CN207501630U - A kind of small-sized tea drier - Google Patents

A kind of small-sized tea drier Download PDF

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Publication number
CN207501630U
CN207501630U CN201721630463.1U CN201721630463U CN207501630U CN 207501630 U CN207501630 U CN 207501630U CN 201721630463 U CN201721630463 U CN 201721630463U CN 207501630 U CN207501630 U CN 207501630U
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CN
China
Prior art keywords
negative sense
circulation pipeline
spiral circulation
raw material
air feed
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201721630463.1U
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Chinese (zh)
Inventor
程刚
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Flower Sweet Dew Tea Co Ltd Is Fried In Sichuan Province
Original Assignee
Flower Sweet Dew Tea Co Ltd Is Fried In Sichuan Province
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Filing date
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Application filed by Flower Sweet Dew Tea Co Ltd Is Fried In Sichuan Province filed Critical Flower Sweet Dew Tea Co Ltd Is Fried In Sichuan Province
Priority to CN201721630463.1U priority Critical patent/CN207501630U/en
Application granted granted Critical
Publication of CN207501630U publication Critical patent/CN207501630U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of small-sized tea driers, it is related to tea prepn equipment technical field, the utility model includes housing, the bottom surrounding of the housing is equipped with stent, further include spiral circulation pipeline, positive air feed system, negative sense air feed system, moisture sorbing system, raw material cabin, the spiral circulation Pipe installing is inside housings, the both ends of the spiral circulation pipeline are respectively arranged with inlet port and outlet port, the inlet port and outlet port are connected with raw material cabin, the forward direction air feed system is connected with the top of feed inlet, the negative sense air feed system is connected with the top of discharge port, the moisture sorbing system is mounted on the top of spiral circulation pipeline, the raw material cabin is mounted on the underface of housing, the utility model can recycle hot wind resource, substantially increase the utilization ratio of heat source.

Description

A kind of small-sized tea drier
Technical field
The utility model is related to tea prepn equipment technical field, more particularly to a kind of small-sized tea drier.
Background technology
In tea making field, the dries quantity of tealeaves is directly related to the quality of tea leaf quality, therefore, veteran system The hand-made manual tea price of tea teacher is high.But in batch production, by manually produce its efficiency it is at a fairly low under, in order to carry High yield, it is necessary to which, using dryer is wanted, dryer is usually all the hot wind provided using heat source, and tealeaves is made to be dried in machine It is dry.The dryer of the prior art provides heat source, high energy consumption using boiler, and also has certain influence on environment.
Utility model content
The purpose of this utility model is that:In order to solve the problems, such as prior art dryer high energy consumption, the utility model carries For a kind of small-sized tea drier.
The utility model specifically uses following technical scheme to achieve these goals:A kind of small-sized tea drier, packet Housing is included, the bottom surrounding of the housing is equipped with stent, further includes spiral circulation pipeline, positive air feed system, negative sense air feed System, moisture sorbing system, raw material cabin, the spiral circulation Pipe installing inside housings, divide by the both ends of the spiral circulation pipeline It is not provided with inlet port and outlet port, the inlet port and outlet port are connected with raw material cabin, the forward direction air feed system and charging The top connection of mouth, the negative sense air feed system are connected with the top of discharge port, and the moisture sorbing system is mounted on spiral circulation pipe The top in road, the raw material cabin are mounted on the underface of housing.
Preferably, the forward direction air feed system includes positive hot wind supercharger, positive branch pipe, the forward direction hot wind supercharging Machine is connected by positive branch pipe with the top of feed inlet, it is described forward direction branch pipe air outlet towards feed inlet opposite direction.
Preferably, the negative sense air feed system includes negative sense hot wind supercharger, negative sense branch pipe, the negative sense hot wind supercharging Machine is connected by negative sense branch pipe with the top of discharge port, and the air outlet of the negative sense branch pipe is towards the same direction of feed inlet.
Preferably, the outside of the spiral circulation pipeline is also arranged with one layer of heat preservation bed course.
Preferably, the moisture sorbing system includes dismounting shell, quick lime material packet, the dismounting body seal is fixed on spiral shell The top of circulating line is revolved, the quick lime material packet is mounted in dismounting shell.
Preferably, it is provided with one layer of heat-barrier coating on the inside of the raw material cabin.
The beneficial effects of the utility model are as follows:
1. the tea drier of the prior art utilizes air-heater, drying tealeaves is concentrated in larger box house, due to case Internal space is larger, needs a large amount of heat, could control the temperature of entire babinet more than operating temperature, and due to space Greatly, heat is easily scattered and disappeared by the shell of babinet, this just needs air-heater in high power Heating State, to cause the energy unrestrained at any time Take;For this problem, the present apparatus further integrates in the space of drying, in the case where preventing take up housing interior volume, carries For more efficiently drying heat source, the utilization ratio of the energy is substantially increased;When the present apparatus works, by tea raw material to be dried It is placed into raw material cabin, starts positive air feed system and negative sense air feed system, positive air feed system is generated in the top of feed inlet Upward negative pressure, and negative sense air feed system is inflated down in the top of discharge port, makes entire spiral circulation pipeline and raw material cabin shape Into a complete circulation loop, tea raw material density is small, with the generation of negative pressure, can be inhaled into spiral circulation pipeline, Cycle drying operation is completed, the vapor generated in drying course due to the characteristic of vapor, is easily collected on spiral circulation At the top of pipeline, after vapor is risen at the top of present apparatus spiral circulation pipeline, absorbed by moisture sorbing system, it is prevented to be again introduced into Into circulation process, after lasting drying a period of time, positive air feed system and negative sense air feed system are closed, so as to what is dried Tea raw material.As a result of spiral circulation pipeline, the present apparatus need to only supply a small amount of hot wind, with regard to that can make tealeaves in spiral circulation Pipeline realizes cycle, constantly using hot wind resource, substantially increases the utilization ratio of heat source.
2. the tea raw material of traditional dryer is usually all to rest in dryer to be dried, this mode is easily led It causes tealeaves heating surface uneven, influences tea leaf quality;The present apparatus uses dynamic drying mechanism, makes tealeaves continuous in drying course Comprehensive heated, raising tea leaf quality is realized in overturning;When the present apparatus works, positive hot wind supercharger promote tea raw material to Upper movement, and negative sense hot wind supercharger then generates downward kinetic energy, so as to make tealeaves between spiral circulation pipeline and raw material cabin Cycle, as a result of the structure of the present embodiment, motion state of the tealeaves in drying is more changeable, makes it heated more It is even, greatly improve the drying effect of tealeaves.
3. traditional drying body chassis is mostly metal material, since metal material heat conductivility is good, it is easy to make heat It scatters and disappears, causes energy waste;The present apparatus has further been arranged one layer of heat preservation bed course on the outside of spiral circulation pipeline, uses up heat It long may be maintained in spiral circulation pipeline, improve heating efficiency.
4. common moisture absorption apparatus generally use directly absorbs moisture, although this mode can play dewatered work With, but the heat of entrained in moisture is wasted, in order to further improve the utilization ratio of heat, the present apparatus is outer using dismounting Shell and quick lime material package close to form moisture sorbing system, and after moisture is generated during drying tea leaves, it is attached to focus on moisture sorbing system Closely, moisture is directly absorbed by quick lime material packet, since quick lime material packet has the characteristic of water suction release heat, the heat released Amount, will follow the flowing potential energy of spiral circulation pipeline, continues into the circulatory system, so as to fulfill the recycling again of heat. , can be in cyclic process, while carrying out absorbing processing to moisture as a result of the moisture sorbing system of the present apparatus, supplement spiral is followed Heat in endless tube road improves efficiency of energy utilization.
5. raw material cabin is usually all metal material, since metal material heat conductivility is good, it is easy to heat be made to scatter and disappear, made Into energy waste;The present apparatus is provided with one layer of heat-barrier coating on the inside of raw material cabin, plays heat-insulated effect, while can also prevent Steam generates corrosion to metal, improves the service life of equipment.
6. traditional dryer is dried using single, part fragrance is lost in as heat scatters and disappears, and the present apparatus is using cycle Heat source dries tealeaves, can further lock fragrance, improve the giving off a strong fragrance degree of tealeaves, so as to improve the quality of tealeaves.
Description of the drawings
Fig. 1 is the overall structure figure of the present apparatus;
Fig. 2 is the enlarged drawing of moisture sorbing system;
Reference numeral:1- housings;2- spiral circulation pipelines;21- feed inlets;22- discharge ports;3- forward direction air feed systems;31- Positive hot wind supercharger;32- forward direction branch pipes;4- negative sense air feed systems;41- negative sense hot wind superchargers;42- negative sense branch pipes;5- inhales Wet system;51- dismantles shell;52- quick lime material packets;6- raw material cabins.
Specific embodiment
In order to which those skilled in the art are better understood from the utility model, below in conjunction with the accompanying drawings 1,2 and following embodiment The utility model is described in further detail.
Embodiment 1
As shown in the figure, the present embodiment provides a kind of small-sized tea drier, including housing 1, the bottom surrounding of the housing 1 Stent is installed, it is characterised in that:Further include spiral circulation pipeline 2, positive air feed system 3, negative sense air feed system 4, moisture absorption system System 5, raw material cabin 6, the spiral circulation pipeline 2 are mounted on inside housing 1, and the both ends of the spiral circulation pipeline 2 are set respectively Have feed inlet 21 and discharge port 22, the feed inlet 21 and discharge port 22 are connected with raw material cabin 6, it is described forward direction air feed system 3 with The top connection of feed inlet 21, the negative sense air feed system 4 are connected with the top of discharge port 22, and the moisture sorbing system 5 is mounted on The top of spiral circulation pipeline 2, the raw material cabin 6 are mounted on the underface of housing 1.
The operation principle of the present embodiment is as follows:The tea drier of the prior art utilizes air-heater, in larger babinet Portion concentrates drying tealeaves, since space is larger in babinet, needs a large amount of heat, could control the temperature of entire babinet in work Make more than temperature, and since space is big, heat is easily scattered and disappeared by the shell of babinet, this just needs air-heater to be in Gao Gong at any time Rate Heating State, causes energy waste;For this problem, the present apparatus further integrates in the space of drying, is preventing take up case In the case of body inner space, more efficient drying heat source is provided, substantially increases the utilization ratio of the energy;The present apparatus works When, tea raw material to be dried is placed into raw material cabin 6, starts positive air feed system 3 and negative sense air feed system 4, forward direction supplies Wind system 3 generates upward negative pressure in the top of feed inlet 21, and negative sense air feed system 4 fills down in the top of discharge port 22 Gas makes entire spiral circulation pipeline 2 form a complete circulation loop with raw material cabin 6, and tea raw material density is small, with negative pressure Generation, can be inhaled into spiral circulation pipeline 2, complete cycle drying operation, the vapor generated in drying course, by In the characteristic of vapor, 2 top of spiral circulation pipeline is easily collected on, vapor rises to present apparatus spiral circulation pipeline 2 and pushes up It behind portion, is absorbed by moisture sorbing system 5, it is prevented to be re-introduced into circulation process, after lasting drying a period of time, closed positive Air feed system 3 and negative sense air feed system 4, the tea raw material so as to be dried.As a result of spiral circulation pipeline 2, this dress Putting only need to supply a small amount of hot wind, recycled with regard to tealeaves can be made to be realized in spiral circulation pipeline 2, constantly utilize hot wind resource, significantly Improve the utilization ratio of heat source.
Embodiment 2
The present embodiment has made following optimization on the basis of embodiment 1:The positive air feed system 3 of the present embodiment includes forward direction Hot wind supercharger 31, positive branch pipe 32, the forward direction hot wind supercharger 31 are connected by the top of positive branch pipe 32 and feed inlet 21 Logical, the air outlet of the forward direction branch pipe 32 is towards the opposite direction of feed inlet 21.
In order to more clearly explain the present embodiment, the negative sense air feed system 4 of the present embodiment includes negative sense hot wind supercharger 41st, negative sense branch pipe 42, the negative sense hot wind supercharger 41 are connected by negative sense branch pipe 42 with the top of discharge port 22, the negative sense The air outlet of branch pipe 42 is towards the same direction of feed inlet 21.
The operation principle of the present embodiment is as follows:The tea raw material of traditional dryer be usually all rest in dryer into Row drying, this mode are easy to cause tealeaves heating surface unevenness, influence tea leaf quality;The present apparatus uses dynamic drying mechanism, Tealeaves is made constantly to be overturn in drying course, realizes comprehensive heated, raising tea leaf quality;When the present apparatus works, positive heat Wind supercharger 31 promotes tea raw material to move upwards, and negative sense hot wind supercharger 41 then generates downward kinetic energy, so as to make tealeaves It is recycled between spiral circulation pipeline 2 and raw material cabin 6, as a result of the structure of the present embodiment, movement of the tealeaves in drying State is more changeable, is uniformly heated it, greatly improves the drying effect of tealeaves.
Embodiment 3
The present embodiment has made following optimization on the basis of embodiment 1:The outside of the spiral circulation pipeline 2 of the present embodiment is also It is arranged with one layer of heat preservation bed course.
The operation principle of the present embodiment is as follows:Traditional drying body chassis is mostly metal material, due to metal material heat conduction It is functional, it is easy to heat be made to scatter and disappear, cause energy waste;The present apparatus is further arranged in the outside of spiral circulation pipeline 2 One layer of heat preservation bed course, makes heat is as long be as possible maintained in spiral circulation pipeline 2, improves heating efficiency.
Embodiment 4
The present embodiment has made following optimization on the basis of embodiment 1-3 is any:The moisture sorbing system 5 of the present embodiment includes tearing open Shell 51, quick lime material packet 52 are unloaded, the dismounting shell 51 seals the top for being fixed on spiral circulation pipeline 2, the quick lime Material packet 52 is mounted in dismounting shell 51.
The operation principle of the present embodiment is as follows:Common moisture absorption apparatus generally use directly absorbs moisture, this mode Although can play the role of dewatered, the heat of entrained in moisture is wasted, in order to further improve the profit of heat With efficiency, the present apparatus forms moisture sorbing system 5 using dismounting shell 51 and the combination of quick lime material packet 52, during drying tea leaves After generating moisture, focus near moisture sorbing system 5, moisture is directly absorbed by quick lime material packet 52, since quick lime material packet 52 has There is the characteristic of water suction release heat, the heat released will follow the flowing potential energy of spiral circulation pipeline 2, continue into and follow In loop system, so as to fulfill the recycling again of heat.It, can be right in cyclic process as a result of the moisture sorbing system 5 of the present apparatus While moisture carries out absorbing processing, the heat in supplement spiral circulation pipeline 2 improves efficiency of energy utilization.
Embodiment 5
The present embodiment has made following optimization on the basis of embodiment 4:6 inside of raw material cabin of the present embodiment is provided with one layer Heat-barrier coating.Raw material cabin 6 is all usually metal material, since metal material heat conductivility is good, it is easy to heat is made to scatter and disappear, Cause energy waste;The present apparatus is provided with one layer of heat-barrier coating in 6 inside of raw material cabin, plays heat-insulated effect, while can also It prevents steam from generating corrosion to metal, improves the service life of equipment.
The preferred embodiment of the above, only the utility model, is not intended to limit the utility model, the utility model Scope of patent protection be subject to claims, what every specification and accompanying drawing content with the utility model was made is equal Structure change similarly should be included in the scope of protection of the utility model.

Claims (6)

1. a kind of small-sized tea drier, including housing (1), the bottom surrounding of the housing (1) is equipped with stent, and feature exists In:Further include spiral circulation pipeline (2), positive air feed system (3), negative sense air feed system (4), moisture sorbing system (5), raw material cabin (6), the spiral circulation pipeline (2) is internal mounted on housing (1), and the both ends of the spiral circulation pipeline (2) are respectively arranged with Feed inlet (21) and discharge port (22), the feed inlet (21) and discharge port (22) are connected with raw material cabin (6), the forward direction air feed System (3) is connected with the top of feed inlet (21), and the negative sense air feed system (4) connects with the top of discharge port (22), described Moisture sorbing system (5) is mounted on the top of spiral circulation pipeline (2), and the raw material cabin (6) is mounted on the underface of housing (1).
2. small-sized tea drier as described in claim 1, it is characterised in that:The forward direction air feed system (3) is including forward direction Hot wind supercharger (31), positive branch pipe (32), the forward direction hot wind supercharger (31) pass through positive branch pipe (32) and feed inlet (21) top connection, it is described forward direction branch pipe (32) air outlet towards feed inlet (21) opposite direction.
3. small-sized tea drier as described in claim 1, it is characterised in that:The negative sense air feed system (4) is including negative sense Hot wind supercharger (41), negative sense branch pipe (42), the negative sense hot wind supercharger (41) pass through negative sense branch pipe (42) and discharge port (22) top connection, the air outlet of the negative sense branch pipe (42) is towards the same direction of feed inlet (21).
4. small-sized tea drier as described in claim 1, it is characterised in that:The outside of the spiral circulation pipeline (2) is also It is arranged with one layer of heat preservation bed course.
5. the small-sized tea drier as described in claim 1-4 is any, it is characterised in that:The moisture sorbing system (5) is including tearing open Shell (51), quick lime material packet (52) are unloaded, the dismounting shell (51) seals the top for being fixed on spiral circulation pipeline (2), institute Quick lime material packet (52) is stated in dismounting shell (51).
6. small-sized tea drier as claimed in claim 5, it is characterised in that:One layer is provided on the inside of the raw material cabin (6) Heat-barrier coating.
CN201721630463.1U 2017-11-29 2017-11-29 A kind of small-sized tea drier Expired - Fee Related CN207501630U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721630463.1U CN207501630U (en) 2017-11-29 2017-11-29 A kind of small-sized tea drier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721630463.1U CN207501630U (en) 2017-11-29 2017-11-29 A kind of small-sized tea drier

Publications (1)

Publication Number Publication Date
CN207501630U true CN207501630U (en) 2018-06-15

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110081698A (en) * 2019-05-30 2019-08-02 霍学明 The continuous baking of negative-pressure cyclic heating, dry, frying equipment
CN110432342A (en) * 2019-08-12 2019-11-12 安徽太湖画里天华实业有限公司 A kind of tea drier

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110081698A (en) * 2019-05-30 2019-08-02 霍学明 The continuous baking of negative-pressure cyclic heating, dry, frying equipment
CN110432342A (en) * 2019-08-12 2019-11-12 安徽太湖画里天华实业有限公司 A kind of tea drier

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180615

Termination date: 20191129