CN218650071U - Tea leaf rolling machine - Google Patents

Tea leaf rolling machine Download PDF

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Publication number
CN218650071U
CN218650071U CN202223400934.3U CN202223400934U CN218650071U CN 218650071 U CN218650071 U CN 218650071U CN 202223400934 U CN202223400934 U CN 202223400934U CN 218650071 U CN218650071 U CN 218650071U
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China
Prior art keywords
fixedly connected
inner chamber
shell
tealeaves
fixed cylinder
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CN202223400934.3U
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Chinese (zh)
Inventor
李东云
梁代玺
李东才
阳忠首
李梦田
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Guangxi Lingyun Yijian Tea Industry Co ltd
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Guangxi Lingyun Yijian Tea Industry Co ltd
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Abstract

The utility model belongs to the technical field of tea processing, specific machine is kneaded to tealeaves that says so, including the guide slide rail, the middle part fixedly connected with of guide slide rail inner chamber holds the bucket, the equal sliding connection in both sides of guide slide rail inner chamber has guide slider, front portion the leading merger of inner chamber fixedly connected with of guide slider, rear portion the device is kneaded to the inner chamber fixedly connected with of guide slider. The device is carrying out the during operation of kneading of tealeaves, not only can utilize the machine to replace artifical and continuously carry out work, tealeaves can also be because self gravity's effect piles up the bottom of outside solid fixed cylinder gradually at the in-process of kneading, and then make the interior rotary drum upwards raise tealeaves at high-speed pivoted in-process, the leading shell of inserting this moment is lived outside solid fixed cylinder parcel, guarantee tealeaves can not be at the in-process departure of kneading, also make tealeaves can not pile up together simultaneously, cause tealeaves to knead insufficient problem.

Description

Tea leaf rolling machine
Technical Field
The utility model belongs to the technical field of tea processing, specific machine is kneaded to tealeaves that says so.
Background
Tea leaves are prepared by picking young shoots or new leaves of tea trees as raw materials and performing a series of preparation processes, wherein the rolling process is particularly important for the preparation of vegetable leaves, and the rolling is a primary molding process of oolong tea, and the rolling is used for forming a tightly-curved shape and influencing the improvement of the inner quality. Rolling can be carried out to wind up tea strips, the volume is reduced, a foundation is laid for frying the tea strips to be dry, the leaf tissue and the substance are properly damaged, the rolling can be divided into hot rolling and cold rolling, the hot rolling refers to rolling when the tea leaves are not cooled in a spread mode, and the cold rolling refers to rolling when the tea leaves are taken out of a pot and cooled in a spread mode for a period of time to reduce the temperature of the tea leaves to a certain degree.
The tea leaf rolling machine is used for rolling and processing tea leaves, so that high production efficiency is guaranteed, the tea leaves are soft, and if the rolling speed is too high, the tea leaves are easy to roll and crush, so that a large amount of scraps are contained in the tea leaves, and the rolled tea leaves are easy to accumulate in the rolling machine and are difficult to take out, so that improvement is needed.
SUMMERY OF THE UTILITY MODEL
To the not enough of prior art, the utility model provides a technical scheme that its technical problem adopted is: a tea leaf rolling machine comprises a guide slide rail, wherein the middle part of an inner cavity of the guide slide rail is fixedly connected with a containing barrel, two sides of the inner cavity of the guide slide rail are respectively connected with a guide sliding block in a sliding manner, the inner cavity of the front guide sliding block is fixedly connected with a front combining device, the inner cavity of the rear guide sliding block is fixedly connected with a rolling device, and the top of the inner cavity of the rolling device is inserted with a feeding device; the twisting device comprises an external fixing barrel, wherein adaptive clamping frames are fixedly connected to two sides of the top of an inner cavity of the external fixing barrel through penetrating grooves, veneering modified rods are uniformly arranged in the inner cavity of the external fixing barrel, a solid torsion bar is rotatably connected to the axis of the back of the inner cavity of the external fixing barrel, a torque motor is fixedly connected to the rear end of the solid torsion bar, the surface of a shell of the torque motor is fixedly connected with the inner cavity of a back guide sliding block through a vertical fixing plate, a splicing base plate is fixedly connected to the front part of the surface of the solid torsion bar, one side, away from the solid torsion bar, of the splicing base plate is slidably connected with a groove-cutting sliding sleeve, and the surface of the groove-cutting sliding sleeve is slidably connected with an inner rotating barrel; before using the device to knead work to tealeaves, need add tealeaves to the inside of kneading the device through the feeding device directly over earlier, the anterior guide slider of this moment is pulled forward, and the guide slider at rear portion is pulled backward, and then makes leading merge device and knead the device and separate gradually, and the adaptation card frame of outside fixed cylinder inner chamber top both sides is opened this moment, and feeding device passes through the inside that the adaptation card frame added tealeaves and knead the device. At the in-process that feeding device added tealeaves, torque motor carries out slow rotation through the interior rotary drum of solid torsion bar control, and the grooving sliding sleeve of interior rotary drum inner chamber passes through the frictional force on top and removes the below of outside solid fixed cylinder inner chamber with tealeaves uniform friction, and final tealeaves piles up the position that outside fixed cylinder inner chamber is partially down under the effect of self gravity. The device's grooving sliding sleeve kneads processing through the extrusion force with wainscot repacking pole surface to tealeaves, because the grooving sliding sleeve can slide along the surface of grafting base plate, wainscot repacking pole self also can take place deformation effect, so the power of kneading that tealeaves received can not be too big, and then at the high-speed rotatory in-process of torque motor, the phenomenon that the atress is too big and is crushed can not appear in tealeaves to reduce tealeaves piece of tealeaves kneading the in-process production, and then guarantee the output and the quality of tealeaves.
Preferably, one side of the inner cavity of the veneering modified rod, which is close to the solid torsion rod, is symmetrically provided with through grooves, the inner cavity of the veneering modified rod is fixedly connected with an arc filling plate through the through grooves, and one side of the inner cavity of the arc filling plate, which is close to the solid torsion rod, is fixedly connected with a filter ribbon board. When kneading work, with leading merge device and kneading device closure gradually, the adaptation card frame of outside fixed section of thick bamboo top both sides is plugged up by leading merge device this moment, then solid torsion bar is rotated at a high speed, and then pull interior rotary drum fast revolution, the top of grooving sliding sleeve can take place the friction with the surface of tealeaves this moment, especially during the facing repacking pole that the cooperation corresponds, when the top of grooving sliding sleeve and the surface of facing repacking pole take place the contact, the grooving sliding sleeve can slide to the one side that is close to solid torsion bar because of the extrusion force this moment, and then slide along the grafting base plate, the power of kneading that tealeaves received at this moment is the biggest, when tealeaves moves the position at middle part because of frictional force, tealeaves can fall the below because of the influence of self gravity, and then carry out the work of kneading of tealeaves repeatedly. The device is carrying out the during operation of kneading of tealeaves, not only can utilize the machine to replace artifical and continuously carry out work, tealeaves can also be because self gravity's effect piles up the bottom of outside solid fixed cylinder gradually at the in-process of kneading, and then make the interior rotary drum upwards raise tealeaves at high-speed pivoted in-process, the leading shell of inserting this moment is lived outside solid fixed cylinder parcel, guarantee tealeaves can not be at the in-process departure of kneading, also make tealeaves can not pile up together simultaneously, cause tealeaves to knead insufficient problem.
Preferably, leading merge device inserts the shell including leading, leading shell inner chamber of inserting keeps away from the axle center department fixedly connected with drainage cover shell of outside solid fixed cylinder one side, leading shell inner chamber of inserting is close to the even fixedly connected with adaptation in one side of outside solid fixed cylinder and inserts the shell, leading one end fixedly connected with that the outer solid fixed cylinder was kept away from to insert the shell inner chamber aerifys the spray tube. Tea is after kneading, need take out in the inner chamber of outside solid fixed cylinder, adopt the method of empting, tealeaves can block and be difficult to take out in the inner chamber of outside solid fixed cylinder, so after kneading, outside solid fixed cylinder is before the separation of shell with leading inserting, blast air effect through aerifing the spray tube, make the inside gas reflux of outside solid fixed cylinder, outwards release the tealeaves of outside solid fixed cylinder inner chamber, thereby make the tealeaves of outside solid fixed cylinder inner chamber depths discharge fast and go out, also can avoid appearing the problem that part tealeaves card is difficult to take out in the crack of device inside.
Preferably, the one end that the shell was kept away from outside solid fixed cylinder is inserted through interface and leading inner chamber fixed connection who inserts the shell to the adaptation, one side that the shell surface is close to outside solid fixed cylinder is inserted in the adaptation and the inner chamber sliding connection of wainscot repacking pole, the leading inner chamber that inserts the shell and the surface sliding connection of outside solid fixed cylinder, the leading one side fixedly connected with of inserting the shell inner chamber and keeping away from outside solid fixed cylinder surveys the clamping ring, survey the both ends of clamping ring and all pass through external conductor fixedly connected with retinue instrument. After the tealeaves is kneaded, the inner wall of the preposed insertion shell is not separated from the surface of the external fixed cylinder, the inflatable spray pipe is started at the moment, the inflatable spray pipe inflates and pressurizes the left side of the preposed insertion shell inner cavity through a drainage casing, because the preposed insertion shell is sleeved on the surface of the external fixed cylinder, each adaptation insertion shell can be inserted into the interior of the veneering refitting rod, gas can be inserted into the interior of the veneering refitting rod through each adaptation insertion shell, then the space at the back of the inner rotary cylinder inner cavity is passed through, the filter plate slides towards one side right opposite to the preposed insertion shell, and then tea scraps remained in the inner rotary cylinder outer surface and the external fixed cylinder inner cavity are blown out, then the inner wall of the preposed insertion shell is slowly separated from the surface of the external fixed cylinder, at the moment, the kneading device still blows air towards the inner wall of the preposed insertion shell through the backflow of the gas, scraps of the external fixed cylinder inner wall are blown into the preposed insertion shell, and collection work is completed. Because the in-process of blast air is being carried out to the drainage cover shell, can insert shell left port to the adaptation and clear up the work, the pressure measuring ring can be because of plugging up the adaptation and insert the left end opening of shell and plug up this moment, and the pressure measuring ring is compressed under the effect of atmospheric pressure, and the wire through both sides gives the instrument of accompanying with data conduction, prevents to aerify the spray tube and spouts the wind too big, blows off the tealeaves of outside solid fixed cylinder inner chamber and can't fall into the problem that holds the bucket under accurately. At the in-process of aerifing the spray tube air-blast, if aerify spray tube spun wind-force too big, then the strong atmosphere of backward flow can blow tealeaves and fly to the farther place in outside, makes tealeaves can't accurately fall into the bucket that holds directly under, so set up and surveyed the clamping ring, and numerical value through the instrument of following is advanced and the effect of blowing of accurate control adaptation plug shell avoids appearing above-mentioned problem.
Preferably, one end, far away from the front insertion shell, of the veneering refitted rod is fixedly connected with one side, far away from the front insertion shell, of an inner cavity of the outer fixed cylinder through a socket, one side, far away from the front insertion shell, of the inner cavity of the outer fixed cylinder is fixedly connected with a filter plate through a diversion chamber, the inner cavity of the solid torsion bar is slidably connected with the inner cavity of the outer fixed cylinder through a bearing rotating column, and one end, far away from the solid torsion bar, of the insertion base plate is fixedly connected with the inner cavity of the cutting groove sliding sleeve through a spring band. The feeding device comprises a storage top barrel, a top fixedly connected with one-way ventilating plate of an inner cavity of the storage top barrel, a rotation motor is fixedly connected with the top of the surface of the one-way ventilating plate in the axis center, feeding pipes are fixedly connected with the two sides of the bottom of the inner cavity of the storage top barrel through sockets, one-way fan blades are fixedly connected with the top of the surface of a motor output shaft, a side position rotating plate is uniformly inserted into the surface of the motor output shaft, and plug-in components are fixedly connected with the two sides of the inner cavity of the storage top barrel. In the in-process of adding tealeaves, rotate the one-way flabellum of motor control and constantly rotate with side position commentaries on classics board, because the inner chamber at storage top bucket is piled up easily to tealeaves through the feeding pipe interpolation, and then cause the problem of adaptation plug-in components top opening jam, so the side position commentaries on classics board is at the pivoted in-process, can sweep into the inside of adaptation plug-in components with the tealeaves of piling up in storage top bucket inner chamber bottom, then tealeaves directly drops through the adaptation plug-in components and gets into the outside fixed cylinder, and the protruding ball of storage top bucket inner chamber bottom can take place the relative extrusion with the lower surface of side position commentaries on classics board, and then make the side position commentaries on classics board take place the phenomenon of beating at the pivoted in-process, thereby strike the bottom of storage top bucket downwards, the effect of blowing of cooperation one-way flabellum.
Preferably, the axis of the top of the surface of the storage top barrel is fixedly connected with a lifting rod, one end, close to the rotating motor, of the side position rotating plate is connected with an inner cavity of an output shaft of the rotating motor in a sliding mode through a vertical sliding groove, the top of the surface of the side position rotating plate is fixedly connected with the bottom of the surface of the one-way ventilating plate through a spring band, and the bottom of the inner cavity of the storage top barrel is fixedly connected with a section pushing ball. The adaptation plug-in components comprise a turbine rotating cylinder, two ends of an inner cavity of the turbine rotating cylinder are fixedly connected with hollow rotating arms through production ports, the top of the adaptation plug-in components is fixedly connected with a vertical shell, and two sides of the inner cavity of the vertical shell are both connected with vibration baffles in a sliding mode. When tealeaves passes through the adaptation plug-in components, the shell guide tealeaves lapse of adaptation plug-in components to the turbine rotary drum of both sides is bled the inner chamber of adaptation plug-in components, thereby makes the tealeaves that gets into the adaptation plug-in components separate to the direction of pressing close to both sides vibration baffle, and turbine rotary drum stop work afterwards, the vibration baffle reciprocating vibration of both sides pushes tealeaves to in the outside fixed cylinder of below.
Preferably, one side of the vibration baffle close to the turbine rotating cylinder is fixedly connected with the inner cavity of the vertical shell through a spring band, one end of the hollow rotating arm far away from the turbine rotating cylinder is fixedly connected with the inner cavity of the vertical shell through a socket, and the surface of the adaptive plug-in is in sliding connection with the inner cavity of the adaptive clamping frame. Because the inner chamber at storage top bucket is piled up easily to tealeaves through feeding pipe interpolation, and then causes the problem of adaptation plug-in components top opening jam, so all modified the inner chamber of storage top bucket and the inner chamber of adaptation plug-in components, make storage top bucket under the condition of piling up tealeaves in inside, still can carry the inside of outside fixed cylinder with tealeaves smoothly, when need not carry tealeaves through feeding pipe in succession, guarantee storage top bucket and lead to the material effect.
Before carrying out tea processing, earlier fill more tealeaves to the inner chamber of storage top bucket through throwing the material pipe, then pull open leading merging devices and knead the device, push down feeding device, carry the inner chamber of outside fixed cylinder with tealeaves after adaptation plug-in components and the switch-on of adapter card frame, later cup joint leading merging devices again and knead the device surface, start-up torque motor kneads processing to tealeaves, the processing finishes the back and starts to aerify the spray tube and ventilate, separate leading merging devices once more afterwards and knead the device, tealeaves drops under the blowing of air current and holds in the bucket.
The beneficial effects of the utility model are as follows:
1. the device is carrying out the during operation of kneading of tealeaves, not only can utilize the machine to replace artifical and continuously carry out work, tealeaves can also be because self gravity's effect piles up the bottom of outside solid fixed cylinder gradually at the in-process of kneading, and then make the interior rotary drum upwards raise tealeaves at high-speed pivoted in-process, the leading shell of inserting this moment is lived outside solid fixed cylinder parcel, guarantee tealeaves can not be at the in-process departure of kneading, also make tealeaves can not pile up together simultaneously, cause tealeaves to knead insufficient problem.
2. The device's grooving sliding sleeve kneads processing through the extrusion force with wainscot repacking pole surface to tealeaves, because the grooving sliding sleeve can slide along the surface of grafting base plate, wainscot repacking pole self also can take place deformation effect, so the power of kneading that tealeaves received can not be too big, and then at the high-speed rotatory in-process of torque motor, the phenomenon that the atress is too big and is crushed can not appear in tealeaves to reduce tealeaves piece of tealeaves kneading the in-process production, and then guarantee the output and the quality of tealeaves.
3. Tea is after rolling, need take out from the inner chamber of outside solid fixed cylinder, adopt the method of empting, tealeaves may block and be difficult to take out in the inner chamber of outside solid fixed cylinder, so after rolling, before the separation of outside solid fixed cylinder and leading plug shell, blast air effect through aerifing the spray tube, make the inside gas reflux of outside solid fixed cylinder, outwards release the tealeaves of outside solid fixed cylinder inner chamber, thereby make the tealeaves of the interior chamber depths of outside solid fixed cylinder discharge fast and go out, also can avoid appearing the problem that partial tealeaves card is difficult to take out in the crack of device inside.
4. At the in-process of aerifing the spray tube air-blast, if aerify spray tube spun wind-force too big, then the strong atmosphere of backward flow can blow tealeaves and fly to the farther place in outside, makes tealeaves can't accurately fall into the bucket that holds directly under, so set up and surveyed the clamping ring, and numerical value through the instrument of following is advanced and the effect of blowing of accurate control adaptation plug shell avoids appearing above-mentioned problem.
5. Because the inner chamber at storage top bucket is piled up easily to tealeaves through feeding pipe interpolation, and then causes the problem of adaptation plug-in components top opening jam, so all modified the inner chamber of storage top bucket and the inner chamber of adaptation plug-in components, make storage top bucket under the condition of piling up tealeaves in inside, still can carry the inside of outside fixed cylinder with tealeaves smoothly, when need not carry tealeaves through feeding pipe in succession, guarantee storage top bucket and lead to the material effect.
Drawings
Fig. 1 is a front view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
FIG. 3 is a cross-sectional view of the outer stationary barrel of the present invention;
FIG. 4 is a schematic structural view of the veneered refitted pole of the present invention;
FIG. 5 is a schematic structural view of the external fixing cylinder of the present invention;
fig. 6 is a cross-sectional view of the pre-merger device of the present invention;
fig. 7 is a sectional view of the feeding device of the present invention;
figure 8 is a cross-sectional view of the adapter insert of the present invention.
In the figure: 1. a guide rail; 11. a containing barrel; 12. a guide slide block; 3. a twisting device; 31. an outer fixed cylinder; 32. an adapter card frame; 33. a solid torsion bar; 34. inserting a substrate; 35. an inner drum; 36. cutting a sliding sleeve; 37. a torque motor; 38. a bearing rotating column; 39. a filter plate block; 4. a veneered refitted rod; 41. an arc-shaped filling plate; 42. filtering the ribbon board; 2. a pre-merge device; 21. a front insertion shell; 22. a drainage casing; 23. an inflation nozzle; 24. adapting the plug shell; 25. measuring a pressure ring; 26. a follower gauge; 5. a feeding device; 51. storing the top barrel; 52. a feeding pipe; 53. a lifting rod; 54. rotating the motor; 55. a unidirectional fan blade; 56. a one-way ventilation board; 57. a lateral rotating plate; 6. an adapter plug-in; 61. a turbine rotor; 62. vibrating the baffle; 63. a vertical housing.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.
Example one
Referring to fig. 1-6, the present invention provides a technical solution: a tea rolling machine comprises a guide slide rail 1, wherein the middle part of the inner cavity of the guide slide rail 1 is fixedly connected with a containing barrel 11, two sides of the inner cavity of the guide slide rail 1 are both connected with guide slide blocks 12 in a sliding manner, the inner cavity of the front guide slide block 12 is fixedly connected with a front merging device 2, the inner cavity of the rear guide slide block 12 is fixedly connected with a rolling device 3, and the top of the inner cavity of the rolling device 3 is inserted with a feeding device 5;
the twisting device 3 comprises an external fixed cylinder 31, both sides of the top of the inner cavity of the external fixed cylinder 31 are fixedly connected with adaptive clamping frames 32 through penetrating grooves, the inner cavity of the external fixed cylinder 31 is uniformly provided with veneering refitted rods 4, the axis of the back of the inner cavity of the external fixed cylinder 31 is rotatably connected with a solid torsion bar 33, the rear end of the solid torsion bar 33 is fixedly connected with a torque motor 37, the surface of the shell of the torque motor 37 is fixedly connected with the inner cavity of the back guide sliding block 12 through a vertical fixed plate, the front part of the surface of the solid torsion bar 33 is fixedly connected with a plug-in substrate 34, one side of the plug-in substrate 34, which is far away from the solid torsion bar 33, is slidably connected with a groove sliding sleeve 36, and the surface of the groove sliding sleeve 36 is slidably connected with an inner rotating cylinder 35;
one side of the inner cavity of the veneering refitted rod 4 close to the solid torsion bar 33 is symmetrically provided with a through groove, the inner cavity of the veneering refitted rod 4 is fixedly connected with an arc-shaped filling plate 41 through the through groove, and one side of the inner cavity of the arc-shaped filling plate 41 close to the solid torsion bar 33 is fixedly connected with a filter slat 42.
Leading merge device 2 includes leading shell 21 of inserting, and leading shell 21 inner chamber is kept away from the axle center department fixedly connected with drainage cover shell 22 of outside solid fixed cylinder 31 one side, and leading shell 21 inner chamber is close to the even fixedly connected with adaptation of one side of outside solid fixed cylinder 31 and is inserted shell 24, and leading shell 21 inner chamber is kept away from the one end fixedly connected with inflation nozzle 23 of outside solid fixed cylinder 31.
The one end that shell 24 was kept away from outside solid fixed cylinder 31 is inserted to the adaptation passes through the interface and the leading inner chamber fixed connection who inserts shell 21, 24 surfaces of shell are inserted to the adaptation and are close to one side of outside solid fixed cylinder 31 and the inner chamber sliding connection of wainscot repacking pole 4, the leading inner chamber that inserts shell 21 and the surface sliding connection of outside solid fixed cylinder 31, the leading one side fixedly connected with pressure measuring ring 25 that the shell 21 inner chamber was kept away from outside solid fixed cylinder 31 that inserts, pressure measuring ring 25's both ends are all through external conductor fixedly connected with retinue instrument 26.
One end of the veneering refitted rod 4, which is far away from the front insertion shell 21, is fixedly connected with one side, which is far away from the front insertion shell 21, of the inner cavity of the external fixed cylinder 31 through a socket, one side, which is far away from the front insertion shell 21, of the inner cavity of the external fixed cylinder 31 is fixedly connected with a filter plate block 39 through a flow conversion chamber, the inner cavity of the solid torsion bar 33 is slidably connected with the inner cavity of the external fixed cylinder 31 through a bearing rotating column 38, and one end, which is far away from the solid torsion bar 33, of the insertion base plate 34 is fixedly connected with the inner cavity of the grooving sliding sleeve 36 through a spring band.
Before using the device to knead the work to tealeaves, need earlier add tealeaves to the inside of kneading device 3 through feeding device 5 directly over, anterior guide slider 12 is drawn forward this moment, and the guide slider 12 at rear portion is drawn backward, and then makes leading merge device 2 and knead device 3 and separate gradually, and the adaptation card frame 32 of outside fixed cylinder 31 inner chamber top both sides is opened this moment, and feeding device 5 adds tealeaves through adaptation card frame 32 and kneads the inside of device 3.
In the process of adding tea leaves by the feeding device 5, the torque motor 37 controls the inner rotary drum 35 to slowly rotate through the solid torsion bar 33, the slotted sliding sleeve 36 in the inner cavity of the inner rotary drum 35 uniformly rubs and moves the tea leaves to the lower part of the inner cavity of the outer fixed drum 31 through the friction force at the top end, and finally the tea leaves are accumulated at the lower position of the inner cavity of the outer fixed drum 31 under the action of self gravity.
When kneading work is carried out, the preposed combining device 2 and the kneading device 3 are gradually closed, the adapter clamping frames 32 on two sides above the external fixed barrel 31 are blocked by the preposed combining device 2 at the moment, then the solid torsion bar 33 is rotated at a high speed, and the inner rotary barrel 35 is further pulled to rotate rapidly, at the moment, the top end of the cutting groove sliding sleeve 36 can rub the surface of tea leaves, especially when the cutting groove sliding sleeve 36 is matched with the veneering refitting rod 4 corresponding to the veneering refitting rod 4, when the top end of the cutting groove sliding sleeve 36 is contacted with the surface of the veneering refitting rod 4, the cutting groove sliding sleeve 36 can slide to one side close to the solid torsion bar 33 due to extrusion force, and then slides along the splicing base plate 34, the kneading force borne by the tea leaves is the largest, and when the tea leaves move to the middle position due to the friction force, the tea leaves can fall to the lower part due to the influence of self gravity, and then the kneading work of the tea leaves is repeatedly carried out.
After the tea leaves are kneaded, the inner wall of the front insertion shell 21 is not separated from the surface of the outer fixing barrel 31, at this time, the inflation nozzle 23 is started, the inflation nozzle 23 inflates and pressurizes the left side of the inner cavity of the front insertion shell 21 through the drainage casing 22, when the front insertion shell 21 is sleeved on the surface of the outer fixing barrel 31, each adaptive insertion shell 24 is inserted into the interior of the veneering refitting rod 4, gas can be introduced into the interior of the veneering refitting rod 4 through each adaptive insertion shell 24, then the gas slides towards one side of the front insertion shell 21 from the filter plate block 39 through the space at the back of the inner cavity of the inner rotary barrel 35, so that tea leaf fragments remained in the inner cavity of the outer fixing barrel 31 are blown out from the outer surface of the inner rotary barrel 35, then the inner wall of the front insertion shell 21 is slowly separated from the surface of the outer fixing barrel 31, at this time, the kneading device 3 still blows the residues on the inner wall of the front insertion shell 21 through the backflow of the gas, and the residues on the inner wall of the outer fixing barrel 31 are blown into the interior of the front insertion shell 21, and the collection work is completed.
Because drainage casing 22 can carry out the cleaning work to the left port of adaptation plug 24 at the in-process that carries out the blast air, and pressure measuring ring 25 can plug up because of plugging up the left end opening of adaptation plug 24 this moment, and pressure measuring ring 25 is compressed under atmospheric pressure's effect, and the wire through both sides is with data conduction for retinue meter 26.
Example two
Referring to fig. 1 to 8, the present invention provides a technical solution: on the basis of embodiment one, feeding device 5 is including storage top bucket 51, the one-way ventilating board 56 of top fixedly connected with of storage top bucket 51 inner chamber, the axle center fixedly connected with at the 56 surperficial tops of one-way ventilating board rotates motor 54, the both sides of storage top bucket 51 inner chamber bottom all are through socket fixedly connected with feeding pipe 52, the one-way flabellum 55 of top fixedly connected with on rotation motor 54 output shaft surface, the even grafting in surface of rotation motor 54 output shaft has side position commentaries on classics board 57, the equal fixedly connected with adaptation plug-in components 6 in both sides of storage top bucket 51 inner chamber.
The axle center department fixedly connected with lifter 53 at storage top bucket 51 surperficial top, side position commentaries on classics board 57 is close to the one end of rotating motor 54 and passes through vertical spout and the inner chamber sliding connection who rotates motor 54 output shaft, and the bottom fixed connection on spring band and one-way ventilating board 56 surface is passed through at the top on side position commentaries on classics board 57 surface, and the bottom fixedly connected with section of storage top bucket 51 inner chamber pushes away the ball.
Adaptation plug-in components 6 include turbine rotary drum 61, and the both ends of turbine rotary drum 61 inner chamber all have hollow rocking arm through producing mouthful fixedly connected with, and the top fixedly connected with vertical shell 63 of adaptation plug-in components 6, the equal sliding connection in both sides of vertical shell 63 inner chamber has vibration baffle 62.
One side of the vibration baffle plate 62 close to the turbine rotary drum 61 is fixedly connected with the inner cavity of the vertical shell 63 through a spring band, one end of the hollow rotary arm far away from the turbine rotary drum 61 is fixedly connected with the inner cavity of the vertical shell 63 through a socket, and the surface of the adaptive plug-in unit 6 is slidably connected with the inner cavity of the adaptive clamping frame 32.
In the in-process of adding tealeaves, rotate one-way flabellum 55 of motor 54 control and side position commentaries on classics board 57 and constantly rotate, because the tealeaves that adds through feeding pipe 52 piles up the inner chamber at storage top bucket 51 easily, and then cause the problem of adaptation plug-in components 6 top opening jam, so side position commentaries on classics board 57 is at the pivoted in-process, can sweep into the inside of adaptation plug-in components 6 with the tealeaves of piling up in storage top bucket 51 inner chamber bottom, then tealeaves passes through adaptation plug-in components 6 and directly drops into outside fixed cylinder 31, and the protruding ball of storage top bucket 51 inner chamber bottom can take place the relative extrusion with side position commentaries on classics board 57's lower surface, and then make side position commentaries on classics board 57 take place the phenomenon of beating at the pivoted in-process, thereby strike storage top bucket 51's bottom downwards, the effect of blowing of cooperation one-way flabellum 55, can effectively prevent the problem of tealeaves jam from appearing.
When tea leaves pass through the adapter insert 6, the outer shell of the adapter insert 6 guides the tea leaves to slide downwards, the turbine rotary drums 61 on the two sides suck air into the inner cavity of the adapter insert 6, so that the tea leaves entering the adapter insert 6 are separated in the direction close to the vibration baffles 62 on the two sides, then the turbine rotary drums 61 stop working, and the vibration baffles 62 on the two sides vibrate in a reciprocating mode to push the tea leaves to the lower outer fixing barrel 31.
It is obvious that the described embodiments are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present disclosure, all other embodiments obtained by a person of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present disclosure. The structures, devices, and methods of operation of the present invention, not specifically described and illustrated, are generally practiced by those of ordinary skill in the art without specific recitation or limitation.

Claims (9)

1. The utility model provides a machine is kneaded to tealeaves, includes guide slide rail (1), the middle part fixedly connected with of guide slide rail (1) inner chamber holds bucket (11), the equal sliding connection in both sides of guide slide rail (1) inner chamber has guide slider (12), and is anterior the leading merge device of inner chamber fixedly connected with (2) of guide slider (12), rear portion the inner chamber fixedly connected with of guide slider (12) kneads device (3), it has feeding device (5), its characterized in that to peg graft at the top of kneading device (3) inner chamber:
the twisting device (3) comprises an external fixing barrel (31), two sides of the top of an inner cavity of the external fixing barrel (31) are respectively provided with an adaptive clamping frame (32) through a through cutting groove fixedly connected with, an inner cavity of the external fixing barrel (31) is uniformly provided with a veneering refitting rod (4), the axis of the back of the inner cavity of the external fixing barrel (31) is rotatably connected with a solid torsion bar (33), the rear end of the solid torsion bar (33) is fixedly connected with a torque motor (37), the surface of a shell of the torque motor (37) is fixedly connected with the inner cavity of a back guide sliding block (12) through a vertical fixing plate, the front part of the surface of the solid torsion bar (33) is fixedly connected with a plug-in substrate (34), one side, far away from the solid torsion bar (33), of the plug-in substrate (34) is slidably connected with a cutting groove sliding sleeve (36), and the surface of the cutting groove sliding sleeve (36) is slidably connected with an inner rotating barrel (35).
2. The tea twisting machine according to claim 1, wherein: one side symmetry that veneer repacking pole (4) inner chamber is close to solid torsion bar (33) has seted up and has run through the grooving, the inner chamber of veneer repacking pole (4) is through running through grooving fixedly connected with arc infill panel (41), one side fixedly connected with that arc infill panel (41) inner chamber is close to solid torsion bar (33) filters slat (42).
3. A tea leaf rolling machine according to claim 1, characterized in that: leading merge device (2) are including leading shell (21) of inserting, leading shell (21) inner chamber of inserting is kept away from axle center department fixedly connected with drainage cover shell (22) of outside solid fixed cylinder (31) one side, leading shell (21) inner chamber of inserting is close to the even fixedly connected with adaptation in one side of outside solid fixed cylinder (31) and is inserted shell (24), leading one end fixedly connected with who inserts shell (21) inner chamber and keep away from outside solid fixed cylinder (31) aerifys spray tube (23).
4. A tea leaf rolling machine according to claim 3, characterized in that: the adaptation is inserted shell (24) and is kept away from the one end of outside solid fixed cylinder (31) and pass through the interface and the leading inner chamber fixed connection who inserts shell (21), the adaptation is inserted one side that shell (24) surface is close to outside solid fixed cylinder (31) and the inner chamber sliding connection of wainscot repacking pole (4), the leading inner chamber that inserts shell (21) and the surface sliding connection of outside solid fixed cylinder (31), leading one side fixedly connected with of inserting shell (21) inner chamber and keeping away from outside solid fixed cylinder (31) surveys clamping ring (25), survey the both ends of clamping ring (25) and all have retinue instrument (26) through external conductor fixedly connected with.
5. A tea leaf rolling machine according to claim 3, characterized in that: one end of the veneering refitted rod (4) far away from the front insertion shell (21) is fixedly connected with one side of the outer fixed cylinder (31) inner cavity far away from the front insertion shell (21) through a socket, one side of the outer fixed cylinder (31) inner cavity far away from the front insertion shell (21) is fixedly connected with a filter plate block (39) through a diversion chamber, the inner cavity of the solid torsion bar (33) is slidably connected with the inner cavity of the outer fixed cylinder (31) through a bearing rotating column (38), and one end of the insertion base plate (34) far away from the solid torsion bar (33) is fixedly connected with the inner cavity of the grooving sliding sleeve (36) through a spring band.
6. A tea leaf rolling machine according to claim 1, characterized in that: feeding device (5) are including storage top bucket (51), the one-way ventilating board of top fixedly connected with (56) of storage top bucket (51) inner chamber, the one-way ventilating board of axle center department fixedly connected with rotation motor (54) at one-way ventilating board (56) surface top, the both sides of storage top bucket (51) inner chamber bottom all throw material pipe (52) through socket fixedly connected with, the one-way flabellum of top fixedly connected with (55) on rotation motor (54) output shaft surface, the even grafting in surface of rotation motor (54) output shaft has side position commentaries on classics board (57), the equal fixedly connected with adaptation plug-in components (6) in both sides of storage top bucket (51) inner chamber.
7. A tea leaf rolling machine according to claim 6, characterized in that: the storage top bucket (51) is fixed connection with lifter (53) in the axle center department at surperficial top, side position commentaries on classics board (57) are close to the one end of rotating motor (54) and pass through vertical chute and the inner chamber sliding connection who rotates motor (54) output shaft, the bottom fixed connection on top through spring band and one-way ventilating board (56) surface of side position commentaries on classics board (57), the bottom fixedly connected with section of storage top bucket (51) inner chamber pushes away the ball.
8. A tea leaf rolling machine according to claim 6, characterized in that: the adaptation plug-in components (6) include turbine rotary drum (61), the both ends of turbine rotary drum (61) inner chamber all through producing mouthful fixedly connected with hollow rocking arm, the top fixedly connected with vertical shell (63) of adaptation plug-in components (6), the equal sliding connection in both sides of vertical shell (63) inner chamber has vibration baffle (62).
9. A tea leaf rolling machine according to claim 8, wherein: one side of the vibration baffle plate (62) close to the turbine rotating cylinder (61) is fixedly connected with the inner cavity of the vertical shell (63) through a spring band, one end of the hollow rotating arm far away from the turbine rotating cylinder (61) is fixedly connected with the inner cavity of the vertical shell (63) through a socket, and the surface of the adaptive plug-in (6) is in sliding connection with the inner cavity of the adaptive clamping frame (32).
CN202223400934.3U 2022-12-19 2022-12-19 Tea leaf rolling machine Active CN218650071U (en)

Priority Applications (1)

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CN202223400934.3U CN218650071U (en) 2022-12-19 2022-12-19 Tea leaf rolling machine

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Application Number Priority Date Filing Date Title
CN202223400934.3U CN218650071U (en) 2022-12-19 2022-12-19 Tea leaf rolling machine

Publications (1)

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CN218650071U true CN218650071U (en) 2023-03-21

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115918745A (en) * 2022-12-19 2023-04-07 广西凌云一尖茶业有限公司 Tea rolling machine and rolling process
CN117654727A (en) * 2023-12-29 2024-03-08 无锡市绿昂环境科技有限公司 Garbage disposal device for cleaning environmental sanitation

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115918745A (en) * 2022-12-19 2023-04-07 广西凌云一尖茶业有限公司 Tea rolling machine and rolling process
CN115918745B (en) * 2022-12-19 2024-05-17 广西凌云一尖茶业有限公司 Tea leaf rolling machine and rolling process
CN117654727A (en) * 2023-12-29 2024-03-08 无锡市绿昂环境科技有限公司 Garbage disposal device for cleaning environmental sanitation

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