CN214339836U - Net belt conveying and cooling device for tea processing - Google Patents

Net belt conveying and cooling device for tea processing Download PDF

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Publication number
CN214339836U
CN214339836U CN202120179844.2U CN202120179844U CN214339836U CN 214339836 U CN214339836 U CN 214339836U CN 202120179844 U CN202120179844 U CN 202120179844U CN 214339836 U CN214339836 U CN 214339836U
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China
Prior art keywords
belt
plate
cooling device
conveying
tea processing
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CN202120179844.2U
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Chinese (zh)
Inventor
李晓军
黄皓
王斌
苏磊
王小阁
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Hangzhou Efuton Tea Co ltd
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Hangzhou Efuton Tea Co ltd
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Priority to CN202120179844.2U priority Critical patent/CN214339836U/en
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Abstract

The utility model relates to a cooling device technical field, and a cooling device is carried to guipure for tea processing is disclosed, including two backup pads, rotate through first bearing in two backup pads and be connected with a plurality of first live rollers, the second bearing is fixed to be established in the backup pad, install first conveyer belt jointly on a plurality of first live rollers, first conveyer belt is the net setting, it is connected with a plurality of second live rollers to rotate through the second bearing in two backup pads, the second bearing is fixed to be established in the backup pad, install the second transmission band jointly on a plurality of second live rollers, the second transmission band is the net setting, the second transmission band is located first conveyer belt top setting, the second live roller is connected with shakeouts mechanism, shakeouts mechanism includes first belt pulley, reciprocal lead screw. The utility model discloses can shakeout tealeaves on the conveyer belt, save artifical shakeout, labour saving and time saving makes tealeaves more conveniently fall down, increases the cooling effect to tealeaves.

Description

Net belt conveying and cooling device for tea processing
Technical Field
The utility model relates to a cooling device technical field especially relates to a cooling device is carried to guipure for tea processing.
Background
In the field of traditional tea production and processing, the general production process of tea products needing rolling comprises the following steps: airing → fixation → rolling → drying → packaging, the fried tea (fixation process) is transported to the rolling process for processing by a transportation device, the tea temperature is higher at the moment, and the tea needs to be transported by a mesh belt.
Through the retrieval, chinese patent publication No. CN206534040U discloses a tealeaves guipure transport cooler, tealeaves is vibrated and drops toward second net formula conveyer belt, in-process and the cold air contact of casing that drops, accomplish the heat transfer, the radiating process and drop on second net formula conveyer belt and send out the export, the temperature of tealeaves has been reduced, in addition first net formula conveyer belt of itself, the radiating effect of the net of second net formula conveyer belt, can reduce the tealeaves temperature after completing to the maximize, be favorable to twisting the development of following processes such as, above-mentioned patent still has following defect:
when placing tealeaves on the conveyer belt, tealeaves is piled up easily, can't shakeout on the conveyer belt, needs the manual work to pave tealeaves, wastes time and energy, extravagant labour.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the prior art in order to place tealeaves on the transmission band when, tealeaves piles up easily, can't spread on the transmission band, needs the manual work to pave tealeaves, wastes time and energy, extravagant labour problem, and the guipure transport cooling device for tea processing who provides.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a mesh belt conveying and cooling device for tea processing comprises two supporting plates, wherein a plurality of first rotating rollers are rotatably connected onto the two supporting plates through first bearings, the first bearings are fixedly arranged on the supporting plates, a first conveying belt is jointly arranged on the first rotating rollers and is arranged in a grid mode, a plurality of second rotating rollers are rotatably connected onto the two supporting plates through second bearings, the second bearings are fixedly arranged on the supporting plates, a second conveying belt is jointly arranged on the second rotating rollers and is arranged in a grid mode, the second conveying belt is arranged above the first conveying belt, and the second rotating rollers are connected with a flattening mechanism;
shakeout mechanism includes first belt pulley, reciprocal lead screw, second belt pulley, belt, screw hole and movable plate, first belt pulley fixed connection is in the one end of the second live-rollers that corresponds, reciprocal lead screw passes through the third bearing and rotates the connection in the backup pad, the third bearing is fixed to be established in the backup pad, second belt pulley fixed connection is in the one end of reciprocal lead screw, the belt is installed on first belt pulley and second belt pulley, the screw hole is seted up on the movable plate, reciprocal lead screw pass the screw hole and with screw hole threaded connection, movable plate and backup pad are connected with slide mechanism jointly.
Preferably, the sliding mechanism comprises a fixed plate, a sliding block and a sliding groove, the two ends of the fixed plate are respectively and fixedly connected to the corresponding fixed plates, the sliding block is fixedly connected to one end, close to the supporting plate, of the moving plate, the sliding groove is formed in one side, close to the moving plate, of the fixed plate, and the sliding block is connected to the sliding groove in a sliding mode.
Preferably, a ball groove is formed in one end, close to the bottom of the sliding groove, of the sliding block, a ball is connected in the ball groove in a rolling mode, and one end, far away from the bottom of the ball groove, of the ball penetrates through a groove opening of the ball groove and is connected to the groove opening of the ball groove in a rolling mode.
Preferably, the groove opening of the ball groove is closed, and the diameter of the ball is larger than that of the groove opening of the ball groove.
Preferably, the bottom of the moving plate is symmetrically and fixedly connected with a silica gel plate.
Preferably, the bottoms of the two support plates are fixedly connected with a stabilizing plate.
Compared with the prior art, the utility model provides a cooling device is carried to guipure for tea processing possesses following beneficial effect:
this cooling device is carried to guipure for tea processing constitutes a shakeout mechanism through setting up first belt pulley, reciprocal lead screw, second belt pulley, belt, screw hole and movable plate, can shakeout tealeaves on the conveyer belt, has saved artifical shakeout, and labour saving and time saving saves the labour, makes tealeaves more conveniently fall down, increases the cooling effect to tealeaves.
The part that does not relate to in the device all is the same with prior art or can adopt prior art to realize, the utility model discloses can shakeout tealeaves on the transmission band, save artifical shakeout, labour saving and time saving makes tealeaves more conveniently fall, increases the cooling effect to tealeaves.
Drawings
Fig. 1 is a schematic structural view of a mesh belt conveying and cooling device for tea processing according to the present invention;
FIG. 2 is a cross-sectional view taken along line A-A of FIG. 1;
fig. 3 is an enlarged view of a portion B in fig. 2.
In the figure: the automatic leveling device comprises a support plate 1, a first rotating roller 2, a first transmission belt 3, a second rotating roller 4, a second transmission belt 5, a leveling mechanism 6, a first belt pulley 61, a reciprocating screw rod 62, a second belt pulley 63, a belt 64, a threaded hole 65, a movable plate 66, a sliding mechanism 7, a fixed plate 71, a sliding block 72, a sliding groove 73, a ball groove 8, balls 9, a stabilizing plate 10 and a silica gel plate 11.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, a mesh belt conveying and cooling device for tea processing comprises two support plates 1, wherein the two support plates 1 are rotatably connected with a plurality of first rotating rollers 2 through first bearings, the first bearings are fixedly arranged on the support plates 1, a first conveying belt 3 is jointly arranged on the plurality of first rotating rollers 2, the first conveying belt 3 is arranged in a grid manner, the two support plates 1 are rotatably connected with a plurality of second rotating rollers 4 through second bearings, the second bearings are fixedly arranged on the support plates 1, a second conveying belt 5 is jointly arranged on the plurality of second rotating rollers 4, the second conveying belt 5 is arranged in a grid manner, the second conveying belt 5 is arranged above the first conveying belt 3, and the second rotating rollers 4 are connected with a flattening mechanism 6;
the flattening mechanism 6 comprises a first belt pulley 61, a reciprocating screw rod 62, a second belt pulley 63, a belt 64, a threaded hole 65 and a moving plate 66, the first belt pulley 61 is fixedly connected with one end of the corresponding second rotating roller 4, the reciprocating screw rod 62 is rotatably connected on the support plate 1 through a third bearing, the third bearing is fixedly arranged on the support plate 1, the second belt pulley 63 is fixedly connected with one end of the reciprocating screw rod 62, the belt 64 is arranged on the first belt pulley 61 and the second belt pulley 63, the threaded hole 65 is arranged on the moving plate 66, the reciprocating screw rod 62 passes through the threaded hole 65 and is in threaded connection with the threaded hole 65, the moving plate 66 and the support plate 1 are jointly connected with a sliding mechanism 7, tea leaves are placed on a second transmission belt 5, the second rotating roller 4 drives the first belt pulley 61 to rotate, the first belt pulley 61 drives the belt 64 to rotate, the belt 64 drives the second belt pulley 63 to rotate, the second belt pulley 63 drives the reciprocating screw rod 62 to rotate, the moving plate 66 does reciprocating motion on the reciprocating screw rod 62, the moving plate 66 flatly lays the tea leaves on the second conveying belt 5, the tea leaves can be flatly laid on the conveying belt, manual flatly laying is omitted, time and labor are saved, the tea leaves can fall more conveniently, and the cooling effect on the tea leaves is improved.
The sliding mechanism 7 comprises a fixed plate 71, a sliding block 72 and a sliding groove 73, two ends of the fixed plate 71 are respectively and fixedly connected to the corresponding fixed plate 71, the sliding block 72 is fixedly connected to one end, close to the support plate 1, of the moving plate 66, the sliding groove 73 is formed in one side, close to the moving plate 66, of the fixed plate 71, and the sliding block 72 is slidably connected to the sliding groove 73, so that the moving plate 66 is more stable and is not prone to shaking.
The ball groove 8 has been seted up to the one end that slider 72 is close to the spout 73 tank bottom, and the ball 9 is connected with in the ball groove 8 rolls, and the one end that ball 9 kept away from the ball groove 8 tank bottom passes the notch of ball groove 8 and roll connection in the notch of ball groove 8, makes slider 72 remove more smoothly, is difficult for blocking.
The notch of ball groove 8 sets up for closing up, and ball 9 diameter is greater than the notch diameter in ball groove 8, makes ball 9 can not break away from ball groove 8.
The bottom of the moving plate 66 is symmetrically and fixedly connected with the silica gel plate 11, so that the tea leaf flattening effect is good.
The bottom of the two supporting plates 1 is fixedly connected with a stabilizing plate 10, so that the supporting plates 1 are more stable, strong in bearing capacity and not easy to shake.
The utility model discloses in, place tealeaves on second transmission band 5, second live-rollers 4 drives first belt pulley 61 and rotates, first belt pulley 61 drives belt 64 and rotates, belt 64 drives second belt pulley 63 and rotates, second belt pulley 63 drives reciprocal lead screw 62 and rotates, reciprocating motion is to movable plate 66 on reciprocal lead screw 62, movable plate 66 is tealeaves tiling on second transmission band 5, can flatten tealeaves on the transmission band, first transmission band staggers with the second transmission band and arranges. The tea leaf cooling machine saves labor and time, saves labor, enables tea leaves to fall more conveniently, and increases the cooling effect on the tea leaves.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A mesh belt conveying and cooling device for tea processing, which comprises two supporting plates (1), it is characterized in that a plurality of first rotating rollers (2) are rotatably connected on the two supporting plates (1) through first bearings, the first bearing is fixedly arranged on the supporting plate (1), a plurality of first rotating rollers (2) are jointly provided with a first transmission belt (3), the first transmission belt (3) is arranged in a grid manner, a plurality of second rotating rollers (4) are rotatably connected to the two supporting plates (1) through second bearings, the second bearings are fixedly arranged on the supporting plate (1), a plurality of second rotating rollers (4) are jointly provided with a second conveying belt (5), the second conveying belt (5) is arranged in a grid mode, the second conveying belt (5) is arranged above the first conveying belt (3), and the second rotating roller (4) is connected with a flattening mechanism (6);
the flattening mechanism (6) comprises a first belt pulley (61), a reciprocating screw rod (62), a second belt pulley (63), a belt (64), a threaded hole (65) and a moving plate (66), the first belt pulley (61) is fixedly connected with one end of the corresponding second rotating roller (4), the reciprocating screw rod (62) is rotationally connected to the support plate (1) through a third bearing, the third bearing is fixedly arranged on the support plate (1), the second belt pulley (63) is fixedly connected with one end of the reciprocating screw rod (62), the belt (64) is mounted on a first pulley (61) and a second pulley (63), the threaded hole (65) is arranged on the moving plate (66), the reciprocating screw rod (62) passes through the threaded hole (65) and is in threaded connection with the threaded hole (65), the moving plate (66) and the support plate (1) are connected with a sliding mechanism (7) together.
2. The mesh belt conveying and cooling device for tea processing according to claim 1, wherein the sliding mechanism (7) comprises a fixed plate (71), a sliding block (72) and a sliding groove (73), two ends of the fixed plate (71) are respectively and fixedly connected to the corresponding fixed plate (71), the sliding block (72) is fixedly connected to one end of the moving plate (66) close to the support plate (1), the sliding groove (73) is arranged on one side of the fixed plate (71) close to the moving plate (66), and the sliding block (72) is slidably connected in the sliding groove (73).
3. The mesh belt conveying and cooling device for tea processing as claimed in claim 2, wherein the end of the slide block (72) close to the bottom of the slide groove (73) is provided with a ball groove (8), a ball (9) is connected in the ball groove (8) in a rolling manner, and the end of the ball (9) far away from the bottom of the ball groove (8) passes through the notch of the ball groove (8) and is connected in the notch of the ball groove (8) in a rolling manner.
4. The mesh belt conveying cooling device for tea processing as claimed in claim 3, wherein the notch of the ball groove (8) is closed, and the diameter of the ball (9) is larger than that of the notch of the ball groove (8).
5. The mesh belt conveying and cooling device for tea processing as claimed in claim 1, wherein a silica gel plate (11) is symmetrically and fixedly connected to the bottom of the moving plate (66).
6. The mesh belt conveying and cooling device for tea processing as claimed in claim 1, wherein the bottom of two support plates (1) is fixedly connected with a stabilizing plate (10).
CN202120179844.2U 2021-01-22 2021-01-22 Net belt conveying and cooling device for tea processing Active CN214339836U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120179844.2U CN214339836U (en) 2021-01-22 2021-01-22 Net belt conveying and cooling device for tea processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120179844.2U CN214339836U (en) 2021-01-22 2021-01-22 Net belt conveying and cooling device for tea processing

Publications (1)

Publication Number Publication Date
CN214339836U true CN214339836U (en) 2021-10-08

Family

ID=77958446

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120179844.2U Active CN214339836U (en) 2021-01-22 2021-01-22 Net belt conveying and cooling device for tea processing

Country Status (1)

Country Link
CN (1) CN214339836U (en)

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