat arranged on the tea steaming box body, a steam outlet pipe is arranged on the positioning seat, the steam outlet pipe comprises a steam main pipe arranged on the positioning seat, the steam main pipe is connected with a plurality of steam branch pipes, and a plurality of upward steam outlets are arranged on the steam branch pipes; a steam inlet pipe is arranged on the steam main pipe; evaporate the tea box and be equipped with tealeaves input mechanism in the top that is located feeding conveying mesh belt feed end, tealeaves input mechanism is equipped with the tealeaves storage cylinder that leaks hopper-shaped through first spring shock mount including fixing the locating rack on evaporating tea box lateral wall, the locating rack, the bottom of tealeaves storage cylinder is equipped with banding discharge gate.
In the multistage tea steaming device, the front end of the tea steaming box body, which is positioned on the feeding conveying mesh belt, is provided with the feeding flattening mechanism, the feeding flattening mechanism comprises a rotating shaft arranged above the feeding conveying mesh belt, the rotating shaft is provided with a plurality of rake teeth axially arranged along the rotating shaft, and the moving direction of the rotating shaft is opposite to the movement of the feeding conveying mesh belt.
In the foregoing multistage tea steaming device, the front end of the tea steaming box body at the rotating shaft is provided with the rake teeth cleaning mechanism, the rake teeth cleaning mechanism comprises a cleaning strip plate which is fixed on the tea steaming box body through a fixing block and is parallel to the rotating shaft, and cleaning comb teeth which are arranged side by side and are matched with the rake teeth in a staggered manner are arranged on the cleaning strip plate.
In the multistage tea steaming device, the cleaning batten is arranged downwards.
In the aforesaid multistage tea device of evaporating, tealeaves storage cylinder bottom is equipped with the tealeaves that is located the discharge gate below and breaks up the mechanism, the tealeaves breaks up the mechanism and includes the downward vibration board of slope through the second spring damper, the bottom of vibration board is equipped with first vibrating motor.
In the multistage tea steaming device, a second vibration motor is arranged on the outer side wall of the tea storage cylinder.
In the multistage tea steaming device, the mesh belt aperture of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt is 0.5-0.8 mm.
In the multistage tea steaming device, the tea steaming box body is respectively provided with the mesh belt cleaning roller below the discharge ends of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt, and the mesh belt cleaning roller is respectively in close contact with the belt surfaces of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt.
In the multistage tea steaming device, the movement speed of the discharging conveying mesh belt is greater than that of the flanging conveying mesh belt, and the movement speed of the flanging conveying mesh belt is greater than that of the feeding conveying mesh belt.
Compared with the prior art, the invention has the following advantages:
1. firstly, tea leaves are put into the surface of a feeding conveying net belt through a tea leaf storage cylinder, the tea leaves are tiled on the net surface of the feeding conveying net belt along with the operation of the feeding conveying net belt, first-stage tea steaming is carried out under the action of steam generated by a steam table, the tea leaves on the feeding conveying net belt fall onto a flanging conveying net belt along with the operation of the feeding conveying net belt, the tea leaves roll over in the process that the tea leaves fall onto the flanging conveying net belt, the tea leaf flanging operation is completed, and second-stage tea steaming is carried out under the action of the steam generated by the steam table along with the conveying movement of the flanging conveying net belt; along with the operation of turn-ups conveying mesh belt, tealeaves on the turn-ups conveying mesh belt then falls into ejection of compact conveying mesh belt, and fall into the in-process of turn-ups conveying mesh belt at tealeaves, tealeaves takes place to roll once more, and along with ejection of compact conveying mesh belt's conveying motion, carry out the third level under the effect of the steam that the steam platform produced and evaporate the tea, and finally send out tealeaves and evaporate the tea box external, accomplish and evaporate tea work, it evaporates tea to utilize there to have multistage tea mechanism to evaporate the tea, provide the effect of evaporating tea effectively, utilize the feeding conveying mesh belt that from the top down sets gradually simultaneously, turn-ups conveying mesh belt and ejection of compact conveying mesh belt, reasonable space, make whole volume less, and prolonged tealeaves effectively and evaporating the internal time of tea box, and can carry out the turn-ups to tealeaves, thereby provide effectively and evaporate the tea effect.
2. According to the tea steaming box, the feeding flattening mechanism is arranged at the front end of the feeding conveying mesh belt and comprises a rotating shaft arranged above the feeding conveying mesh belt, a plurality of rake teeth are arranged on the rotating shaft along the axial direction of the rotating shaft, the moving direction of the rotating shaft is opposite to that of the feeding conveying mesh belt, tea leaves on the surface of the feeding conveying mesh belt are uniformly raked by the rotating shaft with the rake teeth, and the phenomenon that the tea steaming is insufficient due to the fact that the tea leaves are locally stacked too thick is avoided. In addition, the tea leaf cleaning machine is also provided with a rake tooth cleaning mechanism, and the rake tooth cleaning mechanism is used for cleaning tea leaves left on rake teeth.
3. According to the tea leaf storage cylinder, the tea leaf scattering mechanism is arranged at the bottom of the tea leaf storage cylinder and is positioned below the discharge port, the tea leaf scattering mechanism comprises a vibration plate which is fixed through a second spring damping seat and inclines downwards, a first vibration motor is arranged at the bottom of the vibration plate, the tea leaf scattering mechanism is used for scattering tea leaves in the discharging process, the vibration plate is driven to vibrate through the first vibration motor, the vibration plate is used for vibrating and discharging to scatter the tea leaves, the tea leaves are flatly laid on the feeding and conveying mesh belt, tea steaming is facilitated, and the tea leaves are prevented from being knotted and condensed into blocks.
4. According to the tea storage cylinder, the second vibration motor is arranged on the outer side wall of the tea storage cylinder, so that discharging is facilitated, and the situation that tea blocks the discharging hole in the discharging process is avoided.
5. In the tea steaming box, the mesh belt cleaning rollers are respectively arranged below the discharge ends of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt, the mesh belt cleaning rollers are respectively in close contact with the belt surfaces of the feeding conveying mesh belt, the flanging conveying mesh belt and the discharging conveying mesh belt, tea leaves can be attached to the surface of the mesh belt due to moisture in the tea steaming process, the tea leaves cannot automatically fall off in the moving process, and the tea leaves attached to the surface of the mesh belt can be cleaned by the mesh belt cleaning rollers.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the internal structure of the tea steaming box;
fig. 3 is a schematic structural diagram of a tea-leaf delivery mechanism;
FIG. 4 is a schematic structural view of a tea scattering mechanism;
FIG. 5 is a schematic structural view of a feed flattening mechanism;
FIG. 6 is a schematic view of the structure of the cleaning bar;
fig. 7 is a schematic structural view of a steam table.
1. A tea steaming box body; 2. a multi-stage tea steaming mechanism; 3. a feeding conveying mesh belt; 4. a flanging conveying mesh belt; 5. a discharge conveying mesh belt; 6. a steam station; 7. positioning seats; 8. a vapor outlet pipe; 9. a main steam pipe; 10. a steam branch pipe; 11. a steam outlet; 12. a steam inlet pipe; 13. a tea dispensing mechanism; 14. a positioning frame; 15. a first spring damper seat; 16. a tea storage cylinder; 17. a discharge port; 18. a rotating shaft; 19. rake teeth; 20. a rake tooth cleaning mechanism; 21. a retention block; 22. cleaning the ribbon board; 23. cleaning the comb teeth; 24. a tea scattering mechanism; 25. a second spring damper seat; 26. a vibrating plate; 27. a first vibration motor; 28. a second vibration motor; 29. mesh belt cleaning roller.
Detailed Description
The invention is further illustrated by the following figures and examples, which are not to be construed as limiting the invention.
Example (b): a multi-stage tea steaming device is shown in figures 1-7 and comprises a tea steaming box body 1, a multi-stage tea steaming mechanism 2 is arranged in the tea steaming box body 1, and the multi-stage tea steaming mechanism 2 comprises a feeding conveying mesh belt 3, a flanging conveying mesh belt 4 and a discharging conveying mesh belt 5 which are sequentially connected in series from top to bottom; the tea steaming box body 1 is provided with a steam table 6 between the upper conveying belt surface and the lower conveying belt surface of the feeding conveying belt 3, the flanging conveying belt 4 and the discharging conveying belt 5; the steam table 6 comprises a positioning seat 7 arranged on the tea steaming box body 1, a steam outlet pipe 8 is arranged on the positioning seat 7, the steam outlet pipe 8 comprises a steam main pipe 9 arranged on the positioning seat 7, the steam main pipe 9 is connected with a plurality of steam branch pipes 10, and a plurality of upward steam outlets 11 are arranged on the steam branch pipes 10; a steam inlet pipe 12 is arranged on the steam main pipe 9; evaporate tea box 1 and be equipped with tealeaves input mechanism 13 in the top that lies in 3 feed ends of feeding conveying mesh belt, tealeaves input mechanism 13 is equipped with hourglass hopper-shaped's tealeaves storage cylinder 16 including fixing the locating rack 14 on evaporating tea box 1 lateral wall through first spring damper 15 including fixing, tealeaves storage cylinder 16's bottom is equipped with banding discharge gate 17. Firstly, tea leaves are put on the surface of a feeding conveying mesh belt 3 through a tea leaf storage cylinder 16, the tea leaves are tiled on the mesh surface of the feeding conveying mesh belt 3 along with the operation of the feeding conveying mesh belt 3, first-stage tea steaming is carried out under the action of steam generated by a steam table 6, the tea leaves on the feeding conveying mesh belt 3 fall on a flanging conveying mesh belt 4 along with the operation of the feeding conveying mesh belt 3, the tea leaves roll in the process of falling on the flanging conveying mesh belt 4 to complete tea flanging, and second-stage tea steaming is carried out under the action of the steam generated by the steam table 6 along with the conveying motion of the flanging conveying mesh belt 4; along with the operation of turn-ups conveying mesh belt 4, tealeaves on turn-ups conveying mesh belt 4 then falls into ejection of compact conveying mesh belt 5, and fall into the in-process of turn-ups conveying mesh belt 4 at tealeaves, tealeaves rolls once more, and along with ejection of compact conveying mesh belt 5's conveying motion, carry out the third level under the effect of the steam that steam platform 6 produced and evaporate tea, and finally send out tealeaves and evaporate tea box 1 external, accomplish and evaporate tea work, it evaporates tea to utilize multistage tea steaming mechanism 2 to evaporate tea, the effect of evaporating tea is effectively provided, utilize the feeding conveying mesh belt 3 that from the top down sets gradually, turn-ups conveying mesh belt 4 and ejection of compact conveying mesh belt 5 simultaneously, rationally space, make whole volume less, and the time of tealeaves evaporating tea box 1 internal has been prolonged effectively, and can carry out the turn-ups to tealeaves, thereby the tea steaming effect is effectively provided.
As shown in fig. 5, the tea steaming cabinet 1 is provided with a feeding smoothing mechanism at the front end of the feeding conveying mesh belt 3, the feeding smoothing mechanism comprises a rotating shaft 18 arranged above the feeding conveying mesh belt 3, the rotating shaft 18 is provided with a plurality of rake teeth 19 arranged along the axial direction of the rotating shaft 18, and the moving direction of the rotating shaft 18 is opposite to the moving direction of the feeding conveying mesh belt 3. Tea leaves on the surface of the feeding conveying net belt 3 are raked evenly by using the rotating shaft 18 with rake teeth 19, so that the phenomenon that the tea leaves are accumulated thickly locally to cause insufficient tea steaming is avoided. The tea steaming box body 1 is provided with a rake tooth cleaning mechanism 20 at the front end of a rotating shaft 18, the rake tooth cleaning mechanism 20 comprises a cleaning strip plate 22 which is fixed on the tea steaming box body 1 through a retaining block 21 and is parallel to the rotating shaft 18, and cleaning comb teeth 23 which are arranged side by side and are in staggered fit with the rake teeth 19 are arranged on the cleaning strip plate 22; the tea leaf cleaning device can clean tea leaves left on the rake teeth 19 by arranging the rake tooth cleaning mechanism 20 and utilizing the rake tooth cleaning mechanism 20.
The cleaning strips 22 are arranged obliquely downwards.
As shown in fig. 4, the bottom of the tea storage cylinder 16 is provided with a tea scattering mechanism 24 located below the tea outlet 17, the tea scattering mechanism 24 includes a vibration plate 26 fixed by a second spring damper 25 and inclined downward, and the bottom of the vibration plate 26 is provided with a first vibration motor 27. Wherein utilize tealeaves to break up mechanism 24 and break up tealeaves to ejection of compact in-process, mainly drive vibration board 26 vibration through first vibrating motor 27, vibration board 26 then vibrates the ejection of compact and breaks up tealeaves, and with tealeaves tiling on feeding conveying mesh belt 3, and be convenient for evaporate tea, avoid tealeaves to tie a knot and condense the piece.
Be equipped with second vibrating motor 28 on the lateral wall of tealeaves storage cylinder 16, do benefit to and carry out the ejection of compact, avoid ejection of compact in-process tealeaves to plug up discharge gate 17.
The mesh belt aperture of the feeding conveying mesh belt 3, the flanging conveying mesh belt 4 and the discharging conveying mesh belt 5 is 0.5-0.8 mm.
The tea steaming box body 1 is respectively provided with a mesh belt cleaning roller 29 below the discharge ends of the feeding mesh belt 3, the flanging mesh belt 4 and the discharging mesh belt 5, and the mesh belt cleaning roller 29 is respectively in close contact with the belt surfaces of the feeding mesh belt 3, the flanging mesh belt 4 and the discharging mesh belt 5. In the tea steaming process, tea leaves can be attached to the surface of the mesh belt due to humidity and cannot automatically fall off in the moving process, the tea leaves attached to the surface of the mesh belt can be cleaned by arranging the mesh belt cleaning roller 29, and the corresponding mesh belt cleaning roller 29 is opposite to the moving directions of the feeding conveying mesh belt 3, the flanging conveying mesh belt 4 and the discharging conveying mesh belt 5. Wherein the web cleaning roller 29 and the rotating shaft 18 are driven by a motor.
The moving speed of the discharging conveying net belt 5 is greater than that of the flanging conveying net belt 4, the moving speed of the flanging conveying net belt 4 is greater than that of the feeding conveying net belt 3, tea leaves can be scattered in the tea leaf conveying process, accumulation of the tea leaves is avoided, and the tea steaming effect is reduced.
Firstly, tea leaves are put on the surface of a feeding conveying mesh belt 3 through a tea leaf storage cylinder 16, the tea leaves are tiled on the mesh surface of the feeding conveying mesh belt 3 along with the operation of the feeding conveying mesh belt 3, first-stage tea steaming is carried out under the action of steam generated by a steam table 6, the tea leaves on the feeding conveying mesh belt 3 fall on a flanging conveying mesh belt 4 along with the operation of the feeding conveying mesh belt 3, the tea leaves roll in the process of falling on the flanging conveying mesh belt 4 to complete tea flanging, and second-stage tea steaming is carried out under the action of the steam generated by the steam table 6 along with the conveying motion of the flanging conveying mesh belt 4; along with the operation of turn-ups conveying mesh belt 4, tealeaves on turn-ups conveying mesh belt 4 then falls into ejection of compact conveying mesh belt 5, and fall into the in-process of turn-ups conveying mesh belt 4 at tealeaves, tealeaves rolls once more, and along with ejection of compact conveying mesh belt 5's conveying motion, carry out the third level under the effect of the steam that steam platform 6 produced and evaporate tea, and finally send out tealeaves and evaporate tea box 1 external, accomplish and evaporate tea work, it evaporates tea to utilize multistage tea steaming mechanism 2 to evaporate tea, the effect of evaporating tea is effectively provided, utilize the feeding conveying mesh belt 3 that from the top down sets gradually, turn-ups conveying mesh belt 4 and ejection of compact conveying mesh belt 5 simultaneously, rationally space, make whole volume less, and the time of tealeaves evaporating tea box 1 internal has been prolonged effectively, and can carry out the turn-ups to tealeaves, thereby the tea steaming effect is effectively provided.
Claims (9)
1. The utility model provides a multistage tea device that evaporates which characterized in that: the tea steaming device comprises a tea steaming box body (1), wherein a multi-stage tea steaming mechanism (2) is arranged in the tea steaming box body (1), and the multi-stage tea steaming mechanism (2) comprises a feeding conveying mesh belt (3), a flanging conveying mesh belt (4) and a discharging conveying mesh belt (5) which are sequentially connected in series from top to bottom; the tea steaming box body (1) is provided with a steam table (6) between the upper conveying belt surface and the lower conveying belt surface of the feeding conveying mesh belt (3), the flanging conveying mesh belt (4) and the discharging conveying mesh belt (5); the tea steaming table (6) comprises a positioning seat (7) arranged on the tea steaming box body (1), a steam outlet pipe (8) is arranged on the positioning seat (7), the steam outlet pipe (8) comprises a steam main pipe (9) arranged on the positioning seat (7), the steam main pipe (9) is connected with a plurality of steam branch pipes (10), and a plurality of upward steam outlets (11) are arranged on the steam branch pipes (10); a steam inlet pipe (12) is arranged on the steam main pipe (9); evaporate tea box (1) and be equipped with tealeaves input mechanism (13) in the top that lies in feeding conveying mesh belt (3) feed end, tealeaves input mechanism (13) are equipped with a tealeaves storage section of thick bamboo (16) that leaks hopper-shaped through first spring shock mount (15) including fixing locating rack (14) on evaporating tea box (1) lateral wall, locating rack (14), the bottom of tealeaves storage section of thick bamboo (16) is equipped with banding discharge gate (17).
2. The multi-stage tea steaming device according to claim 1, wherein: evaporate tea-box body (1) and be equipped with the feeding and smooth the mechanism at the front end that lies in feeding conveying guipure (3), the feeding smooths the mechanism and includes axis of rotation (18) of setting in feeding conveying guipure (3) top, be equipped with on axis of rotation (18) along a plurality of rake teeth (19) of axis of rotation (18) axial arrangement, the direction of motion of axis of rotation (18) is opposite with the motion of feeding conveying guipure (3).
3. The multi-stage tea steaming device according to claim 2, wherein: evaporate tea box (1) and be equipped with rake teeth clearance mechanism (20) at the front end that lies in axis of rotation (18), rake teeth clearance mechanism (20) include through retention piece (21) fix evaporate tea box (1) on and with axis of rotation (18) parallel clearance slat (22), be equipped with on clearance slat (22) side by side and with rake teeth (19) crisscross complex clearance broach (23).
4. The multi-stage tea steaming device according to claim 3, wherein: the cleaning strip plate (22) is arranged in a downward inclined mode.
5. The multi-stage tea steaming device according to claim 1, wherein: tea leaf storage cylinder (16) bottom is equipped with the tealeaves that is located discharge gate (17) below and breaks up mechanism (24), tealeaves breaks up mechanism (24) and includes through the downward vibration board of the fixed slope of second spring damper (25) (26), the bottom of vibration board (26) is equipped with first vibrating motor (27).
6. The multi-stage tea steaming device according to claim 1, wherein: and a second vibration motor (28) is arranged on the outer side wall of the tea storage cylinder (16).
7. The multi-stage tea steaming device according to claim 1, wherein: the mesh belt aperture of the feeding conveying mesh belt (3), the flanging conveying mesh belt (4) and the discharging conveying mesh belt (5) is 0.5-0.8 mm.
8. The multi-stage tea steaming device according to claim 1, wherein: tea steaming box body (1) is equipped with guipure cleaning roller (29) respectively below the discharge end of feeding conveying guipure (3), turn-ups conveying guipure (4) and ejection of compact conveying guipure (5), guipure cleaning roller (29) respectively with feeding conveying guipure (3), turn-ups conveying guipure (4) and ejection of compact conveying guipure (5) the area face in close contact with.
9. The multi-stage tea steaming device according to claim 1, wherein: the movement speed of the discharging conveying mesh belt (5) is higher than that of the flanging conveying mesh belt (4), and the movement speed of the flanging conveying mesh belt (4) is higher than that of the feeding conveying mesh belt (3).
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CN201911310087.1A CN110973287A (en) | 2019-12-18 | 2019-12-18 | Multistage tea steaming device |
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CN201911310087.1A CN110973287A (en) | 2019-12-18 | 2019-12-18 | Multistage tea steaming device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115669972A (en) * | 2022-11-10 | 2023-02-03 | 四川东柳醪糟有限责任公司 | Rice steaming machine |
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CN205071999U (en) * | 2015-09-18 | 2016-03-09 | 安吉龙王山茶叶开发有限公司 | Tealeaves system of processing |
CN205161773U (en) * | 2015-11-25 | 2016-04-20 | 安徽广美药业股份有限公司 | Steam that chinese -medicinal material was used device that completes |
CN206005779U (en) * | 2016-07-06 | 2017-03-15 | 武夷学院 | Tea machine is steamed automatically |
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JP2001224310A (en) * | 2000-02-10 | 2001-08-21 | Matsushita Kojo:Kk | Feeding belt steamer for tea making |
JP2005073546A (en) * | 2003-08-29 | 2005-03-24 | Kawasaki Kiko Co Ltd | Conveying belt steamer |
JP2012200227A (en) * | 2011-03-28 | 2012-10-22 | Terada Seisakusho Co Ltd | Steamed tea leaf processing apparatus |
CN104543048A (en) * | 2013-10-22 | 2015-04-29 | 梧州市中茗茶业有限公司 | Continuous tea steaming equipment |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115669972A (en) * | 2022-11-10 | 2023-02-03 | 四川东柳醪糟有限责任公司 | Rice steaming machine |
CN115669972B (en) * | 2022-11-10 | 2024-04-02 | 四川东柳醪糟有限责任公司 | Rice steamer |
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Application publication date: 20200410 |